WARSAW PACT DEMOLITION DEVICES
Document Type:
Collection:
Document Number (FOIA) /ESDN (CREST):
CIA-RDP09-01333R000100180001-4
Release Decision:
RIFPUB
Original Classification:
C
Document Page Count:
98
Document Creation Date:
December 23, 2016
Document Release Date:
September 18, 2013
Sequence Number:
1
Case Number:
Publication Date:
January 15, 1985
Content Type:
REPORT
File:
Attachment | Size |
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Body:
rflMrIfltkttiXl
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5
4
3
2
INTELLIGENCE INFORMATION REPORT
Individual Items Of This Report Are
UNCLASSIFIED Unless Otherwise Indicated
This Is An Information Report, Not Finally Evaluated Intelligence
,
COUNTRY; (U) UP, GE, CZ
TITLE: (U) Karsaw Pact Demolition Devices
DATE OF INFO: (.1) 841010
REPORT NO: 2-196-0021-85
REPORT DATE: 850113
MM UM WY MM OW
ORIGINATOR: (U) 000.51 OLD Bonn REG. REFERENCES: (U) G-FST-42946
AmEmbassy Box 110, APO 09080 G-FST742049
SOURCE: (1.1) 2210-0012, a GE military agency which consistently provides
accurate intelligence analysis and assessments.
SUMMARY:
(C) ?The demolition devices most frequently used by the Warsaw ?Pact are described
and depicted in the attached 02 Technical East Information Report. This
includes detailed information on explosive devices, priming devices,
es:plosive initiators, and demolition accessories. An enclosure provides a
list of Russian, NATO, and Gelman designations for the explosives.
DIA PASS TO CS-1
DO FORM,
CLASSIFIED BY: FRG
REVIEW ON: OADR
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AMACtSildf0f0A1BN I.5It EXISTfte OttiatN,If SOO
WSCHWIct Of ilititt1440 ViVEVAM7111 JUL TOP +ALM
$00.4ENEXH4MTED
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DECLASSIFICATION
DATA,
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rAut z OF 97 PAFIES
CONFIDENTW "R __
ODGEI ULO BONN
02 TECHNICAL EAST INFORMATION
WARSAW PACT DEMOLITION DEVICES
1. The demolition devices most frequently used by the WP are described in this
32 Report. They are arranged according to army manual 28S/100 entitled
'Txplosive Ordnance Used by the Engineer Forces".
The descriptions are mainly intended for personnel dealing with explosive
ordnance disposal (EON and engineer troops. The descriptions cover all
available details of construction, function and handling.
2. This 02 Report is continuously updated,
3. A 02 Report entitled "Mines of the KPH will later be compiled as a supple-
ment.
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PAGE 3 CF 97 PAGES
CONFIDENTIAL IIR 2-196-0021-55
CDC5I AC BONN
Table of Contents
1. Sxmlosive Devices
1.1 Solid Explosive Devices
1.1.1 10 g to 3,000 g EWP;
1,1.2 :D g to 100 g (USSR;
1.1.3 200 g (USSR)
1,1,4 400 g (USSR)
1,1.5 70 g, 200 g and 40e g (GDR)
1.1.6 1 kg (GDR;
1.1.7 3 kg (GDR)
1.1.8 5 kg (GDR)
Pack Charges
53-E
(USSR)
Composed of ?several explosive ?devices (CDR)
1.3 Linear Charges
1.3.1 UZ-1 Demolition pipe (USSR)
1,3,2 U7.-2 and U3-3 Demolition pipe systems (USSR/GDR)
1.3.3 IN Demolition pipe (CS5R)
1.3.4 Improvised linear charge (GDR)
1.4 Shaped Charges
1.4.1 KZ-2 (USSR)
1.4.2 PN-4 (C55R)
1,4.3 PN-14 (C55R)
1.4,4 UTN-2 Linear cavity charge (055R)
1.4.5 LITN-608 Linear cavity charge (CS5R)
1,5 Bulk Explosives
2. Priming Devices
2.1 Safety fuses
2.1.1 PVC fuse (WP)
2.2 Igniters
2.2.1 Fuse (WP)
2.2.2 Electrical P-: (CSSR)
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3. Explosive Initiators
3.1 Detonating Cords
3.1.1 General [WP)
3.1.2 Np V (CSSR)
PAGE 4 OF 97 PAGES
IIR 2-196-0021-85
ODCS1 ULO BONN
3.2 Detonators
3.2.1 Nr 8 [USSR/GDR)
3.2.2
4 (CSSR)
3.2.3 MD-SM (USSR)
3.2.4 Electrical detonator (USSR)
3.2.5 Electrical detonator 2-1 (CSSR)
3.2.6 Electrical detonator with delayed action mechanism (USSR)
3.2.7 Electrical detonator with delayed action mechanism 2cC (CSSR)
3.3 Fuses
3.3.1 Detonator fuses
3.3.1.1 CaRoZ-60 Detonator fuse (CSSR)
3.3.1.2 CaRoZ-2.5 Electrical detonator fuse (CSSR)
3.3.2 Pressure fuses
3.3.2.1 MV- (USSR)
3.3.2.2 MIN (USSR)
3.3.2.3 Ro-3 (CSSR)
3.3.2.4 Ro-7- I (CSSR)
3.3.2.5 Ro- 8 (CSSR)
3.3.2.6 RD-9 (CSSR)
3.3.2.7 Chemical pressure fuse
3.3.3 Pull fuses
3.3.3.1 MUV (USSR)
3.3.3.2 MUV-Z (USSR)
3.3.3.3 VPF (USSR)
3.3.3.4 Ro-1 (CSSR)
3.3.3.5 M-4D (HUN)
(CSSR)
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:IR 2-196-3021-85
oucs: UL0 BONN
CONFIDENTIAL
3.3.4
Tilt fuses
MVsil-46 (USSR)
3.3.8
Del ay fuses
3.3.5.1
UC-16-T (GDR)
3.3.5.2
ChM- I 6 (USSR)
3.3.5.3
UT-62-T (GDR)
3.3.5.4
ChV-60 (USSR)
3.3.5.8
Chi-12 (USSR)
3.3.5.6
ch-35 (USSR)
3.3.5.7
EKbP Electro-chemical delay fuse
(USSR)
3.3.5.8
EKhV Electro-chemical delay fuse
(USSR)
3.3.6
Special fuses
3.3.6.1
V7,-1 Vibration fuse (USSR)
3.3.6.2
ChVZ Vibration fuse (USSR)
3.3.6.3
UVM-1 Auto-fuse (USSR)
4,
Demolition Accessories
4,1
Blasting machines
4,1.1
FM-1 (USSR)
4.1.2
FM-2 (USSR)
4.1.3
PM-627 (USSR)
4.1.4
DEOS-25 (CSSR)
4.1.5
RK-1 (CSSR)
4,1.6
M-524 (GDR)
4.2
Igniter cables
4,2.1
V-SUA Igniter cable (CSSR)
4,3
Ignition equipment packages
(GDR)
4.3,1
Demolition equipment package
(CSSR)
4.3.2,
Demolition equipment package T
(CSSR)
4.3.3
Demolition package
(GDR)
4,4
Charging accessories
4.4.1
VOMIT Volt/Ohm meter
(CSSR)
4.4.2
Ca] Lightning protector
(USSR)
4.4.3
Quick-connective couplings
(CDR)
Enclosure 1: Abbreviations and translations for ?explosives
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1.1 Solid ExplosiveDevices (WP)
1.1.1
---1
Measurements 1/0: 7
Explosive:
Number of fuse wells:
Jacket:
TNT, pressed
1*
twice-paraffined wax paper
200 g
Measurements l/w/h: 100/50/25 mm
Explosive: TNT, pressed or sprayed
Number of fuse wells:1
Jacket: twice-paraffined wax paper
400 g
Measurements 1 h: 100/50/50 mm
Explosive: TNT, pressed or sprayed
Number of fuse s 1
Jacket: twice-paraffined wax paper
1,000 g
Measurements 1 h: 130/106/52 mm
Explosive: TNT, sprayed
Number of fuse wells: 2
Jacket: none
3,000 g
Measurements 1/w/b:
Explosive:
Number of fuse wells
Jacket:
3
none
*1 fuse well; 2 read
Annotation:
45/60 mm
sprayed
PAGE 6 OF 97 PAGES
TIP 2-196-0021-85 ULO BONN
These explosive devices, 70 g to 3,000 g, are standardized in tb
they differ in packing and labels.
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Howe
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LIR 2-196-0021-85
ODCS I NEC BONN
CONFIDENTIAL
1.1.2 75 g and 100 g (USSR)
Description:
Cylindrical explosive device ?in waxed Cr paraffined paper jacked
with one fuse well on top for inserting the explosive initiator.
Technical Data:
Weight Diameter Length Explosive
75g 30 mm 70 mm TNT
100 g 30 tam 100 um Ammonite
Comments
Demolition cartridges are used as main charges in the Soviet AP
mines P10-7, PMD-7t and POMC-2 and as borehole charges to blow
up trees and tree stumps and for other general demolition work.
75 s
10C B
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HR 2-196-0021-8"
ODCS1 ULO BONN
1.1.3 200 g (USSR)
Description
Brick-shaped explosive device in a paraffined paper jacket
fuse well attached or the rightside for inserting the erplosiv
itiator.
Technical Data
Measurements 1/w/h.
Main charge:
Explosive:
Number of fuse
Jacket:
25 TEGM
200 g
a. TNT, pressed
b. trinitrophenol, pressed
1
wax paper, paraffined (twice)
200 g explosive device is also used in AP nines PMD-6, PMD-6M, PMD-3;
(USSR) and PP-Mi-D
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HR 2-196-0021-85
ODCS1 'AO BONN
1.1.4 40.0 g (USSR)
DeStription
Brick-shaped explosive device in a paraffined paper jacket with one
?fuse well On top for inkertion Of explosive initiator.
Technical Data
Measurements 1/w/h : 100/50/50 inn
Main charge: 400 g
Explosive: a. TNT, sulfated and pressed
b. 50% ammonium nitrate mix, SB% TNT, 12% nitroxY1011
pressed.
Number of fuse wells: 1
Jacket:
?Comments
None.
Kad: paper, paraffined (twice)
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1.1.5 70 g, 200 g a
CONFIDENTIAL
400 g
DR)
Description
Similar to WP explosive e 1.1.1), but e
to the (CP standard explosive device, the fuse we
side.
Technical Data
See 1.1.1
Comments
None
70 g
200 g
400 g
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FIR 2-195-0021
ODCSI 110 BONN
PAGES
In contrast
ached to the
DOEFEEKTDALl
L el JFIDENTIA1
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11R 2-196-0021-85
QDCS1 OLD BONN
1.1,6 1 kg (GDR)
Description
The explosive device consists of a rectangular-shaped cardboard con-
tainer holding a cast explosive. It is equipped ?with two fuse wells
and ?one handle.
Technical Data
Measurements L/W/H: 120/100/60 Ism
Main charge: 1 kg
Explosive: TNT, cast
Number of fuse wells: 2
Container:
black, cardboard
Comments
Suitable for demolition of steel constructions, walls, soil.
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1.1.7 3 kg (GDR)
Des
PAGE 12 OF 97 PACES
IIR 2-196-0021-83
ODCSI ULO BONN
The explosive device consists rectangular cardboard container
holding the cast explosive material It is equipped with three fuse
wells and one handle.
Technical Data
Measurements L H:
Main charge:
Explosive:
Number of fuse wells:
Container
Comments
Primarily used for demolish:
device is capable,
if he charge is unstemmed
60 nun
3 kg
TNT, ca.
3
black, cardboard
cc, o
and walls. The 3 kg explosive
penetrating a solid wall of 47 am,
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PACE 13 OF 97 RACES
2-196-0021-E5
COCSI TLC BCNN
1.1.8 5 kg (GDR)
Description
The cylindrical device consists of cast TNT with one fuse well, and
a paraffined cardboard container with a carrying handle.
Technical Data
Measurements L/O: 200/0 140 mm
Main charge w/o fuse: 5 kg
Explosive: TNT, cast
Number of fuse wells: 1
Container: black, paraffined cardboard
Comments
Mainly used for soil demolition.
Performance example: Kell depth is 1.45 in, funnel 0 2.90 it.
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C NFI DENTI AL
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IIR 2-196-0021-85
ODCS1 ULO BONN
1.2 Pack Charges
1.2.1 53-6 (USSR)
Description
The charge is brici-shaped with longitudinally rounded edges. It is
enclosed in a grey metal jacket. Two accommodation holes with different
sized diameters are attached at each front side; a handle 16 cm long
is attached to the top. Two loops for fastening purposes are affixed
on each of the longitudinal sides.
Technical Data
Measurements 11w/h: 393/140/05 mm
Internal thread fuse well: 0 10 and 0 40 TaM
Weight: 7.5 kg
Main charge: aprx. 6.0 kg
Explosive: 50% TNT, 50% hexogene
Number of fuse wells: 2
Jacket: grey steel
C ormlien ts
The pack charge has the original designation (kyrillic) C3-6. Typical
fuses and triggering forces are unknown. The MD-SM detonator may be
inserted into the 10 mm thread.
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Co
CONFIDEN1TA1
ed o Devices (GDR)
Descriptio
In a nakeshift ay, this pack charge is composed cf several
devices (30 of 400 g and 65 of 200 g) and ..-rapped with wire
Technical Data
See description of he devices used.
PAGE 15 OF 97 PAGES
IIR 2-190-0021-85
DDCSI ULO BONN
Comments
None
(...ONFIDENTIAL
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6-00
O BONN
1.3.1 117.-1 Demolition Pipe (USSR)
Description
The factory-produced demolition pipes consist of connectable metal
pipe compoents which are filled with explosives. With the help of
bayonet joints any number of these pipe components can be connected
to form an explosive device. A conical terminating sleeve prevents
it from getting hooked up on something, for example in a wire obstacle.
Fuse-well threaded caps are affixed on both ends of the demolition
pipe components for insertion of one detonator each, whcih are triggered
electrically or by other nonelectrical standard initiators.
Technical Data
Measurements 170:
Weight w/o fuse:
Main charge:
Explosive:
Number of fuse wells:
Container:
Possible overall length:
2,000/53 mm
5,000 g
3,000 g
TNT
2
Steel pipe
70 meters
Clearing width for mines: 2.5 - 3meters.
End Component
Middle component
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Bayonet joint
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PASS 17 OF 97 PACES
IIR 2-19e-0021-35
ODCS1 ULO aONN
1-31*2 U2-2 and 22-3 Demolition Pine Systems CUSSRAGDR1
Description
TWO 82-1 demolition pipes make up the UZ-2 system, and three make up
the 06-S system. The two or three-stranded row charges are connected
by clamping rings.
To protect the row charges from being hit by light infantry weapons,
a pyramid-shaped shield may be installed at the head of a row.
For reasons of stability, the individuals pipes can be connected before
they are shoved forward. For a maximum length of SO meters for the two-
stranded version and 100 meters for the three-stranded versions.
Technical Details
See 82-1 demolition pipe No. 1.3.1
Comments
A clearing width of up to 6 meters for mines is assumed for three-strand
pipe systems*
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1.3.3 TN Demolition Pipe (CSSP)
PAGE 18 OF 97 PAGES
IIR 2-196-0021-83
ODCS1 ULO BONN
Description
The demolition ?pipe TN consists of a steel pipe filled with cast
TNT. The pipes may be connected by bayonet joints for a maximum
length of 100 meters,
1.
Booster charge
4.
Explosive
2.
Thread
S.
Bayonet joint
3.
Encasement
b.
Bayonet joint
Technical Data for each pipe Component
Measurements 1/0: 1 600/0 70 mm
Weight without fuse: 12 kg
Main charge: 7.8 kg
Explosive: TN-T, cast
Booster charge: 100 g
Booster explosive: Penthrite Np ID
Container: Steel pipe
Number of fuse wells:
Comments
None
001 e
neleCa,":41, 7/ di 7411;41:
rnIA
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2-196-0021-85
CFCS' ULO BONN
1.3.4 Improvised Linear Charge (GDR)
Description
The makeshift linear charge is constructed by assembling and
attaching several explosive devices to a wooden pole or stick.
Normally the 400 g TNT devices are used for this purpose.
Head Portion
rear portion with fuse
Technical Data
See 400 g explosive device (USSR/GDR)
Comments
None
soidos
?
c
14..qte. , .... )7:teen 4,7. jack 17 444,y9 in At
r- 1 (..:?X?,...1?Pice.,.%/4 ?-?4??
?Is ,,,,-;;;,,- 4,I,- ,h
.4.S.t..., ? , ' *Y.- , -,-.;.c , , 11:
:1 ... 'nl '?. At t.c.,...3.,
0.,A,-- ..c. ,..:-(tecot ? ,--;tt.' ? t-- ..c.
?,, A 1 '.... .t::: 42. 4:T.S ',IS' --
4..... son,.., ... ,,- ,.., , ? .? " w?-.
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IIR 2-196-0021-85
ODCSI ULO BONN
1.4.1 Shaped Charges (USSR)
Description
The KZ-2 charge is placed in a hemispheric steel container. The
fuse well is attached on the top. A metal lining intensifies the
effects of the shaped charge. The shaped chare may be triggered
with electrical or mechanical initiators. The distance to the
object is assured by swing-out support legs. A handle is also
attached.
1. Outer Metal Casing
2. Inner Metal Lining
3. Explosive Charge
4. Booster Charge
S. Detonator
6. Handle
7. Support Legs
Technical Data
Measurements
heighth with/without support legs: 568.238 mm
Diameter: 0 350 mm
Weight w/o fuse: 14.2 kg
Main charge: 9 kg
Explosive: TNT
Container: Steel
Penetration. steel/steel concrete: 300/1,300 mm
comments
None
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PACE 21 OF 97 PACES
MR 2-19f-0021-85
OPCSI ULC BONN
1,4,2 PN-4 (CSSR)
Description
The shaped charge PN-4 is placed in a conical steel container with
the fuse well attached on the top. A steel lining intensifies the
effects of the shaped charge.
The shaped charge may be triggered by electrical or mechanical in-
itiators. The distance to the object is assured by swing-out sup-
port legs. A ?handle is attached on top of the cone.
Sectional drawing of shaped charge PN-4:
1. explosive charge 4. steel casing
2. booster charge 5. lining
3. fuse well with thread 6. swing-out support legs
handle
Technical Data
Measurements
diameter, bottom: 0 205 mm
heighth with/without legs: 460/340 mm
Weight w/0 fuse: 6.4 kg
Main charge: 4.8 kg
Explosive: 50% TNT, 50% cyclonite
Booster charge: 75g
Booster explosive: Penthrite Np 10, pressed
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1.4.2 PN-4 (CSSR
Technical Data
Coutainer : Steel
Number of fuse wells: 1
Pentration:
steel . steel concrete/soil.: 350/1
Comments
None
CONFIDENTIAL
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IIR 2-196-0021-85
ODCSI ULU BONN
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1.4.3 PN-14 (CSSR)
Description
The PN-14 shaped charge is constructed the same way as the PN-4 (see 1.4.2).
However, it is bigger and more powerful.
Technical Data
Measurements
diameter, bottom; 0 320 mm
heighth with/without legs: 750/500 mm
Weight w/o fuse: 22 kg
Main charge: 17 kg
Explosive; SON TNT, 50'4- cyclonite
Booster charge: 75 g
Booster explosive: Penthrite Np 10
Container: Steel
Number of fuse wells: 1
Penetration:
steel/steel concrete/soil: 500.1,500/1,900 mm
Comments
None
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HR 2-196-0021-35
ODC5I ULO BONN
1.4.4 UTN-2 Linear Cavity Charge C55141
Description
The linear cavity charge is a linear-shaped in a steel container with directed
effect. A booster charge is built into the continuous fuse well which is at-
tached on top.
The linear cavity charge may be triggered nonelectrically with the detonator 2,
electrically with the detonator Z-1 or with the detonating cord Np 1 or Np V.
In the latter case the detonating cord must be run completely through the fuse
well.
Longitudinal and lateral
section of linear cavity charge UTN-2
1.
Charge
4.
Loops
2.
Booster charge
5.
?Thread
3.
Steel encasement
6.
Well
Different linear cavity charges CITN-2) are joined by inserting wire into the
loops attached for this purpose.
Technical Data
Measurements 1/w/h: 200/110/120 ram
'eight w/o fuse: 2,700 g
Main charge: 1,960 g
Explosive: $0% TNT, 50% cyclonite,
Booster charge: 80 g
Booster explosive: Penthrite Np 10
Container: Steel
Number of fuse wells: 1 (continuous)
Penetration:
steel/steel concrete/walls: 75/75/750 mm
Comments None CONFIDENTIAL
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ODGSI ULC BONN
1.4.5 UTN-600 Linear Cavity Charge (CSSR)
Description
The linear cavity charge UTN-600 is constructed the same way as
HTN-2 (see 1.4.4).
However, it is ?smaller and less powerful.
11T14-2 (links) und UTN-600
Technical Data
Measurements 1/4hr
Weight w/o fuse:
Main Charge:
Explosive:
Booster Charge:
?Booster explosive:
Container:
Number of fuse wells:
Penetration:
steel/steel concrete/walls: 50150/500 mm
100/80 95 mm
950 g
540 g
50% TNT, 50% cyclonite
40 g
Penthrite No 10
Steel
1 (continous)
Comments
None
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Ilg 2-195-0021-85
ODC5I ULC BONN
1.5 Bulk Exnlosives
In the Warsaw Pact bulk explosives are mainly used for ground detonations.
An exception to this is a formative explosive substance.
PERMDN 5
PERMON 3 is a powdery ammonite explosive with increased water-resistance
It is a soft, Powdery, light-red dust and Consists of 90% ammonium nitrate,
6% TNT, 4% wax, paraffine, colorants and water-repellant additives. It
is packed in waterproof sacks made of polyethilene, each one weighing 25 kgs.
Two sacks each are stored in a wooden container.
If PERHON 3 is used instead of TNT, the required amount is explosive
material is increased 1.5 - 2 times. The minimum amount for confined
charges is 500 g.
Other characteristics:
Density aprx. .995 g/m3
Detonation velocity 31500 - 5,000 meters/s
Explosive Substance P1NE10
This plastic explosive is about 50% more effective than TIC. However,
its composition is unknown. The plastic substance can be adjusted to
the object. Detonator holders are not necessary.
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I1R 2-196-0C21-85
OD651 ULO BONN
2. Primine Devices
2.1 Safety fuses
2.1.1 PVC Fuse (WP)
Description
The safety fuse is used for igniting detonators and can also be used in
water up to depths of 10 meters. It contains a core of gun-power with
a ccntinous thread marker. The powder cell is sheathed by a powder tube,
two layers of thread and a brown plastic waterproof cover.
1
- powder core
4
- inner thread layer
2
- thread marker
5
- outer thread layer
3
. powder tube
6
- plastic cover
Technical Data
Measurements:
Powder core:
Flame velocity:
Cover:
Reel length:
Comments
None
0 5.8 mm
Gun-powder
1 cm/s + 10%
Brown, plastic or tar
10 or 50 m
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Fuse Igniter
?Description
The fuse ign ter makes
the ignition hammer will hit the primer whose flame will then ignite
the fuse.
WP
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ODCSI ULO BONN
easier. Upon pulling the rip cord ring,
Technical Data
Not available
Comments
None
1. Fuse Case
2. Fuse
3. Rip Cord Ring
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CONFIDENT-IAI 2-196-0021-FS
ODCS1 UlC BONN
2*2.2 Electrical Igniter P-2 (CSOR)
Description
The electrical igniter is waterproof with out a detonator charge. It
serves to ignite the fuse* The case contains an electrical igniting
pellet; its ends are connected to the two leg wires.
1 - Cap
2 - Thread
3 - Electrical igniting pellet
4 - Conductor
5 - Seal made of PVC
6 - Flash tube
Technical Data
Measurements 1 0 ton/0 bottom: 68/0 19/0 7 mm
Comments
None
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UR 2-196-0021-83
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3. Explosive Initiators
3.1 Detonating Cords
3.1.1 General (WP)
The detonating cord consists of a highly explosive core composed of PETN
or BOX in a textile jacket. It is coated with a thim layer of bitumen,
which is coated by a second outer layer of textile which again is covered
by a layer of waxed rubber or synthetic material. The detonating cord
transmits a wave from one point to the other with a velocity of 6,000
to 7,000 meters/s. Even if one end of the detonating cord is lying under
water, the cord can still be ignited from the dry end. Although in low
temperatures the detonating cord does not lose any of its detonating
characteristics, its outer coat becomes still and cracks when bent. The
detonating cord is used to ignite explosive charges with the detonation
transmitted through a detonator. The detonating cord may simultaneously
transmit the wave to any number of explosive charges.
Detonating cord used by the WP is usually produced with PUN. Previous
types of detonating cord were produced with white, red or green plastic
coating. Today all of them are produced with red coating. Soviet detonat-
ing cords are marked with the letters "OSh" and following numbers, while
the Czechoslovakian versions bear the letters "Np" before their identifica-
tion numbers.
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3.1.2 Nu V (CSSR)
Description
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00051 ULO BONN
The detonating cord transmits the ignition from a detonator to one of
several explosive charges. The detonating cord Np V contains a core
of PETN inside of a tube made of rayon staple and surrounded by cotton
fibers. The outer coat consists of an elastic green synthetic material.
Both ends of the detonating cord are protected against humidity by meta]
caps.
1 Thread Marker
2 Powder Core
3 - Powder Tube
4 - Inner Thread Layer
S - Outer Thread Layer
6 - Synthetic Coating
Technical Data
Measurements, 0: 0 5.3 ?ram
Explosive: PETN
Weight of explosive per meter: 12 011
Detonating velocity: 6,700 meters/5
Coating: Green synthetic material
(new product: red)
Length of reel: 100 meters
Comments
None
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3.2 Detonators
3.21 No. 8 (USSR/CDR)
Description
The detonator is used to detonate explosive devices and mines. Detonator
No. 8 consists of a copper or aluminum tube with primary and secondary
charges. The flame of the igniter cord or of a safety fuse will ignite
the primary charge which will set off the secondary charge.
tube
inner tube
primary charge
secondary charge
Technical Data
Measurements 1/0 outside/0 inside:
Primary charge:
Primary explosive:
45/0 6.85/0 6.30 mm
400 mg
a. Mercury fulminate
b. Lead azite
Secondary charge: 600 mg
Secondary explosive: PETN
Case: a. copper
b. aluminum
Comments
Detonator No. 8 is a part of detonators MD-2 and MD-SM.
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IIR 2-196-0021-85
ODCSI DLO BONN
3.2.2 Z (CSSR)
Description
Detonator Z is constructed similar to detonator No. 8, but has different
measurements.
1 - aluminum tube
2 - inner tube
3 - fuse cavity
4- secondary charge
5 - primary charge
Technical Data
Measurements 1/0 outside/ 0 inside: 44/0 6.95/0 6.40
Primary charge: 300 mg
Primary explosive: Lead azide
Secondary charge: 800 mg
Secondary explosive : Penthrite
Case: Aluminum
Comments
None
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3.2.3 MD-SM (USSR)
Description
Detonator MD-5M consists of a detonator with
charge and a threaded stud made of synthetic
external thread.
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a primary and a secondary
material or metal with an
Technical Data
Measurements 1, max
Primary Charge:
Secondary Charge:
Material:
0 : 46-50/0 13 mm
probably similar
to detonator No. 8
Synthetic or metal
Comments
The detonator MD-5M is used with various
Other detonators:
MD-2, MD-6, MD-6N, MD-9 and MD-10.
They differ by varying thread fittings.
type of fuses.
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3.2.4 Electrical Detonator (USSR)
Description
The electrical detonator consists of a cylindrical metal casing which
contains a primary and a secondary charge as well as the igniting pellet,
which is connected to the two leg wires.
1- insulated leg wires
2- igniting pellet
3- primary charge
4- secondary charge
Technical Data
Measurements 1/0: 50/0 6mm
Material of casing: Metal (perhaps aluminum)
Resistance: 2 Ohm
Comments
The electrical detonator can also be constructed independently with a
detonator and an electrical igniting pellet.
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ODCSI ULO BONN
3.2.5 Electrical Detonator Z-1 (CSSR)
Description
Construction and function are similar to the electrical detonator
(see 3.2.4). Electrical Detonator Z-1, however, has different
measurements and is equipped with an additional cap holder.
1
- secondary charge
4 -
thread
2
- primary charge
5 -
cap holder
3
- igniting pellet
6 -
ignition cable 1.5 meters
Technical Data
Measurements 1/0 min, 0: 60/0 6.95/0 10.0 mm
Comments
None
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3.2.6 Electrical Detonator with Delayed Action Mechanism (USSR)
Description
The electrical detonator with delayed action mechanism consists of an
electrical detonator and a pyrotechnical charge placed between igniting
pellet and primary charge. The fuse is designed for different delay times.
For "sceonds" fuses, a mixture of potassium permanganate and powdered
antimony is used.
The delay time can be seen on a label attached to the fuse wire.
1 - insulated leg wires
2 - igniting pellet
3 - primary charge
4- secondary charge
5- label indicating the delay time
Technical Data
Measurements: 75/0 6 mm
Material of casing: Metal (perhaps aluminum)
Delay time: 2.4 or 6 seconds
Resistance: 2 Ohm
Comments
None
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3.2.7 Electrical Detonator with Delayed Action Mechanism ZeC (C5SR)
Description
For construction and function see 3.2.6. This variant has different
measurements and a cap holder.
1.
Igniting pellet
S.
Primary charge
2.
Ignition cable
6.
Secondary charge
3.
rubber gasket
7.
Cap holder
4.
Delay charge
Technical Data
Delay times: 5/1.0/1.5/2.0/2.5/3/4 and 5 seconds.
Comments
None
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3.3 Fuses
3.3.1 Detonator Fuses
3.3.1.1 CaRoZ-60 Detonator Fuse (CS5R)
Decription
The detonator fuse is a pre-fabricated simple igniter lead, used for
ingniting explosive devices. It consists of a fuse ingniter (see 2.2.1),
the PVC fuse (see 2.1.1) and detonator Z (see 3.2.2) and it waterproof.
The delay time depends on the length of the fuse (15 cm, 50 cm, 100 cm).
1 - detonator Z
7
2.- detonator holder
8
3 - PVC fuse
9
4 - delay charge
10
5 - connector
11
6 - friction fuse
Technical Data
Delay time:
Temperature range:
Comments
Described
fuse
igniting charge
fly nut
piece of thread
protective cap
155.50s, 100s + 10%
- 30?C to + 40?C
as a clockwork fuse in the Czechoslovakian Army (CVA).
CaRoZ-5 Detonator fuse with bule, slow-burning PVC fuse.
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3.3.1.2 CaRoZ-2.5 Electrical Detonator Fuse (CSSR)
Description
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HR 2-196-0021-85
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The electrical detonator fuse is composed of a detonator, a safety fuse
and an electrical igniting pellet. A flashlight battery is sufficient
as power source. '
1 - detonator Z
2 - detonator holder
3 - PVC fuse
4 - primer cap (incendiary charge)
Technical Data
None
Comments
None
5 - connector
6 - shipping cap
7 - electrical igniting pellet
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3.3.2 Pressure Fuses
3.3.2.1 MV-5
Description
The MV-5 pressure fuse is the most frequently used fuse for igniting anti-tank
mines.
The fuse casing is made of metal; a new variant with the designation MV-5K is
constructed of synthetic material.
Pressure exerted on the fuse moves the pressure cap downwards and in this
process the spring is thightened.
As soon as the priming energy is reached, the safety pellet will slip into
the bulge of the pressure cap. THereby the plunger will be released, hit
the primer cap below, and ignite without delay.
There are no additional safety features.
Shorter detonators are used for particularly flat mines.
1 - spring
2 - pressure cap
3 - safety pellet
4 - plunger
5 - fuse casing
6 - primer cap
7 - detonator
Technical Data
Measurements: 43/aprx. 93/0 13 mm
1 w/o/1 with detonator/0
Material: Metal (MV-5K: Synthetic material)
Priming energy: 68 N
Detonator: MD-2 or MD-6 (shorter)
Comments
The MV-5 pressure fuse is also used for makeshift mines.
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ODCSI ULO BONN
3.3.2.2 MVM (USSR)
Description
The safety bar connects the metal case to the plunger shaft. After the
safety bar is removed, the spring-loaded plunger shaft, is held by the
safety pellet. By exerting pressure on the case cover, the pressure cap
will move downwards until the safety pellet slips into the bulge of the
pressure cap.
Thus, the plunger is released and the ignition is tiggered.
,L=0)
k.7.11
1 - safety bar
2 - case cover
3 - plunger
4 - tightened spring
Technical Data
Measurements, 1 w/o/1 with detonator/0:
Thread:
Material:
Priming energy:
Detonator:
5 - safety pellet
6 - Primer cap
7 -.thread
Comments
Mines equipped with the MVM pressure fuse
after activation.
48/aprx. 98/0 70 mm
M 42 x 1.5
Metal
Unknown
MD-6
can be transported and
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3.3.2.3 Ro-3 (CSSR)
Description
On the Ro-3 pressure fuse the release pressure can be changed three times.
As soon as the safety shear bolt has snapped into one of the three notches
for the different release pressures, the fuse is activated. As soon as
the release pressure is exceeded, the safety bolt will shear off and thus
release the spring-loaded plunger, and the ignition will be triggered with-
out delay.
Technical Data
Measurements 1/w/o/1 with detonator/0: 90/aprx. 140/12 mm
Material: Metal
Color: Dark brown
Release energy: 8 - 40N
Comments
Used in anti-infantry mine STOKA-Mi
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CONFIDENTIAL
3.3.2.4 R0-7-II (CSSR)
Description
The RO-7-II pressure fuse which sits in a plastic container, consists
of only two metal components: a plunger head and spring.
As soon as the release energy is attained, first the shearing point
and afterwards the shearing ring will break. Thereby the plunger
spring is released, which drives the plunger against the detonator
and triggers the ignition.
There are no additional safety features.
31
With Detonator
2 .1 - Pressure Cap
2 - Plunger Spring
3 - Shearing Point
3 4 - Shearing Ring
5 - Detonator
5
Without Detonator
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3.3.2.4 RO-7-11 (CSSR)
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Technical Data
Measurements 1 w/o/1 with detonator / 0: 107/aprx. 157/0 17 mm
Material: Metal
Color: Dark Brown
Release energy: 36.5 N
Comments
Used for border mines PP-Mi-Sr.
CO NFID:N117-1
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3.3.2.5 Ro-8 (CSSR)
Description
?
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The Ro-8 pressure fuse is activated by a safety splint sitting on top
of the fuse case, near the holder of the pressure sensing device. After
the safety splint is removed, the plunger is held by safety pellets.
If vertical pressure is exerted on the sensing devices, the holder of
these devices will push the safety pellets into the bulges of the fuse
case and will thus release the spring-loaded plunger. The plunger will
then hit the primer cap and the device ignites.
11111111111111111111111111
? Malt/
CONFIDENTIAL
1 - holder of sensing
devices
2 - safety splint
3 - preloaded plunger
spring
4 - safety pellets
5 - plunger
6 - primer cap
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ODCS1 DLO BONN
3.3.2.6 Ro-9 (CSSR)
Description
The spring-loaded plunger is held by a shear pin. As soon as the re-
lease energy is exceeded, the pin is sheared off. Thereby the loaded
plunger is released and the device is ignited through the detonator
and booster charge.
There are no additional safety. devices.
Technical Data
Measurements:
1 w/o detonator / 0
Casing:
Release energy:
70/0 50 mm
Metal
Unknown
1 - shear pin
2 - plunger
3 - detonator socket
4 - preloaded spring
booster charge
Comments
Ro-5 without booster charge, otherwise identical to Ro-9.
Both fuses are used in anti-tank mine PT-Mi-K.
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3.3.2.7 Chemical Pressure Fuse (GDR)
Description
The chemical pressure fuse, made of synthetic material and bakelite,
is used in the plastic anti-tank mine PM-60 (GDR), if the latter is
layed by hand.
As soon as the release energy on the pressure piece is exceeded, the
acid capsule will burst and light the primer substance. The latter
will transmit the ignition to the detonator.
The removable ring around the pressure piece sitting on top of the
case secures the pressure fuse during transport.
Druckstiick
gelber Bund
Saurekapbel
Anziindreasse
Detonator
ci
IMP
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3.3.2.7 Chemical Pressure Fuse (GDR)
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Technical Data
Measurements: 69/aprx. 119/0 25 mm
1 w/o / 1 with detonator/0
Material: Plastic and bakelite
Color: Olive
Identification: Yellow collar
Comments
The outwardly identical mechanical pressure fuse (GDR) is used for
mechanical mine-laying.
All parts, except for the plunger spring and the plunger itself,
are made of plastic. The device is triggered by safety pellets hold-
ing the spring-loaded plunger.
Identification: Red Collar
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3.3.3 Pull Fuses
3.3.3.1 MUV (USSR)
Description
The MUV pull fuse is the most frequently used in Soviet border mines.
The fuse may be made of either metal or plastic.
The plunger spring is thightened and the detonator is screwed-in only
after transport. A spacer and an arming piece are additionally attached.
For activation the device, the spacer and the arming piece are removed.
After the pin is pulled, the preloaded plunger will hit the primer cap
and ingnite.
a) for b) unarmed
transport
c) armed
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hole for arming piece
pull pin
plunger spring
metal case
plunger plate striker
primer cap
detonator
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3.5.3.1 MUV (USSR)
TYPE I
Tin Plate
Technical Data
CONFIDENTIAL
TYPE II
Plastic
Measurements:
1 w/o 1 with detonator/0
Release energy:
Detonators:
Comments
None
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TYPE III
Hard Rubber
56/aprx. 106/0 13 -tam
TYPE IV
Thin Metal Plate
ION
MD-2, MD-6 and others
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3.3.3.2 MUV-2 (USSR)
Description
The MUV-2 pull fuse is an advanced development of the MUV pull fuse.
The MUV-2 functions according to the same principle as the MUV (see
3.3.3.1) but on activation delay is built into the device as an add-
itional safety feature. After it is activiated, a thin cutting wire
at the end of the plunger cuts a soft metal plate and thus delays the
ignition process. This accessory prevents accidental tripping during
transfer, concealment and activation.
Technical Data
Measurements:
1 w/o 1 with detonator/ 0
Material:
125/aprx. 175/0 12.2 mm
Metal
Release energy: 10N
Detonator: MD-2 and others
Comments
Mainly used in border mines POMZ-2M and RMD-6M.
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PAGE 53 OF 97 PAGES
IIR 2-196-0021-85
ODCSI ULO BONN
3.3.3.3 VPF (USSR)
Description
The VPF pull fuse is composed of three main parts, the fuse container,
plunger and trip component. In a dormant condition, the spring-loaded
plunger is held by a locking pin.
When activated, the pellet sitting at the end of the plunger is held
by the claw-like lower portion of the trip component. As soon as the
release energy is exceeded, the pellet is released and the spring-loaded
plunger initiates the ignition. The trip component reacts to the energy
pulled through the pull rings; side pressure may also initiate the fuse
through an extension bar attached to the trip component.
The fuse can be attached to the object with a special holder; it may
also be used in water.
The detonator can only be inserted on the operational site.
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3.3.3.3 VPF (USSR)
PAGE 54 OF 97 PAGES
HR 2-196-0021-85
ODCS1, ULO RONN
Technical Data
Measurements: 75/aprx. 125/0 15 mn
L with /L w/o detonator/0
Material: Metal
Release energy
- pull:
- side pressure:
Detonator:
36 - 64N
12.5 - 16N
MD-2
Comments
Used in border mines and explosive charges.
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PAGE 55 OF 97 PAGES
IIR 2-196-0021-85
ODCSI ULO BONN
3.3.3.4 RO-1 (CSSR)
Description
The pull fuse container is made of plastic; the other components of
metal.
The safety bar is also a trip device. Through the loop It can be
tripped by pull energy through the loop or by pressure through the
bolt pointing upwards. After the safet bar is uplled, the spring-
loaded plunger hits the primer cap and thus initiates the ignition.
1 plunger
2 spring
3 primer cap
Technical Data
Measurements:
1 w/o/1 with detonator/ 0
Material
4 holder for detonator
5 plastic case
6 safety bar / trip device
88/aprx. 138/0 12 mm
case: Plastic
plunger and other parts: Metal
+ Release energy:
pull/presure 10N
Comments
Mainly used in border mines PP-Mi-Sb and PP-Mi-SK, and as catch for
anti-tank mine PP-Mi-D.
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PAGE 56 OF 97 PAGES
HR 2-196-0021-85
ODCSI ULO BONN
3.3.3.5 M-49 (HUN)
Description
The M-49 pull fuse is constructed like the MUV pull fuse (see 3.3.3.1),
and the case may be made of either metal or plastic.
The plunger rod is activated by the pull pin. After the release energy
is exceeded, the pull pin is separated from the plunger rod and the
plunger will then initiate the ignition through the primer cap.
Technical Data
Measurements:
1 w/o/1 with detonator/0
Material:
Release energy:
Comments
Used for 11-49 and 11-62 border mines.
62/aprx. 112/0 15 mm
Metal or plastic
50N
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3.3.4 Tilt Fuses
PAGE 57 OF 97 PAGES
HR 2-196-0021-85
ODCSI ULO BONN
3.3.4.1 MVSh-46 Tilt Fuse (USSR)
Description
The MVSh-46 tilt fuse resembles a pull fuse. Through the steel cylinder
and the plunger retainer rod the force bearing upon the tilt handle is
transformed into a pulling force.
If a force bears upon the tilt handle from any direction, the plunger
retainer rod will be lifted together with the retaining device for the
safety pellets. In this case the safety pellets will fall into the
slot and will release the spring-loaded plunger, which will initiate
the ignition.
There are no safety accessories.
Knickstiel nicht icentifizierbares Loch
Stahlzylinder
Wirgekerben
Metallaullenhiale
Schlagbolzenrlickhaltestange
RUckhaltung fUr dieSicherungs-
kugeln
Sicherungskugeln
CORIFERTffr
Unlash?lzenfeder
Schlagbolzea
verbleite Kupferseabran u.Dichtuagi
00.
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3.3.4.1 MVSh-46 Tilt Fuse (USSR)
Technical Data
Measurements
1 without detonator/0: 202/0 77 mm
weight: 526 g
material: Metal
PAGE 58 OF 97 PAGES
IIR 2-196-0021-85
ODCSI ULO BONN
Comments
Used in TM-46 and TMN-46 anti-tank mines.
The MVSh-57 tilt fuse is constructed similarly to the MVSh-46; used
in TM-57 anti-tank mines.
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PAGE 59 OP 97 PAGES
IIR 2-196-0021-85
ODCSI ULO ROH?'
3.3.5 Delay Fuses
3.3.5.1 UZ-16-T Clockwork Fuse (GDR)
Description
The UZ-16-T clockwork fuse is composed of the following main parts:
- Case with cap
- timer with initiating device
- safety mechanism
- plunger with plunger spring
The delay can be set in 2-hour intervals for up to 16 days. For setting
the delay time, the cap is unscrewed, the fuse is removed from the case
and the delay time is set. The safety mechanism is activated auto-
matically as soon as the cap is removed. THus, the fuse is unarmed.
This safet mechanism no longer works for delay times of less than 5
hours. After insertion of the fuse into the case and attachment of
the cap, the fuse is activated.
The clockwork runs at 150 rpm and moves the tripping disk, which is
connected to the adjustable dial. As soon as the slot of the tripping
disk catches the tripping lever, the release pin will release the spring-
loaded plunger and initiate the ignition through the primer cap.
Activation
The exact ignition time cannot be set from outside. If the cap of the
UZ-16 T is unscrewed, the safety mechanism will be activated and the
fuse is secured. However, if the window shows that the ignition will
take place in 5 hours, the safety mechanism does not work when the cap
is unscrewed. In this case, the release mechanism and the plunger must
cautiously be pulled out of the tube. There is no other way to secure
the fuse.
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3.3.5.1 UZ-16-T C1ockwOrk fuse (GDR)
4.
CONFIDENT-IR
PAGE 60 OF 97 PAGES
I IR 2-196-0021-B5
ODCSI ULO BONN
Clockwork element
adjustable disk
tripping disk
tripping lever
plunger
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3.3.5.1 UZ-16-T Clockwork fuse (GDR)
4 -6
time marker
tripping lever
tripping pin
plunger spring
striker
primer cap
CONFIDENTIAL
PAGE 61 OF 97 PAGES
2-19.6.- non -85
ODCSI ULO BONN
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3.3.5.1 UZ-16-T Clockwork fuse (GDR)
Profile of the Plunger
tripping pin
cam of tripping
pin
plunger
plunger tripping lever
PAGE 62 OF 97 PAGES
IIR 2-196-0021-85
ODCSI ULO BONN
1,olt of tripping lever
cam of tripping lever
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3.3.5.1 UZ-16-T Clockwork fuse [GDR)
SAFETY MECHANISM of plunger
PAGE 63 OF 97 PAGES
IIR 2-196-0021-85
ODCSI ULO BONN
111111111111111111110111111111111111111111111111111111111111111
'U'
......,...
1...
7
S
UPPER PORTION OF SATETY MECHANISM
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fuse cap
fuse case
safety mechanism
Annotation: If fuse
cap is attached,
safety mechanism is
released and clock
starts to run.
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3.3.5.1 UZ-16-T Clockwork fuse (GDR)
Oberteil
Technical Data
Measurements
L without detonator:
0 cap / 0 shaft:
PAGE 64 OF 97 PAGES
Ilk 2-196-0021-85
ODCSI ULO BONN
Schaitt 0 -D
aprx. 130 mm
0 51 / 0 28 mm
Delay time: 2 hrs - 16 days
Setting intervals: 2 hrs
Material of case: AL-Mg
Label on upper portion: UZ 16-T
Comments
For delay times of less than 5 hours the safety mechanism no longer
functions.
The fuse can only be secured if it is removed from the case.
T he UZ-24-R Clockwork fuse with delay times of up to 24 hours; constructed the
same way as UZ-16-T.
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CONFDENTIM
PAGE 65 OF 97 PAGES
HR 2-196-0021-85
opcsr U1,0 RONN
3.3.5.2 ChMV-16 (USSR)
Description
The ChMV-16 clockwork fuse resembles the UZ-16 clockwork fuse (see 3.3.5.1).
Therefore function and use are probably identical.
24 Techaische Angaben:
- Abaessungen
L ohae Detonator
3. Anmerkunu
heiae
tw....,..,...?..:::..?,..?.?:71,?
Z1Mi.NInaMininsi :
1 MIIIIIMIII/SMI1111114. ,1
Mi .il? i
flIM?711111??=11
/
Auslbsesche
Aualbsehebel
' ccogeS
chLagbolzen
cklagbolzenf eder
nzlindhUt chez:
1 115/ 0 50 am
..,111-11.1CINI I 1/-4.c
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3.3.5.2 ChMV-16 (USSR)
Technical Data
Measurements
L without detonator / 0:
Comments
None
CONFIDENTIA1IIJ
PAGE 66 OF 97 PAGES
2-19.6-m21-85
ODCSI ULO BONN
115/ 0 50 mm
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3.3.5.3 UZ-60-T (CSSR)
Technical Data
Measurements
L without detonator
/0:
Delay time:
Accuracy of setting:
Clockwork accuracy:
label on upper portion:
Comments
None
CONFIDENTIAL
PAGE 67 OF 97 PAGES
IIR 2-196-0021-85
ODCSI ULO BONN
100/ 0 105 mm
Up to 60 days
1/2 day
6 hrs in 60 days
UZ 60-T
Schmitt A -
Sehlggholoupo . Stchermgr
0
Delaleabelna
Schlagbolzam a/chorus(
!Whiten:4**a
Zahlan auf lass/ ..... ale
(Mr. ? 21410
Zeit aasolier
Schmitt C - D
tottnostO
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3.3.5.3 UZ-60-T (CSSR)
Description
PAGE 68 OF 97 PAGES
HR 2-196-0021-85
ODCSI ULO BONN
The UZ-60-T clockwork fuse consists of the following Main parts:
- Case with cap and cap lock
- Timer with initiating device and securing mechanism
- Plunger
To set the delay time, the key is unscrewed. The timer will be set
with the key through an opening in the bottom. After the fuse cap
is removed, the desired delay time of up to 60 days, with a maximum
accuracy of 12 hours, will be set with the clock hand. The set delay
time can still be changed. The key is inserted through the primer
cavity in order to push the plunger upwards until the safety mechanism
is caught by the plunger. Thus, the plunger spring is thightened.
After the clockwork has reached the set time, the hand presses the
safety mechanism out of the slot of the plunger. The spring-loaded
plunger strikes the primer cap and thus initiates the ignition.
Kapp 000000 soled
Zunderaappe
--Zetkasetger
Zelt -Seale
Uhrwerk?Antrielmwelle
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Trlebrad S.
Zeitanseiser
Plats des Uhreerks
clehause
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PAGE 69 OF 97 PAGES
IIR 2-196-0021-85
ODCSI LILO BONN
3.3.5.4 ChVM-60 (USSR)
Description
The ChVM-60 is constructed in a similar way as the UZ-60-T (see 3.3.5.3).
Therefore its function and use are probably identical.
S.
Schlagbolzensicherung
chlagbolzen
Anziindhiitchen
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3.3.5.4 ChVM-60(USSR)
Technical Data
Delay time:
Comments
None
CONFIDENTIAL
60 days
CONFIDENTIAL
PAGE 70 OF 97 PAGES
IIR 2-196-0021-85
ODCSI ULO BONN
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CO NFIDENTIAI
3.3.5.5 Ch2-10 (USSR)
Description
PAGE 71 OF 97 PAGES
IIR 2-196-0021-85
ODCSI ULO BONN
The Ch2-10 clockwork fuse is used for the electrical initiation of
explosive devices and mines. This hand-set time fuse consists of a
mechancial delay placed in a metal container. A time disk and a
hand are located directly under the cover. Arrows on the dial in-
dicate the direction in which the hand moves. The hand is used for
setting the desired delay time of up to 10 days. A winding stem
with key is attached to the bottom of the fuse container.
Two cable to be connected to the electrical explosive circuit pro-
trude from the bottom of"the tylindrical container. After expira-
tion of the delay time, the clockwork release lever through the
spring-loaded contact closes the circuit and thus initiates the
ignition.
Deckelverschlua
Ste11zei6er mit St,-11.11opf
Elektroatschliisse
Technical Data
Measurements H/? 90 / 127 mm
Delay time: Up to 10 days
Clockwork accuracy: 4 hrs in 10 days
Container material: Steel
Comments
None
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3.3.5.6 ChZ-35 (USSR)
Description
PAGE 72 OF 97 PAGES
IIR 2-196-0021-85
ODCSI ULO BONN
ChZ-35 clockwork fuse is used for the electrical initation of explosive
devices and mines.
The ChZ-35 exists in either a cylindrical or a square shap, but the
functioning in both is identical. With six hours' deviation, delay
times of up to 35 days can be set with this fuse.
With the help of the set-knob attached to the hand of the clock, the
desired delay time can be set. In addition to the dial, the winding
stem and its key are located under the cover of the ChZ-35 time fuse
clockwork. When the delay time is over, the clockwork release lever
over a spring-loaded contacy closes the circuit and it is ignited.
It is possible to dectivate the ChZ-35 by cutting the electrical wires,
one after another.
Stellseiger mit
Stellknopf
eckelverschlua
Elektrokabel
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3.3.5.6 ChZ-35 (USSR)
Technical Data
PAGE 73 OF 97 PAGES
IIR 2-196-0021-85
QDCSI 1110 BONN
Round version
- measurements H/0: 88/0 90 mm
- weight: 3.4 kg
Rectangular version
- measurements L/W/H: 88/88/165 mm
- weight: 2.0 kg
Delay time: Up to 35 days
Clockwork accuracy: 6 hours in 35 days
Comments
None
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IIR 2-196-0021-85
ODCSI ULO BONN
3.3.5.7 EKhP Electro-Chemical Delay Fuse (USSR)
Description
The EKhP electro-chemical delay fuse is mainly used as a delay fuse
in detonation circuits in order to increase the safety.
The fuse consists of a spring-loaded contact which is kept open by
a copper capsule. If electricity flows between the copper capsule
and the surrounding copper sulfate solution, the copper capsule is
dissolved and releases the spring-loaded contact. The contact closes
the explosive circuit and it ignites.
The delay time depends on the temperature of the environment. At higher
temperature it is 10 minutes, at lower temperatures up to 4 hours.
federbelasteter Kontakt
Atif aidltra N
a voin a
leirt WM ? 1N?_
111.111111111t
Kupfersulfatlosung
AnschluBdrlibte :Ur
Zlindstromkreis
4.
Kupfer apsel
Rater Draht zur
Kathode
Widerstand
tterie
Under
Spriongkapsel
Zlindstroskreis
rliner Draht zur Anode
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IIR 2-196-0021-85
QDCST ULO BONN
3.3.5.7 EKhP Electro-Chemical Delay Fuse (USSR)
Technical Data
Measurements L/0: 50/0 15 mm
Delay time: 10 minutes - 4 hours
(depending on temperature)
Jacket: Tar board
%
Comments
Identically constructed but larger fuse
- Measurements L/0: 127 / 0 34 mm
- Delay time: Up to 4 hours
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3.3.5.8 EkhV Electro-Chemical Delay Fuse (USSR)
PAGE 76 OF 97 PAGES
IIR 2-196-0021-85
ODCSI ULO BONN
The EKhV electro-chemical delay fuse amy be inserted into an electrical
circuit as well as directly into mines or explosive device.
In the bakelite container, a copper wire holds a spring-loaded plunger.
At the same time the plunger serves as contact for the explosive circuit.
When exposed to electricity, the surrounding copper sulfate solution
will melt the copper wire and the spring-loaded plunger/contact will
close the explosive circuit or will initiate the primer cap of the de-
tonator MD-2. A build-in 1.4 V dry battery serves as the power source.
Depending on the environmental temperature, the delay time varies from
1 day to 120 days. There are no safety accessories.
Technical Data
Measurements L/0:
Material:
Comments
None
165/0 64 mm
Bakelite
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3.3.6 Special Fuses
PAGE 77 OF 97 PACES
IIR 2-196-0021-85
ODCSI ULC BONN
3,3.6.1 V:-1 Vibration Fuse (USSR)
Description
The )77.-1 vibration fuse sits in a round cardboard container. Its in-
terior consists of a hollow, thick-rubber disk. In the disk's center,
a Y-shaped metal vibrator is suspended horizontally from three horiz-
ontally attached fine spiral springs. A contact screw, to which also
one of the two leg wires is connected, vertically protrudes into the
hollow space through the upper rubber layer. It rests a short dis-
tance from the vibrator, The second leg wire is connected to one of
the fine springs so that the circuit is broken only by the small space
between the vibrator and the head of the contact screw. Both leg
wires are connected to an electrical circuit for initiating the explosive
charge. With traffic passing nearby, the vibrator begins to shake until
it touches the contact screw. This way it closes the circuit and
triggers the explosion of the detonator.
I - contact Screw
2 - vibration piece
3 - rubber core
4 - vibration springs
5 - fuse wires
6 - battery
7 - explosive charge
l_l_JINIrILJCIN I
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3.3.6.1 V1-1 Vibration Fuse (USSR]
Technical Data
PAGE 78 OF 97 PACES
ITS 2-196-0021-85
ODCSI DLO BONN
Measurements L/0: 30/ 0 90 ram
Container Material: cardboard/rubber
Vibrator Material: Metal
Comments
The vibration fuse VZ-1 can be used in so many ways that any type
of explosive charge or mine can be ignited with it.
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IIR 2-J9D-0021-S5
ODCSI Ull0 BON-l;
3.3.6,2 Ohl': Vibration Fuse 11255R)
Description
This vibration fuse was developed by the Soviets primarily for their
DM road mine. However, the GhVD is also suitable for other explosive
charges or improvised mines, and it is most effective on bridges and
in difficult terrain where vehicles produce strong vibrations.
The fuse consists of a cylindrical metal container enclosing a clock-
work safety mechanism and two (i.e. a vertical and a horizontal)
aluminum-coated sprial spring vibration contacts as well as a 4 Volt
dry flashlight battery. The colckwork safety mechanism activates the
fuse only after 4 minutes have elapsed. Vibrations make the spiral
springs shake until one of them touches one of the two contacts. This
closes the circuit and the detonator explodes.
Once it has been activated, the ChVZ is tremendously sensitive. And
if there is no possibility of cutting the short wires leading to the
detonator without moving the fuse or even shaking it slightly, it
should never be deactivated manually.
Under singebnut in PzAbwMine DM
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3.3.6.2 ChVZ Vibration Fuse (1199N)
Technical Dat.a
Measurements H/?
Arming voltage:
Delay time before activation:
Container material:
Label:
Comments
Used in anti-tank mine DM.
45 / 0 114
of 16 V for 5-10 s
Aprx. 4 min
PAGE BO of 97 PAGES
IIF 2719h-0021-B5
ODCSI ULO BONN
Black letters on container
(letters unknown)
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PAGE 31 OF g7 PAGES
2-19t-0021-83
QUEST MO EIM
3.3.6.3 UV}(-1 Auto-Fuse (USSR)
Description
The UVK I auto-fuse was specially developed for the bounding-type OZN
mine in border zones. This auto-fuse consists of a cylindrical metal
container enclosing the charge, a delay device, a detonator and a
booster charge. The device has two holes: One of them is usually
closed by a plug into which a mechanical fuse can be inserted. The
second opening is provided for the wires of an electrical detonator,
in case the fuse is to be electrically initiated. The electrical
or mechanical initiation will ignite the charge, which will ignite
the delay device. The latter will them burn-through in order to ignite
the detonator and thus start the firing sequence.
AssdLtflArMhta
Venal
m tisk. tladwas
A sUadhii t
ZUnciv or mos yr Sr
rat
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3.3.6.3 INK-1 Auto-Fuse (USSR)
Teahnical Data
Measurements H/P:
1 weight:
Material
Coments
None
CONFIDENTIM
92 / 0 119 mm
2.55 kg
Metal
CONFIDENT-Ai
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IIR 2 6-OQ21-E5
CDCSI, ULO DONN
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4. Demolition Acessories
4,1 Blasting Machines
4,1.1 PM-1 (USSR)
Descrintion
PACE 83 OF 97 PAGES
!IR 2-196-0021-5:
?GCS' ULO BONN
The blasting machine PM-i is a low-voltage blasting machine with
crank drive.
Technical Data
With the standard igniter cable 100 electrical detonators connected
in a series circuit can be ignited over a maximum distance of 2000
meters.
Comments
None
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IIR 2-196-0021-89
ODCST ULC HONti
4.1.2 PIM-2 (USSR)
Description
The F$J-2 blasting machine is a low-voltage blasting machine with crank
drive. The casing is made of aluminum.
teekir
uses I
Technical Data
With the standard igniter cable, 100 electrical detonators connected
in a circuit series can be ignited over a maximum distance of 2,000
meters.
Comments
None
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IIR 2-196-0021-85
ODCSI ULO BONN
4.1.3 PM-627 (USSR)
Description
The PM-627 blasting ?machine is a blasting machine with spring drive,
The metal ?casing contains a generator-ignition unit, a centrifugal
switch and a gear drive. After winding the spring, the ignition is
set-off with the plug-in handle.
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StickachlUmmel
Technical Data
With the standard igniter cable, 50 electrical detonators connected
in a circuit series can be ignited over a maximum distance of 2,000
meters.
Contents
None
CONFIDEN
Al
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4,1.4
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DEOS-25 (CSSR)
Description
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IIR 2-196-0021-85
ODOS1 ULO BONN
The DEOS-25 blasting machine is low-voltage with a rack-and-pinion
drive and a push-type handle.
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Technical Data
25 electrical detonators connected in a circuit series can be ignited.
Comments
The DEOS-50 blasting machine is constructed the same way. However,
it is more powerful and may ignite up to 50 electrical detonators
arranged in a circuit series.
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LIR 2-126-0021-85
02CSI 1110 BONN
4.1.5 RK-1 (CSSR)
Description
The RK-1 blasting machine is a capacitor discharge unit placed in a
waterproof hakelite container, This blasing machine can be used in
temperatures ranging from -40?C to +50?C.
Technitti Data
Measurements L/W/H:
Weight:
Voltage:
Amperage:
Output: 2 Ws at 1,000 V
250 electrical detonators connected in a circuit series can be ignited.
300/137/64 mm
1.74 kg
1,000 - 1,600 V
Max SO A
Comments
None
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Ilk 2-196-0021-85
0.217.5I DLO BONN
4.1.6 M-524 (GDR)
Description
The M-324 blasting machine is equipped with a crank drive.
Technical Data
Critical resistance:?
100 electrical detonators connected in a circuit series can be ignited.
t
.4
.4+4?,.?
510 Ohms
Comments
The M-514 blasting machine is constructed the same way, but it is
more powerful.
Maximum resistance: 1010 Ohms
200 electrical detonators connected in a circuit series can be ignited.
Other versions with the additional letter "5" are flameproof.
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LIR 2-196-0C.21,55
ODCSI ULD BONN
4.2 Igniter Cables
4.2.1 V-SUA Igniter Cable (CSSR)
Description
The V-SUA igniter lead consists of two-stranded copper cable.
Technical Data
Profile: 2 x 5 mm2
Length per drum: SOO m
Comments
In the Soviet Army, two-stranded wire on 100 M drums is used; single-
core cable with 200 in per drum is available as well. Telephone cable
is also being used.
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4.3 Ignition Equipment Packages
4.3.1 Demolition Equipment Package (GDR)
Description
The GDR's demolition equipment package
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IIR 2-196-0021-85
ODCSI 01.0 BONN
consists of the following parts:
1.
Canvas bag
B.
Cable jack-knife
2.
Small hammer
9.
Scissors
3.
Socket wrench
10,
Sealing compound
4.
11.
Insulation tape
Clamping pliers
S.
Combination pliers
12.
Cutting board
6.
Screw driver
13.
Sleeves/quick-connective
couplings
7.
Folding rule
Technical Data
None
Comments
Similar demolition equipment packages are used in the other WP forces
as well.
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IIR 2-196-0021-55
ODCS1 MO BONN
4.3,2 Denolition Equipment Package T CCSSR;
Description
The demolition equipment package of the Czechoslovakian People's Army
(CVA) consists of the following items:
Serial Number Type of Material
1 V-SUA Cable 500m
2 Cable drum with crank
3 RK-1 Blasting machin
4 VOMET Volt/OHM meter KM
5 Ohm meter
6 Tracing tape (cloth) 30 in
7 2 x metal measuring tape
8 Insulation tape, 10 in
9 Sealing compound
10 Flashlight
11 Wire-skinning pliers
12 2 x clamping pliers
13 Combination pliers
14 Plumb bob, 20 m
15 Bag with screws and clamps
16 Bag with quick-connective couplings
Technical Data
None
Comments
None
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HR 2-196-002
ODC5I ULO BONN
4,3,3 Demolition Equipment Package (GDR)
Description
The demolition equipment package is contained in a wooden box and
consists of the following items:
50 electrical detonators (in original wooden package)
50 non-electrical detonators (in original wooden package)
2 reels of detonation cord
I reel of safety fuse
The box is marked by the Roman number "VI" on a white background.
Technical Data
None
Comments
Similar demolition equipmentpackages are used in the other WP armies
as well,
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4.4 Charging Accessories
4.4,1 VOMET Volt/Ohm Meter
Description
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I1R 2-196-0021-85
ODCSI ULO BONN
The VOMET Volt.Ohm meter consists of two devices; the Ohm meter and
the Volt meter. The latter sits in the cover of the Ohm meter.
Depending on the blasting machine used,a corresponding Volt meter is
applied.
Technical Data
Ohm meter
measuring range:
- smallest reading:
0 - 5,000 Olin
0.05 Ohm
Volt meter for
- dynamo-electric blasting machines: 100 - 300 V
- capacitor discharge unit: over 1,000 V
- D.C.: 0 - 150 V
- A.C.: 0 - 500 V
Comments
None
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1IR 2-196-0021-85
ODCSI DLO :BONN
4.4.2 Gar Lightning Protector (USSR)
Description
The lightning protector GZU is designed to protect igniter circuits
of mines and explosive devices against premature ignition by lightn-
ing or other tyTes of stray voltage exceeding 60 V.
The lightning protector consists of a cylindrical bitumen-insulated
container enclosing a neon tube with a 60 V ignition voltage and an
impedance coil with a resistance of ID Ohm. The lightning protector
is built into the ignition circuit.
Getiiuset
Technical Data
None
Comments
None
a
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selspule mit
Neseriihre
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4.4.3 quick-Connective Couplings CUR)
Description
Quick-connective couplings are used
each other or to the igniter cable.
and insulated on the outside.
The open ends of two cables in the
and placed in the quick-connectibe
the middle.
Technical Data
None
Comments
?None
PAGE 9S OF 97 PAGES
IIR 2-196-0021-85
ODCSI ULO BONN
to connect firing cables leads to
The sleeves are made of alloy
ignition circuit are twisted together
coupling, afterwards it is bent in
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nR DEN DIENSTGEBRADCH A
AbkUrsuagen tied Uberaetzunges fUr
ge
PAGE 96 OF 97 PAGES
IIR 2- 6-002}
COGS' ULO BONN
0
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CONFIDENPAL
INTELLIGENCE INFORMATION REPORT
SUPPLEMENTAL DATA
Individual Items Of This Report Are
LINCLASSIFED Unless Otherwise Indicated
REPORT NO: 2-196
PROJECT NO: 9113-00 (01
SPECIAL INSTRUCTIONS: DIRC CY EDN
PREPA SC TE, 05-07
DCS1 ARUM n Officer, Bonn
?C) ENCLOSUR
DISTRIBUTION BY ORIGINATOR:
DIA (Original)
3-0DCSI USAREUR, C (R) , CI (AN)
1-CDR USAFSTC, DRXST- I5I
1-66th MI GP, I XGPE-OS
1 -EUCOM ECJ2
1 -USAITAC IAX-P-CT
1-OR V CORPS 02
1-COR VII CORPS S2
1-HQ USAF El 1NRMH
1 -USAFECINOAS
5
4
3
2
OD FORM
I DEC 71
-S
CONFIDEN
COLL MGMT CODES: None
REQUEST EVALUATION: =V CN
Request Evaluation Releasable To: FRC
G-FST-42948
ECT/LOCATION CODES
(For DIA Use Only)
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