SCIENTIFIC ABSTRACT SKVORTSOV, A.A. - SKVORTSOV, A.N.

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December 31, 1967
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SCIENTIFIC ABSTRACT
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Preheating of Metal. (Cont.) sov/4865 and stampings and measures for preventing loss and decarburization of metal during heating are described. No personalities are mentioned. There are 53 references, all Soviet (including one translation from German). TAELE OF CONTENTS: Introduction Ch. I. Physical and Mechanical Properties of Metals and 3 Alloys at Various Temperatures 5 1. Basic considerations 5 2. Coefficient of heat conductivity 6 3. Enthalphy and heat capacity 13 4. Volu tric (unit) weight 20 5. Coefficient of the temperaturi- conductivity 25 mss 1 mot m-wirmov SOV/4j43 3~eBuhanjjs po tooril litty"kh prots.ss." )d 'JoadcohWo probsomfiF v "t.Ilakh. trudy sovoshchaniya (Shrinksg" Pruceas Metal..; Trtosactia" of the ThArd Conference on the Theory of Costing P'r.4,01:311-) Mzs:aw, a SSM, I9W. 2EI p. t-mto Plip inserted. 3,00a copies printed. Sponsoring Agentys Akm4emlya nauk SSIR. Institut mashinovedeAiya. tomismiya Po tokh,ologii uAshillos-myeraya. tk-;:. Li.t B.B. Gullalvv, Doctor of Technical sciences, PrOrossor; 34. of publish- Ing Zoa.ao~ V.S. Isboandk-1 Toch. Lt., T.V. P.IyLk-%. Pt-,R?=i This collection or articles to intended for scientific workers, engineer', taah.lei- w. ~.=tifli -rob institutes and industrial plants, and for f--.Itr -bore or ftboalx of blcb.r dw.tloa. COMUGS1 the collection cmt&iw technical papers presented at the =rd Cofor-oc# on the Theory of Costing Precooses, artamlsod bj, Litay"Is ..ktsiy. ums.tt P, t.Xh,malacii mswncstroysmlj~ lastituta "ohloorodenlya AN SSSR (Costing Section of the consaission for Kebl-a-BuIldin Technology of the Institute or Sol.-. a Machines, Aced-Y or sclacc.s WMI and by Infititut, xv-..IIurg!l sconj Uyk.~4 0 S&'M IlDstitutt of 14tellurgy i.-Al A.A. Uyk.,, kcadsay of Sri ...... USSR). Th. most serious dsrwto to c&2tIAts,icgOt', and welds so a result of metal shrinkage are rWwod. Feetats contributing to the raroation or hrjok&Ro c-Itles, P~rowy. cracks, fissures, d4stor'.1oft, and Internal stresses are =&lY2Qd along with *Gav~om tell- to Pr.1-t and rm*dy th- Th. hyd.rdj- manice of 'ealt"% sotAls and the prccess cc solidification of 2etqls sr" d..- cue-1. Also presented - -solutions adopted st the Conference with rogsrl to the probl" of strickago 4.2 .4tals. No persomlities are m-ticned. 11,ost V.;.r. ar. szaa~64 by t1blicCraphia reforences, the "j.rity of which are lh~tl or CMMTS' D'a, no P'~b"':; In 71'~It.ll 3 SKA:T-L= CVI-M;S of 5.1idific%tIan C-ditic.a 0 -.1. an' B.-I, qi7;Ic' at.. Ca'It-* In 3- 6.1 Cast lots 19 xharol, I.?'- P=a..r.-... or Best-FLIsIstant Alloys `0 Xlo~hn X ErP'ria"tal Ialsstlg4tion of ShrizkRgo - ~'m- Cast IC4M V' tl SA-mid-l Graphite 5.7 -"Y" yet" and Ailey Shri-k-P Ard Its Datermanation 61, II. sMNIAGz Poaosirz P'At-~ B.B. 5ulM-1. Aiml Shrink.,. Porosity 1. Wall, Or Steel C-3tin's 74 T' gii - ~:z7 In-stig-tim or shrinkp porosity i 4'3-' lnvestil'""On Of the Effect Or Fro-sur. D-Cauz- nmr-rrcma Way C"- lzgs 77 Y a- C' I- the D-31tr or Alamicus Allay Casting, 11Z 7 -zd T..L. Bibllt- Fams"y in Castings Of Ways of the CIUM IN CASTINGS AND V=tO JOINTS -Putlt srn, I -A. of S-4 "4t4llurgical and Factors on Fo* Creaks 1. Steal Casting. 133 On got Cracks in Ca.tlrLs 141 '!j'alsk1f. I.L., . 'd 7-7-9-1122T- Study Of Causes of Subsurf.c. Fla._. 7.-"T ingots 147 V.S. -ShftotsCs P%_accagna I. Continuous jt.ol Ingots 152 rao - ca"'ati- 5-t-n the cm-c U&i-- Or C.ntlnuoqs "tion of Cracks and rin.u,ra. 163 Card 4/6 --g!OR~SOVO A.A.-. Solving the problem of metal solidification in the temperature ranp,-. Lit. i)rolzv* no.6:17-49 JA 160. (MIRA 13:8) (Solidification) (Founding) 8/148/160/000'/007/02u/023/XX A16l/AO33 AUTHORS: Akimenko, A. D., Skvortsov, A. A. TITLE: Heat transfer in the secondary cooling zone In continuous steel casting. PERIODICAL: Izvestiya vysshikh uchebnykh zavedeniy. Chernaya metallurgiya, no. 7, 19160. 54 - 59 TEXT: The Gor'kiy Polytechnic Institute had been commissioned by the Tsentral'nyy nauchno-issledovatel'skly institut chernoy metallurgit (Central Scientific Research Institute of Ferrous Metallurgy) in 1959 to carry out an investigation of heat transfer in the continuous steel casting process. The experiments had been described by A. D. Akimenko and A. A. Skvortsov. (Ref ' 1: Nauchryye doklady vysshey shkoly. Metallurgiya, 1959, No. 2); they consisted in the jet cooling of the ingot specimen by water, compressed and fan air, and an air-water mixture on a test stand without support rollers. The developed method of determining the heat transfer factor was checked in a continuous casting Installation at the "Krasnoye Sormovo" plant. The heat transfer was Card 1A) 3/148/60/000/007/020/023AX Heat transfer in the secondary M61/0333 measured In the z-_condary cooling zone, and the heat transfer drop through the supporting rollers was taken into account by the factor CL actual evap CLcalculated The K evap was determined in the real working unit ard In a stand fitted with support rollers. The real heat trarsfer in the working unit was calculated by the heat volume removed by cooling water from the ingot: CL G[(l - x) - (r, 2 -t1 ) + x(640 - t I Kcal/M 2 . h 0C , W act-ual~ F(t~ urf -t 1) where G Is water consumption measured by flow meter, kg//5 t2 and t the end and the start water temperature,OC; F - cooled surface, tsurf - mean sur- face temperature OC; X = 2 - the relative water quantity turning into steam G during the secondary ccoling process (D - the absolute quantity of formed steam, kg/h). The measurement results were (the mean of 11 tests): 1) Ingot Card 2/ 9 s./148/60/000/00'(/020,"023/xx Heat transfer In the secondary ... A16IIA033 stretching speed a = 0.7 m/nLin; 2) water temperature on the input tj = 23c; 3) water temperature difference at = t2 - tj = 250; 4) specific water con- sumption QB = 22 m3/,.2h, F 5) mean temperatqre of cooled surface t,,,-f = 6300; 6) mean actuall heat trans- .L - hPC; vaporation factor x = 2.8 fer factor cLactual = '500 Koal/m2 7) e The evaporation factor increas d-With w-'reducing speolfic water consumption and reached 12 % and higrier at 5 m;/m2/h. The knowledge of the x factor Is of practical interest for th-6 designing of fan systems for continuous casting units. Thue it IS-planned-to build a special installation for the condensa- tion of st~-am a'. the new unit under construction at the Stalinskiy metallur- gicheskiy zavod (3talino metallurgical plant). The Kwcn (Kevap) was also de_ termined in the, laboratoy-7, on a stand imitating a real, unit.. The dimension- less center temp6ratur-e- and the Fourier criterion were determined by a temper- ature diagra:T., and t',.he Bic (Russian tranzliteration) -criterion'by- the known Q D. V. Budrin diagrams (Ref. 1). The determined K f is shown in evap Card 3/9 s/i 48/60/000/007/02Q /023,,~a Heat ty-ansfer in secondary .... A161/A033 Figure 1. The Novotullskiy metallurSioheskiy zavod (Novotpila Metallurgical Plant) uiFas the rolier cooling methcd without jet developed by TaNIECIP-M, con- sisting in pouring water on the supporting rollers from special collectors under slight presnure. This niethod was also studied on a laboratory stand. The results are given (Pigurp 2). The water consumption is lower with this method, but the coollhg intensity cannot be sufficiently controlled. The effect of tfte spacing cf the support rollers was studied, and the XF factor (cooled surface utillzatiqn factor)'wa5 determined- S --d S where S - rollez, pitch; d diametei. of support -j~olierls. The actual KF value varies in the operating units and the new ones under oonstruction: -d S YI_ at "Krasnoye Son7!ovo" - .......................... 110 130 0,353 at th-e Novotula Metallurgical Plant ............. 110 150 0.265 in units under'-ocnstiraot-Ion ................ .... 110-130 140-210 0.215-0-238. Card 4/ 9 Heat transfer in tPe seconda':,v S./148/60/000/007/CQO/023/XX A161/AQ33 The results of 'the stand tests a~,& given (Figure 3). The formula used for the recalculation of stand teZt results for the full-scale roller cooling unit is t V ) Ll C12 C"I A 'Ei 2 f2 . KpKevap (4) (y), T2 F where OL2 the hesA tr,~L"fer factor In operating unIts. Kca.1 OC; a 1 - the heat transfer factor durIng the oooling of test specimen, determined by Figure 2; (FVP Iff) the respective relation of volume to surface of the specimen and the 2 F ingot; IC I, T2 - the cooling time of the speolmen and the ingot, 12, T, - spe- cific gravity of the specimen and the ingot; A12,Ail - heat content variation in 1 kg metal In the secondary cooling zone and on the stand (full data for cal- culating the &I value &re given In Ref. 1). The correction factor for water presslire before -,hle jetz I--- sal.culated by the emphirical formula 0.25 (5) Card 5/9 s/148/60/()00/OO7/O2Q/O23Ax Heat transfer In Lh-e aei~~ondary A16l/AO33 For oooling through rollers without nozzles, KP 'ar 1.0, and Kevap is found from Figure 1 (KP 15 --till to be deter-mined. with more aesDracy, it may be assumed to ~ b - -2 1.0 In fir-~t approx1marion). Thp method permits the determination of basic data for the designing of new continuous casting units. There are 3 figures and 2 Soviet-bloo raferences. ASSOCIATION. Gor`kov:E~kly politekluitcheskly Institut (Gr-"R-1v Po1vt6ohnietal In- SUBMITTED, Juns PD-, IS959 Card 6/9 S/182/60/000/011/012/016 A1061/i029 AUTHORS~ Akimenkoj A.D.9 Kuzelev, M.Ya., Skvortsov, A.A. TITLE- Experimental Investigation Into Heating of Steel Blanks for Forging and Stamping in Molten Salts PERIODICALt Kuznechno-shtampovochnoye proizvodstvo, 1960, No.11, PP-40-42 TEXTY Information is given on experiments at the "Krasnoye Sormovo" works with forging blank heating in molten salt bath heated to 1,300 OC. Two salt mixtures were usedi a) 30% BaC12 and 70% NaCl and b) 70% BaC12 and 3eb NaCl.. Cylindrical specimens 10, 20 and 30 mm in diameter were heated to 'L,200-1,2500c,. The results confirmed the data obtained by LPI and NZL (Ref. 1). The heating time is 2-3 times shorter than in a chamber furnace; heat losses from the bath surface can be reduced to minimum by using bath covers and covering the bath surface with a layer of graphite powder. The heating costs are approximately the same as in furnaces butthe salt bath has technological advantages, The power characteristic of the CO-2 (SP-2) electrode bath is given (Fig, 1); its efficiency at the rated work capacity of 30 kg/hour is only 20-2 % and decreases abruptly with Card 1/ 9 S11821601000101110121016 A161/AO29 Experimental Investigation Into Heating of Steel Blanks for Forging and Stamping in Molten Salt reduced load, Special bathswith higher efficiency (35-40%) are possible in principle. The heat release coefficient from the liquid salt'to the metal was determined in the following manner. Using the temperature diagram (Fig: 2) in the specimen center, 19 = (t med tcent)l (1) (t med tcent )init where (-t med - tcent)l is the real (varying.) difference of the medium and the specimen center temperature; and (t med -tcendinit the initial difference. [Abstractorls notez subscripts med (medium)9 cent (center)p init (initial) are translations from the Russian ep (sreda), q (tsentr), ,,,,.,4 (nachal~,nyy)j. Knowing the 0 values and the Fourier criterion (Fo), the known D.V., Buarin diagrams may be used for finding the Bio (bi) Card 2/ 9 criteria, but in view of low Bi S/182/60/000/011/012/016 A1061/A029 Experimental Investigation Into Heating of Steel Blanks for Forging and Stamping in Moltan Salt values in the experiments (10 and 20 mm blank diameter), a formula from Ref, 2 was used for the calculations fe -2FoBi (2) Using the obtained Bi value, the mean heat release coefficientctjs found in the interval from the initial to the final temperature of the center (or the surface), tl4n istM Or- dt' true (3) 2 tinit where (T'2 - TI) is the heating efficieny. [Kbstractor's notes Subscripts fin (final) and t (true) are translations from the Russian ,,(konechnyy) and (istinnyy~ue '"he 'mean values of the physical material constants j in the given tempeiature interval must be substituted for calculation of Card 319 S/182/60/000/1)11/012/016 A161/AO29 Experimental Investigation Into Heating of Steel Blanks for Forging and Stamping in Molten Salt the Bi and Fo criteria. The determined mean heat release coefficient values are shown (Fig, 3) in the form of the relationoe, M = f(t mead. n ,Abgtractor~s note? Subscript is a translation from the Russia CP mean (sredniy)j. (The diagram includes data obtained by V~F. Kopytov (Ref- 3) and D.V. Vishnyakov (Ref. 4)'. Vishnyakov obtained a higher heat release coefficient using pure BaCl 2.) The heating time for blanks can be calcu- lated knowing the heat release coefficient. The calculate I time (T ) for cylindrical blanks from 40Y (40Kh) steel at ~Ycm,=500 kcal/m -hr-degree is given (Table 2)~ Heating Time in seconds for blanks diameters temperature 30 mm 20 mm 10 mm, 0 r. 1,200 160 110 56 1,100 go 60 30 1;000 70 47 23 Card 4/ 9 S/182/60/000/0:Ll/012/016 A161/AO29 Experimental Invebtigation Into.Heating of Steel Blanks for Forging --nd Stamping in Molteh Salt The theoretical calculation with convective heat exchange formulae 'in liquid media gives exaggerated figures, which can be explained by the thermal resistance of the solidified salt layer. The following conclix- zions are dra-,rn: 1) the method is applicable to practice and has teohn'o- logical advantages; 2) the mean heat release coefficient frcmothe bath' to the. metal in NaCl +BaC12 at a bath temperature of 1,200-1,350 C is,~~ M rz kcal/m 2.hour - degree; 3) the obtained data make possible the cal- -ICG culution of he.Lting process variables. Engineers N.P. Kashcheyeva, V.'J. Keplyev and G.N. Khoperskaya took part in the experiments. There are 4 fi.Sures und 5 Soviet references. Card 5/9 KUZELEVI Mikbail YakovIevich; SKVOiffS-OV.%-AIeksey Anatollyevich; ,q.:ELYAKOV., Nikolay Niko--layevich; DUBlTSKD-', G.M., doktor tekhn. nauk, retsenzent; ZOBNIV, B.F.x kand. tekhn. nauk, retsenzent; KOROTKOV, V.G., kand. tekhn. nauk-, retsenzent; LEVCHEI-IKO, P.V., kand. tekhn.nauk, retsenzent; IUMIN, P.I., kand. tekhn. nauk, retsenzent; PASTUKHOV, A.I., kand. tekhn. nauk, retsenzent; PORUCRIKOV, Yu.P., kand. tekhn. nauk, re- tsenzent; ROZENBERG, I.A., kand. tekhn. nauk retsenzent; SERGEICHEVI N.F., kand. tekhn. nauk, retsenzent; FILIPPOV, A.S., kand. tekhn. nauk, retsenzent; YAROSEENKO, Yu.G., kand. tekhn. nauk, retsenzent; BAZAROVA, N.V., inzh., retsenzent; BLANK, E.M., inzh.., retsenzent; VOLPYANSKIY, L.M.., inzh., retsenzent; ZAYJIAROV, B.P., inzh., retsenzent; MYSHALOV, S.V., inzh., retsenzent; RAZUYOVA, M.S., inzh., retsenzent; SHABALIN, L.A., inzh., retsenzent; SHhUNDI, R.M.,, inzh., re- tsenzent; DUGINA, N.A.,, tekhn. red. [Handbook of foundry practice] Spravochnik rabochego- liteishchika. Izd-3. Moskva, 1-fashgiz, 1961. 584 P. (MIRA 15:4) (Founding~-Handbooks, manuals, etc.) SKVORTSOV., A.A. Formation of a continuous, flat steel ingot and the occurrence of defects on its surface. Izv. vys. ucheb. zav.; chern. met. 4 no.7:78-87 161. (MIRA 14:8) 1. Gortkovskiy politekhnicheskiy inatitut. (Steel ingots-Defects) (Continous casting) S/148/61/000/010/001/003 Elll/E435 AUTHORS: Akituenko, A.D., Skvortsov. A.A. TITLE. Heat transfer in moulds for continuous casting of steel PERIODICAL: Izvestiya vysshikh uchebnykh zavedeniy. Chernaya metallurgiya, no.10, 1961, 29-36 TEXT,. The authors give results of their further investigations on heat transfer in continuous-casting moulds for steel. Simultaneous solution of equations for the heat flux from the wall to the cooling water and in the copper wall, combined with the equation for heat flux from the liquid metal to the wall,gives a system independent of the outer temperature of the wall. Fig.1 shows the overall heat transfer coefficient in kcal/m hour deg (allowing for the extent to which the lubricant burns away on the walls) as functions of the water flow rate at the wall (m/sec); curve 1 relates to a turbulent, curve 2 to a laminar boundary layer. These results, those obtained on a hydr;iulic model (Ref.3: A.A.Skvortsov, A.D.Akimenko, Izv VUZ Chernaya metallurgiya, no.3, 1958) and others indicate that for the direct-contact zone, the overall heat transfer coefficient is 1600 to 2000kcal/m2 hr OC. Card I/ ", Pi Heat transfer in moulds ... The main heat removal occurs in the between the skin and the mould wall. found from the equation 61 = 0.5klin I tliq - (tliq + s/148/61/ooo/olO/001/003 Elli/E435 second zone, through the gap The gap width 61 is tsurf)0*5] lo(P (10) where klin is the coefficient of linear expansion of the steel; tj_j~,,,its crystallization temperature, *C; tsurf the crust SUr e temperature; the initial length of the side perpendicular to the gap walls, mi y a coefficient allowing for other factors. The equation also enables the limitIng taper of the mould to be calculated: this is shown in Fig.3 as a function of the billet surface temperature as-it leaves the mould. The authors used a hydraulic integrator to find the billet surface temperature along the mould for mould length of 1000, 1250 and 1500 mm and withdrawal rates of 0.6, 0.7 and o.8 m/min. At the same time, beat balances for forty heats on 420 x 175 mm slab moulds at the "Krasnoye Sormovoll works were compiled. 11,-Iould lengths were 1250 (shortened) and 1500 mm (standard) with mould water flows of 118000 and 121000 kg/hour. The average valuesof Card 2/jq Of the s/i48/61/000/010/001/003 Heat transfer in moulds ... Elll/E435 heat transfer in the mould. A.I.Veynik is mentioned in connection with his work on heat transfer coefficients. V/ There are 8 figures and 9 Soviet-bloc references. ASSOCIATION: Gorlkovskiy politekhnicheskiy institut (Gorlkiy Polytechnical Institute) SUBMITTED.~ November 25, 1960 Card 4/5';! AKDMKOI A.D.9 dotaentp kand.tokhn.nauk.; SKVORTSOV9 A.A., doktor tekbn.nauk - --- Capacity of water sprayer nozzles for continuous steel casting equipment. Stall 21 no.2:124 F 161. (MIRA 14:3) (Continuous casting) (Metallurgical furnace-Cooling) ,r TIKOV, A.Ya. AKIM.ENIM, A.D.- KUZELEV, M.Ya.; SKVO'~LTSOV, A.A.; YMOISHCIIEVI, Heating blanks for forging and die stamping in a nono-m-Ldizing 0 heating compartment furnace. Kuz.-shtam. pro-izv 4 no.6--40-4? Je t62. (MM- 15:6) (Rumaces, Heating) SKVORT-DVI ALA,. fSkvortsovI A.Aj Fonmtion of ilia cow,-Lnuously flat ste~!l ingot, and appearance of defects on Its eurface. Analele metalurivie 16 no.1:35-45 Ja-Mr,'6,9, SKVORTSOV, A.A. Solidification of square section steel e"tings. Izv- vys. ucheb. zav.; chern. met. 5 no.10:155-165 162. (MIRA 15:11) 1. Gortkovskiy politekhnicheskiy institut. (Steel ingots) (Soli4fication) AKIMENKO, A.D.; RUKAVISMUKOV, L.G.; SKVORTSOV, A.A., doktor tekhn. nauk, otv. red.; KOZYULINA,11r-R--1rea-.---- [Temperature measurements; laboratory work on the course "Control and automation of technological processes"] Iz- merenie temperatur; laboratornyi praktikum po kursu "Kontroll i avtomatizatsiia tekhnologicheskikh protsessov." Gor1kii, Gor1kovskii politekhn. in-t, 1963. 67 p. (MIRA 17-3) SKVCjRTSOV, A.A. Solidification o'L steel ingots of rectangular cross seqA4on In continuous casting equipment. Izv. vys. ucheb. zavi; chern. met. 6 no.9:68-76 163. MIRA 16:11) 1. Gorikovskiy politekhnicheskiy institut. AccEssim mt APW34599 S/0182/64/000/00/0037/00381~ :AUrHORSt Akimon1coO A. D.; Kozlov, A. I.; Skvortsov, A. A. :TITLE.- Irrrestigation of heating steel objects in molten glass SOURCE: Kuznechno-shtampovochnoye proizvodstvo., no. 4, 1964o 37-38 TOPIC TAGS: stool, steel heating; molten glass, thermocouple FPO potentiometer EPP 09 M, heat convectionO steel U8, steel 35, Fourier criterion n ABSTRACT: Results obtained in experimental heating of steel objects in molte :.glass prior to forging and stamping are discussed. Samples were held in C'hamotte ','icrucibles and were heated at 1150-1250C in a silicon carbide furnace. The temper- :~'aturo at the center of a sample was measured with a themocouple PP connected to ,:,an electronic potentiometer EPP-09-M. Samples were made of steel 35 and steel U8 ,cand were either 12 or 25 mm in diameter. The glass consisted of 72% Si02s U 1:NaO, 7% CaO, la KgO, 2.8% A12 0 Dimensionless center temperature and Fourier 03 !number were determined from the temperature diagrams., while D. V. Budrin's charts ~or the formulas for thin plates (at a low Bi concentration) provided' the coefficient- . of heat exchange. This coefficient"proved similar to that obtained in air at n8w, ~.It dropped at the beginning of heating due to the formation of a viscous gum 183W, - - - - - -- - - - AKIHENKO, A.D.; ASntGV, Ye.1.1._~EORTWV A,,A.-, FOLUSHKINO N.A.; KLIPOV, A.D. Effect of the Intensity of secondary cooling on the quality of continuous casting. Stall 24 no.12:1088-1089 D 164. (MM 18%2) 1. Gorlkovskly politekhnicheakiy institut im. Zhdmoval T-3entr&llnyy nauohno-isoledov-atellskiy institut. chernoy metallurgli imeni I.P. I Gorlkovskiy metallurgicheskly zavod. SKVN%T~ V)V ; A. I A.. "Heat transfer and solid-'flcation in. the Continuous castirg of Steel." report sWorruitted for Int! Ccrif on, Continuous Cast-ing of' Ferrous and Non-Ferro-As iulo-.,;s, Bir-maintgnam, U-K, 21-~1-30 Apr 196:1, Garkiy Pol,,itechnical inst, Gorkiy, USSR. 7t~ MUM Ad6ESSION NR: APOIO183 560 ' i4oo to IN, CC t avp rig, 1. o,, vs. the.temperabike of molten dess 4 Car L 23057-66 EWP(e)/EWT(m)/EWP(w)/T/EWP(t) JD/Wff ACC NRi AP5028996 SOURCE CODE: UR/0182/65/000/009/0037/0038 AUTHOR: Akimenko, A. D.; Kozlov, A. I..; Skvortsov, A. A.' ORG: none f" TITLE: Features of the heatin f steel blanks in molten glass SOURCE: Kuznechno-shtampovochnoye proizvod.stvo, no. 9, 1965, 37-38 TOPIC TAGS: molten glass, glass, metal heat treatment, carburization ABSTc-uLCT. The article is a rebuttal of the critique offered by Ye. G. Shadek in thc: same issue of Kuznechno-shtampovoye proizvodstv p 36. It.is admitted that Shaduk -Is right in pointing to the considerablef arburization occurring.during the iniual experiments of the authors, but such carEurization was of, a KlGl rather than integral character. Further, owing to the inhomogeneity of the meta a large number oi complex multi-electron elements forms at the a .ture ccurs chiefly along grain boundaries, with transition of the anode Fe to fie-melt, follow- ing the reaction Fe-2e - Fe+2 and release of gaseous constituents at the cathode. Hence, there is reason to believe that, contrary to Shadek's assertion, the elec- trochemical interaction between the glass melt and metal occurs in any case and not solely when the Na 20 content of glass is less than 25%. It is shown that weight loss -Card 1/2 UDC 621.783.2 L 23057-66 ACC NR- AP5028996: referred to unit surface area of the press-and-forge blank in g/cm2 is a better indicator of the heating of this blank in molten glass than loss in percent of the blank's weight. On continuing their previous experiments (A. D. Akimenko, A. 1. Kozlov, A. A. Skvortsov. Kuznechno-shtampovoye proizvodstvo, 1964, no. 4; 1964, no.11) the authors developed under laboratory conditions an easily fusible glass in whilh heating of the metal blank results in a metal weight loss of less than 0.01 g/cM at 1250% after -30 min while at the same time markedly reducing the c4rbuKizstil.~,'. of the metal-.Orig. art. has: 1 figure, 4 formulas. SUB CODE: 11, 13, 20/ SUEN D&TE: none/ OILIG PIF: 004/ OTH RIF: 000- Card 2/2 IW ------- ---L-230 58 -_66- - ___E'iVP (e_)/ENT (m)/T/_7A'1P t-)-- -JD/711U- ACC NR: AP5028997 SOUACS CODE: UR/0182/65/000/009/0038/0041 AUTHOR: Kozlov, A. Z.; Skyortsov, A. A# ORG: none TITLE: Semicontinuous furnace for oxidation-free heating of steel billets with molten glass in the maxim-temperatiii-e-io-W SOURCE: Kuznechno-shtampovochnoye proizvodstvo, noo 9, 1965, 38-41 TOPIC TAGS: molten glass, glass, metal heat treatment, heat treatment furnace, heat transfer ABSTRACT: On the basis of their previous investigations (Akimenko, Kozlov, Skvortsov. Kuznechno-shtampovochnoye proizvodstvo, 1964, no. 4; 1964, no. 11) the authors I developed, built and tested an experimental semicontinuous furnace with a product- ivity of 550-650 kg/hr (Fig. 1) designed to heat *billets of steel 45 measuring 286xlO5x28 mm. The furnace interior is 2.8 m long, 0.6 mm wide and is equipped with four burners as well as with a pneumatic pusher rod. The furnace bottom contains a concave depression for filling with molten glas 'sl~The billets are heated to 700-7500C in the front zone of the furnace, whereupon they are pushed along on heat-resistant guide rails into the molten-glass bath where they are heated to,forging temperatures (1230-1250*C). The 30* and 12' tilts of the burners and the closeness of the zone Card 1/3 UDC! 621-791-2 L 23o58-66 F_~~ NR-' AP5028997 of maximum temperatures (1380-1450*C) to the surface of the glass welt assure an efficient transfer of heat to the molten glass and enhance the longevity of the furnace arch. The protection of the heat-resistant guide rails by a layer of glass in the zone of maximum temperatures makes it possible to dispense with water cooling, which greatly improves the utilization of heat in the furnace. The billets thus heated get neither oxidized nor carburized. Preliminary studies of heating cost have shown that heating in molten glass may be more economical than other heating methods, particularly as regard# the heating of alloys. Orig. art. has: 4 figures, 3 tables. SUB CODE: 11, 13, 20/ SUBM DATE: none/ ORIG REF: 004/ OM RIF: 000/ 3/3 BARISHFOLOVY V.F., inzl-..; SFDJORT,:~X)V, A.A., kand. 'IxE:kYui. *-,-au~'I -- -X'-' - - * red.; KOPEYKINA, L.V., re-.- (Outdoor heating networks; aid for tectxical inspectors end foremen of construction and installation organization] Na- ruzhriye teplo-rye seti; v pomoshch: tekhnadzoru I masteram stroitellno-montazhnykb organizatsii. Moskva., Knergiia 1964. 29 p. (MIRA 180~ 1. Orges, trust,, Moscow. SrVORTSOV, A.A., inzh. Using the PHT-3 device for studying the heat resistance of inva- Intion in traction electric motors. Test. TSNII KPS 16 no.7:54-58 0 '57. (MLRA 10:11) (Blectric locomotives) SKYORTSOV, A.A.. inzh. Porosity of traction motor insulation. Vest.TSKII WS 18 no-l'-28-30 F '59. (MIRA 12:3) (Blectric railway motors) (Insulating materials) SKVORTSOV, A.A., inzh. Machine for washing traction motor armatures. Ilek. i tepl. tiaga 5 no.6:18-19 Je 161. (MIRA 14:10) (Electric railway motors) SKVORTSOV, A.A., inzh.; MINAK, P.F., inzh. Use of "eskapon" insulation in electric traction motors.. Vest. elektroprom. 32 no.9:42-45 S '61. (MIRA 14:8) (Electric railway motors) (Electric insulators and insulatiin) SKVORTSOV, A.A..,,.---inzh. Aging of mica paper tape in the insulation of traction ongine windings. Vest.TSNII MPS 21 no.2t22-23 162. (MIRA 15:4) (Electric motors-Windings) SKVORTSOV) A. A., starshiy nauchnyy sotrudnik Choice of voltage magni-tude in testing the insulation of traction motors. Elek. i tepl. tiaga 6 no.9.'24-25 S '152. (MIRA 15:10) 1. Vsesqy-uznyy nauchno-issledovatellskiy institut zhelezno- dorozhnogo transporta Ministerstva putey soobahcheniya. (Electric railway motors-Testing) SKVORTSOV, A.A., inzh. What causes the damage of the armature winding insultation of traction engines. Vest.,OTSNII WS 21 no.8:7-11 162. (MUU 16: 1) (Electric insulators and insulation) (Electric railway motors) SKVORITSOV, A.A.J inzh. Increasing the reliability of the insulation of the armature windings of traction engines. Vest. TSNII MPS 22 no 064W#63. MR1 16 -.8) (Electric railway motors) (Electric insulators and insulation) SUOH'iSOV, Aleksey Anatol 1-yevich; KOLE4SINIA, Antonina Matvevevna; I DANIL"YA14TS, S'vetlana Alekseyevna; PETUSHKOVA, J.~., red. [Ways to improve thcl. operational reliability of the insula- tion of the windings of electric traction motors] Puti PO- vysheniia ekspluatatSionnoi nadezhnosti izGliatsii obmotok tiagovykh elektrodvigatelei. Mosk-va, Izd-vo "Transport," 1964. 28 p. (MIRA 17:8) ~:KVORTSCIV I ', Ale*sey Anatol"yevich, prof., dokfor tektui. nauk; - r * AKINIENKO, Anatolly Dzitriyevlch, dots, , kand. tekhn. nauk; KUZELCV, Mikbail Yakovlev4.chv dots, [Heating units] Nagrevatellaye uBtroistva. Moskva, Vysfihala shkola, 1965. 443 p . (tGRA 18i1;!) SYNORTSON, A. 13. RT-1125 (On the question of the work on reasuring of bottom. silts) K voprrosu 0 rabotarkh po uchetu donnylh nasosov. Vestnik Irrigatsii, 3(11): 45-48, 1925.(Translation does not include illustrations). 0 q 0 P I CA K'~ 1, If 4, At A o A, , I %, At W It n U m A. A; It A. U TA 0 fin 0 0 0 0 so so 040- 0 Or low so- It! -tit ow I All mv ~J-q All I" AMA, so- pp-I 114%.' A .... .111 Milli) oo~ Ay 'Is", NI 4.11. '1.. )(- mal.'rif J~l -1, j" 00 tilt- JI'M I III.%, III^ Pkilit".) '111 lit Imall go? !, ~ (It J.'41111 (Ilqxlls i,rlit 16-I'tirl.,111% -2X) it) - go U! Il"Ifit"' N -4111. 'It'- I'"l- '.41 it! ~'rrl so 00 , It- mit 1" 3-1 C so 00 . ........... . ........... 00 00 "A. 00 00 go so- J"" "A ...... I'll' MIA p- of 00 'A. of -42 .." I ."', 00 so- 1113., ala )0 9~11suaimm Iv3Tmalp~Ivp5otIa3 aq.L so so 00 0 so ' It f6 0 2 A, 9 0- 0 0 0 0 0 0 0 0 a 0 0 0 0 0 0 SKVO-qTSOV, A. -Y. 35366. K voprosu otravopolinoy sistere zerledellya v plcdovoir. sadu. Soobshch. Akad nauk egruz. SSR, 1949, No. 5, s. 297-303--]3ibliogr: 9 Nazv SO: Ietopis' ZhurnalInykh St-tey, Vol. 34, Moskva, 1949 1. A. F. SKVORTSOV 2. USSR (600) 4. Alluvium - Rioni River 7. Composition of river alluvia. Soob. AN Gruz. SSR 11 no. 9. 1950. 9. Monthl List of Russian Accessions. Library of Congress, April -1953, Uncl. SUORTSOV, A.F. soil cultivation in orchard8. Izv.AS Arm.SM.Biol-i sellkhoz.muld. 5 no.11:109-117 '52. (KLRA 9:8) 1. opytawqa stantsiya plodovodstva AN Gruzinskoy =. Bel. Skra, Goriyskiy rayon. (Armenia--Yruit culture) USSR / Cultivat~-d Pjz----jto. rrvats. kerrigs. .Lbs Jour : Rof Zhur 3-iol., il~o 34,789 Pwthors : :3.1wortsov L. F.; Dodabrislivili, i'l. G.; Uturash- It i i ~' Inot ; Academy of Sciences., Georgian SM Titl-- : lialtori3ls for -Establishing- -Sy3toul of Soil li-,intoaanco in th.:; .2ruit Tra-- 3ovithozoo of Kartli. Oris.,, Pub : Tr. OnytLn-. at. plodovodstva ii-7\1 Gruz SS,-R, 1956, 49 37-69. !.~b s t ra c 'U:Zor the cultiviation of Gardon soils, it is r-3- commondod. that old poronnial grass bo plowod. up across altornatizkl-~ bands and that the z~ntiro aroa bc plowed up i--1 an unbroircon oporation onlY after 3 Years of cultiva-fion. The soviinS of D--ronnial -1-7rass ia thon to ba porforuiod Dnlv alow,- Ca rd 1 13 ,7 (,, V_, ,,T -) 1--v, F-11 V., SKVORTSEV, A.F. Gleying and physical properties of soils Lwith summary in Bnglish]. Pochvovedenie no.11:97-lo4 N '57. (MIRA 10:12) 1. Opytnaya stantsiya plodovodstva Ministerstva sellskogo khozysystva GruzSSR. (Soil physics) SKVORTSOV, A. F. Doc &-r Sci -- (diss) "Experiment of the improvement of swamps in Kolkhida by silt deposition." Mos, 1958. 37 pp (Acad Sci USSR. Soil Inst im V. 11. Dokuchayev), 150 copies (KL, 13-58, 98) -80- KATARIYA11, T.G., glav.red.; BLAGONUAVOV, F.P., red.[deceased); GOLIKOVA~ Z,I., red.; GOLODAIGA, P.Ya., red.; MOROZOVA, G.S., red.; NILOV, V.I., red.; OKHRUIENKO, N.S.,, red.; PAUMARCHUK, G.D., red.; POPOV, K.S.~ red.;MCRTSOV.A.F. red.% ROSSOSHANSKAYA, V.A., red.; ANTLOFT-OVA, red. [Problems of viticulture and vine making; abstracts for work for 1959-1960] Voprosy vinogradarstva i vinodeliia; sborn-.Lk referatov nauchnykh rabot za 1959-1960 gody. 1.,'oskva, Sellkhoz- izdat, 1962. 363 p. (MIRA 15:7) 1. Yalta. Vseso3,uznyy nauchno-issledowntel'sIdy institut iiinode- liya I vinogradarstva "Magarach." (Viticulture) (Wine and wine making) DUBYHN, N.G.; IVAROU, L.T.; SKVORTSOV, A.G. Braaking off the ore through deep vertical borsholes. Trudy Inst.--or.dela Sib.otd.Alf SSSR no.2:167-174 '59. 04IRA 13:5) (Mining engineering) SK"VORT5OV) A.G.; KROPOTOV, V.A. PrevenIt sudden inflows of water. Bezop. truda v prom. 11 no.11: 11-12 N 164. NIPA 18:2) 1. Nachallnik shakhty rudnika "Tashtagol" (for S",ortsov ). 2. Sibirskiy metallurgichaskiy institut (for Kropotov). SKVORTSOV, A.r.; STRZKOTIN, B.I. Organization of pyoderma control on state farms and at the machine tractor stations in Stalingrad Province. Vest.ven. i darn. no.2: 16-?-o xr-Ap 155. (MIRA 8:5) 1. 1z Stalingradskogo oblastnogo kozhno-venerologichookogo dis- pansera (glaynyy vrach sasluzhenrq7 RS?SR A.I. Skvortsov. konsull- tant Prof. M.T. Brill). (PYOMMM, prevention and control, in Russia In rural workers) (RURAL CONDITIONS, prey. of pyoderma in Aussia in rural workers) 3KIVORTSOV, A. K. "Vegetative Reproduction of Firs," Priroda, No. 10, 1948. SPORTSOV, A.K. 27667 0 ractiMlInosti reliktovogoo torfyanogo bo-otablis G yepif,,ani. byulletanlmosk.. O-va ispy- tateley prirody. Otd.Biol., 1949, vyp- 4, a-101- 104. Bibliogri 7 nazv. SO: Knizhnaya Letopin, Vol. 1p 1955 SKVORTSOV, A.K. , ~,j , ;, '.. , of touch-me-not from the Ural. Biul.MOIP Otd.blol. 58 no.4:59- 60 '53. - (MlRA 6:11) (Ural--Touch-me-nots) (Toach-me-nots--Ural) SEVORTSOV,A.K. - L~'- 7. Willows of Central Russia in the dormant state. Biul. MOIP. Otd. biol. 60 no.3:115-127 My-Je '55. (KM 8:9) (Willows) (Dormancy (Plants)) SKVORTSOV, A.K. Materials on the morphology and systematics of the willow family. Report no.2: A now willow species from the lastern Sayan Mountains. Biul. MOIP. Otd. biol. 61 no-1:76-78 Ja-Y 15~. (MIRA 9:6) (SAYAN MOU]ITAINS,--WILLOWS) SKYORTBOY A.K. Materials on the morphology and systematic@ of the willow family. Bot. mat. Gerb. 18:34-47 157. MRA 1o:6) (Willows) SICVORTSOV. A.K. _ Recent data on the distribution of so,7a rare and interesting plants in Mo9cow Prnvince. Nanch.dokl.vvs.shkoly; biol.nauki. no.9:164-16? '59. (itIF& 1?-:10) 1. Rokorsendovana Botanicheiskin sador, Moskovskogo gomidaretvennogo unviersiteta im. H.V,Lomonosova. (Moscow Province--Botany) SI,,vOd2SOv" ~;: --- - ~ . ~ Materials on morpholoa and systematics of the willow fanily. Bot.mat.Gerb. 19:83-88 (MIRA 12: 8) j 159. (Willows) SUORTSOV, A.K. -- ffecent finds of Planto In the Denezhkin Xanen' area (Northern Urals). Bot.ruit.rerb. 19:558-571 '59. (MIRL 12:8) (Denezhkin Kamen' region--Botany) SKVORTSOV, A.K. Two rare grasses in the flora of central Russia. Nauch.dokl.vys. shkoly; biol.nauki no.2:116-120 160. (MIRA 13:4) 1. Rekomendovana botanicheskim sadom Noskovskogo gosudarstvennogo universiteta im K.T. Lomonosova. (GRASSES) ~,~ SKVORTSOY, jt.K. Species of the genus Ramischia. Test.Mosk.un.Ser. 6: Biol., pochv. 15 no.1:47-53 160. OMRA 13: 8) 1. Botanicheskiy sad Mookovskogo universiteta. (Ramischia) SKVORTSOV, A.K. Materials on the morphology and systematics of the willow family. Bot.mat.Gerb. 20:68-89 16o. (KI" 13:7) (AirkAenistan-Villows) (Soviet ftr JkLet-Villows) SKVORTSGV, A.K-. Festuca longifolia, Thuill. as a new grass species in the flora of Central Russia. Biul. NDIP, Otd. biol. 65 no.5:75-80 S-0 160. (MIR& 13:12) (FESCUE GRASS) SKVORTSOV A K Materials on the morphology and taxonomy of vMcws. ikfart 16.9. Bot. mat. Gerb. 21:83-92 161. (MIRk 14110) (Siberia-Willows) SKVORTSOV) A.K. Some recent data on the flora of Smolensk and Kaluga Provinces, Bot. mat. Gerb. 21:438-450 61. (14MA- 14.10) (Smolensk Province-Botahy) (Kaluga Province-Botarly) SKVORTSOVI, A.K. Colloction of winowvarietiee in the BotAnical Garden of the Moscow State University. Biul. Glav. bct. sada no.40:9-16 161. (MIRA 14:10) 1. Botvmicheal~iy sad i,!oskovskogo gosud-irstvennogo universitota. j.7-crO. T-n--nneva. SKMIRTSOI/t A.K. I.R.Forster's expedition to the lower Volga Valley in 1765. Bot. 0 zhur. 46 no.1:151-154 Ja 161. (MIRA 14:3) 1. Botanicheskiy sad Moskovskogo gosudarstvennogo universiteta. (riorster, Johann Reinholdv 1729-1798) (Volga Valley-Botany) SKVORTSOV, A.K. Willows of the section Phylicifoliae Dumort. Biul. MOIF. Otd. biol. 66 no./+:26-33 J1-Ag ,61. (MM 14: 7) (WILLOWS) SKVORTSOV, A.K. (I-bakva) In memory of Mikhail Ivanovich Nazarov; on the 20th anniversary of his death. Bot.zhur- 48 no.2:302-306 F 163. OLUA 1-6-4) (Naza.rov, Mikhail Ivanovich, 1882-191,.2) SKVGRTSOV. A. K. Nina Aleksandrov-na Bazilevskmia; on her 60th birthday arid the 40th anniversary of her scientific work. Bot. zhur. 48 no.33 465-466 Mr 163. (MIRA 164) 1. Botanichaskly sad Mookovskogo gosudarstvennogo universiteta. (Bazilevskaia, Nina Aleksandrovna, 1902-) RE3RISIAYA, O.V.; SKVORTSOV A.K.; 1OLLALF-EV, A.I.; TSVELEV, N.N.; Y Ul-,T-'EV (A.rctic flora of the U.S.S.R.; a critical survey of vascular plants found in the Arctic regions of ihe U.S.S.R.] Arkticheskaia flora SSSR; kriticheskii obzor sosudistykh ra- sten-ii, vstrechaiushchi-khsia v arkticheskikh raionakh SSSA. Moskva, Nauka. No.2. [Family Gramineael Semeistvo Gramineae. 1964. 272 p. (MIRA 17:10) -SKVOPTSOV, A,Kl Atla,~ cf thp g-cgra-.hical distrtb~juorl of plants on the B--,,I+iL:h Blji'l. MOIP. Otvd~ blolo 68 no.39145-147 my-.Je 163. (MIRA 17:8) O"KV011,11SOV) A.K. Botanical institutions of the German Democratic Republic. Eot. zhur. 50 no.120:1783-11787 D '65. (M-71-A 19:2) 1. Moskovsl---iy gosudarstvennyy universitet. SKVORTSOV, A.. K. -P A 2 1 T USSR/Odicine i - llstolo& Jan' 107~ M9dicine Fish "Argentophil Fiber in the Spleen of Bony Fishes PLK.Sk-vortsov, 4 pp *Dok Alc Wavk SSSR" Vol LV, No 3 Presented by L.A.Orbeli,~InBtitute of Cytology, Kle-'-, .tology and Embryology of the AcadenW of.Sciences of: th~ USSR, 16 Jul 46. Mcperiments were.conducted d6 iCypriniformes, PerciforMes and Esociformes. This-- 'field is still mostly unexplored. -2=8~ SKVORTSOV, A. K. FA 51T40 vm&& tm/kOdIal" Pub Nor 171W Medicine Anataky "Microscopic Anatow of the Spleen of Chondi-al Omolds," A. X.'Skyartsovy Ihst Cytology, RUtOlOffi, and Rabryol, Aced Sol U&M,-.4 pp 'vDok AIMA Nauk SSSR, NOTS, Sara Val LIK, No 9 very little vwk published an hiptaloglama StrMOWS of the spleen of chmdral sanolde . PresentA RfttWI- &I collected as reinat of studies an the spleen at AcIpenser guldenstadti and-of AcIpewer s llatus, caugjLt in the Valga- River delta In MIWII*. Sub- sitted by Academician L. A. Orbeli, 29-jan 1948. SKVORTSOV. A. Y. Cells, Morphology 21 Jul 49 Animal Morphol9gy "Deit--.i c~n `-he eomparati,;-e Morphology of Fatty Cells," 5k-*,--cwrr-;ov, Inst of A-rdmal Morph imeni. A. W. Sever-,Fov, A::5-,d Sci USSR, 3-21 PP "Lck Alc .14-;.uk S-SSR" Vc.-I LKVI.I, No 3 Studw of -ICgy r-IC fatt7 cells in various repre- f-.entativf~ of the ord--?r of rodents (of suborder Date~ 2h-.)Vs- that Sim fatty cells-in tmlmaI z -,f ths group are of a con- eidArib'L~ .rariezy expre---slng histologically the :f -:~h--'? gxcup. Gives illustrations of fa+-t--w ce' Submitted by K. !. SkryaVin 3Q May 49. IMP 15oT46 PA 150T46 POPMA, N.V.; SKZTftN, N.A.; SKYORTSOV, Morpholog)r of arsolar connective tissue and blood in early-naturIng anc"L late-maturing cattle. Izv. AN SSSR. Ser. biol. no.6:72-86 W-D 154. (HLRA 8:3) 1. Institut morfologii zhivotnykh Im. A.N.Severtsova Akailemit nauk SSSR, (BIM, sarphol. in cattle) (CMUMNX Txs=, morphol. in cattle) (CATTLI, blood & connective tissue morphol.) SICVORTSOV, A. M. CaM. Tech. Sci. Dissertation: "D~etermination of Effective Iijads DuriDg Natural Circulation of Various Tubstnnces in Vertical Unheated Pipe." 21 Apr. 49 Power Engineering Inst imeni Acad. C. M. Krzhizhanv;jskiy, Acad. Sci. USSR -7 - k7 - S K "qt" ilS soll ni "Ime OTOT. 0 13 1 luest '09,sh ov ITit eaavaogo ITSIS 010 abo'J't 0 oeaao the is Of a O~ Ta, 0 10 ev Go 6% easts COY tae -age so Wjel 'rat; oTe. 469 i'ft SAa, its aepos as it 9'hou , j"As its 195? ctio i Lo rx tecteu '01 000 , ;,,a SO as eta -lc;ovi lqaTel., sove le-re '056 6 tro, ti ou 0t r"he aisco tee 1961 A"a Ts 0.1jr -10 ,,,Te %I 'ea I e., eT I a ot OT-all eaa of -as of *TO x1o siy~c ar, 0% kLlai~is tye t 9 0 tYL4 le'l eS OWN'lly '01 0,9091J. JeBA tae tyle 11 oa"artA OU OTU a jorstea q*ST 19569 v set, is of ,hose J'a jato Tt 'ath.e qeVL )Oess LOG Ta, tea sts 50 0-re tnic v Te '00a1 T'he COVT 'po '04 1 ftIle -LyLe ,I v tyLe ail t,,JrNL 0 oy~ J a. see 1.0ite T 0 ef- 60 ege'a OILY Vjo VT j.,69 '10 a"a 10 50 tc A'S -06 _-D e 40 tyLe 0*4 lwl,da"e geea Or 0-f 'Det, a --~, T tll i0 tae -48, rise 00.16'r 1,061 OTS ed I OT 1/5 'pas l,,86rl 12i-10-2/24 TITLE: Mining of Chalcopyrite Deposit "Imeni 19th Party Congress" (Hazrabotka meinokolchedannogo miestorozHeniya imeni 19 partslyezda) content decreases with depth. The south-eastern section is located in the vicinity of the swamped valley of the Uzellga River. Drying the swamps by means of drainage canals does not present any difficulties but underground waters complicate the situation. In the area of the deposit two water-bearing strata were discovered. According to the project of the "Unipromed"I Institute, the level of underground pressure waters must be reduced by pumping water from 120 m deep wells located beyond the boundaries of the open pit at intervals of 100 m. The deposit is exploited by the strip mining with dividing the open pit into 2 sections. The stripping coefficient is 4.2 m3/ ton. The projected height of one bench is 10 z. Slope angles are 400 for loose rocks and 550 for dense rocks. The final pit depth, according to the project, will be 100 m. The removal of the overburden is performed by means of 3-0 excavators of the 11C3-3" type. The operation proceeds unsatis- Card 2/3 factorily due to very unfavorable hydrogeological coiiditions, 127-W-- TlT1 &1ning of Chalcopyrite T-nj t ' ..z:rA 19th Farty Cnrigres.'311 mestorezhicniya imeni 1.0 partn'yezda) and moreover, it was made possible only after employing steel mats, etc. It is concluded that the height of the benches should not be made more than 7 to 8 m to avoid the use of explosives. The article contains 2 photos, 1 geologic cross section and 4 figures. ASSOCIATION: Uchaly Mining Concentration Combine (Uchalinskiy gorno- obogatitellnyy Kombinat) PRESENTED BY: SUBMITTED: No date indicated AVAILABLE: At the Library of Congress. Card 3/3 18(5) SOV/1 28-59-8-21/29 AUTHOR: Vostrikov, S.M., Sigov, I.I., and Skvortsov, A.M., Engineers TITLE: Inverted Conical Bunker for Molding Sand 2ERIODICA-L: liteynoye proizvodstuvo, 1959, Nr 8, P 38 (USSR) ABSTRACT; In the steel casting department of the Leningrad Ki- rov plant, an inverted conical bunker for molding sand has been erected. The form of the bunker en- ables improved emptying. There is 1 drawing. Card 1/1 PTITSYN, O.B.; SKVORTSOV, A.M. Theory of helix-coil transitions In bdopoltymers, Report No.5, Method of determining the cooperation of helix-coil tr&nsition in polypeptide chains by changing macromolecule size In the transition region. Bioflzika 10 no.6009-917 165. (KIRA 19:1) 1. Institut vysokomolekulyarnykh soyedineniy AN SSSR, Leningrad, i Kafedra fiziki polimerov Leningradskogo gosudarstvennogo universiteta imeni. Zhdanova. Submitted February 27. 1965. ACC NR~ SOURCE CODE: U-ii/0413/66/000/013/0126/0127 Venediktov, V. A.; Vasillyev, Yu. A.; Popov, X. I.; Markelov, Ye. V.; Ve7nblat, X. Yh.-, Dlyakov, A. P.; Shishakov, K. I.; Yu9im, L. Ya.;_q~vqrt~q:r, A. X.; %Ireyev, Yu. A.; Guzanov, G. N.; Gerasimovich, G. G. ORG: None TITLE: A fluid device for damping torsional vibrations. Class 47, No. 183539 [an- nounced V TurbomotorW zavod)] y the Turbine Motor Plant i SOURCE: Izobreteniya, proipyshlennyye obraztoy, toyarnyye znaki, no. 13, 1966, 126-127 IWIC TAGS: vibration damping, hydraulic device, torsional vibration ABST.RACT: 7his Author's Certificate introduce& a fluid device for damping torsional vibrat. ions. The unit consists of a housing with a hole for fluid delivery and a movable nnnular disc with a compensating cavity act inside the housing. The instal- lation is designed for more reliable and simpler filling of the unit with fluid 'of i providing the faces of the disc or the internal surface of the housing opposite the hole for fluid delivery with at least one annular groove connected to the compensat- ing cavity by channels in the disc body. ~13ffrt 1 w )Q583-66 ACC NR, UR Ob 610607U!61VOT4~Z AP6030573 SOURCFQC0E- -T -1-316 INVENTOR: Kreynin, S. I.; Lashevskiy, R. .; Maksimov. M. if.; Rabkina, N. V.- Khavkin V. Ye.. Skvortsov, A. M.. Norkin. L. M. ORG: none TITLE: �lemoi~j devic ~qj Class 21, No. 181035 SOURCE: Izobreteniya, promyshlennyye obrazt~y, tovarnyye Maki, no. 16, 1966, 55 TOPIC TAGS: computrr memory, computer storage device ABSTRACT: This Author Certificate introduces a word-organi.zed memory consisting of multiaperture ferrite plates, and amagnetic decoderwith transformers using multiaperture ferrite plates (see Fig. 1). To increase both the speed and capacity Card 1/2 Fig. l.. Memory device 1 - Ferrite plate; 2 - diode matrix; 3 - bias winding; 4 - excitation winding; 5 - output winding; 6 -- printed winding. uDc: 681.142-0T L 43883-66 ACC NR, AP6030573 and to reduce the required power, the magnetic decoder contains a diode matrix of integral planar structures with a number of p-n. junctions equal to the number of addresses in the device. Orig. art. has: I figure. (JR]. SUB CODE: 09/ SUMB DATE: 2omwj651 ATD PRESS: 5075 Card 2/2 mis kand. telchn. nauk; SKVORTSOV A. N., gornyy inzh. KUDRYASHOV, V. V.1 Z~~ Internal water tamping of holes as a means of dust control. Ugoll 37 no.10:46-48 0 162. (MIRA 15:10) 1. Institut gornogo dela im. A. A. Skochinskogo. (Mine dusts) ).~ i ~ N. fi a -11...q~nen3 should receive aLtention and WlFport. Radio no.633 J 165 (MIRA 18:10) 7 ~Zamestitell predsedatelya TSentrallnogo komitelta Vaesay-umogo dobrovoltnogo obshchastva sodeyatviya armii, avlatsii i flotu SSSP. KUDRYASHOV:~ V.V.P kand. tekhn.nauk; �KVOkf8OV, A.N. Using water to control dust at negative temperatures, Bor'ba s si.l. 5:28-37 162. WIRA 16-5) 1. Institut gornogo dela imeni A.A.Skochinsko 0. (Mine dusts-Preventic ~