SCIENTIFIC ABSTRACT MERENKOV, A. P. - MERENKOV, N. P.

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SCIENTIFIC ABSTRACT
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MERENKOV, A. P.; NFAaASO'l, A. S.; NEKRASOVA, 0. A. Determining the efficient sorting and utilization of fuel by the method of linear programing with an electronic computer. U9011 37 no.10:42-/+6 0 162. (MIRA 15-10) 1. &ergeticheskiy institut Sibirskogo otdaleniya AN SSM. (Electron digital ccmputere-Programming) (Coal-Classification) I I% .I- y ,~tLci,ilation of ror"p.lars. 163. i. .n3 .I tt. t Sibi rslk,,).,~o tloe en i v a Trk--:,sk. LY KUZITETSOV, Yu.A.; I-IAKAROV, A.A.; MELINTIYTEV, L.A.; A. ~-. E K: -LA S 0 V , A . S . ; T S-,.!'EET.',I', C V N. I .KU ZI i ET 30 V , Y u . A. i,!AKA?OVA, A.S.; KA~tFCV, V.G.; Yu."".,- Yu. P. ; KH.-JUEV, L. S. ; T-SVIL.-KOVA, L. A. ; ~,'CYT SEIC'F'CVSK~A G.V.; YEFIMOV, N.T.; , G.:'~.; ','.IiAIX):EV, %'.A.; JELYAYEV, L.S.; GAI-I., D.G.; L.A.; LIOPO, T.N.; SVITHKU:;G'~, L:.N.; DRUZIIII:IN, I.F.; KONOVALENKO, Z.F.; KHAI~'YAdi'OVA, N.V.; 3F~ARTS-ERG, A.I.; NIKONOV, A.F.; STARIKOV, L.A.; POF-YRIN, L.S.; 'SI:~94ICIE,:OV, N.N.; TROSHINA, G.M.; CHEL"ISOV, N.b.; SVETLOV, K.J.; SURAROKOV, S.V.; TAKAISHVIL1, M.K.; TOLRACHEVA, N.I.; KHASILEV, V.Ya.; KOSHELEV, A.A.; ObINOVA, L.I., red. [Methods for uainl- electronic corquters in the optimiza- tion of power en,~,-ineerinC calculations] Metody prireneniia elektronno-vychisli~ellnykh mash-n pri opr.imiza-usii energe- ticheskikh raschetov. Iv'oskva, Nauka, 1964. 318 P. (MIRA 17:11) 1. Akademiya nauk SSSR. Sibirskaye otdeieniye. Energetiche- skiy institut. 2. Chlen-kovrespon.-ient AI,'. SSSR (for Melentlyev). 1, . F,~. -J, A. -,- 11 Z-~: 1 1 ta tY - - . . e - --, y Re .L..L.. i !-rren~.)v, A--- V V.S., B=rIC7.8-n, 2C66i Ivano, , _y, I o. 6, s - '7-1C ef-'ravatc-ra F-lr(-3. v'ekhallIzatsiya str-:)it-va, Inj I so.. I.- oil-: 2:1-U-,.-! .- 17-1~ - Vo-. e, ,.oskva, 1040, - -T " I . SOMITSEV, Y.G., inchenar; GRITSEVETS, I.I.: KMMKOT, A.S. Some problems of Producing excavators and cranes in y,ear plan. Stroi. I dorl mmhinostr. 1 no.12:3-7 D (ftcavating machinery) 10ranas, derricks, the sixth five- '56. WaA io:1) etc) ME~ENI~,C)V tA '-) . SOKOLOV. K.H.; 'fF.VSTA72.YNV, ROSTOTSKIY, V.K.; GRECHIN, H.K.; STANKOVSKIY, A.P., BA(4M, V.A.; IIYJiKWJI. I.L.; BORODAG"V, I.P.; BOYKO, A.G.; VALaTmay, 1. 1.; VA23SLAVSKAYA, L.Ya.; VOL'ISON. A.T.; DOMBROVITUY, N.G.; YNGHUS. M.Ya.; YEFREM11KO, V.P.; ZIMIN, P.A.;. ITANOT, 7.A.; KOZIOVSKIY, A.A.; KOSTIN, M.I.; KRIMERMAN, M.N.; LINEVA, M.S.; MORE=, A'S'.MIROPOL'SXATA, N.K.; PETROV, G.D.; RXBROV. A.S.; ROGOVSKIY. L.V.-. SMIRNOV. G.Ya.; SHAFRANSKIY, V.N.-, SHIMA14OVICH. S.7.; SHNBMM, V.A. ftenii Richardovich Peters; obituary; Mekh. strol. 15 no.1:3 of cover Ja '58. (MIRA 11:1) (Peters, Rvgenii Richardovich. 1892-195?) SOTLOIOV, K.M. YEVSTAFMV, S.V.; ROSTOTSKIY, V.K.-, STANKOVSKIT, A.P.; TARBOX, Ye.I.; OTWMYRV, I.A.; MSHNIKOV, I.P.; MMOV, B.S.; BAUMAN. V.A.; BARSOV, I.P.; BASHINSKIT, S.V.-, BOYED, A.G.; VALM-SKIT, I.I.; ZAPOLISKIT, V.P.; ZOTOV, V.P.; IVAMV, V.A.; MARIMV. V.M.; LEVI. S.S.; KAWLMMV. Ye.K. -, ~lflmglppy, A.S.. MIROPOLISKATA, N.K.; OSIPOV. L.G.; PEMIMAN, L.M.; PETROVO G.'ji,.','-'P9MOV, N.M.; POLYAKDV. V.I.; VATSSLAVSKATA, L.Th.-. VAKEWAMV, S.A.; VWHITSKIT, A.M.; VIASOV. P.A.; VOLIPSON, A.V.; VOSHCHININ. A.I.; DZHUPKOVSKIT, N.Y.; ))OMBROVMT, N.G.; TEPIFANOV, S.P.; YETRFJONKO, V.P.; ZZLICHZWK, G.G.; ZIHIN, P.A.; POPOVA, N.T.; ROGOVSKIY. L.V.; MROV, A.S.; SAPRYKIN, V.A.; SOVALOV. I.G.; SOSHIN, A.V.; STARUKRIN. N.M.$ SURENTAN. G.So; TOIMYA. L.P.; TROITSKrT. Kh.L.; TUSHIrfAKOV, M.D.; FROIOV. P.T.; TSIRKUlW, I.P. Andrei Vladimirovich Konorov; obituary. Makh. stroi. 16 no.1,32 Ja 159. (MIRA 12: 1) (Konorov, Andrei Vladimirovich, 1890-1958) 1. A STAPOVICH, G. Kh. - I'ERTENKOV, A. T. 1 2. USSR (600) 4. Electric Locomotives 7. Experience in operating boilers of electric locomotives M-2-5- F.ngs. k'~. Kh. Astapovich, A.T. Merankov, Elek.sta. 24 no. 3, 1953. g. Monthl List of Russian Accessions, Library of Congress, APRIL 1-953, Uncl.. G7 a'014 ale 64 0*04 4 0 a 0 a a 6 0 a I w 11 it Ilwilm III& tv a m IS 14 27 x ,# 1 13 11 L: U w 9% 1. 1? 1. Q t 1: if w Cs re A a j Ik It L-L- -#A 0 M W E9 If k a A it .4 IML 4(1 00 4 C" Zc*Al. MO. 11, PKV~Tfie chty*wk (rans Talov to CrftmoO am am, pkmhcomwm I SW (Yvuowm give ).*.I. R0 I.-IL73 (cmnkb Ivu4nw) It ' ' I of WA 41Z AU 0.92. FeA 1.46, PeO 0-30. 1190 40.03. NstO + ") 0.12. MMO 0.06. Wii OA NIO 0.24. TM tnwm on amtbg it Won 1.19S at jtA wt, Wat" "I '-fsWIum' t~ go : I " filwr 1. b. IM III ke RI IIII.I. At rumw III a,,# a so 00 !zoo -of IS -00 An I a Od 0 1A d K a W q If a Ct it ty 'a 0;o 0 94 0 0 0 fe a see 00 0 0 0 0 0 0 0 0 0 0 0 0 0 0 IN is 16 0 trooe~Qpoa agog 0a 1516 251627AN.Vil tau 1413 ISO J6 W C, v 'j 44 is~q 9 a 9 AA 0 CC M M A 0 IT t 1 -"00 I eet )." 14 OS 00 PeftoldW at Chfyglltile 466901M 411109000A elf dW KtgWA-UCdAkY AL4050SUM CMAW IM the 11cal MeaustaisiL V. V. A*sKtxov &ma R. VA. Atexxxxov. rreseas. led. Fe- *0 ifiswdi fMawareir) No. 4S, 1 KRIM.-The accoethat; to fiLwr kttgtb as WOWS- pade I about 16 tons.; Ktadt, 11. IJ Tom_ Ill. &5 MM.. IV, 4 to 2 00 auxt.; We 2 to 0.5 -- It is tich"W that the serpeudiuca of this ttgion have been -00 derived fmat axonitet under the simp&e Muencie of water, Other basic rucksencountered in stull quantitiles are schlienn c-4 pyrazewtp- a mooo-mitteral cock (armed by di*q&. 004 -00 00 9! The mi"pentictimtkin of saxonitm is dc%vkrf~ed along the fisieuvermi as nhhons of verptvitirw. 4 An thit frocru Lqws in. ther girain aim diniiiiielw% until (tic whcj&r ircerk i. after" into wrtevttiiw. The chArvict"imic t%1w,, of aest-v. ribl,ouing am erpm-siterd by tfw - folloeVius vairictiv,,: (1) 1xvilunil asib % %t (2) fi f t i t b 00 al" o ne &% os w c " i t-% . n ranching, (3) fi 1k-1 t t ne, A ws oes Para wt.% A, 1Nh--vc% all if tlicw r--ck, t-, 1w pt-ftwt-( Uw dtff,-ir 00 0 rittiation tel diorite intrusive, brOws. Ther 41wncr 4 Cranar Wsmatitc dikrt 1, ChAf ' i f 00 atirr stic ew ther jt%t~t(w d"W"Itt .%I the Kfig~tNe-l t-AlAir inint. If C PARS-10 q 0 00 0 0 - ~ :06 00 ~00 ~00 .00 .00 '; 0 1111, 3 U IV .42 TV $g it it is fl 0000 a 0 040000 00 48 4 0 00 00 0 0 4D 0 6 1 4 1 1 If Q 11 id is 16 Ij 0 All a a m 5 s a 6 11 A a IL-1 -t- Talc wJdM in ft Kri"i Rog km ireglau Mkimb"), va~ Nfecenk'm Itimeral. Srr,v 11, %a. -,, 4e-si MOO. -Tbe campn., ptaw. prtV"xi" aM wws cd k)w. Craute tak depovit- in i he rearion Art discum-d. C. Ft. 00 a - goo zoo Zoo Zoe Of 00 go ZOO WALILLOGK4L LITtO&TIAl CLASSWICATIC" ut 1111 L 1 4 Od 0 1 a *19 is is t4p o Alt a a w 1, It x bw .1 0 9 0 0 0 0 0 0 : : : : 0 0 0 0 o 0 0 0 a ZIP 1.0-0 0.6 0 0 0 00006 0 a 0 0 0 0 0 foe 0490 0o 00f 0 0 0 0 if a a Ill 4 v a a 0 41 a u a 4 UM19KIY. B*P.-. HEnNx()Vl redaktor; RO330VA0 S.M., redaktor: POPOV, N.D., tekffn-jcKeskijr redaktor. [Talo and tal'cose rock.] Tal'k i -..&I lkovyi kamen'. Moskva, u,is.nauchn-tekhn.izd--vo lit~ry po geologil i okhrane nedr. 1954. 18 p. (MIJU 8.- 3) (Talc) (soapstone) 15-57-7-9416 Translation from: Referativnyy zhurnal, Geologiya, 1957, Nr 7, pp 97-98 (USL;R) AUTHOR: Merenkov, B. Ya. - ----------- TITLE: Relict Colloidal Banded 5tructures in Chrysotile- Asbestos Veins (Reliktovyye kolloidnyye lentochnyye struktury zhil khrizotil-asbesta) PERIODICAL: Tr. Mosk. geo'll. razved. in-ta, 1956, Nr 29, Pp lb4- ill ABSTRACT: A study of chrysotile-asbestos veins has shown that, in addition to the well-known fine fibrous vertical structures, there also appear horizontal banded structures. These reflect the initial composition of the chrysotile-asbestos substance and are there- fore relict structures. The relict banded structure of the chrysotile-asbestos is commonly expressed in Card 1/2 separate relict layers of different colors. Inasmuch 15-57-7-9416 Relict Colloidal Banded Structures (Cont.) as the banded structure is not associated with any tectonic or other orientation, it is believed that this structure clearly indicates the primary (up to recrystallization) layered constitution of the initial silica-magnesian gel. It is noted that the fibers of chrys- otile-asbestos in the alternating "bands" have different inter- ArenceDolors, and slightly different indices of refraction. The relict banded structures in the different specimens of the chry5o- tile-asbestos have different appearances: as irregular groups of bands throughout the entire width of the vein, or as groups of bands confined to one wall or to the central part of the vein, or, finally, as individual seams with banded structure separated by structureless seams. The gradual transition of structured asbestos gel into structureless material indicates the high sensitivity of the thick- ening colloids to slight changes in the physicochemical environment; but the interlayering of structured with structureless seams indi- cates a possible rhythmic process of formation. The mechanism of formation of the layered gels is not clear. Card 2/2 0. V. Bryzgalin MM NKOV, B. Ya.; TOLSTIKHINA, K.I.; ALEKSANDRDV, A.L. -. Tubular structure of serpophite. Dok.-I. All SSSR 112 ao-3: 516-518 Ja '57. (MLRA 10:4) 1. Institut geologii rudnylch mostorozhdeni7, petrografti. mineralogit i gookhimit Akadamft nauk SSSR. Prodstavlano akademikom D.S. Korzhinakim. (mineralogy) I I . I - - , . I V, Boris Takovlevich:. 0V, B.P., otvetstvonW red.; SLUTSM. A.S.; -RTLI]TA; u.7. , -tekhn.red., (Genesis of chrysottle-asbestos] Genesis khrizotil asbesta.. Moskva, Idz-vo Akad, nauk SSSR. 1958. 134 p. (Akadomila nauk SSSR. Institut geologii rudnykh mestorozhdanii, p6trografii-w-ulueralogil i gsoldiimii. Trudy no*ZZ) (MIRA 11:7) (Chry,sotile) (Asbestos) VIMUMOV, B.Ya.; TOLSTIKHINA, K.I. r ~- -- Porosity of asbestos-bearin-a ultrabasic rocks and i's eenetic significance. Trudy IGEM no. 13:6~-751 159. O)AmA 11:7) (Asbestos) (Porosity) TMICTEV, V.P.; MNFMIKOV, B-Ya.: PETROV. V.P.; SOKOLOVA, L.A. Genesis and distribution of chr7sotile-aabostos deposits as a form of contact affect exerted by granitolds on ultrabauic rocks. Trudy IGER no.31:19-35 '59. (MMA 12:7) (Asbestos) MERENOV, B.Ta.; TOLSTIKHIRA, K. I.-, ALZKSANDROV, A.L. Importance of electron microscopy for the study of tb-a genesis of cbr7sottle-asbastos and sarpophite. Tru4y IGM no-31.36-45 159. (141RA 12:7) (Elactron microscopy) (Asbestos) IOUNKOV, B-Ya. Fibrous vein magnetite fron the Bazhenovo chr7aotile-asbestos deposit, Trud7 IGXH no.31:46-53 159. (AIRA 12:7) Sverdlovsk Province-blagnstite) AMNKOV, B.Ta.; TOTA9TIKHINA, K.I.; SHIJAMINA, I.V. Dehydration of chrysotile-asbestos and serpophite. Trudy IGSA no.31:54-67 '59. (MM 12:7) Wheaton) MYRMOV, B.Ya.- KONSTANTIMOV, N.F. Geology and genesis of the Krasnaya-Polyana talcite deposit (Southern Urals). Izv. vys. ucheb..zav.; geol. i razv. 3 no.8:49-55 Ag 160. (MIRA 13:10) 1. Moskovskiy geologorazvedochrqy institut im. S.Ordzhonikidze. (Ural Mountains--Tale) MR-RRIKOVP B. Ya.; TOWAKOV., P.P. Obaracteristics of the chryaotile-asbestoo mineralization in the Pechenga-Nikell area. Trudy IGE24'no.47:53-60 '60. (MIRA 14-5) (Pechenga flistrict-Af3bestos) MERENKOV,._B.Ya. Concerning the genetic classification of talcites ar?d soapst-~)nes of the Urals. Trudy IGEM no.63:17-25 '61. (Yd?A 14:9) (Ural Mountains--Talc) V-3 IlFov la Cil '-daY. T bic -rj on t 64- .'arkov -~3 6L, llikolaev"cr' 1() 110.4- ser~ l'i , Uri. 140sir. KASATKIN, A.G.; RIZAyEV, N.U.; NIYAZOV, M.I.; WRENKOV, K.V. Application Of the Principle cif fj Uidization ill the recovery of tfftarja Raid from diffunion J"ic19,9 bY means of ion exchangers. 12',V-VYS-Ucheb.ZP7.; Pishch. tekh. no-3:104-107 163. (KRA 16:8) I- Tashkentskiy Politekhnicheskiy institu problemnaya laboratoriya Polimerov. 4. (Ion exchange) (Sugar indust"Y-AY-products) (Tartaric acid) c ------ t r Nu u;.:; vi, J -6 - 04 user. c alcuia c) are rot 03L-~: 'art. 'forel oalG C~02 Card 621.3j2:62.-.--'-- ANTONOV, U.F., takhaik; JQMKGV, N.P., inshener; YUROVSKIY, G.bh. inzhenar. Uhaust fan casinge from the boron-containing 01-1 alloy. Energatik 4 no.2:13-14 F '56. (MBA 9:5) (Boron alloys) (Fans. Mechanical) ANTONOV, N.Y.. tekhnik; MMMMOV. N.P., Increasing the wear resistance conveyor apparatus. Energetik (Boilers) inzhener; YUROVSKIY, G.Sh., inzhener. of parts of the Moskal,kov jet ash no.4:19 Ap '57. (MIRA 10:6) (Alloys) AUTEDES: Skachko, V.A. and NIterenkov, N.P. (Engineers) 133-6-13/33 TITLE: A neV method of deoxidation and desulphurizaticr. of steel with an improvement in its quality. (Novyy sposob raskis- leniya i desullfuratsii stali s uluchLsheniyem yeye kachestva). PERIODICAL: "Stall', (Steel), 1957, No.6, pp.521-522 (USSR). ABSTRACT: A method of deoxidation. of steel in iadle using steel tubes filled with aluminium ("Stahl U. Eisen.191 1954, No.5) was tested and compared with the usual mettod of intro- duciDg aluminium on rods, Steel made in a 3 ton basic electric arc furnace by a scrap-carburising process wittiout oxidation under a white slag was preliminary deoxidised with ferromanganese (calculated on 0.5-0.8% Mn) and tapled i4to two ladles. In one ladle deoxidatior was carried out with 45% ferrosilicon which was placed on the bottom of the ladle and with aluminium introduced on a rod. The addition of ferrosilicon to the other ladle was made siL-i- larly, but aluminium was introduced in 2-3 tubes, 15-18 mm in diameter and 1000 mm long, made from sheet steel 1.2 to 2 mm thick (Fig.1). The proportion of aluminium introduced with two tubes was 250-300 g/ton and with thxee tubes from 300 to 600 g/ton. The holder used for the immersion of Card 1/3 tubes into the ladle is shown in Fig.2. After retaining A new method of deoxidation and derml-phurization of steel with an improvement in its quality. (tont.) 133-6-13/33 in the ladle for 2-3 min tlie steel was teemed into moulds. From each ladle 5 experimental specimens were cut for the macroinvestigation. The degree of desulphurisation with aluminium introduced in tubes was higher than with alum- inium introduced in rods: 35.Sr-/o as against 14.2%. With increasing additions of aluminium (in tubes) the degree of desulphurisation increases and sulph~ide segregation de- creases with an improvement of the microstructure of in- gots. An increase in slag basicity has a positive influence on the desulphurisation of metal in the ladle (Fig-3). In order to study the influence of the new method of deoxidat- ion (alumiiium in tubes) on the mechanical properties of carbon steel, similar experiments were carried out when smelting Steel 50. Ingots made (dia.BO mm, length 200 mm) were forged into rods 14 x 14 mm from which specimens for tensile and impact tests were made. Chemical composition amd mechanical properties :,f heats investigated with deoxi- dation. with aluminium in tubes (mmerator) and in rods (denominator) are given in Table 1. An improvement in the properties of steel obtained by deoxidation with aluminium in tubes is explained by the solution of a part of alumin- Card 2/3 jum in steel and its interaction with. nitrogen with the A new method of deoxidation and desulphurization of steel with an imprpvement in its quality. (Cont. ) 133-6-13/33 formation of nitrides, which leads to obtaining a fine grain metal. In all experimental melts the content of oxygen in steel from ladles deoxidised with Al in tubes, was approximately twice smaller than in those deomidised with aluminium in rods. The sulplaur content was also sinaller by 0.007 - 0.025%. The modifying influence of aluminium introduced in tubes was also confirmed by the microstructure of steel - non-metallic inclusions were of a globular form and situated inside tile grains. Mechani- cal properties of Steel 5 by the new method were superior to similar carbon and low alloy steels (Table 2). There &re 2 tables, 3 figures and 8 references including 7 Slavic. ASSOCIATION: Central Repair-Meclianical Works of the Donbassenergo. (Tsentrallniy Remonto-Meklianicheskiy Zavod Donbassenergo). AVAILABLE: Library of Congress Card 3/3