SCIENTIFIC ABSTRACT ARTEMYEVA, O. - ARTMANIS, V.

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CIA-RDP86-00513R000102220017-6
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December 31, 1967
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SCIENTIFIC ABSTRACT
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ARM'YEVAI O.A.; MARI'MMO, A.G.; ,1,T-:..'-UHO, 6.1. Obtaining MS-20 aircraft oil from a mixture of petr~iloums of the upper Cretaceoue sediments in -the rhechen-InIMA A.S.S.R. Trudy GrosN1l no, 15:220-228 1631 (KIRA 170) ACCESSION Nit: Alr4ol6ooz AUTHOR: ArtQm'YaY4,_0,,, A.; Martyftenho, A. Go; ltepure,$. 1. TITLE: Production of NS-20 aviation of I from the mixed petralew of the UpW Cretaceous deposits of the Chechan-Ingush ASIA SOURCIE: Grozny*y. Neftyanov neachno-losladavatel'skly In titut, Trudy*, no. 15, 1963. Telchnologlya perarabotki ftftl I gam Neftelthimly: (Technology of procassoo Ing petroleum and gas. Petroleum chemistry), 220-228 TOPIC TAGS: petroleum, avlatforl oil, aromatic hydrocarbom, rof Ined product, petroleum concentratejpetrolew extract, dsparaffinition. petroleum refining ABSTRACT: Due to the opening of the Volgogrodskly neftqp*rer&b*tV*vvyushchIv zavod (Volgograd Refinery), the emount of zhlrmwsk crude (frvM Val r d Wast) available for the production aviation oil at the Groany*y refloillry will gradually decrease. The authors therefore experlowtid with the reflnirg of local petroleum I from new deposits In the Chechen-Ingush ASIA wW Stawropollkray. The yieldso physical properties and chemical composition of aviation 61), residual oil. petroleum concentrates, dWeraf f Insted of Is and petrolat4w Frov various soums In this region art tabulated. TOw rawlts show that N11,40, ovistion oil obtained ,CjbA prof?lslng local gratnen.sk petroleum by the wirrent tschn*1291col methods TIFT1 -'A 1111111111' 1 ACCESSION NR: AT4016002 corresponds to the specifications of COST 1013-49 for avisthm 911, except that the density Is 0.897 Instead of 0.895, The chemical composition of NS-20 aviation ol I f ram this source Is close to that of aviation of I from zhi rowsk petroleum except that It has a higher content of resinous products and a lower Content of aromatic hydrocarbons. The sample of MS-20 aviation oil obtalrwd from gromensk petroleum completed the test In 4 ano-cylinder *Vito (A$hw82F4 cylindsr) duting 50 hours of operation and can be recommended for further tastlig In a full-sit* engine. Russian petroleum concentrates from verious'sources Irv this region can be used for preparing residual oils since they contain 3.5*5.V4 residual oil with a v I scos I ty of 22-38 cent I stokes at I OOC. I ncreased work W th ft"rof f I not I on techniques and the duosol apperatos Is moMmanilod, Orig. art. has: I tables. ASSOCIATION: Naftyanoy neuchnowissladavatelskly Institutj 4rcvty*y (Petrolsom, Scientific Research Institute) SUBMITTEDs 00 0ATI! ACO JIJ*r^ 91CLs 00 SUB CODE: FP NO AV 16VII - Oak Mott 000 [cam 2/2 ACCESSION NR: AR4025724 8/00$1/64/000/002/1012/"23 SOUP;Zs RM Shimiya, Abse 2PI68 AUTHO~*. Mitrofanov, M. G.; Artenlyeva, 0, A.; Milim, T, A. TITLE: A study of the oil fraotions of An"taAaa potrolow CITED SOURCE: Tr. Groantusk. neft. a.-is in-t. vykp. 12, 1963, ~-26434 TOPIC TAGS: petroleum, pe&oloum refinirA An"t"i" cxvdo, eyl-.z&w oil, D-11 ott TRANSLATION: The column distillate of Anastatian patrols= can 14 used without purification && cylinder oil, Brand 24. After prolonged aboarptive purificatioh, 55% can be separated as oil having a viscosity ioA4x of 44.7 4ad 6 oolLAfficadon temperature of 22C, which corresponds to the WST $304-54 for oil. D-11. The res- idue boiling point exceeds 411c; after absorptive puriftcatilm ard:44paraffinist- tion of the residue, 14.4% soparatat as an oil with a vtacosity lad** of 70 and & i;alidification tesiparaturs, of 190. The distiaguishiag, ahstsdWalstic 69 tbi petro- le= and aromatic fractions of Anase"lan crude isolated frft the coluna distillate and the residut is the cosiWatively high coattat o9 aplta by*ourbous and tbA Card 1/2 ACCESSION MR: AR4025724 shortness of the paroffLU GUIM, A04thOtAl OUMMU7. U= AM: 03Mar", sa FIT" DcZl 00 cwd 2/2 -tit! t~':l 16(3) 1,UTH6RSi Gulyayev, A. P., Artemlyeirs, S. 1. TITLM Simplified Kethods of Deterain ing HOsti ig Time of $to *I Products in Belt Bathe (Uproshch*nayy* toetoly aprodelexiia, Vissoni nagreva atellnfth lzdoliy Y solyanykh vmnna;h) PERIODICALs Hauchnyys doklady vysshoy shkoly. Notallurglyat 1959, Mr 2. pp 103 - 106 (USSR) ABSTRACT t The thermal trQAtment in a temperstaro-time process. While the temperatare valaes of the conversion processes are exactly known, this Is not true for the time valQes. Tho hosting time,40pends on many factors. Due to the uanifoldn*sp of the best-treatod steel products, it is impossible to sot up a general relation between form and hosting time. In the Vresent paper, the heating times for simple geometric forms of stool vwre determined. For the total time of husting, the followlog *(.Qatlon in setups It total 0k + B, A reprosentivg the tino until the attain.ment of the temperature, prescribed, and D the time vocossar7 for the phase converZ tons t5lquired, Figaro I shows flis doopondence of the best conten a / external and internal hardness ot a cylindat on the f ed time o vating. For the investigated 1~odijs with 25 an diameter Card 1/2 or edge length, Bw I minute. figures 213,4, tad 5 show the, t Simplified Methods of Determining the Heating Time of "iov/163-59-2-19/48 Steel Produots in Salt Bathe hosting curves for ball, cylinder and two parallelepipeds. The formula for the total duration of heating, ot thm basis of the experiments, is indicatedil min - O.1KXiD + I (D o dismoter or edge length, K w form coefficient dependi,jig ca tkie amApe of body; the coefficients for the geometric forms indinated are giv*z is tables I and 2; X length coefficient dapenl1ag on the ratio 1 - .The formula derived applies to valuom o' D between 10-15 D and 50 - 70 me. There are 5 figures and 2 tab va, ASSOCILTION: Moskovskiy vech*rnly zashinostroitellnyy i4int.tat (Moscow Evening Course Institute for Machine Building) SUBMITTEDs March 5, 1958 Card 2/2 SMLINIXDV9 Ye.A., lmad.tokhn.gauk; PrinixAU uchaot" Inivatipting the dsoarbarising action of a biO-tat**fttws mat both, Metanaved. I terab abr. not. no#3249-56 lir 162, (K'.Rk l5s2) 1. Voowyuzzqy -wcb9*-lslUdmtel'W%iy iwtrwewAI'Vy Inoutut. (Solution (Chemistry)-4%%*) AIRYNIMWA,, M.N., knW. tdolog. nauk; MUM U.N. p knoW. bid nauk; ARTENIM--Tgh astoologs GkTuiio StuViM adl fama. Usbob. rasU ot vM. I bol. 7 mo.9s "3 3 162. (XW 16sS) L laborato=poobvWmar mologil U*IqlahookoCo trostitaU Kasanskago An $wo (Volp VaUsy-IngdoUp injudme aM boWialaLwCostrol) STARKOV, I.N.; ARTEM'YEVA, V.A. %- I"d- --pilm Accessory pancreas in the stonsch van. Xhi"lia 4) no.3tlO5 Y,r 064, (F mu 1719) 1. Khirurgicheskoye otdoleniya (sev. V.A. Artew#ym) mWitainskay sanitarnoy. chasti (gl*YW Ymch - saslushemV vrach UkrOSR K,V* Larlonova) Severakago metallurglahaskop savcda. 6/1313M/000/012/005/006 AUTHORS& Mikhlin2 so Do, FArgtokarat. JM_ lot IRA-ik-2-16 v AUS"71, JI-P., Qallbr 1. Yeat Shohjrbagift,-.~; . 2., likiforova'o- T. F. TITLEs A Method for the Detorminati6n of the TsWoncy for Pore' Formation in Rubber Mixturoo During Vu~tlnxsl PERIODICAL& Kauchuk I Rosin&, 1959, No. 12p pp. 23-28, TEXTs The authors stress the importance of controlling the rubber mixtures during vulcanization to avoid swelling and the ftroation Wporom and to ensure the production of monolithic rubber arttolisi+ the Vissen0o of gases and steam &us to moisture and the wrong compowl.tion of the rubber mixture can be harmful in this connection. Other **usoe cf pore forwattoas are listed, The gasomotric method for Is quoted (Ref. 1). The duration of this motho&p vis* 40 minutes fcr each dietisrai- nation, renders It unpractical for industrial purposeso The 40grot of po- rosity is determined by the specific gravity method (140 1.. 2). However, the specific gravity changes during vulcanization, pitrtict3srly if pore formations occur. The ratio ot the specific gravities (if 09 vulcomisato Card 1/4 s/ i 56/c 9/0w/0 12/00510% A Method for the Determination of the Tendency for Pow* Jormation id Rubber Mixtures During Vulcanization and the rubber mixture is given In Formula 1, The relation between the moinutre of the rubber mixturaq the X valutp issof tho aboyo-sentiorAd ratio, and the porosity of the vulcanizate was studi,94. The experimenjal procedure is outlined. The value of K was computed scoording to expe;rl- mental data. Fig. I shows the instrument used for the dete:rminstion ot the specific gravity* The formula for the determination of the wpooific gtavily before heating is given in Formula 2 and for determination iefter heating in Formula 3, The values of 9 obtained are listed in Table 1. The Authors used the gasometric method for determining the saisture in the rubber Mix- tures. Fig. 2 shown the relationship between the value of K and the moisture content of the initial rubber mixture "oording to the aospositIon No. 151. The relationship which is obtained is explained by the fact Uat during the heating a vulcanization under rslativtly har,1 conditions sd (temperature 170-180 C) part ot the moisture contained in the rubber *:Lx- ture volatizese I special method was applied to the 49to.!mination of the moisture content and the dependence of the porosity on tho K value and the moisture content in the case of pr*ss-xaldsA Caloshea at %he "Xras"y Treugollnik" plant. It was applied in production to the control of rubber Card 2/4 3/158/59/000/012/005/006 A Method for the Determination of the Tendency for Pore Porisation in Rubber Mixtures During Vulcanization mixtures used in the manufacture of these overshoes, vhiCh, in turn, wwre vulcanized at atmospheric pressure and also in the manufacture of heels flor shaped boots. As many as 89 rubber mixtures were tested In the plant and the results of the X values obtained are listed in Tatle t. It can be soon from the table that in order to obtain monolithic overshot* vulcanized at atmospheric pressure the rubber mixtures mupt be characterized by a ve.140 of Kp-985. The processing of rubber by the "straining" met3tod causes :an increase in the K value by 15 to 17%, both in in6ustry ani. un4or laborailtory conditions. Other tests were carried out for the K deters.ination of.rubber mixtures used in the manufacture of boot heels. The r4sults are given in Table 6. A linear relationship exists between I and the ronolithic structure of the boot heels manufactured by molding ao,cording to modern, standard industrial procedures. The authors conclude that they were able to develop a qualitative method for the determiiation of the tendency of robber mixtures for pore formation duting vulcaniz6tionp aM that this tendency is characterized by the value of K, which, in turn, do,pondo oift the moisture of the rubber mixture. The method recommended was tsotod In industry on CKS -60 (SKB-60) and CKC-30 (SKS-30) rubber-based matemials and was foand Card 3/4 a/11511 59/000/01210!D5/906 A Method for the Determination of the Tendency for Pors ~Orxfition in ftbbor Mixtures During Vuloanizatioli to be applicable to the control of rubber mixturesi rhe admAssible minimum value of I can be made part of the technological roplationo, since it is one of the indices characterizing the quality of rubber *Ixtur*s, Tho numerical value of this figure depends on the coaposiiioat prooessing con+ ditions and vulcanization of the rubber mixtures 4Ad in ve,lected each time according to the composition of the rubber mixture used %nd applicable t the specific production conditions, There are S tables, 2 figures and V 6 referencest 5 Soviet and I Englishe 1380011TIONs Nuachno-iseledoratellakly institut restiton-kh I Istoken*h izdoliy i sayod "Krasnyy trougollaik (ftientific-Reseavalm Institute of Rubber and Wer, W1010-0 And the "KrIgLU TreugolOnik" FIN'MU Card 4/4 VAVAMA, L.A.; &RTFM'1.EV.A,j.,V. Periodicity of change In composition of oils and Cases in Vevonian and Carbonicsous series In the Sarato VAga Valley region. Geol. nefti I. gaza 8 no.12s23-18 D 1162. (MVA 1W) 1. Nishnevolshakiy iftauchno-issledovotellskly Iiistitut geologii I geofiziki. ARTEM-YEVA, 'V.V.; VAIVATEVA, L.A. Relation of the compooltion of jIvet oJIS in thIt Velp V&Ilgy portion of SamtoV Province to the geological condItIono govern- ing the existence of pool@. Trudy NVNIIGG no.1:58-62 164. (KM 18:6) ARTIVIr."IA. V-ya. Gmplexametric detemination of alminum in weph*tint,4wite ores ,,.,,.cA nepheline emcentrates. Uve lab. 30 noollf- 4332 1 64 (M:rMRA 111,11) lo Gosudarstvarmyy nauchno-iseledoratel'skiy inatitut 04%*w khImicheekogo syrtyao !:icro)inlo,,y, micro*aes Patha-ezic for 1-:an and Ani=als. General Problems, Abs Jour : Ref Zhur - Blologlyal No 6, 1959, On. 24059 Author : Artemlyeva, Ye Inst : 116dooll Ella0 Ical Institute Title : Microbe Pollution of Lye Drops Obtaln-)d from 1:08cow 2harwkcieg Orig Pub : Fauchn. raboty stud. blosk. farmatswirtt in-taj 1957, VYP 1, 99-100 Abstract : The bacterial pollution was studied of 5 uamples of zinc eve drops - a 0.25% s3lution of "Jite Oulfate G distilled water, the total nulabor of bacteria in 1 u1 of drops, 1-18 Aours after preparation, fluctuated bstveen 6230 to 10,000 (in one case, tot4il 5rowth): In two cases, hemolytic flora were d1scovered, Card 1/2 USSR / lAcrobiology. Ucrobcs Pathogenic for :lsn and P Animals. General Probleus. Abs Jour Ref Zhur - Biologiya, No 6, 1959t No. 24059 and in all cases - growth on :ndo';o c-Alt1wo. The introduction of tho isolated oultAres of bacteria into Injured sclers of the eye of guinea pigs induced the developmoat of an Inflammatory process. -- V. V. Vlodav3ts Card 2/2 35 ARMITVAP TeNT -Sat- I-o-a --- of--d-ormistological serylos for ohMirem ot lshsvmk~ Testederm I Irene 32 fto,,400661 A-4 050 (NrAA Uslo) lo Is kafedry kDabi*ih i venertebsekikh bolmamV (Now. - dotgo- 1H.1o Yandayov) Ishevskogo maditsinekoCo Instibuts. (d1re - prot* Wo Rupasor) I detskogo pollklInlobeekop ob*lvwMm#j%lr* lo*2 Postukhovskogo rorove go Ishavska (g2avW virseh C*Vw *11tanovskly), (8M3 DMMMMo In info & chI2A prey, A ther, In Rusla 6)) ARTVIYVA, T9.T, di;~raitTe results from treatiog Iq*tIp with a synthoWain swalvion &M yellow marcury salvep Tost.darm.l Von. )3,40.3188 5-0 159. (KINA 1312) 1, Is Imfedry kosbvqft I Yeverichookikh boleswV Ishe"Up aft- toluskogo iustituta i detakogo polikliulchsskogo~ 08yodiusaba No.2 PMtukhowskogo rayeas, g., Isheysim, UNMI00) (WOOMWIN) (XIOW-MUMIC Vol) FASEMY, L.I.; ARTEKIMA, Ye*T. Treatment In Woseo of Uw scalp with 4% spub iassftro Test* dome i yon* 37 vio*WS-W F163a (M 16810) 1. Iz kafedry bolozney (Zav. - doteent LelolwAsyer) bhovsko- go moditsinskogo institutse 49- ARTEMIYEVA Te T Late results of treating patients with trichooWcoals with a 4 percent spilin plaster. Trudy 210 183-1V 164* (COA 19o1) 1. Kafedre, koshnykh bole2ney (say. - dotment L.L.Fardqmv) lahavokogo meditainskoga instituta, ARMIIIVA, Ye.V. Insts ut for the contlauer.0 Ison of electric O"InAtion frequencies. Ism.tekh. no.4. =j1 $56. (ma gal) (Alsotric asasurpmtO34 - - Coqartog nomatiple freqxasucles of electric *1101124110M. Ins, takh. no.3:" W-Je 157. (nu lot$) (OSCIll"ph) (hequslor wav"102ts) M.3 na ot H g I T 9 99 9 jj.- g lit ilf 1 lit 11 - LUEMBOT, T,Y* ~ Additional errors In ibe frequency of electric during their transmission. Ism.teft. no.20245 Mr-j-p 038. MIA U93) (06oillators, Transmission) ARTAWINVAS Ye. V.., Candidate Tech Soi (d1MR) --- "TWestiptio-2 of the d1ffer. ential method of measuring the froqueney of electrical oscillattoveol, Nbscm, 1959, pub3JBhed by standartgiz. 15 Pp (Cowittes on StatdArOlag i0aemms., and Measuring Instruments of the Council of MinlOters VSSA,, All-wM)a Sol Res Irst of Metrology im D. T. Mendsleyev)v 180 copies (n, No 230 1999j, 165) 9 601V.' 15-59-4-17/27 AUTHOR: Artemlyeva, Yt~.V. TITLE; The Differential McthGd of Measuring Electrical Oscillation Prequencie,,; (D1fferen,1;s,ii,.1,'nyy metod iznerentya christoty alek*rlcheskilrE 1:olebaniy) PERIODICAL: lzmerltellnaya tekhnika, 1951), fir 4, pp 31-33 (USSR) ABSTRACT: The differential method is w~.dely us(.