SCIENTIFIC ABSTRACT BEREZHNOY, A.I. - BEREZHNOY, A. S.
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CIA-RDP86-00513R000204820002-3
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Document Page Count:
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Publication Date:
December 31, 1967
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SCIENCEAB
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"APPROVED FOR RELEASE: 06/08/2000 C1'A-RDP86-00513R000204820002-3
Tapping prodUCing formations in the Romasbkino oil field.
Neft. khoz. 38 no.10:36-~2 0 '60. (M.rRA 13:9)
(Romashkino region--Oil well drilling fluids)
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"APPROVED FOR RELEASE: 06/08/2000 C1'A-RDP86-00513R000204820002-3
Study of the use of limestone as a fille~
Neft. khoz. 39 no.6~24-28 Je '61.
(Oil well cementing)
cement solutions.
t (~U~A 14:~)
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BEREZ~NOY, Aleksandr Ivanovich; B~LATOV, Anatoliy Ivanovich; KULAGI~,
e got y ch; ]2~s GoN.~ red. red.; VORONOVA, V.V.s
tekhn, red.
[Plastics in petroleum s~ gas industries] Plastmassy v neftianoi
i gazovoi prom~mhlennosti. Moskv% Gostoptekhizdat, 1962o 168 p.
(Petroleum engineering--EquiPment a~d supplies) (Plastics)
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B~~A.I.~kand.tekhn.nauk~ SIDOROV, I.A., inzh.
~ethod for cemehting 19st-circulation zones. Nauch. sap.
Ukrniiproekta no.9:66-69 '62. (MIRA 16:7)
(Oil well cementing)
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_I~E_ ~I~.~t~.OL.~_~.I..~ k~nd,tek~,n'nauk~ SH~VALDIN, I.�e.s ln~h.~ K~LAGIN, P.O., inzh.
Some problems re~tive to the t~pping of producing l~yers in o~1
fields. Naueh. ~ap. Lrkrn~iproekta nq,9~70-82 '62. (~J~A 16~7)
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"APPROVED FOR RELEASE: 06/08/2000 C1'A-RDP86-00513R000204820002-3
1. Ukrains~iy zaoohnyy politekhn~oheskiy institut.
(8~ebelinka region--Gas wells)
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A.I.; K~LAGIN,. P.G.
Chan~in~ the. =asin~ of the e~plo�ta~ian-b~ttom of ~as well~
..in the successive periods of their exploitation. Izv. vys.
uch. zav.; ne~t' i gaz 5 n0.9:51-56 '62. (MIRA 17:5)
1. Khartkovskiy gosudarstvenny~universitet i UkrVNIIgaz.
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"APPROVED FOR RELEASE: 06/08/2000 C1'A-RDP86-00513R000204820002-3
BEREZP]~0Y, A.I., kand. tekhn, nauk; SVIRIDOV, V.A.; Kt~I~&G1?~, P.G.
Using sili~bne to decrease the formation ~ foam in drilling
fluids. Neft. i gas. prom. no.2:36-38 At-Je '63.
(~.~z~ 17:ii)
i. Ukrainskiy filial V~eso~znogo nau~hno-issle~ovatel'sko�o
instttuta prirodnogo gaza.
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"APPROVED FOR RELEASE: 06/08/2000 C1'A-RDP86-00513R000204820002-3
I~EP~ZH~)Zs A.I.
Interrepublic seminar on degaestng oil-well muds.
gas. prom. no.2~?O Ap-Je '64.
Neft. i
(~I~A 17:9)
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DEGTEV, N.I.; B~~.
Measuring the spec~'ic weight of gas-cut muds. Burenie no.9:2~-
~? ,~o (M~A ~:5)
1, U~ainskty i~i!ial Vsesoyuznogo nauchno-issledovatel' skogo
instituta pri~odnogo gaza.
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"APPROVED FOR RELEASE: 06/08/2000 C1'A-RDP86-00513R000204820002-3
B~F~,P~OY, A.I.; DF~TE~, N.I.
Monitoring ~ho aonte~t of gas in dr~21tng fluid. Trudy VNIIGA~
no.19/..~7:122-!31 '64 (~iRA I?:8)
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BF~EZHNO�. Ao].~ SVIRIDOV~ VoAo; KULAGIN~ P.G.
Investigating the antif(aming prepert~es of polyorganosiloxane
compounds used for drilling fluids. Izv. vys. ucheb, zav.;
neff' i gaz 7 no.3s25-30 '64. (MIRA 17:6)
1. Khar'kovskiy gosudarstvennyy universitet i UkrMNIIgaz.
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BI~HNO~, t,?; ~TDOROV, I.,~o
Cementing high-viscosity ad q~ck-hardening ~x~u:-c:~ ob~ined
~ the Lu~-oduction of d~- free-fl~ng m:~t, erf.~] .h~to cement
sl~'~. Neft. khoz. ~ no.6:24-29 Je %~+. (MI~ 17:8)
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(I~RA 18~6~
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BEREZHNO~, A.I.; KULAGIN, P.G.; svIRIDov~ V.A.; L~VCHENKOV, A.T.; T/~ARENKO, N.
Fo.m damper on an organosilicone base. for clay muds. Burenie
no.3:16-17 '64. (~[IRA
1. Ukrainskiy filial Vsesoyuznogo nsuchno-issledovatel Iskogo
ins%ituta prirodnogo .gnz. i tres% "Poltavanefteg. zrezvedke"?
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BEREZhNO�, A. ~. C, and Tech Sci ~ (diss) The Use of the Similit,~de
Method During the Investigation of Mass Transfer Processes," Moscow,
1960, 22 pp, 150 copies (Pawer Engineering Institute im G. M. Krzhi-
zhanovski7, AS USSR) (K~, 49/60, l~7)
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l~$sertat~n: "Use of the IsoChrontc.Isother~Lc Potential to ~uate bl[�Ue~on in the
Gaseous Phase." Cand Tech Sci, Xa~an~Chemicotechnological Inst, Xazan', 1954,
(Referativnyy Zhurnal--~im~ya, Nomoo~, No~ll, Jun ~)
SO: SUM 318, 23 Dec 19.54
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~anslation from:
sov/58-SR-5-zo~64
Referativny~ Zhurnal l~zika, 1~% Nr 5, P 92 (U$SR)
Generalization of Experimental Data on the Diffusio of Vapors
PERIODICAL: Tr. Kazansk. khim.-tekhnol, in-~a_~_ 1958, Nr 22, pp 115 - 122
Car~ 1/2
The dependence of mean relative diffusion flows in a gaseous medium
have been obtained (A.G. Usmanov, Tr. KEhTI, 1958~ Nr 22). Using the
similarity method on these data, the authors arrive at a generalized
dependence of the diffusion coefficient on the entropy of the system
at various temperatures in the case of an isothermal process. With
the aid of these generalized dependencess diffusion coefficients are
determined for a series of binary and single-component mixtures in a
wide range of temperatures. Deviations from the experiment~JL d.ata do~
not
~ for the majority of the diffusion coefficients. It is//')
exceed
similar generalized dependences yielded a satisfaotor7 (,/ /
noted that
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sov/58-59-5-1o~6~
Generalization of Experimen~;al Data on the Dlffu$1�Il of vapors
result on generalizing experimental data pertaining to viscosity end thermal conduotivit
in the gaseous phase. (Usmanov, A.G., Bol'shov, V.R., Tr. KKhTI, 1958, Nr 22).
L.Po Kholpanov
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2~871
S/08~/61/000/015/00~/028
AUTHORS: Usmanov A. G., Berezhnoy A. N.
TITLE: The similarity method in the t~ermal diffusion of gases
PERIODICAL: Referativnyy zhurnal. Khimiya, no. 13, 1961, 45, abstract
13~328 (Tr. Kazansk. khim.-tekhnol, in-fa, 1959, vyp. 26,
- 182)
TEXT: The application of methods previously reoommended (RZhKhim, 1959,
No. 6, 18379) for thermal diffusion is studied in order to determine the
separation and the values of the thermal diffusion constant ~ and of the
thermal diffusion ratio KT related herewith, The relative separation of
binary ga~ mixtures in thermal diffusion is expressed by the equation
A~/Y/i~S 1.986 (81 - S2)/R, where dh is the separation of the mixture
with a change of entropy at the boundaries equal to S1 - S2; ~S is the
separation of the mixture proportional to the change of entropy ~S, which
is counted from the constant beginning Sll ~1 and S2 are the values of the
entropies of the hot and cold parts of the mixture in steady state; R is
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The similarity method in the...
26871
S/081~/61/000/013/003/028
]~o5/]~2o~
the gas constant. This formula comprises more than 100 binary mixtures of
mono-, di-, and polyatomic gases in various combinations. The deviation of
the experimental points from the straight line, which is described on the
basis of the foregoing equation, is usually not higher than 3 - 4 %. The
equation makes it possible to interpolate experimental data on the
separation of binary mixtures by thermal diffusion to a range of temperatur~
and concentrations that is not covered by the experiment. [Abstra~ter's
note: Complete translation~
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AD~HOH~: Usmanov, A. ~., Berezhnoy, A.N. $/~ /00~/0~/002/0~8
~ -- -- ~o~ 1/~oo~
TITLE~ Generalization of Experimental Data on Ther~l DiffUsion,~of Ga~es
PERIODICAL: Izvestiya vysshikh ucheb~kh zavedeniy. Khimiya i khimicheskaya
tekhnologiya, 1960, Vol 5, Nr 1, pp 8-15 (~SR)
TEXT~ The authors indicate an eq~tion~ ~-- = 1.986 S2 (2) to express the
separation of 9i~ry gas mixtures in thermal diffusion, The s eparation by thermal
diffusion, and other values of gas mixtures connected with it, can be determin~d by
this equation in a wide range of t~mperaturcs and compositions. In their ~per, ~.he
authors discuss the method of generalizing experimental data on moleculs, r t?a~sport
in gases (Ref 1),. to determine the thermodiffusion constant ~ and the thermodif
f~ion relation kT. By thermal diff~ion, the system comes into a state in which
the effects of separation and mixture counterbalance each other. The fill result
of the two stea~ processes is expressed by the above equation (2) where
thes eparation of the mixture at a change Of entropy within the limits S1 - S2;
is the separation of the mixture at a change of entropy ~S calculated from a
constant beginning S1; Sl~and S2 are entropy values of the hot and cold portions,~
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Generalization of ~']xper~ment~l P::.b~ on ?he.mai
Diffusion of Gases
the mixture in a stationary state; R is the universal gas constant. The generali-
zation comprises more than 100 binary mixtures of 1-, 2-, and polya~.omic gases in
various combinations. The results obtained are rcpres:~nted in ~h:~ coordinate
A~_ and---~, in figures 1-4 They are satisfactorily describod by ~,uation (2)
'.]'able 1 shows, ~s ~n example, th~ values of ueparation for the mixture~ l{e - Kr
and }re - Xe calculated by equation (2). They are in good agreement ';,ith the
perimental results. Table 2 gives average values of ~ for mixtures with equml con-
tent of components before separation. Table ~ gives the values of A~ k? mhd a for
~he H2 - D2 mixture in a wide range of concentrations and temperuLures. Slmilar
results can bc obtained for other binary mixtures. On the bnsis of thio
data can be c%~lculated by interpolation in a temperature- and concenr, rat~o~] range
which is not covered b)' the experiment. There are ~ figures, 5 -tables, and 8
erencc::~ ~ of '~Q~ich crc ~ovict.
AS S L: C l.~ ':' ! 0 :';:
Card 2,"~
Kazanskiy khimiko-tekhnologicheskiy institut im. ~..~,~, Kirova;
.Kmfedrs_ tcplot~khniki (Kazan' Irmtitute of Chemical ':'echnclo&y
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Ceneraiiz.ation of }:�perlmentn] Data. on Thormal
Diffusion of Oases 'B011/2~00~
im~.n~ [~. ~,{. Kirov; Chair of Heat >~ngineering)
!~UB~ITT~;D: Octob:~r 2, ~958
6966h
3/60/oo 3/o ~.!c,~o ~.,'o 58
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223.~
S/196/61/000/005/00~/00~
//, 00
AUTHORS t Usmanov. A.G. and B_~erezhnoyt A.N.
TITLE~ Investigation o� the Molecular and Thermal Difffusion
by the Similarity Method
PER~ODICALt Referativnyy zhurnal, Elektrotekhn~ka ~ energet~ka,
luchistyy teploobmen, ~.,
TEXT~ A generalization ~s E~ven o~ experimental data on the
d[~s[on coefficient In the gas phase based on the conceptions
on s~m~lar~ty of molecular processes, If all the calculations
are made on the basts of parameters that correspond to an
arbitrary value of the entropy S, the relations ~or the
densities of the dif~s~on flows are unequivocal f~ctions of the
entropy
I~s = ~ R
where ~ - dens~ty of the di~slon flux through a unit of
thickness of the ~as layer on chan~[n~ the entropy at the
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~ 22336
Investigation of the Molecular .,. S/196/61/000/005/002/00~
EO75/E535
boundaries by S2 - S1; Z~ S ' same for AS = S1 - S1; R - uni-
versal gas constant. Applied to the coefficient of isothermal
diffusion w/ih a concentration gradient equalling unity, the above
equation can be written as followsl
= ~ R
This formula was verified for the diffusion of yap.uts from the
surface of a number of liquids into a volume filled by other
gases. The calculated values are in agreement with experimental
data within 2%. In a table,which is included~data are given
which were obtained by calculation according to the general
relationship governing the diffusion coefficient for a number of
temperatures. A similar assumption of the generalization was
applied for the process of thermodiffusional separation of binary
gas mixtures within wide ranges of temperatures and concentrations,
The generalized relation for the process of thermal diffusion is
Card 2/~
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investigation of the Molecular ...
22336
96/61/000/005/002/00~
~073/~535
described.by the straight line equation
SI" $2
~ . 1.986 -----------
~here Z~k - magnitude of the thermodiffusional separation of the
mixture on changing the entropy at the boundaries by S1 -
~k~S - magnitude of the size separ~ti�n of the m~zture on
changing the entropy /~S coUnted from the constant value
S1 and S2 -entropy values of the hot and cold parts of the
mixture in the stationary state. The separation values are calcu-
lated for the mixtures helium-xenon, helium-krypton and hydrogen-
deuterium w~th~n wide ranges of concentrations and temperatures,
~2 references.
Abstracted'by V. L~rusternZko
[Abstractor*s note~ Complete translation~
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s/ovs/ o/o 4/o4/ /o4=
~o'~ o/~oo9
AUTHOHB:
TITI,~:
Appltqa~to~ of ~ethod in the Investi~ati~n of Maes
TE~.Z0~ICAL: Zhurnal fisioheskoY khim~i~ 1960~ Vol, ~4~ ~oo 4~ PP* 907 - 920
of thermal ~iffuelon is used ~n eng~neerin~ for the
TS~T: Since th~ ~ffeot .~_ ~,.~...4~ d thews6~f~s~�n m~ss tr~ers ha~e
~lrea~ been ~nvestts~ted ~Y times, In the present case these ~ro~e~s ~re
studied in the light of the similarity of moleculsr Processes. ~o ~eometrtc~ll
stail~ subsystems oont~nt~the s~e n~ber of 2olecules with the s~e ~e~ees
of freedom ~e dtsouseed~ 5ubseq~ently~ the ~ener~l~zed' ~ct~ons ~ examples
for their application for the ~etermtnation of the m~ss tr~sfer ooeff~cients
~e ~tven. Table 1, ~oreo~er, contains the diffusion coeffic~ents of ~apors of
var~ou~ l~qui~s tn a temperates ~ concentration ra~e not oovere~ by the
~ert~ents, But calculated, from the functions der~ve~. ~pertmenta ~ith bina~
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Applioation of the $i~ilarity Nethod in the Investigation
of lass Transfer Processes ~010/~00~
ration of these ~xtures by thermodiffusion ~y be described by equation (III)
of a straight l~e '(Table 2~ data .for the ~xture H2 - D2), ~ me~s of ~ inter,
polation ~ the r~ge of'~he given generalization ~rther data conceding the
thermodiffueion separation of~ binary gas ~xt~es may be obtained for tempera-
tures ~d concentrations otherwise not oovered. There are 6 fi~res~ 2 tables,
~d 22 referenoes~ 7 of which are Soviet.
ASSOCIATION:
SUBMITTED:
Xasanakiy khi.iko.tekhnologioheekiy inetitut im. So M. Xirova
~Xazane institute of Chemical Engineering imeni S. M. Xiroy)
larch }0, 1957 (initially) and December 4, 1958 (after revisioi}.
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AUTHORS
TITIan:
PERIODICAL:
8/124/61/000/012/027/038
D237/D304
Usmanov, Ac Go, amd~Berezhnoy, Ac No
Investigating molecular and thermal diffusion
by the similarity method
Referativnyy zhurnal, Mekhanika, nco 12, 1961,
106~ abstract 12B738 (V sbo Konvektisno i
luchistyy teploobmeno Mo, AN ESSR, 1960, 188-
204)
TEXT: Starting from some not very clearly formulated
sumptions concerning the character of the dependence of the
coefficient of gaseous diffusion and thermodiffusive parameter
for various gas mixtures on thermodynamic magnitudes, the au-
thors suppose that a simple relation exists and is true for all
gases� In p~rticular9 it is etate~ that %hess magnitudeg de-
pend only on two characteristic entropy values, appearing in
the design of the experiment, from which the above coefficients
0ard 1/2
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S/124~61/000/012/027/0~8
Investigating molecular and��� D237/D304
are determined� The processing of the large amount o~ experi-
mental data obtained apparently confirms the supposition of
universality and simplicity of the above-mentioned relations�
Graphs and tables are given~ based on experimental data� The
result obtained is usel~zl insofar as it enables one to deter-
mine coefficients of diffusion and thermal diffusion parameters
for the conditions outside the experimental ones� ~-~bStrac_
ter~s note: Complete translationo_7
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� AbTHORS
TITLE
' PERIODIOALz
Usmanov~, A. G:i', Berezhnoy, A_~._
�~896 '"
s/o76/ /o ?/oo,/oi?/o29
1Ol/ 186
An equation for calculating the diffusion coefficient of vapors
Zhurnal fizicheskoy khimii, v. ~7, n~. 1, 1963, 179 - 181
An improv.ed equation is ~ive~ for the diffusion coefficieni,
TEXT, . ...... ~-~-~
� D - 1.O12~6S [(~ - S)/R]O'141, ';~ere D and DAS are. the diffusion coef-�i- ..
_ - - ..... .............. :.-:~ ........... - . , '- .
� .cients in the intervals of-the change in entropy S1 - S and aS =.al - S1,
-- respectively. S1 is the entropy of the saturatsd vapor directly on the eur-
. face of the'~i.quid and is calculated from S1. a ~vrv + Sgrg - R(rvln rv
.', + rgln rg), wh'ere 5v and Sg ~re the molar entropies of the. vapor an~ of the
are the mol'ar part of the vapor and.:of the gas on the surfaoe
.gas and tv, rg
' of the liquid. S is She entropy at the end of the o~en tube within which
.' diffusion occurs~- equal to the ~ntropy of the gas into which the vapor
diffuses. The values of Das(~m2/s'ec) for the diffusion of various organic
Card 1/2 . ~ .; �
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"mean deviation .~2.. 2' .~2' A~ t ~e, Ar, Ne, D., and ~ .
' ~i~ and the ~~ Calculated values fro- '~ - ~u2 are tabulated.. The
u~zers a me-~ -~ ~ error amounts +~ . ~.~nose obtained ~.-
. ~... uA caAculatin= +~.~_ '~" -
entropy un~+~ .~ , o -,,u~e values of
are I ftg~e and ~ - - -~?nerto not been d ~ - ] //n . 0.00 - 6.00
. ~able... : e:ermxned experimentally. ~here
� ~ ASSOCIAtiON, 'gazanskiy khimikortekhno '
;'.~. '..
-. ~.
', ..:.1, Car'd 2/2
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U~'~o~, .~.c~.~~ol,' ~.~.
Oh~ao~erts~ica o~ the ~he~d~ueto~l~ioaehips, mee ~r~e~er taloned
on t~ ~e o~ ~ner~ized Izv.~e.u~eb. zav.I
~Plo~iki.l' ~z~sk!y ~k~tek~olo~eheekiy inetitut l~ni Eirova,(~e~alS~8)
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clay from different deposits, al~ina, solub].e glass~ sodas l�~es ~ag-
nesite, dolomite, magnesia and quartzite in the proportion of 2Mg0:
SiO2, .magnesia and alumina in the nroportion of MgO..A150~, n~tural
serpentine, and other materials w~ inve~tlgsted as to ~eir refrac-
toriness. Chromite had the following chemical e~.mposition: Si02 3.40
Al203 ltl.?5, Ct203 b2.O, FcC 22.92, CaO 0.58, and MgO 1fi.63%. High-
refractory mixtures with quartzite can be obtained with 0 to 15% and
8? to 100% chro.mite, l~lth 0 to 4~ al~ina the refractoriness did not
fall under cone 37. Soluble glass (20%) and soda lower it to cone 16.
With up to 20% CaO, 15% MgO, and 20~ dolemite it was ov~r cone 3?.
With serpentine (over 24%) it falls to cone 18. If clay, kaolin, alum-
inum oxide and its salts, soluble glass, etc., are used, low-.melting
glasses and silicates are formed with the magnesia silicates p~sent.
A blinding .mass of forsterite type was taken, amounting to 20% after
firing. The mass had the following granulometric composition: 1 to
2 mm. 6%, 0.5 to ! mm. 8%, 0.2 to 0.~ mm. 24%, and under 0.2 .~m. 62%
Ssmples were pressed at 300 kg./cm., fired at 1650� for 6 to 6.3
hr., and cooled for 24 hr. The brick obtained was sintered; the mech-
anical strength was f~om 350 to 500 kg./cm. 2, water absorption
5.1 to 6.2%, apparent porosity 17.4 to 20.9%~ volume orosity 17.4
to 20.9%, volume weight 3.2 to 3.4, specific weight 4.Pl to 4.2, refract-'
oriness above.c?~e 3~9, beginning of def9rm~tion under load of 2 kg,/cm.~
at 1570o to 1595 2%, and collapse at 1620�.
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' ' ~to~;
**:******:0.**:.....
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IW.II NI.IIIIIII )' ti[ lit:lEilt"Jle Isl'k'k In I~litl[ .il .i -,tllJ~cik'itlJy
iii[ii lt'lllJ~f:tlllfl'. ~j~llwJ is Jgllllt'tJ, st] loll i~ JilL' JijlllJili~
it.t.~lJlJllil. Jltik~lJ ;1~ Il JlJJllJlllJ~ III Ilt'i i.lJ Ill Jill~ Jll'~'Jl,ll.lJlOJJ ~J
k'JlltllllV Iil.lj~llt'slll' JlfJt'~, ~'JlJcJl .tl't' t'Jlt'.lJlL'f :llllJ I)JIUll
U[ IJlI~tfI~IlU, I:lJt', IJllllll~', t'lt'., re.tLr'- I~U~'JJiJu Iht' li~( oJ
[ulnlt'ljlt' Jm.lil]~ Ill III.I[II~'~IIR IVJ[.ICIOIj~'~ 'l'hc~' [t-
[f:lulull,'- II~N~'~N .l Iii[il J~'illlIt'l'~llll[t' uJ I~t'~lll'JllK t~J
'J'Jl~' t J[l~Jil~'lJul:~ Illl~'~ ;llllJ Jill' iil~'l Jlt'~ ItJ ~Jk'~l.lJ III,II'
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pt~r i Ki~td#p~w,,e. No. 4~ 78-119
� pim-I ol~l.e4 andes' I~bor~tuty eouditlom, frmn alumin.~ i.
~ tcmlx'f~ture ~ degoemation amir Ioed ('~ Itl. ~ ~q,
cm.) (,/over 1900% The leehndoStcal Fruc~'~ d produr-
tk~ a~ &pinel rdrm~tade~ Imm aJumln& nnd cauqtlc r,~l-.
llt~ile ~te twin delrdl~-d. ~ rt~f~ ~sv~ the
IdluwJnl[ pralx~llex: lemlx'ral me o~ belhl#Jng o/deformt~ �
IJm~ uudd' 1O~ b~Msm t001)* and 1600'; de~f~ctio~, at
(~ir conltltl}, ~ ~10'to 40. ~ IrawiMan~ to
~jmwl rtfraeterk~ ie trot a~q high ns that mentiom, d in liter~.
tm'e; they a~e difhtly affected by tilJ~, lime, ,%lartln rial,
�nd o~ls~ mat~Ld~ ~t 10(10'. The intfadoctlon e/.,,omc
.dmisturt~ not'det~ted I~'~ formation d epineJ; thc ~ddi-
lkm a~ chromile has ~ ti~iGcance. Spi.cl rr-
fractar~e~ nmyJ~ in eemt.~-t with tl~[~. 'te ~aml
hill:My .lumJnou~ and chromite r~ but ~uch
Caflt~Ct wit,b..~ivi,c trod. C~L~lly.fr~i a.nd ~lica
tarJes slJouM De ax'aJdc~. Tess. t of Spinel
the emsn iud ~teh of an XT3 eJeetrie ,teel.mdtint fut.
na~ tbo~ed tb~r redqtftn~e tO be f~ supe~or to tb.~t
�itk,, tefrm'tmJe~. It ~q found po.ible to replace alu.
mina by t~utite,~ ~a~ spinel t~f�~'tort~ wmkLqg under eon.
ditton5 wh~e the t~npt~atu~e ~ de~ormatlo, is betwee.
1500' and IM0* ~md _e~r_aetmim~_ - b 18~*.
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ee o!
~n~' A~ s~e~ ~v~tm work on fi,~e~e
~, t~ au~m ~y ~m ~ the nmnufaetum of
~, ~ ~ 1-7% of ~ium ~1~ m ~(~ e~q (~f
bri~. ~ o~ on tho m~'it~ ~iven by
bfl~ in t~ ~fo of eJ~flo o~ fu~ mul (.~n~J bricks
~y) in~bufo~.~fuM m.~. In ~1,
~, ~gh ~i~ ~ h~ ~u~ might wall
F~fl~ ~ ~ f~ to f~ ~ ~ti~y ~ of
~. 8tm~u~eh~onhting~Kusion~fm?nl[ F~,
~ ~ ~ ~ by ~ t~ b~ at �
~tum h ~ ~ � ~ o~ ~n~ ~e
flake. -.
CIA-RDP86-00513R000204820002-3
!:-iI
i'el
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CTA-RDP86-00513R000204820002-3
I I II t I t II t It I t I'ttti :
I I t I Il t I II llt..lltt.'tl
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Il Iai e~ (IH(;); "F,t, yhm...," iJid., # Iai 147 (Ig41);
",~lJlX4Jlute .... *' I~., ~1 {11] 23~ (1942).),&ilo.
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I~~~ S. llg~zm,,ot. V. 1. l'~gsvat.ov.
. l~lrations. Price;It/25rubl�~. Rc~cwcd
in .~lt}~ t A'era~., 5 Jill 23-24 (I~UR)..--Pnrt I ~vcrs raw
m~terinls. Technoln~al properties anti thc ~irntifie ~ nrc
p~nted In the light of m~rrn physic~hemical virws. Part
' covers ntntetttml ~ramies; Part III, stone.ce~mic sh:q,es; and
P~t IV, ~[~tory sha~s. Paris V nad VI ;tie Ilmilt d Io gl:tzeg
and ceramic colors. Numerou~ errors in the book n~e ~inlrd
out. It it ~I;~{1 it~ n text for ch~,mtcal.techmdngit*nl insti-
tutes end fnrultl~ by the'~ F~lue~ttlon.
B
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C]:A-RDP86-00513R000204820002-3
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"APPROVED FOR RELEASE: 06/08/2000
AS&.~L& iIT&LLIIdI~Cdd~ LWIli9MBo CI,~MMpIc&~II '
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kat~en of A. Boehvar's.M~e~bed f.er
� ~ml'~ k~llS, tin ItLL~/~I~.I �
lh.~ri~ ~.nU)' ~. B ~ 7 o~nqmm'n~, nmi
� .f I~ applleatl-n ~ the
the t~whnhlU~ ......... e~t~ of silicate
I~mnd~. JO
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.............. ~.. .... ~ ..-. )- ~,-
PA 14T73
"The Theory of Cc~pressin~Fire-- reslStiugPro~uots
Out of N~plastic Matter," A. S. Berezhnoy, ~ pp
"0gneupory" No 7
Discusses mathematical formulae to be used in the
mechenical an~hydraulic exertion of pressure an
magaesimabricks. Table au~ graphs showing
relati~ushlp of pressure applied to change in
thickness of bricks.
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B~%EZHNOY, A.S.
PA 1~27
Furnaces, Metallurgical
"Synthetic Metallurgical Powder for Martin Furnaces,"
A. S. Berezknoy, V. I. Mitasov, I. G. Faaeyev, Factory
lmeni Serov and All-Union Institute ~f Refractory
Materials, 2 pp
"Stal'# Vol VII, No 5
It is difficult to use magnesium metallurgical powder
in Martin furnaces, even when it is combined with
slag. Berezhnoy, at the Institute of Refractory
MAterials, has discovered a synthetic metallurgical
powder (for exmmple, ~azi~rite, ta~asite and sc~e
Furnaces~ Metallurgical
others). Its producti~ is not being male public.
Nowever, does describe repair work dame to i~xrnaces.
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Magnesium 0~mpounds
Aug ~9~7
"Me. rtinite, its Production aud Ohmracteristlc~' ~
A..% Berezhnoy
"0gneupory" No 8 .
Describes methods of deriving martinite from suc~j
ores.as Mg2S,04, NgAl~04, and others. Fire-
resistance of martini~e is higher than temper~tu~ee
of 2000 degrees. Of all magnesium compounds,
mertinite appears to have the highest fLre-resistlng
qualities. Tables and graphs show relative
characteristics of martinite and other mngneslum
compouads. . ....
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~ $ i � ~ k & &[T&kLI~GICAL
CZA-RDP86-00513R000204820002-3
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"APPROVED FOR RELEASE: 06/08/2000 CTA-RDP86-00513R000204820002-3
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"APPROVED FOR RELEASE: 06/08/2000 CTA-RDP86-00513R000204820002-3
.lo O0
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"APPROVED FOR RELEASE: 06/08/2000
CZA-RDP86-00513R000204820002-3
meee e�eeeeeeeeee �
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BEREZHNOY, A. S.
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"APPROVED FOR RELEASE: 06/08/2000 C1'A-RDP86-00513R000204820002-3
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� . - ' ~ � ~ ).--[ ]. A redewdtbe
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CIA-RDP86-00513R000204820002-3
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"APPROVED FOR RELEASE:
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CL &$1~/IC&~l~ll
,... ******::
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~., "~e p}~'eiCo-chemietry of' magnesium .oxicTe in the
0a0-Mg0-A120~-F203-$i02." p. ?17
~or clearing up that ~.rt of the system Ca0-MgO-A!20~_-~e02-$i02 which ia of
imtereat here, first it wa~ necesSar~ to establish wh[c~ Pha~es Are in equilibrium
with magnesium ox~e an~ ~.t the same time with each other. The value o~ the
c~efficiemt of thermal ex~ana[on of almost all substances in equilibrium with
magnesium oxide are very eloaete the value of the expansion coefficient of
ma~neaium oxi6e.
Ail Union Institute of }'irepreefs. July ~0,
SO: Journal of A~plie~ Chemistr~ (USER) 21, ~o. 7 (1~48)
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CTA-RDP86-00513R000204820002-3
Re~:l~~ 'Jo ~1 ~lmaee (Reakt~.ra v tver,lykh f~kh~.
IIZ K.
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iflKt d diabHe on the pre,Ri# d mq~e~, lo re-
ffoct~. A. S ll~. ()c~A*y. 14 Ill
I I~*C Fuinl (d c~d('in.I mi%tun'~ td d~lm~.
JS'~ .aim-~lc, .Im,~t ~11 Iht ~1~) ~a~ in Ibc hwm ~d
hw~t.ite elq~'..t~l ~ml t~ ~rl~trt~tn~ ~4 t~ mixture
tur~. I:i~l [nixtutt~ ~d d~l~ ami ma~ite ~tai. inl
Io Ihs~' ~ I~vsli~'~tt~ ~ml ;tl~l olivim'.
Ilelilc I~ullw t~ Ih[~ luml.llnetltal ~'h.lnKrs ami
tm d t~ melt. ~'~lctr hin, lm;
~'~ (~ I(w a ratio (d El~l~:n~i~n(~ltc
.4~:~h~. l)~l~ alJd H~tl~it~ re,ct mtly at t~lx.r~tur~
h~ t~n the dL~t~l tem~atu~
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"APPROVED FOR RELEASE: 06/08/2000 CTA-RDP86-00513R000204820002-3
PHASE X TRFASURE /BLAND BIBLIOGRAPHICAL REPORT AID 707 - X
BOOK Call No.: TPSO7.B9
Authors: BUDNIKDV~ P. p.; BEEE~Y, A. S.; BULAVIN, I. A.; GRISSIX, B. M.;
KUKDLEV, G. V.; POLUBOYA~INOV, D. N.
Full Title: ~%NUFAC~TrRE OF CERA~ICS AND REFRACTORY MATERIALS
Transliterated Title: Tekhnologiya keramiki i ogneuporov
PUBLISHING DATA
Originating Agency: None
Publishing House: State Publishing House of Literature on Construction �~terlals
Date: 1950 No. pp.: 575 No. of copies: 4,000
Editorial Staff
Editor: P. P. Budnikov, Member of the Academy of Sciences, Ukrainian SSR
PURPOSE AND EVALUATION: ~nis manual is approved as a textbook for institutes of
chemical technology and of construction materials and for students specializing in the
technology of silicates. The book compares favorably with its American counterp~s,
e. g., volume III of Ceramics by Ed. P. McNamara (State College, Pa., 1939) and
Factory Design and Equ~nt and ~9nufacture of Cla~ Wares by T. W. Garve (N.Y., 1929).
All phases of manufacturing are extensively covered and the book can be used as a
reference book.
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"APPROVED FOR RELEASE: 06/08/2000 CTA-RDP86-00513R000204820002-3
b lb ~k~ b ~ by tb CaO, ~ ~- ' ~ M ntb m~t~ ~ CaT~ n~ MIsT~ to ~lh a h~b~ ~-
ew, ~n~ ~ ~)~kt~t u fltully flrt~i.~ in v~w of the
~ ~ ill L'll~Tlll~ ~tld ('dl~li illin, hi~lhiI (ill* I-
with
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"APPROVED FOR RELEASE: 06/08/2000
ee
CZA-RDP86-00513R000204820002-3
~tn~um ~tofin~ of mix-
(4) S~tem CaO-M~. ~e
unfa~n~ efl~t u~n ~t~ and
~. 2 p~tom~apht' IR
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"APPROVED FOR RELEASE: 06/08/2000
C]:A-RDP86-00513R000204820002-3
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"APPROVED FOR RELEASE: 06/08/2000 C1'A-RDP86-00513R000204820002-3
B~I~.LLU~GIC I
*.
oo *'�::o,~ oo
::::g,...
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,~Some dst~ on the s.v~m MgO-Ca,VrSiO~ and their
ntfl~a~ce in the tecb.uolo~y of ~~
Be~zhu~. Do.d: A~a~.. ~u ~. .3, . 1951.
~Ru~n s~m~'), ~ Thc follo~siug a~, ~.,
~nd p~enmg~ oi M~) ~ Mg~CaFt mix~.: 2~
1~~. S0; 1~0~, ~; 1430~, ~; 1345~, ~; 13~~, 30;
!~3~. ~; 13~a, 10; and 1370~, 0. Thc eult~H~ is ~td.
~t 75'~ ~F~ ~nd i340~. For Mg~O, a~d C~F, ~e
are ~percentag~ of Mg>qiO~): 18~�, l~; 1720~, 95;
16~ , ~; ]31~ , ~; 1~~. 7~; 11~~, ~3; 1140
11~'.~; I1~~,3~; i2~~,20; i~~, ~0; n~-] 1370
~c cutectic ~s estd a~ 60% ~F~ ~d 1]40~. Micr~op~c
~mns. of m~. Mg~F{ and Mgt~Or~F~ ~d not
~; l~0~, ~; t~10~, ~; 1470~0; 14~]~, 30; ]4~~,
20; 1410~, 10; 13~', 5; ~d 1370 , O. No curetS' mixt.
~-~ -*,~4 L~r Si~-Ca~s. A t,dquet ~ntg. 40~
three-~poncnt s)~lcm a eul~tk was o~, m. ]
1130% ~ntg. SiO~ 17, ~F~ ~, and MgO ~%. Volalile
pr~uct~ ~vere formed, p~unlubly /rom the ~acfion
~hc L~zmul,,t~on of re/rart~rk-~ fru~ ~,1~, ) .:~,t ~,IgSiO~
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"APPROVED FOR RELEASE: 06/08/2000 C1'A-RDP86-00513R000204820002-3
APPROVED FOR RELEASE: 06/08/2000 C1'A-RDP86-00513R000204820002-3"
"APPROVED FOR RELEASE: 06/08/2000 C1'A-RDP86-00513R000204820002-3
BEREZHNOY, A. S.
'ttu-e
"On the Struct~e and Properties of the MgO-ZrO2-
SiO2'~ystem," A. S. Berezhnoy, Lo I. Karyakln,
Profeseors~ Xh~r'kov Inet of Refractories.
"OgneuPory" !~o 3, PP 111-12~
Clarifies physicochem and some tech features of
MgO-Zr02-SiO2 system, wii~ Purpose of finding ex-
pedient ways for its practical use. Defines
phases of systeTM in equil, cons .~tructs diagram of
fusibility and outlines pOesible phase diagram.
APPROVED FOR RELEASE: 06/08/2000 CIA-RDP86-00513R000204820002-3"
"APPROVED FOR RELEASE: 06/08/2000 C1'A-RDP86-00513R000204820002-3
APPROVED FOR RELEASE: 06/08/2000 C1'A-RDP86-00513R000204820002-3"
"APPROVED FOR RELEASE: 06/08/2000 C1'A-RDP86-00513R000204820002-3
B."~EZHNOY, A. S., Prof
' 8truoture
"0~ Structure and Properties of MgO-Z~02-$i02
System," Prof A. Si B~rezhnoy, Prof L.!. Karyakin,
Xhar'kov Irmt of Refractories
"Ogneupory" No 5, PP 211-221
presents systematic investigation of soli~ phase
reactions in l~O-ZrO2-Si02 system and sintering
capacity of materials within this system. Discusses
tabulated results in detail.
APPROVED FOR RELEASE: 06/08/2000 C1'A-RDP86-00513R000204820002-3"
"APPROVED FOR RELEASE: 06/08/2000 C1'A-RDP86-00513R000204820002-3
Nov 52
1]SS~/Engineering_ l~efr~ctories. Me~nesite TechGolo~
"On Rationel Production ~thods for ~gnesite ~fractories out of ~tka ~w ~teri~s, ,'
A. S. ~re~noy, Corr ~m Acad So~ ~r SS~, ~l-Unioa ~st of Refractories
Ogaeupo~, No ll. ~
Reviews entire discu~si~ ~n te~nolo~ of ~nesite refractories ~t~ted ~y ~ p.
Pe~r~ls ~ticle ~ "Ogneu~ry" No 1j 19~2, givi~ some additio~ l~o~ation of his
own ~d dividing whole subject into two major problems: measles necess~y ~d possible
~der e~isti~ ce~ditions at Soviet pl~ts; the pu~ose o~' f~rther i~rovemezts in
production techn�lo~ in case of radic~ cha~es in process.
APPROVED FOR RELEASE: 06/08/2000 C1'A-RDP86-00513R000204820002-3"
"APPROVED FOR RELEASE: 06/08/2000 CTA-RDP86-00513R000204820002-3
0~.eupoz? 17, z~9~'--506 '.