SCIENTIFIC ABSTRACT FR:MAKSIMOVA, O.P. TO:MAKSIMOVA, M.V.
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CIA-RDP86-00513R001031700048-6
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U
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Publication Date:
December 31, 1967
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SCIENTIFIC ABSTR
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,~ZJTHOBS
0 P�~
The ;~c;tivating
TITLE: Transf orma~tion
def ormataii na
PERIOAZC~L:
,~BSTa~.cT
Card 1 ~3
Influenoe � ahchem vliyani
~pb aktiViZiruyu
m,a,x~tenaitnoye prevraehoheniye
Member of the AGademye
l~ikonorova, A. I.
~kgimova,
~_.._.,.......--- f plastic Lefarmati~n
zo� ~-~-zS/F~
on }darteneite
plasticheekoy
kladY ,~,ademii llauk
~BSR, 157� Vol. 114, Nr 4�
Do 76a-771 (vSSR}
pp. things to Confirm
among other on the
a er is intended, stresses ated
The present P F exercised by
e opinions on the 1nfluenoe The autho'~~~ inveatig
th th~~ transf ormation� original stability of
aoti�vation of �f the actually increasing
the rules of the xeatoratiof annealing at the austenite
austenite on the as&~ ~�of the stability of
or from the following
temperature. The c lastia deformation of the magrietometric
resulting from a p the strength temperature on
Rae ~u.dged by below room
ann~38ling the temperature domainon of austenite into d byethete.
g f f~9ote in of the tranaf ormati
the oaaasion the activating influeuch alloyaawhich
It was assumed 'ghat The authors
easily be determined To ertiea.
deformation can marked elastic p P
possess sufficiently
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137-58-6-13268
"Translation from: Refe rativnyy zhurnal, Metallurgiya, 1978, iVr 6, p 300 (L~'SSR)
AUTHORS: Mak~imnv~ p-~,~ Golavchiner, Ya.M., Lyubov, B.Ya.,
Nikonorova, A.I.
TITLE: Fundamental Trends in Investigations of the Theory of Mar-
tensite Transfarmation (Osnovnyye napr.avleniya issledovaniy
v oblasti teorii marten~;itnykh prevrashcheniy)
PERIODICAL: Sb. tr. Tn-t metallov~~d, i fiz, metallov Tsentr, n. -i. in-ta
cherno}~ metallurgii, Trans. Amer. Soc. Metals, 1957,
Nr 49, pp 427-444. Discuss, 1958; Vol 5, pp 147-160
ABSTRACT: Fundamental problen,zs of the study of laws governing the
martensite transformation (MT), the effect of various factors
on it, and the control of the process of MT, also means and
methods for the investigation of MT are formulated, ;f3iblio-
gra~hy: 80 referenr.es,
L, V.
1. Martensite--Ana]..ysis 2. Martensite--Theory 3, Metals--Trans-
formations
Card 1 / 1
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Re~u;l~,rt~e�,~.n the kinetics of mar'tensitic t}ransPorm~tiQri.s.
~~~-nt.)
speed of transformation of austenite into martensite is a
characteristic feature of all phase transformations. Thermal
oscillations of atoms in ~~he lattice are therefore one of the
basic factors determining the kinetics of martensite
transformations. "Ather~ial" transf'ormatlons are in realit
the result of thermal formation of nuclei which takes lace
a~t very high speed unuer certain conditions (low ti;rorkpof
formation of the nuclei at large degrees of super-coolie
high energy of the i,hermal oscillations at temperatures wY~ich
are not a.ow enou � �
~) Presence of locations which are
"prepared" for form~.ng nuclei lead only to an increase in the
temperature at which nuclei would form at these locations
owing to thermal f lu~ctuati ons
There are 5 figures a_nd 38 references, 24 of which are Slavic.
S~UB~IIITTED : March 20, 1957.
AVAIT~.-ABT~E
ca.~ 5/5
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2~_b-2/21+
e larii;ies in the kinetics of martensitic tramsformations.
(Cont.) of .14 .
c l~lA.
Steel co~at~ i,~ :." �~ ~ an~~ (F~-�~ . 2 r
e1 was observed
sothermal formation of martensileo~nmartensite transformation.
in the w:~ole den tedtbye .~5.~3 a in Fi~.2. Ldiaximum of N'
This case is 5
ocours at x-25� � where the f asst
F.~ al____1,~s (s~.own in the to ion�afP~;he alloy arjd the
column dives the Ru~ss.ian des~~,n Fi~;.3 shows the
Ives the martensite paint) .
last column ~;
initial parts of cLirves of iso~~~.eOma1 mare orl~jic Where oM a~
tion of the alloy H24 P'~ (~3.8/~ N1, 3.
t - is the time in minutes.
is the amount of martensite,
i ~ 4 shows the temperature dependence of the fort1Fe-NpieMn
F ~.
of isothermal mart~ansitic tre.nsf ormat1On ~ t is the time
a~.loys }aavin~ dif f erer~t mar t ensite point T ;
conds. The c:han6es in T have no e~fec~toansforma-
in se
position of the lower tempera"~ the 1v1~.tli~f n~~ tha boiling
tions (for the three alloys, y
point of nitrogen.
pn the basis of their own resbetconsideredras~ad ell proved
Card 4/5 authors conclude that :~t can
established fact that the temperature dependence of the
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21~..~.6-224
Re~,ularities in this kinetics of ma.rtensitic transformations.
(Cont.)
increas:~ng work of formation of the nuclei,with increasing
tempera#;ure, is 1;he correspor.~ding factor on the high
temperature side a~~ shov~~n a.n ea.r'lier work of the authGrg(C,7)
Steel ~i~~ r 22, contt~~.nix~ 7~ 0 ~ o C and 2 fin, see
:E'ig. `, g l~ If' tl~e cause which makes ^possible
observation of isothermal transformation in the temperature
range approaching #;he martei~site point is the high work of
formation of martensite nuclei, an increase of the trans-
formation speed should occur vlith decreasin~~ temperature. To
elucidate the problem the experiments were made with this
steel, the raartensa.te point of which is about 155 C. It was
found that in this steel the initial reduced speed of iso-
thermal transformation N' increases at first vrith
decreasing holding temperatures below the martensite point
and then becomes unusually high in the range between room
temperature and -5C) C, dropping si~.arply witYi further decreases
in temperature (Fi~;.2). St is concluded that the absence of
isothermal transformation at room temperatures, and the
occurrence of the transformation on cooling only, is
Card 3/5 conditioned not by some non-thermal process, but by the
higher speed of thermal formation of martensite crystals.
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24w6"2/24
Re lar~.ties in thE~ kinetics of ~nartensitic transformations.
(Cant .) Thus ~ thermal
the process of for~apto~e of the mainefactors which govern ,
motion appears to ~~..
the kinetics of ma~ctezlsitic transformation, as well as other
base transformatil~ns � Isothermal
mhe alloy of iron Ind? �o Ni 4 o Mn
aced, ln- t.~e~ tangs room temperature
transfo:c'mation was ~-n~'Eet ~
to -130 C.. As the temperature decrease�~ th.~venlbyal
reduced speed of ~.sothermal transiormat , g
~ 9 Vim. ~ dt M OlUO
o t
at first increase~~ 9 at ~-50 C it reachel value~below~160 C
thereafter decr. ea~ieS and ha.s very smal formed at the
(~ig.11 where V -volume of martensite9 -that
$tartiY~g moment oj' the isothermal prhi.chscan be)tra~sformed
part off: the volume of the specimen w
t - duration of the iso-
at the given t empl~rature (in /) ;
If the low energy of thermal oscillations
thermal process)� r the speed of formation of nuclei on
~~ 2 j5 is the factor limitin6 r
the low temperature side of tY,e maximuma then the rapidly
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AUTE{ORS: Kurdyumov, G~, V, and Maksimova, 0. P~ {Moscow) ~ 21~.-6-.2/2~+
TILE: Regularities in the kinetics of ma-rtensitic transformations.
(0 zakonomernostyakh kinetiki r~.artensitnykh prerrashcheniy).
PERIUDICA:L: "Izvestiya Al~ademii Nauk, Otdeleniye_ Tekhnicheskikh Nauk'r
(Bulleti:a of the AcTSc., Technical Sciences Section ,-
1957, No,6, pp~4-ll (U,S,S,R.)
ABS~.~RACT: In earlier work (1 and 2) the authors have shovrn that at
suf ficie:ntly low temperatures 'the speed of martensitic
transformations is measurable. Researches carried out by the
present authors ind~.cate that in some steels with a low
martensitic point T (temperature at which martensitic
transformation begin') the transformation of austenite
into martensite can be completely halted by rapid coaling
in liquid nitrogen, and isothermal transformation of
austenite into martensite can be observed at temperatures
shave the boiling point of liquid nitrogen C3 and 4).
It was shown that m d.ef in:it e energy of thermsl vibrations of
atoms is necessary f'or the formation of martensite nuclei
At insuf:~icien.t ene,r~,y the :peed of for~tatic~r. of nuclei, is
Card 1/5 practically zero; ~.a tYie en~;rgy of vibratiaraa ~.ncreases the
speed of formation :increase~3 prapor~ionally to exp(-UjRT),
where U can be c;o.nsidered as the energy of activation of
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~eind.tekhn.nauk; ZtIKONORO~A ~ ~' I'
O.P;� , Prod .
~KSIMOYA'r; -~ . martensite transf or~a~rio'~~~,4IRA ll:~)
-(_ Microetr+ictural investigation o~ ' S5 �
t~:l?.3-13 (MaxtPnsite)
i f iZ. met. no. -ra hy)
metalloved. 13__metallo~, ~
(Steel alloy
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fi;�== ,
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r ~~-' ,
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-. a OYe TO0112 tt ur ~ ~
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- - .-- a ral~ of canvk~rsio{t ~f austenite to martettsitr
~;, :t ,,,.w~, nvestigatedi bl- the t#crn~osrtagneti~t mrthot~ ?a the
te>up, range frnr;a ~ID6 to -I-ib~� on at~Ea contg. 0.$% C
and- ~.2% Mri, tEstci having a martensltc Saint t~, rat 1b5�,
Tlse tetttp. ~urv~'of the rote hag a amax,, llrke the previously
studied N[ 23, 11~[n 3,4%steel {~:.A, +t5, ~31Of), best in this
case- the ma,x� ak around t)�, .corresponds to imr.-easurably ,
fast ranversian, l.c: practically infinite rate. Isothermal
convcrsiesst at a fipea~surnble rate Ns fund only an lwth sides '
of the. "inCinlte-rate" intzrvfsl; pne range of sneasslrablp
slaw Isattsermai rtr�ansfarn:;xtion extends approx. from room
temp. to niyaut 1C~(1�, tltc other-lies below -60�. In the
high-tense, rtsngE~ the rate decre:hses v~ith increxisissg temp.,
' whereas iu the low-tentp. range the rate dccrenses with de-
crca.~ing temp. The gciacral formula for the tense. dc-
pendeuce of the rate N ~ JJO"rI~RTE~wIaT, where U
activation energl- of tttc tra,nafnrtnatlan, and W ~ work of
formntian of cr~y5tss. ussclci, sLstplifies ht the It�r-tempp raftgge
to N ~ Aa`~! ~, with U temp, inrleppGttclent. In the lhigli-
t temp, range, the.role of the a�~dRT becatnes pre~underpnt, ~
and Cf~ incrt~es.raisldiy with rising tempp. fihis arcoante
� for the Z branches of tlse rote curs~c an bailt sides of the maz.
Steels with martcnsltic points nt~t all tan-?tlgh atwve raaru
temp. can underjfo intensr. and proiangetl nutrtensitie txans- I
formatlan after +~er~re 1>~ rr!tsep~tefr e~ heigb-t
' ~~.
~� a~'~hir
pith the tempe~-0t fsal2i~pC t~~l � 1~ -�1~,~'a' ~ tea 41-vre~-pa w~.th ! el-'
11~ fe-11l~ teope~'Mti1.r+~. ~4 t-e~+l-xat�v .bot-. ohe ogti~ ta~perl~twre. the pro- ,,
~-� +~e~e aaaea tt1 r bald sooa a ~~ ~- ttlir~ ehr~y' M~to~e at the ~rahetaroatioa~ ~~
~i� oo appiro~-ia~ the opt~iswer ~a~stur+ti tlro>n either eide)~ the deter of tba
' �~
#-~ 1~ slower,
ta�ee-etaraleti~+la +~ete in ~1~+p-e~~sirela 2wtar ands prooeade ragrsl-reirrel
'~ �~
~-o '~ ~ ~~a r�t+~ rnat�,
~.e, ~ the iott~~ rate #e pz~~~ar~~t ~aa~ar; ibur it -~-lb ~~
~I~ ~0>elttifit fir 1C1 oin. 'phi ~ da~ee At trlllilfOH~tiaA~'~'~ ~~ #~'lei~~ �~
1i � vae about 20~. ~ie111ar oar~ren ~ with e. ~ of rate ~ ai l~s~l degree et s~
t-o tire~ae#or~latioh �t l ~ivea t+uq~ere-twre, were toned with various other ese �!
'w~~ eteei� with di~'!'are~lt ~e~re axrboa oot-t~rnts. Iahibiti~~t- of the �u+t- �~
'~/-~~`
' te~ite--osrtea>13te irautor+n�tiloa tbrau~h redid aooll~ns to -~19y1~ * ~ +uv~! !tr rem
ith 1.6�
l ��
~, lil w
off, tbrau~ st~tepwiee ~n~y~ aA ~ vets else obeerred on plolit~ stee �!;
a� O~rbo~4f queache~d 1n a~kollAe !tiled tq-ter eo a>i< tb OoAts~l shout g0~i su~teIIites �!
~-! the ruerw-ry trNx~eformetlah in �tl arree6� o>a �te~~-iee warait~ up aeo~ted to �r
it � *tlont ~,0~, 2rea~pforl~atioa ba~its,e to be obeert-able at about --1,00 ;rates et-d
emd --1~
1
1? �!
~1 � �
j~,
g. -�~
1;istento of tran,ssorfaation are pertect].9~ measurable at -� ��
11� ��
U� It n it t~'he Du~heF pt ~o~teli iQnaecl is unit ti,oe per wit valise, +r+~+R ��
1e aReu: voluane of the s~rteeeite orYs~ale, v � rroluAe of earteaeil~e a'orelad is~ tt+e !s
s~� ieothersral urrro~t avex the thew ~, Ya * limitia volume of marteailite rrhxeh A�
!� aan be loraled ert the siren te~eperatnrs. th+elt 1-~v~~'o~ ' e-~'at. 't"~i� equetiea �i
!� is iA egreeeeat~ xith 6he axpe,rime~ata~. date, ~-t kart over the first half of �d
u! !
.. ~ .. .. -c ~ ~ :111-` 1_ t..~.l_...rl...,..~:,L~-~
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ZUYKUV, V.Ya., 1V1~,~lOV A.M. � 'Sr' , ~ r
/} ~j~( {r /~, , Ki~~~}a/~~AI,jp~gl.S., t~11~~~Illlyy'~~tt._/,-~~~4K.I� lUUTKOt~
ve~e~ �`++u0~1~~ Wo~oJ ~~~11U1`+VY, ilaJ.$~! retie; ~7iiLL~i~i!{~1~~~ j~�,~le~ ~'~Qe~
SHWALOVk, l~.S., red.; Z~~~~~, ~.U'., red.; 'Il~~.~~s.A,:s~iz', 'fie,;�y
tekhn. red.
[Liquid sep~~ratars far the food industry; harxil:jaak--catl:la~],',e-
parfltory zh'.ldkoet~y� d1~F, pa.~hahevai ~ror:~~ ahlonnc�ti; katn~.o
spravoa~ciraik,- l~faskvr~, lgb~, Sb p. (1~iTltt'- ~.5:10~
~.. t~ioc~car~. 7'S~ntr~~~.'r~yY ~,n~t~.tut n~~uchna~tu}:~miehoLkoy :infnr~rrlr:..
t~ii me.ehino;~troyeniya. ~. Vsesayuznyy nauchna-~iss~.edovutel~:~kiy
i Qkeperi.meYital'nn.�konatruktorokiy ir~stitut ~~rodavo:L' et~enno~c~
~Sa~ghinostro3~eniya (for Zuykovf- ~panov~ KristAll, P-ia~;53mava,
Paovikov, Potkov} .
(Sep,~ratars (Machines) ~
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AuTaoas yighssylova, Ye. v.
TITLES
PERIODICAL:
~1~~~d Me#,hod m'a foci
(tlek~~rennYY
ABSTRACT:
Card 1~2
~tazvedka i
13z-1-14/15
Determining the Mineral Type of Clay
opredeleniya mineral'nogo tips glin}
OkhrF~na Nedr, 1958, # 1, pp 59 (tlSSR)
In the periodical "Raxvedka i Okhrana Ned~p',i.~Maksimova
an article written by N.A. Maksimovich and lica'-
1~as published, in which the authors recommendthetminoral
tian of the stepped-up method of determining
tyge of clay, based on theix diAf comearison oftresultspob-
ties with regard to alkalies. P
the mineral type of clay by means
tamed when determining
of the absorption method and the �llctanalysesconlyosix
method, showed that reBUltBtd@Y~atea consider�ably during
tallied, while t;he y
the ninth analysis. Determination wfthhthe~ai~3 ofccolorY
means of the absorption method and i the quick
Consequently,
agents did not give comparable data. a of cla by its ab-
�athod of determining the mineral tyP Y cabili-
aox~ption indicator has but a luettbe checkedabYao~er
ty, and the results obtained m
methods.
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AUT~iORS: Volokitenkov, A.A., Kogan, U.M., and Maksimava, N.I. 132-1-8/15
TITLE: ~iethad of Cementing Test Dales Under Difficult Drilling
Conditions (3poso13 tsementataii razvedochnykh skvs~zhin
0~~.~pZb~l~kh usloviy bureniya)
PERIODICAL: Razvedka i Okhrana:>, Nedr, 1958, ~r 1, pp 46-48 (USSR)
ABSTRACTt In Rome bore hc>1�s at the belgarod district, the flushing
liquii~ was eomplet,ely absorbed by porous Carboniferous lime-
stone layers. The usual methods of tamping a-ith clay and ce-
ment ~iid not plug the crevices. Thus the necessity arose
to ceiaent the porous zones by quick-hardening mixtures. As
the conveying of quick setting concrete could not be done
fast ~3nough through one pipe, a proposal was advanced by
Maksimovich, Makai.mova and Yermakov, according to ~+uhich two
pipes transported a cement mixture and an agent for speeding
up th~~ hardening proc�se to the place cf cementing.
Acc:ording to this method, a tamping device was lowered
to they end of the drill stem; the cement mixture was pumped
into 1~he porous zone by the conventional manner. The author
gives a description of the tamping device and its application.
The pY~ocess of hardening can thus be reduced from the original
48 - 72 to 12 hours.
The fallowing mixture is used: (for 1.5 - 1.6 cu m) 1,400 kg
Card 1~2 of building cement of the brand "200", 300 kg of aluminum
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.__._..r...._.~._ .__..~_.._..._ __...,.. ---- --- - -
~~'
f-
'' _ L 4_~~ $2-66 ~1T m' ~W??~.1~___R~.--- _. ~.,_- -. _.... _ .____.~.. __.~__ ~ ._.___ .__..___
acc NRs A 6P 029021 ~~~ SOURCE CODE: UR/04i3/66/000/014/0023/0023
~~
IIV"VENZ"GR; M~-keimova, N. G� ; Mironov, V. F.
-~- .~ ~ ~
ORG : none
~~ 1 r des ~ Class 12
TITLE: Method oif obtaining m�fluoro hen ls~lanech o i ,
No, 183?46
SOURCE: Izobret prom obraz i;ov zn, no. 14, 1966 23
r !
TUPIC 'i'A,CS: fluorosilane, silicon hydride
ABSTRACT: An ~-uthor Certificate has been issued for a method of obtaining
m-fluorophenylsilanechlorides. To simplify the process, the mixture of silicon
'~ hydrides and m-fluorochlorobenzene is passed through a heater quartz tube at a
temperature of 5$0--620C. [T:ranslation] ~NT~
~ ~.
SUB CODE: 1I/ SUBM DATE; 22Mar65/
.e
2 ~ 1 ~17s _-- UDC: 547.419.5.0?
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- r>. criv-ai~ ~ -
~,,. .
-~;:9~; cif' -. _ - j. =:} - � yF .. -,
,,;yak _ �:;'.' - - ~~?~ - � � j � -, _
y"., icy''' ~i]/1M~~{{^IYjrR ,
- 1~. , n
w 1/]` ~.~ ~(~ (i. ~ it
~~~,~ ~_~~ ~ ~:. ~ , , _~.:~: ,.~ .~~ Y~,x~d ~~- ~ ~d her
:;h;r ~~' : ,,~~af'~ {~`~:~'�)'~a~' ' ~ ~ ~ nauk, 190, Ido. 11 , �app� 205 - 2061
'
j'"��. 'This �is a brief report on tha izivesti~ation of the conversions of
TEXT:
propar~;y alcohol accoxdin~ to the sckleme attached; ;
'-~ ', '
~~~ ~ ~ ~ ~ Rn5i (OCHaC~CH)a~n (CsHb)~CHySiC;H=CHCHROCHaCHsCN
~,~ ~ ~ (lfl) ~ Rn9iC1~_n ? CH, -CHCN
'
..~
+'
~~~..
~, �
,~ ~ ~
,
CH,-�CHCN I HSICH,(C,H;),
~ I
' C~~_CCHaOCHzCHsUN *-~-----CHIC-~CHaOH---'-~--~-~(C.~H'b~sCH~SiCH~CHCHaOH
`., ~ ~ 1 HBICI~ RMgX ,~ (CFi~!~SI CI ~ }.1, , (1 i)
''~ ~ C1aSiCH~CHCH=OCH,CH,CN (V)II (CHn)~SiC~CCH,OH (I) .(C~~~ls)ACH,SICH,CHxCH,OH
-' ,
�
C,H~MgHr (IV) #
� ~ CH,MgCI
~
..
(CH,)eSiCH~CHCHAOCH~CH~CN (Vl); C1~C;H~SiCHgCHeCH=01CCHa
j.....,.,.. Card 1.~d . ... _...~....~~._ " i _._-- - -
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.
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j, ~. .
,� ; '
.+ . ~ '
~, L 19~.7g-63
'� ACC$S~IQN ��
� � ~ sass starts a~tter t~ieati.n~ `the x�ra~r~ phosphor NaC .. CD
;, ~ the electron a>ades'1 a~ recombir~at~,an lumi 1 N,~.
1 ~ ~'f~uros. nascence. Orlg. art.~rle~srs also discuss
' .~ 5 Porm-~las
~~ ~ ~ a~ .
.~
_ ~ a A;SSOCII-TIONs none '
r � ; S~IBMTTTED s ~;lNav61 ~ DATE
ACQ s 193
� ~ Std CODES pH ENCLs Ott ;
1 � N0 REh' SOV: OOI~t
~~ �� ~ OTHER: OOs ,
!. ~ ~
r' ~ ~ ~ ~ ~ �
�
.,� ';. '.
i
�
�
R
.!
' ,. , Cord 2~2 ~ -.,.~;M ~ ~ ; ~... _ .._ ~ .~.~, ...... _.. ;......._.a... _~. _..,.. __...__. ~_ .. ~.._.. ~ i
~~ �
M ... ,. ,
�~ ~ ,`~,
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1~. ~.. ,t iii: ~ e' ~ t y ~~1 ~{ k~k~ t #,,s?i�G ' ~rf ~~4 ugh ~ Y~~~r ~ *~
~ ~ , s ~+ ~ T ' t. ~~ SST 1. T~f ~ ~'4 . ~Yi .W -. Y~ . ~~k ..yb 4r~ ~ �:lp ~ r !
_ ~ ~ ~ ~ ~_ ~~~1} h j T 1r1 .{i
.. ~~ �,~.~~ a~ ~'~, :,,~= BDg r _~~~~ ~ 0198 4202 ',
L 1 .,~. T, ~~~~~~~~~ _~~~b~/ s~29~/'63/001/OOO/ /
,, < - , ~ ~ Mgkai~ova, N D ',1
~~ � ~ .
ghamovski~r �s ~ ~ ;
", ', . � i AUti4f~S:.,~ ,s`ue`=~ ~-~;.~:x ~ ht sti~lat~.on Prom F-band
;~ ., ,; � r htr:e$g in NaC1M~ under lig ; ,
~~. ~ Natu~ra of flash b ~ ~ ` .
} TITLE. '~ , . '
bornik"Matey. ~'v is LYua-inestsentsiyr-~
i. �
�{ ` ~,, � ~~ gp-7RCF: Apti.ka i spektroskap~;~a s s
.~ s.~o2 ~ ~ ~ ~ ~~
~;~' �.I Moscrn+, Ixd~-vo ANi SSSR, 1963, 9 ! ,
~`�'t irradiation, M-center, recombination, optical P7.ash '4
� has:phor,
TAGS. p, ` ~~~-
~' ~ ~ ! TOPIC ` ' hos hors under
t � ~ : 'the behavior of x-rayed NaCl=Nip P ~ ,
,'., ~;' ~~, ;ABSTRACT: A stu~~y was made off, �~
tical irradiation from the F-band. hne~f~cta(Ls A. ata !
,.� ,' i 1continuous and p!alsed op ro osed of the P~fianovic
retation is P p - The experiment' performed dii'f ared
tn; � ~abtained a new interp ,
i spektr. 2, 392, 1951)�
� ':tParfianovii:h. OAt� ~~ne respect onlys the use of c-ptical rather than 4
, . ! I It Was .found that under continuous P `,eon eer irradiation
``' '; 'from that oaf parfianovich 1n ntration. Opticat
?�� ~ �. ;thermal. irradiation. with nickel
~'~ . ,~ ~lumi.nescence bri�ghtnesa di.min3.shes irregularly
. ,, her diminishes the subsequent optical flashnna, and ,
~destruetia~n of ~~-centers furt ,
'~ ~' ar to 9Q~14~OC� after destruct~.on of M�cent+ers results i bri ht�
;�! .~. ; ;heating the phoasph
?ln o tical 'Pls~sh brightness.. ,The enhancement of flash ng ~ ,
� = sharp inaY ease P ,
.. .
s ' :Cord 1/2 ~- ,. '
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s/ 659/ ~~! 003/ ooo/ 005/ 028
zo48/r2a8
Polymorphous trar1sformation,~ a ~ .
roPresenting sol j,d sol~.itions
ions of Cr ~'rere found to er, ~ based on the ~ ~
two-phase rEgions; the ist~ together v~~ith theand 7~ mod3ficat_
~ -;- ~ region is associated itli thed .~ ~~--+
transformat3.on at 1$30oC, while the tw ~ ._.,, �:
~'~�:~,~ transfor~uat~on at 16 po 9~' + ~, is associated with the
region beneath the solidus5s;ux~veThwh~ ~ple ~
Gr~rich corner Ftt tempQratur~~s Phase occupies the
th� 90~ Cr allo ~ ~ bolow 1600oe An~xarA `~ocupic~s thu
ion possesses ay ~uQnched from 15oooC showed y analy,,i5 of
and 1 tablep b,~crQ� lattioe with a~2,$ $ that th�~ -modificat-.
7 ~� There are 4 figures
Card 2/2
I, ~ / r'
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s/ 659/ 6~/ oa8/ ooo/ oo5i o28
Ia~~/z2a8
SokolQVSkaya, Ye.M., Sokolova, I.G � ~
AUT1'HORS : Grig'~r ~ yev i A.T . ,
and N~ks imova , .irl/ V!
polymorphous transformations
TITLE
of the chromium-'babdenum i
ohro~m~.um-~,ron-m.oly .
~,n chromium, and structure
Solution in tho system
SOURCE: Aka~lemiya Weak .ns~R~s~~~ iv~~�
�-hatoprochny P
meta~.lurgii~ lssledovsniys
1g62. 42-4
po ~,
through the Cr-Mo_Fa gy9tem radie;tiny; from th� Cr
. An ian~p;let s is data
Tom' � :reaentin~ a f fixed 3 : l (st.Y'rt )dEa-raYY~analywas con-
oorner and r�p basis of ~nicrostructural an
strutted �n rent alloys. ,,The total FefiVlo content c>f the ar~dyin a
for 33 differ ~~� th� alloy specimens w�7ce prep and tam-
~,tud ~,ed d ~.d not exoeGd ~5 ~ i as flea ~~etter,
W_arc furnaos in argon ~`b'mOS~hnrtes~s 8 ~h~ aol~du~ tsm~agrut Win
pared at 1400-1704oC before tend 162aoG for the ao~;oyenoustregionS
wo~ 0 1750 ~ Z 1~~5 ~ 1640 x.620,
6 6~ , and ~~~ C,x xoa~~atively. Tb~ea ~ ~
96, 86, 7 ,
Card 1/ 2
1~
;l
.~.~
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Solid-state aonvex~siona in...
.... ~~~
~.e u. A
s/o7~/~z/oo7/005/009/0~~
A101/B1Y10
.... .. _., .~ w......._-..~.. .... .~
X900 . `.
' ~eoo ~'~,~''~,
~,
1700 ~~ ~~~
1100 o~a ' o `~. ``~.,,
j ~~.~ _.a~.___
/!OC
J~00
' JJ00 c
' , l146
< < 1-00
Jo00 ~
e00 ~
JOD
l00
Curd 3~3
i
i
{
.~"
r
~'~
g. i
1
3 ,
~,
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