Experimental chord length distribution function for a polycrystal
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		    HR_ AGED
 
 (%RA)
 
 @ 425~C
 
 98,1
 
 8
 
 ~- -
 
 87.3
 
 8 0
 
 ,a ~ - * .....
 
 500
 
 87,3 v03H2 0 0
 
 b
 
 ~
 
 ~
 
 -
 
 r"
 
 1.5 "~Ez.,,,,
 
 ------=
 
 ,
 
 2.0
 
 ~_. 1.0 t9
 
 I00
 
 The a u t h o r s acknowledge the s u p p o r t of the Advanced R e s e a r c h P r o j e c t s Agency t h r o u g h the M a t e r i a l s S c i e n c e s P r o g r a m at Brown U n i v e r s i t y . 1. D. H. Averyand N. W,Polan:Met. Trans., t974, vol. 5, p. 1152. 2. N. W.Polan:Ph.D. thesis,July 1974,Divisionof Engineering,BrownUniversity, Providence,RhodeIsland. 3. W,F. Hosford: Trans. TMS-AIME, 1964,voL 230,p. 12. 4. J. F. Peckand D, A, Thomas:Tran~ TMS-ALClE, 1961,vol.221, p. 1240. 5. G, Langfordand M. Cohen: Trans.ASM, 1969,voL62, p. 623,
 
 0.5
 
 0 % ..... .25
 
 t I0 ~
 
 I I04
 
 = ............... 1 IO ~ I06
 
 IOt
 
 CYCLES
 
 Fig. 4--CompteteIy reversed bending fatigue strength of TS6, TSS KSI n,,,i CC~
 
 4 POINTBENDING: HR. AGED AT 425~ 70% RED. 2 0 - - - 120--~ 24 9
 
 tT_zoo (27 b~
 
 Experimental Chord Length Distribution Function for a Polycrystal
 
 GN/m ~ 1.4
 
 ALAIN MOCELLIN
 
 97*;* RED. 0 o-----
 
 .%..%~
 
 0
 
 t,- 180		
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