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J Chin Soc Corr Pro  1995, Vol. 15 Issue (1): 57-60    DOI:
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THE RELATIONSHIP BETWEEN FRACTAL VALUE OF FRACTURE SURFACE AND K_(ISCC) FOR SCC
Jiang Xinggang; Chu Wuyang; Xian Jimei(University of Science and Technology; Beijing)
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Abstract  A relationship between fractal value DF of fracture surface and KISCC for SCC has been astablished,The orientation dependence of KISCC can be explained, on the basis of the dependence of fracture unit df on orientation of the specimen.
Key words:  Fractal      Stress corrosion cracking      K_(ISCC)     
Received:  25 February 1995     
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Jiang Xinggang; Chu Wuyang; Xian Jimei(University of Science and Technology; Beijing). THE RELATIONSHIP BETWEEN FRACTAL VALUE OF FRACTURE SURFACE AND K_(ISCC) FOR SCC. J Chin Soc Corr Pro, 1995, 15(1): 57-60.

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https://www.jcscp.org/EN/     OR     https://www.jcscp.org/EN/Y1995/V15/I1/57

1PdandaCS,RichardsLE.LouatN,DempseyBD,SchwoebleAJActaMetall.;1987,35:16332DauskardtRH,HaubensakF,RitchieO.ActaMetall.,1990,38:1433LungCW,MuZQ.PhysRev,1988,B39:11784穆在勤,龙期威.金属学报,1988,24:A1425穆在勤,李淑清,龙期威,材料科学进展,1990;4:2476陈军,龙起易,陈继克,龙期威.中国腐蚀防护学报,1991,11:3447张跃,王燕斌,褚武扬,肖纪美.金属学报,1993,29:A3938褚武扬.氢损伤与滞后断裂,北京:冶金出版社,1988.P4309ChuWY,ThompsonAW.Metall,Thans.A,1992,23A:129910褚武扬.断裂力学基础,北京:科学出版社,1979,P34
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