FRACTURE-MECHANISM MAPS AND THEIR CONSTRUCTION FOR FCC METALS AND ALLOYS

被引:279
作者
ASHBY, MF [1 ]
GANDHI, C [1 ]
TAPLIN, DMR [1 ]
机构
[1] UNIV WATERLOO,DEPT MECH ENGN,WATERLOO N2L 3G1,ONTARIO,CANADA
来源
ACTA METALLURGICA | 1979年 / 27卷 / 05期
关键词
D O I
10.1016/0001-6160(79)90105-6
中图分类号
TF [冶金工业];
学科分类号
0806 ;
摘要
Fracture-mechanism maps are diagrams with tensile stress as one axis and temperature as the other, showing the fields of dominance of a given micromechanism of fracture: cleavage, ductile fracture, rupture, intergranular creep fracture, and so on. Superimposed on the fields are contours of constant time-to-fracture. They can be constructed in either of two ways: empirically, by assembling observations and data for the fracture of a given material; or theoretically, via models for the individual fracture mechanisms. The first approach is developed here. Maps are presented for nickel, silver, copper, aluminium, lead and a number of their alloys. They give an overview of the micromechanisms by which a given material may fail, and help identify the one most likely to be dominant in a given experiment, or an engineering application. They should give guidance in selecting materials for high-temperature use and in the extrapolation of creep-rupture data. © 1979.
引用
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页码:699 / 729
页数:31
相关论文
共 123 条
[21]  
COLBECK EW, 1933, T I CHEM ENGNG, V11, P107
[22]   NONUNIFORM FLOW OF POLYCRYSTALS BY GRAIN-BOUNDARY SLIDING ACCOMMODATED BY POWER-LAW CREEP [J].
CROSSMAN, FW ;
ASHBY, MF .
ACTA METALLURGICA, 1975, 23 (04) :425-440
[23]  
DAVIES PW, 1960, J I MET, V88, P471
[24]  
DENNISON JP, 1967, J I MET, V95, P115
[25]  
DENNISON JP, 1964, J I MET, V92, P360
[26]  
DENNISON JP, 1963, J I MET, V91, P343
[27]  
DENNISON JP, 1966, J I MET, V94, P130
[28]  
Dyson B. F., 1974, Metal Science, V8, P261
[29]  
Dyson B. F., 1977, Metal Science, V11, P37
[30]  
EDWARD GH, 1979, CUEDCMATSTR36 CAMBR