MEASUREMENT AND PREDICTION OF PLASTIC ANISOTROPY IN DEEP-DRAWING STEELS

被引:104
作者
DANIEL, D
JONAS, JJ
机构
[1] Department of Metallurgical Engineering, McGill University, Montreal, H3A 2A7, PQ
来源
METALLURGICAL TRANSACTIONS A-PHYSICAL METALLURGY AND MATERIALS SCIENCE | 1990年 / 21卷 / 02期
关键词
D O I
10.1007/BF02782413
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
R-values and yield stresses were measured as a function of inclination with respect to the rolling direction on 15 steels selected from four basic types [high-strength low-alloy (HSLA), Al-killed drawing quality (AKDQ), interstitial-free (IF), and rimmed]. Orientation distribution functions (ODF's) were also determined for these steels, using both X-ray and neutron diffraction techniques. The series expansion method was employed for predicting the plastic anisotropy of the rolled sheets. Comparison with the experimental measurements indicates that the "pancake" relaxed constraint model is a more accurate predictor of behavior than the Taylor, Sachs-Kochendörfer, or two other relaxed constraint models. The best quantitative agreement is obtained when the critical resolved shear stress (CRSS) ratio for glide on the {112} (111) and {110} (111) slip systems (t112/t110) is 0.95. A "lath" relaxed constraint model (with έ23 relaxed), associated with the same CRSS ratio, leads to good results for steels with elongated microstructures. © 1990 The Minerals, Metals & Materials Society - ASM International - The Materials Information Society.
引用
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页码:331 / 343
页数:13
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