THE LATTICE STRAINS IN A SPECIMEN (CUBIC SYSTEM) COMPRESSED NONHYDROSTATICALLY IN AN OPPOSED ANVIL DEVICE

被引:311
作者
SINGH, AK
机构
[1] Materials Science Division, National Aeronautical Laboratory
关键词
D O I
10.1063/1.352809
中图分类号
O59 [应用物理学];
学科分类号
摘要
A general expression has been derived using anisotropic elasticity theory for the lattice strain which corresponds to the x-ray diffraction measurement on the polycrystalline specimen (cubic system) compressed nonhydrostatically in an opposed anvil device. The expressions for the various diffraction geometries emerge as the special cases of this equation. The strain calculated using isotropic elasticity theory corresponds to the macroscopic strain in the specimen, and can be obtained from the present equation by letting the anisotropy factor 2(S11-S12)/S44 = 1. Further, it is shown that the ratio of the lattice strain to the macroscopic strain (in the direction of the lattice strain) produced by the deviatoric stress component depends on the Miller indices (hkl) of the lattice planes and the elastic anisotropy factor. This ratio is unity only if the crystallites constituting the specimen are elastically isotropic, and increases with increasing anisotropy of the crystallites.
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页码:4278 / 4286
页数:9
相关论文
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