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Non-hydrostatic Conditions in High-pressure Devices: Analysis of Plastic Deformation with EDX

机译:高压设备中的非静水条件:使用EDX分析塑性变形

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摘要

The effect of different pressure devices and pressure media on the compression behavior of elastically anisotropic polycrystals (Cu3Au, Ni3Al) is investigated with energy-dispersive X-ray diffraction (EDX) correlating information from both line profiles and line positions. Plastic deformation due to stacking faults leads to a volume incompressibility preceded at high ratios of non-hydrostatic to hydrostatic stresses by a volume increase due to introduction of dislocations. A discontinuity in the compressibility at the transition back from plastic to elastic compression is due to the yield strength of the plastically deformed material and corresponds to the Hugoniot elastic limit. The compression of a fully plastically deformed material is elastic and isotropic, independent of the presence and type of pressure medium. The yield strength of the samples is estimated from the offset to the hydrostat of the compression curve above the discontinuity in the compressibility.
机译:通过能量色散X射线衍射(EDX)研究了不同压力设备和压力介质对弹性各向异性多晶(Cu3Au,Ni3Al)压缩行为的影响,该能量相关的信息来自线轮廓和线位置。由于堆垛层错而引起的塑性变形会导致体积不可压缩性,而体积不可压缩性在非静水压力与静水压力的高比率之前会由于位错的引入而增加体积。在从塑料压缩回到弹性压缩的过渡过程中,压缩性的不连续性是由于塑性变形材料的屈服强度引起的,并且对应于Hugoniot弹性极限。完全塑性变形的材料的压缩是弹性的和各向同性的,与压力介质的存在和类型无关。样品的屈服强度是根据在压缩率不连续性以上的压缩曲线的静水压力的偏移量估算的。

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