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Effects of crystallographic orientation and grain morphology on crack tip stress state and plasticity

机译:晶体取向和晶粒形态对裂纹尖端应力状态和塑性的影响

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摘要

The Sih, Paris and Irwin analytical solution for cracks in anisotropic elastic media has been developed for an hcp Ti single crystal and shown to lead to crack tip normal stresses which are independent of crystal orientation but other stress components which are dependent. Detailed finite element studies confirm that the stress intensity remains independent of crystal orientation but ceases to do so in an edge-cracked bi-crystal. The incorporation of crystallographic slip demonstrates that single-crystal crack tip stresses largely remain independent of crystal orientation but that the plastic zone size and shape depends greatly upon it. Significant differences result in both the magnitude and extent of the plasticity at the crack tip with crystallographic orientation which can be quite different to that predicted using Mises plasticity. For an edge crack terminating in a bi-crystal, the slip fields which result depend upon both crystal mis-orientation and morphology.
机译:针对hcp Ti单晶开发了用于各向异性弹性介质中裂纹的Sih,Paris和Irwin分析解决方案,并显示了导致裂纹尖端的法向应力,该应力与晶体取向无关,而其他应力分量也与晶体取向有关。详细的有限元研究证实,应力强度与晶体取向无关,但在有裂纹的双晶体中不再如此。晶体学滑移的结合表明,单晶裂纹尖端应力在很大程度上保持独立于晶体取向,但是塑性区的大小和形状很大程度上取决于它。显着差异导致具有晶体学取向的裂纹尖端的塑性大小和程度,这与使用米塞斯塑性预测的完全不同。对于终止于双晶体的边缘裂纹,产生的滑移场取决于晶体的取向不良和形态。

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