论文标题

基于FFT的调查对面部以立方多晶的剪切应力分布的研究

FFT-based investigation of the shear stress distribution in face-centered cubic polycrystals

论文作者

Gehrig, Flavia, Wicht, Daniel, Krause, Maximilian, Böhlke, Thomas

论文摘要

金属中非线性效应(例如可塑性和损伤)的开始受到晶粒水平上异质应力分布的强烈影响。这项工作致力于研究在滑动系统中解决的剪切应力的局部应力分布,这是塑性变形的关键驱动力。在线性弹性状态和基于大量微观结构集合的塑性变形下研究了针对负载方向的特定晶粒方向。发现单晶的弹性各向异性对应力分布的散射具有至关重要的影响,而年轻的模量在相应的晶体方向上控制着晶粒中的平均应力。进一步证明,对于较高的各向异性,剪切应力偏离正态分布,并通过对数正态拟合更好地近似。将全景模拟与最大熵方法(MEM)进行比较,表明MEM提供了直至线性弹性范围内第二个统计矩的出色预测。在一项关于剪切应力的空间分布的研究中,晶界被确定为明显的应力波动区域,也是弹性塑性过渡过程中屈服的起点。

The onset of nonlinear effects in metals, such as plasticity and damage, is strongly influenced by the heterogeneous stress distribution at the grain level. This work is devoted to studying the local stress distribution of shear stresses resolved in the slip systems as the critical driving force for plastic deformations. Specific grain orientations with respect to load direction are investigated in the linear elastic regime and at incipient plastic deformations based on a large ensemble of microstructures. The elastic anisotropy of the single crystal is found to have a crucial influence on the scatter of the stress distribution, whereas the Young's modulus in the respective crystal direction governs the mean stress in the grain. It is further demonstrated that, for higher anisotropy, the shear stresses deviate from the normal distribution and are better approximated by a log-normal fit. Comparing the full-field simulations to the Maximum Entropy Method (MEM), reveals that the MEM provides an excellent prediction up to the second statistical moment in the linear elastic range. In a study on the spatial distribution of shear stresses, the grain boundary is identified as a region of pronounced stress fluctuations and as the starting point of yielding during the elastic-plastic transition.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源