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Crystal Orientation Effect on SIF in Single Crystals: A Study Based on Coupled Framework of XFEM and Crystal Plasticity Model

机译:单晶体中SIF的晶体取向效果:基于XFEM和晶体塑性模型耦合框架的研究

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摘要

A coupled framework of extended finite element method (XFEM) and crystal plasticity (CP) is proposed for investigating the effect of crystal orientation on Mode I stress intensity factor (SIF) in pre-cracked single crystals. While XFEM is used to evaluate the local displacement fields in front of the crack tip, CP provides anisotropic material response in front of the crack tip. Three different orientations of single crystal nickel with and without crack having Euler angles (0°, 0°, 0°), (30°, 0°, 0°) and (45°, 0°, 0°) are investigated using the proposed framework. The lattice orientation highly influences the activation of slip system, which consequently results in the change in cumulative plastic slip. Under the action of similar applied displacement loading, higher stresses are observed in (45°, 0°, 0°) oriented cracked and uncracked single nickel crystal followed by (30°, 0°, 0°) and (0°, 0°, 0°) lattice orientations. The proposed framework can be extended to study the short fatigue crack propagation in polycrystalline metals which is highly influenced by local microstructural features such as grain orientation, grain boundaries, phase difference and inclusions.
机译:提出了一种耦合的延伸有限元方法(XFEM)和晶体塑性(CP),用于研究晶体取向对预破裂的单晶中的晶体取向对模式I应力强度因子(SIF)的影响。虽然XFEM用于评估裂缝尖端前面的局部位移场,但CP在裂纹尖端的前面提供各向异性材料响应。使用具有欧拉角(0°,0°,0°),(30°,0°,0°)和(45°,0°,0°)的单晶镍的三种不同取向,使用提出的框架。晶格取向高度影响滑动系统的激活,从而导致累积塑性滑动的变化。在类似应用的位移负载的作用下,在(45°,0°,0°)取向的裂化和未包装的单镍晶体中观察到更高的应力,然后(30°,0°,0°)和(0°,0°,0° ,0°)晶格取向。可以扩展所提出的框架以研究多晶金属中的短疲劳裂纹繁殖,这是受晶粒取向,晶界,相位差和夹杂物等局部微观结构特征的高度影响。

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