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首页> 外文期刊>International Journal of Solids and Structures >Experimental and modelling study of fatigue crack initiation in an aluminium beam with a hole under 4-point bending
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Experimental and modelling study of fatigue crack initiation in an aluminium beam with a hole under 4-point bending

机译:4点弯曲下孔铝梁疲劳裂纹启动的实验与建模研究

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摘要

Slip band formation and crack initiation during cyclic fatigue were investigated by in-situ experiments and non-local CPFEM simulations systematically. Experimental techniques including EBSD, digital image correlation (DIC) and SEM have been used to obtain consistent grain orientations, local strains, as well as the locations where slip bands and micro-cracks form on the sample surface. The realistic microstructure based on the EBSD map has been generated and used for finite element modelling. An advanced non local crystal plasticity model, which considers the isotropic and kinematic hardening of the plastic strain gradient, has been adopted. The simulation results match well the corresponding experimental results. It was found that total strain and averaged slip on all slip systems, combined with accumulated slip on specific slip planes help predict the location and orientation of slip bands and micro-crack initiation correctly. Furthermore, a fatigue indicating parameter based on competition between maximum slip and the total slip has been proposed to reproduce the experimental observations. Crown Copyright (C) 2018 Published by Elsevier Ltd.
机译:通过原位实验和系统地研究了循环疲劳期间的滑带形成和裂纹引发。已经用于包括EBSD,数字图像相关(DIC)和SEM的实验技术,用于获得一致的晶粒取向,局部菌株以及样品表面上滑动带和微裂缝形式的位置。已经生成了基于EBSD地图的现实微结构,并用于有限元建模。采用先进的非局部晶体塑性塑性模型,其考虑了塑料应变梯度的各向同性和运动型硬化。仿真结果匹配良好的实验结果。结果发现,所有滑动系统上的总应变和平均滑动,与特定滑坡上的累积滑移相结合有助于预测滑槽和微裂纹的位置和定向。此外,已经提出了一种基于最大滑移和总滑动之间的竞争的疲劳指示参数来再现实验观察。欧利亚有限公司发布的皇冠版权(c)2018

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