Finite Element Simulation of Residual Stress Determination Based on Spherical Indentation Accumulation Morphology

Xiaochen He, Jingyi Shao, Jian-You Feng
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Abstract

The introduction of residual stress during the processing of materials has an important impact on the properties of the materials, so it is important to accurately measure the residual stress of the material. This paper established a finite element model of spherical indentation under the action of non-equivalent biaxial residual stress. Then we extracted the full-field accumulation state near the indentation under different stress states from the simulation results and summarized the pile height distribution near the indentation under different stress states. From the simulation, we found that the maximum pile-up height near the indentation point presented a regular trend.
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基于球形压痕积累形态的残余应力确定有限元模拟
材料加工过程中残余应力的引入对材料的性能有重要影响,因此准确测量材料的残余应力具有重要意义。建立了非等效双轴残余应力作用下球面压痕的有限元模型。然后从模拟结果中提取不同应力状态下凹痕附近的全场堆积状态,总结不同应力状态下凹痕附近的桩高分布。仿真结果表明,在压痕点附近的最大堆积高度呈现出一定的规律。
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