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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part C. Journal of mechanical engineering science >Numerical simulation of welding-induced residual stress in fusion welding process using adaptive volumetric heat source
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Numerical simulation of welding-induced residual stress in fusion welding process using adaptive volumetric heat source

机译:自适应体积热源对熔焊过程中焊接残余应力的数值模拟

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摘要

The mechanical properties of a weldment structure are influenced by the level of residual stress generated during fusion welding process. The experimental determination of residual stress is cumbersome and not free from measurement errors. A sophisticated numerical model is relatively easy approach to predict residual stress due to the advancement of high performance computational technology. However, the integration of all process physics to make a sophisticated numerical model is ever demanding. The present work is motivated in that direction and involves a finite element based numerical model for simulation of welding-induced residual stresses. A thermal model using adaptive volumetric heat source has been used to estimate temperature distribution. Subsequently, the thermal history is used to perform stress analysis for butt welded plates using three different fusion welding processes. The material behaviour is assumed as elasto-plastic in nature. The calculated results and their trend have been validated with experimental results available in open literature.
机译:焊接结构的机械性能受熔焊过程中产生的残余应力水平的影响。残余应力的实验确定很麻烦,并且没有测量误差。由于高性能计算技术的进步,复杂的数值模型是预测残余应力的相对容易的方法。但是,将所有过程物理学集成在一起以形成复杂的数值模型的要求越来越高。当前的工作是朝这个方向进行的,涉及一个基于有限元的数值模型,用于模拟焊接引起的残余应力。使用自适应体积热源的热模型已用于估算温度分布。随后,热历史用于使用三种不同的熔焊工艺对对接板进行应力分析。假定材料的行为本质上是弹塑性的。计算结果及其趋势已通过公开文献中提供的实验结果进行了验证。

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