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首页> 外文期刊>Journal of Materials Processing Technology >A viscous-elastoplastic constitutive equation incorporating phase transformation with the application to the residual stress analysis for welding process
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A viscous-elastoplastic constitutive equation incorporating phase transformation with the application to the residual stress analysis for welding process

机译:包含相变的粘弹塑性本构方程在焊接过程残余应力分析中的应用

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摘要

A viscous-elastoplastic constitutive equation of a welding stainless steel material incorporating phase transformation was proposed based on the assumption that the welding material is a mixture of several phases, and each of which possesses viscous-elastoplastic property. The heat conduction equation incorporating phase transformation and the transformation kinetics equation were also presented. The numerical algorithm and the finite element procedure related to these equations were developed and applied to the investigations of the temperature change and the distribution of the residual stress in the welding slot area of a Cr21Ni6Mo9 stainless steel pipe. The investigated result of the residual stress was in good agreement with the data measured experimentally by X-ray diffraction.
机译:提出了一种基于相变的焊接不锈钢材料的粘弹塑性本构方程,其假设是焊接材料是多相的混合物,每个相都具有粘弹塑性。提出了结合相变的热传导方程和相变动力学方程。开发了与这些方程有关的数值算法和有限元程序,并将其用于研究Cr21Ni6Mo9不锈钢管的焊接缝隙区域的温度变化和残余应力的分布。残余应力的研究结果与X射线衍射实验测得的数据吻合良好。

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