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Pseudolinear Equivalent Constant Rigidity Concept For Analyzing Welding Residual Deformation

机译:拟线性等效常数刚度概念,用于分析焊接残余变形

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To ascertain the extent of deformation due to the thermal cycles caused by welding it calls for solving a complex thermal elasto-plastic problem, which is non-linear and involves plastic deformation of the medium at high temperature varying in both time and space. Analytical solutions turned out to be inadequate. At the same time conventional numerical techniques proved to be highly time consuming and thereby prohibitively expensive in real life situations. The concept of pseudolinear equivalent constant rigidity system was devel-oped in this investigation for thermo-mechanical analysis of plates undergoing variation of rigidity due to a continuously changing temperature profile as is encountered in welding situations. The initial non-linear problem with modulus varying with temperature was transformed into a pseudolinear equivalent system of constant rigidity that was solved by applying linear analysis.rnThe numerical results compared very well with those of the experimental ones. The present method was found to be computationally more efficient and simpler to model compared to FEM for solving similar thermo-elasto-plastic nonlinear problems. The analysis procedure presented in this work and the results thus obtained, holds a great promise for analyzing the complicated thermo-elasto-plastic problems as encountered in real life situations.
机译:为了确定由于焊接引起的热循环而导致的变形程度,它需要解决一个复杂的热弹塑性问题,该问题是非线性的,并且涉及在高温下随时间和空间变化的介质的塑性变形。事实证明分析解决方案是不够的。同时,事实证明,传统的数字技术非常耗时,因此在现实生活中价格过高。在这项研究中开发了伪线性等效恒定刚度系统的概念,用于对由于焊接情况中温度曲线连续变化而导致刚度变化的板材进行热机械分析。将初始的随温度变化的非线性问题转化为恒定刚度的拟线性等效系统,并通过线性分析加以解决。数值结果与实验结果相比较。发现本方法与FEM相比,在解决类似的热弹塑性非线性问题方面,在计算上更高效,更易于建模。这项工作中提出的分析程序以及由此获得的结果,对于分析现实生活中遇到的复杂的热弹塑性问题具有广阔的前景。

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