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STUDY OF THE EFFECT OF BOUNDARY CONDITIONS ON RESIDUAL STRESSES IN WELDING USING ELEMENT BIRTH AND ELEMENT MOVEMENT TECHNIQUES

机译:元素出生与元素移动技术研究边界条件对焊接残余应力的影响

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摘要

The structure in which the welding process is performed highly affects the residual stresses generated in the welding. This effect is simulated by choosing the appropriate boundary conditions in modeling the welding process. The major parameters of the boundary conditions are the method by which the base metal is being fixed and the amount of heat being applied through the torch. Other parameters may include the coefficients of thermal heat loss from the plate which may simulate the media in which the welding is taking place. In modeling the welding process, 2D forms of approximation were developed in analyzing most of the models of such problem. 3D models analyzing the welding process were developed in limited applications due to its high computation time and cost. With the development of new finite element tools, namely the element movement technique developed by the authors, full 3D analysis of the welding process is becoming in hand. In the present work, three different boundary conditions shall be modeled comparing their effect on the welding. These boundary conditions shall be applied to two models of the welding process: one using the element birth technique and the other using the element movement technique showing the similarity in their responses verifying the effectiveness of the latter being accomplished in a shorter time.
机译:进行焊接过程的结构会极大地影响焊接过程中产生的残余应力。通过在建模焊接过程中选择适当的边界条件来模拟这种效果。边界条件的主要参数是固定贱金属和通过焊炬施加热量的方法。其他参数可以包括来自板的热损耗系数,其可以模拟在其中进行焊接的介质。在对焊接过程进行建模时,已开发出二维近似形式来分析此类问题的大多数模型。由于计算时间和成本较高,因此在有限的应用中开发了分析焊接过程的3D模型。随着新的有限元工具(即作者开发的元素移动技术)的发展,对焊接过程的完整3D分析正变得越来越容易。在本工作中,应该对三种不同的边界条件进行建模,以比较它们对焊接的影响。这些边界条件应适用于两种焊接工艺模型:一种使用元素诞生技术,另一种使用元素移动技术显示出其响应具有相似性,从而验证了后者在较短时间内完成的有效性。

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