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TOWARDS INVERSE ESTIMATION OF PROPERTIES, PROCESS PARAMETERS AND RESIDUAL EFFECTS FOR FRICTION STIR WELDING

机译:摩擦搅拌焊接性能,工艺参数和残余效应的逆估计

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摘要

Forward and inverse modeling of the friction stir welding (FSW) process is an important endeavor that can be used to optimize process parameters that play a significant role on achieving manufactured part specification requirements. One such requirement is the minimization of permanent deformation induced by the plastically deformed zone close and inside the stirred zone. However, at the same time modeling FSW requires the estimation of process parameters that are not directly measurable. In this work we present a computational framework for applying an inverse approach for the heat conduction equation with experimentally guided volume heat source term that can be used to identify such parameters and subsequently use them for solving the associated forward coupled thermo-plastic problem in a Lagrangian frame of reference. We demonstrate the versatility of our framework by determining the feasibility of determining plastic (and hence residual) deformation.
机译:搅拌摩擦焊(FSW)过程的正向和逆向建模是一项重要的工作,可用于优化对实现制造零件规格要求起着重要作用的过程参数。这样的要求之一是最小化由搅拌区附近和内部的塑性变形区引起的永久变形。但是,与此同时,FSW建模需要估算无法直接测量的过程参数。在这项工作中,我们提供了一个计算框架,该模型可对导热方程采用实验方法指导的体积热源项的逆方法,该方程可用于识别此类参数,随后将其用于解决拉格朗日相关的正向耦合热塑性问题参照系。我们通过确定确定塑性变形(并因此确定残余变形)的可行性来证明我们框架的多功能性。

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