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首页> 外文期刊>Journal of Materials Engineering and Performance >Parametric Modeling of Welding Processes Using Numerical-Analytical Basis Functions and Equivalent Source Distributions
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Parametric Modeling of Welding Processes Using Numerical-Analytical Basis Functions and Equivalent Source Distributions

机译:基于数值分析基函数和等效源分布的焊接过程参数化建模

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摘要

A general methodology for inverse thermal analysis of steady-state energy deposition in plate structures, typically welds, is extended with respect to its formulation. This methodology is in terms of numerical-analytical basis functions, which provide parametric representations of weld-temperature histories that can be adopted as input data to various types of computational procedures, such as those for prediction of solid-state phase transformations and mechanical response. The extension of the methodology presented here concerns construction of numerical-analytical basis functions and their associated parameterizations, which permit optimal and convenient parameter optimization with respect to different types of weld-workpiece boundary conditions, energy source characteristics, and experimental measurements adoptable as weld-temperature history constraints. Prototype inverse thermal analyses of a steel weld are presented that provide proof of concept for inverse thermal analysis using these basis functions.
机译:针对其结构,扩展了对板结构(通常为焊缝)中的稳态能量沉积进行逆热分析的通用方法。这种方法是基于数值分析基础函数的,它提供了焊接温度历史的参数表示形式,可以将其用作各种类型的计算程序(例如用于预测固态相变和机械响应的那些程序)的输入数据。本文介绍的方法的扩展涉及数值分析基础函数的构建及其相关的参数化,从而可以针对不同类型的焊接工件边界条件,能源特性和可作为焊接方法采用的实验测量值进行优化和方便的参数优化。温度历史记录约束。提出了钢焊缝的原型逆热分析,为使用这些基本函数的逆热分析提供了概念验证。

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