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首页> 外文期刊>Journal of Materials Engineering and Performance >Inverse Thermal Analysis of Heat-Affected Zone in Al2129 and Al2198 Laser Welds
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Inverse Thermal Analysis of Heat-Affected Zone in Al2129 and Al2198 Laser Welds

机译:Al2129和Al2198激光焊接中热影响区的逆热分析

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摘要

Case study analyses of Al2139 and Al2198 laser welds are presented. These analyses demonstrate the concept of constructing parameter spaces for prediction of properties within the heat-affected zone (HAZ) of welds using inverse modeling, which are in turn for process control. The construction of these parameter spaces consists of two procedures. One procedure entails calculation of a parameterized set of temperature histories by inverse analysis of the heat deposition occurring during welding. The other procedure entails correlating these temperature histories with a specific physical property of the weld that is measurable. The analyses presented here examines some characteristics of inverse modeling with respect to the prediction of hardness within the HAZ for deep penetration laser welding of the Aluminum alloys Al2139 and Al2198. This study further demonstrates the feasibility of constructing a parameter space for the prediction of weld properties using weld cross section measurements that are independent of weld process conditions.
机译:介绍了Al2139和Al2198激光焊接的案例分析。这些分析证明了使用反向建模构造参数空间以预测焊缝热影响区(HAZ)内的性能的概念,该模型反过来又可用于过程控制。这些参数空间的构造包含两个过程。一个过程需要通过对焊接过程中发生的热量沉积进行逆分析来计算一组参数化的温度历史记录。其他过程需要将这些温度历史与可测量的焊缝的特定物理特性相关联。此处介绍的分析针对铝合金Al2139和Al2198的深熔激光焊接在热影响区中的硬度预测方面检查了逆建模的一些特征。这项研究进一步证明了使用与焊接工艺条件无关的焊接横截面测量来构建用于预测焊接性能的参数空间的可行性。

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