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首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >A Study on Heat Source Equations for the Prediction of Weld Shape and Thermal Deformation in Laser Microwelding
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A Study on Heat Source Equations for the Prediction of Weld Shape and Thermal Deformation in Laser Microwelding

机译:激光微焊接中焊缝形状和热变形预测的热源方程研究

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In the area of laser welding, numerous studies have been performed in the past decades using either analytical or numerical approaches, or both combined. However, most of the previous studies were process oriented and modeled conduction and keyhole welding differently. In this research, various heat source equations that have been proposed in previous studies were calculated and compared with a new model. This is to address the problem of predicting, by numerical means, the thermomechanical behavior of laser spot welding for thin stainless steel plates. A finite-element model (FEM) code, ABAQUS, is used for the heat transfer and mechanical analysis with a three-dimensional plane assumption. Experimental studies of laser spot welding and measurement of thermal deformation have also been conducted to validate the numerical models presented. The results suggest that temperature profiles and weld deformation vary according to the heat source equation of the laser beam. For this reason, it is essential to incorporate an accurate model of the heat source.
机译:在激光焊接领域,在过去的几十年中,已经使用分析或数值方法或两者结合进行了大量研究。但是,大多数以前的研究都是以过程为导向的,并且对传导和锁孔焊接的建模有所不同。在这项研究中,计算了先前研究中提出的各种热源方程,并将其与新模型进行了比较。这是为了解决通过数值手段预测薄不锈钢板激光点焊的热机械性能的问题。有限元模型(FEM)代码ABAQUS用于三维平面假设下的传热和力学分析。还进行了激光点焊和热变形测量的实验研究,以验证所提出的数值模型。结果表明,温度分布和焊接变形根据激光束的热源方程而变化。由于这个原因,必须合并一个精确的热源模型。

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