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Molten Pool in Welding Processes: Phenomenological vs Fluid-Dynamic Numerical Simulation Approach

机译:焊接过程中的熔池:现象学与流体动力学数值模拟方法

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摘要

The metallurgical and mechanical properties of fusion welded joints are influenced, among others phenomena, by the weld pool dimension and shape. Weld pool shape is important in the development of grain structure and dendrite growth selection process as well as in the development of residual stresses. For these reasons, significant advances have been made in recent years to understand, in greater detail, the dynamics of the heat and fluid flow in the weld and the subsequent development of the pool shape. In numerical simulation of welding processes, there are two different approaches used to model the fusion zone. If the prediction of distortions and residual stresses is the primary objective of the simulation (computational weld mechanics simulation), the phenomenological approach is the most suitable method used to model the fusion zone. Otherwise, when the weld pool shape has to be predicted, the fluid-dynamic equations must be solved at the expense of a significant 'computational load' increase. In this work, after a brief description of weld pool characteristics, such two different approaches are described and compared.
机译:熔池接头的冶金和机械性能,除其他现象外,还受熔池尺寸和形状的影响。熔池形状在晶粒结构和枝晶生长选择过程的发展以及残余应力的发展中很重要。由于这些原因,近年来,在更详细地了解焊缝中热量和流体流动的动力学以及池形状的后续发展方面取得了重大进展。在焊接过程的数值模拟中,有两种不同的方法可用来模拟熔合区。如果变形和残余应力的预测是模拟(计算焊接力学模拟)的主要目标,则现象学方法是用于模拟熔合区的最合适方法。否则,当必须预测焊缝形状时,必须以显着的“计算负荷”增加为代价来求解流体动力学方程。在这项工作中,在简要描述了熔池特性之后,对这两种不同的方法进行了描述和比较。

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