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首页> 外文期刊>Journal of Materials Science Research >Numerical Modeling of Heat Affected Zone Cracking Tendency during Laser and Hybrid Laser-Arc Welding Processes
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Numerical Modeling of Heat Affected Zone Cracking Tendency during Laser and Hybrid Laser-Arc Welding Processes

机译:激光和混合激光电弧焊接过程中热影响区裂纹趋向的数值模拟

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A two-dimensional thermal elasto-plastic numerical model is developed by finite element method to analyze and compare the mechanical driving factor for heat affected zone (HAZ) liquation cracking during laser welding and hybrid laser-arc welding techniques. Calculations of transient temperatures and cooling rates are used in conjunction with solidification theory to analyze weld pool characteristics during weld-metal solidification. The model is successfully verified by comparing calculated and experimental weld bead geometry and secondary dendrite arm spacing within the weld solidification microstructure. Computational analyses by the model provide valuable insights both into the influence of welding parameters on thermally induced strain rate gradient, which influences cracking, and possible reduced HAZ cracking tendency with the application of hybrid laser-arc welding compared to ordinary laser beam welding.
机译:利用有限元方法建立了二维热弹塑性数值模型,分析和比较了激光焊接和混合激光电弧焊接技术对热影响区(HAZ)液化裂纹的机械驱动因子。瞬态温度和冷却速率的计算与凝固理论一起用于分析焊接金属凝固过程中的熔池特性。通过比较焊接凝固组织中的计算焊缝几何形状和实验焊缝几何形状以及次级枝晶臂间距,成功验证了该模型。该模型的计算分析为焊接参数对热致应变率梯度的影响提供了有价值的见解,热应变率梯度会影响裂纹,与普通激光束焊接相比,混合激光弧焊的应用可能会减少HAZ裂纹的趋势。

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