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首页> 外文期刊>Archives of Metallurgy and Materials >NUMERICAL MODELLING OF THERMAL AND STRUCTURAL PHENOMENA IN Yb:YAG LASER BUTT-WELDED STEEL ELEMENTS
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NUMERICAL MODELLING OF THERMAL AND STRUCTURAL PHENOMENA IN Yb:YAG LASER BUTT-WELDED STEEL ELEMENTS

机译:Yb:YAG激光对接焊接钢元素的热和结构现象的数值模拟

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摘要

The numerical model of thermal and structural phenomena is developed for the analysis of Yb:YAG laser welding process with the motion of the liquid material in the welding pool taken into account. Temperature field and melted material velocity field in the fusion zone are obtained from the numerical solution of continuum mechanics equations using Chorin projection method and finite volume method. Phase transformations in solid state are analyzed during heating and cooling using classical models of the kinetics of phase transformations as well as CTA and CCT diagrams for welded steel. The interpolated heat source model is developed in order to reliably reflect the real distribution of Yb:YAG laser power obtained by experimental research on the laser beam profile.
机译:建立了热和结构现象的数值模型,用于分析Yb:YAG激光焊接过程,并考虑了焊接池中液态材料的运动。利用Chorin投影法和有限体积法,从连续体力学方程的数值解得到了熔合区的温度场和熔融材料的速度场。使用经典的相变动力学模型以及焊接钢的CTA和CCT图,分析了加热和冷却期间的固态相变。开发内插热源模型是为了可靠地反映通过对激光束轮廓进行实验研究而获得的Yb:YAG激光功率的真实分布。

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