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首页> 外文期刊>International Journal of Thermal Sciences >Workpiece property effects on nugget microstructure determined by heat transfer and solidification rate during resistance spot welding
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Workpiece property effects on nugget microstructure determined by heat transfer and solidification rate during resistance spot welding

机译:电阻点焊过程中传热和凝固速率决定了工件性能对熔核组织的影响

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摘要

This study theoretically investigates workpiece property effects on nugget microstructure determined by temperature gradient and solidification rate during resistance spot welding. Dimensionless properties include Curie temperature, thermal conductivity and specific heat ratios between solid and liquid, equilibrium partition coefficient, and electrical and thermal conductivity ratios between electrode and workpiece. Based on a previous realistic transport model, the computed results show that a lower morphology parameter due to smaller heat flux and higher solidification rate in radial direction near the faying surface than that in axial direction near the axisymmetric axis is responsible for equiaxed grains usually observed in the central region. Morphological parameters decrease as the liquid-to-solid specific heat ratio and equilibrium partition coefficient increase, and Curie temperature decreases. Cooling rates responsible for the primary and secondary dendrite arm spacings, however, are uncertain. Other property parameters exhibit definite and uncertain effects on cooling rate and morphology parameter, respectively. The effects of workpiece properties on weld microstructures are revealed.
机译:这项研究从理论上研究了电阻点焊过程中工件性能对熔核组织的影响,该影响是由温度梯度和凝固速率决定的。无量纲的特性包括居里温度,导热率和固体与液体之间的比热比,平衡分配系数以及电极与工件之间的电导率和导热率。根据先前的真实传输模型,计算结果表明,与在轴对称轴附近的轴向等轴晶粒相比,归因于靠近接合面的径向的较小的热通量和较高的凝固速率,较低的形貌参数是造成等轴晶晶粒的原因。中部地区。形态参数随液固比热比和平衡分配系数的增加而降低,居里温度降低。然而,负责主枝和次枝晶臂间距的冷却速率是不确定的。其他特性参数分别对冷却速率和形态参数表现出确定和不确定的影响。揭示了工件性能对焊缝微观结构的影响。

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