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首页> 外文期刊>Welding in the World: Journal of the International Institute of Welding: Journal of the International Institute of Welding >Elemental segregation during resistance spot welding of boron containing advanced high strength steels
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Elemental segregation during resistance spot welding of boron containing advanced high strength steels

机译:含硼高级高强度钢电阻点焊过程中的元素偏析

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摘要

The partitioning behaviour of carbon, phosphorous and boron during the solidification of a resistance spot weld pool was studied using experimental simulations and a phase field model. Steels with varying carbon, phosphorous and boron contents were designed and subjected to a range of resistant spot welding thermal cycles. Mechanical properties were evaluated by hardness and cross tension tests and correlated with the weld microstructure. Phase field modelling results and experimental predictions show that the phosphorus concentration in the last area in the weld pool to solidify can reach about 0.38 wt% for a steel with a bulk concentration of 0.08 wt%. Elemental analysis indicates that in the absence of boron, the grain boundaries of columnar grains in the weld pool are decorated with phosphorous. As a result, a complete interface failure occurs during cross tension testing. With the addition of boron, apart from an increase in weld strength and plug diameter, the failure mode switches to a complete plug mode, resulting from the phosphorous depletion at the grain/inter-phase boundaries.
机译:利用实验模拟和相场模型研究了电阻点焊熔池凝固过程中碳,磷和硼的分配行为。设计了具有不同碳,磷和硼含量的钢,并对其进行了一系列抵抗性点焊热循环。机械性能通过硬度和交叉拉伸测试进行评估,并与焊缝微观结构相关。相场建模结果和实验预测表明,对于体积浓度为0.08 wt%的钢,要固化的熔池中最后一个区域的磷浓度可以达到约0.38 wt%。元素分析表明,在不存在硼的情况下,焊缝池中柱状晶粒的晶界被磷装饰。结果,在交叉张力测试期间会发生完全的接口故障。随着硼的添加,除了增加焊接强度和焊头直径之外,由于晶粒/相间边界处的磷耗竭,失效模式转换为完全的焊头模式。

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