首页> 外文期刊>Welding in the World: Journal of the International Institute of Welding: Journal of the International Institute of Welding >Correlating welding reaction stresses and weld process conditions for high-strength steel S960QL
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Correlating welding reaction stresses and weld process conditions for high-strength steel S960QL

机译:高强度钢S960QL的焊接反应应力和焊接工艺条件的相关性

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摘要

As a result of current trends towards lightweight design, a growing amount of high-strength steels with yield strengths above 690 MPa is applied. In comparison to the weld process of lower-strength steels, small working ranges have to be achieved with respect to a special microstructure and high yield ratio. However, the sustainable and economic application of these steels depends on the loading capacity and the safety of welds when designing weld constructions. For these demands, a precise knowledge of welding stress level and distribution is essential. Therefore, the present study is concerned with the interaction between heat control (interpass temperature and heat input) and local as well as global stresses in high-strength steel welds. Specimens were multirun welded under defined restraint conditions in a special test facility (controlled tensile weldability (CTW) test) to consider global restraint. For the comparison concerning local residual stresses, free shrinkage test welds were performed as well. The evaluation shows a significant influence of the interpass temperature on the global reaction forces. Furthermore, increased heat input and high interpass temperatures cause higher tensile residual stresses. This occurred in the weld area of both free shrinkage test specimen and CTW test specimen.
机译:由于当前轻量化设计的趋势,越来越多的屈服强度超过690 MPa的高强度钢被应用。与低强度钢的焊接工艺相比,就特殊的组织和高屈服比而言,必须达到较小的加工范围。但是,这些钢的可持续和经济应用取决于设计焊接结构时的焊接能力和焊接安全性。对于这些需求,必须对焊接应力水平和分布有确切的了解。因此,本研究关注高强度钢焊缝中热量控制(道间温度和热量输入)与局部应力和全局应力之间的相互作用。在特殊的测试设施(受控拉伸可焊性(CTW)测试)中,在定义的约束条件下对试样进行多道焊接,以考虑整体约束。为了比较局部残余应力,还进行了自由收缩试验焊缝。评估显示道间温度对整体反作用力有重大影响。此外,增加的热输入和较高的层间温度导致较高的拉伸残余应力。这发生在自由收缩试样和CTW试样的焊接区域。

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