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首页> 外文期刊>Fatigue & Fracture of Engineering Materials & Structures >Cruciform fillet welded joint fatigue strength improvements by weld metal phase transformations
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Cruciform fillet welded joint fatigue strength improvements by weld metal phase transformations

机译:通过焊接金属相变改善十字形角焊缝疲劳强度

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Arc welding typically generates residual tensile stresses in welded joints, leading to deteriorated fatigue performance of these joints. Volume expansion of the weld metal at high temperatures followed by contraction during cooling induces a local tensile residual stress state. A new type of welding wire capable of inducing a local compressive residual stress state by means of controlled martensitic transformation at relatively low temperatures has been studied, and the effects of the transformation temperature and residual stresses on fatigue strength are discussed. In this study, several LTTW (Low Transformation-Temperature Welding) wires have been developed and investigated to better characterize the effect of phase transformation on residual stress management in welded joints. Non-load-carrying cruciform fillet welded joints were prepared for measurement of residual stresses and fatigue testing. The measurement of the residual stresses of the three designed wires reveals a compressive residual stress near the weld toe. The fatigue properties of the new wires are enhanced compared to a commercially available wire.
机译:电弧焊通常会在焊接接头中产生残余拉伸应力,从而导致这些接头的疲劳性能下降。焊缝金属在高温下的体积膨胀,然后在冷却过程中收缩,引起局部拉伸残余应力状态。研究了一种新型焊丝,该焊丝能够在相对较低的温度下通过受控的马氏体相变来诱导局部压缩残余应力状态,并讨论了相变温度和残余应力对疲劳强度的影响。在这项研究中,已经开发并研究了几种LTTW(低相变温度焊接)焊丝,以更好地表征相变对焊接接头残余应力管理的影响。准备了无载荷十字形角焊缝,以测量残余应力和进行疲劳测试。对三根设计焊丝的残余应力的测量显示了焊趾附近的压缩残余应力。与市售电线相比,新电线的疲劳性能得到了增强。

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