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Welding Residual Stresses Depending on Solid-State Transformation Behaviour Studied by Numerical and Experimental Methods

机译:数值和实验方法研究基于固态转变行为的焊接残余应力

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The development of high-strength structural steels with yield strengths up to 1000 MPa results in the requirement of suitable filler materials for welding. Recently designed low transformation temperature (LTT) alloys offer appropriate strength. The martensitic phase transformation during welding induces compressive residual stress in the weld zone. Therefore, the mechanical properties of welded joints can be improved. The present paper illustrates numerical simulation of the residual stresses in LTT-welds taking into account the effect of varying M/Mf-temperatures, and therefore different retained austenite contents, on the residual stresses. Residual stress distributions measured by synchrotron diffraction are taken as evaluation basis. A numerical model for the simulation of transformation affected welds is established and can be used for identification of appropriate Ms-temperatures considering the content of retained austenite.
机译:屈服强度高达1000 MPa的高强度结构钢的发展导致需要合适的填充材料进行焊接。最近设计的低相变温度(LTT)合金可提供适当的强度。焊接过程中的马氏体相变会在焊接区中引起压缩残余应力。因此,可以改善焊接接头的机械性能。本文阐述了考虑到变化的M / Mf温度以及残余奥氏体含量对残余应力的影响,对LTT焊缝中残余应力的数值模拟。通过同步加速器衍射测量的残余应力分布被用作评估基础。建立了一个模拟转变影响焊缝的数值模型,考虑到残余奥氏体的含量,该模型可用于识别合适的Ms温度。

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