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首页> 外文期刊>Materials Science and Technology: MST: A publication of the Institute of Metals >Residual stress and microstructural features of friction-stir-welded GL E36 shipbuilding steel
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Residual stress and microstructural features of friction-stir-welded GL E36 shipbuilding steel

机译:摩擦搅拌焊接GL E36造船钢的残余应力与微观结构特征

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The purpose of the present study was to fulfil the knowledge gap concerning residual stresses evaluation of friction stir welded GL E36 shipbuilding steel. Plates of 6mm thickness were welded using two different welding speeds (1 and 3mms(-1)) at a constant rotational speed of 500 rev min(-1). This led to different thermal cycles and the objective is to analyse the resulting microstructures and residual stress states. Therefore, in this work, residual stresses were evaluated by X-ray diffraction; metallography and microhardness testing were performed to support these measurements. Results showed that welds produced with different heat inputs have distinguishable residual stress distributions. Increases in the welding speed led to higher residual stress and microhardness in the stir zone.
机译:本研究的目的是实现关于摩擦搅拌焊接GL E36造船钢的残余应力评估的知识空白。 使用两种不同的焊接速度(1和3mms(-1))以500重速度(-1)的恒定旋转速度(1和3mms(-1))焊接6mm厚度的板。 这导致了不同的热循环,目的是分析所得到的微观结构和残余应力状态。 因此,在该工作中,通过X射线衍射评估残余应力; 进行金相和显微硬度测试以支持这些测量。 结果表明,用不同热输入产生的焊缝具有可区分的残余应力分布。 焊接速度的增加导致搅拌区中的较高残余应力和微硬度。

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