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Effect of Plate Thickness and Weld Position on Distortion and Residual Stress of Welded Structural Steel

机译:板厚和焊接位置对焊接结构钢变形和残余应力的影响

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摘要

Residual stresses are generated as a result of non-uniform temperature distribution during welding and particularly cooling process during fabrication of the welded parts. Residual stresses have a major effect on the overall performance of a component in service. In this instant, the residual stress in the form of angular distortion is primarily caused by shrinkage on longitudinal and transversal direction. Several single v-butt joints on structural steel plates of SS400 are investigated by using different plate thickness and welding positions (1G and 3G). GMAW method was used in the welding process. Measurement of residual stress was carried out on a plate with the thickness of 16 mm on longitudinal, transversal and normal direction by using neutron diffraction method. Results showed that the angular distortion of the welded plates increase with the increase of plate thickness. Welding by vertical position (3G position) resulted in a bigger angular distortion compared to flat position (1G position). The distribution of residual stress varied between tension and compression residual stress along welded area with the range of-10 mm to 10 mm. Measurement of residual stress on the longitudinal direction has the greatest value among two other directions.
机译:残余应力是由于焊接过程中温度分布不均匀而产生的,尤其是在焊接部件制造过程中的冷却过程中。残余应力对使用中的组件的整体性能有重大影响。在这种情况下,角度变形形式的残余应力主要是由纵向和横向收缩引起的。通过使用不同的板厚和焊接位置(1G和3G),研究了SS400结构钢板上的几个单v型对接接头。在焊接过程中使用了GMAW方法。通过使用中子衍射法,在纵向,横向和法向的厚度为16mm的板上进行残余应力的测量。结果表明,随着板厚的增加,焊接板的角度变形也随之增加。与平面位置(1G位置)相比,垂直位置(3G位置)进行焊接会导致更大的角度变形。残余应力的分布沿焊接区域在拉伸残余应力和压缩残余应力之间变化,范围为-10 mm至10 mm。在纵向上的残余应力的测量在其他两个方向上具有最大值。

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