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Residual stresses in welded components following post-weld treatment methods

机译:焊接后处理方法后焊接部件的残余应力

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Weld seam is the weakest point of the structure. Weld defects, weld geometry such as toe radius, and residual stresses, which are typically tensile in the critical area, weaken the fatigue strength of the weld seam. These factors become more important with the welding of high strength steels (HSS) because structures containing welded seams loose the benefit from the strength of the steel. The weld seam fatigue strength can be improved locally with several different methods. In this paper residual stresses of the weld area and their modifications for improving the fatigue strength are discussed. The residual stresses of the toe area are changed from tensile up to compressive stresses, which are known to improve fatigue strength, with several methods. High tensile stresses can be relaxed mechanically or thermally as postweld heat treatment. Mechanical treatments are more common especially in large structures. Typical mechanical methods are burr grinding, TIG re-melting, hammer peening and needle peeing. A new method is laser re-melting method. All these methods also change the geometry of the weld toe by improving it. This paper concentrates to needle peening (high frequency mechanical impact, HFMI), and presents some results from laser re-melting tests. Both surface measurements and depth distributions of stress measured by X-ray diffraction (XRD) method are presented.
机译:焊缝是结构的最弱点。焊接缺陷,焊接几何形状,如Toe半径,以及通常在临界区域中的拉伸的残余应力,削弱了焊缝的疲劳强度。由于高强度钢(HSS)的焊接,这些因素变得更加重要,因为含有焊接接缝的结构松散了钢的强度的益处。焊缝疲劳强度可以用几种不同的方法局部改善。在本文中,讨论了焊接区域的残余应力及其改善疲劳强度的改进。脚趾区域的残余应力从拉伸达到压缩应力改变,已知有几种方法可以提高疲劳强度。可以机械地放松高拉伸应力或作为焊接热处理的热量弛豫。机械处理更常见,特别是在大结构中。典型的机械方法是毛刺研磨,TIG重新熔化,锤子喷丸和针尿。一种新方法是激光再熔化方法。所有这些方法也通过改善它来改变焊接脚趾的几何形状。本文集中于针刺喷丸(高频机械冲击,HFMI),并呈现出激光再熔化试验的一些结果。提出了通过X射线衍射(XRD)法测量的应力的表面测量和深度分布。

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