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Experimental evaluation of relaxed strains in a pipe-to-plate welded joint by means of incremental cutting process

机译:通过增量切削过程对管住焊接接头中松弛菌株的实验评价

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Residual stresses play a major role in the fatigue life and static strength of welded components. The high thermal gradient to which the material is subjected to during welding often leads to tensile residual stresses in critical notched regions. Residual stresses evaluation is crucial as they can cause unexpected failures or premature degradation of components, thus shortening the service life. Since determining their magnitude a priori is challenging, the experimental evaluation is fundamental when tensile residual stresses could be degrading for a component. The assessment of residual stresses can be performed through different techniques, all involving indirect measurements based on the detection of elastic deformation or displacement. In this context, a method belonging to the sectioning method category is proposed to calculate relaxed strains in a pipe-to-plate welded joint. The relaxed strains are determined by means of strain gauges placed on the upper surface of the plate nearby the weld bead. The results thus obtained represent strains measurements generated after an incremental hole cutting process performed on the bottom surface of the plate, opposite respect to the surface where the strain gauges were attached. Through this method, the calculated strains are related to the diameter and depth of the performed hole, as well as the location where the strain gauges are placed on the plate surface.
机译:残余应力在焊接部件的疲劳寿命和静态强度中起主要作用。在焊接期间进行材料的高热梯度通常导致临界缺口区域中的拉伸残余应力。残余应力评估至关重要,因为它们会导致成分的意外故障或过早降解,从而缩短了使用寿命。由于确定其优势是具有挑战性的,因此当拉伸残余应力可能降低组分时,实验评价是基本的。可以通过不同的技术进行残余应力的评估,所有技术都涉及基于弹性变形或位移的间接测量。在这种情况下,提出了一种属于切片方法类别的方法,以计算管与板焊接接头中的松弛菌株。通过放置在焊珠附近的板的上表面上的应变计确定松弛菌株。由此获得的结果表示在板块的底表面上执行的增量空穴切割处理之后产生的菌株测量,相反地连接应变仪的表面。通过这种方法,计算的菌株与所执行孔的直径和深度有关,以及应变仪放置在板表面上的位置。

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