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Weld Magnification Factor Approach in Cruciform Joints Considering Post Welding Cooling Medium and Weld Size

机译:考虑焊接后冷却介质和焊缝尺寸的十字形接头焊接放大倍数法

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摘要

The objective of this research is to develop an experimental-theoretical analysis about the influence of the cooling medium and the geometry of the welding bead profile in fatigue life and the associated parameters with structural integrity of welded joints. A welded joint with cruciform geometry is considered using SMAW (Shielded Metal ArcWelding), plates in structural steel ASTM A36 HR of 8 mm of thickness, and E6013 electrode input. A three-dimensional computational model of the cruciform joint was created using the finite element method. For this model, the surface undulation of the cord and differentiation in the mechanical properties of the fusion zone were considered, the heat-affected zone (HAZ) and base material, respectively. In addition, an initial residual stress field, which was established experimentally, was considered. The results were a set of analytical expressions for the weld magnification factor Mk. It was found that values for the latter decrease markedly in function of the intensity of the cooling medium used in the post welding cooling phase, mainly due to the effect of the residual compressive stresses. The obtained models of behavior of the weld magnification factor are compared with the results from other researchers with some small differences, mainly due to the inclusion of the cooling effect of the post weld and the variation of the leg of the weld bead. The obtained analytical equations in the present research for Mk can be used in management models of life and structural integrity for this type of welded joint.
机译:这项研究的目的是对冷却介质和焊缝轮廓几何形状对疲劳寿命的影响以及与焊接接头结构完整性相关的参数进行实验理论分析。考虑使用SMAW(屏蔽金属电弧焊),结构钢ASTM A36 HR的厚度为8 mm的板和E6013电极输入的具有十字形几何形状的焊接接头。使用有限元方法创建了十字形接头的三维计算模型。对于该模型,分别考虑了帘线的表面起伏和熔合区机械性能的差异,分别是热影响区(HAZ)和基材。另外,考虑了通过实验建立的初始残余应力场。结果是一组焊接放大倍数Mk的解析表达式。已经发现,后者的值在焊接后冷却阶段中使用的冷却介质强度的函数上显着降低,这主要是由于残余压缩应力的影响。将获得的焊缝放大系数的行为模型与其他研究人员的结果进行比较,但有一些小的差异,这主要是由于包含了焊后冷却效果和焊缝腿部的变化。在本研究中获得的Mk解析方程可用于此类焊接接头的寿命和结构完整性管理模型。

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