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Optimized Conditions for Tensile Residual Stress Reducing Weld Using Water-Shower Cooling

机译:喷水冷却降低拉伸残余应力的最佳条件

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摘要

To reduce tensile residual stress in a welded region, we developed a new cooling method that applies a water shower behind the welding torch. When this method is applied to the welding of austenitic stainless-steel, the welding and cooling conditions mainly determine how much the residual stress can be reduced. To optimize these conditions, we first used FEM to determine the effects of preheating temperature, heat input quantity, and water-shower area on the residual stress, and found that, to decrease tensile residual stress, preheating temperature should be high, heat input low, and the water-shower large. To confirm the effectiveness of these optimized conditions, residual stresses under optimized or non-optimized conditions were experimentally measured. It was found that the residual stresses were tensile under the non-optimized conditions, but compressive under the optimized ones. These measurements agree well with the FEM analysis. It can therefore be concluded that the optimized conditions are valid and appropriate for reducing residual stress in an austenitic stainless-steel weld.
机译:为了减少焊接区域的拉伸残余应力,我们开发了一种新的冷却方法,该方法在焊炬后方应用喷水。当这种方法应用于奥氏体不锈钢的焊接时,焊接和冷却条件主要决定了残余应力可以减少多少。为了优化这些条件,我们首先使用有限元法确定预热温度,热量输入量和花洒面积对残余应力的影响,并发现要降低拉伸残余应力,预热温度应较高,热量输入应较低。 ,并且花洒很大。为了确认这些优化条件的有效性,通过实验测量了在优化或未优化条件下的残余应力。发现残余应力在非优化条件下是拉伸的,而在优化条件下是压缩的。这些测量与FEM分析非常吻合。因此可以得出结论,优化的条件是有效的并且适合于降低奥氏体不锈钢焊缝中的残余应力。

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