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Using finite element and ultrasonic method to evaluate welding longitudinal residual stress through the thickness in austenitic stainless steel plates

机译:使用有限元和超声方法通过奥氏体不锈钢板的厚度评估焊接纵向残余应力

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This paper uses a 3D thermo-mechanical finite element analysis to evaluate welding residual stresses in austenitic stainless steel plates of AlSl 304L The finite element model has been verified by the hole drilling method. The validated finite element (FE) model is then compared with the ultrasonic stress measurement based on acoustoelasticity. This technique uses longitudinal critically refracted (L_(CR)) waves that travel parallel to the surface within an effective depth. The residual stresses through the thickness of plates are evaluated by four different series (1 MHz, 2 MHz, 4 MHz and 5 MHz) of transducers. By combining FE and L_(CR) method (known as FEL_(CR) method) a 3D distribution of residual stress for the entire of the welded plate is presented. To find the acoustoelastic constant of the heat affected zone (HAZ), a metal-lographic investigation is done to reproduce HAZ microstructure in a tensile test sample. It has been shown that the residual stresses through the thickness of stainless steel plates can be evaluated by FEL_(CR) method.
机译:本文使用3D热机械有限元分析来评估AlSl 304L奥氏体不锈钢板中的焊接残余应力。该有限元模型已通过钻孔方法进行了验证。然后将经过验证的有限元(FE)模型与基于声弹性的超声应力测量进行比较。该技术使用在有效深度内平行于表面传播的纵向临界折射(L_(CR))波。通过换能器的四个不同系列(1 MHz,2 MHz,4 MHz和5 MHz)评估通过板厚度的残余应力。通过结合FE和L_(CR)方法(称为FEL_(CR)方法),可以显示整个焊接板的残余应力的3D分布。为了找到热影响区(HAZ)的声弹性常数,进行了金相研究以在拉伸测试样品中重现HAZ的微观结构。已经表明,可以通过FEL_(CR)方法评估不锈钢板整个厚度上的残余应力。

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