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Nondestructive Evaluation of Welding Residual Stresses in Austenitic Stainless Steel Plates

机译:奥氏体不锈钢板焊接残余应力的无损评价

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摘要

This article investigates the nondestructive capability of ultrasonic waves in residual stress evaluation of austenitic stainless steel plates (AISI 304L). Longitudinal critically refracted (LCR) waves are employed to measure the residual stresses. Measuring the acoustoelastic constant through the tensile test is eliminated on the main investigated sample to keep it intact. Another welded plate with the same welding specification, geometry, thickness, and the same material is used to extract tensile test samples. To find the acoustoelastic constant of the heat affected zone (HAZ), a metallographic investigation is done to produce microstructure similar to that of the HAZ in a tensile test sample. A finite element model of welding process, which is validated by hole-drilling method, is used to verify the ultrasonic results. The results show good agreement between finite element and ultrasonic stress measurements which is accomplished nondestructively. ?? 2014 American Society for Nondestructive Testing.
机译:本文研究了超声波在奥氏体不锈钢板(AISI 304L)的残余应力评估中的非破坏性能力。使用纵向折射率(LCR)波用于测量残余应力。在主要调查的样品上消除了通过拉伸试验来测量声塑常数,以保持完好无损。使用具有相同焊接规格,几何,厚度和相同材料的另一种焊接板用于提取拉伸试验样品。为了找到热影响区(HAZ)的声弹性常数,完成了金相研究以产生类似于拉伸试验样品中HAZ的微观结构。通过空穴钻孔方法验证的焊接过程有限元模型,用于验证超声波结果。结果表明,有限元和超声波应力测量之间的良好一致性地无损地完成。当2014年美国非破坏性测试学会。

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