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Application of nonlinear ultrasonic technique to characterize the creep damage in ASME T92 steel welded joints

机译:非线性超声技术在表征ASME T92钢焊接接头蠕变损伤中的应用

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摘要

This paper reports a novel use of nonlinear ultrasonic technique for characterizing the creep damage in ASME T92 steel welded joints. The creep tests of this joints were conducted at 650 °C/90 MPa for different times, to obtain specimens with different degrees of creep damage. After crept for 1560 h, the T92 steel welded specimen was fractured in fine-grained heat affected zone (FGHAZ), which indicates that the FGHAZ is the weakest zone of T92 steel welds. The nonlinear ultrasonic measurements were conducted after the creep test. The WM show a large original value of nonlinear parameter, but the variation of this parameter over creep time were relatively small compared with the BM and HAZ. The largest growth of nonlinear parameter occurs on the HAZ, which increased about 3 times in the creep fractured specimen compared with the original specimen. Meanwhile, metallographic examination indicates that the cavity growth is the main damage characteristic in FGHAZ. These results indicate that the nonlinear ultrasonic technique could be used to characterize the creep damage in ASME T92 welded joints.
机译:本文报道了一种新型的非线性超声技术,用于表征ASME T92钢焊接接头的蠕变损伤。在650 C / 90 MPa下对该接头进行蠕变试验不同的时间,以获得具有不同程度的蠕变损伤的试样。蠕变1560h后,T92钢的焊接试样在细晶粒热影响区(FGHAZ)断裂,这表明FGHAZ是T92钢焊缝的最弱区域。蠕变测试后进行非线性超声测量。 WM显示出较大的非线性参数原始值,但与BM和HAZ相比,该参数随蠕变时间的变化相对较小。非线性参数的最大增长出现在热影响区上,与原始样本相比,蠕变断裂样本增加了约3倍。同时,金相检查表明,空洞生长是FGHAZ的主要破坏特征。这些结果表明,非线性超声技术可用于表征ASME T92焊接接头的蠕变损伤。

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