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Application of ultrasonic methods for early detection of thermal damage in 2205 duplex stainless steel

机译:超声方法在2205双相不锈钢热损伤早期检测中的应用

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摘要

Early thermal damage in 2205 duplex stainless steel which is caused by the precipitation of second phases during a short term exposure to high temperature (700 °C) is investigated. Nonlinear ultrasonic measurements are performed and their results are compared with those from ultrasonic velocity and attenuation measurements. Experimental results show that the measured acoustic nonlinearity parameter is more sensitive than the ultrasonic longitudinal velocity and attenuation to the precipitation of chi and sigma phases early in the aging treatments. The results from the nonlinear ultrasonic measurements are also supported with those from the scanning electron microscopy (SEM), Rockwell C hardness and Charpy impact test. Especially notable is the close correlation between the hardness and the nonlinearity parameter. This research therefore proposes the nonlinear ultrasonic method as a nondestructive assessment means for early detection of thermal degradation of mechanical properties in 2205 duplex stainless steel.
机译:研究了2205双相不锈钢在早期暴露于高温(700°C)期间由于第二相的析出而引起的早期热损伤。进行非线性超声测量,并将其结果与超声速度和衰减测量的结果进行比较。实验结果表明,在时效处理的早期,所测量的声学非线性参数比超声纵向速度和衰减对chi和sigma相的沉淀更为敏感。非线性超声测量的结果也得到扫描电子显微镜(SEM),洛氏C硬度和夏比冲击试验的支持。尤其值得注意的是硬度和非线性参数之间的紧密相关性。因此,本研究提出了一种非线性超声方法,作为一种早期检测2205双相不锈钢机械性能热降解的无损评估手段。

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