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Applicability of nonlinear ultrasonic technique to evaluation of thermally aged CF8M cast stainless steel

机译:非线性超声技术对热老化CF8M铸造不锈钢评价的适用性

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Cast austenitic stainless steel (CASS) is used for fabricating different components of the primary reactor coolant system of pressurized water reactors. However, the thermal embrittlement of CASS resulting from long-term operation causes structural safety problems. Ultrasonic testing for flaw detection has been used to assess the thermal embrittlement of CASS; however, the high scattering and attenuation of the ultrasonic wave propagating through CASS make it difficult to accurately quantify the flaw size. In this paper, we present a different approach for evaluating the thermal embrittlement of CASS by assessing changes in the material properties of CASS using a nonlinear ultrasonic technique, which is a potential nondestructive method. For the evaluation, we prepared CF8M specimens that were thermally aged under four different heating conditions. Nonlinear ultrasonic measurements were performed using a contact piezoelectric method to obtain the relative ultrasonic nonlinearity parameter, and a mini-sized tensile test was performed to investigate the correlation of the parameter with material properties. Experimental results showed that the ultrasonic nonlinearity parameter had a correlation with tensile properties such as the tensile strength and elongation. Consequently, we could confirm the applicability of the nonlinear ultrasonic technique to the evaluation of the thermal embrittlement of CASS.
机译:铸造奥氏体不锈钢(CASS)用于制造加压水反应器的初级反应器冷却剂系统的不同组分。然而,由长期操作产生的CAS的热脆性导致结构安全问题。用于探伤检测的超声波检测已用于评估CASS的热脆化;然而,通过CASS传播的超声波的高散射和衰减使得难以准确地量化缺陷尺寸。在本文中,我们通过评估使用非线性超声技术评估CASS材料特性的变化来评估CAS的热脆化的不同方法,这是一种潜在的非破坏性方法。为了评价,我们制备了在四种不同的加热条件下热老化的CF8M样本。使用接触压电方法进行非线性超声测量,以获得相对超声非线性参数,并进行迷你大小的拉伸试验以研究参数与材料特性的相关性。实验结果表明,超声波非线性参数与拉伸性质如抗拉强度和伸长率进行了相关性。因此,我们可以证实非线性超声波技术的适用性对CASS热脆化的评价。

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