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Evaluation of Thermal Degradation of 2.25Cr-1Mo Steel by High Frequency Ultrasonic Attenuation Measurement

机译:高频超声衰减测量评估2.25Cr-1Mo钢的热降解

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It was attempted to assess nondestructively the degree of isothermal degradation of 2.25Cr-1Mo steel by using high frequency longitudinal ultrasonic wave. Microstructural parameter (mean size of carbides), mechanical property (Vickers hardness) and ultrasonic attenuation coefficient were measured for the 2.25Cr-1Mo steel isothermally degraded at 630 ℃ for up to 4800 hours in order to find the correlation among these parameters. The ultrasonic attenuation coefficients at high frequencies (over 35MHz) were observed to increase rapidly in the initial 1000 hours of degradation time and then slowly thereafter, while the ones at low frequencies showed no noticeable increase. Ultrasonic attenuation at high frequencies increased as a function of mean size of carbides. Ultrasonic attenuation coefficient was found to have a linear correlation with the hardness, and suggested accordingly as a potential nondestructive evaluation parameter for assessing the mechanical strength reduction of the isothermally degraded 2.25Cr-1Mo steel.
机译:试图通过使用高频纵向超声波无损评估2.25Cr-1Mo钢的等温降解程度。为了测定这些参数之间的相关性,对在630℃等温降解的2.25Cr-1Mo钢进行了显微组织参数(碳化物平均尺寸),力学性能(维氏硬度)和超声衰减系数的测量。观察到高频处(超过35MHz)的超声衰减系数在最初的1000小时降解时间内迅速增加,然后缓慢下降,而在低频处则没有明显的增加。高频下的超声波衰减随碳化物平均尺寸的增加而增加。发现超声衰减系数与硬度具有线性相关性,因此建议将其作为潜在的非破坏性评估参数,用于评估等温降解的2.25Cr-1Mo钢的机械强度降低。

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