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Microstructural characterization of M250 grade maraging steel using nonlinear ultrasonic technique

机译:M250级马氏体时效钢的非线性超声表征

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摘要

Nonlinear ultrasonic (NLU) technique is used for characterization of microstructures in M250 grade maraging steel subjected to solution annealing at 1093 K for 1 h followed by ageing at 755 K for various ageing durations in the range from 0.25 to 100 h. Using pulse inversion technique, feeble second harmonic is extracted to determine nonlinear ultrasonic parameter, β, and the relative β parameter (RBP) which is the ratio of β parameter of the precipitation hardened specimen to that of the solution annealed specimen. Normalized mean square strain, volume fraction of reverted austenite and hardness have been measured and transmission electron microscopy (TEM) has been carried out to understand the microstructural changes that occur during ageing and to study the correlation between these measured parameters. Hardness and normalized mean square strain are found to increase during initial stages of ageing due to precipitation of intermetallics and decrease at longer durations due to formation of reverted austenite and coarsening of precipitates. This study establishes that NLU technique can be used for non-destructive characterization of ageing behaviour of M250 grade maraging steel.
机译:非线性超声(NLU)技术用于表征M250级马氏体时效钢在1093 K下固溶退火1 h,然后在755 K时效进行0.25至100 h范围内的时效退火后的组织。使用脉冲反演技术,提取微弱的二次谐波,以确定非线性超声参数β和相对β参数(RBP),该参数是沉淀硬化样品的β参数与固溶退火样品的β参数之比。测量了归一化的均方应变,奥氏体的体积分数和硬度,并进行了透射电子显微镜(TEM)的研究,以了解时效过程中发生的微观结构变化并研究这些测量参数之间的相关性。发现硬度和归一化均方应变在时效初期由于金属间化合物的析出而增加,而在较长的持续时间内则由于形成奥氏体的形成和析出物的粗化而降低。这项研究建立了NLU技术可用于M250级马氏体时效钢的时效行为的非破坏性表征。

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