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首页> 外文期刊>Materials Science and Engineering. A, Structural Materials: Properties, Microstructure and Processing >Characterization of aging behaviour in M250 grade maraging steel using eddy current non-destructive methodology
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Characterization of aging behaviour in M250 grade maraging steel using eddy current non-destructive methodology

机译:使用涡流无损分析方法表征M250级马氏体时效钢的时效行为

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摘要

The aim of the study is to investigate the effect of aging of solution annealed M250 grade maraging steel on the microstructure, room temperature hardness and eddy current (EC) parameters. Specimens of M250 maraging steel were subjected to solution annealing at 1093 K for 1 h followed by aging at 755 K for various durations in the range of 0.25-100 h. The hardness was found to increase continuously with aging due to precipitation of intermetallics reaching a maximum and decreased there after due to reversion of martensite to austenite. The aging treatment led to three major microstructural changes, i.e. decrease in dislocation density and quenched-in point defects during initial aging (up to 0.25 h), increase in volume fraction of intermetallic precipitates at intermediate duration and a systematic increase in reverted austenite at longer duration (beyond 40 h). These microstructural changes alter the electrical resistivity/magnetic permeability which, in turn, influence the induced voltage in eddy current coil. Two EC parameters, viz. magnitude and phase angle of the induced voltage were studied for heat treated specimens. The study revealed that a good correlation exists between EC parameters and microstructural changes in M250 maraging steel specimens.
机译:该研究的目的是研究固溶退火的M250级马氏体时效钢的时效对其组织,室温硬度和涡流(EC)参数的影响。 M250马氏体时效钢的试样在1093 K下进行固溶退火1 h,然后在755 K下时效进行0.25-100 h范围内的不同时效。由于金属间化合物的析出达到最大值,发现硬度随着时效而持续增加,而由于马氏体向奥氏体的回复,硬度在此后降低。时效处理导致三个主要的微观结构变化,即在初始时效(长达0.25 h)内位错密度降低和淬火点缺陷,在中间持续时间内金属间沉淀物的体积分数增加,并在较长时间内系统地还原了奥氏体。持续时间(超过40小时)。这些微结构变化会改变电阻率/磁导率,进而影响涡流线圈中的感应电压。两个EC参数,即。研究了热处理试样的感应电压幅值和相角。研究表明,M250马氏体时效钢试样的EC参数与显微组织变化之间存在良好的相关性。

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