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首页> 外文期刊>Journal of iron and steel research >Microstructure Variation and Hardness Diminution During Low Cycle Fatigue of 55NiCrMoV7 Steel
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Microstructure Variation and Hardness Diminution During Low Cycle Fatigue of 55NiCrMoV7 Steel

机译:55NiCrMoV7钢低周疲劳时的组织变化和硬度降低

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摘要

The influence of temperature and hardness level on the cyclic behavior of 55NiCrMoV7 steel, and the microstructure variation and hardness diminution during low cycle fatigue behavior were investigated. By means of SEM and XRD, the modality of carbides and the full-width half-maximum (FWHM) of martensite (211) [M(211)] of X-ray diffraction spectrum in fatigue specimen were studied. The results showed that the cyclic stress response behavior generally showed an initial exponential softening for the first few cycles, followed by a gradual softening without cyclic softening saturation. The fatigue behavior of the steel is closely related to the hardness level. The hardness diminution and the variation of half-width M(211) are remarkably influenced by the interaction between the cyclic plastic deformation and the thermal loading when the fatigue temperature exceeds the tempering temperature of the steel.
机译:研究了温度和硬度水平对55NiCrMoV7钢循环行为的影响,以及低循环疲劳行为下的组织变化和硬度降低。通过SEM和XRD,研究了疲劳试样中X射线衍射谱图的碳化物形态和马氏体(211)[M(211)]的半峰全宽(FWHM)。结果表明,循环应力响应行为通常在前几个循环中显示出初始的指数软化,然后逐渐软化而没有循环软化饱和。钢的疲劳性能与硬度水平密切相关。当疲劳温度超过钢的回火温度时,循环塑性变形和热负荷之间的相互作用会显着影响硬度的减小和半宽度M(211)的变化。

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