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Effects of fatigue-induced changes in microstructure and stress on domain structure and magnetic properties of Fe–C alloys

机译:疲劳诱导变化在微观结构和胁迫下对Fe-C合金域结构和磁性的影响

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摘要

A study of the effects of microstructural changes on domain structure and magnetic properties as a result of fatigue has been made on Fe–C alloys subjected to either cold work, stress-relief annealing, or heat treatment that produced a ferritic/pearlitic structure. The magnetic properties varied with stress cycling depending on the initial condition of the samples. Variations in coercivity in the initial stage of fatigue were closely related to the changes in dislocation structure. In the intermediate stage of fatigue the observed refinement of domain structures was related to the development of dislocation cell structures and formation of slip bands. In the final stage of fatigue the remanence and maximum permeability decreased dramatically, and this rate of decrease was dependent on the crack propagation rate.
机译:已经对经过冷加工,应力消除退火或产生铁素体/珠光体组织的热处理的Fe-C合金进行了研究,研究了疲劳引起的显微组织变化对畴结构和磁性能的影响。磁性随应力循环而变化,这取决于样品的初始条件。疲劳初期矫顽力的变化与位错结构的变化密切相关。在疲劳的中间阶段,观察到的畴结构的细化与位错细胞结构的发展和滑带的形成有关。在疲劳的最后阶段,剩磁和最大磁导率急剧下降,该下降速度取决于裂纹的扩展速度。

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