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Formation of magnetic grating on steel plates by electron/laser beam irradiation

机译:电子/激光束辐照在钢板上形成磁光栅

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摘要

The steels examined were a ferromagnetic carbon steel, S35C (equivalent to AISI 1035), and a nonmagnetic austenitic stainless steel, SUS 304 (equivalent to AISI 304). The gratings formed were magnetized in a 5.4-kOe field and the profile of the vertical component of magnetic flux leakage from each magnetized grating was measured. Changes of microstructure and mechanical strength of the beam-irradiated portions of the steel plates were also investigated. The measurements of the leakage flux profiles revealed the existence of remanent magnetism in the gratings. Metallographic and mechanical-hardness examinations showed that the original mixed ferrite/pearlite phase in the S35C steel was changed to martensite by beam irradiation. This increased its mechanical hardness. It was also determined that small grains of the ferrimagnetic ferrite phase were precipitated in the base of the nonmagnetic austenitic phase in the SUS 304.
机译:检验的钢为铁磁碳钢S35C(等效于AISI 1035)和非磁奥氏体不锈钢SUS 304(等效于AISI 304)。将形成的光栅在5.4 kOe的磁场中磁化,并测量从每个磁化光栅泄漏的磁通量的垂直分量的分布。还研究了钢板的束辐照部分的显微组织和机械强度的变化。泄漏通量曲线的测量结果表明,光栅中存在剩磁。金相和机械硬度检查表明,S35C钢中的原始铁素体/珠光体混合相通过束辐照变为马氏体。这增加了其机械硬度。还确定在SUS 304的非磁性奥氏体相的基部中析出了亚铁磁性铁素体相的小晶粒。

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