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Metal magnetic memory signals from surface of low-carbon steel and low-carbon alloyed steel

机译:低碳钢和低碳合金钢表面的金属磁记忆信号

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摘要

In order to investigate the regularity of metal magnetic signals of ferromagnetic materials under the effect of applied load, the static tensile test of Q235 steel and 18CrNiWA steel plate specimens were conducted and metal magnetic memory signals of specimens were measured during the test process.The influencing factors of metal magnetic memory signals and the relationship between axial appliedload and signals were analyzed. The fracture and microstructure of the specimens were observed.The results show that the magnetic signals corresponding to the measured points change linearly approximately with increasing axial load.The microstructure of Q235 steel is ferrite and perlite, whereas that of l8CrNiWA steel is bainite and low-carbon martensite.The fracture of these two kinds of specimens is ductile rupture;carbon content of specimen materials and dislocation glide give much contribution to the characterisffcs of magnetic curves.
机译:为了研究铁磁材料在施加载荷作用下金属磁信号的规律性,对Q235钢和18CrNiWA钢板试样进行了静态拉伸试验,并在试验过程中测量了试样的金属磁记忆信号。分析了金属磁记忆信号的影响因素以及轴向施加载荷与信号之间的关系。观察到试样的断裂和显微组织,结果表明与测点相对应的磁信号随轴向载荷的增加呈线性变化.Q235钢的显微组织为铁素体和珍珠岩,而18CrNiWA钢的显微组织为贝氏体且低这两种试样的断裂是韧性断裂;试样材料的碳含量和位错滑移对磁曲线的特性有很大的贡献。

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