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Mechanical and microstructure properties of ultra-high strength boron steel using rapid resistance heating without soaking

机译:超高强度硼钢的力学和显微组织性能,采用快速电阻加热,无需浸泡

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摘要

Abstract Resistance heating (RH) has broad prospects in hot stamping due to its rapid heating rate and high energy efficiency. In this work, the ultra-high strength boron steel was heated by high current and then water quenched (without soaking). The effects of heating temperature and current density on mechanical properties and microstructure were explored. The results indicated that resistance heating method can significantly shorten the heating time, and even the soaking stage can be ignored when overheating is adopted; thus, the whole heating period can be reduced from 5 min to 15 s. Besides, the oxide scale is inapparent on the uncoated sheet with rapid heating, which improves the surface quality evidently. Furthermore, the mechanical properties of the boron steel after resistance heating are better than those after furnace heating (FH), including both strength and elongation. The microscopic characterization confirms that the grain size of the resistance heating sample is obviously finer than that of the furnace heating, showing a mixed microstructure of coarse and fine grains, and the final structure includes a certain amount of retained austenite. These characteristics ensure that the boron steel has excellent properties after resistance heating and quenching.Graphical abstract
机译:摘要 电阻加热(RH)具有升温速度快、能效高等优点,在热冲压中具有广阔的应用前景。在这项工作中,超高强度硼钢通过大电流加热,然后进行水淬(不浸泡)。探究了加热温度和电流密度对力学性能和微观结构的影响。结果表明,电阻加热法可显著缩短加热时间,采用过热时甚至可忽略浸泡阶段;因此,整个加热时间可以从 5 分钟减少到 15 秒。此外,在快速加热的未涂层板材上,氧化皮不明显,明显提高了表面质量。此外,电阻加热后的硼钢的力学性能优于炉内加热(FH)后的硼钢,包括强度和伸长率。显微表征证实,电阻加热试样的晶粒尺寸明显比炉加热的晶粒细小,呈现出粗细晶粒的混合显微组织,最终结构中含有一定量的残余奥氏体。这些特性保证了硼钢在电阻加热和淬火后具有优异的性能。图形摘要

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