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Effect of Original Microstructure on Microstructure and Mechanical Properties of High Strength Steel WHF1500H during Hot Forming

机译:原始组织对高强度钢WHF1500H热成形过程中组织和力学性能的影响

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摘要

The press hardening steel sheets WHF1500H with different original structures produced by compact strip production (CSP) line in Wuhan Iron and Steel Ltd. were austenitized at 950 °C for 5 min, and then hot stamped and quenched by using the flat die. The microstructure and mechanical properties were investigated by optical microscope, transmission electron microscope and universal testing machine. The results show that the microstructure after stamping and quenching is fully composed of lath martensite. The mechanical properties of the steel samples with different original structures are different after hot stamping and quenching, and this difference is smaller than that before hot stamping and quenching. When the original structure consists of ferrite and pearlite, the austenite grains after austenitization are fine and uniform. In addition, the martensite structure obtained after hot stamping and quenching is also uniform and fine, leading to higher mechanical properties. With the increase of the strength of the original steel, when the original structure is martensite, the austenite grains after austenitization are coarse, and the martensite structures obtained after quenching is also coarse, and thereby decreasing the strength.
机译:将武钢紧凑带材生产线(CSP)生产的具有不同原始结构的压制钢板WHF1500H在950°C下奥氏体化5分钟,然后使用平模进行热冲压和淬火。用光学显微镜,透射电子显微镜和万能试验机研究了组织和力学性能。结果表明,冲压淬火后的显微组织完全由板条马氏体组成。具有不同原始结构的钢样品的机械性能在热冲压和淬火之后有所不同,并且该差异小于热冲压和淬火之前的差异。当原始结构由铁素体和珠光体组成时,奥氏体化后的奥氏体晶粒细而均匀。另外,在热冲压和淬火之后获得的马氏体结构也是均匀且细的,从而导致更高的机械性能。随着原始钢强度的增加,当原始组织为马氏体时,奥氏体化后的奥氏体晶粒粗大,淬火后得到的马氏体组织也粗大,从而降低了强度。

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