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Indirect Hot Stamping of Boron Steel 22MnB5 for an upper B-pillar

机译:间接钢22mnb5的间接热冲压为上部b柱

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During the indirect hot stamping process of boron steel, the pre-deformed component undergoes air cooling, one-side-contact cooling and both-side-contact cooling phases successively. The effects of pre-deformation and cooling rate on the phase transformation should be understood before conducting indirect hot stamping experiments of vehicle components. Uniaxial tensile tests of boron steel at RT were carried out to obtain specimens with different pre-strain levels. Then they were heated to 900°C according to the indirect hot stamping process and quenching tests were performed on them at different cooling rates. Metallographic observations were performed on the quenched specimens and their hardness was measured. The results show that the pre-strain at RT has little influence on the phase transformation of boron steel. This is due to the dislocation structure introduced by deformation at RT recovered during the heating process and it is good for the indirect hot stamping. Upper B-pillar parts were first cold pre-formed, and then were heated and hot stamped. The microstructure and hardness results at different locations on the indirect hot stamped components are demonstrated qualified.
机译:在硼钢的间接热冲压工艺中,预变形部件经历空气的冷却,单侧接触冷却和双侧接触冷却阶段依次。在进行车辆组分的间接热冲压实验之前,应理解预变形和冷却速率对相变的影响。进行室温下的单轴拉伸试验,以获得具有不同菌株预级别水平的标本。然后根据间接的热冲压过程加热至900℃,并以不同的冷却速率对它们进行淬火试验。在淬火标本上进行金相观察,并测量它们的硬度。结果表明,室温下的菌株对硼钢的相变影响几乎没有影响。这是由于在加热过程中通过rt回收的变形引入的位错结构,并且对于间接热冲压是良好的。上B柱部件是首先冷预制,然后加热并热冲压。在间接热冲压部件上的不同位置的微观结构和硬度得到了合格的。

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