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Tailored die quenching of steel parts having strength distribution using bypass resistance heating in hot stamping

机译:在热冲压中使用旁路电阻加热对具有强度分布的钢零件进行量身定制的模具淬火

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A tailored die quenching process of steel parts having a strength distribution using bypass resistance heating in hot stamping was developed. In the tailored die quenching process, zones requiring high strength in a quenchable steel sheet were heated, and then were quenched. In the bypass resistance heating, zones in contact with copper bypasses having a low resistance and large cross-sectional area were not heated due to the passage of the current though the copper bypasses. The bypass resistance heating was stable even for the heavy current in rapid heating of the steel sheets because of passage of current in one direction, and the electrical power loss was small. The hardenability for the bypass resistance heating was first examined by sandwiching a partially heated sheet between large steel blocks without deformation. Next, the tailored die quenching process using bypass resistance heating in the hat-shaped bending of the steel sheet was performed to form a part having high strength around the corners. A hat-shaped part having a tensile strength of approximately 1.5 GPa around the corners was formed, and the input energy and punching load in the bottom of the bent sheet were considerably smaller than those for whole heating.
机译:开发了在热冲压过程中使用旁路电阻加热对强度分布进行分配的钢制零件的定制模具淬火工艺。在定制的模具淬火工艺中,将可淬火钢板中要求高强度的区域加热,然后淬火。在旁路电阻加热中,由于电流通过铜旁路,所以与低电阻和大横截面积的铜旁路接触的区域未被加热。由于在一个方向上通过电流,即使在钢板快速加热的大电流下,旁路电阻加热也稳定,并且电损耗小。首先通过将部分加热的板夹在大型钢块之间而不变形来检查旁路电阻加热的淬透性。接下来,进行在钢板的帽形弯曲中使用旁路电阻加热的定制模淬火工艺,以形成拐角附近具有高强度的部件。形成了在拐角处具有约1.5GPa的拉伸强度的帽形部分,并且在弯曲片材的底部中的输入能量和穿孔负荷明显小于整个加热时的输入能量和穿孔负荷。

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