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通过单脉冲电流降低超高强度马氏体钢板的回弹

Springback Reduction of Ultra-High-Strength Martensitic Steel Sheet by Electrically Single-Pulsed Current.

作者信息

Kim Minki, Bae Gihyun, Park Namsu, Song Jung Han

机构信息

Molding & Metal Forming R&D Department, Korea Institute of Industrial Technology (KITECH), 156, Gaetbeol-ro, Yeonsu-gu, Incheon 21999, Korea.

出版信息

Materials (Basel). 2022 Mar 23;15(7):2373. doi: 10.3390/ma15072373.

Abstract

This paper investigates the reduction of springback by an electrically single-pulsed current for an ultra-high-strength martensitic steel sheet, MART1470 1.2t. In order to evaluate the springback reduction by the electric current, V-bending tests were performed with various parameter-sets (current density and pulse duration). The amount of springback reduction was then calculated from the measured bent-angle of tested specimens. Experimental results show the springback is reduced with the increase in the current density, the pulse duration, and the electric energy density. In order to clarify thermal and athermal portions in the effect of electric current on the springback reduction, two ratios of force and isothermal flow stress were calculated based on bending theory. From the comparison of the ratios, it is noted that the athermal portion mainly contributes to the force relaxation, so the springback amount decreases. The athermal portion significantly increases as the electric energy density increases. Microstructures and micro-Vickers hardness were observed to confirm the applicability of the single-pulsed current to forming processes in practice. The springback reduction can be achieved up to 37.5% without severe changes in material properties when the electric energy density increases up to 281.3 mJ/mm. Achievable reduction is 85.4% for the electric energy density of 500 mJ/mm, but properties remarkably change.

摘要

本文研究了采用单脉冲电流对超高强度马氏体钢板MART1470 1.2t进行回弹量降低的情况。为了评估电流对回弹量的降低效果,进行了不同参数组合(电流密度和脉冲持续时间)的V型弯曲试验。然后根据测试试样的测量弯曲角度计算回弹量的降低值。实验结果表明,回弹量随着电流密度、脉冲持续时间和电能密度的增加而降低。为了阐明电流对回弹量降低影响中的热效应和非热效应部分,基于弯曲理论计算了两个力与等温流变应力的比值。通过对这些比值的比较发现,非热效应部分主要促成了力的松弛,因此回弹量减小。随着电能密度的增加,非热效应部分显著增加。观察了微观组织和显微维氏硬度,以确认单脉冲电流在实际成形过程中的适用性。当电能密度增加到281.3 mJ/mm时,回弹量降低可达37.5%,而材料性能无严重变化。对于电能密度为500 mJ/mm的情况,可实现的降低率为85.4%,但性能会显著变化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1107/9000190/85bbaca127ca/materials-15-02373-g001.jpg

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