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Evaluation of wear-induced plastic deformation at the trimmed edge of DP980 steel sheets

机译:DP980钢板修剪边缘磨损塑性变形评价

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In order to increase the use of advanced high strength steel (AHSS) for automotive light-weighting, the significant trimming-induced wear damage that AHSS sheets cause to the trim dies should be reduced so as to decrease die maintenance costs and deterioration of the quality of sheared edge. In this research, the wear characteristics in the upper AIS1 D2 die inserts used for trimming DP980-type AHSS sheets and the wear-induced plastic deformation at the sheared edges of DP980 were studied. Observation of wear profiles at the edge of the upper trim die revealed that material abrasion was the main damage feature. The trimmed edge quality of DP980 deteriorated with the number of strokes, as indicated by an increase in burr width. Plastic strains near the surface of the sheared edge estimated using the displacements of martensite plates, increased from 2.9 at 2.5 μm below the trimmed edge after 40,000th cycles, to 55 after 80,000th cycles. Micro-hardness tests performed to estimate the local flow stresses in the shear affected zone (SAZ) indicated that the flow stress at a distance of 4.5 μm below the trimmed edge increased with the number of trimming cycles to 1.73 GPa in the 80,000th trimmed part.
机译:为了增加使用先进的高强度钢(AHSS)的汽车次级电力加权,应减少AHSS纸张造成磨削模具的显着修剪诱导的磨损损坏,以降低模具维护成本和质量恶化剪切边缘。在该研究中,研究了用于修剪DP980型AHSS的上AIS1 D2模具插入件的磨损特性以及DP980的剪切边缘处的磨损诱导的塑性变形。上饰体模具边缘的磨损型材观察显示,材料磨损是主要损伤特征。 DP980的修剪边缘质量与笔划的数量劣化,如毛刺宽度的增加所示。使用马氏体板的位移估计的剪切边缘表面附近的塑料株,在40,000次循环后的修剪边缘下方的2.5℃下增加2.9升至55次。进行估计剪切受影响区(SAZ)中的局部流量应力的微硬度测试表明,在80,000th修剪部分中的修剪循环的数量增加了4.5μm的距离下的4.5μm的流量应力增加了1.73GPa 。

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