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Effect of shearing clearance and angle on stretch-flange formability evaluated by saddle-type forming test

机译:通过鞍型成形试验评估剪切间隙和角度对拉伸凸缘成形性的影响

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In this study, the effects of shearing clearance and shearing angle on stretch-flange formability are investigated. The saddle-type forming test is adopted for this investigation. A notch-type shearing line, which comprises straight and circular arcs, is used for this test. The results show that stretch-flange formability is improved in narrow clearances. This tendency is different from that obtained by the hole expansion test, wherein stretch-flange formability is improved in large clearances. This improvement might be caused by the increase in the area of the fractured surface in narrow clearances. Generally, the larger the fractured surface, the smaller the work hardening on a sheared edge. Furthermore, the investigation reveals the existence of an optimum shearing angle for excellent stretch-flange formability. FE simulation shows that the optimum shearing angle increases hydrostatic stress in materials during shearing. Compressive stress across the material thickness is mainly affected by shearing angle. The result of the analysis suggests that the optimum shearing angle increases the area of the fractured surface to improve stretch-flange formability. (C) 2015 Elsevier B.V. All rights reserved.
机译:在这项研究中,研究了剪切间隙和剪切角对拉伸凸缘成形性的影响。本研究采用鞍型成型试验。该测试使用由直圆弧和圆弧组成的切口型剪切线。结果表明,在较小的间隙中,可改善拉伸凸缘的可成型性。该趋势与通过扩孔试验获得的趋势不同,在扩孔试验中,拉伸凸缘的可成形性在大间隙中得到改善。这种改善可能是由于狭窄间隙中断裂表面的面积增加所致。通常,断裂表面越大,在剪切边缘上的加工硬化越小。此外,研究表明存在最佳剪切角,以实现出色的拉伸凸缘可成型性。有限元模拟表明,最佳剪切角会增加材料在剪切过程中的静水压力。整个材料厚度上的压应力主要受剪切角的影响。分析结果表明,最佳剪切角增加了断裂表面的面积,从而改善了拉伸凸缘的可成形性。 (C)2015 Elsevier B.V.保留所有权利。

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