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Analysis of fracture in sheet bending and roll forming

机译:薄片弯曲骨折分析和成型

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The bending limit or minimum bending radius of sheet metal is conventionally measured in a wiping (swing arm) or in a vee bend test and reported as the minimum radius of the tool over which the sheet can be bent without fracture. Frequently the material kinks while bending so that the actual inner bend radius of the sheet metal is smaller than the tool radius giving rise to inaccuracy in these methods. It has been shown in the previous studies that conventional bend test methods may under-estimate formability in bending dominated processes such as roll forming. A new test procedure is proposed here to improve understanding and measurement of fracture in bending and roll forming. In this study, conventional wiping test and vee bend test have been performed on martensitic steel to determine the minimum bend radius. In addition, the vee bend test is performed in an Erichsen sheet metal tester equipped with the GOM Aramis system to enable strain measurement on the outer surface during bending. The strain measurement before the onset of fracture is then used to determine the minimum bend radius. To compare this result with a technological process, a vee channel is roll formed and in-situ strain measurement carried out with the Vialux Autogrid system. The strain distribution at fracture in the roll forming process is compared with that predicted by the conventional bending tests and by the improved process. It is shown that for this forming operation and material, the improved procedure gives a more accurate prediction of fracture.
机译:弯曲极限或金属最小弯曲半径通常在擦拭(摆臂)或Vee弯曲试验中测量,并作为工具的最小半径报告,在没有骨折的情况下弯曲。通常弯曲的材料扭结使得金属板的实际内部弯曲半径小于这些方法中的刀径不准确。已经显示在先前的研究中,传统的弯曲试验方法可以在弯曲主导的过程中估计诸如辊成形的弯曲主导过程中的可成形性。此处提出了一种新的测试程序,以改善弯曲和滚动成形中骨折的理解和测量。在该研究中,已经对马氏体钢进行了常规的擦拭试验和VEE弯曲试验以确定最小弯曲半径。此外,VEE弯曲试验在配备有GOM Aramis系统的Erichsen钣金测试仪中进行,以在弯曲期间能够在外表面上进行应变测量。然后使用裂缝开始前的应变测量来确定最小弯曲半径。要将这一结果与技术过程进行比较,VEE通道是由Vialux自动丛系统进行的滚动而形成的,原位应变测量。将辊成形过程中断裂处的应变分布与通过传统弯曲试验预测的骨折和通过改进的方法进行比较。结果表明,对于这种成形操作和材料,改进的程序给出了更准确的裂缝预测。

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