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Investigation on blanking of thin sheet metal using the ductile fracture criterion and its experimental verification

机译:韧性断裂准则下薄板冲裁的研究及实验验证

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摘要

Blanking operation is widely used to cut sheet or plates by a shearing process between punch and die. The process of shearing and the conditions of the sheared surface are influenced by the punch, the die, the speed of punching, the lubrication, the clearance between the punch and the die, and the properties of the workpiece material. This study investigates the blanking operation of very thin sheet metals like membranes, which are used for lithium-polymer battery containers of cellular phones. The punch-die clearance and radius for a given sheet material and thickness are examined, using the finite element technique and Cockroft and Latham's fracture criterion. This criterion successfully applied to a variety of loading situations, is used in the present investigation to estimate fracture locations during the deformation process. The shearing mechanism is studied by simulating the blanking operation of an aluminum foil and a copper foil. The numerical predictions are compared with the experimental results.
机译:冲裁操作被广泛用于通过冲头和模具之间的剪切过程来切割板或板。剪切的过程和剪切表面的条件受冲头,模具,冲孔速度,润滑,冲头和模具之间的间隙以及工件材料的性能影响。这项研究调查了用于手机的锂聚合物电池容器的超薄金属片(如薄膜)的落料操作。使用有限元技术以及Cockroft和Latham的断裂准则,检查了给定板材和厚度的冲模间隙和半径。该标准已成功应用于各种加载情况,在本研究中用于估计变形过程中的裂缝位置。通过模拟铝箔和铜箔的落料操作来研究剪切机理。将数值预测与实验结果进行了比较。

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