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Finite element method-based modeling of bending under tension friction test of deep drawing quality steel sheets

机译:基于有限元方法的弯曲质量钢板张力摩擦试验下的弯曲模型

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Understanding of the effect of the friction on the sheet deformation is a key factor in design and realization of stamping process.Among others,bending under tension friction test simulates the factional phenomena on rounded edge of punch in sheet metal forming operations.In this paper,change of friction coefficient with 1-mm-thick deep drawing quality steel sheet deformation was evaluated using a special tribological simulator which simulates the friction in rounded edge of punch.The results of experimental investigations have been used to verify the results of numerical modeling carried out in MSC.Marc 2014 program.The friction coefficient value and contact stresses have been determined numerically.The results show that the distribution of the normal and friction stresses is very non-uniform along the wrap angle of the cylindrical countersample and along the specimen width.It has been concluded that FEM-based investigations allow a fast and suitable selection of the punch edge profile ensuring an increase of maximum allowable sheet strains.
机译:理解摩擦对片状变形的影响是冲压过程的设计和实现的关键因素。张力摩擦试验下的弯曲摩擦模拟了钣金成型操作的圆形边缘的派系现象。本文,使用特殊的摩擦模拟器评估具有1mm厚的深层拉伸质量钢板变形的摩擦系数的变化,该模拟器模拟冲床圆形边缘的摩擦。实验研究结果已被用于验证执行的数值模拟结果在MSC.MARC 2014程序中。摩擦系数值和接触应力已经在数值上确定。结果表明,沿着圆柱形埋头形的包裹角和沿着样品宽度的包扎角度非常不均匀。已经得出结论,基于FEM的调查允许快速和合适的冲压边缘选择e确保增加最大允许的纸张菌株。

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