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Optimization of the design parameters of modified die in hydro-mechanical deep drawing using LS-DYNA

机译:基于LS-DYNA的液压机械拉深改性模具设计参数的优化。

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The use of a modified die enhances the limiting draw ratio compared to that obtainable in a conventional deep drawing operation. Application of these dies, in conventional deep drawing, eliminated the use of blank holder but enhances the tendency of wrinkling in drawn products. In hydro-mechanical deep drawing process, the punch deforms the blank to its final shape by moving against a controlled pressurized fluid. In this paper, a new concept of the application of modified dies in hydro-mechanical deep drawing is presented. The finite element (FE) simulations of a deep-drawing process using modified dies are performed using the 2-D explicit finite element code LS-DYNA, with the aim of optimization of design parameters and the results are compared with the experimental values. The initial design steps in the design of modified die in finite element simulation were taken from the concept of Tractrix die. The use of Tractrix die enhances the draw ratio but simultaneously increases the tendency of wrinkling. In this paper the design parameters of modified Tractrix die for hydro-mechanical deep drawing are optimized for the successful drawing of cups. It is also experimentally verified that by using such modified dies in hydro-mechanical deep drawing, deeper cups are drawn without wrinkling.
机译:与常规深冲操作相比,改进的模具的使用提高了极限拉伸比。这些模具在常规的深冲中的应用消除了毛坯保持器的使用,但是增加了拉拔产品中起皱的趋势。在液压机械深冲过程中,冲头通过逆着受控的加压流体运动,将毛坯变形为最终形状。本文提出了在液压机械深冲中应用改进模具的新概念。使用二维显式有限元代码LS-DYNA进行了使用修改后的模具的深冲过程的有限元(FE)仿真,目的是优化设计参数,并将结果与​​实验值进行比较。从Tractrix模具的概念出发,在有限元模拟中设计改进模具的初始设计步骤。使用Tractrix模具可提高拉伸比,但同时会增加起皱的趋势。在本文中,对用于液压机械深冲的改进型Tractrix模具的设计参数进行了优化,以成功进行杯的拉深。还通过实验证实,通过在液压机械深冲中使用这种改进的模具,可以在不起皱的情况下深冲深杯。

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