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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part B. Journal of engineering manufacture >Parameter study of the axisymmetric hydromechanical deep drawing process
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Parameter study of the axisymmetric hydromechanical deep drawing process

机译:轴对称水力机械深冲过程的参数研究

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In this paper, hydromechanical deep drawing and the effect of process parameters on the process have been studied using the finite element (FE) method. In order to verify the results of FE simulations, a study has also been carried out using experimental tooling. Numerical results indicate a working zone with a maximum chamber pressure in which the maximum limit drawing ratio (LDR) can be achieved and where the effect of chamber pressure on the process can be shown. Also, the effect of parameters such as initial chamber pressure, die profile radius, blank thickness, and friction effect has been investigated. It is shown that initial chamber pressure has an optimum value in which the maximum LDR can be achieved. Increasing the die profile radius increases the LDR at lower chamber pressures but has no marked effect at higher pressures. The numerical result also shows that increasing the friction between blank and die or blank and blank-holder decreases the LDR value, while increasing the friction between blank and punch increases the LDR value.
机译:本文利用有限元(FE)方法研究了水力机械深冲以及工艺参数对工艺的影响。为了验证有限元模拟的结果,还使用实验工具进行了研究。数值结果表明,具有最大腔室压力的工作区域可以达到最大极限拉伸比(LDR),并且可以显示腔室压力对过程的影响。此外,还研究了诸如初始腔压力,模具轮廓半径,毛坯厚度和摩擦效果等参数的影响。结果表明,初始腔室压力具有可实现最大LDR的最佳值。模具轮廓半径的增加会在较低的腔室压力下增加LDR,但在较高的压力下没有明显的作用。数值结果还表明,增加毛坯与模具之间或毛坯与毛坯夹持器之间的摩擦会降低LDR值,而增加毛坯与冲头之间的摩擦则会增加LDR值。

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