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Prediction of the limiting redrawing ratio

机译:预测限制重氮比率

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摘要

Redrawing process is used for reducing the lateral dimensions and increasing the depth of the cylinder cup,which was formed by deep drawing.To determine the optimum values of the process parameters,it is necessaiy to know the redrawability.In this paper,a new mathematical mode is established to predict the limiting redrawing ratio(LDR).which is based on Hill's anisotropic criteria,tensile instability in the cup wall and sheet bending/unbending theory around the die arc radius.The maximum and minimum thickness ratio(t_(max)/t_(min))of cup wall and friction effect were considered in the model.The calculation from the model is in good agreement with the results of finite element simulation,and also was confirmed by the experiments of commercially pure titanium(TA1)cup redrawing processing.The effects of various material properties,friction coefficient u,radius of the die arc rd,half die cone anger a,half die opening ro,cup maximum thickness t_(max),cup thickness ration t_(max)/t_(min in have been discussed to understand and control redrawing process for improving redrawablity.
机译:重新扫描过程用于减小横向尺寸并增加通过深拉形成的气缸杯的深度。要确定工艺参数的最佳值,所以知道重新定向。在本文中,新的数学建立模式以预测限制重氮比率(LDR)。根据山墙和围绕管芯半径周围的杯壁和薄片弯曲/不弯曲理论的拉伸不稳定性基于山的各向异性标准。最大和最小厚度比(T_(MAX)在模型中考虑了杯壁和摩擦效应的/ t_(min))。该模型的计算与有限元模拟的结果吻合良好,并且还通过商业上纯钛(TA1)杯的实验证实重新绘制处理。各种材料特性,摩擦系数U,模具的半径,半导体锥怒,半管锥,杯子最大厚度T_(MAX),杯厚度率T_(MAX)/ T_(在H.已经讨论了理解和控制改进RedraWablity的重绘过程。

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