首页> 外文期刊>JSME International Journal. Series A, Solid mechanics and material engineering >Determination of the Optimum Blank Shape When Deep Drawing Nonaxisymmetric Cups, Using a Finite-Element Method (Simplified Determination of Optimum Blank Shape and Limiting Drawing Ratio by Inverse Finite-Element Procedure)
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Determination of the Optimum Blank Shape When Deep Drawing Nonaxisymmetric Cups, Using a Finite-Element Method (Simplified Determination of Optimum Blank Shape and Limiting Drawing Ratio by Inverse Finite-Element Procedure)

机译:用有限元方法确定深拉非轴对称杯时的最佳毛坯形状(通过逆有限元法简化确定最佳毛坯形状和极限拉深比)

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摘要

The article is concerned with blank development when deep drawing nonaxisym-metric, prismatic cups with a flat bottomed punch. Two processes are considered, one of which is the calculation of optimum blank shapes when deep drawing square cups ; here "optimum" means that the cups have essentially a flat top after the drawing process. The second process is to design a blank such that the finished component is a partially drawn cylindrical cup possessing a square flange of some specified dimensions. An inverse finite-element technique was developed to perform the analysis for calculating the blank shapes. In addition to blank shapes, it was possible to predict the limiting drawing ratios, the maximum draw depth and the drawing load. Although the entire drawing process is not modeled, it is possible to assess the influence of certain processing parameters such as blank shape, the coefficient of friction, blank holder force, and die radius on the drawing force and limiting drawing ratio. Some of the theoretical predictions for the limiting blank size in deep drawing square cups from optimum-shaped blanks are compared with published data, and the agreement is found to be reasonable.
机译:本文涉及深冲非轴对称棱柱形杯子并带有平底冲头时的空白发展。考虑了两个过程,其中一个是深拉方杯时最佳坯料形状的计算;这里的“最佳”是指在拉伸过程之后,杯子的顶部基本上是平坦的。第二种方法是设计坯件,使制成的零件是部分拉制的圆柱杯,该杯具有一些特定尺寸的方形凸缘。开发了一种逆有限元技术来进行计算毛坯形状的分析。除毛坯形状外,还可以预测极限拉伸比,最大拉伸深度和拉伸载荷。尽管未对整个拉拔过程进行建模,但可以评估某些加工参数(例如毛坯形状,摩擦系数,毛坯支座力和模具半径)对拉拔力和极限拉拔比的影响。从最佳形状的毛坯中得出的关于深拉方杯中毛坯极限尺寸的一些理论预测与公开的数据进行了比较,并且发现一致性是合理的。

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