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Analytical model for the expansion of tubes under tension

机译:张力作用下管材膨胀的解析模型

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This paper focuses on the expansion of metallic tubes subjected to large radial and circumferential plastic deformations. This process can be achieved by driving rigid conical mandrels of various diameters through them either mechanically or hydraulically in order to obtain desirable expansion ratios. A mathematical model was developed to predict the stress field in the expanded zone, the drawing force required for expansion, and the resulting dissipated energy from which optimum mandrel shapes were obtained. A finite element analysis was used to validate the theoretical results. A good agreement was obtained in terms of drawing force and dissipated energy for different geometric constraints and friction coefficients. The study showed that the optimum mandrel angle ranges between 22 and 25 degrees for low friction and increases non-linearly when friction increases.
机译:本文重点研究承受较大径向和周向塑性变形的金属管的膨胀。该过程可以通过机械地或液压地驱动各种直径的刚性圆锥形心轴穿过它们,以获得所需的膨胀比来实现。建立了数学模型,以预测扩展区域中的应力场,扩展所需的拉力以及由此产生的耗散能量,从而从中获得最佳心轴形状。有限元分析被用来验证理论结果。对于不同的几何约束和摩擦系数,在拉力和耗散能量方面获得了很好的协议。研究表明,低摩擦力的最佳心轴角范围在22至25度之间,当摩擦力增加时,其非线性地增加。

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