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Study on the twist compression forming of cylinder based on the upper bound and slab methods

机译:基于上限和平板方法的圆柱体扭转压缩成形研究

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摘要

In this work, slab method and upper bound method are proposed to investigate the twist compression forming of cylinder. Both upper bound method and slab method assume the friction between the cylinder and the die as constant shear friction (tau = mk). The total power rate of the energy consumption with a 3D velocity field based on the upper bound method is constructed. An optimum variable parameter is obtained by using the energy minimization method. The upper and lower dies are rotated in different directions, so the cylinder is compressed with the twist circumstance, and the frictional shear stresses (tau) are not acted in the radial direction. The stresses (tau) are acted in an arbitrary direction at angle alpha from the radial direction relative to the r-axis. According to the velocity relations between radial direction and circumferential direction, angle (can be determined. Combining the upper bound method with the slab method, the effects of frictional factor, aspect ratio, height reduction, and angular velocity etc on the twist compression forming characteristics are explored effectively. The feasibility of both models can be realized by comparisons of two models and the experiments.
机译:在这项工作中,提出了平板法和上限法来研究圆柱体的扭转压缩成形。上限方法和平板方法都将圆柱体和模具之间的摩擦假定为恒定剪切摩擦(tau = mk)。基于上限方法,构造具有3D速度场的能耗的总功率率。通过使用能量最小化方法获得最佳可变参数。上模具和下模具在不同的方向上旋转,因此圆柱体在扭曲的情况下被压缩,并且摩擦切应力(tau)在径向上不起作用。应力(tau)在相对于r轴的径向方向与角度成α方向的任意方向上作用。根据径向与圆周方向之间的速度关系,可以确定角度(将上限方法与平板方法结合起来)。摩擦系数,纵横比,高度减小和角速度等因素对扭曲压缩成形特性的影响通过两个模型的比较和实验,可以实现两个模型的可行性。

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