首页> 外文期刊>Mechanics of materials >Effect of natural boundary condition and the neutral surface of nonlinear type on the upper-bound solution to upset forging of rings using a variational approach
【24h】

Effect of natural boundary condition and the neutral surface of nonlinear type on the upper-bound solution to upset forging of rings using a variational approach

机译:自然边界条件和非线性类型的中性面对变分法环锻造的上限解的影响

获取原文
获取原文并翻译 | 示例
       

摘要

The purpose of this work is to investigate the effect of natural boundary condition and the type of neutral surface on the upper-bound solutions using a variational approach. To this end, the neutral surface of the upset ring was considered a function of polynomials of various orders during deformation process, and then an upper-bound forming energy equation was formulated in terms of the function as well as the velocity field derived from the theory of stream function. Since the velocity field had been expressed in terms of an implicit stream function before the upper-bound forming energy equation J was established, a variational approach was fulfilled to determine an upper-bound solution by extremizing J. As a result, a set of boundary conditions was derived mathematically. To determine the upper-bound solution, the derived boundary conditions, which include the so-called natural boundary conditions and kinematically boundary conditions, were imposed in an optimization procedure. Such a method we have proposed to determine the solution is particularly termed the variational upper-bound (VUB) method in order to distinguish it from the traditional upper-bound (UB) method, which usually ignores the natural boundary condition perceptibly unobtainable. The natural boundary condition can be physically interpreted as to constrain plastic flow of the upset ring at frictional interfaces. However, in order to investigate the effect of the type of neutral surface on upper-bound solutions, a polynomial that may result in the neutral surface of nonlinear type was proposed. By comparing with some experimental results, it is found that the VUB method has considerably improved on the UB method in predicting the calibration curves, the bulged profiles of upset ring and disks, and the forming energy. The result presented in this work also demonstrates that the effect of the natural boundary condition is much more pronounced than that of the type of neutral surface used on improving the upper-bound solution. While keeping the same number of free parameters left for the purpose of minimization procedure, the VUB method is permitted to establish an approximate solution of higher order than the UB method, because it additionally satisfies the natural boundary condition derived in this work. The finite element solution determined using MARC, a commercial software package, is also presented in this work for discussion.
机译:这项工作的目的是使用变分方法研究自然边界条件和中性表面类型对上限解的影响。为此,在变形过程中,将set粗环的中性面视为各种阶次多项式的函数,然后根据该函数以及从理论推导出的速度场,建立了上限成形能方程。流功能。由于在建立上限能量方程J之前已经用隐式流函数表示了速度场,因此采用了变分方法,通过对J进行极值化来确定上限解。结果,形成了一组边界条件是通过数学得出的。为了确定上限解,在优化过程中强加了导出的边界条件,其中包括所谓的自然边界条件和运动学边界条件。为了将其与传统的上限(UB)方法区分开来,我们提议的用于确定解的这种方法特别称为变分上限(VUB)方法,后者通常会忽略无法获得的自然边界条件。自然边界条件可以从物理上解释为在摩擦界面上约束the粗环的塑性流动。但是,为了研究中性表面类型对上限解的影响,提出了一种可能导致非线性类型的中性表面的多项式。通过与一些实验结果进行比较,发现VUB方法在预测校准曲线,up锻环和圆盘的凸出轮廓以及成形能量方面比UB方法有了很大的改进。这项工作提出的结果还表明,自然边界条件的影响比用于改善上限解的中性表面类型的影响要明显得多。在保持最小数量的自由参数数量的同时,允许VUB方法建立比UB方法更高阶的近似解,因为它还满足了这项工作中得出的自然边界条件。使用MARC(一种商用软件包)确定的有限元解决方案也将在本文中进行讨论。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号