首页> 外文期刊>Procedia Manufacturing >On the Friction Conditions in FEM Simulations of Cold Extrusion
【24h】

On the Friction Conditions in FEM Simulations of Cold Extrusion

机译:关于冷挤压有限元模拟的摩擦条件

获取原文
           

摘要

Friction is a very important issue for calculating the punch force and energy consumption in cold extrusion. FEM simulations are commonly used to investigate this process, but the choice of the friction’s model and set-up parameter have influence on the results. In this work FEM simulations of cold forward extrusion of rods were performed using the commercial code DEFORMTMin axisymmetric 2D deformation mode with Lagrangian formulation considering Tresca’s friction model and two parameters as set-up: constant friction factormor constant frictional shear stress τ. Over the deformation stages of the process, the influence of the friction parameters on the simulated force-displacement curves was analyzed. In addition, metal flow prediction and the profile of the actual frictional stress at the billet-container interface were studied. For the investigated tooling geometry and dimensions, it was found that for low levels of friction (m≤ 0.1), both parameters can be suitably used to study the forming process, since they provided similar force-displacement curves and metal flow prediction. For higher levels of friction, the use of □ as input provided most stable and reliable results, since in this case, the simulated force-displacement curves agreed very well with experimental result, the effective frictional stresses values were more constant, and the relative frictional stresses resulted closest to the input value.
机译:摩擦是计算冷挤压中的冲击力和能量消耗的一个非常重要的问题。有限元模拟通常用于调查该过程,但摩擦模型和设置参数的选择对结果有影响。在这项工作中,使用商业代码Deformtmin轴对称2D变形模式与拉格朗日配方考虑Tresca的摩擦模型和作为设置的两个参数进行了FEM模拟,如图所示:恒定摩擦方位恒定摩擦剪切应力τ。在该过程的变形阶段,分析了摩擦参数对模拟力 - 位移曲线的影响。另外,研究了坯料容器界面处的金属流动预测和实际摩擦应力的轮廓。对于调查的工具几何形状和尺寸,发现对于低水平的摩擦(m≤0.1),可以适当地使用两个参数来研究成形过程,因为它们提供了类似的力 - 位移曲线和金属流动预测。对于更高水平的摩擦,使用□作为输入提供最稳定且可靠的结果,因为在这种情况下,模拟力 - 位移曲线与实验结果非常好,有效的摩擦力值更加恒定,相对摩擦力应力导致最接近输入值。

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