首页> 外文会议>ASME International Manufacturing Science and Engineering Conference >TRIBOLOGICAL INVESTIGATION OF DEEP-DRAWING PROCESSES USING SERVO PRESSES
【24h】

TRIBOLOGICAL INVESTIGATION OF DEEP-DRAWING PROCESSES USING SERVO PRESSES

机译:伺服压力机深拉工艺的摩擦学研究

获取原文

摘要

Deep-drawing is one of the most important processes for the economic production of sheet metal parts, especially for high quantities. The forming forces during the process are a limiting factor for the producible shapes. A particular importance is associated with the tribology, because the percentage of friction forces on the total forces is relatively high. The friction between sheet metal and tool is influenced by several factors, such as surface characteristics of the work piece and the tool, lubrication conditions and process parameters, like the contact pressure and the sliding speed. Controlling these parameters will expand the process window for deep-drawing. Lately, servo presses provide the possibility of controlling the process speed in dependency of the process progress. The subject of this paper is the tribological investigation of deep-drawing processes. The friction coefficient decreases with an increasing sliding speed. Investigating this correlation and utilizing it for the application with modem servo technology for industrial use is the main objective of the presented research works. First of all the dependency of the friction coefficient on the sliding speed is investigated by the use of the strip drawing tests, which allows the control of every parameter independently. The dependencies are implemented in a FEM-simulation, evaluating the potential for real deep-drawing processes. Deep-drawing experiments are then used to validate the results of the simulation with a speed-dependent friction coefficient as well as for the verification of the force reduction due to the influencing of process speed. In the end, the numerical simulated results in comparisons to the experimental measured results are discussed.
机译:深绘是金属板零件经济生产的最重要工艺之一,尤其是高量。该方法期间的成形力是可生产形状的限制因素。特定重要性与摩擦学有关,因为总力上的摩擦力百分比相对较高。金属板和工具之间的摩擦受到若干因素的影响,例如工件的表面特性以及工具,润滑条件和工艺参数,如接触压力和滑动速度。控制这些参数将扩展深图的过程窗口。最近,伺服压力机提供了在过程进展方面控制过程速度的可能性。本文的主题是深拉工艺的摩擦学调查。摩擦系数随着滑动速度的增加而降低。调查这种相关性并利用它对Modem伺服技术进行工业使用的应用是本研究作品的主要目标。首先通过使用条带绘图测试来研究摩擦系数对滑动速度的依赖性,这允许独立地控制每个参数。依赖关系在FEM模拟中实现,评估真实深图过程的可能性。然后,使用深绘制实验来验证模拟的结果,速度依赖性摩擦系数以及由于流程速度的影响而验证力减少。最后,讨论了对实验测量结果的比较的数值模拟结果。

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