首页> 外文期刊>MATEC Web of Conferences >Experimental verification of a numerical surface roughness model for metallic bodies under large plastic strain
【24h】

Experimental verification of a numerical surface roughness model for metallic bodies under large plastic strain

机译:大塑性应变下金属物体表面粗糙度数值模型的实验验证

获取原文
           

摘要

The present work describes selected aspects of numerical modelling of the process of bonding metal alloys with consideration for micro-roughness, as well as experimental verification. The plastic-elastic contact between two deformable bodies was investigated in a DEFROM FEM environment, and verified at the test stand. The present paper demonstrates selected results of contact modelling investigated using aluminium-copper samples, in relation to their elastic-plastic range. The real surface profile helped to create a mathematical model of surface roughness measured using a laser microscope. Dependency between a blade of a tool and a feed was used to build a numerical model of roughness based on the arithmetic average value of the roughness profile. The work presents also a process of simplification of real surface roughness for the needs of numerical calculations. The paper investigates an impact of wave roughness at obtained values on effective plastic strain and stress. Additionally, numerical analysis shows a need to enter a new roughness wave correction factor assuming a zero value of the coefficient of friction. This is due to the interaction of metallic surfaces within the plastic contact zone. The obtained results allow the estimation of the impact of surface force interaction expressed by the wave coefficient factor. The experimental verification of numerical calculations allowed the estimation of the actual impact of the micro-cutting process in the entire friction process. Further analysis of obtained results permits the author to explain the surface phenomena occurring during the friction process, such as adhesion or diffusion, and outline the development direction of numerical methods.
机译:本工作描述了考虑微观粗糙度的金属合金粘结过程数值模型的选定方面,以及实验验证。在DEFROM FEM环境中研究了两个可变形体之间的塑性-弹性接触,并在测试台上进行了验证。本文展示了使用铝-铜样品研究的接触模型相对于其弹塑性范围的选定结果。真实的表面轮廓有助于创建使用激光显微镜测量的表面粗糙度的数学模型。使用工具的刀片和进给之间的依赖性来基于粗糙度轮廓的算术平均值建立粗糙度的数值模型。这项工作还提出了一种简化实际表面粗糙度的过程,以满足数值计算的需要。本文研究了在获得的值下波的粗糙度对有效塑性应变和应力的影响。此外,数值分析表明需要输入一个新的粗糙度波校正因子,假设摩擦系数为零。这是由于塑料接触区内金属表面的相互作用。所获得的结果允许估计由波浪系数因子表示的表面力相互作用的影响。通过数值计算的实验验证,可以估算微切削过程在整个摩擦过程中的实际影响。对所得结果的进一步分析使作者能够解释在摩擦过程中发生的表面现象,例如粘附或扩散,并概述了数值方法的发展方向。

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