首页> 外文期刊>International Journal of Recent Contributions from Engineering, Science & IT >Chatter Investigation on Machining of Gray Cast Iron Considering the Damping Effect
【24h】

Chatter Investigation on Machining of Gray Cast Iron Considering the Damping Effect

机译:考虑阻尼效应的灰色铸铁加工的喋喋不休调查

获取原文
       

摘要

In recent years, the study of chatter vibrations has been intensifying in the machining of materials. In this paper an investigation of this phenomena was conducted for gray cast iron (CGI). The chatter vibrations in machining process can considerably compromise the workpiece surface finish, tool wear and in some cases provide severe damage to the machine-tool. Thus there is an imminent need to expand the theory of chatter vibrations for the class of brittle materials. To analyze the vibrations of the process of machining and zones where the process is stable, and where it is unstable, the stability lobes diagram was used. This diagram is constructed at low speed cutting, where the phenomenon of damping arises. The damping is a crucial factor in the process, it increases system stability. This effect was considered in the formulation of chatter vibrations using the indentation model of Wu. For experimental validations the signals of cutting force were acquired and analysis was conducted in frequency domain to identify where the vibrations emerged allied with a roughness analysis of the workpiece. The results demonstrated perfectly the consequences of chatter vibrations in surface finish of grey cast iron and proved that the stability lobes diagram provides good results to detect these vibrations, determining the areas where the material removal should be avoid.
机译:近年来,在材料加工中,对颤振振动的研究已经增强。本文对灰铸铁(CGI)进行了对该现象的研究。加工过程中的颤振振动可以大大损害工件表面光洁度,工具磨损,并且在某些情况下为机器工具提供严重损坏。因此,迫在眉睫需要扩大脆性材料类的颤振振动理论。为了分析加工和该过程稳定的区域的振动,并且在不稳定的情况下,使用稳定性裂片图。该图以低速切割构造,其中抑制的现象产生。阻尼是该过程中的关键因素,提高了系统稳定性。在使用吴缩进模型的抗抖动振动的制定中考虑了这种效果。对于实验验证,获取切割力的信号,并在频域中进行分析,以识别出现振动的振动,其粗糙度分析的工件的粗糙度分析。结果表明了灰铸铁表面光洁度在颤动振动的后果,并证明了稳定性裂片图提供了良好的结果来检测这些振动,确定应避免材料去除的区域。

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