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Electromagnetic Actuator for Determining Frequency Response Functions of Dynamic Modal Testing on Milling Tooludud

机译:确定铣刀动态模态测试频率响应函数的电磁执行器 ud ud

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摘要

Machine tools are the main driving forces of industrialization of a country. However, poor machinability because of chatter vibration results in poor surface quality, excessive noise, and reduced material removal rate. Modal testing is a useful method to investigate dynamic properties of a cutting tool system and improve material removal rate. However, at present, modal testing using impact hammer is limited by certain problems. This paper developed a non-contacting electromagnetic actuator (EMA) to determine frequency response functions (FRFs) under amplitude and speed dependencies of cutting milling tools. The geometry was designed using magnetic circuit analysis and generalized machined theory before finite element analysis was conducted using magnetostatic-ansys software. Next, EMA was used as a contacting and non-contacting exciter of a conventional milling machine to determine the FRFs and dynamic properties of milling tool with amplitude and speed dependencies including comparison with static FRFs. Subsequently, dynamic properties and FRFs are used to establish stability lobe diagram. Stability lobe diagram also shows an improvement of up to 5% of depth of cut at lower spindle speed. In conclusion, by generating force that applies to static and dynamic modal testing, an EMA can determine dynamic properties and stability lobe diagram for increasing material removal rate and production rate.
机译:机床是一个国家工业化的主要动力。但是,由于颤振而导致的可加工性差会导致表面质量差,产生过多的噪音并降低材料去除率。模态测试是研究切削工具系统动态特性并提高材料去除率的有用方法。但是,目前,使用冲击锤的模态测试受到某些问题的限制。本文开发了一种非接触式电磁执行器(EMA),用于在切削铣刀的振幅和速度依赖性下确定频率响应函数(FRF)。在使用静磁-ansys软件进行有限元分析之前,使用磁路分析和广义机加工理论设计几何形状。接下来,EMA被用作传统铣床的接触式和非接触式激励器,以确定FRF和铣削刀具的动态特性,其振幅和速度相关性,包括与静态FRF的比较。随后,动态特性和FRF用于建立稳定性凸耳图。稳定性凸角图还显示了在较低的主轴转速下切削深度最多可提高5%。总之,通过产生适用于静态和动态模态测试的力,EMA可以确定动态特性和稳定性波瓣图,从而提高材料去除率和生产率。

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    Norlida Jamil; A. R. Yusoff;

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  • 年度 2016
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