求英语帝帮忙solved the stability in discrete time domain, which allowed for inclusion of periodically varying system parameters directly. The remaining research efforts mainly extended applica- tion of the frequency and discrete time domain

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求英语帝帮忙solved the stability in discrete time domain, which allowed for inclusion of periodically varying system parameters directly. The remaining research efforts mainly extended applica- tion of the frequency and discrete time domain
求英语帝帮忙
solved the stability in discrete time domain, which

allowed for inclusion of periodically varying system parameters

directly. The remaining research efforts mainly extended applica-

tion of the frequency and discrete time domain solutions presented

in this paper.

This paper presents frequency and semi-discrete time domain

solutions of the chatter stability proposed by the authors. The zero

order and multi-frequency solutions of milling stability presented

by Altintas and Budak [8] and Budak and Altintas [9] are

summarized. A semi-discrete time domain solution of the milling

´´stability of Stepan and co-workers [10–12] is also presented. A

comparison of the two models and their advantages at different

cutting conditions is presented with simple examples. The paper is

concluded with a summary of the applications of each technique. It

is hoped that the paper provides a comprehensive theoretical

insight into the milling chatter stability to metal cutting

researchers

求英语帝帮忙solved the stability in discrete time domain, which allowed for inclusion of periodically varying system parameters directly. The remaining research efforts mainly extended applica- tion of the frequency and discrete time domain
在离散时间域求解的稳定性,这允许的周期性变化的系统参数,包括直接.其余的研究工作主要的扩展应用—对频率和离散时间域的解决方案在本文介绍了频率和半离散时间域作者提出的颤振稳定性的解决方案.零秩序和铣削稳定性提出了多频解决方案通过学校和布达克[ 8 ]和[ 9 ]是布达克和Altintas总结了.一个半离散时域解的铣削斯特潘和同事´´稳定性[ 12 ] 10–也提出.一个在不同的两个模型及其比较优势,切削条件给出了简单的例子.纸类结论与每种技术的应用综述.它希望本文的综合理论提供了洞察的铣削颤振稳定性的金属切削的研究人员.