Study on Method for Avoiding Chatter Vibration by Changing Machine Tool Rigidity

Akio Hayashi, Okitoshi Shibata, Y. Morimoto
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Abstract

Chatter vibration is a major problem in machining. At present, chatter vibration is avoided by changing the cutting conditions based on the stability limit diagram such that chatter vibration does not occur. However, changing the cutting conditions may reduce the productivity. The stability limit is estimated from the relationship between the dynamic characteristics of the machine tool and the cutting conditions. Therefore, we propose a method for avoiding chatter vibration by changing the machine tool rigidity. The dynamic characteristics of a desktop milling machine tool developed in a previous study can be changed by changing the tensile load of the brace bar attached on the frame. We report the transition of the dynamic characteristics and stability limit diagram with changes in the rigidity of the desktop machine tool, and confirm the presence or absence of chatter vibration through machining tests.
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改变机床刚度避免颤振的方法研究
颤振是机械加工中的一个主要问题。目前,通过根据稳定性极限图改变切削条件,使其不产生颤振来避免颤振。然而,改变切削条件可能会降低生产率。根据机床的动态特性与切削条件之间的关系,估计出机床的稳定性极限。因此,我们提出了一种通过改变机床刚度来避免颤振的方法。通过改变连接在机架上的支撑杆的拉伸载荷,可以改变台式铣床的动态特性。报告了台式机床的动态特性和稳定性极限图随刚度变化的变化,并通过加工试验确认了是否存在颤振。
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