通过设计关节接口的机电刀架控制铣削过程动力学

Constantinos Frangoudis, Tomas Osterlind, A. Rashid
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引用次数: 2

摘要

机床接头对机床的动态特性有重要影响,因此对加工系统对切削过程激励的响应也有重要影响。在不稳定响应的情况下,通常被描述为颤振,加工工件的表面质量和刀具寿命显著恶化。本文提出了在机床中集成一个机电刀柄(关节接口模块- JIM),以控制系统的动态响应。该系统有一个专门设计的关节接口,具有可控的自然特性(刚度和阻尼)。这些特性可以通过改变刀柄内部连接界面上施加的预紧力来控制。接头界面上的预紧力由气动方式控制。这样,在不改变工艺参数的情况下,超过稳定性极限的铣削过程在加工过程中变得稳定。
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Control of milling process dynamics through a mechatronic tool holder with purposely designed Joint Interface
Machine tool joints have significant influence on the dynamic characteristics of the machine tool and therefore on the response of the machining system to excitations from the cutting process. In cases of unstable response, generally described as chatter, surface quality of a machined work-piece and tool life deteriorate significantly. This paper presents a novel way of exploiting joints in order to control the dynamic response of the system, by integrating a mechatronic tool holder (Joint Interface Module - JIM) in the machine tool. This system has a purposely designed joint interface with controllable natural characteristics (stiffness and damping). These characteristics are controlled by altering the applied preload on the internal joint interface of the tool holder. The preload on the joint interface is controlled by pneumatic means. In doing so, a milling process during which the stability limit was exceeded became stable during the machining process, without alteration of the process parameters.
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