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首页> 外文期刊>International Journal of Machine Tools & Manufacture: Design, research and application >Development of a micro/meso-tool clamp using a shape memory alloy for applications in micro-spindle units
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Development of a micro/meso-tool clamp using a shape memory alloy for applications in micro-spindle units

机译:使用形状记忆合金开发用于微主轴单元的微/介工具夹具

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In developing micro-spindle units, a critical problem is miniaturization of the tool clamp. Approaches for scaling down conventional tool clamps, such as the collet-chuck, hydraulic chuck, and shrink-fit methods may be limited by their inherently complicated mechanisms. This study developed a novel tool clamp based on shape memory alloy (SMA), which allows further miniaturization. The tool clamp can be simplified by using an SMA ring, which is all that is needed for clamping. The SMA-based tool clamp does not require any collet, and its structural configuration is axisymmetric. Furthermore, the SMA makes it possible to switch between the clamped and undamped states by using a simple device to regulate small changes in temperature. This paper first describes the operating principle of the SMA-based tool clamp. Second, it presents the finite element method (FEM) analyses that were conducted to investigate the characteristics of the clamping/unclamping operations and the effect of centrifugal force. Third, it describes a prototype of the SMA-based tool clamp, which was designed and built for applications in micro-spindle units. Fourth, it presents an evaluation of the time needed for the clamping/unclamping operations and the tool-damping force, which were both evaluated experimentally. Finally, it describes a mill-machining test conducted with the prototype, which confirmed that the tool clamp is little affected by centrifugal force at high rotational speeds. The experimental results confirm that the proposed SMA-based tool damp can be successfully applied to micro-machining.
机译:在开发微主轴单元中,关键问题是工具夹具的小型化。缩小常规工具夹具的方法,例如筒夹夹头,液压夹头和热套方法,可能会受到其固有的复杂机制的限制。这项研究开发了一种基于形状记忆合金(SMA)的新型工具夹具,可以进一步小型化。可以通过使用SMA环简化工具夹紧,这是夹紧所需要的。基于SMA的工具夹不需要任何夹头,并且其结构配置是轴对称的。此外,SMA可以通过使用简单的装置来调节温度的小变化,从而在夹紧状态和非阻尼状态之间切换。本文首先介绍了基于SMA的工具夹的工作原理。其次,本文介绍了有限元方法(FEM)分析,以分析夹紧/松开操作的特性以及离心力的影响。第三,它描述了基于SMA的工具夹具的原型,该工具夹具是为微主轴单元中的应用而设计和制造的。第四,它提供了对夹紧/松开操作所需时间和工具阻尼力的评估,这两个都是通过实验评估的。最后,它描述了使用原型进行的铣削加工测试,该测试证实了在高速旋转时,刀具夹具几乎不受离心力的影响。实验结果证实,所提出的基于SMA的工具阻尼可以成功地应用于微加工。

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