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Piezoelectric transducer based devices for development of a sustainable machining system - A review

机译:基于压电换能器的设备,用于开发可持续的加工系统-评论

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Sustainability in production is to develop a system that reduces usage of resources for converting raw material into useful product; Moreover, it could produce waste that can be directly used by another production system. Intentionally inducing vibration to make machining system sustainable started from the work of Kumabe. Based on the direction of modulation with respect to workpiece motion three distinct effective conditions develop, Vibration Assisted Machining (VAM) by inducing low amplitude and high frequency vibration in cutting velocity direction, Modulation Assisted Machining (MAM) by inducing high amplitude and low frequency vibration in tool feed direction and Elliptical Vibration Assisted Machining (EVAM) by inducing low amplitude and high frequency vibration both in tool feed and cutting velocity direction. For superimposing vibration to tool motion in VAM, EVAM and MAM systems, the piezoelectric transducer device based tool holder attachments have been used. Imposing of oscillation by piezoelectric actuators in machining reduces the machining forces and burr suppression, which decreases energy consumption and hence makes system energy efficient. MAM can produce chips of required shape and size distribution which can be used by another production system without any pre-processing. Vibration in machining also helps to increase the tool life and reduce overall cost of production; it also helps in improving tool chip contact conditions so as to improve surface finish. This paper presents a review of these technologies with the help of a survey of the studies conducted in this direction.
机译:生产的可持续性是要开发一种系统,以减少将原材料转化为有用产品所需的资源;而且,它可能产生可被其他生产系统直接使用的废物。从熊部的工作开始,有意地引起振动以使加工系统可持续。根据相对于工件运动的调制方向,开发了三个不同的有效条件:在切削速度方向上引起低振幅和高频振动的振动辅助加工(VAM),通过引起高振幅和低频振动的调制辅助加工(MAM)通过在刀具进给和切削速度方向上产生低振幅和高频振动,在刀具进给方向和椭圆振动辅助加工(EVAM)上实现最佳的加工效果。为了将振动叠加到VAM,EVAM和MAM系统中的刀具运动上,已经使用了基于压电换能器设备的刀架附件。压电致动器在加工中施加振动会降低加工力和毛刺抑制,从而降低能耗,从而提高系统能效。 MAM可以生产所需形状和尺寸分布的切屑,这些切屑可以在不进行任何预处理的情况下由另一个生产系统使用。加工中的振动还有助于延长刀具寿命并降低整体生产成本。它还有助于改善工具芯片的接触条件,从而改善表面光洁度。本文在对此方向进行的研究调查的帮助下,对这些技术进行了介绍。

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