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Vibration Damping Analysis of Lightweight Structures in Machine Tools

机译:机床轻量化结构的振动阻尼分析

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摘要

The dynamic behaviour of a machine tool (MT) directly influences the machining performance. The adoption of lightweight structures may reduce the effects of undesired vibrations and increase the workpiece quality. This paper aims to present and compare a set of hybrid materials that may be excellent candidates to fabricate the MT moving parts. The selected materials have high dynamic characteristics and capacity to dampen mechanical vibrations. In this way, starting from the kinematic model of a milling machine, this study evaluates a number of prototypes made of Al foam sandwiches (AFS), Al corrugated sandwiches (ACS) and composite materials reinforced by carbon fibres (CFRP). These prototypes represented the Z-axis ram of a commercial milling machine. The static and dynamical properties have been analysed by using both finite element (FE) simulations and experimental tests. The obtained results show that the proposed structures may be a valid alternative to the conventional materials of MT moving parts, increasing machining performance. In particular, the AFS prototype highlighted a damping ratio that is 20 times greater than a conventional ram (e.g., steel). Its application is particularly suitable to minimize unwanted oscillations during high-speed finishing operations. The results also show that the CFRP structure guarantees high stiffness with a weight reduced by 48.5%, suggesting effective applications in roughing operations, saving MT energy consumption. The ACS structure has a good trade-off between stiffness and damping and may represent a further alternative, if correctly evaluated.
机译:机床(MT)的动态行为直接影响加工性能。采用轻质结构可以减少不希望的振动的影响并提高工件质量。本文旨在介绍和比较一组混合材料,这些材料可能是制造MT运动部件的最佳选择。选定的材料具有很高的动态特性,并具有减弱机械振动的能力。通过这种方式,从铣床的运动学模型出发,本研究评估了许多由铝泡沫三明治(AFS),铝波纹三明治(ACS)和碳纤维增强复合材料(CFRP)制成的原型。这些原型代表了商用铣床的Z轴撞锤。静态和动态特性已通过使用有限元(FE)模拟和实验测试进行了分析。获得的结果表明,所提出的结构可能是MT运动部件常规材料的有效替代品,从而提高了加工性能。尤其是AFS原型机强调的阻尼比是传统闸板(例如钢)的20倍。它的应用特别适合于在高速精加工操作中最大程度地减少不必要的振荡。结果还表明,CFRP结构可确保较高的刚度,重量减少了48.5%,表明可有效应用于粗加工中,从而节省MT能耗。 ACS结构在刚度和阻尼之间具有良好的权衡关系,如果正确评估,则可以代表其他选择。

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