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Rotary ultrasonic machining of carbon fiber-reinforced plastic composites: effects of ultrasonic frequency

机译:碳纤维增强塑料复合材料的旋转超声波加工:超声波频率的影响

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摘要

Rotary ultrasonic machining (RUM) is effective and efficient in cutting carbon fiber-reinforced plastic (CFRP) composites. With ultrasonic vibration assistance, both machining efficiency and machining effectiveness can be improved. Ultrasonic vibration has two major variables (including ultrasonic amplitude and ultrasonic frequency), which play important roles in RUM processes. Other intermediate variables, such as ultrasonic power and indentation depth, are directly related to these two variables. Effects of ultrasonic vibration amplitude have been extensively investigated in RUM hole making and surface machining processes. However, the effects of ultrasonic frequency in RUM have not been reported. The effects of ultrasonic frequency under different combinations of tool rotation speed, feed rate, and depth of cut on output variables, including cutting forces, surface roughness, and machined surface characteristics, are investigated, for the first time, in this study. The critical frequency is analyzed for the RUM process. Three different levels of ultrasonic frequencies are generated and applied to the RUM process. The kinematic motions of abrasive grains in RUM with different frequencies are analyzed and discussed. The results show that RUM with higher frequency of ultrasonic vibration is a more effective machining process, leading to cutting force reduction and the machined surface quality improvement.
机译:旋转超声波加工(朗姆酒)在切割碳纤维增强塑料(CFRP)复合材料方面是有效且有效的。通过超声波振动辅助,可以提高加工效率和加工效率。超声波振动有两个主要变量(包括超声波幅度和超声波频率),在朗姆酒过程中起重要作用。其他中间变量,例如超声波功率和压痕深度,与这两个变量直接相关。超声波振动幅度的影响在朗姆孔制造和表面加工过程中广泛研究。然而,尚未报告超声波频率在朗姆姆中的影响。在本研究中首次研究了在工具转速,进料速率和切割的不同组合下的超声波频率,进料速率和切割深度,包括切割力,表面粗糙度和机加工表面特性。分析临界频率以用于朗姆酒过程。产生三种不同的超声波频率,并应用于朗姆酒过程。分析并讨论了具有不同频率的朗姆酒中磨粒的运动颗粒的运动运动。结果表明,具有较高频率的超声波振动的朗姆姆是一种更有效的加工过程,导致削减力减少和加工的表面质量改进。

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