Nomex蜂窝复合材料微型超声切割系统的设计与实现

M. Ke, Zhang Jianfu, Feng Pingfa, Wu Zhijun, Yu Dingwen, Shahzad Ahmad
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引用次数: 9

摘要

nomex蜂窝复合材料具有良好的耐热性、耐腐蚀性、高比强度和优异的机械性能,广泛应用于航空航天工业。然而,由于nomex蜂窝复合材料的特殊性能,传统的高速铣削难以完成该材料的加工。超声波加工方法是解决上述问题的最佳途径之一。为了提高超声功率,超声系统结构的尺寸通常都很大,这对纳米材料蜂窝复合材料的加工既不方便又不经济。设计了一种用于纸基蜂窝材料的微型超声切割系统。在小尺寸条件下实现了其输出幅度,并通过实验验证了其处理性能。在理论分析的基础上,对所设计的微型超声切割系统的设计参数进行了计算。通过仿真和幅值测试对系统的谐振频率、放大倍数和幅值进行了分析。结果表明,系统参数与设计值基本一致。蜂窝材料的加工实验表明,该系统能有效降低切削力,提高表面质量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design and Implementation of a Mini Ultrasonic Cutting System for Nomex Honeycomb Composites
With great heat resistance, corrosion resistance, high specific strength and excellent mechanical properties, nomex honeycomb composites are widely used in aerospace industry. However, due to the special properties of the nomex honeycomb composites, traditional high-speed milling is difficult to complete the processing of the material. The ultrasonic processing method is one of the best ways to solve the above problem. In order to improve the ultrasonic power, the size of the ultrasound system structure is normally very large, which is inconvenient and uneconomical for processing the nomex honeycomb composites. A mini ultrasonic cutting system for paper - based honeycomb material is designed in this paper. Its output amplitude is realized under the condition of small size, and its processing performance is verified by experiments. Based on the theoretical anylysis, the design parameters of the presented mini ultrasonic cutting system were calculated. The resonant frequency, magnification and amplitude of the system were analyzing by simulation and amplitude test. The results showed the system parameters are consistent with the design value. The processing experiments of the honeycomb material indicated the system can effectively reduce the cutting force and improve the surface quality.
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