Simulation of Ultrasonic Tools for Cutting Honeycomb Panels Made of Aluminum and Aramid (Kevlar)

IF 0.9 4区 物理与天体物理 Q4 ACOUSTICS
A. A. Vjuginova, S. N. Vjuginov, A. A. Novik
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引用次数: 0

Abstract

Honeycomb panels made of aluminum and composite materials—aramid, or Kevlar—are widely used in aviation, space, automotive, and other fields due to their unique characteristics: high strength and rigidity, low density, and good thermal insulation properties. However the mechanical processing of products made of honeycomb materials faces several difficulties, and one of the technologies that effectively solves the problems of cutting products made of honeycomb materials is ultrasonic cutting. In this paper, the finite element method is used to study the frequency properties necessary for designing tools for ultrasonic cutting of products made of honeycomb materials with operating frequencies around 20 kHz and various geometric parameters for cutting different variants of honeycomb constructions. The results of analyzing the wave dimensions of specialized ultrasonic triangular and disk-type instruments depending on geometry features are shown, along with the experimental results for a number of developed variants.

Abstract Image

Abstract Image

用于切割铝和芳纶(凯夫拉)蜂窝板的超声波工具仿真
摘要由铝和复合材料--芳纶或凯夫拉纤维--制成的蜂窝板因其独特的特性而被广泛应用于航空、航天、汽车和其他领域:高强度、高刚性、低密度和良好的隔热性能。然而,对蜂窝材料制成的产品进行机械加工面临着一些困难,而超声波切割是有效解决蜂窝材料产品切割问题的技术之一。本文采用有限元法研究了设计超声波切割蜂窝材料制品工具所需的频率特性,工作频率约为 20 kHz,并研究了切割不同蜂窝结构的各种几何参数。图中显示了根据几何特征对专用三角形和圆盘式超声波切割工具的波形尺寸进行分析的结果,以及一些已开发变体的实验结果。
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来源期刊
Acoustical Physics
Acoustical Physics 物理-声学
CiteScore
1.60
自引率
50.00%
发文量
58
审稿时长
3.5 months
期刊介绍: Acoustical Physics is an international peer reviewed journal published with the participation of the Russian Academy of Sciences. It covers theoretical and experimental aspects of basic and applied acoustics: classical problems of linear acoustics and wave theory; nonlinear acoustics; physical acoustics; ocean acoustics and hydroacoustics; atmospheric and aeroacoustics; acoustics of structurally inhomogeneous solids; geological acoustics; acoustical ecology, noise and vibration; chamber acoustics, musical acoustics; acoustic signals processing, computer simulations; acoustics of living systems, biomedical acoustics; physical principles of engineering acoustics. The journal publishes critical reviews, original articles, short communications, and letters to the editor. It covers theoretical and experimental aspects of basic and applied acoustics. The journal welcomes manuscripts from all countries in the English or Russian language.
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