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A Compact Cantilever-Type Ultrasonic Motor With Nanometer Resolution: Design and Performance Evaluation

机译:具有纳米分辨率的紧凑型悬臂式超声波电机:设计和性能评估

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摘要

A cantilever ultrasonic motor with nanometer resolution is designed, fabricated, and tested in this article. Two orthogonal first bending vibration modes are used to form elliptical movements on driving tip to move slider. The structure of this motor is depicted, and its geometric dimensions are determined by modal analysis. The total size of this motor is 30 × 30 × 34.2 mm along the X-, Y-, and Z-direction. The working principle of the proposed motor is illustrated, and the motion characteristics of the driving tip are studied by transient analysis. A prototype of this motor is manufactured to investigate its vibration performances and mechanical characteristics. The tested results denote that this motor generates an output speed of 344.35 mm/s when the frequency and voltage are 22.7 kHz and 200 Vp-p, respectively. The maximum output force is tested as about 8 N under the voltage and preload of 100 Vp-p and 50 N, respectively. Furthermore, the proposed ultrasonic motor obtains a high displacement resolution of 48 nm under the resonant working state.
机译:在本文中设计,制造和测试具有纳米分辨率的悬臂超声波电机。两个正交的第一弯曲振动模式用于在驱动尖端上形成椭圆形运动以移动滑块。描绘了该电动机的结构,其几何尺寸由模态分析确定。该电动机的总尺寸沿着沿着30×30×34.2毫米<斜体XMLNS:mml =“http://www.w3.org/1998/math/mathml”xmlns:xlink =“http://www.w3.org/1999/xlink”> x - y - , z -方向。所提出的电动机的工作原理示出,并且通过瞬态分析研究了驱动尖端的运动特性。制造该电动机的原型以研究其振动性能和机械特性。测试结果表示,当频率和电压为22.7kHz和200V时,该电动机产生344.35mm / s的输出速度 p-p , 分别。在100V的电压和预加载下,最大输出力被测为约8n p-p 分别为50 n。此外,所提出的超声波马达在谐振工作状态下获得48nm的高位移分辨率。

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