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Steady State Response Analysis of a Tubular Piezoelectric Print Head

机译:管状压电打印头的稳态响应分析

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In recent years, inkjet technology has played an important role in industrial materials printing and various sensors fabrication, but the mechanisms of the inkjet print head should be researched more elaborately. The steady state deformation analysis of a tubular piezoelectric print head, which can be classified as a plane strain problem because the radii of the tubes are considerably smaller than the lengths, is discussed in this paper. The geometric structure and the boundary conditions are all axisymmetric, so a one-dimensional mathematical model is constructed. By solving the model, the deformation field and stress field, as well as the electric potential distribution of the piezoelectric tube and glass tube, are obtained. The results show that the deformations are on the nanometer scale, the hoop stress is larger than the radial stress on the whole, and the potential is not linearly distributed along the radial direction. An experiment is designed to validate these computations. A discussion of the effect of the tubes’ thicknesses on the system deformation status is provided.
机译:近年来,喷墨技术在工业材料印刷和各种传感器的制造中起着重要的作用,但是喷墨印刷头的机理应该更加详细地研究。本文讨论了管状压电打印头的稳态变形分析,这可以归类为平面应变问题,因为管的半径大大小于长度。几何结构和边界条件都是轴对称的,因此构造了一维数学模型。通过求解该模型,可以获得压电管和玻璃管的形变场和应力场,以及电位分布。结果表明,形变在纳米尺度上,环向应力总体上大于径向应力,且电势沿径向方向不是线性分布的。设计了一个实验来验证这些计算。讨论了管的厚度对系统变形状态的影响。

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