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首页> 外文期刊>Mathematical Problems in Engineering: Theory, Methods and Applications >Transverse Vibration of a Moving Viscoelastic Hard Membrane Containing Scratches
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Transverse Vibration of a Moving Viscoelastic Hard Membrane Containing Scratches

机译:含有划痕的移动粘弹性硬膜的横向振动

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摘要

The transverse vibration and stability of a moving viscoelastic hard printing membrane containing scratches are investigated. Based on the viscoelastic differential constitutive relation, thin plate theory, and d’Alembert principle, the differential equation of a moving viscoelastic hard membrane with a straight scratch through the surface is derived by using the continuity condition of the scratches. The complex characteristic equation is obtained by using the differential quadrature method. The effects of the scratch depth and scratch position on the critical instability speed of the moving hard membrane were highlighted by solving the differential equation and numerical calculation, and the coupling effects of speed and scratch depth on vibration characteristics of the hard membrane are also analyzed. Numerical calculation results show that the hard membrane experiences divergence instability when the actual printing speed is v=23.2 m/s, and the membrane is stable when v23.2 m/s. The theoretical guidance and method for scratches detection of the precision coated hard membrane are provided.
机译:研究了含有刮擦刮擦的移动粘弹性硬印刷膜的横向振动和稳定性。基于粘弹性差分构成关系,薄板理论和D'·甲烷的原理,通过使用划痕的连续性条件来导出具有直接划痕的移动粘弹性硬膜的差动方程。通过使用差分正交方法获得复杂的特性方程。通过求解微分方程和数值计算,突出了划痕深度和划痕位置对移动硬膜的临界不稳定速度的影响,并且还分析了速度和划痕深度对硬膜的振动特性的耦合效应。数值计算结果表明,当实际印刷速度为v = 23.2m / s时,硬膜经历发散不稳定,当V <23.2米/秒时,膜稳定。提供了精密涂覆硬膜划痕检测的理论指导和方法。

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