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Response of a Shell Structure Subject to Distributed Harmonic Excitation

机译:壳结构对分布式谐波激励的响应

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摘要

Previously, a coupled, two-dimensional structural-acoustic ring model was constructed to simulate the dynamic and acoustical behavior of pneumatic tires. Analytical forced solutions were obtained and were experimentally verified through laser velocimeter measurement made using automobile tires. However, the two-dimensional ring model is incapable of representing higher order, in-plane modal motion in either the circumferential or axial directions. Therefore, in this paper, a three-dimensional pressurized circular shell model is proposed to study the in-plane shearing motion and the effect of different forcing conditions. Closed form analytical solutions were obtained for both free and forced vibrations of the shell under simply supported boundary conditions. Dispersion relations were calculated and different wave types were identified by their different speeds. Shell surface mobility results under various input distributions were also studied and compared. Spatial Fourier series decompositions were also performed on the spatial mobility results to give the forced dispersion relations, which illustrate clearly the influence of input force spatial distribution. Such a model has practical application in identifying the sources of noise and vibration problems in automotive tires.
机译:以前,已经建立了一个二维的二维结构声环模型来模拟充气轮胎的动态和声学特性。获得了强制分析性溶液,并通过使用汽车轮胎进行的激光测速仪测量进行了实验验证。但是,二维环形模型无法在圆周方向或轴向方向上表示更高阶的平面内模态运动。因此,本文提出了三维加压圆形壳模型,以研究平面内剪切运动以及不同受力条件的影响。在简单支撑的边界条件下,获得了壳体自由振动和强制振动的闭合形式的解析解。计算色散关系,并通过不同的速度识别不同的波类型。还研究和比较了各种输入分布下的壳表面迁移率结果。还对空间迁移率结果进行了空间傅立叶级数分解,得到了强制色散关系,这清楚地说明了输入力空间分布的影响。这种模型在识别汽车轮胎噪声和振动问题的根源方面具有实际应用。

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    Cao, Rui; Bolton, J Stuart;

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  • 年度 2016
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