首页> 外文期刊>Journal of Applied Mechanics: Transactions of the ASME >Effect of Semi-Geodesic Winding on the Vibration Characteristics of Filament Wound Shells of Revolution
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Effect of Semi-Geodesic Winding on the Vibration Characteristics of Filament Wound Shells of Revolution

机译:半大地绕组对长丝绕线旋转壳振动特性的影响

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摘要

The effect of semigeodesic winding on the free vibration characteristics of filament wound shells of revolution is studied. For this purpose multisegment numerical integration technique is extended to the solution of the free vibration problem of composite shells of revolution which are wound along the semigeodesic fiber paths counting on the preset friction used during the winding process. Sample results are obtained for truncated conical and spherical shells of revolution and the effect of preset friction on the vibration characteristics of filament wound shells of revolution is particularly analyzed. Results show that when the preset friction is increased natural frequencies of higher circumferential vibration modes also increase irrespective of the initial winding angle, and the circumferential bending stiffness stands out as the dominant parameter governing the natural frequencies of higher circumferential vibration modes.
机译:研究了半大地绕组对细丝缠绕旋转壳自由振动特性的影响。为此,将多段数值积分技术扩展到解决旋转复合壳的自由振动问题,该复合壳依靠在缠绕过程中使用的预设摩擦力沿着半大地纤维路径缠绕。截头圆锥形和球形旋转壳获得了样本结果,并且特别分析了预设摩擦对细丝缠绕的旋转壳的振动特性的影响。结果表明,当增加预设摩擦时,较高的圆周振动模式的固有频率也将增加,而与初始绕组角度无关,并且圆周弯曲刚度是控制较高圆周振动模式的固有频率的主要参数。

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