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首页> 外文期刊>Advances in Mechanical Engineering >Effects of Ring Support and Internal Pressure on the Vibration Behavior of Multiple Layered Cylindrical Shells
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Effects of Ring Support and Internal Pressure on the Vibration Behavior of Multiple Layered Cylindrical Shells

机译:环支撑和内压对多层圆柱壳振动特性的影响

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This paper presents the study on natural frequency characteristics of a multiple layered cylindrical shell with ring support under internal pressure. The multiple layered cylindrical shell configuration is formed by three layers of isotropic materials where the inner and outer layers are stainless steel and the middle layer is aluminum. The isotropic multiple layered shell equations with ring support and internal pressure are established based on first order shear deformation theory (FSDT). The governing equations of motion were employed by using energy functional and by applying the Ritz method. The boundary conditions represented by end conditions of the multiple cylindrical shell are simply supported-simply supported (SS-SS), clamped-clamped (C-C), free-free (F-F), clamped-free (C-F), clamped-simply supported (C-SS), and free-simply supported (F-SS). The influences of internal pressure and ring support and the effect of the different boundary conditions on natural frequencies characteristics are studied. The results are validated by comparing them with those in the literature.
机译:本文提出了在内部压力下带环支撑的多层圆柱壳固有频率特性的研究。多层圆柱壳结构由三层各向同性材料形成,其中内层和外层是不锈钢,中间层是铝。基于一阶剪切变形理论(FSDT),建立了具有环支撑和内压的各向同性多层壳方程。通过使用能量函数和应用Ritz方法来采用运动的控制方程。由多个圆柱壳的端部条件表示的边界条件为简单支撑-简单支撑(SS-SS),夹紧-夹紧(CC),自由-自由(FF),自由-夹紧(CF),夹紧-简单支撑( C-SS)和自由简化支持(F-SS)。研究了内部压力和环支撑的影响以及不同边界条件对固有频率特性的影响。通过将它们与文献中的结果进行比较来验证结果。

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