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Influence of Attached Body on the Frequency and Modes Free Vibrations Cylindrical Shells

机译:附着体对频率和模式自由振动圆柱壳的影响

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The paper uses the method of final element in linear function in MSC ?Nastran? software complex to study the influence of the inertial properties of the added rigid body-locking rod, which is directed towards mid-surface in normal, by changing its length and the relative mass value on its own dynamic performance of thin circular cylindrical shell. The findings are compared with the case vibration of the shell, carrying the added mass and with the well-known analytic solutions. The mode state (MS) of the construction made the shells with added rod has been studied. The MS of the construction depends on geometrical and physical parameters and on the kind of vibrational forms of the body connected to it have been identified. The rod connected to the shell expands the range frequency of vibration in relation to the shell, carrying the added mass. The influence of its inertial properties with increase of length of the body connected to shell (distancing center of mass connected rod from the shell) had become increasingly important. However, the influence of inertial properties connected with increase in the size of the body accession to shell is decreasing. The ranges, when inertia of jointed body may be disregarded, were presented.
机译:本文使用MSC中线性函数中最终元素的方法吗?Nastran?用于研究添加的刚体锁定杆的惯性性质的影响,通过改变其长度和相对质量值对薄圆柱壳的自身动态性能来研究朝向中表面的惯性性质的影响。将研究结果与壳体的壳体振动进行比较,携带添加的质量和众所周知的分析溶液。构造的模式状态(MS)使壳体的壳体研究已经研究过。构造的MS取决于几何和物理参数,并且已经确定了与其连接的主体的振动形式的种类。连接到壳体的杆扩展了与壳体相关的振动的范围频率,承载着额外的质量。其惯性性质随着连接到壳体的长度的影响(来自壳体的距离中心的远距离杆)变得越来越重要。然而,与壳体尺寸的增加连接的惯性性质的影响降低。呈现了随着关节体惯性的范围,呈现。

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