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Effects of constraint, circular cutout and in-plane loading on vibration of rectangular plates

机译:约束,圆形切口和面内载荷对矩形板振动的影响

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摘要

The paper studies the influences of boundary conditions, cutouts and in-plane loading on the vibration of a rectangular plate with a circular hole. To study the interactions between the plate and the hole, the receptance approach is adopted. While a receptance reduction is used at the plate-hole interface, a receptance addition is used for the plate stiffeners at the clamped edge. The study shows that for a free-edge hole, a minimum value of the first natural frequency exists, corresponding to a critical radius of the hole, regardless of the plate boundary constraints. However, a similar result is only found when the edges of the plate and the cutout are both simply supported. Plates with other types of constraints show a monotonically increasing frequency as the radius of the hole is increased. This information can be used by designers while engineering rectangular plates with stiffened circular cutouts. Parts of the analytical results are verified by the finite element solutions. It shows that the receptance approach, both addition and reduction, provides a convenient tool with adequate accuracy for this type of vibrational studies.
机译:本文研究了边界条件,切口和面内载荷对带有圆孔的矩形板振动的影响。为了研究板与孔之间的相互作用,采用了接受方法。虽然在板-孔界面处使用了减小的接受度,但在夹紧边缘处的板加强件中使用了添加接受度。研究表明,对于自由边缘孔,无论板边界如何,都存在与孔的临界半径相对应的第一固有频率的最小值。但是,只有当板的边缘和切口都被简单支撑时,才会发现类似的结果。具有其他类型约束的平板随着孔半径的增加而显示出单调增加的频率。设计人员在设计带有刚性圆形切口的矩形板时可以使用此信息。有限元解验证了部分分析结果。它表明,接受方法(加法和减法)都为此类振动研究提供了一种具有足够精度的便捷工具。

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