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Three-dimensional vibration analysis of a cantilevered parallelepiped: Exact and approximate solutions

机译:悬臂平行六面体的三维振动分析:精确解和近似解

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摘要

The paper investigates the hypothetical assumption of neglecting transverse normal stress in vibration analysis for cantilevered thick plates and rectangular parallelepiped. The analysis solves the three-dimensional elasticity energy functional including, as well as excluding, transverse normal stress and obtains free vibration solutions for a cantilevered parallelepiped. Although it is widely accepted, the omission of transverse normal stress is well justified in Kirchhoff–Love thin-plate theory and higher-order thick-plate models; the transverse normal stress effects and thickness extent to which the thick-plate models apply as the thickness increases are practically unknown. The inconsistency of assuming constant transverse normal displacement through thickness for thick-plate models is also addressed. The paper concludes that for a rectangular parallelepiped with thickness exceeding a certain limit, there is considerable discrepancy if transverse normal stress is neglected.
机译:本文研究了悬臂厚板和长方体振动分析中忽略横向法向应力的假设假设。该分析解决了三维弹性能量函数,包括但不包括横向法向应力,并获得了悬臂平行六面体的自由振动解。尽管已被广泛接受,但在Kirchhoff-Love薄板理论和高阶厚板模型中,忽略了横向法向应力是合理的。实际上,随着厚度的增加,厚板模型所应用的横向法向应力影响和厚度范围实际上是未知的。还解决了厚板模型假设通过厚度的恒定横向法向位移的不一致问题。本文的结论是,对于厚度超过一定极限的长方体,如果忽略横向法向应力,则存在很大的差异。

著录项

  • 作者

    Lim CW;

  • 作者单位
  • 年度 1999
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  • 原文格式 PDF
  • 正文语种 eng
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