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The application of the dynamic stiffness method for the acoustic fatigue analysis of aircraft engine nacelle structures

机译:动刚度法在飞机发动机机舱结构声疲劳分析中的应用

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摘要

The subject of acoustic fatigue first came to prominence with the advent of using jet engines on commercial aircraft in the 1950’s. Despite the period of time which has elapsed since then and the work carried out to help develop our understanding of the response of structures subject to high intensity noise, acoustic fatigue problems still occur. The novel contributions which this thesis makes to knowledge in the area have been in the application of the dynamic stiffness method which has been used to predict stress and strain response due to acoustic loading. The dynamic stiffness method can under certain circumstances provide very accurate results for natural frequency and displacement. Indeed for certain configurations it can provide exact solutions. It is largely independent of the number of degrees of freedom necessary to give an accurate result unlike the finite element method. The thesis documents how the dynamic stiffness method can offer a very favourable alternative to available analysis techniques. An alternative method of formulating the dynamic stiffness method is presented and is further extended to theanalysis of orthotropic plates. The response of actual structures is discussed and previously unpublished data is also presented.
机译:随着1950年代在商用飞机上使用喷气发动机的问世,声疲劳问题首先引起人们的注意。尽管从那以后已经过去了一段时间,并且进行了许多工作以帮助我们更好地理解承受高强度噪声的结构的响应,但是仍然会出现声学疲劳问题。本文为该领域的知识做出的新贡献是在动态刚度方法的应用中,动态刚度方法已被用于预测由于声载荷引起的应力和应变响应。动态刚度方法可以在某些情况下为固有频率和位移提供非常准确的结果。实际上,对于某些配置,它可以提供精确的解决方案。与有限元方法不同,它很大程度上独立于获得精确结果所需的自由度数。本文记录了动态刚度方法如何为现有分析技术提供非常有利的替代方法。提出了一种替代的动态刚度方法,并将其扩展到正交各向异性板的分析中。讨论了实际结构的响应,还介绍了以前未发布的数据。

著录项

  • 作者

    Millar David;

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  • 年度 2012
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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