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Control of the static, dynamic and thermal characteristics of NITINOL-reinforced plates.

机译:控制NITINOL增强板的静态,动态和热特性。

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摘要

Problems arising from elastic instabilities and excessive vibrations of large and light weight flexible composite plates seriously limit their use in critical applications such as space structures, satellites and helicopters. However, such problems can be avoided by actively controlling the static and dynamic characteristics of these plates through the use of shape memory fibers, made of a nickel-titanium alloy (NITINOL), which are embedded in the composite fabric of the plates. These fibers can generate very high forces when heated above their phase transformation temperature. The resulting forces can increase the elastic energy and the stiffness of the composite plates in such a way that increases their critical buckling loads and shifts their vibration modes away from the excitation frequency band in order to avoid undesirable vibrations. Particular emphasis is placed, in this dissertation, on studying the interaction between the static, dynamic and thermal characteristics of NITINOL-reinforced composites plates especially during the activation and deactivation of the Shape Memory Effect. Mechanical and thermal finite element models are developed to investigate this interaction for plates subject to different loading and boundary conditions. The predictions of these models are validated experimentally and are found to be in close agreement with the measurements.
机译:大而轻的柔性复合板的弹性不稳定性和过度振动引起的问题严重限制了它们在诸如空间结构,卫星和直升机的关键应用中的使用。但是,通过使用形状记忆纤维积极地控制这些板的静态和动态特性,可以避免此类问题,该形状记忆纤维由镍钛合金(NITINOL)制成,并嵌入板的复合织物中。当加热到其相变温度以上时,这些纤维会产生很高的力。所产生的力可以增加复合材料板的弹性能和刚度,从而增加复合材料的临界屈曲载荷并使它们的振动模式偏离激励频带,从而避免产生不希望的振动。本文重点研究了镍钛诺增强复合材料板的静态,动态和热特性之间的相互作用,特别是在形状记忆效应的激活和失活过程中。开发了机械和热有限元模型,以研究板在不同载荷和边界条件下的相互作用。这些模型的预测已通过实验验证,并与测量值非常吻合。

著录项

  • 作者

    Ro, Jeng-Jong.;

  • 作者单位

    The Catholic University of America.;

  • 授予单位 The Catholic University of America.;
  • 学科 Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 1993
  • 页码 195 p.
  • 总页数 195
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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