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Analysis and enhancement of tubular bonded joints subject to torsion.

机译:管状受扭接头的分析和增强。

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摘要

The increasing trend in the use of Adhesively Bonded Joints (ABJ), which is replacing the use of conventional joints in many industries, makes the determination of their strengths and weaknesses of significant importance. Ease of production, maintenance and a controllable stress distribution are only a few key factors that attest to the superiority of ABJ compared to mechanically fastened joints. There are extensive investigations in literature that detail the behavior of ABJ under different loading conditions; however, only a few of them have addressed torsional loading.;The first section of this thesis is comprised of a comprehensive study on tubular ABJ under torsional loading wherein both isotropic and composite adherends are investigated. Both the finite element method (FEM) and experimental approaches were used in this study. ABAQUS, a widely used commercial finite element code, was used to develop a series of FEM models to examine the linear and non-linear behaviors of ABJ under torsional loading. The FEM results were validated by experimental results obtained through an extensive series of static and cyclic torsional tests conducted on joints made of metallic and composite adherends. Good agreement was observed between the results obtained from the two methods. In addition, the influence of fabrication method on joint performance was examined. The results of this investigation have been collated into a series of design curves and manufacturing recommendations that are verified by various test methods.;In the following section, the possibility of enhancing the response of composite joints by the incorporation of smart materials (i.e. shape memory alloys) was explored. It was concluded that shape memory alloys (SMA) can be used for increasing the strength and stiffness of composite joints that are subject to elevated temperatures at which the composite adherends' mechanical properties would be otherwise degraded. Subsequently, a comprehensive method for the design and fabrication of SMA embedded hybrid composites (SMAHC) was introduced. Furthermore, the behavior of SMAHC, compared to its non-reinforced composite counterpart, was investigated under static and cyclic loading conditions. It was demonstrated that SMA embedment could significantly enhance the performance of a composite compared to its non-reinforced counterpart.
机译:胶接接头(ABJ)的使用不断增长的趋势正在取代许多行业中常规接头的使用,因此确定其优缺点非常重要。与机械紧固的接头相比,易于生产,维护和可控制的应力分布只是证明ABJ优越性的几个关键因素。文献中有大量研究详细介绍了ABJ在不同载荷条件下的行为。本文的第一部分是对扭转载荷下管状ABJ的全面研究,其中研究了各向同性和复合被粘物。这项研究中使用了有限元方法(FEM)和实验方法。 ABAQUS是一种广泛使用的商业有限元代码,用于开发一系列FEM模型,以检查ABJ在扭转载荷下的线性和非线性行为。通过对金属和复合被粘物制成的接头进行一系列广泛的静态和循环扭转试验获得的实验结果验证了有限元结果。从这两种方法获得的结果之间观察到良好的一致性。另外,研究了制造方法对接头性能的影响。这项研究的结果整理为一系列设计曲线和制造建议,并通过各种测试方法进行了验证。在以下部分中,通过引入智能材料(即形状记忆)来增强复合材料接头响应的可能性合金)。结论是,形状记忆合金(SMA)可用于提高复合材料接头的强度和刚度,而复合材料接头会承受高温,否则复合材料的机械性能会降低。随后,介绍了一种用于SMA嵌入式混合复合材料(SMAHC)设计和制造的综合方法。此外,与SMAHC相比,SMAHC在静态和循环载荷条件下的性能也得到了研究。事实证明,与非增强材料相比,SMA嵌入可以显着提高复合材料的性能。

著录项

  • 作者

    Hosseinzadeh, Ramin.;

  • 作者单位

    Dalhousie University (Canada).;

  • 授予单位 Dalhousie University (Canada).;
  • 学科 Engineering Civil.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 178 p.
  • 总页数 178
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 建筑科学;
  • 关键词

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