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A nonlinear evaluation of a tubular adhesive scarf joint loaded in tension and in torsion.

机译:管状的丝巾接缝接头在拉力和扭力下的非线性评估。

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摘要

In this thesis, a simple analytical model is developed and utilized to determine the adhesive shear strain and stress distributions in tubular adhesive scarf joints. Both tensile and torsional loading conditions are investigated because they are often seen as primary loads in structures consisting of tubular components. In addition, a mathematical representation consisting of linear and exponential functions is employed to model the elastic/plastic-like behavior observed at many structural adhesives. Two governing equations derived for the tension and the torsion cases are found to be in the form of nonlinear second-degree ordinary differential equations with variable coefficients. Numerical methods required for solving these equations are also introduced. Both linear and nonlinear numerical analyses based on the developed theory are validated with Finite Element Analysis, utilizing the commercially available software, ANSYS 5.6, a general-purpose software system. An approach for failure prediction is also proposed, in conjunction with the analytical model, and the approach is evaluated by representative experiments. The experiments are conducted both in tension and in torsion with aluminum tubular adherends bonded by Hysol EA9394, a two-part paste adhesive manufactured by Dexter Aerospace. A complete joint failure is assumed to occur when the maximum shear strain in the adhesive attains the value of the ultimate shear strain near the joint terminations.; It is shown that both the linear and nonlinear approximate solutions are closely comparable to the FEA results for small scarf angles and elastic isotropic adherends. A scarf joint experiences lower peak strains and relatively more uniform distributions compared to those of a conventional lap joint, while a lap joint exhibits a deep elastic trough considered as a good inhibitor to creep. Both tension and torsion experiments show evidence of good correlation with failure predictions estimated by the theory. Guidelines applied to adhesive joint design and to manufacturing are also introduced.
机译:本文建立了一个简单的分析模型,并利用该模型来确定管状胶套接头的胶粘剪切应变和应力分布。研究了拉伸和扭转载荷条件,因为它们通常被视为由管状部件组成的结构中的主要载荷。另外,采用由线性和指数函数组成的数学表示法来建模在许多结构粘合剂上观察到的类似弹性/塑性的行为。发现针对张力和扭转情况导出的两个控制方程为具有变系数的非线性二阶常微分方程的形式。还介绍了求解这些方程所需的数值方法。利用商业软件ANSYS 5.6(通用软件系统),利用有限元分析验证了基于已发展理论的线性和非线性数值分析。还结合分析模型提出了一种故障预测方法,并通过代表性实验对该方法进行了评估。实验是通过由Hyx EA9394粘合的铝制管状被粘物在拉伸和扭转中进行的,Hysol EA9394是由德克斯特航空制造的两部分糊状粘合剂。当粘合剂中的最大剪切应变达到接头末端附近的极限剪切应变值时,就假定发生了完全的接头破坏。结果表明,对于小斜角和弹性各向同性被粘物,线性和非线性近似解都与FEA结果非常相似。与传统的搭接接头相比,围裙接头的峰值应变更低,且分布相对更均匀,而搭接接头具有深的弹性槽,被认为是良好的蠕变抑制剂。拉伸和扭转实验均显示与该理论所估计的失效预测具有良好相关性的证据。还介绍了适用于粘合接头设计和制造的准则。

著录项

  • 作者

    Nguyen, Vu Linh.;

  • 作者单位

    University of California, Santa Barbara.;

  • 授予单位 University of California, Santa Barbara.;
  • 学科 Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 2000
  • 页码 143 p.
  • 总页数 143
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 机械、仪表工业;
  • 关键词

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