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Adhesively Bonded Joints with Non-Flat Interfaces.

机译:具有非平坦界面的粘合接头。

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摘要

Adhesive bonding is used in many structural applications such as aircraft and aerospace industries due to its low-weight and fatigue-resistance and capability to attach dissimilar materials. One shortcoming of using adhesively bonded joints is that in most cases the bonded joint is the 'weakest link' of the structure and has inferior strength compared to other components, thus, limiting the overall load carrying capacity of the structural system. In this study, we examined the strength, energy absorption and failure of bonded joints with non-flat interfaces. Single lap bonded joints with different zig-zag shaped (dented) interfaces were fabricated and their response under uniaxial tension was compared with the response of a single lap joint with traditional flat interface. In the experiments, the yield stress, ultimate tensile stress, maximum elongation and energy absorption were obtained and compared in the different types of bonded joint. It was shown that these structural properties vary greatly by changing the topology of the adhesive-adherent interface, promising unique potential applications for each of the configurations studied. In the next step, we carried out a parametric finite element study to investigate the role of several geometrical parameters such as dent height, width, angle and also the adhesive Young's modulus on the distribution of pealing and shearing stresses in the bonded joints. The results were linked to the experimental observations. Also in this study, the crack shielding phenomena in the different types of joints was studied using finite element calculations and related to qualitative experimental observations.
机译:胶粘剂由于其重量轻,耐疲劳性强以及能够附着异种材料的特性而被用于许多结构应用,例如飞机和航空航天工业。使用胶接接头的一个缺点是,在大多数情况下,胶接接头是结构的“最薄弱环节”,与其他组件相比,强度较差,因此限制了结构系统的整体承载能力。在这项研究中,我们检查了具有非平坦界面的粘结接头的强度,能量吸收和破坏。制作了具有不同锯齿形(锯齿状)界面的单搭接接头,并将其在单轴拉力下的响应与具有传统平面界面的单搭接接头的响应进行了比较。在实验中,获得了屈服应力,极限拉伸应力,最大伸长率和能量吸收,并在不同类型的粘结接头中进行了比较。结果表明,这些结构性质会通过改变粘合剂界面的拓扑结构而发生很大变化,从而有望为所研究的每种构造带来独特的潜在应用。在下一步中,我们进行了参数有限元研究,以研究多个几何参数(例如凹痕高度,宽度,角度以及粘合剂的杨氏模量)对粘结接头中的剥离和剪切应力分布的作用。结果与实验观察相联系。同样在这项研究中,使用有限元计算研究了不同类型接头的裂纹屏蔽现象,并与定性实验观察有关。

著录项

  • 作者

    Chiu, Shih-Hung.;

  • 作者单位

    Northeastern University.;

  • 授予单位 Northeastern University.;
  • 学科 Engineering Mechanical.
  • 学位 M.S.
  • 年度 2011
  • 页码 65 p.
  • 总页数 65
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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