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Experimental Investigation of the Effect of Key Variables on the Static Strength of Aluminum Alloy Structural Adhesive Joints

机译:关键变量对铝合金结构胶接缝静态强度影响的实验研究

摘要

Fuel economy targets are pushing car makers to develop several strategies in order to reduce the weight of the vehicles. Within this scenario adhesive bonding is nowadays a widespread technology that represents a joining technique aiming to replace or to combine fastening for lightweight construction of car bodies and multi-material design. In this work an experimental investigation into the static strength of aluminum alloy structural adhesive lap joints is carried out by varying factors influencing the bonding behaviour of the joint. The impact of surface roughness, geometrical control factors (adherend thickness and adhesive thickness) and test conditions (test temperature and test speed) is evaluated. The outcomes derived from the tensile tests are analyzed in terms of load, elongation and energy at failure. Finally a failure mode analysis is conducted in order to either verify or explain the results obtained.
机译:燃油经济性目标正在推动汽车制造商制定几种策略,以减轻汽车的重量。在这种情况下,胶粘粘合是当今一种广泛使用的技术,代表了一种旨在替代或结合用于车身轻量化和多材料设计的紧固技术。在这项工作中,对铝合金结构搭接搭接接头的静态强度进行了实验研究,方法是通过影响接头粘结性能的各种因素进行。评估了表面粗糙度,几何控制因子(粘附剂厚度和粘合剂厚度)和测试条件(测试温度和测试速度)的影响。从拉伸测试得出的结果将根据载荷,伸长率和破坏时的能量进行分析。最后,进行故障模式分析,以验证或解释获得的结果。

著录项

  • 作者

    Amoruso Francesco Vincenzo;

  • 作者单位
  • 年度 2015
  • 总页数
  • 原文格式 PDF
  • 正文语种 en
  • 中图分类

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