首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers. Part L, Journal of Materials: Design and Application >Experimental analysis of steel joints bonded with automotive grade hot setting structural adhesives
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Experimental analysis of steel joints bonded with automotive grade hot setting structural adhesives

机译:汽车级热固性结构胶粘结的钢接头的实验分析

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摘要

Recent trends in car body manufacturing indicate that the use of a consistent mix of lightweight materials in conjunction with adhesive bonding, not only allows substantial weight reduction, but can also drive down costs and potentially enables more intelligent designs. Yet, presently, it is highly desirable that the introduction of structural adhesives is made with minimum impact on the automotive body framing systems. Adhesives commonly deployed in car body production (i.e. body-in-white) are applied without any prior surface preparation and final curing is carried out during the baking process that follows the electrophoretic coating. Several structural adhesives have been tailored to the conditions dictated by the automotive production process. The aim of this work is to assess the mechanical properties of adhesive joints bonded with automotive grade hot setting epoxy adhesives employed for the assembly of frame and panels. Single-lap and T-joints were fabricated and adhesive hardening was carried out following the typical curing cycle employed in the process chain of automobile production. The resulting mechanical properties were assessed before and after exposure to a standard accelerated thermal cycling under controlled humidity. The evaluation of the mechanical behavior was done through a combination of testing and analysis, which included the assessment of fracture surfaces using optical microscopy to resolve the locus of failure.
机译:车身制造的最新趋势表明,将轻质材料与粘合剂结合使用始终如一,不仅可以大大减轻重量,还可以降低成本,并有可能实现更智能的设计。然而,目前,非常希望在不影响汽车车架系统的情况下引入结构粘合剂。通常在车身生产中使用的胶粘剂(即白车身)无需任何事先的表面处理即可施涂,最终固化在电泳涂层之后的烘烤过程中进行。几种结构粘合剂已根据汽车生产过程的要求进行了定制。这项工作的目的是评估与汽车级热固性环氧胶粘剂粘合的胶粘接头的机械性能,这些胶粘剂用于框架和面板的组装。制造单圈和T形接头,并按照汽车生产过程链中采用的典型固化周期进行粘合剂硬化。在暴露于受控湿度下的标准加速热循环之前和之后评估所得的机械性能。机械性能的评估是通过测试和分析的结合进行的,其中包括使用光学显微镜评估断裂表面以解决故障的原因。

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