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Characterization of a structural adhesive in automotive environments

机译:汽车环境中结构胶的特征

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In order to achieve better fuel economy without sacrificing vehicle size, the automotive industry is motivated to utilize advanced materials, such as polymer composites, in primary structural components. When polymer composite structures are used, adhesive joining is often an attractive alternative to traditional fastening techniques and may in some cases be an enabling technology. However, successful integration of adhesively bonded materials in structural applications requires a thorough understanding of material performance. This research effort addresses characterization methods for adhesives emphasizing the durability of the material with exposure to the aggressive environments that may be encountered in typical automotive applications. Specifically, test method selection and fixture design for submerged tests will be discussed. Data will be presented for a candidate epoxy adhesive material. Studies include tensile, fatigue, and creep characterization at 21°C, 90°C, and -40°C and with exposure to brake fluid, distilled water and alcohol.
机译:为了在不牺牲车辆尺寸的情况下实现更好的燃油经济性,汽车工业在主要结构部件中使用先进材料,例如聚合物复合材料。当使用聚合物复合结构时,粘合剂连接通常是传统紧固技术的有吸引力的替代方案,并且在某些情况下可以是一种能够实现技术。然而,在结构应用中的粘合材料成功整合需要彻底了解材料性能。该研究工作解决了粘合剂的表征方法,该粘合剂强调典型汽车应用中可能遇到的侵略性环境的材料的耐用性。具体而言,将讨论测试方法选择和夹具设计的淹没测试。将呈现候选环氧粘合剂材料的数据。研究包括在21℃,90℃和-40℃下的拉伸,疲劳和蠕变表征,并且暴露于制动液,蒸馏水和醇。

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