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Effect of coupled mechanical and thermal loading on adhesively bonded joints between metal and composites in automotive structures

机译:耦合机械和热负荷对汽车结构中金属和复合材料粘接接头的影响

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With the increased motivation for high fuel efficiency, most automotive research and development efforts are being directed at reducing the weight of an automobile without sacrificing the performance related to safety, durability and NVH. Body structure is one of the viable components for weight reduction. Therefore, use of composites, in particular fiber reinforced plastics are seen as a viable alternative to metals to reduce body weight with the lowest penalty on performance and cost. One could expect future vehicles to be a combination of light weight metals and non metals involving a lot of adhesively bonded interfaces. Structural analysis of these bonded joints subjected to mechanical loads is essential. However, since fiber reinforced plastics are subject to temperature effects, an analysis of structure involving such adhesively bonded materials should account not only for mechanical loading effects but also for the thermal loading effects. In particular since geometric and material discontinuities pose the problem of stress concentration, a coupled thermo-mechanical analysis of the bonded joints become critical from a durability perspective. This paper provides a methodology and results from an ongoing work on the stress analysis at adhesively bonded joint interfaces between metals and plastics subjected to coupled mechanical and thermal loading.
机译:随着高燃料效率的动机增加,大多数汽车研发努力都针对减少汽车的重量而不牺牲与安全性,耐用性和NVH相关的性能。体结构是减轻重量的可行组件之一。因此,使用复合材料,特别是纤维增强塑料被视为金属的可行替代品,以减少体重,以降低性能和成本的最低刑罚。人们可以指望未来的车辆是轻量级金属和非金属的组合,包括许多粘合粘合界面。对受机械载荷进行的这些粘合关节的结构分析至关重要。然而,由于纤维增强塑料受到温度效应,因此涉及这种粘接材料的结构的分析应不仅应考虑机械载荷效果,也应考虑到热负荷效应。特别地,由于几何和材料的不连续性构成了应力浓度的问题,因此粘合接头的耦合热机械分析从耐久性角度变得严重。本文提供了持续的方法和结果,该方法是对经过耦合机械和热负荷的金属和塑料之间的粘合接头界面的应力分析的应力分析。

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