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Numerical Analysis of Hybrid Joining in Car Body Applications

机译:车身应用中混合联接的数值分析

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摘要

Nowadays, there are two fundamental issues in car body design. On the one hand, there is the need for weight reduction in order to reduce fuel consumption and, consequently, pollutant emissions, and on the other hand, there are ever more stringent safety requirements. To meet these targets, the trend is towards using hybrid structures made of unconventional materials, like aluminium, polymeric and composite materials. The use of these materials brings about some problems, one of them is associated with the joining techniques because the traditional resistance spot-welding, used in the assembly of a common steel chassis, cannot be used. Among the different alternative solutions, the most promising is the use of structural adhesives. From this perspective, this work aims to model the behaviour of simplified crash box elements made of different types of materials joined together by structural adhesives. In particular, the attention was focused on the adhesive joint modelling with a cohesive element formulation. Starting from experimental results for the characterization of the adhesive, the cohesive parameters were identified. The results were then applied to model the crushing of simplified crash boxes. The crushing axial compression of these components was investigated considering geometrical and loading conditions. The models were developed and verified by comparing the numerical with experimental results on these components. A good correlation was found in all loading conditions and with different geometries and substrate combinations.
机译:如今,车身设计存在两个基本问题。一方面,需要减轻重量以减少燃料消耗,从而减少污染物排放,另一方面,对安全性的要求越来越严格。为了实现这些目标,趋势是使用由非常规材料制成的混合结构,例如铝,聚合物和复合材料。这些材料的使用带来了一些问题,其中之一与连接技术有关,因为不能使用在普通钢底盘的组装中使用的传统电阻点焊。在不同的替代解决方案中,最有前途的是使用结构粘合剂。从这个角度出发,这项工作旨在对简化碰撞盒元件的行为进行建模,该碰撞盒元件是由不同类型的材料通过结构粘合剂连接在一起的。特别地,注意力集中在具有内聚元件配方的粘合剂接头建模上。从表征胶粘剂的实验结果出发,确定了内聚参数。然后将结果应用于简化的碰撞箱破碎模型。考虑了几何和载荷条件,研究了这些部件的轴向压碎。通过将这些组件的数值与实验结果进行比较,开发并验证了模型。在所有装载条件下以及不同的几何形状和基材组合下均发现了良好的相关性。

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