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Stiffness and Thermal Analysis of Doubly Curve Sandwich Panel for an Automobile Application

机译:用于汽车应用双曲线三明治板的刚度和热分析

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摘要

Automotive industry is rapidly going. More and more comforts are being incorporated in a vehicle. On other hand customers have stringent demand of fuel economy, high performance at low cost. In order to have high fuel economy the automotive manufacturers are induced to reduce weight. In this project car body panel is selected as a target weight reduction component. This can be achieved either using high strength low weight material or by using low weight composite sandwich panel. Aluminum composite (Aluminum skin, polyethylene core and epoxy resin) material being light and strong, it is thought as an alternative material. By using this doubly curve sandwich panel, required stiffness can be achieved with reduced thickness and weight. More over this panel prevents the heat flux infiltration and hence improve air conditioner efficiency. Stiffness and thermal analysis of the panel was carried out using Finite Element Solution. Weight reduction 30.55% has been achieved for the same stiffness and 47.73% lesser heat infiltration has been observed than that with Aluminum panel.
机译:汽车工业正在迅速发展。越来越多的舒适是在车辆中被融入。另一方面,顾客对燃油经济性严格的需求,低成本的性能高。为了具有高燃料经济性,诱导汽车制造商减轻体重。在该项目中,选择车身面板作为目标重量减少组件。这可以通过使用高强度低重量材料或使用低重量复合夹层面板来实现。铝合金复合(铝皮,聚乙烯芯和环氧树脂)材料是轻的,它被认为是一种替代材料。通过使用这种双曲线夹心板,可以通过减小的厚度和重量来实现所需的刚度。更多在该面板中可防止热通量渗透,从而提高空调效率。使用有限元溶液进行面板的刚度和热分析。对于相同的刚度,已经实现了重量减少30.55%,并且已经观察到较低的热渗透比用铝面板观察到47.73%。

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