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Light-weight Sandwich Panel Honeycomb Core with Hybrid Carbon-Glass Fiber Composite Skin for Electric Vehicle Application

机译:轻量级夹层面板蜂窝芯,具有混合碳玻璃纤维复合皮肤的电动汽车应用

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The carbon fiber reinforced plastic (CFRP) composite is relative high cost material in current manufacturing process of electric vehicle body structure. Sandwich panels consisting polypropylene (PP) honeycomb core with hybrid carbon-glass fiber composite skin were investigated. The aim of present paper was evaluate the flexural properties and bending rigidity of various volume fraction carbon-glass fiber composite skins with the honeycomb core. The flexural properties and cost of panels were compared to the reported values of solid hybrid Carbon/Glass FRP used for the frame body structure of electric vehicle. The finite element model of represented sandwich panel was established to characterize the flexural properties of material using homogenization technique. Finally, simplified model was employed to crashworthiness analysis for engine hood of the body electric vehicle structure. The good cost-electiveness of honeycomb core with hybrid carbon-glass fiber skin has the potential to be used as a light-weight alternative material in body electric vehicle fabricated.
机译:碳纤维增强塑料(CFRP)复合材料是电气车身结构的当前制造过程中的相对高成本材料。调查了具有杂种碳玻璃纤维复合皮肤的聚丙烯(PP)蜂窝芯的夹层面板。本文的目的是评价各种体积碳玻璃纤维复合皮肤与蜂窝芯的弯曲性能和弯曲刚度。将面板的弯曲性能和成本与用于框架体结构的固体混合碳/玻璃FRP的值进行比较。建立了代表夹层板的有限元模型,以表征材料使用均质技术的弯曲性能。最后,使用简化模型对车身电动车辆结构的发动机罩进行崩溃分析。蜂窝芯与杂种碳玻璃纤维皮肤的良好成本选择性具有在制造的身体电动车辆中的轻质替代材料。

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