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A mass reduction effort of the electric and hybrid vehicle

机译:电动和混合动力汽车的减量化工作

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摘要

Weight reduction, cost competitiveness, and elimination of the intrusion beam resulted from the redesign and fabrication using composite materials of the door outer panel and intrusion beam from a Chevrolet Impala. The basis of the redesign involved replacing these two steel parts with a single compression molding using the unique approach of simultaneously curing a sheet molding compound outside panel with a continuous glass fiber intrusion strap. A weight reduction of nearly 11 pounds per door was achieved. Additional weight savings are possible by taking advantage of the elimination of the intrusion beam to design thinner door structures. The parts consolidation approach allows the composite structure to be cost competitive with the original steel design for both the lower production car models and for the near to midterm production vehicles using current state of the art composite production techniques. The design, prototype fabrication, costing, material, properties and compression molding production requirements are discussed.
机译:减轻重量,降低成本竞争力并消除了防撞梁的产生是由于采用了门外面板和雪佛兰黑斑羚的防撞梁的复合材料进行的重新设计和制造。重新设计的基础包括使用独特的方法通过一次压缩成型法替换这两个钢制零件,该独特方法是使用连续的玻璃纤维压铸带同时固化外部的板材成型复合材料。每个门的重量减少了近11磅。通过消除入侵梁来设计更薄的门结构,可以进一步减轻重量。零件合并方法使复合材料结构在成本较低的情况下与采用当前最新复合材料生产技术的低产量汽车模型以及中短期生产车辆的原始钢设计相比具有成本优势。讨论了设计,原型制造,成本,材料,性能和压铸生产要求。

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