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Integrated development of CFRP structures for a topless high performance vehicle

机译:集成开发用于裸照高性能车辆的CFRP结构

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摘要

When modern saloon cars are re-engineered as convertibles (or roadsters) it is typical for them to lose 50% or more of the body's torsional rigidity. Consequently the vehicles rarely handle quite as crisply, nor do they ride as well as the coupes from which they derived. This paper highlights the fundamental contributions of advanced composites in achieving the desired value of handling of the Murcielago Roadster without penalizing the overall weight of the vehicle. To compensate for the absence of the roof structure, the vehicle was strongly redesigned by introducing new structural members and reinforcing existing critical components. A new all-carbon/epoxy composite sub-frame, which spans the entire engine bay, is comprised of elliptical tubular members, and it is the first of its kind in a production vehicle. Engineering of the sub-frame, from preliminary design to manufacturing decisions, is the focus of this paper, and is achieved through a Building Block approach that sets the program within the Integrated Product Development (IPD) strategy that the Advanced Composites Division of Automobili Lamborghini S.p. A. employs for its technology demonstrators. The strategy consists in a concurrent analytical and experimental development of the product, from the initial conceptual design and coupon testing, through the stages of element and subcomponent engineering, to final component manufacturing.
机译:当现代四门轿车重新设计为敞篷车(或敞篷跑车)时,通常会损失50%或更多的车身扭转刚度。因此,这些车辆很少能像现在这样轻松地操纵,也不能像其衍生出的双门轿跑车那样行驶。本文着重介绍了先进复合材料在实现理想的Murcielago敞篷跑车操纵值方面的基本贡献,同时又不损害车辆的整体重量。为了弥补车顶结构的缺失,通过引入新的结构构件和加固现有的关键零部件对车辆进行了重新设计。一个新的全碳/环氧复合材料副车架横跨整个发动机舱,由椭圆形管状部件组成,并且是量产车中的同类产品中的第一个。从初步设计到制造决策的子框架工程是本文的重点,并且是通过构建模块方法实现的,该方法将程序设置在兰博基尼汽车高级复合材料事业部的集成产品开发(IPD)策略中SP A.为其技术演示人员聘用。该策略包括产品的并行分析和实验开发,从最初的概念设计和试件测试到元素和子组件工程设计阶段,再到最终组件制造。

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