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Effect of foam filling and lightweight metallic or composite reinforcements on the energy absorption in fiber-reinforced plastic automotive cross sections

机译:泡沫灌装和轻质金属或复合增强对纤维增强塑料汽车横截面能量吸收的影响

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The automobile industry is seeing an increased need for the application of plastics and their derivatives in various forms such as fiber-reinforced plastics, in the design and manufacture of various automotive structural components, to reduce weight, cost and improve fuel efficiency. A lot of effort is being directed at the development of structural plastics, to meet specific automotive requirements such as stiffness, safety, strength, durability, environmental standards and recyclability. This paper presents the many different conceptual cross sections being evaluated during the development of fiber reinforced plastic automotive cross sections. The concepts consists of foam filling of the fiber-reinforced plastic cross sections with lightweight metal or composite reinforcements. The metal reinforcement is in the form of lightweight metallic tubes. The composite reinforcement is in the form of a carbon fiber bundle. In particular the energy absorbed during a quasi-static crush test is considered. Energy efficiency in terms of the energy absorbed per unit mass for each concept section is compared. The idea is to develop the lightest weight section possible with the maximum energy absorption capacity. Since fiber-reinforced plastics are sensitive to temperature variations, some results on the energy absorption at elevated and reduced temperatures are also presented. Comments are made on plausible sections for maximum energy efficiency.
机译:汽车工业正在升高需要在各种汽车结构部件的设计和制造方面以各种形式应用塑料及其衍生物的需求,以减少重量,成本和提高燃料效率。在结构塑料的发展方面正在努力,满足刚度,安全,强度,耐用性,环境标准和可回收性等特定的汽车需求。本文介绍了在纤维增强塑料汽车横截面开发过程中进行了许多不同的概念横截面。该概念由具有轻质金属或复合增强剂的纤维增强塑料横截面的泡沫填充物组成。金属加强件是轻质金属管的形式。复合增强材料是碳纤维束的形式。特别地,考虑在准静态压碎测试期间吸收的能量。比较每个概念部分每单位质量吸收的能量方面的能效。该想法是通过最大能量吸收能力开发最轻的重量段。由于纤维增强塑料对温度变化敏感,因此还呈现了一些导致升高和降低温度的能量吸收。评论是在合理的部分上进行的,以获得最大能量效率。

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