首页> 外文会议>Automotive Composites Conference Exhibition >THERMOPLASTIC COMPOSITES IN STRUCTURAL LIGHTWEIGHT APPLICATIONS - POTENTIAL OF UNIDIRECTIONAL FIBER REINFORCEMENT SANDWICH STRUCTURES
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THERMOPLASTIC COMPOSITES IN STRUCTURAL LIGHTWEIGHT APPLICATIONS - POTENTIAL OF UNIDIRECTIONAL FIBER REINFORCEMENT SANDWICH STRUCTURES

机译:结构轻质应用中的热塑性复合材料 - 单向纤维增强件和夹层结构的潜力

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Thermoplastic fiber composites are suited to a wide range of application areas due to their broad property profile, which ranges from standard to high-performance polymers combined with highly technological and automated production processes such as injection molding. By incorporating discontinuous fiber reinforcements into the polymer matrix, all areas of the part are nearly equally reinforced. With local continuous reinforcements it is possible to reduce fiber use to the most highly loaded areas of the components. This method, which draws on principles applied in nature, strengthens the parts with only a slight weight or even no weight increase compared to non-reinforced parts. The combination of injection molding as a process for large-scale production with the excellent mechanical properties resulting from continuous-fiber-reinforcements enables the production of high-strength components at reasonable cost. This paper presents the investigations of process developments with injection molded components in combination with wound and planar fiber structures. Fundamental experiments are presented with tensile loaded structures in the first case and flexural loaded structures in the second. The results lead to a better understanding of the influence of local continuous-fiber reinforcements and their applicability in structural components.
机译:热塑性纤维复合材料由于其宽的性质剖面而定于各种应用领域,其从标准到高性能聚合物的范围,结合高度技术和自动化生产过程,如注射成型。通过将不连续纤维增强物掺入聚合物基质中,部分的所有区域几乎同样增强。随着局部连续增强件,可以将光纤用于组件的最高负载区域。这种方法借鉴本质上施加的原理,与非加强部件相比,仅具有略微重量或甚至没有重量增加的部件。注射成型作为大规模生产的过程的组合具有由连续纤维增强件产生的优异的机械性能,使得能够以合理的成本生产高强度部件。本文介绍了注塑成型组分与伤口和平面纤维结构的过程开发的研究。基本实验在第一壳体中具有拉伸装载的结构,并在第二种情况下弯曲负载结构。结果导致更好地了解局部连续纤维增强件的影响及其在结构部件中的适用性。

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