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ADVANCED HIGH SPEED PROGRAMMABLE PREFORMING

机译:高速高速可编程执行

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Polymer-matrix composites offer greater stiffness and strength per unit weight than conventional materials resulting in new opportunities for lightweighting of automotive and heavy vehicles. Other benefits include design flexibility, less corrosion susceptibility, and the ability to tailor properties to specific load requirements. However, widespread implementation of structural composites requires lower-cost manufacturing processes than those that are currently available. Advanced, directed-fiber preforming processes have demonstrated exceptional value for rapid preforming of large, glass-reinforced, automotive composite structures. This is due to process flexibility and inherently low material scrap rate. Hence directed fiber performing processes offer a low cost manufacturing methodology for producing preforms for a variety of structural automotive components. This paper describes work conducted at the Oak Ridge National Laboratory (ORNL), focused on the development and demonstration of a high speed chopper gun to enhance throughput capabilities. ORNL and the Automotive Composites Consortium (ACC) revised the design of a standard chopper gun to expand the operational envelope, enabling delivery of up to 20kg/min. A prototype unit was fabricated and used to demonstrate continuous chopping of multiple roving at high output. In addition fiber handling system modifications were completed to sustain the high output the modified chopper affords. These hardware upgrades are documented along with results of process characterization and capabilities assessment.
机译:聚合物 - 基质复合材料比常规材料提供更大的刚度和强度,导致汽车和重型车辆的轻量化机会。其他优点包括设计灵活性,腐蚀性耐腐蚀性,以及根据特定负载要求定制特性的能力。然而,结构复合材料的广泛实现需要比目前可用的更低的制造过程。先进的导向光纤预成型工艺已经表现出卓越的玻璃增强,汽车复合结构的快速预成型值。这是由于过程灵活性和固有的低材料废料速率。因此,指向光纤执行方法提供低成本制造方法,用于生产用于各种结构汽车部件的预制件。本文介绍了在橡树岭国家实验室(ORNL)进行的工作,专注于高速斩波枪的开发和演示,以提高吞吐量能力。 ORNL和汽车复合材料联盟(ACC)修改了标准斩波器枪的设计,以扩展操作信封,使能递送高达20kg / min。制造了原型单元,并用于在高输出处表现出多个粗纱的连续斩波。此外,纤维处理系统修改完成以维持改性斩波器提供的高输出。这些硬件升级与过程表征和功能评估的结果一起记录。

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