首页> 外文会议>ASME International Mechanical Engineering Congress and Exposition >A PORT INJECTION PROCESS FOR IMPROVED RESIN DELIVERY AND FLOW CONTROL IN VACUUM-ASSISTED RESIN TRANSFER MOLDING
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A PORT INJECTION PROCESS FOR IMPROVED RESIN DELIVERY AND FLOW CONTROL IN VACUUM-ASSISTED RESIN TRANSFER MOLDING

机译:用于改进树脂输送和真空辅助树脂转移成型中的树脂输送和流量控制的端口注入工艺

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Vacuum Assisted Resin Transfer Molding (VARTM) is used to produce high quality composite parts at lower cost than other manufacturing methods. However, traditional VARTM injection methods are incapable of accounting for variations in preform permeability within a mold. As a result, creating complex components is a labor intensive and expensive process often requiring a trial and error approach to insure complete infusion of the preform fibers. To address this limitation, a new system for delivering resin to a VARTM mold using a series of ports in the tooling surface rather than traditional injection lines has been developed. A port injection process has been designed that utilizes a closed loop control system of ports and sensors built into the mold. Finite element models of this new process indicate complete infusion can consistently be achieved, even for mold lay-ups with large variations in permeability. Results indicate the system is capable of identifying and accounting for preform variability, and correctly delivering resin to low permeability regions usually unfilled with conventional VARTM. In addition, this new technique significantly reduces lay-up time and total time to infuse a part. Experiments with a prototype lab-scale mold have been used to validate the performance of this new injection process. Unlike a conventional VARTM setup, the innovative port injection process can deliver resin to any location within the mold, thus reducing the potential for dry regions and improving part quality and consistency.
机译:真空辅助树脂转移成型(Vartm)用于生产比其他制造方法更低的高质量复合零件。然而,传统的Vartm注射方法无法算用于模具内的预制件渗透性的变化。因此,创建复杂的组件是一种劳动密集型和昂贵的过程,通常需要试验和误诊以确保完全输注预制纤纤维。为了解决该限制,已经开发了一种用于使用工具表面中的一系列端口而不是传统喷射线来将树脂输送到活性模具的新系统。设计了一种端口注入过程,它利用了模具中内置的端口和传感器的闭环控制系统。这种新方法的有限元模型表明可以一致地实现完全输注,即使对于具有渗透性的大变化的模具叠层。结果表明,该系统能够识别和算用于预成型件可变性,并将树脂正确递送到低渗透区域,通常未填充常规六浆。此外,这种新技术显着降低了铺设时间和总时间来注入零件。使用原型实验室模具的实验已被用于验证该新注射过程的性能。与传统的Vartm设置不同,创新的端口注入工艺可以将树脂递送到模具内的任何位置,从而减少干燥区域的可能性,提高零件质量和一致性。

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