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A new methodology for race-tracking detection and criticality in resin transfer molding process using pressure sensors

机译:使用压力传感器的树脂转移成型过程中竞争检测和临界性的新方法

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摘要

In this study, a simplified cost effective simulation-based methodology is proposed to assist manufacturing engineers in the design and development phase of the resin transfer molding process. Race-tracking is unavoidable in the resin transfer molding and can lead to entrapment of air pockets, which results in parts being discarded as scrap. A purely numerical methodology is presented to distinguish between the critical and non-critical race-tracking scenarios, that will guide the design and production engineers plan an efficient and effective manufacturing strategy. The detection methodology is based on computing the pressure evolution with time during the injection process. The novelty relies on the superimposition of the computed pressure gradient maps that reveals unsuspected common features in the numerous race-tracking cases investigated in the various geometries of increasing complexity considered. The pressure sensors are meant to detect and evaluate different race-tracking scenarios and their level of criticality. The minimum number and locations of pressure sensors arise directly from the highest pressure gradient zones for simple geometries. Sensors placement guidelines are introduced for a simple rectangular shape, then this information is used to qualitatively apply the guidelines to parts of more complex shapes. A general rule that all parts, no matter how complex, can be considered as a combination of simpler ones is presented. Furthermore, a new failure criterion is proposed based on the flow patterns that highlights the likely flow patterns to entrap voids.
机译:在本研究中,提出了一种简化的基于仿真的模拟方法,以帮助制造制造工程师在树脂转移成型过程的设计和开发阶段。在树脂转移成型中,竞赛跟踪是不可避免的,可以导致空气口袋夹紧,这导致零件被丢弃为废料。提出了一种纯粹的数值方法,以区分危急和非关键的竞争情景,这将指导设计和生产工程师计划有效且有效的制造策略。检测方法基于在注射过程中计算压力演化。新颖性依赖于在考虑增加复杂性的各种几何形状中调查的众多种族跟踪案例中的计算压力梯度图的叠加依赖于所计算的压力梯度图。压力传感器旨在检测和评估不同的竞争跟踪场景及其临界程度。压力传感器的最小数量和位置直接由最高压力梯度区域产生,用于简单的几何形状。传感器介绍了一个简单的矩形形状的放置指南,那么这些信息用于定性地将指南应用于更复杂的形状的一部分。一般规则,所有部分,无论如何复杂,都可以被视为呈现更简单的组合。此外,基于流动模式提出了一种新的故障标准,该流动模式突出显示可能的流动模式以诱捕空隙。

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