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Die-Attached Versus Die-Detached Resin Injection Chamber for Pultrusion

机译:用于拉挤成型的模架与模架树脂注入室

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Resin injection pultrusion is an efficient and highly automated continuous process for high-quality, low-cost, high-volume manufacturing of composites. The main objective of this study is to explore the “attached-die configuration” and “detached-die configuration” for improving the resin injection pultrusion process. In this work the impact of pull speed on complete wet out of the reinforced fiber is investigated for attached-die and detached-die resin injection pultrusion with various chamber length considerations. A 3-D finite volume technique was applied to simulate the liquid resin flow through the fiber reinforcement in the injection pultrusion process. This work explores the resin injection pressure needed to achieve complete wet out and the corresponding maximum pressure inside the resin injection chamber so as to improve injection chamber design to keep the pressure within the injection chamber within reasonable constraints for different pull speeds.
机译:树脂注射拉挤成型是一种高效,高度自动化的连续过程,用于复合材料的高质量,低成本,大批量生产。这项研究的主要目的是探索“连接模配置”和“分离模配置”,以改善树脂注射拉挤成型工艺。在这项工作中,对于附着模头和分离模头树脂注射拉挤成型,考虑了各种腔室长度的考虑因素,研究了拉速对增强纤维完全润湿的影响。应用了3-D有限体积技术来模拟液态树脂在注射拉挤成型过程中流经纤维增强材料的过程。这项工作探索了实现完全浸湿所需的树脂注入压力以及树脂注入室内的相应最大压力,从而改进了注入室设计,以将注入室内的压力保持在不同拉速下的合理限制范围内。

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