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首页> 外文期刊>Journal of Composite Materials >Thermal models for MTM45-1 and Cycom 5320 out-of-autoclave prepreg resins
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Thermal models for MTM45-1 and Cycom 5320 out-of-autoclave prepreg resins

机译:MTM45-1和Cycom 5320高压灭菌预浸树脂的热模型

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摘要

Out-of-autoclave prepregs require a two-step cure cycle. The first step is a low temperature cure to consolidate the laminate and build sufficient green strength to proceed to the second step, a free-standing post-cure at traditional autoclave temperatures to fully cross-link the resin. Process modeling can help design a robust cure cycle to avoid scrapping large parts in production. The focus of this article is to develop the cure kinetics, viscosity, and glass transition temperature models for two commercially available out-of-autoclave epoxy resins. Since the cure kinetics model is the basis for all other thermal models, the cure kinetics model was validated using a one-dimensional heat transfer analysis on thick prepreg laminates. Finally, the out-of-autoclave resin models were compared to a traditional autoclave resin system to highlight the difference in resin reactivity for out-of-autoclave processing.
机译:高压灭菌的预浸料需要两步固化周期。第一步是低温固化,以固化层压板并建立足够的生胶强度,以进行第二步,即在传统高压釜温度下进行的独立后固化,以使树脂完全交联。工艺建模可以帮助设计强大的固化周期,从而避免在生产中报废大型零件。本文的重点是为两种市售的高压釜外环氧树脂开发固化动力学,粘度和玻璃化转变温度模型。由于固化动力学模型是所有其他热模型的基础,因此使用一维传热分析对厚的预浸料层压板进行了固化动力学模型的验证。最后,将高压釜树脂模型与传统的高压釜树脂系统进行了比较,以突出高压釜加工过程中树脂反应性的差异。

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