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Fast cure of stable semi-pregs via VBO cure

机译:通过VBO治疗快速固化稳定半法

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To address the need for increased efficiency in high performance composite processing, a vacuum bag only (VBO) semi-preg was designed, modeled, and evaluated. The semi-preg featured a vinyl hybrid resin formulated for rapid cure. A model was developed to describe the kinetic behavior of the resin, and then was employed to guide the design of efficient cure cycles. The semi-preg featured a discontinuous distribution of resin on the fiber bed. The format imparted high through-thickness air permeability by virtue of the multitude of air evacuation pathways with short breath-out distances relative to conventional out-of-autoclave prepregs (OoA). The kinetic model was used to create a test matrix of panels from the semi-pregs. Microstructural quality, interlaminar shear strength, and glass transition temperature were compared to a control panel with a longer, conventional cure cycle. The results demonstrated that fast-cure resins can be used in conjunction with cure modeling and semi-preg formats to design appropriate VBO cure cycles that consistently yield parts with low defect contents without autoclaves.
机译:为了满足高性能复合处理中提高效率的需求,仅设计了真空袋(VBO)半PREG设计,建模和评估。半PREG精选配方用于快速固化的乙烯基杂化树脂。开发了一种模型以描述树脂的动力学行为,然后使用引导有效的固化循环的设计。半PREG在纤维床上采用了不连续的树脂分布。该格式借助于众多的空气抽空途径赋予高通厚的透气性,相对于传统的高压釜预浸料(OOA)短呼吸距离。动力学模型用于从半法中创建面板的测试矩阵。将微结构质量,层间剪切强度和玻璃化转变温度与具有更长的常规固化循环的对照面板进行比较。结果表明,快速固化树脂可以与固化建模和半PREG格式结合使用,以设计适当的VBO固化循环,以始终如一地产生具有低缺陷含量的缺陷含量而没有高压釜。

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