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Vacuum-Assisted Resin Infusion Molding (VARIM) Processing for Thick-Section Composite Laminates in Wind Turbine Blades

机译:风力涡轮机叶片中厚截面复合材料层压板的真空辅助树脂灌注成型(VARIM)工艺

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摘要

In this paper a comprehensive investigation of exothermal reaction and curing kinetics is conducted on thick glass-fiber reinforced thermoset composite laminates up to 80 plies (3.6 inches after cure) in thickness. The composite material selected for the study is a polyester-matrix-based, E-glass fabric reinforced composite system of various laminate thicknesses. Composite laminate panels of 8-inch by 8-inch in size have been infused in a setup representative of large-part VARIM processing. Through-thickness exothermic temperature, ion viscosity, degree of cure and their evolutions in the composite during processing are obtained by direct measurements of embedded thermocouples and dielectric sensors. Through-thickness curing index profiles at different time instances are determined from the DEA data and related to the instantaneous degree of cure to illustrate the curing extent and its variations in the thickness direction of the thick composite. Dimensional stability of the thick laminate composite is determined in real time during the infusion and curing processes. The important issue of the laminate-thickness effect on through-thickness gradients and their evolutions of exothermic reaction temperature and curing kinetics are addressed. Comparisons are made with a series of experiments on composite laminate panels with several different numbers of plies.
机译:在本文中,对厚达80层(固化后3.6英寸)的厚玻璃纤维增​​强热固性复合层压板进行了放热反应和固化动力学的综合研究。选择用于研究的复合材料是各种层压厚度的聚酯基,电子玻璃纤维增​​强复合系统。 8英寸乘8英寸大小的复合层压板已注入代表大型VARIM处理的装置中。通过直接测量嵌入式热电偶和介电传感器,可以获得厚度范围内的放热温度,离子粘度,固化度及其在复合材料中的演变。根据DEA数据确定不同时间实例的全厚度固化指数曲线,并与瞬时固化程度相关,以说明固化程度及其在厚复合材料厚度方向上的变化。在灌注和固化过程中实时确定厚的层压复合材料的尺寸稳定性。解决了层压厚度对全厚度梯度的影响及其放热反应温度和固化动力学的演变的重要问题。通过在具有几个不同层数的复合层压板上进行的一系列实验进行比较。

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