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BMI树脂化学流变模型及RTM工艺窗口预报研究
引用本文:段跃新,张宗科,梁志勇,林云,赵渠森,孙冬生,谢富元.BMI树脂化学流变模型及RTM工艺窗口预报研究[J].复合材料学报,2001,18(3):30-33.
作者姓名:段跃新  张宗科  梁志勇  林云  赵渠森  孙冬生  谢富元
作者单位:1. 北京航空航天大学104教研室
2. 北京航空工艺研究所
基金项目:国家自然科学基金,59773004,59833110,
摘    要:研究用于航空结构复合材料的RTM工艺专用双马来酰亚胺树脂(BMI)体系化学流变特性,并建立其双阿累尼乌斯流变模型。模型对树脂粘度的模拟结果与实验结果具有良好的一致性。所建立的粘度模型可有效模拟该树脂在不同工艺条件下的粘度行为,准确预报树脂体系的低粘度工艺窗口,为优化RTM工艺参数和保证产品质量提供必要的科学依据。

关 键 词:复合材料  RTM工艺  BMI树脂  流变模型
文章编号:1000-3851(2001)03-0030-04
收稿时间:2000-08-04
修稿时间:2000年8月4日

RHEOLOGICAL MODEL AND PREDICTION OF PROCESSING WINDOWS OF BMI RESIN FOR RTM PROCESSES
DUAN Yue-xin,ZHANG Zong-ke,LIANG Zhi-yong,LIN Yun,ZHAO Qu-sen,SUN Dong-sheng,XIE Fu-yuan.RHEOLOGICAL MODEL AND PREDICTION OF PROCESSING WINDOWS OF BMI RESIN FOR RTM PROCESSES[J].Acta Materiae Compositae Sinica,2001,18(3):30-33.
Authors:DUAN Yue-xin  ZHANG Zong-ke  LIANG Zhi-yong  LIN Yun  ZHAO Qu-sen  SUN Dong-sheng  XIE Fu-yuan
Affiliation:1. Beijing University of Aeronautics and Astronautics, Beijing 100083,China; 2. Beijing Aeronautics Technical Institute, Beijing 100024,China
Abstract:The chemorheological behaviors of bismaleimide resin (QY8911-4) for Resin Transfer Molding (RTM) were studied. A chemorheological model of the resin was developed based on dual-arrhenius equation. The estimated viscosity values of the established model are in good agreement with the experimental ones.The model was used to determine the critical low viscosity windows of the resin system for RTM processes. The optimum processing parameters of QY8911-4 resin for RTM are 100 ℃~110 ℃ at which the viscosity of the resin will be less than 200 cP within 55 minutes. These parameters are essential for the manufacture of structure composites with high fiber content. The longer pot life of the resin also can be obtained with low working temperature between 90 ℃ and 100 ℃, in which the viscosity of the resin can keep less than 800 cP. The developed model is important for processing simulation, parameter optimization and quality control for RTM processes.
Keywords:composites  RTM  BMI  manufacture  rheology
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