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A new method to reduce cure-induced stresses in thermoset polymer composites, Part II: closed loop feedback control system

机译:减少热固性聚合物复合材料中固化引起的应力的新方法,第二部分:闭环反馈控制系统

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摘要

A closed loop feedback control system has been developed to obtain cure cycles which reduce the cure-induced stresses in single fiber/matrix model composites. In this feedback system, thermal expansion and stress relaxation are used to counteract the stresses resulting from the chemical shrinkage. The feedback system is applied to two different fibers (carbon and glass) in four different resins [3501-6, 934, and 977-3 epoxies and 5250-4 bismaleimide (BMI)J. The completeness of the cure is verified by comparing glass transition temperature (T{sub}g) for polymers cured using the standard cure cycles (cycles recommended by the prepreg manufactures) and the feedback cure cycles. The durations of the feedback cure cycles are within that of the standard cycles. Test results indicate that feedback cure cycles reduce the curvature of unsymmetrical laminates as a measure of residual stresses.
机译:已经开发了一种闭环反馈控制系统来获得固化周期,该固化周期可减少单纤维/基体模型复合材料中的固化诱导应力。在此反馈系统中,热膨胀和应力松弛用于抵消化学收缩产生的应力。该反馈系统应用于四种不同树脂[3501-6、934和977-3环氧树脂和5250-4双马来酰亚胺(BMI)]中的两种不同的纤维(碳和玻璃)。通过比较使用标准固化周期(预浸料坯制造商推荐的周期)和反馈固化周期固化的聚合物的玻璃化转变温度(T {sub} g),可以验证固化的完整性。反馈固化周期的持续时间在标准周期内。测试结果表明,反馈固化循环可减少不对称层压板的曲率,作为残余应力的一种度量。

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