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Monitoring and Controlling Manufacturing for Composite Using Fiber Bragg Grating

机译:光纤布拉格光栅对复合材料制造的监控

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Composite Compression Molding Process is one of the most popular manufacturing technology of polymeric matrix composite. Temperature and pressure are the most import parameters and have a great influence on structure quality. Improper temperature cycle may induce significant residual stresses in composite, while improper pressure-applied moment and magnitude may effect the fiber distribution along the thickness of composite. Fiber Bragg grating (FBG) was used to monitor the temperature evolution and residual stress of composite laminates during the cure process. Temperature evolution was taken into relationship of epoxy resin chemo-rheological model and concluded the real-time viscosity during the manufacture. The different viscosity selected to applying pressure according to the real-time monitoring temperature. The residual strain of composite laminates which manufactured by Compression Molding Process at different pressure-applied moments were compared. The proper pressure-applied range was determined and the best properties of the laminates were obtained in it. Examination experiment was done in which the fixed viscosity value was taken as a signal when pressure was applied. Closed loop controlling and digital production are performed.
机译:复合压缩成型工艺是聚合物基复合材料最流行的制造技术之一。温度和压力是最重要的参数,对结构质量影响很大。不正确的温度循环可能会在复合材料中引起显着的残余应力,而不适当地施加的压力和幅度可能会影响纤维沿复合材料厚度的分布。光纤布拉格光栅(FBG)用于监测固化过程中复合材料层压板的温度变化和残余应力。将温度演变纳入环氧树脂化学流变模型的关系,得出制造过程中的实时粘度。根据实时监控温度选择施加压力的不同粘度。比较了在不同的压力施加时刻,通过压缩成型工艺制造的复合层压板的残余应变。确定适当的压力施加范围,并在其中获得层压板的最佳性能。进行了试验实验,其中当施加压力时将固定粘度值作为信号。进行闭环控制和数字化生产。

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