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Experimentally Investigation of Curing Shrinkage of Extra Low Dilated Epoxy by Fiber Bragg Gratings

机译:光纤布拉格光栅对超低膨胀环氧树脂固化收缩率的实验研究

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The bonding adhesion with low shrinkage and coefficient of thermal expansion is really important for packaging of the photonic and optoelectronic elements.Lots of the thermoset glue is thus developed for this packaging.however,the curing shrinkage of the adhesion is relatively large.The silica filler is usually mixed into the epoxy for lowering the curing shrinkage and the CTE.In this study,the filler with negative CTE is derived to decrease the CTE and shrinkage of the composite epoxy.The fiber Bragg gratings is built in the composite of epoxy/filler.The adhesive composite is then put into the temperature cycle chamber for curing.At the meanwhile the FBGs during curing is on-line monitored by the Optical Oscillation Analyzer.Measuring the variation of the central wavelength of FBGs,the curing shrinkage of the composite epoxy with NCTE filler can be is derived.The results show that axial stress is increased drastically during the chemical curing stage.By application of this NCTE filler/epoxy adhesion,the property of the lower shrinkage is expected.
机译:具有低收缩率和热膨胀系数的粘合粘合力对于光子和光电元件的包装非常重要。因此开发了很多热固性胶水用于这种包装。但是,粘合胶的固化收缩率相对较大。二氧化硅填料通常将其掺入环氧树脂中以降低固化收缩率和CTE。在本研究中,衍生出具有负CTE的填料以降低复合环氧树脂的CTE和收缩率。然后将胶粘剂复合材料放入温度循环室进行固化,同时通过光学振荡分析仪在线监测​​固化过程中的FBG。测量FBGs中心波长的变化,以观察复合环氧树脂的固化收缩率结果表明,在化学固化阶段轴向应力急剧增加。 /环氧粘合,预期具有较低收缩率的性能。

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