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MEASUREMENT OF CTE CHANGE IN COMPOSITE LAMINATE UNDER SPACE ENVIRONMENT USING FIBER OPTIC SENSORS

机译:使用光纤传感器在空间环境下复合层压板的CTE变化测量

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In this research, the change of coefficient of thermal expansion (CTE) of graphite/epoxy composite laminate under space environment was measured using fiber optic sensors. Two fiber Bragg grating (FBG) sensors have been adopted for the simultaneous measurement of thermal strain and temperature. Low earth orbit (LEO) conditions with high vacuum, ultraviolet and thermal cycling environments were simulated in a thermal vacuum chamber. As a pre-test, a FBG temperature sensor was calibrated and a FBG strain sensor was verified through the comparison with the electric strain gauge (ESG) attached on an aluminum specimen in the same temperature range with the thermal cycling. The change of the CTE in composite laminate exposed to space environment was measured for intervals of aging cycles in real time. As a whole, there was no abrupt change of the CTE after 1000 aging cycles. After aging, however, the CTE decreased a little all over the test temperature range. These changes are caused by outgassing, moisture desorption, matrix cracking etc.
机译:在该研究中,使用光纤传感器测量空间环境下石墨/环氧复合层压板的热膨胀系数(CTE)的变化。已经采用了两个纤维布拉格光栅(FBG)传感器用于同时测量热应变和温度。在热真空室中模拟具有高真空,紫外线和热循环环境的低地轨道(LEO)条件。作为预测试,通过与热循环在相同温度范围内的铝样品上附着在相同温度范围内的铝样品上的电应变仪(ESG)的比较来验证FBG温度传感器的校准,并且通过热循环,验证FBG应变传感器。测量在空间环境中暴露于空间环境中的CTE的变化,以实时测定老化循环的间隔。总的来说,1000次老化周期后CTE突然变化。然而,老化后,CTE在测试温度范围内降低了一半。这些变化是由过缺,水分解吸,基质开裂等引起的。

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