红外与激光工程
紅外與激光工程
홍외여격광공정
INFRARED AND LASER ENGINEERING
2014年
11期
3713-3717
,共5页
尺寸稳定性%复合材料%热真空
呎吋穩定性%複閤材料%熱真空
척촌은정성%복합재료%열진공
dimensional stability%composite materials%thermal vacuum
航天光学遥感器在轨运行时的环境与地面装调时有很大差异,对于采用复合材料的遥感器而言,在轨运行时由于材料受湿气解析的影响其几何尺寸将发生变化,进而影响遥感器的成像质量。因此,模拟在轨环境下复合材料几何尺寸稳定性测试,分析其在轨条件下的几何尺寸变形是十分必要的。提出了一种在热真空环境下,采用激光双频干涉原理对复合材料几何尺寸变形量的高精度测试方法,对该方法进行了方案验证与精度分析。针对采用碳纤维蒙皮/铝蜂窝夹层结构复合材料的某相机前镜筒进行了实际的热真空环境下几何尺寸变形量测试。结果表明,试验数据与理论数值在数量级上相同,提出的测试方案可行,为复合材料模拟在轨环境下几何尺寸变形量提供了一种测试手段。
航天光學遙感器在軌運行時的環境與地麵裝調時有很大差異,對于採用複閤材料的遙感器而言,在軌運行時由于材料受濕氣解析的影響其幾何呎吋將髮生變化,進而影響遙感器的成像質量。因此,模擬在軌環境下複閤材料幾何呎吋穩定性測試,分析其在軌條件下的幾何呎吋變形是十分必要的。提齣瞭一種在熱真空環境下,採用激光雙頻榦涉原理對複閤材料幾何呎吋變形量的高精度測試方法,對該方法進行瞭方案驗證與精度分析。針對採用碳纖維矇皮/鋁蜂窩夾層結構複閤材料的某相機前鏡筒進行瞭實際的熱真空環境下幾何呎吋變形量測試。結果錶明,試驗數據與理論數值在數量級上相同,提齣的測試方案可行,為複閤材料模擬在軌環境下幾何呎吋變形量提供瞭一種測試手段。
항천광학요감기재궤운행시적배경여지면장조시유흔대차이,대우채용복합재료적요감기이언,재궤운행시유우재료수습기해석적영향기궤하척촌장발생변화,진이영향요감기적성상질량。인차,모의재궤배경하복합재료궤하척촌은정성측시,분석기재궤조건하적궤하척촌변형시십분필요적。제출료일충재열진공배경하,채용격광쌍빈간섭원리대복합재료궤하척촌변형량적고정도측시방법,대해방법진행료방안험증여정도분석。침대채용탄섬유몽피/려봉와협층결구복합재료적모상궤전경통진행료실제적열진공배경하궤하척촌변형량측시。결과표명,시험수거여이론수치재수량급상상동,제출적측시방안가행,위복합재료모의재궤배경하궤하척촌변형량제공료일충측시수단。
The in﹣orbit environment for space remote sensor is much more different from that in the ground; the deformation of the composite materials which is affected by the moisture desorption will result in the imaging quality of space remote sensor. The methods of measurement for the dimensional stability of the composite materials must be studied specially. A method which was using the principle of laser interference for measuring the deformation of the composite materials when subjected to the in﹣orbit thermal﹣vacuum environmental conditions was proposed. The method was verified and the precision was analyzed. It indicates that the method has higher precision than others. A experience which was based on the carbon fiber/aluminous honeycomb core composite materials was done to analyze the dimensional stability of the composite materials. The results show that the experimental data and theoretical data are the same in order of magnitude. The method is feasible and can be used in testing the dimensional stability of composite materials.