稀有金属材料与工程
稀有金屬材料與工程
희유금속재료여공정
RARE METAL MATERIALS AND ENGINEERNG
2009年
z2期
743-746
,共4页
多树旺%刘庭芝%邹小平%钟鸿雁%孙晓琳%杨振华
多樹旺%劉庭芝%鄒小平%鐘鴻雁%孫曉琳%楊振華
다수왕%류정지%추소평%종홍안%손효림%양진화
原子氧%防护涂层%Al_2O_3%SiO_2%溶胶-凝胶
原子氧%防護塗層%Al_2O_3%SiO_2%溶膠-凝膠
원자양%방호도층%Al_2O_3%SiO_2%용효-응효
atomic oxygen%protective coatings%Al_2O_3%SiO_2%sol-gel
采用溶胶-凝胶法,以异丙醇铝、正硅酸乙酯为原料制得了稳定、均一的溶胶,浸涂在聚酰亚胺表面干燥后获得了致密透明的涂层.采用空间综合环境地面模拟设备对试样进行了原子氧(Atomic Oxygen, AO)暴露实验.测试表明,溶胶-凝胶制备的Al_2O_3-SiO_2涂层抗原子氧侵蚀性能优异,抗原子氧侵蚀性能比聚酰亚胺基体提高了2个数量级以上.经原子氧暴露后的复合陶瓷涂层质量几乎没有发生变化.经FTIR和XPS分析表明,在原子氧暴露后涂层表面产生的是Al_2O_3-SiO_2复合物.SEM分析表明,无涂层的聚酰亚胺原子氧暴露后表面非常粗糙且表面呈现地毯状形貌,而涂覆涂层的试样暴露前后表面形貌没有发生变化.采用紫外-可见光-近红外分光光度计对涂覆溶胶-凝胶复合陶瓷涂层后的试样分析表明原子氧暴露前后试样表面的光学性能也未发生变化.
採用溶膠-凝膠法,以異丙醇鋁、正硅痠乙酯為原料製得瞭穩定、均一的溶膠,浸塗在聚酰亞胺錶麵榦燥後穫得瞭緻密透明的塗層.採用空間綜閤環境地麵模擬設備對試樣進行瞭原子氧(Atomic Oxygen, AO)暴露實驗.測試錶明,溶膠-凝膠製備的Al_2O_3-SiO_2塗層抗原子氧侵蝕性能優異,抗原子氧侵蝕性能比聚酰亞胺基體提高瞭2箇數量級以上.經原子氧暴露後的複閤陶瓷塗層質量幾乎沒有髮生變化.經FTIR和XPS分析錶明,在原子氧暴露後塗層錶麵產生的是Al_2O_3-SiO_2複閤物.SEM分析錶明,無塗層的聚酰亞胺原子氧暴露後錶麵非常粗糙且錶麵呈現地毯狀形貌,而塗覆塗層的試樣暴露前後錶麵形貌沒有髮生變化.採用紫外-可見光-近紅外分光光度計對塗覆溶膠-凝膠複閤陶瓷塗層後的試樣分析錶明原子氧暴露前後試樣錶麵的光學性能也未髮生變化.
채용용효-응효법,이이병순려、정규산을지위원료제득료은정、균일적용효,침도재취선아알표면간조후획득료치밀투명적도층.채용공간종합배경지면모의설비대시양진행료원자양(Atomic Oxygen, AO)폭로실험.측시표명,용효-응효제비적Al_2O_3-SiO_2도층항원자양침식성능우이,항원자양침식성능비취선아알기체제고료2개수량급이상.경원자양폭로후적복합도자도층질량궤호몰유발생변화.경FTIR화XPS분석표명,재원자양폭로후도층표면산생적시Al_2O_3-SiO_2복합물.SEM분석표명,무도층적취선아알원자양폭로후표면비상조조차표면정현지담상형모,이도복도층적시양폭로전후표면형모몰유발생변화.채용자외-가견광-근홍외분광광도계대도복용효-응효복합도자도층후적시양분석표명원자양폭로전후시양표면적광학성능야미발생변화.
Highly transparent, uniform and corrosion resistant Al_2O_3-SiO_2 composite coatings were prepared on polyimide substrates by sol-gel process from stable sol solutions taking Al(C_3H_7O)_3 and TEOS as precursor. The coatings irradiated by atomic oxygen (AO) generated in a ground simulation facility were investigated by Scanning Electron Microscopy (SEM), X-ray Photoelectron Spectroscopy (XPS) and Fourier Transform Infrared Spectroscopy (FTIR). The results showed that the Al_2O_3-SiO_2 coatings had excellent AO resistance. The Al_2O_3-SiO_2 hybrid coating had an erosion rate two orders of magnitude slower than the polyimide film, and did not crack during AO exposure. This Al_2O_3-SiO_2 layer could retard the inward penetration of oxygen atoms effectively, preventing further degradation of the bulk polymer. The coatings had no influence on the optical property of the substrate materials.