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俄秘密研制“空中飞车”可用于反恐或高空救灾
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《警察技术》 2003年第3期47-47,共1页
关键词 “空中飞车” 研制 俄罗斯 反恐怖主义 高空救灾 单人行器
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美2006年“空中飞车”上天
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作者 英格 《环球飞行》 2003年第8期6-6,共1页
关键词 美国 穆勒国际公司 “空中飞车” 旋转发动机 垂直起降性能 钢化玻璃
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美国NASA研制“空中飞车”25年后可投入使用
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《多媒体世界》 2004年第10期18-18,共1页
关键词 美国 NASA “空中飞车” 交通工具
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Degradation Behavior of Epoxy Resins in Fibre Metal Laminates Under Thermal Conditions
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作者 祝国梁 肖艳萍 +3 位作者 杨永祥 王俊 孙宝德 BOOM Rob 《Journal of Shanghai Jiaotong university(Science)》 EI 2012年第3期257-262,共6页
GLARE (glass fibre/epoxy reinforced aluminum laminate) is a member of the fiber metal laminate (FML) family, and is built up of alternating metal and fiber layers. About 500 m2 GLARE is employed in each Airbus A38... GLARE (glass fibre/epoxy reinforced aluminum laminate) is a member of the fiber metal laminate (FML) family, and is built up of alternating metal and fiber layers. About 500 m2 GLARE is employed in each Airbus A380 because of the superior mechanical properties over the monolithic Muminum alloys, such as weight reduction, improved damage tolerance and higher ultimate tensile strength. Many tons of new GLARE scraps have been accumulated during the Airbus A380 manufacturing. Moreover, with the increasing plane orders of Airbus A380, more and more end-of-life (EOL) GLARE scrap will be generated after retire of planes within forty years. Thermal processing is a potential method for the material recycling and re-use from GLARE with the aim of environmental protection and economic benefits. The current study indicatdes that thermal delamination is a crucial pre-treatment step for the GLARE recycling. The decomposition behavior of the epoxy resins at elevated temperatures was investigated by using the simultaneous thermal analysis, thermogravimetry analysis (TGA) and differential scanning calorimetry (DSC). Based on the thermal analysis results, GLARE thermal delamination experiments at refined temperatures were carried out to optimize the treatment temperature and holding time. 展开更多
关键词 fibre metal laminates GLARE (glass fibre/epoxy reinforced aluminum laminate) RECYCLING decomposition kinetics thermal degradation
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