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Co/C微波吸收性能及Co/C-聚氨酯相变复合材料的微波-热转换性能 被引量:1
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作者 吴秋萍 蔡昆廷 +4 位作者 王元康 孙凯 杨金波 韩松柏 刘蕴韬 《应用化学》 CAS CSCD 北大核心 2021年第12期1588-1598,共11页
通过热解金属有机骨架ZIF-67的方法成功制备了具有优异微波吸收性能的Co/C碳基复合材料。在600℃热解温度下获得的吸收剂质量分数为35%的样品,最小反射损耗可达到-54.30 dB,其厚度仅为1.75 mm。通过分析样品的损耗能力和阻抗匹配等微波... 通过热解金属有机骨架ZIF-67的方法成功制备了具有优异微波吸收性能的Co/C碳基复合材料。在600℃热解温度下获得的吸收剂质量分数为35%的样品,最小反射损耗可达到-54.30 dB,其厚度仅为1.75 mm。通过分析样品的损耗能力和阻抗匹配等微波吸收特性,发现复合材料中的骨架结构等对其阻抗匹配性能有非常大的影响。并通过原位复合的方法制备了分散均匀的Co/C-PU相变复合材料,初步研究了其微波-热转换性能。实验表明,微波吸收剂的添加量对其微波-热转换性能影响显著,发热效率随添加量成倍升高。本文研究的Co/C-PU相变复合材料在电磁屏蔽、雷达红外兼容隐身等方面具有很大的应用潜力。此外,固固相变材料结合微波热效应的快速高效等特点,用于储能或者其他热应用也有独特的优势。 展开更多
关键词 吸波材料 固固相变材料 金属有机骨架 聚氨酯 微波-热转换
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KGW晶体的1.06μm激光特性研究
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作者 QIU Min-wang TU Chao-yang +3 位作者 HUANG Yi-chuan TANG Ding-yuan wang yuan-kang LI Jian-fu 《人工晶体学报》 EI CAS CSCD 北大核心 2000年第S1期186-,共1页
In recent years,from the laser experimental study of neodymium doped potassium g adolinium tungstate,i.e.KGd(WO 4) 2 (KGW),laser scientific workers had discove r ed that it has many advantages,as compared to YAG and o... In recent years,from the laser experimental study of neodymium doped potassium g adolinium tungstate,i.e.KGd(WO 4) 2 (KGW),laser scientific workers had discove r ed that it has many advantages,as compared to YAG and other tungstate crystals u n der indentical experimental conditions,such as low lasing threshold,high output energy o r power and high efficiency et al.Especially,as seen on the absorption spectra o f Nd:YAG and Nd:KGW reported by V.Kushawaha et al,a strong and broad absorption line around 808nm is much wider (~12nmFWHM) in Nd:KGW as compared to the Nd:YAG (~1.5nm FWHM),and this wavelength is just during the main peak area emitted by diode laser,so that Nd:KGW may be a excellent candidate for efficient diode pum ping at 808nm.Therefore the research and development of KGW crystals and laser d evices has been bestowed great attention in interational laser science area.For the laser rod with dimensions of  5mm×8mm and  6.3mm×75mm,the xenon flashlamp pumping KGW laser have achieved more laser output and higher efficie n ies than the YAG crystals under identical experimental conditions,by V.Kushawaha et al.In Unite State and K.A.Stankov et al.in Germang respectively. 展开更多
关键词 KGW crystal laser crystal laser characteristics
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