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基于近零介电常数材料的热辐射调控研究进展
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作者 陈菊 周涵 《材料导报》 EI CAS CSCD 北大核心 2024年第22期119-125,共7页
热辐射调控基于热辐射特性和物质相互作用实现对热辐射强度、频谱分布和方向的调控,在能量转化、传感等领域具有广泛的科学研究价值。传统热辐射材料受限于材料本身辐射吸收特性而无法实现按需设计及可控热辐射性能。近零介电常数(ENZ)... 热辐射调控基于热辐射特性和物质相互作用实现对热辐射强度、频谱分布和方向的调控,在能量转化、传感等领域具有广泛的科学研究价值。传统热辐射材料受限于材料本身辐射吸收特性而无法实现按需设计及可控热辐射性能。近零介电常数(ENZ)材料因其特定波长附近介电常数近零而具有低折射率、强色散和电场增强等独特电磁响应特性,在调控热辐射方面具有巨大潜力。本文介绍了不同红外波段的ENZ材料分类以及ENZ材料电场增强机理,并围绕研究工作重点论述了近几年基于ENZ材料的宽带、定向、动态及可见兼容红外热辐射调控器的结构设计及最新进展,最后总结了基于ENZ材料的热辐射调控器目前所面临的挑战并展望了其未来发展方向。 展开更多
关键词 近零介电常数 宽带热辐射 定向热辐射 动态热辐射 可见兼容红外
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Dynamic compressive strength and failure mechanisms of microwave damaged sandstone subjected to intermediate loading rate 被引量:3
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作者 Pin WANG Tu-bing YIN +1 位作者 Xi-bing LI Heinz KONIETZKY 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2022年第11期3714-3730,共17页
To investigate the influence of microwave heating on the dynamic behavior and failure mechanisms of rock,dynamic compression tests were conducted on microwave-irradiated sandstone specimens using a modified split Hopk... To investigate the influence of microwave heating on the dynamic behavior and failure mechanisms of rock,dynamic compression tests were conducted on microwave-irradiated sandstone specimens using a modified split Hopkinson pressure bar(SHPB)system.Experimental results show that microwave radiation can effectively weaken the compressive strength of sandstone.Rock specimens show three different failure modes under impact load:tensile failure,tensile−shear composite failure and compressive−shear failure.The dynamic Poisson’s ratio,calculated using the measured P-and S-wave velocities,is introduced to describe the deformation characteristics of sandstone.With the increase in microwave power and heating time,the Poisson’s ratio declines first and then increases slightly,and the turning point occurs at 244.6℃.Moreover,the microstructural characteristics reveal that microwave radiation produces dehydration,pore expansion,and cracking of the rock.The damage mechanisms caused by microwave radiation are discussed based on thermal stress and steam pressure inside the rock,which provides a reasonable explanation for the experimental results. 展开更多
关键词 SANDSTONE microwave radiation thermal cracking dynamic compressive strength failure patterns split Hopkinson pressure bar
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