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螅状独缩虫口区微纤维结构的研究 被引量:1
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作者 胡国群 高崇明 《水生生物学报》 CAS CSCD 北大核心 2003年第4期362-366,共5页
常规电镜观察显示螅状独缩虫口部单毛基索 (HK)、第一 (P1)和第二咽膜 (P2 )旁各有一片微纤维结构。经一步抽提后 ,这些微纤维结构仍存在。三步抽提显示它们是由直径 12nm左右的类中间纤维构成的网格结构 ,细胞松弛素B不能使其解体。HK... 常规电镜观察显示螅状独缩虫口部单毛基索 (HK)、第一 (P1)和第二咽膜 (P2 )旁各有一片微纤维结构。经一步抽提后 ,这些微纤维结构仍存在。三步抽提显示它们是由直径 12nm左右的类中间纤维构成的网格结构 ,细胞松弛素B不能使其解体。HK和P1旁的微纤维结构在口围唇处即已形成 ,随着向胞口延伸 ,微纤维结构逐渐变宽 ,并形成典型的网格结构。 展开更多
关键词 螅状独缩虫 微纤维结构 类中间纤维 缘毛目 纤毛虫
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The relationship between IR characteristic peak and microstructure of the glass used as optical fiber 被引量:4
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作者 段吉安 蔡国华 帅词俊 《Journal of Central South University of Technology》 2006年第3期238-241,共4页
Based on the harmonic vibration equation, the relationship between IR characteristic peak of fiberglass and Si-O-Si bond angle was deduced, and 1 100 cm^-1 characteristic peak was specifically studied. It is found tha... Based on the harmonic vibration equation, the relationship between IR characteristic peak of fiberglass and Si-O-Si bond angle was deduced, and 1 100 cm^-1 characteristic peak was specifically studied. It is found that 1 100 cm^-1 characteristic peak shifts to higher wave number when Si-O-Si bond angle increases. Taking fused biconical taper (FBT) coupler as an example, the microstructures of the fiber coupler manufactured at different draw- ing speeds were tested with micro infrared spectrum. According to the test results, it is found that the bond angle at the taper region is the largest, the one at the fused region is the second largest, and the one of bare fiber is the smal- lest. The characteristic peaks of fused-taper region shift to higher wave number when drawing speed increases. 展开更多
关键词 FIBERGLASS IR spectroscopic MICROSTRUCTURE
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Effect of nanofibers at surface of carbon fibers on microstructure of carbon/carbon composites during chemical vapor infiltration 被引量:1
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作者 肖鹏 陈洁 +1 位作者 徐先锋 卢雪峰 《Journal of Central South University》 SCIE EI CAS 2014年第7期2590-2595,共6页
Before densification by chemical vapor infiltration,carbon or SiC nanofibers were grown on the surface of carbon fibers by catalytic chemical vapor deposition using electroplated Ni as catalyst.The modification and me... Before densification by chemical vapor infiltration,carbon or SiC nanofibers were grown on the surface of carbon fibers by catalytic chemical vapor deposition using electroplated Ni as catalyst.The modification and mechanism of nanofibers on the pyrocarbon deposition during chemical vapor infiltration were investigated.The results show that the nanofibers improve the surface activity of the carbon fibers and become active nucleation centers during chemical vapor infiltration.They can induce the ordered deposition of pyrocarbon and adjust the interface bonding between pyrocarbon and carbon fibers during the infiltration. 展开更多
关键词 carbon nanofiber SiC nanofiber PYROCARBON interface bonding
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Microstructure and thermal conductivity of carbon/carbon composites made with different kinds of carbon fibers 被引量:2
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作者 陈洁 龙莹 +1 位作者 熊翔 肖鹏 《Journal of Central South University》 SCIE EI CAS 2012年第7期1780-1784,共5页
The microstructure and surface state of three kinds of polyacrylonitrile-based carbon fibers (T700, T300 and M40) before and after high temperature treatment were investigated. Also, the pyrocarbon and thermal condu... The microstructure and surface state of three kinds of polyacrylonitrile-based carbon fibers (T700, T300 and M40) before and after high temperature treatment were investigated. Also, the pyrocarbon and thermal conductivity of carbon/carbon composites with different carbon fibers as preform were studied. The results show that M40 carbon fiber has the largest crystallite size and the least d002, T300 follows, and TT00 the third. With the increase of heat treatment temperature, the surface state and crystal size of carbon fibers change correspondingly. M40 carbon fiber exhibits the best graphitization property, followed by T300 and then T700. The different microstructure and surface state of different carbon fibers lead to the different microstructures of pyrocarbon and then result in the different thermal conductivities of carbon/carbon composites. The carbon/carbon composite with M40 as preform has the best microstructure in pyrocarbon and the highest thermal conductivity. 展开更多
关键词 carbon fiber thermal conductivity PYROCARBON
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