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呼吸道防护基础理论及产品生产技术
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作者 路波 龚小舟 《中国个体防护装备》 2015年第1期6-11,共6页
本文重点论述了有关呼吸道防护的相关基础理论和用于呼吸道防护非织造布的生产技术。首先介绍了呼吸道防护中最基础的过滤理论,其中包括纤维束结构中的速度场和过滤效率以及单纤维过滤机理;其次介绍了非织造过滤材料的分类和非织造布的... 本文重点论述了有关呼吸道防护的相关基础理论和用于呼吸道防护非织造布的生产技术。首先介绍了呼吸道防护中最基础的过滤理论,其中包括纤维束结构中的速度场和过滤效率以及单纤维过滤机理;其次介绍了非织造过滤材料的分类和非织造布的生产技术;最后介绍了呼吸道防护滤材的性能评估标准。 展开更多
关键词 呼吸道防护 呼吸道防护非织造布 过滤理论 凝胶颗粒渗透 呼吸阻力
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Nanometallocarbosilanes: Synthesis, Physicochemical Properties and Structure
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作者 Galina Shcherbakova Pavel Storozhenko +4 位作者 Mariya Blokhina Valery Shatunov Denis Sidorov DmitrySidorov Gleb Yurkov 《Journal of Chemistry and Chemical Engineering》 2014年第3期232-242,共11页
Highly efficient synthesis methods have been developed and characteristics of nanometallocarbosilanes molecular structure were studied by the research team of GNIIChTEOS (State Research Institute for Chemistry and Te... Highly efficient synthesis methods have been developed and characteristics of nanometallocarbosilanes molecular structure were studied by the research team of GNIIChTEOS (State Research Institute for Chemistry and Technology of Organoelement Compounds). Nanometallocarbosilanes were synthesized by thermal co-condensation of oligocarbosilanes and alkyl amides of refractory metals. Initial, intermediate and final products of side reactions were characterized by 1H, 13C, 29Si NMR (nuclear magnetic resonance), IR (infra-red) spectroscopy, GPC (gel-penetrating chromatography), TGA (thermal gravimetric analysis), TEM (transmission electron microscopy), SEM (scanning electron microscopy), RES (X-ray phase analysis) and elemental analysis. The proposed synthesis method of nanometallocarbosilanes was lbund to produce fusable soluble organosilicon oligomers with homogeneous distribution of nanoscale (10-20 nm) metal particles in the oligomer matrix. A computational model of the group and elemental composition of nanometallocarbosilanes was developed; it was shown that they are molecular globules of near-spherical shape and rigid polycyclic structure. Thermochemical treatment of nanometallocarbosilanes leads to SiC-nanoceramics (a high yield of up to 75-80 mass%) modified by metal nanoparticles (20-30 nm) contributing to its stabilization. The application of preceramic oxygen-free nanometallocarbosilanes will make it possible to advance in solving the problem of ceramic composite materials with long-term resistance at temperatures above 1,500 ℃ in oxidizing environments. 展开更多
关键词 Nanometallocarbosilanes ZIRCONIUM HAFNIUM tantalum alkyl amides.
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