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14篇 您的检索式:作者名="Chitoshi"
    题名 作者 年代 出处 被引量
1Fatigue strength improvement methods by treating the weld toe显示文摘 Kengo A Hideki T 1999溶接学会论文集1999,17,1:1
2New narrow-bandgap polymer composed of benzobis(1,2,5 thia diazole)and thiophenes显示文摘Michinori Karikomi Chitoshi Kitamura Shoji Tanaka 0,,25:1
3Normal formation of the postsynaptic elements of GABAergic synapses in the reeler cerebellum显示文摘Chitoshi T Yoshior I 2003Develop Brain Res2003,145,2:1
4Fatigue properties of Cu-Cr in situ composite显示文摘Chitoshi Masuda Yoshihisa Tanaka 2006International Journal of Fatigue2006,28,10:1
5Simultaneous determination of hydroxyl value, ethylene oxide content, and primary hydroxyl content for polyetherpolyol by means of near-infrared spectroscopy显示文摘Kiyoshi Yamamoto Reiko Kakita Chitoshi Suzuki 2003Applied Spectroscopy2003,57,3:1
6Provenance of quartz in sedimentary mantles and laterites overlying bedrock in West Africa:Evidence from oxygen isotopes显示文摘CHITOSHI M FAURE K YAMAMOTO M 1996Geoderma1996,72,:1
7Kansei engineering: a study on perception of vehicle interior image显示文摘CHITOSHI T KENJI I NAGAMACHI M 1997International Journal of Industrial Ergonomics1997,,19:1
8Natural and anthropogenic schwertmannites from Towada-Hachimantai National Park, Honshu, Japan显示文摘Cyril W Childs Katsuhiro Inoue Chitoshi Mizota 1998Chemical Geology1998,,1:1
9Isotopic evidence for the eolian origin of quartz and mica in soils developed on volcanic materials in the Canary Archipelago显示文摘CHITOSHI M YUKIHIRO M 1995Geoderma1995,66,:1
10Kansei Engineering:a study on perception of vehicle interior image显示文摘CHITOSHI T KENJI I M NAGAMACHI 1997International Journal of Industrial Ergonomics1997,,19:1
11Ground-state phase diagram of quantum Heisenberg antiferromagnets on the anisotropic dimerized square lattice显示文摘Munehisa Matsumoto Chitoshi Yasuda Synge Todo 2001Phys Rev B2001,65,09:1
12Design of narrow-bandgap polymers:Syntheses and properties of monomers and polymers containing aromatic-donor and o-quinoid-acceptor units显示文摘Chitoshi Kitamura Shoji Tanaka Yoshiro Yamashita 0,,02:1
13Normal formation of the postsynaptic elements of GABAergic synapses in the reeler cerebellum显示文摘Chitoshi T Yoshior I 2003Deve Brain Res2003,145,2:1
14Thermal Conductivity and Tensile Properties of Carbon Nanofiber-Reinforced Aluminum-Matrix Composites Fabricated via Powder Metallurgy: Effects of Ball Milling and Extrusion Conditions on Microstructures and Resultant Composite Properties显示文摘Carbon nanofiber(CNF)-reinforced aluminum-matrix composites were fabricated via ball milling and spark plasma sintering(SPS), SPS followed by hot extrusion and powder extrusion. Two mixing conditions of CNF and aluminum powder were adopted: milling at 90 rpm and milling at 200 rpm. After milling at 90 rpm, the mixed powder was sintered using SPS at 560 °C. The composite was then extruded at 500 °C at an extrusion ratio of 9. Composites were also fabricated via powder extrusion of powder milled at 200 rpm and 550 °C with an extrusion ratio of 9(R9) or 16(R16). The thermal conductivity and tensile properties of the resultant composites were evaluated. Anisotropic thermal conductivity was observed even in the sintered products. The anisotropy could be controlled via hot extrusion. The thermal conductivity of composites fabricated via powder extrusion was higher than those fabricated using other methods. However, in the case of specimens with a CNF volume fraction of 4.0%, the thermal conductivity of the composite fabricated via SPS and hot extrusion was the highest. The highest thermal conductivity of 4.0% CNF-reinforced composite is attributable to networking and percolation of CNFs. The effect of the fabrication route on the tensile strength and ductility was also investigated. Tensile strengths of the R9 composites were the highest. By contrast, the R16 composites prepared under long heating duration exhibited high ductility at CNF volume fractions of 2.0% and 5.0%. The microstructures of composites and fracture surfaces were observed in detail, and fracture process was elucidated. The results revealed that controlling the heating and plastic deformation during extrusion will yield strong and ductile composites.Fumio Ogawa Shuji Yamamoto Chitoshi Masuda 2019Acta Metallurgica Sinica(English Letters)2019,32,5:0
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