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5篇 您的检索式:作者名="HIDEHIRO YOSHIDA"
    题名 作者 年代 出处 被引量
1Impurity effects on grain boundary strength in struc tural ceramics显示文摘YUICHI IKUHARA HIDEHIRO YOSHIDA TAKETO SAKUMA 2001Materials Science and Engineering A2001,321,:1
2Telmisartan, a possible PPAR-δ agonist, reduces TNF-α-stimulated VEGF-C production by inhibiting the p38MAPK/HSP27 pathway in human proximal renal tubular cells显示文摘Hideki Kimura Daisuke Mikami Kazuko Kamiyama Hidehiro Sugimoto Kenji Kasuno Naoki Takahashi Haruyoshi Yoshida Masayuki Iwano 2014Biochemical and Biophysical Research Communications2014,,:1
3Effect of Alumina Dopant on Transparency of Tetragonal Zirconia显示文摘Haibin Zhang Zhipeng Li Byung-Nam Kim Koji Morita Hidehiro Yoshida Keijiro Hiraga Yoshio Sakka Xijin Xu 2012Journal of Nanomaterials2012,,:1
4SPS condition optimization for producing trans- parent MgA1204 spinel polycrystal显示文摘Koji Morita Byung-Nam Kim Hidehiro Yoshida 2009J Am Ceram Soc2009,92,6:1
5High-strain-rate superplasticity in oxide ceramics:a trial of microstructural design based on creep-cavitation mechanisms显示文摘From existing knowledge about high-temperature cavitation mechanisms,necessary conditions were discussed for the suppression of cavitation failure during superplastic deformation in ceramic materials.The discussion,where special attention was placed on the relaxation of stress concentrations during grain-boundary sliding and cavity nucleation and growth,leaded to a conclusion that cavitation failure could be retarded by the simultaneous controlling of the initial grain size,the number of residual defects,diffusivity,dynamic grain growth and the homogeneity of microstructure.On the basis of this conclusion,high-strain-rate superplasticity (defined as superplasticity at a strain rate higher than 0.01 s-1) could be intentionally attained in some oxide ceramic materials.This was shown in tetragonal zirconia and composites consisting of zirconia,α-alumina and a spinel phase.Keijiro HIRAGA Byung-Nam KIM Koji MORITA Hidehiro YOSHIDA Yoshio SAKKA Masaaki TABUCHI 2011Acta Metallurgica Sinica(English Letters)2011,24,3:0
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