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103篇 您的检索式:作者名="Ueji"
    题名 作者 年代 出处 被引量
1Grain Size Effect on the Martensite Formation in a High-Manganese TWIP Steel by the Rietveld Method显示文摘The aim of the present work was to study the effect of austenite grain size (AGS) on the martensite formation in a high-manganese twinning-induced plasticity (TWIP) steel. The results of a quantitative microstructural characterization of the steel by the whole X-ray pattern fitting Rietveld software, materials analysis using diffraction (MAUD), indicated that the volume fraction of α bcc-martensite increases with increasing AGS. However, the value of the stacking fault probability (P sf ) does not show a large variation for samples with different values of AGS under water-quenching conditions.G. Dini A. Najafizadeh S.M. Monir-Vaghefi R. Ueji 2010Journal of Materials Science & Technology2010,26,2:5
2Flow stress analysis of TWIP steel via the XRD measurement of dislocation density显示文摘G. Dini R. Ueji A. Najafizadeh S.M. Monir-Vaghefi 2010Materials Science & Engineering A2010,,10:1
3Metal ions dramatically enhance the enantioselectivity for lipase catalysed reactions in organic solvents 显示文摘OKAMOTO T YASUHITO E UEJI S 2006Org Biomol Chem2006,4,6:1
4Tensile properties and twinning behavior of high manganese austenitic steel with fine-grained structure显示文摘R. Ueji N. Tsuchida D. Terada N. Tsuji Y. Tanaka A. Takemura K. Kunishige 2008Scripta Materialia2008,,9:1
5Nanoscale Crystallographic Analysis of Ultrafine Grained IF Steel Fabricated by ARB Process显示文摘Tsuji N Ueji R Minamino Y 2002Scripta Materialia2002,47,:1
6Tensile deformation behavior of high manganese austenitic steel: The role of grain size显示文摘G. Dini A. Najafizadeh R. Ueji S.M. Monir-Vaghefi 2010Materials and Design2010,,7:1
7Effects of chemical modification of lipase on its enantioselectivity in organic solvents 显示文摘 Tanaka H Hanaoka T 2001Chem Lett2001,10,:1
8Solvent- induced inversion of enanti- oseletivity in lipase -catalyzed esterification of 2 -p henoxypro- pionic acids 显示文摘Ueji S Fujio R Okubo N 1992Biotec hnol Letters1992,14,:1
9Ultragrain refinement of plain low carbon steel by cold rolling and annealing of martensite显示文摘Ueji R Tsuji N Minamino Y Koizumi Y 2002Acta Materialia2002,50,:1
10Crystallo- graphic features of lath martensite in low-carbon steel 显示文摘KITAHARA H UEJI R TSUJI N 2006ActaMaterialia2006,54,:1
11Chemical modification of lipase with various hydrophobic groups improves their enantioselectivity in hydrolytic reactions显示文摘 Ueda A Tanaka H 2003Biotechnol Lett2003,25,:1
12Improved ten- sile properties of partially recrystallized submicron grained TWlP steel显示文摘Dini G Najafizadeh A Ueji R 2010Materials Letters2010,64,1:1
13Imaging Based on Hard X-ray Magnetic Linear Dichroism by Means of Polarization Switching显示文摘Sato K Ueji Y 2002Phys Rev B2002,65,:1
14Ultra grain refinement of plain low carbon steel by coldrolling and aannealing of martensite 显示文摘Ueji R Tsuji N Minamino Y 2002Acta Materialia2002,50,:1
15Imaging Based on Hard X-ray Magnetic Linear Dichroism by Means of Polarization Switching 显示文摘Sato K Ueji Y 2002Phys Rev B2002,65,:1
16Nanoscale crystallographic analysis of ultrafine grained IF steel fabricated by ARB process 显示文摘Tsuji N Ueji R Minamino Y 2002Scripta Materialia2002,47,:1
17Tensile prop- erties and twinning behavior of high manganese aus- tenitic steel with fine-grained structure显示文摘Ueji R Tsuehida N Terada D 2008Scripta Materialia2008,59,:1
18A new and simple process to obtain nano-structured bulk low carbon steel with superior mechanical property显示文摘Tsuji N Ueji R 2002Scripta Materialia2002,46,:1
19Ultraqram refinement of plain low carbon steel by roldrolling and annealing of martensite显示文摘Ueji R Tsnji Ni Minamino Y Koizunri Y 2002Acta Materialia2002,50,16:1
20Flavor learning in weanling rats and its retention显示文摘Ueji K Yamamoto T 0,,04:1
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