Effect of Contact Depth on Nanohardness Distribution in a SCM440 Tempered Martensitic Steel
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概要
- 論文の詳細を見る
- 2003-03-01
著者
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Hara T
Steel Research Center National Institute For Materials Science
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Hara T
National Inst. For Materials Sci. Tsukuba Jpn
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Hara Toru
Steel Research Center National Inst. For Materials Science (nims)
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Hara Toru
Advanced Electron Microscopy Group National Institute For Materials Science (nims)
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Hara Toru
Department Of Materials Science And Engineering Teikyo University
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Hara Toru
Steel Research Center National Institute For Materials Science
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Hara Toru
National Institute For Material Science
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Hara Toru
Structural Materials Research Center Nims
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TSUZAKI Kaneaki
Steel Research Center, National Institute for Materials Science
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Murayama Mitsuhiro
Steel Research Center National Inst. For Materials Science (nims)
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Tsuzaki Kaneaki
Structural Metals Center National Inst. For Materials Sci.
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Tsuzaki Kaneaki
Steel Research Center National Inst. For Materials Science (nims)
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Tsuzaki Kaneaki
Structural Metals Center National Institute For Materials Science
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Tsuzaki Kaneaki
Doctoral Program In Materials Science And Engineering University Of Tsukuba
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OHMURA Takahito
Steel Research Center, National Institute for Materials Science
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Li Jinxu
Steel Research Center, National Inst. for Materials Science (NIMS)
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Li Jinxu
Steel Research Center National Inst. For Materials Science (nims)
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Ohmura Takahito
Steel Research Center National Inst. For Materials Science (nims)
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Tsuzaki Kaneaki
Steel Research Center National Institute For Materials Science
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Tsuzaki Kaneaki
National Institute For Materials Science Tsukuba
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Tsuzaki Kaneaki
Frontier Research Center For Structural Materials National Institute For Materials Science
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Tsuzaki Kaneaki
Frontier Research Center For Structural Materials National Research Institute For Metals
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- Effect of Contact Depth on Nanohardness Distribution in a SCM440 Tempered Martensitic Steel
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- PREFACE
- A study of variant selection of bcc phase formed from slightly work-hardened fcc matrix in Ni-Cr alloy
- Crystallography and Morphology of Antiphase Boundary-Like Structure Induced by Martensitic Transformation in Ti-Pd Shape Memory Alloy
- Oxygen-Concentration-Dependent Electrical Resistances of SrTiO3-Based Thin Films
- Rietveld Analysis on Hydrogenated TiNi Shape Memory Alloy and Multiple-Stage Transformation
- Effect of Dislocation Density on the Initiation of Plastic Deformation on FeC Steels
- Effect of Dislocation Density on the Initiation of Plastic Deformation on Fe-C Steels
- Transmission Electron Microscopy of Twins in 10M Martensite in Ni-Mn-Ga Ferromagnetic Shape Memory Alloy
- Quasi-cleavage Fracture along Annealing Twin Boundaries in a Fe-Mn-C Austenitic Steel
- Hydrogen Embrittlement in Al-added Twinning-induced Plasticity Steels Evaluated by Tensile Tests during Hydrogen Charging
- Complex Oxide Layer at a Nickel/Steel Interface Bonded under a Moderate Vacuum Condition
- Aging Effect on Oxygen-Sensitive Electrical Resistance of SrTiO3 Thin Films
- Effect of Oxygen Adsorption on Polaron Conduction in Nanometer-Scale Nb5+-, Fe3+-, and Cr3+-Doped SrTiO3 Thin Films
- Machinability Improvement and Its Mechanism in SUS304 Austenitic Stainless Steel by Precipitated Hexagonal Boron Nitride
- Hydrogen Embrittlement in Al-added Twinning-induced Plasticity Steels Evaluated by Tensile Tests during Hydrogen Charging