Atom Probe Investigation of Ruthenium Distributions around Rhenium, Molybdenum and Tungsten in a Gamma Phase of 5th-Generation Nickel-Base Single-Crystal Superalloys
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概要
- 論文の詳細を見る
- Japan Institute of Metalsの論文
- 2007-03-01
著者
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HARADA Hiroshi
High Temperature Materials Research Group, National Institute for Materials Science (NIMS)
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PING De
National Institute for Materials Science
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Ping De-hai
High Temperature Materials Center National Institute For Materials Science
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Kobayashi Toshiharu
High Temperature Materials Center National Institute For Materials Science
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KITASHIMA Tomonori
High Temperature Materials Center, National Institute for Materials Science
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Kitashima Tomonori
High Temperature Materials Center National Institute For Materials Science
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Harada Hiroshi
Materials Laboratory National Institute For Materials Science(nims)
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Harada Hiroshi
High Temperature Materials Center National Institute For Materials Science
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- A New Co-Base Superalloy Strengthened by γ' Phase
- GT-Related Research at National Research Institute for Metals(Letters from R&D Groups)
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- Anatase-Dominant Matrix in Ge/TiO_2 Thin Films Prepared by RF Sputtering Method
- Development of High Strength New Ni-base Single-Crystal Superalloy, TMS-82+
- SB-11-5(122) Creep Behavior of a New Ni-base Single-crystal Superalloy, TMS-82+(Microstructure & Crack Propagation of Superalloys)
- Atom Probe Investigation of Ruthenium Distributions around Rhenium, Molybdenum and Tungsten in a Gamma Phase of 5th-Generation Nickel-Base Single-Crystal Superalloys
- Evaluation of Yttria Applicability as a Crucible for Induction Melting of TiAl Alloy
- The Oxidation Characteristics of the γ-γ' Tie-Lime Alloys of a Nickel-Base Superalloy
- Cyclic Oxidation Behavior of Iridium-Modified Aluminide Coatings for Nickel-Base Single Crystal Superalloy TMS-75
- Anatase-Dominant Matrix in Ge/TiO2 Thin Films Prepared by RF Sputtering Method