Padding, Welding and Freeform Fabrication of Nickel Aluminide Intermetallic Compound by Reactive Rapid Prototyping Process
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概要
- 論文の詳細を見る
- 2002-06-30
著者
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Matsuura Kiyotaka
Division Of Materials Science And Engineering Hokkaido University
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Miyamoto Yoshinari
Department Of Nano Micro Structure Control Smart Processing Research Center Joining And Welding Rese
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Oh Janghwan
Osaka University
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KIRIHARA Soshu
Joining and Welding Research Institute, Osaka University
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MIYAMOTO Yoshinari
Joining and Welding Research Institute, Osaka University
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KUDOH Masayuki
Division of Materials Science and Engineering, Graduate School of Engineering, Hokkaido University
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KOYANAGI Takayuki
Division of Material Science and Engineering, Hokkaido University
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OH Jang
Joining and Welding Research Institute, Osaka University
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Kudoh M
Division Of Materials Science And Engineering Graduate School Of Engineering Hokkaido University
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Kudoh Masayuki
Division Of Materials Science And Engineering Faculty Of Engineering Hokkaido University
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Kirihara Soshu
Department Of Nano Micro Structure Control Smart Processing Research Center Joining And Welding Rese
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Kirihara Soshu
Smart Processing Research Center Joining And Welding Research Institute Osaka University
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Matsuura Kiyotaka
Division Of Material Science And Engineering Hokkaido University
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Koyanagi Takayuki
Division Of Materials Science And Engineering Hokkaido University
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Khan T
Brunel Univ. Middlesex Gbr
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Kakuhashi T
Division Of Materials Science And Engineering Hokkaido University
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Miyamoto Y
Department Of Nano Micro Structure Control Smart Processing Research Center Joining And Welding Rese
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Miyamoto Yoshinari
Joining And Welding Research Institute Osaka University
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松浦 清隆
北海道大学大学院工学研究院材料科学部門
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Koyanagi Takayuki
Division Of Material Science And Engineering Hokkaido University
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KIRIHARA Soshu
Joining and Welding Research Institute, Osaka Univ.
関連論文
- 合金凝固のフェーズフィールド法
- 炭素鋼の柱状オーステナイト結晶粒に及ぼすチタンとホウ素添加の影響(鋳造・凝固)
- アルミニウムめっきとアーク表面溶融法を用いたチタン表面へのアルミナイド被覆
- 204 アルミニウムめっきしたチタンへのアーク放電アルミナイド被覆(薄膜・ナノ構造,平成19年度秋季全国大会)
- アーク表面溶融法によるチタンのアルミナイド被覆
- 組成傾斜金属間化合物の合成
- 鉄切削屑と使用済みアルミニウム缶から燃焼合成したFe-Al系金属間化合物合金の機械的性質
- 反応鋳造法を利用したNiAlと炭素鋼の鋳ぐるみ接合
- 10-O-05 Defect Modes in 3D Photonic Crystal for Microwave Applications
- 01-O-32 SiC Coating on MWCNTs
- Powder-Metallurgical Process for Producing Metallic Microchannel Devices
- チタンの添加による炭素鋼の鋳造オーステナイト結晶粒の微細化(鋳造・凝固)
- 熱間圧延によるAl-Si鋳造材のミクロ組織および機械的性質の変化
- Titanium aluminide coating on titanium surface using three-dimensional microwelder
- Combustion synthesis of rod-like AlN nanoparticles
- Freeform Fabrication of Titanium by 3D Micro Welding(Materials, Metallurgy & Weldability)
- 301 Freeform Fabrication of Ti-Ni Alloy by Three Dimensional Micro-Welding
- Padding, Welding and Freeform Fabrication of Nickel Aluminide Intermetallic Compound by Reactive Rapid Prototyping Process
- Padding, Welding and Freeform Fabrication of Nickel Aluminide Intermetallic Compound by Reactive Rapid Prototyping Process
- 微細Si粒子の析出によるAl-16%Si合金の強化
- 過共晶 Al-Si 系合金急冷凝固粉末押出材の微細組織と機械的性質
- Al-Si 系急冷凝固粉末焼結材の微細組織と機械的性質
- 421 反応性ラピッドプロトタイピングによる金属間化合物の 3 次元自由造形 (II)
- アルミナイド系金属間化合物の反応性被覆
- 反応性ラピッドプロトタイピング法による金属間化合物の3次元造形
- 液滴/粉末間の燃焼合成反応を利用した NiAl の溶接
- 反応性ラピッドプロトタイピング法によるアルミナイド系金属間化合物の溶接
- 127 反応性ラピッドプロトタイピングによる金属間化合物の3次元自由造形
- FeAl-TiB_2系複合材の擬HIP燃焼合成
- 放電プラズマ焼結された過共晶Al-Si合金の微細空孔形成と機械的性質
- P添加による炭素鋼の組織制御
- 鉄基合金およびニッケル基合金の過冷却と凝固組織
- アーク表面合金化によるニオブのアルミナイド被覆
- 鉄および鉄-炭素合金の凝固に及ぼすNbの影響
- 粉末冶金的プロセスによる自由形状マイクロチャンネル形成
- 302 3次元マイクロ溶接によるNi-Al系合金の自由造形
- 微小アーク溶融法によるTiのTiN被覆とその凝固組織
- SHS反応による溶解凝固から得られた微細TiC粒子分散FeAl合金の組織と硬度
- 浸透を利用したAl-Zn系多孔質合金の開発
- Al-Ti系の自発的浸透現象を利用したマイクロチャンネル形成プロセス
- Effect of Niobium on the Formation of Microstructure and Grain Boundary in Fe-Nb and Fe-C-Nb Alloys
- Solidification Behavior of Iron-Niobium and Iron-Carbon-Niobium alloys
- フェーズフィールド法における界面移動の記述 (特集 状態図と組織のコンピューターシミュレーション)
- TiC基超硬合金の燃焼合成と予熱処理による気孔率の変化
- Al-Si合金インゴットの熱間圧延による機械的性質の変化
- 高温発熱反応利用型省エネCO_2排出削減式製法による微細硼化物粒子分散強化型鉄基複合合金の研究
- アルミナイド系金属間化合物の反応接合(溶接・接合)
- 消失模型鋳造をテーマとした学生実験プログラム
- アーク表面溶融法によるNbAl_3被覆
- Al-Ni-Co系多相合金の機械的性質と耐食性
- Localization of Electromagnetic Wave in 3D Periodic and Fractal Structures
- Numerical Analysis on Columnar-to-equiaxed Transition of δ-Ferrite Dendrite in Carbon Steel Induced by Titanium Carbonitride Particles
- As-cast Austenite Grain Structure in Al Added 0.2wt% Carbon Steel
- Refinement of As-cast Austenite Grain in Carbon Steel by Addition of Titanium
- Refinement of As-cast Austenite Microstructure in S45C Steel by Titanium Addition
- Refinement of Austenite Grain in Carbon Steel by Addition of Titanium and Boron
- Peritectic Transformation in Low Carbon Steels Containing High Phosphorus Concentration
- Fabrication of NiAl/Steel Cladding by Reactive Casting
- Reactive Casting of Ni-Al-Fe Ternary Intermetallic Alloys
- In-situ Joining of Nickel Monoaluminide to Iron by Reactive Sintering
- Aluminide Coating on Niobium by Arc Surface Alloying
- Grain Refinement of Combustion-synthesized NiAl by Addition of AL_2O_3 Particles
- Combustion synthesis of Al-Ni alloys by a pseudo-HIP process
- Changes in Microstructure and Mechanical Properties during Solid Sintering of Ni-Al Mixed Powder Compact
- Crystallization of Droplets in Pure Al and Al-Cu Alloy
- Fabrication of A12O3/TiC/Ni Functionally Graded Materials by Pulsed-Electric Current Sintering and Their Mechamical Properties (特集 傾斜機能材料)
- Analysis of Solidification Path of Fe-Cr-Ni Ternary Alloy
- Simultaneous Synthesis and Densification of α-Zr(N) by Self- Propagating Combustion under Nitrogen Pressure
- Microstructures and Mechanical Properties of TiAl/Ti_2AlC Composites Prepared by Pulsed-Electric Current Sintering
- Reactive Casting of B2-Ordered Ni-Al-Co Ternary Intermetallic Alloys
- Refinement and Localization of Primary Intermetallic Compound in Hyperperitectic Al-Cr Alloy by Centrifugal Duplex Casting
- Reactive sintering of molybdenum alumino-silicide and its oxidation resistance
- Simulation of Peritectic Reaction during Cooling of Iron-Carbon Alloy
- 高温発熱プロセスを利用した耐熱合金とNiAlの接合
- ニオブ基材上でのAl基合金の溶融と凝固
- Solidification Characteristics of Undercooled Ni and Ni-Co Binary Alloys
- Role of Agents in Filamentary Growth of Amorphous Silicon
- Grain Refinement and Improvement in Mechanical Properties of Nb-Al-Si Intermetallic Alloys
- 炭窒化処理によるチタンの表面改質
- 反応焼結法および反応鋳造法によるNiAlの合成同時接合
- Precision Casting of Ni-Al Alloy and Simultaneous Joining to Dissimilar Metals by Modified Centrifugal Combustion Synthesis
- Centrifugal Casting of Al-Cr Semi-Solid Slurry Produced by Stir-Mix-Quenching
- Effects of Cooling Rate on Growth Behavior of Austenite Phase during Peritectic Reaction in Iron-Carbon Binary Alloy
- Effects of Al and P Additions on As-cast Austenite Grain Structure in 0.2mass% Carbon Steel
- Effects of Cr Addition on Coarse Columnar Austenite Structure in As-Cast 0.2mass% Carbon Steel
- Pseudo-HIP Combustion Synthesis of FeAl-TiB_2 Composites
- Motion and Morphology of Triple Junction in Peritectic Reaction Analyzed by Quantitative Phase-field Model
- Use of Recycled Steel Machining Chips and Aluminum Can Shreds for Synthesizing Iron Aluminide Intermetallic Alloys
- Droplet-based Freeform Fabrication of Aluminum Objects through Internet (特集 アルミニウム粉末合金とその応用事例)
- Development of Functionally Graded Materials by HIP
- Effects of Second Phase Particle Dispersion on Kinetics of Isothermal Peritectic Transformation in Fe–C Alloy
- Polytypism and Amorphousness in Silicon Whiskers
- Suppression of Coarse Columnar Grain Formation in As-cast Austenite Structure of a Hyperperitectic Carbon Steel by Nb Addition
- Effects of Second Phase Particle Dispersion on Kinetics of Isothermal Peritectic Transformation in Fe-C Alloy
- Effects of Second Phase Particles on Migration of α/γ Interface during Isothermal α to γ Transformation
- Study of Multilayer Ceramic Photonic Crystals in THz Region
- Combustion Synthesis and Sintering of .BETA.-Sialon Ceramics (z = 2)
- Rate of Peritectic Reaction in Iron-Carbon System Measured by Solid/Liquid Diffusion Couple Method.
- Effects of Ti Addition on Austenite Grain Growth during Reheating of As-Cast 0.2 mass% Carbon Steel
- Effects of Ti Addition on Austenite Grain Growth during Reheating of As-Cast 0.2 mass% Carbon Steel