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Department of Materials Science and Engineering, Faculty of Engineering, Kumamoto University | 論文
- Phase Transformation and Crystal Structures of Ti_2Ni_3 precipitates in Ti-Ni Alloys
- Microstructure Analysis of High Coercivity PLD-Made Nd-Fe-B Thick-Film Improved by Tb-Coating-Diffusion Treatment
- Dislocation Structure in Rapidly Solidified Mg_Zn_1Y_2 Alloy with Long Period Stacking Order Phase
- Production of High Strength Mg_ Zn_1 Y_2 Alloy by Using Mechanically Alloyed MgH_2 Powder
- Techniques to separate metal from waste printed circuit boards from discarded personal computers
- Influence of Shear Height on Shear Strength of Tin-Lead Solder Ball Bonding
- 416 Microstructure and Strength Properties of Tin-Silver-Copper Solder Ball Bonded by Various Cooling Rates
- Effect of Cooling Rate on Microstructure and Strength Properties of Tin-Silver-Copper Solder Ball Bonding
- Ductility Enhancement in B2-Type Zr-Co-Ni Alloys with Martensitic Transformation
- Experimental Consideration of Multistage Martensitic Transformation and Precipitation Behavior in Aged Ni-Rich Ti-Ni Shape Memory Alloys
- Effect of Heat Treatment Atmosphere on Multistage R-Phase Transformation in an Aged Ti-51.0at%Ni Alloy
- Diffusion Bonding of TiAl Alloy to Eutectoid Steel and its Interfacial Self-destruction Behavior
- Superplasticity-like Behavior of Rapidly Solidified Ti-rich TiAl Powders and its Application to In-situ Sintering Bonding
- Combination and Interface Structure of 9R Martensite Plate Variants in Ti_Pd_Fe_ Shape Memory Alloy
- Effect of Aging on Martensitic Transformation in Ti-Rich Ti-Pd Shape Memory Alloy
- Microstructure Dependence of Compactibility of Rapidly Solidified Ti-Rich TiAl Alloy Powders Produced by Plasma Rotating Electrode Process
- Asymmetric Allylation of Carbonyl Compounds with Tartrate-Modified Chiral Allylic Tin Reagents
- Asymmetric Allylation of Aromatic Aldehydes Using Chiral Allylic Tin Reagents
- The Influence of Cold Rolling Reduction on γ-value and Recrystallization Behavior in Fe-36Ni Alloy
- Application of a focused ion beam mill to the characterisation of a microstructure in tin plating on a Fe 42wt% Ni substrate