790 results on '"Nakai, Masaaki"'
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2. Effect of O addition on microstructure and mechanical properties of Ti-Nb alloys with various β stability
3. Development of biodegradable Fe-Mn-Mg alloys by mechanical alloying and spark plasma sintering
4. Improvement of mechanical properties of Co–Cr–W–Ni alloy tube suitable for balloon-expandable stent applications through heat treatment
5. Effects of cold rolling and heat treatment on the microstructure and hardness of pure aluminium
6. Effect of low modulus titanium plate fixation on rabbit femur bone healing
7. Facile formation with HA/Sr–GO-based composite coatings via green hydrothermal treatment on β-type TiNbTaZr alloys: Morphological and electrochemical insights
8. The association between long-chain polyunsaturated fatty acid intake and changes in brain volumes among older community-dwelling Japanese people
9. Microstructure and mechanical properties of Ti–Nb–Fe–Zr alloys with high strength and low elastic modulus
10. Differences in the effect of surface texturing on the wear loss of β-type Ti–Nb–Ta–Zr and (α+β)-type Ti–6Al–4V ELI alloys in contact with zirconia in physiological saline solution
11. Development of Low-Yield Stress Co–Cr–W–Ni Alloy by Adding 6 Mass Pct Mn for Balloon-Expandable Stents
12. Influence of Sintering Temperature on Mechanical Properties of Ti-Nb-Zr-Fe Alloys Prepared by Spark Plasma Sintering
13. Microstructure, Mechanical Properties, and Springback of Ti-Nb Alloys Modified by Mo Addition
14. Low Young’s Modulus and High Strength Obtained in Ti-Nb-Zr-Cr Alloys by Optimizing Zr Content
15. Low-Young’s-Modulus Materials for Biomedical Applications
16. Mechanical Property of Biomedical Materials
17. Ti-Based Biomedical Alloys
18. Overcoming the strength-ductility trade-off by the combination of static recrystallization and low-temperature heat-treatment in Co-Cr-W-Ni alloy for stent application
19. Effects of Fe Addition on the Mechanical and Corrosive Properties of Biomedical Co-Cr-W-Ni Alloys for Balloon-Expandable Stents
20. High-cycle fatigue properties of an easily hot-workable (α+β)-type titanium alloy butt joint prepared by friction stir welding below β transus temperature
21. Synchronous improvement in strength and ductility of biomedical Co–Cr–Mo alloys by unique low-temperature heat treatment
22. Invar Properties in Ti-Alloys Achieved Through Alloy Design and Thermomechanical Treatments
23. Effect of Nb Content on Microstructures and Mechanical Properties of Ti-xNb-2Fe Alloys
24. Development of low-Young’s modulus Ti–Nb-based alloys with Cr addition
25. Epididymal Stone Formation and Decreased Sperm Production in Roosters Vaccinated with a Killed Strain of Avian Infectious Bronchitis Virus (Formación de cálculos y disminución de la producción de esperma en gallos vacunados con una cepa inactivada del virus de bronquitis infecciosa aviar)
26. Avian Infectious Bronchitis Virus: A Possible Cause of Reduced Fertility in the Rooster
27. Dental Metallic Materials
28. Development and Performance of Low-Cost Beta-Type Ti-Based Alloys for Biomedical Applications Using Mn Additions
29. Improvement of Work-Hardening Behavior of Co-Cr-W-Ni Alloy by Adding Mn/Fe for Balloon-Expandable Stents
30. Improved fatigue properties with maintaining low Young's modulus achieved in biomedical beta-type titanium alloy by oxygen addition
31. Deformation-induced ω-phase transformation in a β-type titanium alloy during tensile deformation
32. Deformation Induced Changeable Young’s Modulus in Ternary Ti-Cr-O Alloys for Spinal Fixation Applications
33. Mechanical Properties of Ti-12Cr Alloy with Self-Tunable Young’s Modulus for Use in Spinal Fixation Devices
34. Microstructural Control and Mechanical Properties of Low-Cost Titanium Alloys for Next Generation Aircrafts
35. Mechanical Properties of Low-Cost Beta-Type Ti-Mn Alloys Fabricated by Metal Injection Molding
36. Beta-Type Titanium Alloys for use as Rods in Spinal Fixation Devices
37. Difference of Wear Behavior Between Ti-29Nb-13Ta-4.6Zr Alloy and Ti-6A1–4V Eli Alloy for Biomedical Applications
38. Endurance of Low-Modulus β-Type Titanium Alloys for Spinal Fixation
39. Fatigue Characteristics and Microstructures of Laser-and Non-Laser Welded Low-Cost Ti-4.5Al-2.5Cr-1.2Fe-0.1C for Use in Next Generation Aircrafts
40. Mechanical Properties of Biomedical ß-Type Titanium Alloy with Rare-Earth Metal Oxide Particles Formed by Rare-Earth Metal Addition
41. Synthesis of biphasic calcium phosphate (BCP) coatings on β‒type titanium alloys reinforced with rutile-TiO2 compounds: adhesion resistance and in-vitro corrosion
42. Improvement of microstructure, mechanical and corrosion properties of biomedical Ti-Mn alloys by Mo addition
43. Enhancing the durability of spinal implant fixture applications made of Ti-6Al-4V ELI by means of cavitation peening
44. Influence of oxygen on omega phase stability in the Ti-29Nb-13Ta-4.6Zr alloy
45. Fabrication of low-cost beta-type Ti–Mn alloys for biomedical applications by metal injection molding process and their mechanical properties
46. Microstructural evolution and mechanical properties of biomedical Co–Cr–Mo alloy subjected to high-pressure torsion
47. Improvement in mechanical strength of low-cost β-type Ti–Mn alloys fabricated by metal injection molding through cold rolling
48. Enhancing Functionalities of Metallic Materials by Controlling Phase Stability for Use in Orthopedic Implants
49. Athermal and deformation-induced ω-phase transformations in biomedical beta-type alloy Ti–9Cr–0.2O
50. Effects of Long-Chain Polyunsaturated Fatty Acids in Combination with Lutein and Zeaxanthin on Episodic Memory in Healthy Older Adults
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