Ryugaku Jinja · Professor Archive
Public Professor Archive
Miyagi Kazuya宮城 加津也
University of the Ryukyus · Faculty of Engineering · 助教
- Publications
- 4
- Projects
- 2
- Keywords
- 5
留学
神社University of the Ryukyus · Faculty of Engineering · 助教
Research keywordsフォトニック結晶ファイバ・石英ナノ粒子焼結体・透明セラミックス・ビーズミル粉砕・DEMシミュレーション
This is a public-data preview. Personalized fit, contact angles, and saved workflows require sign-in.
- Manufacturing Conditions for Non-Melting Polycrystalline Translucency Ceramics Using Composite Quartz Materials2023 · Kazuya Miyagi, Yosuke Fukano (担当範囲: 全般、執筆)
- 複合石英材料を用いた非溶融-多結晶-透光性セラミックス作製における製造条件2021 · 宮城 加津也、深野 陽介 (担当範囲: 全て)
- 複合石英材料を用いた非溶融-多結晶-透光性セラミックス作製における製造条件2021 · <p>Verification of the manufacturing conditions for translucency ceramics are showed using powder forming and sintering method in order to establish the manufacturing technology for optical devices with arbitrary complex shape and shape retention, and high-optical excitation. However, this method is extremely difficult to obtain translucency ceramics because the combination of complex factors such as “the shape and particle size of the raw materials, forming conditions and sintering” adversely affect the translucency of the sintered material, which is caused by the transmitted light scattering of the sintered material. Therefore, we have succeeded in realizing translucent ceramics by examining these complicated factors (materials, molding, sintering conditions, crystallization) and specifying the amorphous sintering conditions and the densification-molding conditions necessary to eliminate the light scattering factors inherent in sintered materials. It is necessary to show the correlation of the volume change with respect to T<sub>g</sub>-temperature and T<sub>m</sub>-temperature, which are important regarding amorphization, considering the sintering treatment conditions that depend on the particle size of the raw material fine powder, and to specify the molding body-pressurization (pressure and time) conditions. These optimizations will make it possible to develop the expected high-functional-photoelectric optical devices with microstructures and, high-power laser light sources independent of materials.</p>
- Verification of Optical Transmission Wide-running range Possible OPGW using the Photonic Crystal Fibers2016 · N.Ikedo, K.Miyagi, R.Nisikawa and T.Tomimura
Next stepSign in for fit and contact guidance
Personalized fit, contact angles, and saved workflows require sign-in.