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- 纳米Al2O3颗粒Al2O3 nano-particle
- Al2O3颗粒Al2O3 particles
- 纳米Al2O3陶瓷nano-Al2O3 ceramics
- 纳米Al2O3微粒Nano - Al2O3 particle
- 镀铜Al2O3颗粒copper-coated Al2O3 particles
- 原位Al2O3颗粒in-situ Al2O3 particles
- 纳米nanometer
- 纳米Al2O3质点Nano-Al203 particle
- Ni/Al2O3颗粒Ni/Al2O3 layer
- 纳米材料nanophase materials
- 亚微米Al2O3颗粒sub-micron Al2O3 particle
- 纳米技术nanotechnology
- 碳纳米管carbon nano tube
- Ni-W-纳米Al2O3复合涂层Ni-W-nano Al2O3 composite coating
- 纳米颗粒nano particle
- 并通过分析填充纳米Al2O3的PVDF-HFP膜的FT-IR光谱图,从微观上说明了Al2O3与聚合物电解质膜中的PVDF-HFP基体存在相互作用。It suggested an interaction between nanometeric Al2O3 particles and PVDF-HFP polymer matrix in polymer electrolyte membrane from the FT-IR spectroscopy.
- 研究表明,通过在钎料中加入活性元素Ti,可以减少和消除钎缝中的Al2O3颗粒,避免Al2O3颗粒在钎缝中的聚集,实现离子共价键Al2O3向类金属键TiO转化,从而提高钎缝基体与颗粒相之间的匹配性。The results of this work show that through adding active element Ti to the filler metal, the A12 O3 grains in the brazing seam are decreased or e-liminated, and the concentration of A12O3 grains in the seam is avoided, the ionic covalent bond A12O3 is transformes to metallic bond TiO, so that the matching - ability of the brazing seam matrix and the grain phase is enhanced.
- TiN纳米颗粒TiN nanoparticles
- 铝纳米颗粒aluminum nanoparticles
- 碳纳米颗粒carbon nano particles