Yttrium oxide laser transparent ceramic material with incentive elements in continuous gradient distribution and preparation method thereof
A gradient distribution, ceramic material technology, applied in the field of materials, can solve problems such as the inability to eliminate the influence of the interface thermal effect, the inability to fundamentally solve the thermal effect problem, and the incomplete elimination of the interface, so as to eliminate thermal stress and its influence on the laser beam. Quality and average power improvement, low cost effect
- Summary
- Abstract
- Description
- Claims
- Application Information
AI Technical Summary
Problems solved by technology
Method used
Image
Examples
Embodiment 1
[0046] Prepare Y (NO 3 ) 3 solution, and adjust the pH=1 with a nitric acid solution with a concentration of 0.1M; prepare Yb with a molar concentration of 0.01M (NO 3 ) 3 solution, and adjust the pH=1 with a nitric acid solution with a concentration of 0.1M; prepare a urea solution with a molar concentration of 0.5M;
[0047] Preparation of Yb:Y 2 o 3 Spherical nano powder:
[0048] Will Y (NO 3 ) 3 solution, Yb(NO 3 ) 3 Solution and urea solution are mixed evenly to make rare earth doped yttrium oxide mother salt solution, wherein Y(NO 3 ) 3 and Yb (NO 3 ) 3 The molar ratio of Y (NO 3 ) 3 and Yb (NO 3 ) 3 The molar ratio of the total amount of urea to urea is 1:10; the rare earth-doped yttrium oxide mother salt solution is heated to 90°C within 0.5 hours, and kept for 5 hours to obtain a white precipitate; the white precipitate is collected by filtration and washed, and the cleaning is first with water Wash and filter the white precipitate, and then wash and...
Embodiment 2
[0060] Prepare the molar concentration of 0.5M Y (NO 3 ) 3 solution, and adjust the pH=5 with a nitric acid solution with a concentration of 1M; prepare a molar concentration of 0.5M Yb (NO 3 ) 3 solution, and adjust the pH=5 with a nitric acid solution with a concentration of 1M; prepare a urea solution with a molar concentration of 2M;
[0061] Preparation of Yb:Y 2 o 3Spherical nano powder:
[0062] Will Y (NO 3 ) 3 solution, Yb(NO 3 ) 3 Solution and urea solution are mixed evenly to make rare earth doped yttrium oxide mother salt solution, wherein Y(NO 3 ) 3 and Yb (NO 3 ) 3 The molar ratio of Y (NO 3 ) 3 and Yb (NO 3 ) 3 The molar ratio of the total amount of urea to urea is 1:30; the rare earth-doped yttrium oxide mother salt solution is heated to 82°C within 1 hour, and kept for 3 hours to obtain a white precipitate; the white precipitate is collected by filtration and washed. Wash and filter the white precipitate, then wash and filter the white precipi...
Embodiment 3
[0074] Prepare the molar concentration of 0.1M Y (NO 3 ) 3 solution, and adjust the pH=35 with 0.2M nitric acid solution; prepare Yb (NO 3 ) 3 solution, and adjust the pH=3 with a nitric acid solution with a concentration of 0.2M; prepare a urea solution with a molar concentration of 1M;
[0075] Preparation of Yb:Y 2 o 3 Spherical nano powder:
[0076] Will Y (NO 3 ) 3 solution, Yb(NO 3 ) 3 Solution and urea solution are mixed evenly to make rare earth doped yttrium oxide mother salt solution, wherein Y(NO 3 ) 3 and Yb (NO 3 ) 3 The molar ratio of Y (NO 3 ) 3 and Yb (NO 3 ) 3 The molar ratio of the total amount of urea to urea is 1:10; the rare earth-doped yttrium oxide mother salt solution is heated to 98°C within 4 hours, and kept for 0.5 hours to obtain a white precipitate; the white precipitate is collected by filtration and washed. Wash and filter the white precipitate, then wash and filter the white precipitate with absolute ethanol until there is no ni...
PUM
| Property | Measurement | Unit |
|---|---|---|
| particle diameter | aaaaa | aaaaa |
| density | aaaaa | aaaaa |
| particle diameter | aaaaa | aaaaa |
Abstract
Description
Claims
Application Information
Login to View More 