Current trend on high energy laser is now the booming field of research, because of the continuous increase in the power output such as 100 KW. The increase in power output is due to increase in active ion concentration and size of the laser host material. The current work is based on the synthesis of Yttrium Aluminium Garnet (YAG-Y3Al5O12) nanopowders for the fabrication of transparent ceramic laser gain media. YAG nanopowders have been prepared by co-precipitation route by using Aluminum nitrate and Yttria as starting precursor and precipitated against ammonium bicarbonate at low temperature (10 o C) and pH 7.3. All the subsequent washing and freeze drying processes to obtain agglomerate free powder are carried out at 10 o C and -52 oC, respectively. The as-precipitate agglomerate free powder is further calcined in the temperature range from 900 to 1100 o C. The powder calcined at 900 o C is highly reactive with a particle size below 50 nm and surface area of 42 m2/gm. The calcined powders are doped with silica, consolidated through uniaxial pressing and followed by atmospheric pressure-less sintering at 1650 o C for 6 hr. Sintering profile has been optimized on the basis of achieved ĉrel ~ 99% and further proceed for spark plasma sintering with addition of 5at% Nd dopant concentration. The spark plasma sintering process is carried out at 1300 and 1400 o C for 5 minutes with a uniaxial loading of 62 MPa. Optical transparency of spark plasma sintered disc specimen is rendered transmission of 30 % in the infrared range and 10 % in the visible range.
展开▼
机译:由于功率输出(例如100 KW)的持续增加,目前高能激光器的当前趋势正在蓬勃发展。功率输出的增加归因于活性离子浓度和激光主体材料尺寸的增加。当前的工作是基于钇铝石榴石(YAG-Y3Al5O12)纳米粉的合成,用于制造透明陶瓷激光增益介质。 YAG纳米粉体是通过共沉淀法制备的,以硝酸铝和氧化钇为起始前体,并在低温(10 o C)和pH 7.3下针对碳酸氢铵沉淀。随后进行的所有洗涤和冷冻干燥过程均分别在10°C和-52°C下进行,以获得无团聚的粉末。沉淀的无团聚粉末进一步在900至1100 o C的温度范围内煅烧。在900 o C煅烧的粉末具有很高的反应活性,粒径小于50 nm,表面积为42 m2 / gm。煅烧的粉末掺有二氧化硅,通过单轴压制固结,然后在1650 o C下进行无气压烧结6小时。烧结曲线已根据达到约99%的条件进行了优化,并通过添加5at%的Nd掺杂剂浓度进一步进行火花等离子体烧结。火花等离子体烧结过程在1300和1400 o C下进行5分钟,单轴载荷为62 MPa。火花等离子体烧结的圆盘样品的光学透明度在红外范围内透射率为30%,在可见光范围内透射率为10%。
展开▼