Assessment of the Thermal Shock Resistance of Neodymium Doped Alumino-Phosphate Laser Glasses

Crystal Guillet, Rafael José Jiménez-Riobóo, Francisco Muñoz
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Abstract

The resistance to thermal shock is one of the main properties to be considered in the design of glasses for their application as high power and high energy laser glasses. Neodymium doped phosphate glasses have inherent spectroscopic advantages for their use as laser hosts, however, their rather low mechanical performance can be a limiting factor for their use. It is very important to characterise the thermo-mechanical resistance of proprietary phosphate glass compositions as laser glasses, however, it is not common to find systematic studies on the influence of glass composition on the thermal shock resistance in phosphate glasses, which is defined as the mechanical resistance of the material to the stresses generated by thermal fluctuations. This includes considering the elastic properties of the medium, its thermal conductivity, the coefficient of thermal expansion and the fracture toughness. In the present work we have studied these properties in a series of alumino-phosphate glasses doped with Nd2O3 as a function of the alumina content. The above properties have been determined by Brillouin spectroscopy, dilatometry and thermal diffusivity, while the fracture toughness has been approached by means of a theoretical model that uses the calculation of the energy necessary to create a new surface while a pre-existing crack progresses. The results showed that the calculated fracture toughness agrees with the one of similar commercial laser glass compositions, and that the thermal shock resistance calculated in the metaphosphate glasses increases with the addition of Al2O3.
评估掺钕磷铝激光玻璃的抗热震性
抗热冲击性能是高功率高能激光玻璃设计中需要考虑的主要性能之一。掺钕磷酸盐玻璃作为激光宿主具有固有的光谱优势,但其较低的机械性能可能成为其使用的限制因素。将专有磷酸盐玻璃成分的热机械电阻表征为激光玻璃是非常重要的,然而,关于玻璃成分对磷酸盐玻璃的热冲击电阻影响的系统研究并不常见,磷酸盐玻璃的热冲击电阻被定义为材料对热波动产生的应力的机械电阻。这包括考虑介质的弹性性能、导热系数、热膨胀系数和断裂韧性。在本研究中,我们研究了一系列掺Nd2O3的磷酸铝玻璃的这些性能与氧化铝含量的关系。上述性能已通过布里渊光谱、膨胀测量法和热扩散系数确定,而断裂韧性已通过理论模型接近,该模型使用计算在原有裂纹发展时产生新表面所需的能量。结果表明,计算得到的断裂韧性与同类工业激光玻璃的断裂韧性基本一致,并且随着Al2O3的加入,偏磷酸盐玻璃的抗热震性能有所提高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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