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Tensile strength and elastic moduli of composite solid state laser media

机译:复合固态激光介质的拉伸强度和弹性模量

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Adhesive-Free Bonded (AFB) composite components for solid state lasers essentially are only held together by Van der Waals attractive forces. Composites that have been evaluated include single crystal YAG, optical ceramic YAG, sapphire, crystal YAG/ sapphire, ceramic YAG/sapphire, single crystal spinel, ceramic spinel, single crystal spinel/ single crystal YAG. These composites are of interest for high average power AFB slabs, waveguides and disks. Since AFB composites of laser media do not fail in tensile fracture at the interface but at random surface flaws; an interferometric technique has been developed to measure the E-modulus which in turn is a measure of the cohesive strength of the bulk material. The E-modulus of composites has been determined to be on average only about 5-10% lower than that of the bulk material, confirming the excellent bond strength of Van der Waals composites.
机译:用于固态激光器的无粘合剂(AFB)复合部件基本上仅由Van der Waals吸引力举在一起。已经评估的复合材料包括单晶YAG,光学陶瓷YAG,蓝宝石,晶体YAG /蓝宝石,陶瓷YAG /蓝宝石,单晶尖晶石,陶瓷尖晶石,单晶尖晶石/单晶YAG。这些复合材料对于高平均电力AFB板,波导和磁盘非常感兴趣。由于激光介质的AFB复合材料在界面处的拉伸骨折中没有失效,而且在随机表面缺损处;已经开发了一种干涉技术来测量e-modumululululululululumumumums,这反过来是散装材料的粘性强度的量度。已经确定复合材料的E模量平均低于散装材料的约5-10%,确认了范德瓦尔斯复合材料的优异粘合强度。

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