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Infrared Optical and Mechanical Properties of Ceramic Coatings Fabricated by Aerosol Deposition

机译:由气溶胶沉积制造的陶瓷涂层的红外光学和力学性能

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摘要

The possibility and mechanical improvement of the infrared ceramic coatings fabricated on fluoride substrates at room temperature by aerosol deposition (AD) were investigated aiming to optical components for infrared applications and devices. The yttria coating possibility fabricated on barium fluoride substrates by the AD process was found by adjusting one of the deposition conditions. The optical and mechanical properties of the fabricated ceramic coatings, which are important in practical applications, were evaluated by transmittance and hardness measurements respectively. The mechanical hardness of the fabricated yttria single coatings was increased to 4 times higher than that of the barium fluoride substrates. Furthermore, by an additional layer on a barium fluoride substrate, the mechanical properties of the fabricated multi-coatings including an upper yttria layer were improved from that of the single yttria coating on the barium fluoride substrate, retaining the IR transmittance of the single yttria coating at the wavelength of 10μm.
机译:通过气溶胶沉积(AD)在室温下在氟化物衬底上制造的红外陶瓷涂层的可能性和机械改善旨在用于红外应用和装置的光学部件。通过调节其中一个沉积条件,发现通过AD处理在氟化钡基材上制造的ytTria涂层可能性。通过透射率和硬度测量评估了制造的陶瓷涂层的光学和机械性能,这些陶瓷涂层在实际应用中是重要的。制造的氧化钇单涂层的机械硬度增加到氟化钡基材的4倍。此外,通过氟化钡基板上的附加层,从氟化钡基材上的单ytTRIA涂层的制造多涂层的机械性能从氟化钡基板上的透射率改善了单个yttra涂层的IR透射率在10μm的波长下。

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