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Alumina composite coatings with enhanced high-temperature electrical insulating properties on Ni-based superalloy substrates

机译:氧化铝复合涂层具有增强的高温高温合金基材上的高温电绝缘性能

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摘要

Electrical insulation of nickel-based superalloy substrate, especially at high temperature range, is one of the major challenges for the reliability and stability of the integrated thin-film sensors. Here, we report a solution processed approach to fabricating high-temperature, electrically insulating coatings on Ni-based superalloy substrates. NiCrAlY coatings were fabricated by DC magnetron sputtering and heat-treated, and then Al2O3 films were deposited by sol-gel method. X-ray diffraction, X-ray photoelectron spectroscopy and scanning electron microscopy were used to characterize the composition, phase, microstructure and morphology of these composite coatings. The electrical resistance of the composite coating was measured as a function of temperature up to 800 degrees C. Electrical resistance greater than 1 M Omega were consistently achieved from 600 degrees C to 800 degrees C. Moreover, this insulating coating survived thermal shock and thermal fatigue tests without cracking or delaminating. A type S thin-film thermocouple was prepared on the composite coating to verify its high-temperature electrical insulation performance.
机译:镍基超合金基板的电绝缘,尤其是在高温范围内,是集成薄膜传感器可靠性和稳定性的主要挑战之一。这里,我们报告了在基于Ni的超合金基板上制造高温电绝缘涂层的解决方案的方法。通过DC磁控溅射和热处理制造幼亮涂层,然后通过溶胶 - 凝胶法沉积Al 2 O 3膜。 X射线衍射,X射线光电子能谱和扫描电子显微镜用于表征这些复合涂层的组成,相,微观结构和形态。作为温度高达800℃的函数测量复合涂层的电阻。此外,该绝缘涂层始终达到大于1mΩω的电阻大于1mΩω。此外,这种绝缘涂层存活了热冲击和热疲劳在没有开裂或分层的情况下进行测试。在复合涂层上制备了S型薄膜热电偶,以验证其高温电绝缘性能。

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