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FUNCTIONAL COATINGS FOR DAMAGE DETECTION IN AEROSPACE STRUCTURES

机译:航空航天结构损坏检测功能涂层

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The future of aerospace structures is highly dependent on the advancement of reliable and high-performance materials, such as composite materials and metals. Innovation in high resolution non-invasive evaluation of these materials is needed for their qualification and monitoring for structural integrity. Aluminum oxide (or α-alumina) nanoparticles present photoluminescent properties that allow stress and damage sensing via photoluminescence piezospectroscopy. This work describes how these nanoparticles are added into a polymer matrix to create functional coatings that monitor the damage of the underlying composite or metallic substrates. Different volume fractions of α-alumina nanoparticles in the piezospec-troscopic coatings were studied for determining the sensitivity of the coatings and successful damage detection was demonstrated for an open-hole tension composite substrate as well as 2024 aluminum tensile substrates with a subsurface notch.
机译:航空航天结构的未来高度依赖于可靠和高性能材料的进步,例如复合材料和金属。 对结构完整性的资格和监测需要高分辨率的非侵入性评估的高分辨率非侵入性评估。 氧化铝(或α-氧化铝)纳米颗粒具有光致发光性能,其允许通过光致发光压电镜检查应力和损伤感测。 该工作描述了将这些纳米颗粒的加入聚合物基质中的方式,以产生函数涂层,其监测底层复合材料或金属基材的损伤。 研究了压电间隙涂层中的α-氧化铝纳米粒子的不同体积分数,用于确定涂层的灵敏度,并且对于开孔张力复合基板以及具有地下凹口的2024铝拉伸基板对成功的损伤检测。

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