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Feasibility of luminescent multilayer sol-gel thermal barrier coating manufacturing for future applications in through-thickness temperature gradient sensing

机译:发光多层溶胶-凝胶热障涂层制造在全厚度温度梯度传感中未来应用的可行性

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摘要

This paper investigates the feasibility of manufacturing sol-gel multilayer thermal barrier coatings (TBC) functionalized with different lanthanide ions Ln3 + having distinct photo-luminescence emission wavelengths (Ln = Sm, Eu, Dy, Er, Tm) for future applications in temperature gradient sensing. Ln3 + doped 9.75 mol% yttria stabilized zirconia (YSZ) powders were produced to study the effect of activator concentration on luminescence intensity and host matrix crystal structure. Self-quenching was found to limit the maximum signal-to-noise ratio achievable with Sm3 +, Dy3 +, Er3 + and Tm3 + activators, which was not the case for Eu3 + in the 1–10 mol% range. The increase in activator was found to affect the crystal structure of YSZ. A solution was proposed that suppressed this effect while significantly increasing the luminescence intensity of all activators. Finally a TBC sensor prototype integrating Eu3 +, Er3 + and Dy3 + doped layers distributed throughout the thickness was successfully deposited by a dip-coating sol-gel process and showed promising through-thickness luminescence sensing capabilities.
机译:本文研究了用具有不同光致发光发射波长(Ln = Sm,Eu,Dy,Er,Tm)的不同镧系元素离子Ln3 +功能化的溶胶-凝胶多层热障涂层(TBC)的可行性,以供将来在温度梯度中应用感应。制备了Ln3 +掺杂的9.75 mol%氧化钇稳定的氧化锆(YSZ)粉末,以研究活化剂浓度对发光强度和主体基质晶体结构的影响。发现自动猝灭限制了使用Sm3 +,Dy3 +,Er3 +和Tm3 +活化剂可达到的最大信噪比,而Eu3 +在1-10 mol%范围内并非如此。发现活化剂的增加影响YSZ的晶体结构。提出了一种解决方案,该解决方案在显着增加所有活化剂的发光强度的同时抑制了该效应。最终,通过浸涂溶胶-凝胶工艺成功沉积了整合了整个厚度分布的Eu3 +,Er3 +和Dy3 +掺杂层的TBC传感器原型,并显示出有希望的全厚度发光传感功能。

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