首页> 外文期刊>Materials and Manufacturing Processes >Effect of laser glazing on the thermo-mechanical properties of plasma-sprayed LaTi2Al9O19 thermal barrier coatings
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Effect of laser glazing on the thermo-mechanical properties of plasma-sprayed LaTi2Al9O19 thermal barrier coatings

机译:激光玻璃对等离子体喷涂拉伸拉伸涂层热机械性能的影响

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摘要

Conventional duplex (DL) and functionally graded (FG) LaTi2Al9O19 (LTA) coatings were deposited over C263 nickel alloy by air plasma spray (APS) and compared with subsequent laser glazing processes. The effect of laser glazing on adhesion strength and thermal barrier performance was investigated. The thermal barrier effect was measured using the temperature difference technique involving infrared (IR) rapid heater and the adhesion strength was measured using the scratch tester. The surface morphology and microstructure were analyzed by optical microscopy (OM), Scanning Electron Microscope (SEM) and 3D profilometer. Based on the experimental results, the laser glazing showed a remarkable temperature drop after IR rapid heating. The changes in porosity and grain refinement make more contributions to the temperature drop of the laser-glazed coatings than that of as-sprayed coatings. The temperature drop is about 110 degrees C for laser-glazed LTA FG coating after 100s of IR flash, while the drop in DL as-sprayed coating is 60 degrees C compared to the base material.
机译:通过空气等离子体喷雾(AP)在C263镍合金上沉积常规的双链体(DL)和功能梯度(FG)Lati2Al9O19(LTA)涂层,并与随后的激光玻璃加工过程进行比较。研究了激光玻璃对粘合强度和热阻挡性能的影响。使用涉及红外线(IR)快速加热器的温差技术测量热阻挡效果,并且使用划痕测试仪测量粘合强度。通过光学显微镜(OM),扫描电子显微镜(SEM)和3D轮廓仪分析表面形态和微观结构。基于实验结果,激光玻璃窗在IR快速加热后显示出显着的温度下降。孔隙率和晶粒细化的变化对激光釉面涂层的温度降至比喷涂涂层的温度降低产生更多贡献。温度下降约为110℃,用于100次IR闪光后的激光玻璃LTA FG涂层,而DL喷涂涂层的下降与基材相比为60℃。

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