首页> 外文期刊>Journal of Thermal Spray Technology >The Influence of Plasma Composition in the Thermal Cyclic Performance of Yttria-Stabilized Zirconia (8YSZ) Thermal Barrier Coatings (TBCs)
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The Influence of Plasma Composition in the Thermal Cyclic Performance of Yttria-Stabilized Zirconia (8YSZ) Thermal Barrier Coatings (TBCs)

机译:血浆组合物在氧化钇稳定氧化锆(8苏斯)热障涂层(TBCS)的热环状性能中的影响

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摘要

In the combustion chambers of gas turbine engines, ZrO2-8wt.%Y2O3 (YSZ) TBCs are commonly applied by air plasma spray (APS) using Ar-/H-2-based plasmas via legacy torches. Alternatively, N-2/H-2 plasmas could be used with the potential of increasing overall deposition efficiency (DE) and hence reduce the consumption of high-value feedstock powder. Also, by increasing DE, spraying time would be reduced, thereby providing another contribution to bring down production costs. In this work, TBCs were prepared with Ar- and N-2-based plasmas with different YSZ powders using Metco 9MB legacy torch. The use of N-2-based plasma resulted in higher particle temperature and lower particle velocity values than those provided by the Ar-based plasma. The measured DEs were between 41-43 and 53-60% for the Ar- and N-2-based plasmas, respectively. This represents a similar to 40% increase in the DE. The coatings produced with the two different plasmas exhibited equivalent porosity levels similar to 11-13%. On average, the lowest thermal conductivity values were given by a N-2-based LD-B YSZ TBC. In the furnace cycle test, the performance of the TBCs prepared with the N-2-based plasma was superior to that of the TBCs prepared with the Ar plasma, and also exceeding that of an industrial APS TBC benchmark.
机译:在燃气轮机发动机的燃烧室中,ZrO2-8wt.%Y2O3(YSZ)热障涂层通常通过传统焊炬使用Ar-/H-2基等离子体通过空气等离子喷涂(APS)应用。或者,可以使用N-2/H-2等离子体来提高整体沉积效率(DE),从而降低高价值原料粉末的消耗。此外,通过增加DE,喷洒时间将缩短,从而为降低生产成本提供另一个贡献。在这项工作中,使用Metco 9MB遗留火炬,使用不同YSZ粉末的Ar和N-2基等离子体制备TBC。与Ar基等离子体相比,使用N-2基等离子体导致更高的粒子温度和更低的粒子速度值。对于Ar和N-2基等离子体,测得的DEs分别在41-43%和53-60%之间。这意味着DE增加了40%。使用两种不同等离子体产生的涂层显示出类似于11-13%的等效孔隙率水平。平均而言,最低热导率值由基于N-2的LD-B YSZ TBC给出。在熔炉循环试验中,使用N-2基等离子体制备的TBC的性能优于使用Ar等离子体制备的TBC,并且也超过了工业APS TBC基准。

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