首页> 外文期刊>Journal of Thermal Spray Technology >Optimization of Plasma-Sprayed Lanthanum Chromite Interconnector Through Powder Design and Critical Process Parameters Control
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Optimization of Plasma-Sprayed Lanthanum Chromite Interconnector Through Powder Design and Critical Process Parameters Control

机译:通过粉末设计和关键工艺参数控制优化等离子体喷涂的铬铁矿互联网

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摘要

For tubular solid oxide fuel cells (SOFCs), individual cells are connected in series by the interconnector to obtain desired voltage and power output. As the most widely used ceramic interconnector for high-temperature SOFCs, lanthanum chromite-based material is quite difficult to sinter to high density due to the high vapor pressure of the chromium component. In this paper, dense strontium-doped lanthanum chromite (LSC) membranes with enhanced lamellar interface bonding were achieved at an elevated deposition temperature over the critical bonding temperature by atmospheric plasma spraying (APS). The effects of molten droplet particle size on the chemical composition and phase structure of LSC deposits were studied. The preferential vaporization of Cr during plasma spraying was of the greatest interest here. When the particle size of molten droplet was smaller than 30 mu m, the vaporization loss of Cr increased remarkably with the decrease in particle size, resulting in impurity phases. When the particle size was larger than 30 mu m, the vaporization loss of Cr was greatly reduced. The electrical conductivity of plasma-sprayed LSC deposits reached 8.7 and 2.1 S/cm at 850 degrees C in oxidizing and reducing atmospheres, respectively. The optimized LSC deposits exhibited good stabilities of phase structure and properties under operation conditions, which is adequate for SOFC interconnector application.
机译:对于管状固体氧化物燃料电池(SOFC),各个电池由互连器串联连接,以获得所需的电压和功率输出。作为用于高温SOFC的最广泛使用的陶瓷互联网,由于铬成分的高蒸气压,铬菊酯基材料非常难以烧结至高密度。本文通过大气等离子体喷射(APS)在临界粘合温度上升高的沉积温度,实现了具有增强层状界面键合的致密锶掺杂的铬铬铬(LSC)膜。研究了熔融液滴粒径对LSC沉积物的化学成分和相结构的影响。在等离子体喷涂期间Cr的优先蒸发在这里最令人兴趣。当熔融液滴的粒度小于30μm时,Cr的蒸发损失随着粒度的降低而显着增加,导致杂质相。当粒径大于30μm时,Cr的蒸发损失大大降低。等离子体喷涂的LSC沉积物的导电性分别在850℃下达到8.7和2.1 s / cm,分别氧化和减少大气压。优化的LSC沉积物在操作条件下表现出相相结构和性能的良好稳定性,这适用于SOFC互连器应用。

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