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Development of suspension plasma sprayed alumina coatings with high enthalpy plasma torch

机译:高焓等离子体火炬悬浮等离子体喷涂氧化铝涂层的研制

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Deposition of aluminium oxide (Al2O3) coatings from liquid feedstocks using a high enthalpy hybrid water-stabilized plasma torch was investigated. The entire process included the optimization of spraying parameters using a commercial ready-to-spray suspension, optimization and deposition of custom-made suspensions and one solution and evaluation of mechanical properties of the most durable coatings. Acquired coating microstructures varied from porous with typical columnar morphology to well-sintered dense structures with low porosity. The microstructural features were clearly linked to the feedstock formulation. The most durable coating with the highest density microstructure prepared from ethanol-based suspension showed outstanding mechanical properties, e.g. high values of hardness (up to 1211 HV0.3), tensile adhesion strength (up to 51 MPa) and wear resistance (material removal rate as low as 1.94.10(-5) mm(3).N-1.m(-1) as measured by pin-on-disc test). Moreover, deposition from a water-based solution of aluminium nitrate resulted in deposition of highly porous coating composed predominantly of stable a-alumina phase. (C) 2017 Elsevier B.V. All rights reserved.
机译:研究了使用高焓杂交水稳定的等离子体火炬从液体原料沉积氧化铝(Al2O3)涂层。整个过程包括使用商业准备喷涂悬浮液,优化和定制悬浮液的优化和沉积的喷涂参数的优化和最耐用涂层的机械性能的一种解决方案。获得的涂层微结构在多孔中变化,典型的柱状形态与具有低孔隙率的烧结致密结构。微观结构特征明显与原料配方相关联。最耐用的涂层具有由乙醇基悬浮液制备的最高密度微观结构的涂层显示出优异的机械性能,例如,优异的机械性能。硬度高(高达1211 HV0.3),拉伸粘附强度(高达51MPa)和耐磨性(材料去除率低至1.94.10(-5)mm(3).n-1.m( -1)通过引脚盘式测试测量)。此外,从水基硝酸铝溶液中沉积导致主要多孔涂层主要组成,主要是稳定的A-氧化铝相。 (c)2017年Elsevier B.V.保留所有权利。

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