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首页> 外文期刊>Coatings >Wear Behavior Analysis of Al2O3 Coatings Manufactured by APS and HVOF Spraying Processes Using Powder and Suspension Feedstocks
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Wear Behavior Analysis of Al2O3 Coatings Manufactured by APS and HVOF Spraying Processes Using Powder and Suspension Feedstocks

机译:使用粉末和悬浮原料制造APS和HVOF喷涂过程制造的AL2O3涂层的磨损行为分析

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Thermally sprayed ceramic coatings are applied for the protection of surfaces that are exposed mainly to wear, high temperatures, and corrosion. In recent years, great interest has been garnered by spray processes with submicrometric and nanometric feedstock materials, due to the refinement of the structure and improved coating properties. This paper compares the microstructure and tribological properties of alumina coatings sprayed using conventional atmospheric plasma spraying (APS), and various methods that use finely grained suspension feedstocks, namely, suspension plasma spraying (SPS) and suspension high-velocity oxy-fuel spraying (S-HVOF). Furthermore, the suspension plasma-sprayed Al2O3 coatings have been deposited with radial (SPS) and axial (A-SPS) feedstock injection. The results showed that all suspension-based coatings demonstrated much better wear resistance than the powder-sprayed ones. S-HVOF and axial suspension plasma spraying (A-SPS) allowed for the deposition of the most dense and homogeneous coatings. Dense-structured coatings with low porosity (4 vol.%) and good cohesion to the metallic substrate, containing a high content of α–Al2O3 phase (56 vol.%) and a very low wear rate (0.2 ± 0.04 mm3 × 10?6/(N?m)), were produced with the S-HVOF method. The wear mechanism of ceramic coatings included the adhesive wear mode supported by the fatigue-induced material delamination. Moreover, the presence of wear debris and tribofilm was confirmed. Finally, the coefficient of friction for the coatings was in the range between 0.44 and 0.68, with the highest values being recorded for APS sprayed coatings.
机译:施加热喷涂的陶瓷涂层用于保护主要穿过磨损,高温和腐蚀的表面。近年来,由于结构的改进和改进的涂布性能,通过用潜在的丘疹和纳米原料材料喷射过程获得了极大的兴趣。本文比较了使用常规大气等离子体喷涂(APS)喷涂的氧化铝涂层的微观结构和摩擦学特性,以及使用精细堆积的悬浮原料的各种方法,即悬浮等离子体喷涂(SPS)和悬浮高速氧燃料喷涂(S. -hvof)。此外,悬浮等离子体喷涂的Al2O3涂层已经沉积有径向(SPS)和轴向(A-SPS)原料喷射。结果表明,所有悬架的涂层显示出比粉末喷涂的耐磨性更好。 S-HVOF和轴向悬浮等离子体喷涂(A-SP)允许沉积最致密的均匀涂层。孔隙率的致密结构涂层(4体积%)和金属基材的良好内聚力,含有高含量的α-Al 2 O 3相(56体积%)和非常低的磨损率(0.2±0.04mm3×10?用S-HVOF方法制备6 /(N?M))。陶瓷涂层的磨损机构包括疲劳诱导的材料分层支撑的粘合剂耐磨模式。此外,确认了磨损碎片和呋喃酚的存在。最后,涂层的摩擦系数在0.44和0.68的范围内,对于APS喷涂涂料,记录的最高值。

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