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首页> 外文期刊>Surface & Coatings Technology >The friction and wear characteristics of low-pressure plasma-sprayed ZrO2-BaCrO4 composite coating at elevated temperatures
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The friction and wear characteristics of low-pressure plasma-sprayed ZrO2-BaCrO4 composite coating at elevated temperatures

机译:低压等离子喷涂ZrO2-BaCrO4复合涂层在高温下的摩擦磨损特性

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The friction and wear characteristics of low-pressure plasma-sprayed (LPPS) ZrO2 -BaCrO2 (ZB) coating at elevated temperatures have been studied using a high-temperature reciprocating wear tester. The ZB coating exhibits a less porous, alternative lamellar structure and a better splat spreading as contrasted to the porous yttria partially stabilized zirconia (YPSZ) coating. The hardness of the ZB coating is 276-435 HV, which is much lower than that of the YPSZ coating (650-727 HV). The ZB coating shows distinct improvements in wear resistance and frictional characteristics at elevated temperatures, as contrasted to the YPSZ coating. At room temperature, the friction coefficient of the ZB coating against sintered Al2O3 is quite high and exhibits an increase in trend with increasing load. At above 300 degreesC, the ZB coating exhibits low friction and mild wear. But for the YPSZ coating, the situation is reversed with increasing temperature. Brittle fracture and delamination featured by large wear sheets are considered as the dominated wear mechanisms of the ZB coating at low temperatures. However, plastic deformation, formation and transfer of BaCrO4 lubrication films appears as the main wear mechanisms at elevated temperatures. BaCrO4, acting as an effective solid lubricant at above 300 degreesC, reduces the friction and wear of the coating. (C) 2002 Elsevier Science B.V. All rights reserved. [References: 14]
机译:使用高温往复磨损试验机研究了低压等离子体喷涂(LPPS)ZrO2-BaCrO2(ZB)涂层在高温下的摩擦磨损特性。与多孔氧化钇部分稳定的氧化锆(YPSZ)涂层相比,ZB涂层具有较少的多孔性,可替代的层状结构和更好的飞溅扩展性。 ZB涂层的硬度为276-435 HV,远低于YPSZ涂层的硬度(650-727 HV)。与YPSZ涂层相比,ZB涂层在高温下的耐磨性和摩擦特性明显改善。在室温下,ZB涂层对烧结的Al2O3的摩擦系数非常高,并且随着载荷的增加呈现出增加的趋势。在高于300摄氏度时,ZB涂层显示出低摩擦和轻度磨损。但是对于YPSZ涂层,情况会随着温度的升高而逆转。大型耐磨片的脆性断裂和分层被认为是ZB涂层在低温下的主要磨损机理。但是,BaCrO4润滑膜的塑性变形,形成和转移似乎是高温下的主要磨损机理。 BaCrO4在300摄氏度以上可作为有效的固体润滑剂,可减少涂层的摩擦和磨损。 (C)2002 Elsevier Science B.V.保留所有权利。 [参考:14]

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