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首页> 外文期刊>Surface & Coatings Technology >A comparative study on the microstructure and surface property evaluation of coatings produced from nanostructured and conventional WC-Co powders HVOF-sprayed on Al7075
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A comparative study on the microstructure and surface property evaluation of coatings produced from nanostructured and conventional WC-Co powders HVOF-sprayed on Al7075

机译:纳米结构和常规WCOF粉末HVOF喷涂在Al7075上的涂层的微观结构和表面性能评估的比较研究

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Conventional and nanostructured WC-12 wt% Co powders were HVOF sprayed on Al7075-T6. The nanocoatings presented slightly less microporosity, higher microhardness, higher fracture toughness but higher decarburizadon, than the conventional ones. The nanocoatings exhibited greater resistance to general corrosion and localized corrosion in 3.5% NaCl than their conventional counterparts. Other than an occasional removal of WC nanoparticles, corrosion modes appeared similar for both types of coatings, characterized by selective dissolution of Co, formation of protective surface films and crevice corrosion along interlayer boundaries. Both types of coatings exhibited high dry sliding wear resistance. Nevertheless, the wear performance of the nanocoatings was even superior than that of their conventional counterparts. Main wear modes included plastic deformation of binder, oxidative wear leading to the formation of lubricating oxides and adhesive wear leading to the formation of alumina-rich surface depositions (from the Al2O3 counter balls). Coating of Al7075 with nano WC-12Co was proved effective in terms of microstructural features, corrosion and wear behaviour. (C) 2015 Elsevier B.V. All rights reserved.
机译:将常规和纳米结构的WC-12 wt%Co粉末喷涂在Al7075-T6上的HVOF。与常规涂层相比,纳米涂层的微孔率略低,显微硬度较高,断裂韧性较高,而脱碳尿烷含量较高。纳米涂层在3.5%NaCl中表现出比常规涂层更大的耐一般腐蚀和局部腐蚀的能力。除了偶尔去除WC纳米颗粒外,两种类型的涂层的腐蚀模式都相似,其特征在于Co的选择性溶解,形成保护性表面膜和沿层间边界的缝隙腐蚀。两种类型的涂料均表现出高的干滑耐磨性。然而,纳米涂层的磨损性能甚至优于传统涂层。主要磨损方式包括粘合剂的塑性变形,导致形成润滑性氧化物的氧化磨损和导致形成富氧化铝表面沉积物(由Al2O3埋藏球形成)的粘合剂磨损。在微观结构特征,腐蚀和磨损行为方面,Al7075纳米WC-12Co涂层被证明是有效的。 (C)2015 Elsevier B.V.保留所有权利。

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