首页> 外文期刊>Journal of Thermal Spray Technology >Nanostructured and Conventional Cr2O3, TiO2, and TiO2-Cr2O3 Thermal-Sprayed Coatings for Metal-Seated Ball Valve Applications in Hydrometallurgy
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Nanostructured and Conventional Cr2O3, TiO2, and TiO2-Cr2O3 Thermal-Sprayed Coatings for Metal-Seated Ball Valve Applications in Hydrometallurgy

机译:湿法冶金中用于金属座球阀的纳米结构和常规Cr2O3,TiO2和TiO2-Cr2O3热喷涂涂层

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摘要

A detailed characterization project was undertaken by Velan, an international industrial valve designer and manufacturer, in collaboration with the National Research Council of Canada, Boucherville, and Polytechnique Montreal. The purpose was to assess the mechanical and tribological resistances of promising ceramic coatings for hydrometallurgy applications, including a novel n-TiO2-Cr2O3 blend. Hardness and shear strength were determined using microhardness indentation testers and universal tensile testing equipment. Wear resistance of the coatings under sliding wear, abrasion, and galling conditions were measured by standard pin-on-disk tests, abrasion tests, and custom-designed galling tests. The main result is that the synergy between Cr2O3 and n-TiO2 produced abrasion performance exceeding that of these materials alone. Also, an optimized balance between the hard and brittle Cr2O3 phases and the soft and ductile n-TiO2 phases resulted in higher abrasion, sliding, and galling resistance. The novel n-TiO2-Cr2O3 blend is therefore considered as a promising evolution of the current TiO2Cr2O3 blend.
机译:国际工业阀门设计者和制造商Velan与加拿大国家研究委员会,Boucherville和Montreal Polytechnique合作进行了详细的表征项目。目的是评估用于湿法冶金应用的有前途的陶瓷涂层(包括新型n-TiO2-Cr2O3混合物)的机械和摩擦学性能。使用显微硬度压痕测试仪和通用拉伸测试设备确定硬度和剪切强度。涂层在滑动磨损,磨损和擦伤条件下的耐磨性通过标准的针盘试验,耐磨性测试和定制设计的擦伤测试进行测量。主要结果是Cr2O3和n-TiO2之间的协同作用产生的磨损性能超过了仅这些材料。而且,硬和脆性Cr2O3相与软和易延展的n-TiO2相之间的最佳平衡导致更高的耐磨性,滑动性和耐磨损性。因此,新型的n-TiO2-Cr2O3共混物被认为是当前TiO2Cr2O3共混物的有前途的发展。

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