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Microstructural Evaluation of Suspension Thermally Sprayed WC-Co Nanocomposite Coatings

机译:悬浮热喷涂WC-Co纳米复合涂料的微观结构评价

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Microstructural and sliding wear evaluations of nanostructured coatings deposited by Suspension High Velocity Oxy-Fuel (S-HVOF) spraying were conducted in as-sprayed and HIPed (Hot Isostatically Pressed) conditions. S-HVOF coatings were nanostructured via ball milling of the WC-12Co start powder, and deposited via an aqueous based suspension using modified HVOF (TopGun) spraying. Microstructural evaluations of these hardmetal coatings included TEM (Transmission Electron Microscopy), X-ray Diffraction (XRD) and Scanning Electron Microscopy (SEM). Sliding wear tests were conducted using a ball-on-flat test rig. Results indicated that nanostructured features inherited from the start powder in S-HVOF spraying were retained in the resulting coatings. The decar-burisation of WC due to a higher surface area to volume ratio was also observed in the S-HVOF coatings. Nanostructured and amorphous phases caused by the high cooling rates during thermal spraying crystallized into complex eta-phases after the HIPing treatment. Sliding wear performance indicated that the coating wear was lower for the HIPed coatings.
机译:显微和悬浮液高速氧燃料(S-HVOF)沉积纳米结构涂层的滑动磨损评价喷涂是在作为喷涂和热等静压(热等静压)条件下进行。 S-HVOF涂层经由WC-12CO开始粉末的球磨的纳米结构,并且经由使用喷雾改性HVOF(TOPGUN)水性悬浮液基于沉积。这些硬质合金涂层的微观评价包括TEM(透射电子显微镜),X射线衍射(XRD)和扫描电子显微镜(SEM)。滑动磨损试验都使用球 - 平面试验台进行。结果表明从S-HVOF喷涂起始粉末继承了纳米结构的特征被保留在所得的涂料。 WC的由于较高的表面积与体积比的decar-burisation在S-HVOF涂层也进行了观察。纳米结构和过程中的热所造成的高冷却速率非晶相喷雾结晶成热等静压处理后复合ETA-相。滑动磨损性能表明,涂层的磨损是为热等静压涂层低。

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