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Microstructural evaluation of suspension thermally sprayed WC-Co nanocomposite coatings.

机译:悬浮热喷涂WC-Co纳米复合涂层的微观结构评估。

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摘要

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 decarburisation 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:在悬浮喷涂和HIPed(热等静压)条件下,对通过悬浮高速火焰燃料(S-HVOF)喷涂沉积的纳米结构涂层进行了微观结构和滑动磨损评估。 S-HVOF涂层通过WC-12Co起始粉末的球磨进行纳米结构处理,并使用改良的HVOF(TopGun)喷涂通过水基悬浮液进行沉积。这些硬质合金涂层的微观结构评估包括TEM(透射电子显微镜),X射线衍射(XRD)和扫描电子显微镜(SEM)。滑动磨损测试是使用平球测试设备进行的。结果表明,在S-HVOF喷涂中从起始粉末继承的纳米结构特征保留在所得涂层中。在S-HVOF涂层中也观察到由​​于较高的表面积与体积比而导致的WC脱碳。 HIPing处理后,热喷涂过程中高冷却速率导致的纳米结构相和非晶相结晶为复杂的eta相。滑动磨损性能表明,HIP涂层的涂层磨损较低。

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