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首页> 外文期刊>Surface & Coatings Technology >Microstructure and tribological behavior of plasma sprayed NiCrAlY/WC-Co/cenosphere/solid lubricants composite coatings
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Microstructure and tribological behavior of plasma sprayed NiCrAlY/WC-Co/cenosphere/solid lubricants composite coatings

机译:血浆喷涂幼苗/ WC-CO / CEN圈/固体润滑剂复合涂料的组织和摩擦学行为

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Present investigation deal with NiCrAlY/WC-Co/Cenosphere/MoS2/CaF2, NiCrAlY/WC-Co/Cenosphere/MoS2/CaSO4 and NiCrAIY/WC-Co/Cenosphere coatings deposited on MDN 321 steel using atmospheric plasma spraying. Tribological properties of MDN 321 steel and coatings are evaluated from room temperature (RT) to 600 degrees C under dry lubrication conditions using a pin on disc high -temperature tribometer. Scanning Electron Microscopy (SEM), X-ray diffraction (XRD) and Energy Dispersive Spectroscopy (EDS) are used to characterize the coatings. Presence of cenospheres in these coatings might effectively reduce wear acting as localized regions accumulating wear debris. The result shows that wear rate of all the coatings are lower as compared to MDN 321 substrate at all the test conditions. NiCrAlY/WC-Co/Cenosphere/MoS2/CaF2 and NiCrAlY/WC-Co/Cenosphere/MoS/CaSO4 coatings registered lower friction coefficient as compared to NiCrAlY/WC-Co/Cenosphere coating and MDN 321 substrate. Characterization of the NiCrAlY/WC-Co/Cenosphere/MoS2/CaF2 and NiCrAlY/WC-Co/Cenosphere/MoS2/CaSO4 coatings worn out surface suggests that MoS2 provides lubrication at 200 degrees C and formation of CaMoO4, MoO3 through tribo chemistry reaction at higher temperature provides lubrication at 600 degrees C. SEM micrograph of worn surface demonstrates that the main wear mechanism is plowing and delamination.
机译:本发明的调查处理与Nicraly / WC-CO / CENOSEER / MOS2 / CAF2,Nicraly / WC-CO / CENOSEWS / MOS2 / CASO4和Nicriy / WC-CO / CENOSE涂料使用大气等离子喷涂沉积在MDN 321钢上。使用销钉高温摩擦计在干燥的润滑条件下在干燥的润滑条件下评价MDN 321钢和涂层的摩擦学特性。扫描电子显微镜(SEM),X射线衍射(XRD)和能量分散光谱(EDS)用于表征涂层。这些涂层中的延伸层的存在可以有效地减少磨损作用作为局部区域积聚磨损碎片。结果表明,与所有测试条件的MDN 321衬底相比,所有涂层的磨损较低。耐镍/ WC-CO / CENOSE / MOS2 / CAF2和Nicraly / WC-Co / Cenosphers / MOS / Caso4涂层与Nicraly / WC-Co / CenoSee涂层和MDN 321基板相比,注册摩擦系数较低。肌肉/ WC-CO / CENSOWS / MOS2 / CAF2和肌肉/毫米/ WC-CO / CENOSE / MOS2 / CASO4涂层的表征磨损表面表明MOS2通过摩擦化学反应形成润滑,并通过摩托化学反应形成MACO4,MOO3较高的温度在600℃下提供润滑。磨损表面的SEM显微照片表明主磨损机制是犁和分层。

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