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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Influence of WC size and HVOF process on erosion wear performance of WC-10Co4Cr coatings
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Influence of WC size and HVOF process on erosion wear performance of WC-10Co4Cr coatings

机译:WC尺寸和HVOF过程对WC-10CO4CR涂层腐蚀磨损性能的影响

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摘要

In the present study, based on the velocity and temperature measurements of in-flight particles and parameter optimization, multimodal and conventional WC-10Co4Cr cermet coatings were sprayed by high velocity oxygen gas fuel spraying (HVOGF) and high velocity oxygen liquid fuel spraying (HVOLF). The coatings' structure, porosity, microhardness and fracture toughness were investigated by optical microscopy (OM), scanning electron microscopy (SEM), X-ray diffraction (XRD) etc. Furthermore, erosion resistance of the coatings to solid sand was tested, followed by the exploration of the material failure mechanisms. Results show that the WC-10Co4Cr coatings deposited by HVOLF are mainly composed of WC with no obvious decarburization and amorphous CoCr binder. The mechanical properties of the coatings deposited by HVOLF are much more superior to those deposited by HVOGF. Multimodal WC-10Co4Cr coating deposited by HVOLF possesses the highest microhardness and fracture toughness, the lowest porosity and the most excellent resistance to sand solid erosion wear, which was enhanced by 15 and 40% than that of HVOLF conventional coatings at 30A degrees and 90A degrees impact angles. The improvement is even greater in comparison with multimodal coating deposited by HVOGF. These results have provided important reference for WC-CoCr anti-erosion coating design and optimization of high velocity oxygen fuel (HVOF) process.
机译:在本研究中,基于飞行中颗粒的速度和温度测量和参数优化,通过高速氧气燃料喷涂(HVOGF)和高速氧气燃料喷涂(HVOLF)喷洒多峰和常规WC-10CO4CR金属陶瓷涂层(HVOLF )。通过光学显微镜(OM),扫描电子显微镜(SEM),X射线衍射(XRD)等研究涂层结构,孔隙率,显微硬度和断裂韧性。此外,测试了涂层与固体砂的腐蚀性,然后进行通过探索材料故障机制。结果表明,Hvolph沉积的WC-10CO4CR涂层主要由WC组成,没有明显的脱碳和无定形COCR粘合剂。沉积的Hvolf涂层的机械性能远高于HVOGF沉积的那些。由Hvolph沉积的多模式WC-10CO4CR涂层具有最高的微硬度和断裂韧性,最低孔隙率和最优异的耐砂耐磨耐磨性,其比30A度和90A度在30A和90A度下的Hvolff常规涂层增强15-10%冲击角。与HVOGF沉积的多峰涂层相比,改善甚至更大。这些结果为WC-Cocro抗腐蚀涂层设计和高速氧气燃料(HVOF)工艺的优化提供了重要的参考。

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