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Manufacturing and Properties of High-Velocity Oxygen Fuel (HVOF)-Sprayed FeVCrC Coatings

机译:高速氧气燃料(HVOF)喷涂FeVCrC涂层的制备和性能

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This paper studies the microstructure, sliding wear behavior and corrosion resistance of high-velocity oxygen fuel (HVOF)-sprayed FeVCrC-based coatings. Various process parameters were tested to evaluate their effects on the coating properties, which were also compared to those of HVOF-sprayed NiCrBSi and Stellite-6 coatings. The Fe alloy coatings are composed of flattened splats, originating from molten droplets and consisting of a super-saturated solid solution, together with rounded particles, coming from partially unmolten material and containing V- and Fe-based carbide precipitates. All process parameters, apart from "extreme" settings with excess comburent in the flame, produce dense coatings, indicating that the feedstock powder is quite easily processable by HVOF. These coatings, with a microhardness of 650-750 HV0.3, exhibit wear rates of ae2 x 10(-6) mm(3)/(Nm) in ball-on-disk tests against sintered Al2O3 spheres. They perform far better than the reference coatings, and better than other Fe- and Ni-based alloy coatings tested in previous research. On the other hand, the corrosion resistance of the coating material (tested by electrochemical polarization in 0.1 M HCl solution) is quite low. Even in the absence of interconnected porosity, this results in extensive, selective damage to the Fe-based matrix. This coating material is therefore unadvisable for severely corrosive environments.
机译:本文研究了高速氧气喷涂(HVOF)喷涂的FeVCrC基涂层的微观结构,滑动磨损行为和耐蚀性。测试了各种工艺参数以评估其对涂层性能的影响,并将这些工艺参数与HVOF喷涂的NiCrBSi和Stellite-6涂层的参数进行了比较。 Fe合金涂层由扁平小片组成,这些小片起源于熔融液滴,由过饱和固溶体和圆形颗粒组成,圆形颗粒均来自部分未熔化的材料,且含有V和Fe基碳化物沉淀。除了在火焰中带有过量助燃剂的“极端”设置外,所有工艺参数均会产生致密的涂层,这表明原料粉末可通过HVOF轻松加工。这些涂层的显微硬度为650-750 HV0.3,在针对烧结Al2O3球的圆盘试验中,磨损率达到ae2 x 10(-6)mm(3)/(Nm)。它们的性能远胜于参考涂层,并且比先前研究中测试过的其他铁和镍基合金涂层更好。另一方面,涂层材料的耐腐蚀性(通过在0.1M HCl溶液中的电化学极化测试)非常低。即使没有相互连接的孔隙,这也会对铁基基体造成广泛的选择性损坏。因此,这种涂层材料不适用于严重腐蚀的环境。

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