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Impact of the stand-off distance and spray angle on the corrosion, cavitation and erosion behaviour of the thermal spray layers deposited by the three-cathode spraying

机译:脱扣距离和喷射角对三相喷涂沉积的热喷涂层腐蚀,空化和腐蚀行为的影响

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Fe-based coatings, such as novel FeCrMnBC alloys, have both economic and ecological advantages compared to other coatings like Ni-based or Co-based coatings. In recent years, high performance Fe-based wear and corrosion resistant coating systems have been developed. Some of them have even been introduced into the market. However, the suitability of the FeCrMnBC alloy as coating for cast iron under complex erosive and corrosive stresses in particle-loaded fluids for pump parts has not been investigated yet. Especially the impact of the process robustness of three-cathode plasma spraying coatings applied with variable process parameters like stand-off distance and spray angle is in the focus of interest. The objective of the present work has been the characterization of novel FeCrMnBC alloys, for the first time deposited via Thermal Spray processes. The corrosion resistances as well as the cavitation and erosion properties were separately evaluated by current density-potential measurements and supersonic cavitation in artificial sea water. Erosion corrosion behavior has been investigated in a pump test rig with 10 wt.-% corundum (Al_2O_3) particles. The results show that the reduction of spray angle and the variation of stand-off distance limit the corrosion and cavitation resistance in different ways. The erosion behavior shows only small variations for the tested parameters. The results reveal that the FeCrMnBC coatings exhibit high process robustness for the chosen parameter variations and a large potential to improve the protection of cast iron even for not optimized conditions.
机译:与其他基于Ni的涂层类似的其他涂层相比,Fe基涂层具有经济和生态的优势,与其他涂层相比,或基于Ni的涂层。近年来,已经开发出高性能的Fe基磨损和耐腐蚀涂料系统。其中一些甚至被引入市场。然而,FECRMNBC合金作为在泵件的复杂腐蚀和腐蚀性的复杂腐蚀和腐蚀性应力下的铸铁涂层的适用性尚未研究。特别是利用可变工艺参数的三阴极等离子喷涂涂层的过程鲁棒性的影响,如脱扣距离和喷射角度在感兴趣的焦点中。本作工作的目的一直是新型FECRMNBC合金的表征,首次通过热喷涂工艺沉积。通过在人造海水中的电流密度 - 电位测量和超音速空化分别评估耐腐蚀性以及空化和侵蚀性能。在泵试验台中已经在泵试镜中进行了腐蚀腐蚀行为,其中10重量%羟(Al_2O_3)颗粒。结果表明,喷射角度的降低和离距距离的变化限制了不同方式的腐蚀和空化阻力。侵蚀行为仅显示测试参数的少量变化。结果表明,FECRMNBC涂层为所选择的参数变化表现出高过程稳健性,以及改善铸铁保护的大潜力即使没有优化的条件也是如此。

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