首页> 外文期刊>Metallography, Microstructure, and Analysis >Studies on Slurry Erosion Behavior of HVOF Applied Y 2O 3-Added WC–10Co–4Cr Cermet on 13-4 Martensitic Stainless Steel
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Studies on Slurry Erosion Behavior of HVOF Applied Y 2O 3-Added WC–10Co–4Cr Cermet on 13-4 Martensitic Stainless Steel

机译:HVOF的浆料腐蚀行为的研究应用Y <下标> 2 O <下标> 3 -ADWW-10CO-4CR CERMET上的13-4马氏体不锈钢

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摘要

Commercially 86WC–10Co–4Cr hard cermet coating is applied via high-velocity oxygen fuel thermal spray process on hydroturbine blade steel, i.e., 13Cr–4Ni martensitic stainless steel to help improve its wear resistance and life against the eroding action of hard silt particles present in the discharge. The erosive wear resistance of 86WC–10Co–4Cr cermet is improved upon by the addition of 2 wt.% of micro-sized yttrium oxide, which serves as a hard phase. These cermet coatings were deposited on 13Cr–4Ni martensitic stainless steel substrates via high-velocity oxygen fuel method to get an average thickness of 350??m. Slurry pot wear test (duration 40?h) was used to evaluate the erosive wear resistance of the cermet coatings and the bare 13Cr–4Ni martensitic stainless steel substrate. Silica sand (size range 210–297??m) was mixed with water to make a slurry of 100?kg/m_(3)concentration. A sliding speed of 4.45?m/s was maintained between the samples and the slurry. The increase in wear resistance of 86WC–10Co–4Cr cermet due to the addition of 2 wt.% yttrium oxide has been explained on the basis of improvement in hardness from 1048?±?22 to 1154?±?25 HV and due to densification effect of yttrium oxide.
机译:通过高速氧燃料钢的高速氧气燃料热喷涂工艺,即13Cr-4Ni马氏体不锈钢,以帮助改善其存在的硬淤泥颗粒的侵蚀作用,通过高速氧气燃料热喷涂工艺涂覆86wc-10co-4cr硬金属陶瓷涂料。在出院。通过加入2重量%,改善了86wc-10co-4cr金属陶瓷的腐蚀耐磨性。%的微尺寸氧化钇的%用作硬相。这些金属陶瓷涂层通过高速氧燃料方法沉积在13Cr-4Ni马氏体不锈钢基板上,以获得350μm的平均厚度。浆料罐磨损试验(持续时间40℃)用于评估金属陶瓷涂层和裸13Cr-4Ni马氏体不锈钢基材的腐蚀性耐磨性。将二氧化硅砂(尺寸范围为210-297- m)与水混合,使浆液为100〜kg / m_(3)浓度。在样品和浆料之间保持4.45μm/ s的滑动速度。由于加入2重量%,86wc-10co-4cr金属陶瓷的耐磨性增加。已经基于1048〜±22至1154〜1154的硬度改善来解释%氧化钇。±25hv并由于致密化氧化钇的影响。

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