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首页> 外文期刊>Journal of Thermal Spray Technology >Microstructure and Corrosion Resistance of Plasma Sprayed Fe-Based Alloy Coating as an Alternative to Hard Chromium
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Microstructure and Corrosion Resistance of Plasma Sprayed Fe-Based Alloy Coating as an Alternative to Hard Chromium

机译:等离子喷涂铁基合金涂层替代硬铬的组织和耐蚀性

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摘要

Fe-based alloy coating (FAC) was prepared from Fe-based amorphous metallic powders on low-carbon steel by plasma spray. The microstructures and corrosion resistances (salt spray and electrochemical tests) of the FAC and the reference hard chromium coatings (HCC) were investigated. The results indicated that the as-sprayed FAC consisted of amorphous phase, nanocrystalline grains, and borides. Both the FAC and HCC adhered well to the low-carbon steel substrate, but there are micro-cracks and pores located in FAC, which disappeared after the sealing treatment. After 60 days (1440 h) of corrosion tests by salt spray, the weight loss of FAC was about 10% of the HCC, but that of the sealed FAC (SFAC) was only about 4% of HCC. The electrochemical tests indicated that the HCC had the lowest E_(corr) (-629 mV) and highest I_(corr) (63.2 mA/m~2). Correspondingly, the SFAC possessed the highest E_(corr) (-321 mV) and lowest I_(corr) (6.97 mA/m~2). These suggested that the resistance to corrosion sequence (R) among these coatings was R_(SFAC) > R_(FAC) > R_(HCC). Therefore, this Fe-based alloy coating could be applied as a good alternative material to hard chromium in corrosion environments.
机译:铁基合金涂层(FAC)是通过等离子喷涂在低碳钢上由铁基非晶态金属粉末制成的。研究了FAC和参考硬铬涂层(HCC)的微观结构和耐腐蚀性(盐雾和电化学测试)。结果表明,喷涂的FAC由非晶相,纳米晶粒和硼化物组成。 FAC和HCC都很好地粘附在低碳钢基材上,但是FAC中存在微裂纹和孔,密封处理后这些裂纹和孔消失了。经过60天(1440小时)的盐雾腐蚀试验后,FAC的重量损失约为HCC的10%,而密封FAC(SFAC)的重量损失仅为HCC的约4%。电化学测试表明,HCC具有最低的E_(corr)(-629 mV)和最高的I_(corr)(63.2 mA / m〜2)。相应地,SFAC具有最高的E_(corr)(-321 mV)和最低的I_(corr)(6.97 mA / m〜2)。这些表明这些涂层之间的耐腐蚀序列(R)为R_(SFAC)> R_(FAC)> R_(HCC)。因此,这种铁基合金涂层可以用作腐蚀环境中硬铬的良好替代材料。

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