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A comparison between the corrosion resistances of some HVOF-sprayed metal alloy coatings

机译:某些HVOF喷涂金属合金涂层的耐腐蚀性之间的比较

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摘要

This study compares the corrosion resistance of one Co-based alloy coating, namely Co-28Mo-17Cr-3Si (similar to Tribaloy-800), four Ni-based alloy coatings, namely Ni-17Cr-4Fe-4Si-3.5B-1C (Diamalloy-2001), Ni-20Cr-10W-9Mo-4Cu-1C-1B-1Fe (Diamalloy-4006), Ni-22Cr-9Mo-4Nb-5Fe (similar to Inconel-625), Ni-32Mo-16Cr-3Si-2Co (similar to Tribaloy-700), and a (WC-12Co)-33Ni-9Cr-3.5Fe-2Si-2B-0.5C cermet-Ni alloy blend coating. They were produced by liquid-fuelled HVOF spraying onto AISI1040 steel plates. Electrolytic hard chrome (EHC) plating was characterised as a reference material, to verify whether some HVOF coatings are suitable as an EHC replacement. The microstructure of the coatings was examined by SEM and XRD. Electrochemical polarization tests and free corrosion tests were performed in 0.1 M HCl aqueous solution; the corrodkote test (ASTM B380-97R02) was also performed, to rank coatings qualitatively. The lowest corrosion current densities (I-corr) were recorded for EHC and Tribaloy-700. The latter coating contained few secondary phases and little porosity; the damage was mainly due to corrosion activation along lamellae boundaries. Diamalloy-2001 exhibited the highest I-corr and was significantly damaged after the polarization test, as its multi-phase microstructure had triggered severe galvanic corrosion. During free corrosion in 0.1 M HCl, Tribaloy-700 and Diamalloy-4006 retained rather stable polarization resistance (R-p), whereas the Rp of EHC decreased significantly. Tribaloy-700 survived 40 h of corrodkote test with no apparent damage and EHC underwent limited pitting corrosion. All other coatings had visible corrosion. The Inconel-625 coating failed to protect the substrate after 20 h of testing, due to inadequate processing conditions. (C) 2008 Elsevier B.V. All rights reserved.
机译:这项研究比较了一种Co基合金涂层(即Co-28Mo-17Cr-3Si(类似于Tribaloy-800))和四种Ni基合金涂层(即Ni-17Cr-4Fe-4Si-3.5B-1C)的耐腐蚀性。 (Diamalloy-2001),Ni-20Cr-10W-9Mo-4Cu-1C-1B-1Fe(Diamalloy-4006),Ni-22Cr-9Mo-4Nb-5Fe(类似于Inconel-625),Ni-32Mo-16Cr- 3Si-2Co(类似于Tribaloy-700)和(WC-12Co)-33Ni-9Cr-3.5Fe-2Si-2B-0.5C金属陶瓷-镍合金混合涂层。它们是通过将液态燃料的HVOF喷涂到AISI1040钢板上制成的。电解硬铬(EHC)镀层的特征是作为参考材料,以验证某些HVOF涂层是否适合作为EHC替代品。通过SEM和XRD检查涂层的微观结构。电化学极化试验和自由腐蚀试验在0.1 M HCl水溶液中进行;还进行了corrodkote测试(ASTM B380-97R02),以定性地对涂层进行评级。记录到EHC和Tribaloy-700的最低腐蚀电流密度(I-corr)。后者的涂层几乎没有次生相,并且没有孔隙。破坏主要是由于沿薄片边界的腐蚀活化。 Diamalloy-2001的I-corr最高,并且在极化测试后遭到了严重破坏,因为其多相微结构已引发了严重的电化腐蚀。在0.1 M HCl中进行自由腐蚀期间,Tribaloy-700和Diamalloy-4006保持了相当稳定的极化电阻(R-p),而EHC的Rp显着下降。 Tribaloy-700在corrodkote测试中存活了40小时,没有明显的损坏,EHC受到了有限的点蚀。所有其他涂层都有可见的腐蚀。由于处理条件不足,Inconel-625涂层在20小时的测试后未能保护基材。 (C)2008 Elsevier B.V.保留所有权利。

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