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Corrosion Behavior of Hard Boride Layer Produced on Nimonic 80A-Alloy by Gas Boriding

机译:天然气硼化尼芯片80a-合金中生产硬硼层的腐蚀行为

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摘要

The gas boriding in N-2-H-2-BCl3 atmosphere was applied in order to produce a wear resistant surface layer on Nimonic 80A-alloy samples. The microstructure, microhardness and corrosion resistance of the boride layer were investigated. The produced layer consisted mainly of the compact boride zone (with average thickness 71 mu m), including the mixture of nickel and chromium borides of high hardness (up to 1861 HV). In order to evaluate the corrosion behavior, the two methods of corrosion tests were used: potentiodynamic corrosion test in 5% NaCl solution and immersion corrosion test in a boiling solution of H2O, H2SO4 and Fe-2(SO4)(3). The results showed that gas boriding could provide the excellent corrosion resistance if the whole surface of a Nimonic 80A-alloy sample was covered by the continuous boride layer. Otherwise, as a consequence of selective boriding, the significant difference in electrochemical potentials caused an accelerated uniform corrosion of the base material.
机译:在N-2-H-2-BCl3气氛中进行气体渗硼,以便在Nimonic 80A合金样品上产生耐磨表面层。研究了渗硼层的显微组织、显微硬度和耐蚀性。生成的层主要由致密硼化物区(平均厚度71μm)组成,包括高硬度(高达1861 HV)的镍和铬硼化物混合物。为了评估腐蚀行为,采用了两种腐蚀试验方法:5%NaCl溶液中的动电位腐蚀试验和H2O、H2SO4和Fe-2(SO4)(3)沸腾溶液中的浸泡腐蚀试验。结果表明,如果Nimonic 80A合金试样的整个表面覆盖有连续的硼化物层,则气体渗硼可以提供优异的耐蚀性。否则,由于选择性渗硼,电化学电位的显著差异导致基材加速均匀腐蚀。

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