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Effects of Normal Force on the Tribocorrosion Behavior of a Nickel-Based Superalloy in Alkaline Solution: An Electrochemical Study

机译:正常力对碱性溶液中镍高超合金的染色腐蚀行为的影响:电化学研究

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摘要

The tribocorrosion behavior of Inconel 690TT in NaOH (pH = 9.8) solution at different normal forces was investigated by an electrochemical method. The results indicated that normal force had a great effect on the tribocorrosion behavior and mechanism. When normal force increased from 15 to 30 N, fretting regime was in gross slip regime (GSR), and wear volume gradually increased. When normal force further increased to 45 N, wear volume significantly decreased due to the fretting regime changing from GSR to partial slip regime (PSR). When fretting ran in GSR, the corrosion resistance decreased with the negative shift of open circuit potential (OCP). However, when the fretting regime changed to PSR, the corrosion reaction significantly decreased due to the adhesive wear. Fretting wear broke the passive film at the contacting surface, which caused the worn surface to be more active and prone to corrosion. However, the broken passive film was quickly repaired in subsequent oxidation. The break and repair of passive film strongly depended on normal force. In GSR, the increase in normal force aggravated the break of passive film. In PSR, the passive film was not easy to break with a further increase of normal force.
机译:通过电化学方法研究了在不同正常力下NaOH(pH = 9.8)溶液中的Inconel 690TT的Tribocolion行为。结果表明,正常力对Tribocorlion行为和机制具有很大的影响。当正常力从15到30 n增加时,微动力制度处于总体上的单位(GSR),磨损体积逐渐增加。当正常力进一步增加到45 n时,由于从GSR改变为部分滑动制度(PSR),磨损量显着降低。在GSR中进行射击时,耐腐蚀性随着开路电位(OCP)的负移而降低。然而,当烦恼状态改变为PSR时,由于粘合剂磨损,腐蚀反应显着降低。微动磨损在接触表面处突破被动膜,这导致磨损的表面更加活跃并且容易腐蚀。然而,在随后的氧化中迅速修复破碎的被动膜。被动膜的断裂和修复强烈依赖于正常力。在GSR中,正常力的增加加剧了被动膜的断裂。在PSR中,无源薄膜不容易破裂,并进一步增加正常力。

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