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Electrochemical and mechanical interactions during erosion-corrosion of a high-velocity oxy-fuel coating and a stainless steel

机译:高速含氧燃料涂层和不锈钢在腐蚀过程中的电化学和机械相互作用

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This paper describes the results of a study of the erosion-corrosion behaviour of a thermally sprayed Ni-Cr-Si-B-C cermet coating in saline solution in the presence and absence of solid particles. The water, at ambient temperature, impinged perpendicularly onto the specimen surface at a velocity of 17 m/s. Emphasis was placed on the assessment of the contribution of corrosion processes to the overall erosion-corrosion deterioration. For comparison purposes in terms of performance and degradation mechanisms, parallel tests were carried out on a standard stainless steel alloy (U&NS S31603). The study provided clear evidence of the crucial role of corrosion processes in governing the extent (totalling about 30percent in solid/liquid impingement) and mechanisms of erosion-corrosion of the cermet material. The cermet coating was found to undergo less weight loss than the stainless steel in solid/liquid conditions but vice-versa during solid-free impingement and this was attributed to the relative influences of erosion and corrosion.
机译:本文描述了在存在和不存在固体颗粒的情况下,热喷涂Ni-Cr-Si-B-C金属陶瓷涂层在盐溶液中的腐蚀-腐蚀行为的研究结果。在环境温度下,水以17 m / s的速度垂直撞击样品表面。重点放在评估腐蚀过程对整体腐蚀-腐蚀恶化的贡献上。为了在性能和降解机理方面进行比较,对标准不锈钢合金(U&NS S31603)进行了平行测试。该研究提供了清晰的证据,证明了腐蚀过程在控制金属陶瓷材料的腐蚀程度(固/液冲击总量的约30%)和腐蚀-腐蚀机理方面的关键作用。发现金属陶瓷涂层在固/液条件下的重量损失比不锈钢少,但在无固体撞击时反之亦然,这归因于腐蚀和腐蚀的相对影响。

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