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首页> 外文期刊>Tribology - Materials, Surfaces & Interfaces >Comparison of erosion, corrosion and erosion-corrosion of carbon steel in fluid containing micro- and nanosize particles
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Comparison of erosion, corrosion and erosion-corrosion of carbon steel in fluid containing micro- and nanosize particles

机译:碳钢在含有微米级和纳米级颗粒的流体中的腐蚀,腐蚀和腐蚀腐蚀的比较

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摘要

This work presents the results of an experimental study on surface damage due to erosion, corrosion and their interactive effect in sea water in the presence or absence of 1 g L~(-1) suspended nanosize as well as microsize Al_2O_3 particles. Erosion and erosion-corrosion tests have been conducted on low carbon steel targets using a rotating cylinder system. It is found that nano- and microsize particles act as inhibitors and decrease the pure corrosion rate in comparison to base fluids free of these particles, but over time, the inhibitory effect of microparticles is lost. The presence of microparticles causes more severe steel erosion than sea water, whereas the difference between nanofluid and sea water is not significant. In spite of the effects of nanoparticles on pure corrosion and net erosion, mass loss due to erosion-corrosion in a nanofluid is much higher that the base fluid but is less than the fluid containing microsize particles.
机译:这项工作提出了在存在或不存在1 g L〜(-1)悬浮纳米尺寸以及微米尺寸Al_2O_3颗粒的情况下对海水中的腐蚀,腐蚀及其相互作用产生的表面损伤进行实验研究的结果。使用旋转气缸系统对低碳钢靶材进行了腐蚀和腐蚀腐蚀试验。已经发现,与不含这些颗粒的基础流体相比,纳米和微米大小的颗粒充当抑制剂并降低了纯腐蚀速率,但是随着时间的流逝,失去了微粒的抑制作用。微粒的存在比海水引起的钢腐蚀更严重,而纳米流体和海水之间的差异并不明显。尽管纳米粒子对纯腐蚀和净腐蚀有影响,但是由于纳米流体中的腐蚀腐蚀而导致的质量损失比基础流体高得多,但比包含微尺寸颗粒的流体少。

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