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Effects of CVD direct growth of carbon nanotubes and nanofibers on microstructure and electrochemical corrosion behavior of 316 stainless steel

机译:CVD直接生长碳纳米管和纳米纤维对316不锈钢组织和电化学腐蚀行为的影响

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摘要

In this work, the corrosion behavior of three differently treated AISI 316 stainless steel plates is investigated, viz. (1) pristine, (2) coated with a carbon nanotube (CNT) layer and (3) coated with a carbon nanofiber (CNF) layer. CNTs and CNFs were directly grown on stainless steel via a CVD method, using ethylene as the carbon source and without the addition of an external catalyst. The corrosion behavior of these materials was investigated by a combination of microstruc-tural and electrochemical methods. Electrochemical tests included potentiodynamic and potentiostatic techniques in hot sulfuric acid solutions. A strong deterioration in corrosion resistance was revealed by the electrochemical tests and confirmed by microstructural examination of the samples. It was found that carbon diffusion into the substrate material during the CNT/CNF growth process results in chromium depletion of the near-surface region of 316 SS and chromium carbide precipitation at grain boundaries causing accelerated intergranular corrosion. Accordingly, notwithstanding the obvious inability of CNT/CNF layers to provide protection to the substrate due to their porous nature, a real corrosion damage arises from the high temperature exposure of stainless steel to the CVD atmosphere, suggesting that a similar risk may be present even for compact carbon coating deposited by CVD process/in the event of local damage of the coating.
机译:在这项工作中,研究了三种不同处理的AISI 316不锈钢板的腐蚀行为。 (1)原始,(2)涂有碳纳米管(CNT)层,(3)涂有碳纳米纤维(CNF)层。 CNT和CNF通过CVD方法直接在不锈钢上生长,使用乙烯作为碳源,而无需添加外部催化剂。这些材料的腐蚀行为通过微观结构和电化学方法的结合进行了研究。电化学测试包括在热硫酸溶液中的恒电位和恒电位技术。电化学测试显示出抗腐蚀性的强烈下降,并通过样品的微结构检查得到证实。发现在CNT / CNF生长过程中碳扩散到基底材料中导致316 SS的近表面区域的铬耗竭和晶界处的碳化铬沉淀,导致加速的晶间腐蚀。因此,尽管CNT / CNF层由于其多孔性质而明显不能为基底提供保护,但是由于不锈钢在CVD气氛中的高温暴露仍会产生真正的腐蚀损害,这表明甚至存在相似的风险。用于通过CVD工艺沉积的致密碳涂层/在涂层局部受损的情况下。

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