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首页> 外文期刊>Electrochimica Acta >Nanocrystallization of aluminized surface of carbon steel for enhanced resistances to corrosion and corrosive wear
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Nanocrystallization of aluminized surface of carbon steel for enhanced resistances to corrosion and corrosive wear

机译:碳钢镀铝表面的纳米结晶,以增强抗腐蚀和腐蚀性磨损的能力

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摘要

Aluminizing is often used to improve steel's resistances to corrosion, oxidation and wear. This article reports our recent attempts to further improve aluminized carbon steel through surface nanocrystallization for higher resistances to corrosion and corrosive wear. The surface nanocrystallization was achieved using a process combining sandblasting and recovery heat treatment. The entire surface modification process includes dipping carbon steel specimens into a molten Al pool to form an Al coat, subsequent diffusion treatment at elevated temperature to form an aluminized layer, sandblasting to generate dislocation network or cells, and recovery treatment to turn the dislocation cells into nano-sized grains. The grain size of the nanocrystallized aluminized surface layer was in the range of 20-100 nm. Electrochemical properties, electron work function (EWF), and corrosive wear of the nanocrystalline alloyed surfaces were investigated. It was demonstrated that the nanocrystalline aluminized surface of carbon steel exhibited improved resistances to corrosion, wear and corrosive wear. The passive film developed on the nanocrystallized aluminized surface was also evaluated in terms of its mechanical properties and adherence to the substrate.
机译:渗铝通常用于提高钢的耐腐蚀,抗氧化和抗磨损性能。本文报道了我们最近通过表面纳米晶化进一步改善铝化碳钢以提高其抗腐蚀和抗腐蚀磨损性能的尝试。使用喷砂和回收热处理相结合的方法实现了表面纳米晶化。整个表面改性过程包括将碳钢试样浸入熔融的Al池中以形成Al涂层,随后在高温下进行扩散处理以形成铝化层,进行喷砂处理以生成位错网络或位错,以及进行回收处理以将位错细胞转变为纳米颗粒。纳米晶化的渗铝表面层的晶粒尺寸在20-100nm的范围内。研究了纳米晶合金表面的电化学性能,电子功函数(EWF)和腐蚀磨损。已经证明,碳钢的纳米晶铝化表面表现出提高的耐腐蚀性,耐磨损性和耐腐蚀性。还根据其机械性能和对基材的粘附性评估了在纳米结晶镀铝表面上形成的钝化膜。

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