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Corrosion of One-Step Superhydrophobic Stainless-Steel Thermal Spray Coatings

机译:一步超疏水不锈钢热喷涂涂层的腐蚀

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As most superhydrophobic coatings are made of soft materials, the need for harder, more robust films is evident in applications where erosional degradation is of concern. The work herein describes a methodology to produce superhydrophobic stainless-steel thermal spray coatings using the high-velocity oxygen fuel technique. Due to the use of a kerosene fuel source, a carbon-rich film is formed on the surface of the thermal spray coatings, lowering the surface energy of the high-energy metallic substrates. The thermal spray process generates a hierarchical micro-/sub-microstructure that is needed to sustain superhydrophobicity. The effect of spray parameters such as particle velocity and temperature on the coating's hydrophobicity state was explored, and a high particle velocity was shown to cause superhydrophobic characteristics. The coatings were characterized using scanning electron microscopy, profilometry, X-ray photoelectron spectroscopy, static water contact angle measurements, water droplet roll-off measurements, and water droplet bouncing tests. The corrosion behavior of the coatings was studied using potentiodynamic polarization measurements in order to correlate water repellency with corrosion resistance; however, all coatings demonstrated active corrosion without passivation. This study describes an interesting phenomenon where superhydrophobicity does not guarantee corrosion resistance and discusses alternative applications for such materials.
机译:由于大多数超疏水性涂料由软材料制成,在侵蚀降解所令人担忧的应用中,需要更难以更加鲁棒的薄膜。这里的作用描述了一种使用高速氧气燃料技术生产超疏水不锈钢热喷涂涂层的方法。由于使用煤油燃料源,在热喷涂涂层的表面上形成富含碳的薄膜,降低了高能金属基板的表面能。热喷涂过程产生维持超细侵害所需的分层微/亚微观结构。探讨了喷雾参数如粒子速度和温度对涂层的疏水性状态的影响,并且显示出高粒径引起超疏水特性。使用扫描电子显微镜,轮廓测定法,X射线光电子能谱,静电接触角测量,水滴滚降测量和水滴反弹测试的涂层。研究了涂层的腐蚀行为,采用电位动力学偏振测量进行了研究,以将防水性与耐腐蚀性相关;然而,所有涂层都在没有钝化的情况下表现出活性腐蚀。本研究描述了一种有趣的现象,其中超疏水性不能保证耐腐蚀性,并讨论这种材料的替代应用。

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