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Laser clad corrosion protection for mild and harsh environments

机译:激光熔覆腐蚀保护,适用于温和恶劣的环境

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Corrosion of one type or another occurs in almost every environment and high performance corrosion protection methods are often too expensive to be economically viable. This work examines the performance of protective layers of Inconel 617, laser clad in the form of salvaged machining chips, to protect a corrosive substrate from both mild and harsh environments. The clad layers are investigated for microstructure and phase composition and polarisation measurements used to determine their corrosion resistance in neutral and acidified NaCl electrolyte solutions. The clad microstructure was discovered to be columnar dendritic, with an atypical upper layer. However, neither this nor any dilution by the substrate compromised the corrosion resistance of the Inconel 617, and the clad layer provided very good corrosion protection. The results confirm the viability of using this method as a low cost corrosion protection method for both mild and harsh environments.
机译:几乎在每种环境中都会发生一种或另一种腐蚀,并且高性能的腐蚀防护方法通常过于昂贵,无法在经济上可行。这项工作检查了Inconel 617保护层的性能,该保护层以打捞的加工芯片形式被激光熔覆,以保护腐蚀性基材不受温和恶劣环境的影响。研究了包覆层的微观结构和相组成以及极化测量,以确定其在中性和酸化的NaCl电解质溶液中的耐腐蚀性。发现包层的微结构为柱状树枝状,具有不典型的上层。但是,基体的这种稀释或稀释都不会损害Inconel 617的耐腐蚀性,并且覆层可提供非常好的腐蚀防护。结果证实了将该方法用作在温和恶劣环境下的低成本腐蚀防护方法的可行性。

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