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Influence of heat tints on the pitting corrosion resistance of Ni-based alloy UNS N07718

机译:热色调对镍基合金UNS N07718抗点蚀性能的影响

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During heat treatment surface oxide layers, usually called heat tints, are formed on metallic materials. These oxide layers are composed of elements that have been selectively oxidized from the base metal; in the case of high-alloy materials principally chromium, nickel and iron. On austenitic stainless steels, it is well known that the region beneath the oxide layer is depleted in one or more of the elements that are involved in the scale formation. Consequently, reduced corrosion resistance is expected. It is also known that defects and stresses within the heat tint layer limit their protectiveness. Therefore, heat tint layers are usually removed by mechanical and/or chemical treatments to avoid corrosion issues during service. Nevertheless, the same understanding on heat tints formed during aging of precipitation hardenable Ni-based alloys is still lacking. Ni-based alloys generally have better corrosion resistance than stainless steels and the chemical composition of their surface oxide layers differ from those typically formed on stainless steels. In the present work the effect of heat tints on the pitting corrosion resistance of the Ni-based alloy UNS N07718 has been evaluated by means of electrochemical methods including cyclic potentiodynamic polarization tests and electrochemical noise measurements, and exposure tests in chloride-containing solutions.
机译:在热处理过程中,通常在金属材料上形成通常称为热着色的表面氧化物层。这些氧化物层由已经从贱金属中选择性氧化的元素组成。对于高合金材料,主要是铬,镍和铁。在奥氏体不锈钢上,众所周知,氧化物层下面的区域中贫化了氧化皮形成中所涉及的一种或多种元素。因此,期望降低的耐腐蚀性。还已知的是,热着色层内的缺陷和应力限制了它​​们的保护性。因此,通常通过机械和/或化学处理去除热着色层,以避免在使用过程中出现腐蚀问题。然而,仍然缺乏对可沉淀硬化的镍基合金时效过程中形成的热色调的相同理解。镍基合金通常比不锈钢具有更好的耐腐蚀性,并且其表面氧化物层的化学成分不同于通常在不锈钢上形成的化学成分。在本工作中,已经通过电化学方法评估了热着色对Ni基合金UNS N07718耐点蚀性的影响,这些方法包括循环恒电位极化测试和电化学噪声测量,以及在含氯溶液中的暴露测试。

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