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PROSPECT OF MAO TECHNOLOGY APPLICATION IN NUCLEAR POWER INDUSTRY

机译:毛技术在核电工业中的应用前景

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Micro arc oxidation (MAO) technology known as a newly surface treatment technology has got a widely application in the field of aviation, aerospace, automotive, electronics, and medical industry. Strength, toughness, hardness and corrosion of valve metal such as aluminum, magnesium, copper, zinc, zirconium and their alloys can be greatly improved by MAO technology. This paper tries to probe into the feasibility of using MAO technology in nuclear power industry. Aluminum and its alloys are used as structural materials such as the cladding of reactor fuel and all kinds of pipes in the low nuclear reactor. Zirconium alloys are widely used for the fuel cladding, cannula, catheter and other components of the fuel assemblies. Titanium and its alloys offer a unique combination of desirable mechanical properties which makes them to be the candidate materials for structural application in the field of nuclear energy. The surface of all these materials may be destroyed which increasing the risk of the nuclear accident due to the severe serving conditions. As a result, it is necessary to improve the corrosion and wear resistance behavior. With the urgent requirements of safety and durability of nuclear reactor, MAO technology must have a broad prospect in nuclear industry.
机译:微弧氧化(MAO)技术被称为一种新的表面处理技术,已在航空,航天,汽车,电子和医疗行业领域得到了广泛的应用。通过MAO技术可以大大改善铝,镁,铜,锌,锆及其合金等阀门金属的强度,韧性,硬度和腐蚀性能。本文试图探讨在核电行业中使用MAO技术的可行性。铝及其合金被用作结构材料,例如反应堆燃料的覆层和低核反应堆中的各种管道。锆合金广泛用于燃料包壳,套管,导管和燃料组件的其他组件。钛及其合金提供了理想的机械性能的独特组合,使其成为核能领域结构应用的候选材料。所有这些材料的表面都可能被破坏,由于恶劣的使用条件,增加了发生核事故的风险。结果,有必要改善耐腐蚀性和耐磨性。随着对核反应堆安全性和耐久性的迫切要求,MAO技术必须在核工业中具有广阔的前景。

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