FEATURES OF THE FORMATION OF SURFACE LAYERS ON METALS

O. Hertsyk, M. Kovbuz, Natalia Pandiak, Myroslava Tashak
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Abstract

The practical application of metal alloys, in particular amorphous ones, often necessitates the creation of multifunctional coatings of various nature and purpose on their surfaces. The main requirements for obtaining optimal results of applying such coatings are as follows: 1. Understanding of the morphology of the surface before coating. 2. Information on the physical and mechanical properties of the metal-coating composition. 3. Testing of the adhesion strength immediately after coating. 4. The use of different methods of control of the application and functionality of the coating, depending on the operating conditions of the product. The reliability of functional coatings also depends on the preparation of the surface of the material, as well as the choice of appropriate conditions for its formation. However, regardless of the purpose, a general requirement that all coatings must meet is a good adhesion to the surface of the substrate material. It is also important to ensure the uniform thickness in different areas (protrusions and depressions), because the thickness of the coating determines the longevity of its protective effect. Also, the coatings should have very low rate of dissolution even in the most aggressive environments in which they work. Therefore, the problem of creating optimal coatings is complex and requires a comprehensive study in each specific case. In the case of industrial use of amorphous metal alloys (AMA) based on transition metals with different alloying elements, special attention must be paid to the elemental composition of the surface of the finished products, which can differ significantly from the quantitative composition of the initial charge, which depends on the nature of the components and the applied protocol of ultra-fast cooling of the melt. The difference in the elemental composition on the surface and in the volume of the amorphous alloy is also due to the possible formation of surface chemical compound i.e. metal oxides. The protective properties are evaluated by the speed of metal oxidation, the formation of a layer and the duration of its action. Comparative assessment of the reactivity of amorphous alloys Al87.0Y5.0Ni8.0, Fe73.6Cu1.0Nb2.4Si15.8B1.2, Fe78.5Ni1.0Mo0.5Si6.0B14.0, Co75.5Fe4.6Si6,B16.7 in an aqueous solution of sodium chloride was carried out using electrochemical studies. The main requirements for obtaining optimal results of applying protective coatings on crystalline and amorphous surfaces have been analyzed.
金属表面层形成的特征
金属合金,特别是非晶合金的实际应用,往往需要在其表面创造各种性质和用途的多功能涂层。要获得最佳的涂敷效果,主要要求如下:1。涂装前对表面形貌的了解。2. 金属涂层组合物的物理和机械性能信息。3.涂覆后立即测试附着力。4. 根据产品的操作条件,采用不同的方法控制涂层的应用和功能。功能性涂层的可靠性还取决于材料表面的制备,以及选择合适的形成条件。然而,无论用途如何,所有涂料必须满足的一般要求是与基材表面的良好附着力。保证不同区域(凸起和凹陷)的均匀厚度也很重要,因为涂层的厚度决定了其保护作用的寿命。此外,即使在它们工作的最恶劣的环境中,涂层也应该具有非常低的溶解率。因此,创造最佳涂层的问题是复杂的,需要在每个具体情况下进行全面的研究。在工业使用基于不同合金元素的过渡金属的非晶金属合金(AMA)的情况下,必须特别注意成品表面的元素组成,这可能与初始电荷的定量组成有很大不同,这取决于成分的性质和熔体的超高速冷却应用方案。非晶合金表面元素组成和体积的差异也是由于表面可能形成的化学化合物,即金属氧化物。保护性能是通过金属氧化的速度、层的形成和作用的持续时间来评估的。采用电化学方法对比评价了Al87.0Y5.0Ni8.0、Fe73.6Cu1.0Nb2.4Si15.8B1.2、Fe78.5Ni1.0Mo0.5Si6.0B14.0、Co75.5Fe4.6Si6、B16.7非晶合金在氯化钠水溶液中的反应性。分析了在晶态和非晶态表面涂覆保护涂层获得最佳效果的主要要求。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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