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Wear Resistance of a Composite Galvanic Coating Based on the Nickel-Cobalt Alloy

机译:镍钴合金基复合电镀层的耐磨性

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摘要

In modern engineering the great attention is paid to the creation and implementation of new electroplating coating to ensure the durability, hardness and corrosion resistance. One of the effective methods for improving the properties of composite coatings is the method of galvanic deposition. The principle of obtaining of the composite electroplating was based on the fact that together with the metals ion some disperse particles of different sizes and nature are co-deposited. By including into metal matrix the particles are improve the performance coatings and increase the reliability and durability of products. The chloride electrolyte for application of the wear-resistant composite galvanic coating of nickel-cobalt-silicon oxide system was designed. The influences of the electrolysis modes and the electrolyte composition to a physical mechanical properties of the coating (wear resistance, firmness to corrosion, micro-hardness, internal stress, porosity, adhesion) were investigated. The possibility of the usage of received coating as the firmness to corrosion material with anti-frictional properties was showed.
机译:在现代工程中,人们非常重视新电镀层的创建和实施,以确保其耐用性,硬度和耐腐蚀性。改善复合涂层性能的有效方法之一是电沉积法。获得复合电镀的原理是基于这样的事实,即与金属离子一起共同沉积了一些不同大小和性质的分散颗粒。通过将颗粒包含在金属基质中,可以改善涂层的性能,并提高产品的可靠性和耐用性。设计了用于镍钴硅氧化物体系耐磨复合电镀层的氯化物电解液。研究了电解方式和电解质组成对涂层物理机械性能的影响(耐磨性,耐腐蚀性,显微硬度,内应力,孔隙率,附着力)。显示了将接收到的涂层用作具有抗摩擦性能的腐蚀材料的硬度的可能性。

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