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Study of the mechanical properties of single- layer and multi-layer metallic coatings with protective-decorative applications

机译:具有保护性装饰应用的单层和多层金属涂层的机械性能研究

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Single thin coating of matt nickel (N_(imat)), a mirror bright copper (Cu_(bright)), a mirror bright nickel (Ni_(bright)) and their combinations were electrochemically deposited on brass substrate with thickness 500 μm. The basic aim was electrodeposition of two-layer Cu_(bright)/N_(imat)and Ni_(bright)/Cu_(bright)systems, and three-layer Ni_(bright)Cu_(brigh)/N_(imat)system, which are among the most widely applied protective and decorative systems in light and medium operating conditions of corrosion. The thicknesses of the obtained films varied from 1 μm to 3.25 μm. They were investigated via nanoindentation experiments, in order to characterize their basic physical and mechanical characteristics, related with their good adhesion and corrosion protective ability, as well as ensuring the integrity of the system “protective coating/substrate” to possible mechanical, dynamic and/or thermal stresses. As a result, load-displacement curves were obtained and indentation hardness and indentation modulus were calculated using the Oliver & Pharr approximation method. The dependence of the indentation modulus and the indentation hardness on the depth of the indentation, surface morphology and structure of the obtained coatings, their texture and surface roughness were investigated too. The obtained results showed that the three-layer Ni_(bright)/Cu_(bright)/Ni_(imat)/CuZn37 system has highest indentation modulus and indentation hardness, following by two-layer Ni_(bright)/Cu_(bright)system and single layer coatings.
机译:哑光镍(N_(imat)),镜面光亮铜(Cu_(亮)),镜面光亮镍(Ni_(亮))及其组合的单层薄涂层以电化学方式沉积在厚度为500μm的黄铜基板上。基本目的是两层Cu_(亮)/ N_(imat)和Ni_(亮)/ Cu_(亮)系统以及三层Ni_(亮)Cu_(brigh)/ N_(imat)系统的电沉积。是在轻,中度腐蚀条件下应用最广泛的防护和装饰系统之一。所得膜的厚度在1μm至3.25μm之间变化。通过纳米压痕实验对它们进行了研究,以表征其基本的物理和机械特性,以及与它们良好的附着力和防腐蚀能力有关,并确保系统“保护涂层/基材”对可能的机械,动态和/或完整性。或热应力。结果,获得了载荷-位移曲线,并使用Oliver&Pharr近似方法计算了压痕硬度和压痕模量。还研究了压痕模量和压痕硬度对所获得的涂层的压痕深度,表面形态和结构,其织构和表面粗糙度的依赖性。所得结果表明,三层Ni_(亮)/ Cu_(亮)/ Ni_(imat)/ CuZn37体系具有最高的压痕模量和压痕硬度,其次是两层Ni_(亮)/ Cu_(光)体系和单层涂料。

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