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Mechanical properties of interference thin films on colored stainless steel evaluated by depth-sensing nanoindentation

机译:深度感测纳米压痕评估彩色不锈钢上干涉薄膜的力学性能

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摘要

Aiming to evaluate the influence of morphology on mechanical properties of interference films, electrodeposited using alternating pulse current on AISI 304 stainless steel, depth-sensing nanoindentation was employed. Film porosity was measured in field emission scanning electron microscopy images. Surface roughness of the films was evaluated by atomic force microscopy. Dry wear resistance under a load of 30 N against a strip of CrO3 0.5 mu m abrasive paper was also measured. Load-displacement response of a Berkovich indenter reveals that the interference films analyzed are softer than the uncoated substrate. Nanoscratching and wear resistance decrease as the porosity of the interference films increases. A linear relation between film hardness and its porosity was obtained. By correlating film properties with process parameters, it was found that the mechanical resistance of the interference film is controlled by the pulse size employed in the electrochemical reaction. (c) 2006 Elsevier B.V. All rights reserved.
机译:为了评估形态对干涉膜力学性能的影响,采用交流电脉冲电流在AISI 304不锈钢上进行电沉积,采用了深度感应纳米压痕。在场发射扫描电子显微镜图像中测量膜孔隙率。通过原子力显微镜评价膜的表面粗糙度。还测量了在30 N的负载下,相对于0.5 µm CrO3砂纸条的耐干磨损性。 Berkovich压头的载荷-位移响应表明,所分析的干涉膜比未涂覆的基底软。随着干涉膜孔隙率的增加,纳米划痕和耐磨性降低。获得了膜硬度与其孔隙率之间的线性关系。通过将膜的性质与工艺参数相关联,发现干涉膜的机械电阻由电化学反应中采用的脉冲大小控制。 (c)2006 Elsevier B.V.保留所有权利。

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