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Microstructural and mechanical characterisation of electroplated nickel matrix composite coatings

机译:电镀镍基复合涂层的微观结构与力学表征

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摘要

Metal matrix composite coatings reinforced with hard ceramic particles are attracting growing interest due to their promising mechanical properties. In the present work, a thick nickel coating, containing micrometric Silicon Carbide (SiC) particles, was electro-deposited on a steel substrate from a suspension of SiC in a Watts-type Ni-plating bath. The texture and microstructure of the coating were examined using electron backscatter diffraction combined with energy-dispersive spectroscopy for phase differentiation. The interfacial strength between the Ni matrix and the SiC particles was investigated by nanoscratch experiments. Grid nanoindentation technique coupled with an image correlation-based targeted indentation analysis and a statistical data treatment were employed to quantify mechanical properties of the composite and to map and extract mechanical properties and fractions of each phase. Additional investigation of the mechanical properties of the coating was performed using peak force quantitative nanomechanical mapping experiments.
机译:由于其有前途的机械性能,用硬陶瓷颗粒增强的金属基质复合涂层吸引了生长的利益。在本作工作中,含有微电池碳化硅(SiC)颗粒的厚镍涂层在瓦特型Ni镀浴中的SiC的悬浮液上被电沉积在钢基材上。使用电子背散射衍射检查涂层的纹理和微观结构与相分化的能量分散光谱合并。通过纳米克拉实验研究了Ni基质和SiC颗粒之间的界面强度。采用基于基于图像相关的靶向凹口分析和统计数据处理的栅格纳米凸缘技术与统计数据处理量化复合材料的机械性能并映射和提取每相的机械性能和级分。使用峰值力定量纳米机械映射实验进行额外研究涂层的机械性能。

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