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Analysis of morphological, microstructural, electrochemical and nano mechanical characteristics of TiCN coatings prepared under N-2 gas flow rate by chemical vapour deposition (CVD) process at higher temperature

机译:在较高温度下通过化学气相沉积(CVD)工艺在N-2气流速率下制备的TiCN涂层形态学,微观结构,电化学和纳米力学特性分析

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摘要

In the present study, Titanium carbon nitride (TiCN) thin films have been synthesized over Si (100) substrate using chemical vapour deposition (CVD) process under N-2 gas flow rate to study the suitability of CVD for the growth of TiCN coating over machine tools. The morphological, structural, corrosion behavior and mechanical properties of the coatings have been characterized using a scanning electron microscope (SEM), atomic force microscopy (AFM), x-ray diffraction (XRD), corrosion test and Nano-indentation. SEM images revealed a smoother morphology of the TiCN coating surface without any pores. The AFM results revealed an increase in surface roughness from 40.88 nm to 48.25 nm. The particle size of TiCN thin film also found to be increasing with a higher N-2 flow rate. The XRD peaks of TiCN were observed in the range of 37 degrees-38 degrees. 44 degrees-44.5 degrees and 61 degrees-62 degrees attributed to (111), (200) and (220) crystal plane. The XRD results also confirmed the presence of stress in the coatings. The polarization test indicates a reduction of corrosion resistance with a higher N-2 gas flow rate. The mechanical properties investigated by the nano-indentation method indicated an increase in Hardness (H) and Young's modulus (E) of the coating with a higher N-2 flow rate. The maximum H and E of the coatings were observed as 27.85 GPa and 486.22 GPa respectively.
机译:在本研究中,在N-2气流速率下使用化学气相沉积(CVD)工艺在Si(100)基板上通过Si(100)衬底合成了氮化钛(TiCN)薄膜,以研究CVD对TICN涂层的生长的适用性机械工具。使用扫描电子显微镜(SEM),原子力显微镜(AFM),X射线衍射(XRD),腐蚀试验和纳米压痕的形态学,结构,腐蚀行为和机械性能。 SEM图像显示出没有任何孔的TICN涂层表面的更光滑的形态。 AFM结果表明,表面粗糙度增加到40.88nm至48.25nm。 TICN薄膜的粒径也发现,N-2流速较高。在37度-38度的范围内观察到TICN的XRD峰。归因于(111),(200)和(220)晶平的44度-44.5度和61度-62度。 XRD结果还证实了涂层中的应力。偏振检测表明,具有较高的N-2气流速率的耐腐蚀性降低。由纳米缩进方法研究的机械性能表明,具有较高的N-2流速的涂层的硬度(H)和杨氏模量(e)的增加。将涂层的最大H和E分别观察为27.85GPa和486.22GPa。

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