粒度对Ni-YSZ化学涂层表面粗糙度和形貌的影响

Q3 Engineering
N. Bahiyah Baba, A. S. Ghazali, S. N. Azinee, A. A. Abdul Rahman, S. Sharif
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引用次数: 0

摘要

本文讨论了不同YSZ粒度的化学镍钇稳定氧化锆(Ni-YSZ)涂层的表面特征,并在300-400℃的温度下进行1-2小时的热处理以达到耐磨目的。这一发现将有助于Ni-YSZ作为切削刀具的替代涂层的应用。利用JOEL扫描电镜(SEM)和能量色散x射线(EDX) JSM 7800F对其进行了表面表征。采用Bruker D8 Advance型x射线衍射仪(XRD)分析了材料的晶体结构。采用化学镍共沉积方法,在高速钢基体上制备了纳米级、混合级和微米级8YSZ陶瓷颗粒的Ni-YSZ涂层。涂层在温度300-400℃,时间1-2小时下进行热处理。表面粗糙度采用Mitutoyo表面粗糙度测试仪SJ-301进行测量。化学沉积的Ni-YSZ涂层平均厚度为30µm。结果表明,与Ni-YSZ混合镀层(NM)和Ni-YSZ微镀层(M)相比,未掺入YSZ颗粒的化学镀层(EN)和Ni-YSZ纳米镀层(N)的镀层形貌更为光滑。EDS成分分析表明,N镀层中YSZ含量最低,NM镀层中YSZ含量最高。这导致了表面粗糙度行为,其中混合尺寸的YSZ颗粒在所有温度下都具有最高的粗糙度。XRD分析表明,300℃以上的加热温度导致Ni3P结晶析出。以往对化学镀镍复合材料表面表征的研究很少;因此,本研究在寻找支持数据方面存在局限性。化学镀镍,无论是Ni-P还是复合材料或合金的表面粗糙度的表面表征很少被报道。因此,该研究揭示了颗粒尺寸对热处理涂层表面粗糙度和形貌的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect of particle size on surface roughness and morphology of heat-treated electroless Ni-YSZ coating
The paper discusses the surface characterisation of electroless nickel-yttria-stabilised zirconia (Ni-YSZ) coating with varying YSZ particle sizes and undergoes heat treatment at a temperature between 300-400°C for 1-2 hours for wear resistance purposes. This finding will be helpful to the application of Ni-YSZ as an alternative coating for cutting tools. The surface characterisation was analysed using JOEL Scanning Electron Microscope (SEM) coupled with Energy Dispersive X-ray (EDX) JSM 7800F. The crystallographic structure of materials was analysed by X-ray diffraction (XRD) Bruker D8 Advance instrument. The Ni-YSZ coating was deposited using electroless nickel co-deposition of 8YSZ ceramic particles with a nano, mixed and microparticle sizes onto a high-speed steel (HSS) substrate. The coatings were heat treated at temperature 300-400°C and time 1-2 hours. The surface roughness was measured using Mitutoyo surface roughness tester SJ-301. The electroless Ni-YSZ coating deposited has an average thickness of 30 µm. It is found that the coating morphology electroless coating without YSZ particle incorporation (EN) and Ni-YSZ nano (N) is smoother compared to the Ni-YSZ mixed (NM) and Ni-YSZ micro (M). The EDS composition analysis shows the YSZ content in the electroless Ni-YSZ coating for N samples is the lowest, whereas NM samples are the highest. This resulted in the surface roughness behaviour where the mixed-size YSZ particle gives the highest roughness at all temperatures. The XRD analysis shows that heating temperatures above 300°C caused the precipitation of Ni3P crystalline. Previous studies in the surface characterisation of electroless nickel composite are scarce; thus, the study has limitations in finding supporting data. The surface characterisation especially related to the surface roughness of the electroless nickel, either the Ni-P or composites or alloys are rarely reported. Thus, this study enlightened the effect of particle size on surface roughness and morphology of heat-treated coatings.
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来源期刊
Journal of Achievements in Materials and Manufacturing Engineering
Journal of Achievements in Materials and Manufacturing Engineering Engineering-Industrial and Manufacturing Engineering
CiteScore
2.10
自引率
0.00%
发文量
15
期刊介绍: The Journal of Achievements in Materials and Manufacturing Engineering has been published by the Association for Computational Materials Science and Surface Engineering in collaboration with the World Academy of Materials and Manufacturing Engineering WAMME and the Section Metallic Materials of the Committee of Materials Science of the Polish Academy of Sciences as a monthly. It has 12 points which was received during the evaluation by the Ministry of Science and Higher Education journals and ICV 2017:100 on the ICI Journals Master list announced by the Index Copernicus. It is a continuation of "Proceedings on Achievements in Mechanical and Materials Engineering" published in 1992-2005. Scope: Materials[...] Properties[...] Methodology of Research[...] Analysis and Modelling[...] Manufacturing and Processingv Biomedical and Dental Engineering and Materials[...] Cleaner Production[...] Industrial Mangement and Organisation [...] Education and Research Trends[...]
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