在镍铬铝钴氧化钇键合涂层上沉积铈钇稳定氧化锆涂层的表征

M. Mrdak, Č. Lačnjevac, D. Bajić
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引用次数: 0

摘要

二氧化锆(ZrO2)被用作热障的基本材料,也被用作骨科手术中制造髋关节植入物部件的生物材料,以及牙科中制造牙冠的生物材料。由于ZrO2陶瓷具有良好的化学稳定性和尺寸稳定性、机械强度、韧性和弹性模量,所以用作绝缘材料和生物材料。本研究的目的是分析常压等离子喷涂(APS)法制备的稳定铈氧化钇氧化锆涂层在镍铬钴氧化钇结合涂层上的特性。涂层沉积在冷基底和预热到180°C的基底上。采用镍铬/铝/钴/氧化钇复合粉末制备键合层和氧化锆稳定陶瓷层。采用HV法测定涂层的显微硬度,采用拉伸试验测定涂层体系的粘结强度。通过光学显微镜图像分析处理,对键合层和陶瓷层中孔隙的比例进行金相评价。在SEM上进行粉末颗粒形貌和能谱分析。结果表明,基体预热温度对涂层体系的结构力学性能有显著影响。
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Characterization of zirconium oxidecoating stabilized with cerium and yttrium oxide deposited on the bonding coating nickel chromium aluminum cobalt yttrium oxide
Zirconium dioxide ZrO2 is used as a basic material for thermal barriers and as a biomaterial for manufacturing parts for hip implants in orthopedic surgery and in dentistry for making crowns. Use of ZrO2 ceramics as an insulating material and biomaterial is due to its good chemical and dimensional stability, mechanical strength, toughness and elastic modulus. The aim of this study was to analyze the characteristics of zirconium oxide coating of stabilized cerium and yttrium oxide deposited by atmospheric plasma spraying (APS) process on the bond coating of nickel chromium cobalt yttrium oxide. Coatings were deposited on cold substrates and on substrates preheated to 180°C. Composite powder nickel chromium/aluminum/cobalt/yttrium oxide was used for the production of bond layers and for the ceramic layers zirconium oxide stabilized with cerium and yttrium oxide powder. Testing the quality of coatings was done by measuring microhardness of layers using the HV method and for bond tensile strength of the coating system tensile testing was applied. Metallographic evaluation of the share of pores in the bond and ceramic layers was performed with image analysis - processing of images from a light microscope. Powder particle morphology and EDS analysis were performed on the SEM. The obtained results confirm that the preheating temperature of the substrate has a significant impact on structural mechanical properties of the tested coatings system.
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来源期刊
Zastita materijala
Zastita materijala Materials Science-General Materials Science
CiteScore
0.80
自引率
0.00%
发文量
26
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