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Deposition of highly adhesive ZrO(2) coating on Ti and CoCrMo implant materials using plasma spraying.

机译:使用等离子喷涂在Ti和CoCrMo植入材料上沉积高粘性ZrO(2)涂层。

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摘要

ZrO(2) (4%CeO(2)) and ZrO(2) (3%Y(2)O(3)) coatings were deposited on titanium (Ti) and CoCrMo implants using plasma spraying and the adhesive, morphological and structural properties of the plasma-sprayed coatings were evaluated. Characterization of these coatings was performed using X-ray diffraction (XRD), scanning electron microscopy (SEM), surface roughness, hardness, and adhesive strength. XRD patterns showed that both the coatings appeared to be primitive tetragonal phase. SEM observations showed that both the ZrO(2) coatings appeared to be rough, porous and melted. The cross-section surface morphology of the coatings, coating-substrate interfaces and substrates without acid etching was very dense and smooth. After acid etching, as compared to the dense ZrO(2) coating-CoCrMo substrate interfaces, the thin gaps appeared within the ZrO(2) coating-Ti substrate interfaces. It is suggested that plasma spraying probably formed an amorphous Ti layer in the coating-Ti substrate interface that can be removed by acid etching. The average surface roughness of ZrO(2) (3%Y(2)O(3)) and ZrO(2) (4%CeO(2)) coatings was correlated to the starting powder size and substrates. No significant difference between the hardness of all coatings and substrates was observed. The adhesive strengths of ZrO(2) (4%CeO(2)) coating to Ti and CoCrMo substrates were higher than 68MPa and significantly greater than that of ZrO(2) (3%Y(2)O(3)) coatings.
机译:ZrO(2)(4%CeO(2))和ZrO(2)(3%Y(2)O(3))涂层使用等离子喷涂以及粘合剂,形态和结构沉积在钛(Ti)和CoCrMo植入物上评价了等离子喷涂涂层的性能。使用X射线衍射(XRD),扫描电子显微镜(SEM),表面粗糙度,硬度和粘合强度对这些涂层进行表征。 XRD图谱表明,两种涂层均表现为原始的四方相。扫描电镜观察表明,这两个ZrO(2)涂层看起来都是粗糙,多孔和熔化的。涂层,涂层-基材界面和未经酸蚀刻的基材的横截面表面形态非常致密和光滑。酸蚀刻后,与致密的ZrO(2)涂层-CoCrMo基板界面相比,ZrO(2)涂层-Ti基板界面内出现了细小的间隙。建议等离子喷涂可能在涂层-Ti基材界面中形成非晶态的Ti层,该层可以通过酸蚀去除。 ZrO(2)(3%Y(2)O(3))和ZrO(2)(4%CeO(2))涂层的平均表面粗糙度与起始粉末尺寸和基材相关。没有观察到所有涂层和基材的硬度之间的显着差异。 ZrO(2)(4%CeO(2))涂层对Ti和CoCrMo基材的粘合强度高于68MPa,并且显着大于ZrO(2)(3%Y(2)O(3))涂层。

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