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Comparative investigations of structure and properties of micro-arc wollastonite-calcium phosphate coatings on titanium and zirconium-niobium alloy

机译:钛锆锆铌合金微弧硅灰石-磷酸钙涂层结构与性能的比较研究

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摘要

Investigation results of micro-arc wollastonite–calcium phosphate (W–CaP) biocoatings on the pure titanium (Ti) and Zr–1wt.%Nb (Zr–1Nb) alloy were presented. The voltages of 150–300 V generate the micro-arc oxidation (MAO) process with the initial amplitude current of 150–550 A and 100–350 A for Ti and Zr–1Nb substrates, respectively. The identical dependencies of changes of the coating thickness, surface roughness and adhesion strength on the process voltage were revealed for the both substrates. The W–CaP coatings with the thickness of 10–11 μm were formed on Ti and Zr–1Nb under the low process voltage of 130–150 V. Elongated wollastonite particles with the size in the range of 40–100 μm were observed in such coatings. The structure of the coatings on Ti was presented by the X–ray amorphous and crystalline phases. The X–ray reflexes relating to the crystalline phases of Ti and wollastonite were observed only in XRD patterns of the coatings deposited under 130–200 V on Ti. While, the crystalline structure with phases of CaZr4(PO4)6, β–ZrP2O7, ZrO2, and Zr was detected in the coatings on Zr–1Nb. FT–IRS, XRD, SEM, and TEM data confirmed that the increase of the process voltage to 300 V leads to the dissociation of the wollastonite. No toxic effect of specimens on a viability, morphology and motility of human adipose–derived multipotent mesenchymal stem cells was revealed in vitro.
机译:介绍了在纯钛(Ti)和Zr-1wt。%Nb(Zr-1Nb)合金上的微弧硅灰石-磷酸钙(W-CaP)生物涂层的研究结果。 150-300 V的电压会产生微弧氧化(MAO)过程,Ti和Zr-1Nb衬底的初始振幅电流分别为150-550 A和100​​-350 A.对于两种基材,揭示了涂层厚度,表面粗糙度和粘附强度的变化对工艺电压的相同依赖性。在130-150V的低工艺电压下,在Ti和Zr-1Nb上形成了厚度为10-11μm的W-CaP涂层。在这种情况下,观察到了尺寸为40-100μm的细长硅灰石颗粒。涂料。 Ti上的涂层结构由X射线无定形和结晶相表示。仅在130-200 V下沉积在Ti上的涂层的XRD图谱中观察到与Ti和硅灰石的结晶相相关的X射线反射。同时,在Zr-1Nb的涂层中检测到具有CaZr4(PO4)6,β-ZrP2O7,ZrO2和Zr相的晶体结构。 FT-IRS,XRD,SEM和TEM数据证实过程电压增加至300V导致硅灰石解离。在体外,没有发现标本对人脂肪来源的多能间充质干细胞的活力,形态和运动性有毒性作用。

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