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Synthesis and Characterization of Bioceramic Oxide Coating on Zr-Ti-Cu-Ni-Be BMG by Electro Discharge Process

机译:电气放电过程Zr-Ti-Cu-Ni-Bmg对杀菌氧化物涂层的合成与表征

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In its native state, Zr-Ti-Cu-Ni-Be bulk metallic glass (BMG) do not allow strong physical bonding to the surrounding tissues when implanted, due to its inherent low strength bioinert oxide surface. In this study, a bioceramic oxides and strong carbide coating are synthesized on the Zr-Ti-Cu-Ni-Be surface, by electro-discharge coating (EDC) technique. This coating is expected to enhance cell adhesion and cell proliferation of the Zr-based BMG material as a potential implant. The influence of various hydroxyapatite (HA) powder concentrations added to the dielectric fluid on the treated BMG specimens, have been investigated. Field Emission Scanning Electron Microscopy (FESEM), Energy Dispersive X-ray Spectroscopy (EDX), X-ray Diffraction (XRD) characterization techniques was employed to study the phases, morphology and thickness of the electro-discharge coated Zr-based BMG. The FESEM and the XRD analysis revealed the coating formation of about 34.0 μm thick, containing nanoporous bioceramic oxides (CaZr0_2, ZrO_2, HA) and hard carbides (ZrC, TiC) on the substrate surface. The EDX spectrum confirmed the high deposition of some HA alloying elements (Ca, O, P), with calcium almost equal in proportion to that of zirconium. A high material deposition rate of 0.015267 g/min at the optimum parameters setting of Dc = 8 A, Dt = 8 μs, Pc = 15 g/L and Ep = -Ve was achieved.
机译:在其天然状态,锆 - 钛 - 铜 - 镍 - 成为块状金属玻璃(BMG)不允许在植入时,由于其固有的低强度生物惰性氧化物表面强物理结合到周围组织中。在这项研究中,生物陶瓷氧化物和强碳化物涂层是本锆 - 钛 - 铜 - 镍 - 被表面上合成,通过放电涂层(EDC)的技术。该涂层可望提高作为一个潜在的植入物的基于Zr的材料BMG的细胞粘附和细胞增殖。加入到在处理过的试样BMG电介质流体的各种羟基磷灰石(HA)粉末浓度的影响,进行了研究。场发射扫描电子显微镜(FESEM),能量分散X射线光谱(EDX),X射线衍射(XRD)表征技术被用于研究涂覆Zr基BMG的电火花的相位,形态和厚度。的FESEM和XRD分析揭示约34.0微米涂层形成厚,在基板表面上的含纳米多孔生物陶瓷氧化物(CaZr0_2,ZrO_2,HA)和硬质碳化物(的ZrC,TiC等)。的EDX谱证实一些HA合金元素的(Ca,O,P)的高沉积,与钙的比例几乎等于锆。的0.015267克/ min的高的材料的沉积速率在最佳参数DC = 8 A的设置,申= 8微秒,PC = 15 g / L和EP = -Ve达到了。

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