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首页> 外文期刊>Industrial and organizational psychology >Controlling the Degradation Rate of Biodegradable Mg-Zn-Mn Alloys for Orthopedic Applications by Electrophoretic Deposition of Hydroxyapatite Coating
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Controlling the Degradation Rate of Biodegradable Mg-Zn-Mn Alloys for Orthopedic Applications by Electrophoretic Deposition of Hydroxyapatite Coating

机译:通过羟基磷灰石涂层电泳沉积控制可生物降解Mg-Zn-Mn合金的降解速率

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摘要

Magnesium alloys as bioresorbable materials with good biocompatibility have raised a growing interest in the past years in temporary implant manufacturing, as they offer a steady resorption rate and optimal healing in the body. Magnesium exhibits tensile strength properties similar to those of natural bone, which determines its application in load-bearing mechanical medical devices. In this paper, we investigated the biodegradation rate of Mg-Zn-Mn biodegradable alloys (ZMX410 and ZM21) before and after coating them with hydroxyapatite (HAP) via the electrophoretic deposition method. The experimental samples were subjected to corrosion tests to observe the effect of HAP deposition on corrosion resistance and, implicitly, the rate of biodegradation of these in simulated environments. X-ray diffraction (XRD), scanning electron microscopy (SEM) and energy-dispersive spectroscopy (EDS) provided detailed information on the quality, structure, and morphology of the HAP coating. The obtained results demonstrate that coating of Mg-Zn-Mn alloys by HAP led to the improvement of corrosion resistance in simulated environments, and that the HAP coating could be used in order to control the biodegradation rate.
机译:镁合金作为具有良好生物相容性的生物相容性,在过去几年中,在临时植入物制造中提高了日益增长的兴趣,因为它们提供了稳定的吸收率和体内最佳愈合。镁与天然骨骼类似的拉伸强度特性,它决定了其在承载负载机械医疗器械中的应用。在本文中,我们通过电泳沉积方法研究了用羟基磷灰石(HAP)涂覆羟基磷灰石(HAP)之前和之后的Mg-Zn-Mn可生物降解合金(ZMX410和ZM21)的生物降解速率。对实验样品进行腐蚀试验,观察HAP沉积对耐腐蚀性的影响,并且隐含地,这些模拟环境中这些在这些环境中的生物降解速率。 X射线衍射(XRD),扫描电子显微镜(SEM)和能量分散光谱(EDS)提供了关于HAP涂层的质量,结构和形态的详细信息。所得结果表明,通过Hap涂覆Mg-Zn-Mn合金LED导致模拟环境中的耐腐蚀性的提高,并且可以使用HAP涂层以控制生物降解速率。

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