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Characteristics of the Mg-Zn-Ca-Gd Alloy after Mechanical Alloying

机译:机械合金化后Mg-Zn-Ca-Gd合金的特征

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摘要

Magnesium-based materials are interesting alternatives for medical implants, as they have promising mechanical and biological properties. Thanks to them, it is possible to create biodegradable materials for medical application, which would reduce both costs and time of treatment. Magnesium as the sole material, however, it is not enough to support this function. It is important to determine proper alloying elements and methods. A viable method for creating such alloys is mechanical alloying, which can be used to design the structure and properties for proper roles. Mechanical alloying is highly influenced by the milling time of the alloy, as the time of the process affects many properties of the milled powders. X-ray diffraction (XRD) and scanning electron microscopy (SEM) with energy-dispersive spectroscopy (EDS) were carried out to study the powder morphology and chemical composition of Mg65Zn30Ca4Gd1 powders. Moreover, the powder size was assessed by granulometric method and the Vickers hardness test was used for microhardness testing. The samples were milled for 6 min, 13, 20, 30, 40, and 70 h. The hardness correlated with the particle size of the samples. After 30 h of milling time, the average value of hardness was equal to 168 HV and it was lower after 13 (333 HV), 20 (273 HV), 40 (329 HV), and 70 (314 HV) h. The powder particles average size increased after 13 (31 μm) h of milling time, up to 30 (45–49 μm) hours, and then sharply decreased after 40 (28 μm) and 70 (12 μm) h.
机译:基于镁的材料是医疗植入物的有趣替代品,因为它们具有有前途的机械和生物学性质。由于它们,可以为医疗应用创建可生物降解的材料,这将降低治疗的成本和时间。然而,镁作为鞋底材料,不足以支持这种功能。重要的是确定适当的合金元素和方法。用于制造这种合金的可行方法是机械合金化,可用于设计适当的角色的结构和性质。由于该方法的时间影响研磨粉末的许多性能,机械合金化受到合金的铣削时间的影响。进行X射线衍射(XRD)和扫描电子显微镜(SEM),具有能量分散光谱(EDS),以研究Mg65Zn30Ca4GD1粉末的粉末形态和化学组成。此外,通过粒度法评估粉末尺寸,并且Vickers硬度试验用于微硬度测试。将样品研磨6分钟,13,20,30,40和70小时。硬度与样品的粒度相关。在铣削时间30小时后,平均硬度值等于168HV,13(333HV),20(273HV),40(329个HV)和70(314HV)H后较低。粉末颗粒的平均尺寸在铣削时间的13(31μm)H后增加,高达30(45-49μm)小时,然后在40(28μm)和70(12μm)H后急剧下降。

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