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首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >In Vitro Biodegradation and Mechanical Properties of Mg-Zn Alloy and Mg-Zn-Hydroxyapatite Composite Produced by Mechanical Alloying for Potential Application in Bone Repair
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In Vitro Biodegradation and Mechanical Properties of Mg-Zn Alloy and Mg-Zn-Hydroxyapatite Composite Produced by Mechanical Alloying for Potential Application in Bone Repair

机译:Mg-Zn合金的体外生物降解和机械性能和Mg-Zn-羟基磷灰石复合材料,用于骨修复潜在应用

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A biodegradable Mg-6.5 wt pct Zn ( Mg-Zn) alloy and Mg-6.5 wt pct Zn reinforced with 10 wt pct hydroxyapatite (HA) composite were prepared by mechanical milling. In vitro biodegradation activity as a function of immersion time was performed in Hank's balanced salt solution (HBSS). The dissolution of Mg ions (Mg2+) decreased from 75.74 mu g/ml of pure Mg to 59.24 mu g/ml and 46.88 mu g/ml corresponding to the Mg-Zn alloy and Mg-Zn/HA composite, respectively. This finding indicates the progressive effect of HA followed by the Zn addition in decelerating the degradation rate of Mg. More positive corrosion potential of Mg-6.5 wt pct Zn alloy (- 1.5015 V) and Mg-Zn/10 wt pct HA composite (- 1.4647 V) than that of pure Mg (- 1.6972 V) suggested that the Mg-Zn/10 wt pct HA composite exhibited the highest corrosion resistance in the bioenvironment. The compressive strength values after 7 days of immersion in HBSS of the Mg-Zn alloy and Mg-Zn/HA composite are 230.64 and 278.46 MPa, respectively, and these are considerably higher compared to the compressive strength of the cortical bone (100 to 230 MPa). (C) The Minerals, Metals & Materials Society and ASM International 2018
机译:通过机械研磨制备使用10wt PCT羟基磷灰石(HA)复合材料加固的可生物降解的Mg-6.5 Wt PCT Zn(Mg-Zn)合金和Mg-6.5 Wt PCT Zn。体外生物降解活性作为浸渍时间的函数在Hank的平衡盐溶液(HBSS)中进行。 Mg离子(Mg2 +)的溶解在对应于Mg-Zn合金和Mg-Zn / HA复合物的75.74μg/ ml纯Mg至59.24μg/ ml和46.88μg/ ml。该发现表明HA的逐渐效果随后在减少MG的降解速率时添加Zn。 Mg-6.5 WT PCT Zn合金( - 1.5015 V)和Mg-Zn / 10 Wt PCT HA复合( - 1.4647 V)的更大的正腐蚀电位比纯mg( - 1.6972 V)所示的Mg-Zn / 10 WT PCT HA复合材料在生物环境中表现出最高的耐腐蚀性。在Mg-Zn合金和Mg-Zn / HA复合材料的HBS中浸泡7天后的压缩强度值分别为230.64和278.46MPa,与皮质骨的压缩强度相比,这些相比具有相当高的(100至230 MPA)。 (c)2018年矿物质,金属和材料协会和ASM国际

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