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首页> 外文期刊>Bulletin of materials science >Magnesium/fish bone derived hydroxyapatite composites by friction stir processing: studies on mechanical behaviour and corrosion resistance
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Magnesium/fish bone derived hydroxyapatite composites by friction stir processing: studies on mechanical behaviour and corrosion resistance

机译:镁/鱼骨衍生的羟基磷灰石复合材料的搅拌摩擦加工:力学性能和耐蚀性研究

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Magnesium (Mg)-based biomaterials are widely investigated for degradable implant applications. Developing Mg-based composites is one of the strategies adopted to increase the bioactivity and to reduce the degradation rate of Mg. In the present study, hydroxyapatite (fHA) has been produced from fish bones and incorporated into pure Mg sheets by friction stir processing (FSP). Microstructures of the composites clearly revealed the grain refinement in the stir zone up to 10 $mu$m from the starting size of 2000 $mu$m. Measurements of microhardness also indicated the effect of a smaller grain size and the presence of fHA on increasing the hardness in composites. Interestingly from the tensile tests, mechanical properties, such as yield strength and ultimate tensile strengths were measured as they decreased for the composite due to the presence of fHA particles. However, the observed % elongation of the composite was similar to that of a natural bone. From the electrochemical tests, the composite exhibited an enhanced corrosion performance. From the results, it can be concluded that the cost-effective Mga??fHA composites can be developed by FSP for degradable scaffold applications in biomedical fields.
机译:镁(Mg)基生物材料已被广泛研究用于可降解植入物应用。开发基于镁的复合材料是增加生物活性和降低镁降​​解率的策略之一。在本研究中,羟基磷灰石(fHA)是由鱼骨制成的,并通过搅拌摩擦加工(FSP)掺入纯镁片中。复合材料的微观结构清楚地表明,搅拌区的晶粒细化从起始尺寸2000μm到10μm。显微硬度的测量还表明较小的晶粒尺寸和fHA的存在对提高复合材料硬度的影响。有趣的是,从拉伸试验开始,测量了机械性能,如屈服强度和极限拉伸强度,因为复合材料由于存在fHA颗粒而降低了机械性能。然而,观察到的复合材料的%伸长率与天然骨的伸长率相似。根据电化学测试,该复合材料表现出增强的腐蚀性能。从结果可以得出结论,FSP可以开发出具有成本效益的Mga ?? fHA复合材料,用于生物医学领域的可降解支架应用。

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