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首页> 外文期刊>Journal of the mechanical behavior of biomedical materials >Microstructure, mechanical properties, biocorrosion behavior, and cytotoxicity of as-extruded Mg-Nd-Zn-Zr alloy with different extrusion ratios.
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Microstructure, mechanical properties, biocorrosion behavior, and cytotoxicity of as-extruded Mg-Nd-Zn-Zr alloy with different extrusion ratios.

机译:不同挤压比的Mg-Nd-Zn-Zr挤压合金的组织,力学性能,生物腐蚀行为和细胞毒性。

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摘要

Recently, commercial magnesium (Mg) alloys containing Al (such as AZ31 and AZ91) or Y (such as WE43) have been studied extensively for biomedical applications. However, these Mg alloys were developed as structural materials, not as biomaterials. In this study, a patented Mg-Nd-Zn-Zr (denoted as JDBM) alloy was investigated as a biomedical material. The microstructure, mechanical properties, biocorrosion behavior, and cytotoxicity of the alloy extruded at 320 °C with extrusion ratios of 8 and 25 were studied. The results show that the lower extrusion ratio results in finer grains and higher strength, but lower elongation, while the higher extrusion ratio results in coarser grains and lower strength, but higher elongation. The biocorrosion behavior of the alloy was investigated by hydrogen evolution and mass loss tests in simulated body fluid (SBF). The results show that the alloy extruded with lower extrusion ratio exhibits better corrosion resistance. The corrosion mode of the alloy is uniform corrosion, which is favorable for biomedical applications. Aging treatment on the as-extruded alloy improves the strength and decreases the elongation at room temperature, and has a small positive influence on the corrosion resistance in SBF. The cytotoxicity test indicates that the as-extruded JDBM alloy meets the requirement of cell toxicity.
机译:最近,对于生物医学应用,已对含Al(例如AZ31和AZ91)或Y(例如WE43)的商业镁(Mg)合金进行了广泛的研究。但是,这些镁合金是作为结构材料而不是生物材料开发的。在这项研究中,研究了一种获得专利的Mg-Nd-Zn-Zr(表示为JDBM)合金作为生物医学材料。研究了在320℃下以8和25的挤出比挤出的合金的微观结构,力学性能,生物腐蚀行为和细胞毒性。结果表明,较低的挤出比导致晶粒细小和强度较高,但伸长率较低;而较高的挤出比导致晶粒粗大和强度较低,但伸长率较高。通过在模拟体液(SBF)中的析氢和质量损失测试研究了该合金的生物腐蚀行为。结果表明,挤压比较低的合金表现出较好的耐腐蚀性。合金的腐蚀方式是均匀腐蚀,这对生物医学应用是有利的。对挤压后的合金进行时效处理可以提高强度,并降低其在室温下的伸长率,并且对SBF的耐腐蚀性具有较小的积极影响。细胞毒性试验表明,挤压后的JDBM合金符合细胞毒性的要求。

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