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Investigation of degraded bone substitutes made of magnesium alloy using scanning electron microscope and nanoindentation

机译:用扫描电子显微镜和纳米凸缘对镁合金降解骨取代物的研究

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摘要

Degradable bone substitutes made of magnesium alloys are an alternative to biological bone grafts. The main advantage is that they can be manufactured location-and patient-specific. To develop and scale appropriate implants using computational models, knowledge about the mechanical properties and especially the change in the properties during the degradation process is essential. Therefore, degraded open-pored implants were investigated using scanning electron microscope and nanoindentation to find their material composition and mechanical properties. Using both techniques the correlation of the material composition and the average modulus was determined. It could be shown that the average modulus of the degradation layer is distinctly lower than that of the base material. The local average modulus of degrading implant highly depends on the magnesium concentration and the accumulation of elements from the environment. A decrease in magnesium concentration leads to a decrease in the average modulus. Thus, the degrading implant had a lower stiffness than the initial structure.
机译:镁合金可降解骨替代物是生物骨移植的替代品。其主要优点是,它们可以在特定位置和特定患者进行制造。为了使用计算模型开发和缩放合适的植入物,有关机械性能,尤其是降解过程中性能变化的知识至关重要。因此,利用扫描电子显微镜和纳米压痕技术对降解的开孔植入物进行了研究,以确定其材料组成和力学性能。利用这两种技术确定了材料成分和平均模量的相关性。可以看出,降解层的平均模量明显低于基材的平均模量。降解植入物的局部平均模量在很大程度上取决于镁浓度和环境中元素的积累。镁浓度的降低导致平均模量的降低。因此,退化植入物的刚度低于初始结构。

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