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Iron-manganese: new class of metallic degradable biomaterials prepared by powder metallurgy

机译:铁锰:粉末冶金制备的新型金属可降解生物材料

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An Fe-35 wt-percent Mn alloy, aimed to be used as a metallic degradable biomaterial for stent applications, was prepared via a powder metallurgy route. The effects of processing conditions on the microstructure, mechanical properties, magnetic susceptibility and corrosion behaviour were investigated and the results were compared to those of the SS316L alloy, a gold standard for stent applications. The Fe35Mn alloy was found to be essentially austenitic with fine MnO particles aligned along the rolling direction. The alloy is ductile with a strength approaching that of wrought SS316L. It exhibits antiferromagnetic behaviour and its magnetic susceptibility is not altered by plastic deformation, providing an excellent MRI compatibility. Its corrosion rate was evaluated in a modified Hank's solution, and found superior to that of pure iron (slow in vivo degradation rate). In conclusion, the mechanical, magnetic and corrosion characteristics of the Fe35Mn alloy are considered suitable for further development of a new class of degradable metallic biomaterials.
机译:通过粉末冶金路线制备了旨在用作支架应用的金属可降解生物材料的Fe-35 wt%Mn合金。研究了加工条件对显微组织,机械性能,磁化率和腐蚀行为的影响,并将结果与​​SS316L合金(支架应用的金标准)的结果进行了比较。发现Fe35Mn合金基本上是奥氏体,具有沿轧制方向排列的细MnO颗粒。该合金具有延展性,强度接近锻造SS316L。它具有反铁磁特性,其磁化率不会因塑性变形而改变,从而具有出色的MRI兼容性。在改良的Hank溶液中评估了其腐蚀速率,发现其优于纯铁(慢的体内降解速率)。总之,Fe35Mn合金的机械,磁性和腐蚀特性被认为适合进一步开发新型可降解金属生物材料。

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