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Microstructural, mechanical, corrosion and cytotoxicity characterization of the hot forged FeMn30(wt.%) alloy

机译:FeMn30(wt。%)热锻合金的组织,力学,腐蚀和细胞毒性

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摘要

An interest in biodegradable metallic materials has been increasing in the last two decades. Besides magnesium based materials, iron-manganese alloys have been considered as possible candidates for fabrication of biodegradable stents and orthopedic implants. In this study, we prepared a hot forged FeMn30 (wt.%) alloy and investigated its microstructural, mechanical and corrosion characteristics as well as cytotoxicity towards mouse L 929 fibroblasts. The obtained results were compared with those of iron. The FeMn30 alloy was composed of antiferromagnetic gamma-austenite and epsilon-martensite phases and possessed better mechanical properties than iron and even that of 316L steel. The potentiodynamic measurements in simulated body fluids showed that alloying with manganese lowered the free corrosion potential and enhanced the corrosion rate, compared to iron. On the other hand, the corrosion rate of FeMn30 obtained by a semi-static immersion test was significantly lower than that of iron, most likely due to a higher degree of alkalization in sample surrounding. The presence of manganese in the alloy slightly enhanced toxicity towards the L 929 cells; however, the toxicity did not exceed the allowed limit and FeMn30 alloy fulfilled the requirements of the ISO 10993-5 standard. (C) 2015 Elsevier B.V. All rights reserved.
机译:在过去的二十年中,人们对可生物降解的金属材料的兴趣不断增长。除镁基材料外,铁锰合金也被认为是制造生物可降解支架和整形外科植入物的可能选择。在这项研究中,我们制备了热锻的FeMn30(wt。%)合金,并研究了其微结构,机械和腐蚀特性以及对小鼠L 929成纤维细胞的细胞毒性。将获得的结果与铁的结果进行比较。 FeMn30合金由反铁磁γ-奥氏体相和ε-马氏体相组成,并具有比铁甚至316L钢更好的机械性能。在模拟体液中的电位动力学测量表明,与铁相比,与锰合金化可降低自由腐蚀电位并提高腐蚀速率。另一方面,通过半静态浸没测试获得的FeMn30腐蚀速率明显低于铁,这很可能是由于样品周围的碱化程度较高所致。合金中锰的存在会稍微增强对L 929细胞的毒性。但是,毒性未超过允许的极限,FeMn30合金达到了ISO 10993-5标准的要求。 (C)2015 Elsevier B.V.保留所有权利。

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