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In vitro biodegradation testing of Mg-alloy EZK400 and manufacturing of implant prototypes using PM (powder metallurgy) methods

机译:在镁合金EZK400的体外生物降解测试中以及使用PM(粉末冶金)方法制造植入物原型

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摘要

The study is focussing towards Metal Injection Moulding (MIM) of Mg-alloys for biomedical implant applications. Especially the influence of the sintering processing necessary for the consolidation of the finished part is in focus of this study. In doing so, the chosen high strength EZK400 Mg-alloy powder material was sintered using different sintering support bottom plate materials to evaluate the possibility of iron impurity pick up during sintering. It can be shown that iron pick up took place from the steel bottom plate into the specimen. Despite the fact that a separating boron nitrite (BN) barrier layer was used and the Mg-Fe phase diagram is not predicting any significant solubility to each other. As a result of this study a new bottom plate material not harming the sintering and the biodegradation performance of the as sintered material, namely a carbon plate material, was found.
机译:该研究的重点是用于生物医学植入物应用的镁合金的金属注射成型(MIM)。尤其是烧结过程对完成零件固结的影响是本研究的重点。为此,使用不同的烧结支撑底板材料对所选的高强度EZK400镁合金粉末材料进行烧结,以评估烧结过程中铁杂质吸收的可能性。可以证明,铁从钢板底板进入试样。尽管使用了单独的亚硝酸硼(BN)阻挡层,并且Mg-Fe相图都无法预测彼此之间的溶解度。作为该研究的结果,发现了一种新的底板材料,其不损害烧结和作为烧结材料的生物降解性能,即碳板材料。

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