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首页> 外文期刊>Acta of Bioengineering and Biomechanics >Development of manufacturing method of the MAP21 magnesium alloy prepared by selective laser melting (SLM)
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Development of manufacturing method of the MAP21 magnesium alloy prepared by selective laser melting (SLM)

机译:通过选择性激光熔化制备的MAP21镁合金的制造方法(SLM)

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Magnesium alloys are well known for their biocompatibility and biodegradable properties [9], [27] owing to the fact that magnesium is a mineral crucial for human body, especially for bone tissue. There are studies [17] on using WE43 additively manufactured magnesium scaffolds for full bone and soft tissue regeneration. Moreover, magnesium implants in bones were investigated as having higher bone-implant interface strength than titanium ones [3]. In this paper, the results of the studies on MAP21 magnesium powder selective laser melting process optimization as a starting point for further bioapplications are presented. MAP21 magnesium alloy owing to its high mechanical properties, excellent vibration damping characteristic and good creep resistance is a promising material to be tested for scaffold structures. The study for the first time shows successful SLM manufacturing of dense samples made of MAP21 alloy. Using an algorithm based on design of experiment (DoE) method [21], the SLM process parameters were designated. The porosity was investigated as a SLM process optimization parameter. High density of produced sample, up to 99%, was achieved. Microstructure and oxidation level after selective laser melting (SLM) manufacturing were characterized. Fine grain microstructure and three kinds of precipitations were found Nd (Gd, Zr, Mg), Mg (Nd, Gd, Zr) and Mg (Zr, Nd, Gd, Zn)). In order to determine the mechanical properties of MAP21 alloy processed with SLM technology, static tensile tests and microhardness tests were conducted, resulting in mechanical properties (R-m = 167 MPa, E = 38.6 GPa, 63-74 HB) comparable with as-cast alloy. A discussion was held on further research opportunities for biomedical use of SLM-ed MAP21 alloy.
机译:由于镁是人体至关重要的事实,镁合金众所周知,其生物相容性和可生物相容性和可生物相容性和可生物相容性[9],[27]。使用WE43含有骨骨和软组织再生的We43含有We43的研究[17]。另外,骨骼中的镁植入物被研究比钛植入界面强度高于钛植入界面强度[3]。本文介绍了Map21镁粉选择性激光熔化过程优化作为进一步生物缺像的起点的研究结果。由于其高机械性能,优异的振动阻尼特性和良好的蠕变电阻是用于支架结构的有希望的材料的MAP21镁合金。第一次研究显示了由MAP21合金制成的致密样品的成功SLM制造。使用基于实验(DOE)方法设计的算法[21],指定了SLM工艺参数。研究了孔隙率作为SLM过程优化参数。达到高达99%的产生样品的高密度。特征在于选择性激光熔融(SLM)制造后的微观结构和氧化水平。发现细粒微观结构和三种沉淀Nd(Gd,Zr,Mg),Mg(Nd,Gd,Zr)和Mg(Zr,Nd,Gd,Zn))。为了确定用SLM技术加工MAP21合金的机械性能,进行静态拉伸试验和微硬度试验,导致与铸造合金相当的机械性能(RM = 167MPa,E = 38.6GB,63-74Hb) 。对SLM-ED MAP21合金的生物医学使用的进一步研究机会举行了讨论。

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