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Microstructures and Mechanical Properties of a New Biomedical Material Mg-13Li-X Alloys

机译:新型生物医学材料Mg-13Li-X合金的组织和力学性能

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In this paper, a new biomedical Mg-Li alloy for the improvement of the comprehensive mechanical properties by micro-alloying and processing to meet the need of mechanical properties of biomedical materials. And the Mg-Li(Mg-Li-Al-Zn-Ca-Sr)alloy's processing and heat treatment were investigated in detail. The crystal texture of cast state, forged state and rolled state were observed and analyzed by OM, XRD and SEM. The mechanical properties of every stage were tested as well. The results showed that the grain size was refined obviously by the concentrating of Ca and Sr in the grain boundary. With the increase of rolling lane, the second phase's distribution was changed to a scattered state gradually from the reunion state. The tensile strength of the forged alloy was improved as well as its elongation after cold rolling and with rolled heat treatment process. The tensile strength reached 220MPa and the elongation reach 22%, which might meet the demand of cardiovascular stents mechanics.
机译:在本文中,一种新型的生物医学Mg-Li合金通过微合金化和加工来改善综合机械性能,以满足生物医学材料的机械性能需求。并详细研究了Mg-Li(Mg-Li-Al-Zn-Ca-Sr)合金的加工与热处理。通过OM,XRD和SEM观察并分析了铸态,锻造态和轧制态的晶体织构。还测试了每个阶段的机械性能。结果表明,通过将Ca和Sr集中在晶界中,晶粒尺寸得到了明显的细化。随着轧制车道的增加,第二相的分布从团聚状态逐渐变为分散状态。锻造合金的抗拉强度以及冷轧和轧制热处理后的伸长率均得到改善。抗张强度达到220MPa,伸长率达到22%,可以满足心血管支架力学的需求。

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