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医用可降解Zn-3Cu-xMn合金的制备及组织性能研究
引用本文:陈 鑫,王一鸣. 医用可降解Zn-3Cu-xMn合金的制备及组织性能研究[J]. 湖南工业大学学报, 2021, 35(5): 53-61
作者姓名:陈 鑫  王一鸣
作者单位:东北大学 材料科学与工程学院,东北大学 材料科学与工程学院
摘    要:为了解决Zn基合金作为生物可降解心血管支架时的强度低、塑性差等问题,通过合金化以及热挤压的方法,制备了生物可降解Zn-3Cu-xMn(x表示Mn的质量分数分别为0%,0.5%,1%,1.5%)合金棒材,并研究了合金中Mn含量与其显微组织、力学性能以及降解性能之间的关系.研究结果表明,合金由Zn基体和CuZn5第二相组成...

关 键 词:Zn3CuxMn合金  心血管支架  机械性能  降解性能
收稿时间:2021-03-10

Research on Fabrication, Microstructure and Properties of Medical Absorbable Zn-3Cu-xMn Alloys
CHEN Xin and WANG Yiming. Research on Fabrication, Microstructure and Properties of Medical Absorbable Zn-3Cu-xMn Alloys[J]. Journal of Hnnnan University of Technology, 2021, 35(5): 53-61
Authors:CHEN Xin and WANG Yiming
Abstract:In view of such flaws as low intensity and poor plasticity found in Zn-based alloys used as biodegradable cardiovascular scaffold, biodegradable Zn-3Cu-xMn (x is mass fraction of Mn of 0%,0.5%,1%,1.5% respectively) alloy bars are prepared by alloying and hot extrusion, followed by a research on the relationship between the content of Mn in the alloy and its microstructure, mechanical properties and degradation properties. The results show that the alloy is composed of Zn matrix and CuZn5 second phase; when the content of Mn exceeds 1%, MnZn13phase appears in the alloy. With the mass fraction of Mn content in the allot increasing from 0 to 1.5%, correspondingly the yield strength of the alloy increases from 138 MPa to 198 MPa, the tensile strength increases from 231 MPa to 355 MPa, while the elongation decreases from 96.2% to 39.0%. Meanwhile, the degradation rate of the alloy increases from 0.13 mm/a to 0.49 mm/a in vitro.
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