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首页> 外文期刊>Journal of Materials Engineering and Performance >Preparation and Properties of Zn-Cu Alloy for Potential Stent Material
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Preparation and Properties of Zn-Cu Alloy for Potential Stent Material

机译:Zn-Cu合金对潜在支架材料的制备与性能

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摘要

Among degradable metal cardiac stent materials, zinc has great biocompatibility and corrosion properties, which make it become the most potential stent material. However, the mechanical properties of zinc cannot meet the performance requirements of stent material which severely limit its application. In this paper, Zn-xCu (x = 1, 2 and 3 wt.%) alloys were prepared, and their mechanical properties, corrosion properties and biocompatibility were studied. Tensile testing showed the tensile strength and hardness of Zn-xCu alloys both increased with the addition of copper, but the elongation decreased at first and then upturned. Since the formation of galvanic cell, the corrosion rates of Zn-xCu alloys increased. The main corrosion mechanism of Zn-xCu alloy was pitting corrosion, and the corrosion products mainly included ZnO and Zn(OH)(2). The cytotoxicity evaluation showed that Cu(2+)and Zn(2+)would contribute to cell proliferation, while the concentrations of them reached a suitable range like the concentration of soaking solution of Zn-3Cu alloy was 25%. However, it would inhibit proliferation, while the concentrations of Zn(2+)and Cu(2+)were too large. In general, Zn-3Cu alloy had the best comprehensive properties.
机译:在可降解金属心脏支架材料中,锌具有良好的生物相容性和耐腐蚀性,使其成为最有潜力的支架材料。然而,锌的力学性能不能满足支架材料的性能要求,这严重限制了其应用。本文制备了Zn-xCu(x=1、2和3 wt.%)合金,并对其力学性能、腐蚀性能和生物相容性进行了研究。拉伸试验表明,Zn-xCu合金的抗拉强度和硬度均随铜的加入而增加,但伸长率先下降后上升。自原电池形成以来,Zn-xCu合金的腐蚀速率增加。Zn-xCu合金的主要腐蚀机理为点蚀,腐蚀产物主要为ZnO和Zn(OH)(2)。细胞毒性评价表明,Cu(2+)和Zn(2+)有助于细胞增殖,但其浓度达到了一个合适的范围,如Zn-3Cu合金浸泡液的浓度为25%。然而,当Zn(2+)和Cu(2+)浓度过大时,它会抑制增殖。总体而言,Zn-3Cu合金的综合性能最好。

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