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Influence of ECAP process on mechanical and corrosion properties of pure Mg and ZK60 magnesium alloy for biodegradable stent applications

机译:ECAP工艺对用于可生物降解支架的纯Mg和ZK60镁合金的机械和腐蚀性能的影响

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摘要

Equal channel angular pressing (ECAP) was performed on ZK60 alloy and pure Mg in the temperature range 150–250 °C. A significant grain refinement was detected after ECAP, leading to an ultrafine grain size (UFG) and enhanced formability during extrusion process. Comparing to conventional coarse grained samples, fracture elongation of pure Mg and ZK60 alloy were significantly improved by 130% and 100%, respectively, while the tensile strength remained at high level. Extrusion was performed on ECAP processed billets to produce small tubes (with outer/inner diameter of 4/2.5 mm) as precursors for biodegradable stents. Studies on extruded tubes revealed that even after extrusion the microstructure and microhardness of the UFG ZK60 alloy were almost stable. Furthermore, pure Mg tubes showed an additional improvement in terms of grain refining and mechanical properties after extrusion. Electrochemical analyses and microstructural assessments after corrosion tests demonstrated two major influential factors in corrosion behavior of the investigated materials. The presence of Zn and Zr as alloying elements simultaneously increases the nobility by formation of a protective film and increase the local corrosion damage by amplifying the pitting development. ECAP treatment decreases the size of the second phase particles thus improving microstructure homogeneity, thereby decreasing the localized corrosion effects.
机译:在150–250°C的温度范围内,对ZK60合金和纯Mg进行了等通道角挤压(ECAP)。 ECAP后检测到明显的晶粒细化,从而导致了超细晶粒尺寸(UFG)并在挤压过程中增强了可成形性。与常规的粗粒样品相比,纯Mg和ZK60合金的断裂伸长率分别显着提高了130%和100%,而抗拉强度保持在较高水平。在经过ECAP处理的钢坯上进行挤压,以生产小管(外径/内径为4 / 2.5毫米)作为可生物降解支架的前体。对挤压管的研究表明,即使在挤压后,UFG ZK60合金的组织和显微硬度也几乎稳定。此外,纯镁管在挤压后的晶粒细化和机械性能方面显示出额外的改进。腐蚀试验后的电化学分析和微观结构评估表明,对所研究材料的腐蚀行为有两个主要影响因素。 Zn和Zr作为合金元素的存在通过形成保护膜同时增加了贵金属,并通过扩大了点蚀的发展而增加了局部腐蚀损伤。 ECAP处理可减小第二相颗粒的尺寸,从而改善微观结构的均匀性,从而降低局部腐蚀作用。

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