首页> 外文OA文献 >Effect of Sn Content on the Microstructure, Mechanical Properties and Corrosion Behavior of Biodegradable Mg–x (1, 3 and 5 wt.) Sn–1Zn–0.5Ca Alloys
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Effect of Sn Content on the Microstructure, Mechanical Properties and Corrosion Behavior of Biodegradable Mg–x (1, 3 and 5 wt.) Sn–1Zn–0.5Ca Alloys

机译:Sn含量对可生物降解的Mg-X(1,3和5重量%)Sn-1ZN-0.5Ca合金的微观结构,力学性能和腐蚀行为的影响

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摘要

The microstructure, mechanical properties and corrosion behavior of hot⁻rolled Mg⁻xSn⁻1Zn⁻0.5Ca (x = 1, 3 and 5 wt.%) alloys were investigated for possible application as biodegradable implants. The hot⁻rolled Mg⁻xSn⁻1Zn⁻0.5Ca alloys consisted of α-Mg matrix and Mg2Sn phase. The number of the Mg2Sn particles significantly increased and the grains were gradually refined (14.2 ± 1.5, ~10.7 ± 0.7 and ~6.6 ± 1.1 μm), while the recrystallized fraction significantly decreased with the increase in the Sn content, the Mg⁻1Sn⁻1Zn⁻0.5Ca alloy was almost completely recrystallized. Ultimate tensile strength (UTS) and tensile yield strength (TYS) increased slightly, reaching maximum values of 247 MPa and 116 MPa, respectively, for the Mg⁻5Sn⁻1Zn⁻0.5Ca alloy, and the elongation decreased with the increase in the Sn content; the Mg⁻1Sn⁻1Zn⁻0.5Ca alloy showed the highest elongation (15.3%). In addition, immersion tests and electrochemical measurements in Hank’s solution revealed that the corrosion rates of Mg⁻xSn⁻1Zn⁻0.5Ca alloys increased with the increase in the Sn content. A model of the corrosion behavior was discussed for hot⁻rolled Mg⁻xSn⁻1Zn⁻0.5Ca alloys in Hank’s solution. Among the Mg⁻xSn⁻1Zn⁻0.5Ca (x = 1, 3 and 5 wt.%) alloys, Mg⁻1Sn⁻1Zn⁻0.5Ca alloy exhibits optimal corrosion resistance and appropriate mechanical properties.
机译:Hot⁻rolledmg⁻xn⁻1Zn⁻0.5ca(x = 1,3和5wt.%)合金的微观结构,机械性能和腐蚀行为进行了可生物降解植入物的应用。 Hot⁻rolledmg⁻xsn⁻1zn⁻0.5ca合金由α-mg基质和mg2sn相组成。 Mg2Sn颗粒的数量显着增加,晶粒逐渐精制(14.2±1.5,〜10.7±0.7和〜6.6±1.1μm),而重结晶分数随着SN含量的增加而显着降低,Mg⁻1sn⁻ 1ZN⁻0.5CA合金几乎完全重结晶。极限拉伸强度(UTS)和拉伸屈服强度(Tys)略微增加,分别为Mg =5sN⁻1Zn⁻0.5CA合金达到最大值247MPa和116MPa,并且随着SN的增加而降低了伸长率内容; Mg⁻1sn⁻1zn⁻0.5ca合金显示伸长率最高(15.3%)。此外,Hank溶液中的浸渍试验和电化学测量显示,Mg⁻XSn⁻1Zn⁻0.5CA合金的腐蚀速率随SN含量的增加而增加。讨论了汉克溶液中的Hot⁻rolledMg⁻xSn⁻1Zn⁻0.5CA合金的腐蚀行为模型。在Mg⁻xsn⁻1zn⁻0.5ca中(x = 1,3和5wt%)合金,Mg⁻1sn⁻1zn⁻0.5ca合金表现出最佳的耐腐蚀性和适当的机械性能。

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