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首页> 外文期刊>Frontiers in Materials >Mechanical Properties of Magnetron Sputtered Free Standing Mg-Ag Alloy Films
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Mechanical Properties of Magnetron Sputtered Free Standing Mg-Ag Alloy Films

机译:磁控溅射自由静态Mg-Ag合金薄膜的机械性能

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Magnesium based alloys gained great interest for medical biodegradable applications. Limitations arise from high corrosion rates and mechanical properties of the Mg based alloys. In recent work it was shown that the corrosion rate of a precipitate free Mg-6Ag thin film can be reduced by a factor of three compared to pure sputtered Mg. As Mg-6Ag combines the very promising corrosion results with a potential therapeutically use of Ag ions, the investigation of their mechanical properties is needed for a full characterization of Mg-Ag alloys as biodegradable material. In this work the Ag content was varied from 2 wt% to 10 wt%. The investigated thin film samples were dog-bone shaped samples with a thickness of 20 μm. The samples were fabricated by a combination of UV lithography, sacrificial layer technique and magnetron sputtering. The mechanical properties were determined using uniaxial tensile test. Compared to pure Mg samples fabricated by the same processing route the yield strength is approximately doubled for Ag containing samples. For films with a Ag concentration up to 8 wt% the elongation at fracture reaches a value of 7%. Further increase of the Ag concentration leads to lower elongation at fracture. Thus, especially due to the low corrosion rate, Mg-6Ag shows the optimum of all investigated alloys, with a yield strength of 310 MPa and an elongation at fracture of 6%.
机译:镁基合金对医学可生物降解应用产生了很大的兴趣。从基于Mg基合金的高腐蚀速率和机械性能产生限制。在最近的工作中,显示与纯溅射的Mg相比,可以减少沉淀的游离Mg-6Ag薄膜的腐蚀速率。由于Mg-6AG结合了具有Ag离子的潜在治疗使用的非常有前途的腐蚀结果,因此需要对其机械性能的研究完全表征Mg-Ag合金作为可生物降解的材料。在这项工作中,AG含量从2wt%变化至10wt%。研究的薄膜样品是厚度为20μm的狗骨形样品。通过UV光刻,牺牲层技术和磁控溅射的组合制造样品。使用单轴拉伸试验测定机械性能。与由相同的加工路线制造的纯MG样品相比,屈服强度大致加倍含有样品的Ag。对于具有高达8wt%的Ag浓度的薄膜,断裂处的伸长率达到7%的值。 Ag浓度的进一步增加导致骨折下伸长率。因此,特别是由于腐蚀速率低,Mg-6Ag显示了所有研究合金的最佳率,屈服强度为310MPa,骨折为6%。

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