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Improved Mechanical Properties and Corrosion Resistance of Mg-Based Bulk Metallic Glass Composite by Coating with Zr-Based Metallic Glass Thin Film

机译:用Zr基金属玻璃薄膜涂层改进了Mg基块金属玻璃复合材料的力学性能和耐腐蚀性

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Mg-based bulk metallic glass (BMG) and its composite (BMGC) can be excellent candidates as lightweight structure materials, but lack of anti-corrosion ability may restrict their application. In order to enhance the natural weak point of Mg-based BMGC, a 200-nm thick Zr-based metallic glass thin film (MGTF) ((Zr53Cu30Ni9Al8)99.5Si0.5) was applied and its mechanical properties as well as its corrosion resistance were appraised. The results of a 3-point bending test revealed that the flexural strength of the Mg-based BMGC with 200-nm thick Zr-based MGTF coating can be greatly enhanced from 180 to 254 MPa. We propose that the Zr-based MGTF coating can help to cover any small defects of a substrate surface, provide a protecting layer to prevent stress concentration, and cease crack initiation from the specimen surface during bending tests. Moreover, the results of anti-corrosion behavior analysis revealed a similar trend between the Mg-based BMG, Mg-based BMGC, and Mg-based BMGC with Zr-based MGTF coating in 0.9 wt.% sodium chloride solution. The readings show a positive effect with the Zr-based MGTF coating. Therefore, the 200-nm thick Zr-based MGTF coating is a promising solution to provide protection for both mechanical and anti-corrosion behaviors of Mg-based BMGC and reinforce its capability as structure material in island environments.
机译:Mg基块状金属玻璃(BMG)及其复合体(BMGC)可以是优异的候选作为轻质结构材料,但缺乏的防腐蚀能力可能会限制其应用。为了提高Mg基BMGC的天然薄弱点,一个厚度为200nm的锆基金属玻璃薄膜(MGTF)((Zr53Cu30Ni9Al8)99.5Si0.5)施加其机械性能以及它的耐腐蚀性进行了评估。 3点弯曲试验的结果显示,该镁基BMGC与厚度为200nm的Zr基MGTF涂层的抗弯强度,可大大提高为180〜254兆帕。我们建议,Zr类MGTF涂层可以帮助以覆盖基板表面的任何小缺陷,提供一个保护层,以防止应力集中,并停止裂纹萌生从期间弯曲试验试样表面。此外,抗腐蚀行为分析的结果在0.9重量%的氯化钠溶液中揭示了与锆基涂层MGTF Mg基BMG,Mg系BMGC,和Mg系BMGC之间有类似的趋势。读数表明与锆基涂层MGTF一个积极的影响。因此,厚度为200nm的Zr基MGTF涂层是一种很有前途的解决方案是提供一种用于Mg基BMGC的机械和抗腐蚀行为的保护和加强在岛屿环境其作为结构材料的能力。

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