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首页> 外文期刊>Advances in materials science and engineering >Influence of Al Content on Degradation Behavior of Cu-Doped Mg-Al Alloys for Drill-Free Plugging Applications
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Influence of Al Content on Degradation Behavior of Cu-Doped Mg-Al Alloys for Drill-Free Plugging Applications

机译:Al含量对钻孔堵塞应用Cu掺杂Mg-Al合金降解行为的影响

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摘要

Herein, we report low-cost and rare-earth-free Cu-doped Mg-Al alloys for drill-free plugging applications and present the influence of Al content on degradation behavior. The phase composition and microstructure of fabricated alloys were characterized by using a scanning electron microscope (SEM) and X-ray diffractometer (XRD). Also, degradation properties were investigated using hydrogen evolution tests and the electrochemical measurements. The results reveal that the Al content is directly related to the proportion of secondary phases, such as Mg2Cu, Mg17Al12, and MgAlCu. Moreover, the Mg17Al12 and MgAlCu phases are distributed at α-Mg grain boundaries, whereas the MgAlCu phase is distributed within the Mg matrix. Acceleration of degradation rate is found due to microgalvanic corrosion in Mg-xAl-2Cu (in wt.%, named as ACx2, x?=?0, 3, 5, and 9) alloys. In this regard, Mg2Cu, Mg17Al12, and MgAlCu phases act as a microgalvanic cathode against anodic magnesium matrixes. As such, the degradation rate of ACx2 alloys in 3.5% NaCl solution is ranked from AC02, AC32, AC52, to AC92. In this context, the AC02 alloy shows the fastest degradation rate, 46 times higher than the AC92 alloy. This may provide a practical solution to develop good alternatives for drill-free plugging materials.
机译:在此,我们报告了用于无钻堵塞应用的低成本和稀土式Cu掺杂的Mg-Al合金,并呈现Al含量对降解行为的影响。通过使用扫描电子显微镜(SEM)和X射线衍射仪(XRD)来表征制造合金的相组合物和微观结构。此外,使用氢进化试验和电化学测量研究了降解性质。结果表明,Al含量与二次相的比例直接相关,例如Mg2Cu,Mg17aL12和Mgalcu。此外,Mg17Al12和Mgalcu相在α-mg晶界分布,而Mgalcu相分布在Mg基质内。由于Mg-Xal-2Cu中的微血醋腐蚀(重量%,命名为ACX2,x 0,3,5和9)合金,因此发现了降解速率的加速度。在这方面,Mg2Cu,Mg17Al12和Mgalcu阶段充当针对阳极氧化镁基质的微血糖阴极。因此,3.5%NaCl溶液中ACX2合金的降解速率从AC02,AC32,AC52,AC92排名。在这种情况下,AC02合金显示出最快的降解速率,比AC92合金高46倍。这可以提供一种实用的解决方案,可开发用于无钻孔堵漏材料的良好替代品。

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