首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Effects of calcium addition on phase characteristics and corrosion behaviors of Mg-2Zn-0.2Mn-xCa in simulated body fluid
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Effects of calcium addition on phase characteristics and corrosion behaviors of Mg-2Zn-0.2Mn-xCa in simulated body fluid

机译:钙添加对模拟体液中Mg-2Zn-0.2Mn-XCA相位特性和腐蚀行为的影响

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AbstractThe effects of Ca addition on corrosion resistance of as-cast Mg-2Zn-0.2Mn-xCa alloys were evaluated by electrochemical measurements and immersion test at 37?°C in simulated body fluid (SBF). The phase characteristics and surface potentials were proven using scanning electron microscopy (SEM), transmission electron microscopy (TEM), electron probe micro-analyzer (EPMA) and atomic force microscope (AFM), whereas the corrosion products and protective film features were characterized using X-Ray diffraction (XRD) and confocal laser scanning microscopy (CLSM). The results reveal that the volume fraction of the second phases increased when the Ca concentration increased. Furthermore, these secondary phases with sizes of 50–100?nm were discretely distributed along the grain boundaries and matrix. However, the bio-corrosion resistance of investigated alloys initially increased and then decreased as Ca concentration increased. The electrochemical measurements also show that Mg-2Zn-0.2Mn-0.38Ca has the highest self-corrosion potential, the lowest current density and a dense corrosion film, and the Rctvalues were 105.7?Ω?cm2, 108.1?Ω?cm2, 65.5?Ω?cm2and 50.51?Ω?cm2. As a result, the corrosion rate is strongly associated with the volume fraction of phase, where the difference in potential at the α-Mg/phase interface forms a micro-galvanic effect and accelerates the dissolution of Mg substrate.Highlights?0.38–1.10 Ca concentration (wt%) is added in Mg-2Zn-0.2Mn alloys.?The potential between phases and matrix were measured by AFM, and 3D corrosion profile was measured by CLSM.?Preferentially corrosion areas at interface was observed by SEM during corrosion process.]]>
机译:<![CDATA [ 抽象 Ca添加上铸态Mg的2ZN-0.2Mn- X 的Ca合金是用电化学测量,并在37浸入试验评价°在模拟体液(SBF)C。的相位特性和表面电位用扫描电子显微镜(SEM),透射电子显微镜(TEM),电子探针显微分析仪(EPMA)和原子力显微镜(AFM)证实,而腐蚀产物和保护膜的功能,使用特征X射线衍射(XRD)和共聚焦激光扫描显微镜(CLSM)。结果表明,第二相的体积分数增大时Ca浓度上升。此外,具有50-100?纳米尺寸这些二次相沿晶界与基体被离散地分布。然而,研究合金的生物耐腐蚀性先上升后下降的Ca浓度的增加。电化学测试还表明,镁2ZN-0.2Mn-0.38Ca具有最高的自腐蚀电位,最低电流密度和致密腐蚀膜,并且将R CT 值分别为105.7Ω厘米 2 ,108.1Ω厘米 2 ?,65.5Ω厘米 2 <?/ CE:SUP>和50.51Ω厘米 2 。其结果,腐蚀速度是强烈的相的体积分数,其中在α的Mg /相界面的电势差形成的微电偶作用并加速镁基底的溶解相关联的 亮点 <?CE:对ID = “P0010” 视图= “所有”> 0.38-1.10钙浓度(重量%)中加入在镁2ZN-0.2Mn合金 <?CE:对ID =“P0015”视图=“所有”>相和基质之间的电势分别通过AFM测量,和3D腐蚀曲线通过CLSM测量 在界面优选地腐蚀区域,用SEM观察在腐蚀过程 ]]>

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