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Mechanical and Corrosion Properties of Mg-Based Alloys with Gd Addition

机译:掺Gd的镁基合金的力学性能和腐蚀性能

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摘要

Magnesium alloys with rare earth metals are very attractive materials for medical application because of satisfactory mechanical properties. Nevertheless, low corrosion resistance is an obstacle in the use of Mg alloys as resorbable orthopedic implants. The paper presents results of mechanical and corrosion properties of MgCa5-xZn1Gdx (x = 1, 2, and 3 wt. %) alloys. Based on the microscopic observations it was stated that the studied alloys show a dendritic microstructure with interdendritic solute rich regions. The phase analysis reveals an occurrence of α-Mg and Mg2Ca, Ca2Mg6Zn3 phases that are thermodynamic predictions, and stated Mg26Zn59Gd7 phases in MgCa5-xZn1Gdx (x = 1, 2, and 3 wt. %) alloys. The Mg26Zn59Gd7 phases are visible as lamellar precipitations along interdendritic regions. It was confirmed that an increase of Gd content from 1 to 3 wt. % improves ultimate tensile (Rm; from 74 to 89 MPa) and compressive strength (Rc; from 184 to 221 MPa). Moreover, the studied alloys are active in Ringer’s solution. They are characterized by an increase of corrosion potential (Ecorr) of about 150 mV in comparison with values of open circuit potential (EOCP). The best electrochemical parameters (e.g., corrosion current density, icorr, polarization resistance, Rp, and Ecorr) were obtained for the MgCa3Zn1Gd2 alloy.
机译:具有令人满意的机械性能,具有稀土金属的镁合金对于医学应用是非常有吸引力的材料。然而,低耐腐蚀性是将镁合金用作可吸收的整形外科植入物的障碍。本文介绍了MgCa5-xZn1Gdx(x = 1、2和3 wt。%)合金的力学性能和腐蚀性能的结果。基于微观观察结果,表明所研究的合金显示出具有树枝状间溶质富集区域的树枝状微结构。相分析揭示了热力学预测的α-Mg和Mg2Ca,Ca2Mg6Zn3相的发生,并指出了MgCa5-xZn1Gdx(x = 1、2和3 wt。%)合金中的Mg26Zn59Gd7相。 Mg26Zn59Gd7相沿树突间区域可见为片状沉淀。证实了Gd含量从1重量%增加到3重量%。 %提高极限拉伸强度(Rm;从74至89MPa)和抗压强度(Rc;从184至221MPa)。此外,研究的合金在林格氏溶液中具有活性。与开路电势(EOCP)值相比,它们的特点是腐蚀电势(Ecorr)增加了约150 mV。 MgCa3Zn1Gd2合金具有最佳的电化学参数(例如,腐蚀电流密度,icorr,极化电阻,Rp和E corr )。

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