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Influence of solid-solution treatment on microstructure, mechanical property and corrosion behavior of biodegradable Mg-Zn-Ca alloy

机译:固溶处理对生物降解的Mg-Zn-Ca合金微观结构,力学性能和腐蚀行为的影响

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The influence of solid-solution treatment on microstructure, mechanical property and corrosion behavior of Mg-Zn-Ca alloy was studied in the present investigation by SEM, tensile test, electrochemical and immersion test. The results show that the microstructure of Mg alloys after solid solution treatment significantly changed, a large number of the second phase (Ca2Mg6Zn3, Mg2Ca) dissolved into the α-Mg matrix reaching a supersaturated state, and the grains size was bigger than before solid solution treatment; the mechanical properties were obviously improved. In particular the tensile strength of 0.5wt.% Ca of Mg alloy reached 220MPa and the ductility reached 16.6%. Compared with the as-cast Mg alloys, the corrosion potential after solid-solution treatment slightly shifted negative, but the corrosion current density significantly decreased. After solid solution treatment, the surface corrosion was not serious and the result of weight gain was lower compared with those of the as-cast Mg alloys.
机译:上组织,力学性能和Mg-Zn基合金的Ca的腐蚀行为固溶处理的影响在由SEM,拉伸试验,电化学和浸渍试验本研究进行了研究。结果表明,镁合金的微观结构后固溶化处理显著改变,大量的第二相(Ca2Mg6Zn3,Mg2Ca)溶解到α-Mg基体达到过饱和状态,且晶粒大小比之前固溶更大治疗;的机械性能得到明显改善。在0.5重量的特定的抗张强度。%的Mg合金的钙达到220MPa,延展性达到16.6%。与铸态Mg系合金相比,固溶处理后的腐蚀电位稍微偏移负,但腐蚀电流密度显著降低。固溶处理后,对表面腐蚀并不严重和体重增加的结果与那些铸态Mg系合金的较低比较。

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