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Discharge properties of ECAP processed AZ31-Ca alloys as anodes for seawater-activated battery

机译:ECAP加工AZ31-CA合金作为海水激活电池的阳极放电性能

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The effects of Ca addition and equal channel angular pressing (ECAP) on the microstructure evolution and discharge properties of AZ31-1.0Ca alloy were investigated to develop high-performance anodes for seawater-activated battery. Microscopic observations show that the net-like (Mg, Al)2Ca phase replaces the Mg17Al12phase and distributes along grain boundaries in AZ31-1.0Ca alloy. 12-pass ECAP effectively refines the grains and crushes the (Mg, Al)2Ca phase into fine particles. The discharge measurements reveal that the 12-pass ECAP processed AZ31-1.0Ca anode exhibits desirable discharge properties with the largest power density of 88.1?mW?cm?2and the highest anodic efficiency of 63.3% at 100?mA?cm?2, which are 25.0% and 13.6% higher than that of AZ31 anode, respectively. The enhanced discharge performances can be attributed to the modified microstructure with refined grains, fragmented and dynamically precipitated (Mg, Al)2Ca particles.
机译:Ca加成和等沟角压(ECAP)对AZ31-1.0CA合金的微观结构演化和放电性能的影响,为海水激活电池进行高性能阳极。显微镜观察表明,网状(Mg,Al)2CA相取代了Mg17Al12phase并沿AZ31-1.0CA合金的晶界分布。 12-PASS ECAP有效地改进晶粒并将(Mg,Al)2CA相挤入细颗粒中。放电测量揭示了12-PASS ECAP加工AZ31-1.0CA阳极表现出所需的放电性能,最大功率密度为88.1ΩmwΩ·厘米Δ20,在100≤ma≤cm≤2时的最高阳极效率为63.3%。分别比AZ31阳极高出25.0%和13.6%。增强的放电性能可以归因于改进的微观结构,其具有精制晶粒,碎裂和动态沉淀(Mg,Al)2Ca颗粒。

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