A kind of preparation method of aluminum-air battery anode material
A technology for aluminum-air batteries and anode materials, applied in battery electrodes, circuits, manufacturing tools, etc., can solve the problems of low utilization rate of anode materials, segregation of Sn elements, etc., to improve electrochemical activity, improve corrosion resistance, and improve utilization rate effect
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Embodiment 1
[0021] A method for preparing an aluminum-air battery anode material, comprising the following process steps:
[0022] (1) The chemical composition of the aluminum-air battery anode blank is: Mg: 0.40%, Ga: 0.020%, Sn: 0.04%, Bi: 0.02%, Zn: 0.5%, and the rest is Al. Mg, Ga, Bi, Zn and Al are added in the form of pure substances, Sn is added in the form of Al-50Sn master alloy, the burning loss of Mg is calculated as 5%, the purity of the above metals is required to be above 99.99%, and the impurity content is less than 0.01%;
[0023] (2) Put the aluminum block into the graphite crucible and heat it with an intermediate frequency furnace. When the temperature rises to 650°C, add Al-Sn, Ga, Bi and Zn metals, and stir slowly evenly. When the temperature rises to 710°C, add Mg, argon inert gas is slowly introduced into the melt, the slag is removed at 710°C for 5 minutes, cast in a water-cooled copper mold, and naturally cooled to room temperature. The materials used for stirring...
Embodiment 2
[0029] A method for preparing an aluminum-air battery anode material, comprising the following process steps:
[0030] (1) The chemical composition of the aluminum-air battery anode blank is: Mg: 0.45%, Ga: 0.030%, Sn: 0.04%, Bi: 0.05%, Zn: 0.8%, and the rest is Al. Mg, Ga, Bi, Zn and Al are added in the form of pure substances, Sn is added in the form of Al-50Sn master alloy, the burning loss of Mg is calculated as 5%, the purity of the above metals is required to be above 99.99%, and the impurity content is less than 0.01%;
[0031] (2) Put the aluminum block into the graphite crucible and heat it with an intermediate frequency furnace. When the temperature rises to 650°C, add Al-Sn, Ga, Bi and Zn metals, and stir slowly evenly. When the temperature rises to 710°C, add Mg, slowly inject argon inert gas into the melt, heat at 720°C for 5 minutes to remove slag, cast in a water-cooled copper mold, and naturally cool to room temperature. The materials used for stirring and slag...
Embodiment 3
[0037] A method for preparing an aluminum-air battery anode material, comprising the following process steps:
[0038] (1) The chemical composition of the aluminum-air battery anode blank is: Mg: 0.8%, Ga: 0.01%, Sn: 0.03%, Bi: 0.1%, Zn: 0.1%, and the rest is Al. Mg, Ga, Bi, Zn and Al are added in the form of pure substances, Sn is added in the form of Al-50Sn master alloy, the burning loss of Mg is calculated as 5%, the purity of the above metals is required to be above 99.99%, and the impurity content is less than 0.01%;
[0039] (2) Put the aluminum block into the graphite crucible and heat it with an intermediate frequency furnace. When the temperature rises to 650°C, add Al-Sn, Ga, Bi and Zn metals, and stir slowly evenly. When the temperature rises to 710°C, add Mg, argon inert gas is slowly introduced into the melt, the slag is removed at 710°C for 5 minutes, cast in a water-cooled copper mold, and naturally cooled to room temperature. The materials used for stirring and ...
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