Copper-magnesium alloy material
A technology of copper-magnesium alloy and excess, which is applied in the field of alloy materials, can solve the problems of low conductivity of ordinary copper alloy materials, and achieve the effect of excellent conductivity and high conductivity
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Embodiment 1
[0008] Take Mg as 29wt%, Ge as 0.12wt%, Sc as 0.38wt%, Be as 0.59wt%, Nd as 0.09wt%, and the balance as Cu. Put all the ingredients into an induction melting furnace for smelting, heat the temperature to 960°C, melt evenly and then hot-roll it into a copper-magnesium rod, then set the temperature at 650°C and keep it for 10 hours, and finally lower the temperature to room temperature to prepare copper Magnesium alloy material.
Embodiment 2
[0010] The preparation method is the same as in Example 1, and the components are composed of: Mg is 37wt%, Ge is 0.07wt%, Sc is 0.40wt%, Be is 0.57wt%, Nd is 0.05wt%, and the balance is Cu.
Embodiment 3
[0012] The preparation method is the same as in Example 1, and the components are composed of: Mg is 46wt%, Ge is 0.09wt%, Sc is 0.42wt%, Be is 0.55wt%, Nd is 0.07wt%, and the balance is Cu.
[0013] The electrical conductivity of the copper-magnesium alloy materials prepared in Example 1, Example 2, and Example 3 were 62%IACS, 65%IACS, and 68%IACS, respectively. It has very excellent conductive effect and can be widely used in the use of related products.
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