Magnesium alloy with wear-resisting and damping performance and manufacturing method thereof
A shock-absorbing performance and magnesium alloy technology, which is applied in the field of functional metal alloy materials, can solve the problems of low wear resistance and improved shock-absorbing effect of ordinary magnesium alloys, and achieve improved wear-resistant and shock-absorbing effects, low cost, and high production efficiency. The effect of simple process
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Embodiment 1
[0016] Choose this alloy material chemical composition weight percentage content aluminum to be 6%, strontium to be 2.5%, tin to be 2%, iron to be 1.5%, titanium to be 0.01%, copper to be 0.5%, carbon to be 0.03%, dysprosium and lanthanum to be 1.5%, yttrium is 1.2%, and the rest is magnesium and a small amount of unavoidable impurities. The production method is the same in this embodiment and the following embodiments.
Embodiment 2
[0018] Choose this alloy material chemical composition weight percentage content aluminum to be 8%, strontium to be 3%, tin to be 3%, iron to be 1.6%, titanium to be 0.03%, copper to be 0.8%, carbon to be 0.05%, dysprosium and lanthanum to be 1.6%, yttrium is 1.5%, and the rest is magnesium and a small amount of unavoidable impurities.
Embodiment 3
[0020] Choose this alloy material chemical composition weight percent content aluminum to be 7%, strontium to be 2.8%, tin to be 2.5%, iron to be 1.8%, titanium to be 0.015%, copper to be 0.55%, carbon to be 0.09%, dysprosium and lanthanum to be 1.8%, yttrium is 1.4%, and the rest is magnesium and a small amount of unavoidable impurities.
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