A high-strength antibacterial aluminum alloy for aluminum alloy ladders and its preparation method
An aluminum alloy, high-strength technology, applied in the direction of coating, surface reaction electrolytic coating, electrolytic coating, etc., can solve the problems of unfavorable human health and the growth of bacteria on the surface of aluminum alloy, so as to achieve good effect of isolating air and sealing holes High speed and improved corrosion resistance
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Embodiment 1
[0033] The weight percent of the raw material component that the high-strength antibacterial aluminum alloy of the present embodiment uses is as follows:
[0034] Zinc 4.5%, magnesium 1.8%, copper 1.05%, zirconium 0.13%, iron 0.13%, silicon 0.14%, chromium 0.07%, manganese 0.08%, boron 0.75%, nickel 0.56%, compound rare earth 0.8%, the balance is aluminum, The compound rare earth contains 15% of cerium, 14% of neodymium, 10% of samarium, 10% of praseodymium, and the balance is lanthanum.
[0035] The preparation method of the high-strength antibacterial aluminum alloy of the present embodiment is as follows:
[0036] Step 1, metal smelting: remove the rust, scale, grease, sand and other dirt and debris on the surface of each metal raw material, then dry it, weigh the ingredients according to the above ingredient ratio, and add aluminum to the vacuum furnace after the ingredients are completed. And raise the temperature to 735°C until the aluminum is completely melted, then ad...
Embodiment 2
[0052] The weight percent of the raw material component that the high-strength antibacterial aluminum alloy of the present embodiment uses is as follows:
[0053] Zinc 6.5%, magnesium 0.8%, copper 1.75%, zirconium 0.05%, iron 0.19%, silicon 0.05%, chromium 0.10%, manganese 0.03%, boron 0.36%, nickel 0.13%, complex rare earth 1.8%, the balance is aluminum, Among them, the composite rare earth contains 19% of cerium, 10% of neodymium, 6% of samarium, 14% of praseodymium, and the balance is lanthanum.
[0054] The preparation method of the high-strength antibacterial aluminum alloy of the present embodiment is as follows:
[0055] Step 1, metal smelting: remove the rust, scale, grease, sand and other dirt and debris on the surface of each metal raw material, then dry it, weigh the ingredients according to the above ingredient ratio, and add aluminum to the vacuum furnace after the ingredients are completed. And raise the temperature to 735°C until the aluminum is completely melt...
Embodiment 3
[0070] The weight percent of the raw material component that the high-strength antibacterial aluminum alloy of the present embodiment uses is as follows:
[0071] Zinc 5.2%, magnesium 1.2%, copper 1.38%, zirconium 0.09%, iron 0.15%, silicon 0.08%, chromium 0.08%, manganese 0.04%, boron 0.52%, nickel 0.41%, compound rare earth 1.1%, the balance is aluminum, The compound rare earth contains 18% of cerium, 12% of neodymium, 8% of samarium, 12% of praseodymium, and the balance is lanthanum.
[0072] The preparation method of the high-strength antibacterial aluminum alloy of the present embodiment is as follows:
[0073] Step 1, metal smelting: remove the rust, scale, grease, sand and other dirt and debris on the surface of each metal raw material, then dry it, weigh the ingredients according to the above ingredient ratio, and add aluminum to the vacuum furnace after the ingredients are completed. And raise the temperature to 735°C until the aluminum is completely melted, then add...
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