Corrosion resistant magnesium alloy material for unmanned aerial vehicle
A corrosion-resistant, magnesium alloy technology, applied in the field of corrosion-resistant magnesium alloy materials for drones, can solve problems such as poor corrosion resistance and complex flying environment of drones, and achieve good corrosion resistance, improved safety and Stealth and the effect of reducing the weight of the fuselage
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Embodiment 1
[0010] A corrosion-resistant magnesium alloy material for drones, comprising the following components prepared by weight: 45-65 parts of magnesium, 10-30 parts of aluminum, 2-7 parts of manganese, and 12-18 parts of nickel-silicon alloy , 1-3 parts of strontium, 0.5-1.5 parts of zinc, 0.005-0.2 parts of scandium, 0.02-1.5 parts of cobalt, 1.5-5 parts of tin, 1.5-2.5 parts of bismuth, 0.01-0.5 parts of cadmium, 0.01-0.8 parts of phosphorus, all In the above-mentioned nickel-silicon alloy, the content ratio of nickel and silicon is 2:3.
Embodiment 2
[0012] A corrosion-resistant magnesium alloy material for drones, comprising the following components prepared by weight: 55 parts of magnesium, 26 parts of aluminum, 5 parts of manganese, 14 parts of nickel-silicon alloy, 1 part of strontium, and 1 part of zinc , 0.1 part of scandium, 0.3 part of cobalt, 5 parts of tin, 2 parts of bismuth, 0.1 part of cadmium, and 0.2 part of phosphorus. In the nickel-silicon alloy, the content ratio of nickel and silicon is 2:3.
[0013] This kind of corrosion-resistant magnesium alloy material for drones has low alloy density, good specific performance, good shock absorption performance, good corrosion resistance, light weight, good rigidity, certain corrosion resistance and stability, and impact resistance. It can reduce the weight by 25%-30% when applied to the structure of the UAV, and directly applied to the structure of the UAV plays an important role in reducing the weight of the fuselage, increasing the payload, improving safety and s...
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