Oxidation resistant metal composite material
A technology of metal composite materials and oxidation resistance, which is applied in the direction of metal layered products, chemical instruments and methods, layered products, etc., can solve the problems that cannot meet high strength and metal composite materials are not applicable, and achieve high strength, Anti-corrosion effect
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Embodiment 1
[0010] Embodiment 1: The present invention uses three layers of different metal materials for welding and fixing, and the three layers of different metal materials include a stainless steel base layer, a titanium alloy middle layer and a carbon fiber bottom layer. By setting the stainless steel base layer, it can prevent corrosion. By setting the carbon fiber base layer, the surface of the metal material can be more comprehensively resistant to oxidation. At the same time, setting the titanium alloy middle layer in the middle can play a better role in high strength.
[0011] The content of each component of stainless steel is: 31 parts of chromium, 2 parts of nickel, 10 parts of molybdenum, and 10 parts of titanium. The content of each component of the titanium alloy is: 42 parts of titanium, 10 parts of iron, 10 parts of aluminum, 10 parts of zinc, 1 part of copper, 2 parts of manganese and 6 parts of carbon. The content of each component of the carbon fiber is: 50 parts of c...
Embodiment 2
[0012] Embodiment 2: The present invention uses three layers of different metal materials for welding and fixing, and the three layers of different metal materials include a stainless steel base layer, a titanium alloy middle layer and a carbon fiber bottom layer. By setting the stainless steel base layer, it can prevent corrosion. By setting the carbon fiber base layer, the surface of the metal material can be more comprehensively resistant to oxidation. At the same time, setting the titanium alloy middle layer in the middle can play a better role in high strength.
[0013] The content of each component of stainless steel is: 40 parts of chromium, 8 parts of nickel, 15 parts of molybdenum and 15 parts of titanium. The content of each component of the titanium alloy is: 50 parts of titanium, 18 parts of iron, 18 parts of aluminum, 12 parts of zinc, 9 parts of copper, 8 parts of manganese and 8 parts of carbon. The content of each component of carbon fiber is: 60 parts of carbo...
Embodiment 3
[0014] Embodiment 3: The present invention uses three layers of different metal materials for welding and fixing, and the three layers of different metal materials include a stainless steel base layer, a titanium alloy middle layer and a carbon fiber bottom layer. By setting the stainless steel base layer, it can prevent corrosion. By setting the carbon fiber base layer, the surface of the metal material can be more comprehensively resistant to oxidation. At the same time, setting the titanium alloy middle layer in the middle can play a better role in high strength.
[0015] The content of each component of stainless steel is: 36 parts of chromium, 5 parts of nickel, 12 parts of molybdenum, and 12 parts of titanium. The content of each component of the titanium alloy is: 48 parts of titanium, 15 parts of iron, 10-18 parts of aluminum, 10-12 parts of zinc, 1-9 parts of copper, 2-8 parts of manganese and 6-8 parts of carbon. The content of each component of carbon fiber is: 55 p...
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