Carbon nanotube toughened connection layer and method between inorganic composite material and nickel-based superalloy material
An inorganic composite material, nickel-based superalloy technology, applied in the direction of carbon nanotubes, nanocarbons, metal layered products, etc., can solve the problems of mismatching, lack of thermal expansion coefficient, cracks and faults in the connecting layer, etc., to achieve enhanced The effect of bonding strength, improving interfacial bonding force, and significant economic and social benefits
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Embodiment 1
[0022] 1) Polish and clean the surfaces of the inorganic composite material and the nickel-based superalloy, and dry them in an oven for later use.
[0023] 2) In-situ growth of carbon nanotubes on the surface of the composite material to form a porous nanotube layer, the specific steps are as follows: place the C / C composite material sample in a quartz tube, and raise the temperature to 780 °C under an Ar gas atmosphere. Dissolve ferrocene in a mixed solution of ethylenediamine and ethanol at a concentration of 0.01g / mL, and inject it into the quartz tube at a rate of 10ml / h after ultrasonic homogenization. During the injection, the flow rate of Ar was adjusted to 1000 sccm, the growth time was 10 min, and then cooled to room temperature with the furnace to obtain the C / C composite material with in-situ growth of carbon nanotubes on the surface.
[0024] 3) Stack the C / C composite material, intermediate layer and nickel-based superalloy in the order of C / C composite material / ...
Embodiment 2
[0026] 1) Polish and clean the surfaces of the inorganic composite material and the nickel-based superalloy, and dry them in an oven for later use.
[0027] 2) In-situ growth of carbon nanotubes on the surface of the composite material to form a porous nanotube layer, the specific steps are as follows: place the C / C composite material sample in a quartz tube, and raise the temperature to 800 °C under an Ar gas atmosphere. Dissolve ferrocene in a mixed solution of ethylenediamine and ethanol at a concentration of 0.02g / mL, and inject it into the quartz tube at a rate of 10ml / h after ultrasonic homogenization. During the injection, the Ar flow rate was adjusted to 1000 sccm, the growth time was 15 min, and then cooled to room temperature with the furnace to obtain a C / C composite material with in-situ growth of carbon nanotubes on the surface.
[0028] 3) Stack the C / C composite material, intermediate layer and nickel-based superalloy in the order of C / C composite material / Ti(30...
Embodiment 3
[0030] 1) Polish and clean the surfaces of the inorganic composite material and the nickel-based superalloy, and dry them in an oven for later use.
[0031]2) In-situ growth of carbon nanotubes on the surface of the composite material to form a porous nanolayer, the specific steps are as follows: place the C / C composite material sample in a quartz tube, and raise the temperature to 850 °C under an Ar gas atmosphere. Dissolve ferrocene in a mixed solution of ethylenediamine and ethanol at a concentration of 0.03g / mL, and inject it into the quartz tube at a rate of 10ml / h after ultrasonication. During the injection, the Ar flow rate was adjusted to 1000 sccm, the growth time was 20 min, and then cooled to room temperature with the furnace to obtain a C / C composite material with in-situ growth of carbon nanotubes on the surface.
[0032] 3) Stack the C / C composite material, intermediate layer and nickel-based superalloy in the order of C / C composite material / Ti(30μm) / Ni(30μm) / Cu(...
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