Microwave-absorbing wind power blade coating as well as preparation method and application thereof
A technology of wind blades and microwave materials, applied in coatings and other directions, can solve problems affecting power generation, blade icing, and low microwave utilization, and achieve the effect of reducing radar reflection and reducing radar reflection
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Embodiment 1
[0016] A microwave-absorbing wind blade coating and its application method on wind power blades (parts by weight):
[0017] (1) Mechanically mix 99 parts of traditional blade coatings with 1 part of carbon-based microwave-absorbing materials such as graphene and carbon nanotubes, grind them and pack them.
[0018] (2) Apply the finished paint in a conventional manner on blades equipped with built-in microwave generators to achieve deicing and anti-icing effects, or apply it on ordinary blades to achieve radar stealth effects.
Embodiment 2
[0020] A microwave-absorbing wind blade coating and its application method on wind power blades (parts by weight):
[0021] (1) Mechanically mix 95 parts of traditional blade coatings with 5 parts of carbon-based microwave-absorbing materials such as graphene and carbon nanotubes, grind them and pack them.
[0022] (2) Apply the finished paint in a conventional manner on blades equipped with built-in microwave generators to achieve deicing and anti-icing effects, or apply it on ordinary blades to achieve radar stealth effects.
Embodiment 3
[0024] A microwave-absorbing wind blade coating and its application method on wind power blades (parts by weight):
[0025] (1) Mechanically mix 90 parts of traditional blade coatings with 10 parts of carbon-based microwave-absorbing materials such as graphene and carbon nanotubes, grind them and pack them.
[0026] (2) Apply the finished paint in a conventional manner on blades equipped with built-in microwave generators to achieve deicing and anti-icing effects, or apply it on ordinary blades to achieve radar stealth effects.
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