Aircraft element requiring an anti-frost treatment
The present disclosure provides an aircraft element including a leading edge section and a trailing edge section, and the leading edge section includes an anti-frost treatment device. This aircraft element is remarkable in that the trailing edge section includes a superhydrophobic surface.
1. An aircraft nacelle comprising:
a leading edge section including an air inlet lip that receives an anti-frost treatment device; and
a trailing edge section downstream of the leading edge section,
wherein the trailing edge section comprises at least one superhydrophobic surface that complements the anti-frost treatment device to reduce energy consumption of the anti-frost treatment device.
2. The aircraft nacelle according to claim 1 , wherein the trailing edge section comprises a mid-section comprising an inner surface and an outer surface radially distant from said inner surface, said inner surface comprising at least one superhydrophobic surface.
3. The aircraft nacelle according to claim 2 , wherein the outer surface further comprises said at least one superhydrophobic surface.
4. The aircraft nacelle according to claim 2 , wherein the air inlet lip comprises at least one superhydrophobic surface.
5. The aircraft nacelle according to claim 4 , wherein said at least one superhydrophobic surface of the air inlet lip is obtained through a chemical reaction between a fatty acid and said at least one superhydrophobic surface of the air inlet lip.
6. The aircraft nacelle according to claim 1 , wherein said at least one superhydrophobic surface is obtained through a surface treatment method.
7. The aircraft nacelle according to claim 6 , wherein said surface treatment method comprises pulverizing an organometallic complex.