The invention claimed is:
1. A process for manufacturing an exchanger for an air-conditioning circuit of a vehicle,
forming the exchanger with a surface in contact with at least one of a first fluid and a second fluid,
said surface being formed from at least one selected from a group consisting of aluminum and aluminum alloy,
wherein said surface is coated with an alumina layer and a coating,
wherein said coating comprises:
an organic substance comprising at least one polymer; and
a mineral substance capable of reacting with the aluminum to form an anticorrosion material, and
wherein said mineral substance capable of reacting with the aluminum allows for regeneration of the alumina layer coated on said surface.
2. The process as claimed in claim 1 , wherein said coating is dried.
3. The process as claimed in claim 1 , wherein the pH of said coating is chosen from between 1.5 and 5.
4. The process as claimed in claim 1 , wherein the coating comprises a reduced portion of fluoride of less than 1000 ppm.
5. The process as claimed in claim 1 , wherein said coating is applied so that the amount of coating applied to the outer surface of said exchanger is between 15 and 20 ml/m2.
6. The process as claimed in claim 1 , wherein the heat exchanger is an evaporator.
7. A process for manufacturing an exchanger for an air-conditioning circuit of a vehicle, said heat exchanger enabling heat exchange between a first fluid and a second fluid, the process comprising:
forming the exchanger with a first surface in contact with said first fluid and being formed from at least one selected from a group consisting of aluminum and-aluminum alloy; and
further forming the exchanger with a second surface in contact with said second fluid and being formed from at least one selected from a group consisting of aluminum and aluminum alloy,
wherein said first surface and said second surface are opposite surfaces of a face in the heat exchanger and are coated with an alumina layer and a reinforcing layer,
wherein said reinforcing layer comprises a mineral substance capable of regeneration of said alumina layer, and
wherein a first portion of said reinforcing layer covering the first surface having a thickness greater than the thickness of a second portion of said reinforcing layer covering the second surface.
8. A process for manufacturing an exchanger for an air-conditioning circuit of a vehicle, said heat exchanger enabling heat exchange between a refrigerant and an external air flow, the process comprising:
forming the exchanger with a first surface in contact with said external air flow and being formed from at least one selected from a group consisting of aluminum and aluminum alloy; and
further forming the exchanger with a second surface in contact with said refrigerant and being formed from at least one selected from a group consisting of aluminum and aluminum alloy,
wherein said first surface and said second surface are coated with an alumina layer and a reinforcing layer,
wherein said reinforcing layer comprises a mineral substance capable of regeneration of said alumina layer, and
wherein a first portion of said reinforcing layer covering the first surface in contact with said external air flow having a thickness greater than the thickness of a second portion of said reinforcing layer covering the second surface in contact with said refrigerant.