Tank for high pressure fluids
The present invention is a tank suitable to contain high pressure fluids, especially for compressed natural gas used for automotive purposes. The tank has a discoid shape to be easily placed on board of vehicles. The tank comprises a sealed internal core and an external coating made through a twisted coats fiber wrapping of composite material with a very high mechanical tensile resistance. According to some executive variants, the tank internally comprises a reinforcing structure made up of a plurality of elements welded in contact with the internal surface of the core.
1. A tank for high pressure fluids, said tank having an essentially discoid shape, and said tank including;
a sealed core ( 1 );
an external coating ( 2 ) to said core realized by a fiber wrapping of composite material with a very high mechanic tensile resistance, said core ( 1 ) being formed by two halves ( 11 , 12 ) opposite and mutually joined along a contact circumference ( 3 ), characterized in that said core ( 1 ) is connected to a reinforcing structure placed inside said core ( 1 ), said reinforcing structure being formed by a tube ( 9 ) provided with at least one hole ( 95 ) communicating with an interior of said tank and having an axis of said tube coinciding with a tank minor axis of symmetry, said tube being joined to a plug ( 10 ) with an essentially cylindrical shape, said plug ( 10 ) not protruding from a profile of said tank.
2. A tank according to claim 1 , characterized in that said plug ( 10 ) presents a threaded hole ( 102 ) housing a valve ( 103 ) for filling said tank with said high pressure fluid, said valve ( 103 ) not protruding from a profile of said plug ( 10 ).
3. A tank according to claim 1 , characterized in that said external coating ( 2 ) totally covers said core ( 1 ).
4. A tank according to claim 1 , characterized in that said wrapping forming said external coating ( 2 ) is made of carbon fiber stratified and soaked with resins suitable to give compactness and stability to said wrapping.
5. A tank according to claim 1 , characterized in that said tube ( 9 ) and said plug ( 10 ) are joined together by screwing.
6. A tank according to claim 2 , characterized in that said tube ( 9 ) and said plug ( 10 ) are joined together by screwing.
7. A tank according to claim 1 , characterized in that said tube ( 9 ) presents a bottom ( 91 ) with a flanged element ( 92 ) and in that said plug ( 10 ) presents a flanged upper part ( 101 ), said flanged element ( 92 ) and said flanged upper part ( 101 ) being welded to said core ( 1 ).
8. A tank according to claim 2 , characterized in that said tube ( 9 ) presents a bottom ( 91 ) with a flanged element ( 92 ) and in that said plug ( 10 ) presents a flanged upper part ( 101 ), said flanged element ( 92 ) and said flanged upper part ( 101 ) being welded to said core ( 1 ).
9. A tank according to claim 5 , characterized in that said tube ( 9 ) presents a bottom ( 91 ) with a flanged element ( 92 ) and in that said plug ( 10 ) presents a flanged upper part ( 101 ), said flanged element ( 92 ) and said flanged upper part ( 101 ) being welded to said core ( 1 ).
10. A tank according to claim 6 , characterized in that said tube ( 9 ) presents a bottom ( 91 ) with a flanged element ( 92 ) and in that said plug ( 10 ) presents a flanged upper part ( 101 ), said flanged element ( 92 ) and said flanged upper part ( 101 ) being welded to said core ( 1 ).
11. A tank according to any one of claim 1 , 2 , or 5 - 10 inclusive, further characterized in that the a section containing the two symmetry axis axes of said discoid shape has a substantially elliptic shape with said minor axis equal or shorter than half of the major axis.