Filtering device, filtering element and maintenance process of a filtering device
The present invention belongs to the technical sector of fluid filtration systems which can be used for air filtration in an internal combustion engine. The invention refers to a filtering device ( 1 ) including a filtering element ( 24 ) which presents an open axial end ( 26 ) and an axial end ( 27 ) closed by a cover ( 28 ); and an intake cover ( 7 ). The said cover ( 28 ) includes at least a first tubular boss ( 55 ) projecting towards the intake cover ( 7 ); and the intake cover ( 7 ) includes at least a second tubular boss ( 57 ) complementary to the first tubular boss ( 55 ) and projecting towards the cover ( 28 ); the first tubular boss ( 55 ) is slotted in the second tubular boss ( 57 ). The invention also refers to a tubular filtering element ( 24 ) and to a maintenance process of a filtering device.
1. A filtering device ( 1 ), comprising:
a housing body ( 6 ) which encloses a cavity within the housing body, the housing body including
a filtered air outlet ( 8 );
a tubular filtering element ( 24 ) installed within the cavity and having
an open axial end ( 26 ) arranged at and in flow communication with the filtered air outlet ( 8 ); and
an axial end ( 27 ) closed by a cover ( 28 ); and
an intake cover ( 7 ) which closes the cavity opposite the filtered air outlet ( 8 );
wherein the cover ( 28 ) includes
at least a first tubular boss ( 55 ) projecting towards the intake cover ( 7 ); and
at least a second tubular boss ( 57 ) complementary to the first tubular boss ( 55 ) and projecting towards the cover ( 28 );
wherein the first tubular boss ( 55 ) being slotted in the second tubular boss ( 57 );
wherein the second tubular boss ( 57 ) includes
a bracket ( 58 ) arranged lying against the cover ( 28 ) such that the cover ( 28 ) and the intake cover ( 7 ) are held spaced apart from each other;
wherein the first tubular boss ( 55 ) has a cavity ( 68 ) arranged along an axis of the first tubular boss;
wherein the central bracket ( 58 ) includes an exhaust hole ( 69 ).
2. The filtering device ( 1 ) according to claim 1 ,
wherein the bracket ( 58 ) is a central bracket ( 58 ) arranged on the axis of the second cylindrical boss ( 57 );
wherein the central bracket central ( 58 ) is inserted into the cavity ( 68 ) of the first tubular boss.
3. The filtering device ( 1 ) according to claim 1 , wherein
the first tubular boss ( 55 ) presents a beveled end ( 56 ) on its edge.
4. The filtering device ( 1 ) according to claim 3 , wherein
the beveled end ( 56 ) is compressed at the bottom of the second tubular boss ( 57 ).
5. The filtering device ( 1 ) according to claim 4 , wherein
a distance between the cover ( 28 ) and the beveled end ( 56 ) is greater than a second distance between the bracket ( 58 ) and the bottom of the second tubular boss ( 57 ).
6. The filtering device ( 1 ) according to claim 1 , wherein
the first tubular boss ( 55 ) and the second tubular boss ( 57 ) are round in section.
7. The filtering device ( 1 ) according to claim 1 , wherein
the cover ( 28 ) includes two first tubular bosses ( 55 ); and
the intake cover ( 7 ) includes two second tubular bosses ( 57 ).
8. A filtering device ( 1 ), comprising:
a housing body ( 6 ) which encloses a cavity within the housing body, the housing body including
a filtered air outlet ( 8 );
a tubular filtering element ( 24 ) installed within the cavity and having
an open axial end ( 26 ) arranged at and in flow communication with the filtered air outlet ( 8 ); and
an axial end ( 27 ) closed by a cover ( 28 ); and
an intake cover ( 7 ) which closes the cavity opposite the filtered air outlet ( 8 );
wherein the cover ( 28 ) includes
at least a first tubular boss ( 55 ) projecting towards the intake cover ( 7 ); and
at least a second tubular boss ( 57 ) complementary to the first tubular boss ( 55 ) and projecting towards the cover ( 28 );
wherein the first tubular boss ( 55 ) being slotted in the second tubular boss ( 57 );
wherein the intake cover ( 7 ) includes a cyclone pre-cleaner.
9. A tubular filtering element ( 24 ) having
an axis extending through an interior of the filter element;
an open axial end ( 26 ) opening into the interior;
an opposite axial end ( 27 ) closed by a cover ( 28 );
wherein the cover ( 28 ) includes
at least a first tubular boss ( 55 ) projecting perpendicularly to the cover ( 28 );
slide members ( 73 ) arranged on opposite circumferential edges of the cover ( 28 ), the slide members ( 73 ) projecting radially outwards away from a circumferential outer edges of the cover ( 28 ), wherein each slide member ( 73 ) comprises:
a first rounded bulge projection ( 73 A), formed on a first end of the slide member ( 73 ) and projecting radially outwardly away from the circumferential outer edges of the cover ( 28 );
a second rounded bulge projection, formed on an opposite second end of the slide member ( 73 ) and projecting radially outwardly away from the circumferential outer edges of the cover ( 28 ); and
an indented depression ( 73 C) formed in the slide member ( 73 ) between the first rounded bulge projection ( 73 A) and the second rounded bulge projection ( 73 B), the indented depression ( 73 C) configured to receive and slide on a rail ( 74 ) provided on an interior side of a housing body ( 6 ) that is adapted to receive the tubular filtering element ( 24 ).
10. The tubular filtering element ( 24 ) according to claim 9 , wherein
the tubular boss ( 55 ) has a cavity ( 68 ) extending on an axis of the tubular boss.
11. The tubular filtering element ( 24 ) according to claim 10 , wherein
the first tubular boss ( 55 ) presents a beveled end ( 56 ) on its edge.
12. The tubular filtering element ( 24 ) according to claim 9 , wherein
the tubular filter element includes two of the said first tubular bosses ( 55 ).
13. The tubular filtering element ( 24 ) according to claim 9 , wherein
the cover ( 28 ) includes two slides ( 73 ).
14. A method of maintaining a filtering device ( 1 ), comprising
a housing body ( 6 ) which encloses a cavity within the housing body, the housing body including
a filtered air outlet ( 8 );
a tubular filtering element ( 24 ) installed within the cavity and having
an open axial end ( 26 ) arranged at and in flow communication with the filtered air outlet ( 8 ); and
an axial end ( 27 ) closed by a cover ( 28 ); and
an intake cover ( 7 ) which closes the cavity opposite the filtered air outlet ( 8 );
wherein the cover ( 28 ) includes
at least a first tubular boss ( 55 ) projecting towards the intake cover ( 7 ); and
at least a second tubular boss ( 57 ) complementary to the first tubular boss ( 55 ) and projecting towards the cover ( 28 );
wherein the first tubular boss ( 55 ) being slotted in the second tubular boss ( 57 );
wherein the second tubular boss ( 57 ) includes
a bracket ( 58 ) arranged lying against the cover ( 28 ) such that the cover ( 28 ) and the intake cover ( 7 ) are held spaced apart from each other;
wherein the first tubular boss ( 55 ) has a cavity ( 68 ) arranged along an axis of the first tubular boss; and
wherein the central bracket ( 58 ) includes an exhaust hole ( 69 );
wherein the method comprises the steps:
opening the intake cover ( 7 );
withdrawing the tubular filtering element ( 24 ) from the housing body;
inserting a new tubular filter element into the cavity inside the housing body ( 6 );
closing the intake cover ( 7 ) so that the first tubular boss ( 55 ) of the cover ( 28 ) is slotted into the second tubular boss ( 57 ) of the intake cover ( 7 ) with the bracket ( 58 ) arranged lying against the cover ( 28 ) such that the cover ( 28 ) and the intake cover ( 7 ) are held spaced apart from each other.