Rotary Combustion Engine Block Sealing
20230250722 ยท 2023-08-10
Inventors
Cpc classification
F01C1/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01C19/005
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01C19/08
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01C19/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F01C19/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A block sealing of a rotary combustion engine having a rotating block with radially located cylinders and pistons and an outside stationary case is disclosed. Transverse and/or lateral sealings located in the stationary case fit tight to an outer surface of the block. In circular grooves, a lateral sealing of radius sealing strips with springs situated between adjacent transverse sealing strips placed in transverse grooves is located. Couplings with notches and pressure springs are located in bores of the stationary case for inserting radius sealing strips and transverse sealing strips. The radius sealing strip is provided with a cut-out for interlocking of a stop connected with the stationary case. In the side of the radius sealing strip, a longitudinal groove in which a flexible sealing element and/or transverse sealing strip is made, and at its side, it is provided with a groove in which another flexible sealing element is located.
Claims
1. A rotary combustion engine block sealing consisting of a rotating block (11) having a rotary shape with radially located cylinders (12) with pistons (13) and an outside-located stationary case (10) with at least one intake port (14) and/or an exhaust port (15), wherein the outer surface (16) of the rotating block (11) is formed by a rotating surface with a straight or curved forming curve, on which a transverse and/or a lateral sealing are seated; the sealings are located in the stationary case (10), wherein in circular grooves (2), a lateral sealing consisting of radius sealing strips (1) with springs (9) placed between adjacent transverse sealing strips (3) is located; the transverse sealing strips are located in transverse grooves (4), and these transverse sealing strips (3) pass across circular grooves (2), wherein in the connections of radius sealing strips (1) with transverse sealing strips (3), couplings (5) provided with notches (7) for inserting radius sealing strips (1) and transverse sealing strips (3) are located; and couplings (5) are seated in bores (6) in the stationary case (10) and are provided with pressure springs (8) characterized in that the radius sealing strip (1) is provided with a cut-out (21) for interlocking of a stop (20) connected with the stationary case (10), and moreover, a longitudinal groove (23) is formed in the side of the radius sealing strip (1), and in the longitudinal groove a flexible sealing element (24) is present, and/or the transverse sealing strip (3) is provided with a groove (27) on its side, where another flexible sealing element (28) is located.
2. The rotary combustion engine block sealing according to claim 1 characterized in that the radius sealing strip (1) and the transverse sealing strip (3) are located in the notches (7) of the coupling (5), which on its side has an outer groove (29) in which a coupling flexible sealing element (30) is located and/or an internal groove (31) for another coupling flexible sealing element (32) is present in the notch (7).
3. The rotary combustion engine block sealing according to claim 1 characterized in that between transverse sealing strips (3) in the transverse groove (4), short radius strips (22) having a short longitudinal groove (25), where a short flexible sealing element (26) is located, are located.
4. The sealing according to claim 1 characterized in that the radius sealing strip (1) has a contact sealing seating surface (36), which is side-corrugated.
5. The sealing according to claim 1 characterized in that the flexible sealing elements (24), short flexible sealing elements (26), other flexible sealing elements (28), coupling flexible sealing elements (30) and other coupling flexible sealing elements (32) have O-shaped and/or X-shaped cross-sections.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0019] Rotary combustion engine block sealing according to example embodiments may be understood with reference to the enclosed drawings, wherein:
[0020]
[0021]
[0022]
[0023]
[0024]
[0025]
DETAILED DESCRIPTION
[0026] An example sealing of a rotary combustion engine block sealing according to
[0027] The radius sealing strips 1 have a cut-out 21 on their outer side, into which a stop 20 located in the stationary case 10 interlocks. The radius sealing strips 1 have a longitudinal groove 23 on their side, where a flexible sealing element 24 is located, and short radius strips 22 have a short longitudinal groove 25 on their side, where a short sealing element 26 is present, and the radius sealing strip 1 and the short radius strip 22 are located in circular grooves 2.
[0028] Pressure springs 8 and couplings 5 are located in bores 6. The couplings 5 have an outer groove 29 on their side, where a coupling flexible sealing element 30 is located, and an internal groove 31 for another coupling flexible sealing element 32 is made in the notch 7. In the transverse sealing strip 3, a groove 27 for the other flexible sealing elements 28 is provided on the side. The transverse sealing strips 3 are located in transverse grooves 4, and springs 9 are located in transverse grooves 4 and circular grooves 2. Between the spark plug 19 and the intake port 14 and the exhaust port 15, three transverse sealing strips 3 are located.
[0029] The embodiment of the rotary combustion engine block sealing according to
[0030] The embodiment of the rotary combustion engine block sealing according to
[0031] The operation of the rotary combustion engine block sealing is as follows. The radius sealing strips 1 and transverse sealing strips 3 are down-pressed to the outer surface 16 of the rotary block 11 by springs 9. The pressure springs 8 down-press the couplings 5 to the outer surface 16 of the rotary block 11. The gas blow-throughs in the circular groove 2 around the radius sealing strip 1 are prevented by the flexible sealing element 24 in the longitudinal groove 23.
[0032] Also in the transverse groove 4, the other flexible sealing element 28 in the groove 27 prevents the blow-throughs around the transverse sealing strip 3. The flexible sealing element 24 and the other flexible sealing element 28 are located on the sides of strips more distant from the area with a higher gas pressure. Then the gas penetrating into the longitudinal groove 24 and the groove 27 increases the down-pressure of the radius sealing strip 1 and the transverse sealing strip 3 to the outer surface 16 of the rotary block 11.
[0033] The radius sealing strip 1 is provided with a cut-out 21 which leans against the stop 20 in the stationary case 10. Into this groove 20, the resultant F of friction forces is transferred between the radius sealing strip 1 and the rotary block 11, and causes the reaction R with a low reaction moment Mr. Due to the stop 20, the friction forces are not transferred to the transverse sealing strip 3, and do not decrease its sealing properties and the sealing function of the radius strip 1.
[0034] The flexible sealing element 24 and the other flexible sealing element 28 interlock into the notches 7 in the coupling 5. This improves the tightness in these connections. The coupling 5 is provided with the outer groove 29 with the coupling flexible sealing element 30, which decreases the gas blow-through around the coupling 5. The coupling flexible sealing element 30 is at the side of the coupling 5 away from the place of higher pressure. It does not prevent the penetration of pressure under the coupling, but prevents the gas from escaping further into the lower pressure area. In the notch 7 of the coupling 5, an inner groove 31 with another coupling flexible sealing element 32 preventing the blow-through around the transverse sealing strip 3 passing through the coupling 5 is present.
[0035] The cross-section of flexible sealing elements can, for example, be circular or X-shaped. For better oil access between the radius sealing strip 1 and the outer surface 16 of the rotating block 11, it is preferred to use the contact sealing seating surface 36, which is side-corrugated.
INDUSTRIAL APPLICABILITY
[0036] The rotary combustion engine block sealing according to the disclosure can be used, for example, in aircraft engines, motor generators for the production of electricity, motorcycle engines and in other applications of rotary piston engines, where high performance with low weight and engine dimensions is of primary importance. The rotary piston engine can be used for combustion gaseous fuels, including combustion of hydrogen due to their favourable design with absence of particularly hot valves. If the consumption of lubrication oil can be minimized, it can be used in cars as well. For example, as a range extender in electric cars.