This invention relates to embodiment of a cylinder head of internal combustion engine equipped with lifting valve, the plate of which is in the shape of ring and which has sealing surface on its inner and outer circumference. The valve in closed position sits down by this inner and outer seating face onto inner and outer valve seat placed in cylinder head.
Many embodiment of cylinder head with ring-shaped valve or valves has been designed. Most of them deal with the principle of cylinder charge exchange with four-stroke or two-stroke cycle with use of ring-shaped valve. They don't deal with construction details of valve sealing usually. In some cases the sealing surfaces of inner and outer valve seat are placed on one plane or cone surface in order to be able to easily precisely machine these surfaces in one operation and ensure so tightness of the ring-shaped valve. These solutions are described e. g. in files U.S. Pat. No. 2,222,730, U.S. Pat. No. 2,222,731, DE 3438847 A1, U.S. Pat. No. 5,673,656. Tightness of ring-shaped valve in both valve seats is however problem not only from point of view of precise machining of valve seats and valves, but even problem of thermal and mechanical deformations. It could be deformation of cylinder head, both of valve seats and finally ring-shaped valve too. Further problem for tightness of ring-shaped valve is unequal wear of seating faces of outer and inner seat and valve. The question is the design of seats and cylinder head with respect to their installation into the cylinder head, adjustment and repairs.
The above deficiencies are to a considerable extent removed by internal combustion engine with ring-shaped valve comprising body and rigid centre of the cylinder head and ring-shaped valve with outer seating face and inner seating face, which in its closed position sits down into outer valve seat with outer seating face and into inner valve seat with inner seating face according to this solution. Its substance is that the inner valve seat and/or outer valve seat is fitted slidably in axial direction and to inner valve seat and/or to outer valve seat is connected at least one pressure member for causing force against the ring-shaped valve.
Slideably movable inner valve seat and/or outer valve seat is provided with at least one sealing member, situated between inner valve seat and the centre of the combustion engine cylinder head and/or between outer valve seat and the body of the combustion engine cylinder head.
Sealing member is placed in a groove in the centre of the cylinder head of the combustion engine and/or in the cylinder head body of the combustion engine. Sealing member is formed by sealing ring on the slideably moveable inner valve seat, where contact diameter of sealing member with inner valve seat is larger than seating face diameter of this inner valve seat with ring-shaped valve.
Sealing member is formed by sealing ring on the slideably moveable outer valve seat, where contact diameter of sealing ring with outer valve seat is smaller than seating face diameter of this outer valve seat with ring-shaped valve.
Slideably moveable inner valve seat and/or outer valve seat is provided with safety element preventing its pulling towards the cylinder. Slideably moveable inner valve seat and/or outer valve seat is provided with at least two stems, leading through the centre and/or through the body of the cylinder head of the combustion engine, provided with adjustable stops and/or dampers on their ends.
Seating face of slideably moveable inner valve seat and/or outer valve seat is spherical.
Pressure member is formed by hydraulic spring with throttling in oil supply and/or one-way throttling in oil supply.
The centre of the combustion engine cylinder head is demountable from the body of the combustion engine cylinder head and/or valve guide for guiding the valve stems of ring-shaped valve are fitted with radial clearance in the centre and/or in the body of the combustion engine cylinder head.
The cylinder head of the combustion engine with ring-shaped valve achieves flow parameters, which are not achievable by any solution with classic lifting valves. It is thus possible to use it in new modern internal combustion engines. Thanks to concentric circular shape of the valve seats and valve plate with cylinder of the engine there is thermally uniform stress of all parts of the cylinder head. In arrangement, where outer valve seat is fixed and inner valve seat is axially movable, is the centre of the cylinder head less stressed than usual. Most of pressure force transfers the valve into the outer valve seat. Thanks to lower stress and simple shape there is no danger of cylinder head cracking even at high combustion pressure and temperature. Inner valve seat must have certain axial overlap T in order to ensure valve tightness. Size of this overlap is given by the stop position of seat movement towards cylinder, which is performed by e.g. safety ring. During installation is possible to set desired lift of movable seat, which is needed for safety and durable sealing of ring-shaped valve in closed position. Wear of seating face stops increase lift of slidably mounted seat. Wear of seating face for valve by this slidably fitted seat decreases adjusted overlap of slidably fitted seat. Wear of seating face between second fixed seat and valve increase overlap of movable seat. It is advantage that two wear factors increase adjusted overlap and one factor decreases it. It follows that for sufficient sealing will be the overlap permanent for a long period and won't need to be adjusted.
Cylinder head of the combustion engine with ring-shaped valve, according to the invention, will be described in more detail by individual examples shown on the attached drawings. On the
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The model cylinder head of a combustion engine with ring-shaped valve according to
Embodiment of a cylinder head of an internal combustion engine with ring-shaped valve 3 according to
Embodiment of a cylinder head of an internal combustion engine with ring-shaped valve 3 according to
In embodiment of a cylinder head of an internal combustion engine with ring-shaped valve 3 according to
In embodiment of a cylinder head of an internal combustion engine with ring-shaped valve 3 according to
In embodiment of a cylinder head of an internal combustion engine with ring-shaped valve 3 according to
In embodiment of a cylinder head of an internal combustion engine with ring-shaped valve 3 according to
In embodiment of a cylinder head of an internal combustion engine with ring-shaped valve 3 according to
In embodiment of a cylinder head of an internal combustion engine with ring-shaped valve 3 according to
At a cylinder head of an internal combustion engine with ring-shaped valve 3 is function following. Ring-shaped valve 3 by closing sits down at first on the axially slidably fitted usually inner valve seat 4, compress this inner valve seat 4 against the resistance of pressure member 6 to lift T and then sits down into rigid, usually outer valve seat 5. Seating face 10 of inner valve seat 4 may be advantageously spherical and then is secured perfect tightness of this inner valve seat 4 in the seating face 20 of ring-shaped valve 3 even in case of modest turning of inner valve seat 4. This seating face 20 may be conical or spherical as well. Increase of pressure in a cylinder of engine causes pushing the axial slidably fitted inner valve seat 4 to ring-shaped valve 3 by pressure force F. It is caused by suitable shape of inner valve seat 4, where diameter D1 of contact with sealing member 7-ring, is greater than diameter D2 of contact of seating faces 10 and 20. Tightness between centre 2 of a head and axially slidably fitted inner valve seat 4 secures sealing member 7-ring, which is advantageously placed in a groove in the centre 2 of head. Next process of cylinder head of an internal combustion engine causes opening the ring-shaped valve 3. If there is higher pressure in cylinder before opening than pressure above ring-shaped valve 3, axially slidably fitted inner valve seat 4 will be able to be pushed to the ring-shaped valve 3 by pressure force F even during valve 3 opening in addition to force of pressure member 6. It will be thus pulled towards cylinder until movement of seat is stopped by safety member 8. By this cyclical motion of inner seat 4 will be removed 25″ sediment from interstice between inner valve seat 4 and centre 2 of head. This requires that the radial clearance between inner valve seat 4 and the centre 2 of head was sufficient and then will not threaten getting stuck of inner valve seat 4. Inner valve seat 4 is after opening valve 3 ready in extended position. Required overlap T, which is necessary for keeping tightness of ring-shaped valve 3 while engine is running, is influenced by wear of valve gear component. This overlap T is decreased by wear of seating faces 10 and 20. By wear of seating faces 11 and 21 is increased and by wear of safety member 8 is increased too. Keeping the overlap T seems to be sustainable. In case of using hydraulic cylinder as the pressure member 6 is possible to absorb the move of inner valve seat 4 by throttling 19 in both directions or by one-way damping 18 in oil supply. Similar function of a cylinder head with ring-shaped valve 3 is even in case of use inner valve seat 4 with stems 14, which ends are provided with pressure members 6 and stops 23 substituting safety member 8. Hydraulic damper 24 decreases lift of the inner valve seat 4 and thus its wear too while engine is running.
Similar function of a head will be even in case when axially slidable will be outer valve seat 5. In closed position of ring-shaped valve 3 will pressure force F pressure the axially slidable outer valve seat 5 to ring-shaped valve 3 only when diameter D1 of contact with sealing member 7 ring, will be smaller than diameter D2 of contact of seating faces 11 and 21.
As the pressure member 6 can be used spring of various types. Also it may be hydraulic or pneumatic cylinder, electromagnet and the like.
Function of safety member 8 can fulfill even thrust nut 12 or plate 13 fixed in the centre 2 of head. Safety member can be annulus 17 or it can be generally formed by stops from bolts, pins and the like.
For assembling and adjustment of the inner valve seat 4 is advantageous, when centre 2 of head is demountable. For assembling of ring-shaped valve 3 is advantageous, when the valve guides 26 are fitted with radial clearance. Their position can be secured according to the position of ring-shaped valve 3 and its stems 25.
A head of an internal combustion engine with ring-shaped valve according to this invention will find use in various types of internal combustion engines for controlling intake, exhaust or common function of intake and exhaust. Use for example for exhaust at two-stroke engine or at four-stroke engine common for both exhaust and intake.
Number | Date | Country | Kind |
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PV2011-259 | May 2011 | CZ | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/CZ2012/000037 | 5/3/2012 | WO | 00 | 12/5/2013 |