EP1350929B1 - Dispositif de graissage pour un cylindre d'un moteur et procédure pour le graisser - Google Patents
Dispositif de graissage pour un cylindre d'un moteur et procédure pour le graisser Download PDFInfo
- Publication number
- EP1350929B1 EP1350929B1 EP03405148A EP03405148A EP1350929B1 EP 1350929 B1 EP1350929 B1 EP 1350929B1 EP 03405148 A EP03405148 A EP 03405148A EP 03405148 A EP03405148 A EP 03405148A EP 1350929 B1 EP1350929 B1 EP 1350929B1
- Authority
- EP
- European Patent Office
- Prior art keywords
- lubricant
- cylinder
- nozzle
- lubrication system
- running surface
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Expired - Lifetime
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Classifications
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F01—MACHINES OR ENGINES IN GENERAL; ENGINE PLANTS IN GENERAL; STEAM ENGINES
- F01M—LUBRICATING OF MACHINES OR ENGINES IN GENERAL; LUBRICATING INTERNAL COMBUSTION ENGINES; CRANKCASE VENTILATING
- F01M1/00—Pressure lubrication
- F01M1/08—Lubricating systems characterised by the provision therein of lubricant jetting means
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F02—COMBUSTION ENGINES; HOT-GAS OR COMBUSTION-PRODUCT ENGINE PLANTS
- F02F—CYLINDERS, PISTONS OR CASINGS, FOR COMBUSTION ENGINES; ARRANGEMENTS OF SEALINGS IN COMBUSTION ENGINES
- F02F1/00—Cylinders; Cylinder heads
- F02F1/18—Other cylinders
- F02F1/20—Other cylinders characterised by constructional features providing for lubrication
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F01—MACHINES OR ENGINES IN GENERAL; ENGINE PLANTS IN GENERAL; STEAM ENGINES
- F01M—LUBRICATING OF MACHINES OR ENGINES IN GENERAL; LUBRICATING INTERNAL COMBUSTION ENGINES; CRANKCASE VENTILATING
- F01M1/00—Pressure lubrication
- F01M1/08—Lubricating systems characterised by the provision therein of lubricant jetting means
- F01M2001/083—Lubricating systems characterised by the provision therein of lubricant jetting means for lubricating cylinders
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F02—COMBUSTION ENGINES; HOT-GAS OR COMBUSTION-PRODUCT ENGINE PLANTS
- F02B—INTERNAL-COMBUSTION PISTON ENGINES; COMBUSTION ENGINES IN GENERAL
- F02B75/00—Other engines
- F02B75/02—Engines characterised by their cycles, e.g. six-stroke
- F02B2075/022—Engines characterised by their cycles, e.g. six-stroke having less than six strokes per cycle
- F02B2075/025—Engines characterised by their cycles, e.g. six-stroke having less than six strokes per cycle two
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F02—COMBUSTION ENGINES; HOT-GAS OR COMBUSTION-PRODUCT ENGINE PLANTS
- F02B—INTERNAL-COMBUSTION PISTON ENGINES; COMBUSTION ENGINES IN GENERAL
- F02B3/00—Engines characterised by air compression and subsequent fuel addition
- F02B3/06—Engines characterised by air compression and subsequent fuel addition with compression ignition
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F02—COMBUSTION ENGINES; HOT-GAS OR COMBUSTION-PRODUCT ENGINE PLANTS
- F02F—CYLINDERS, PISTONS OR CASINGS, FOR COMBUSTION ENGINES; ARRANGEMENTS OF SEALINGS IN COMBUSTION ENGINES
- F02F7/00—Casings, e.g. crankcases
- F02F2007/0097—Casings, e.g. crankcases for large diesel engines
Definitions
- the invention relates to a lubricating system for lubricating a reciprocating internal combustion engine, in particular a two-stroke large diesel engine with longitudinal rinse, and a method for lubricating a reciprocating internal combustion engine with such a lubricating system according to the preamble of the independent claim of the respective category.
- Two-stroke large diesel engines with longitudinal flushing are often used as drive units for ships or in stationary operation, for example for driving large generators for generating electrical energy.
- the engines usually run for long periods in continuous operation, which places high demands on the reliability and availability. Therefore, for the operators in particular long maintenance intervals, low wear and an economical handling of fuels and supplies are central criteria in the selection of machines.
- the piston running behavior of such large-bore, slow-running diesel engines is a determining factor for the length of the maintenance intervals, the availability and the consumption of lubricating oil as well directly for the operating costs.
- the complex problem of lubrication of two-stroke large diesel engines is becoming increasingly important.
- piston lubrication is provided by lubrication means in the cylinder wall, which applies lubricating oil to the cylinder surface tread to minimize friction between the piston and the tread and thereby wear out the tread.
- lubrication means in the cylinder wall, which applies lubricating oil to the cylinder surface tread to minimize friction between the piston and the tread and thereby wear out the tread.
- the tread wear at less than 0.05 mm with a service life of 1000 hours.
- the lubricating oil flow is in such engines at about 1.3 g / kWh and less and should not least be further reduced for cost reasons as possible.
- lubricating devices are known in which the lubricating oil is applied through a plurality of lubricating oil openings, which are accommodated in the circumferential direction in the cylinder wall, in the radial direction on the piston passing to the lubricating oil piston, wherein the lubricating oil distributed by the piston rings in both the circumferential direction and in the axial direction becomes.
- a lubricating system is proposed in WO 00/28194, in which the lubricating oil under high Pressure is sprayed by means of atomizing nozzles, which are housed in the cylinder walls, substantially tangentially to the cylinder wall in the scavenging air located in the combustion chamber, wherein the lubricating oil is atomized into small particles.
- the object of the invention is therefore to propose an improved lubrication system for lubricating a running surface of a cylinder wall of a cylinder of a reciprocating internal combustion engine, in particular a two-stroke large diesel engine with longitudinal rinse, through which lubrication system better distribution of a lubricant on the tread of the cylinder wall is ensured and at the same time the amount to lubricant can be significantly reduced compared to known lubrication systems and thus a more economical operation of such reciprocating internal combustion engines is possible. Furthermore, it is an object of the invention to provide a corresponding method for applying the To propose lubricant on the running surface of a cylinder wall by means of the inventive lubrication system.
- a lubricating system for lubricating a running surface of a cylinder wall of a cylinder of a reciprocating internal combustion engine, in particular a two-stroke large diesel engine with longitudinal purge, in which cylinder a piston is arranged back and forth along the tread, proposed.
- the cylinder has at least one lubricant nozzle arranged in a recess of the cylinder wall for applying lubricant to the running surface.
- the lubricant nozzle is arranged and configured such that the lubricant in a plurality of lubricant jets can be applied to the running surface of the cylinder and a sputtering of the lubricant jet through the lubricant nozzle is largely avoidable.
- the arrangement and configuration of the lubricant nozzles of the inventive lubrication system ensures that the lubricant can be applied directly to the running surface of the cylinder wall of the cylinder of the reciprocating internal combustion engine. It has been shown that at the same time a uniform lubricant application and economical use is guaranteed.
- the lubrication system includes a plurality of lubricant nozzles that are along a circumferential line of the cylinder the Hubkolbenbrennkraftmaschien, for symmetry reasons, preferably at equidistant intervals, are arranged.
- the area enclosed by the circumferential line is preferably perpendicular to a cylinder axis extending along the cylinder.
- the lubricant nozzles are not arranged on such a circumferential line, but in a different manner in the cylinder wall, for example on a spiral path extending in the direction of the cylinder axis.
- the lubrication system comprises a plurality of lubricant nozzles, which are arranged along a plurality of parallel circumferential lines.
- lubricant nozzles may be arranged on one or more such circumferential lines at different heights in the cylinder, for example in the vicinity of the lower reversal point of the piston movement in the cylinder and / or in the vicinity of the upper reversal point and / or between the upper and lower reversal point. This ensures that the tread is optimally supplied with lubricating oil everywhere.
- the lubricant is applied directly to the tread in a substantially compact jet of lubricant. That is, a sputtering of the jet into fine particles is largely avoidable.
- the lubricant nozzles are arranged in the cylinder wall in such a way that the lubricant exits substantially tangentially with respect to the cylinder wall in a lubricant jet.
- the indication of direction tangentially always refers in the context of this application to the area of the cylinder wall in which the lubricant nozzle in question is accommodated.
- the lubricant jet can in a preferred embodiment with respect to a cylinder axis, the direction in this application as usual parallel to the direction of movement of the piston of the reciprocating internal combustion engine, ie perpendicular to the radial direction of the Cylinder, is assumed to emerge at a predetermined angle in tangential direction from the lubricant nozzle.
- the lubricant nozzles may well be aligned in different directions with respect to the cylinder axis, whereby a larger area of the running surface with lubricant can be acted upon directly by the lubricant nozzles.
- the lubricant nozzles may each be aligned alternately in different directions with respect to the cylinder axis at the same or different angular amounts.
- a single lubricant nozzle having a plurality of outlet openings for dispensing the lubricant, which outlet openings same or allow different lubricant flow rate, for example by the outlet openings have the same or different opening cross-sections and are configured and arranged so that the lubricant can escape in the same or in different directions.
- the lubricant nozzles can also be arranged such that the lubricant jet can emerge perpendicular to the cylinder axis from the lubricant nozzle.
- any suitable combination of the aforementioned embodiments is conceivable.
- the cylinder wall can additionally have a circumferential groove, for example in the form of a closed circular line, for storing the lubricating oil applied to the running surface.
- the surface that encloses the groove can be perpendicular or oblique on the cylinder axis.
- the groove can also form a non-closed curve in the form of a spiral in the cylinder wall. It is also conceivable that the groove has one or more separate sections, not in the form of a closed curve over certain areas of the cylinder wall extend. Of course, any suitable combination of the various possible shapes of grooves is possible. In operation, excess lubricant can be scraped off into the grooves, for example, by the piston rings, so that the lubricant is available again for the lubrication of the piston at a later time.
- each lubricant nozzle is connected via a separate supply line with a metering unit which provides the lubricant nozzle with the necessary amount of lubricating oil at a predeterminable time.
- a metering unit which provides the lubricant nozzle with the necessary amount of lubricating oil at a predeterminable time.
- a common feed line e.g. in the form of a common rail system
- the dosing unit is preferably controlled or regulated by a freely programmable drive unit. This makes it possible to control the amount and / or time of the lubricant to be supplied in dependence on various operating parameters, such as e.g.
- lubricant must not be applied to the tread at every stroke of each lubricant nozzle, or the amount of lubricant to be applied, depending on the operating condition and / or location in the cylinder individually adjustable.
- Each lubricant nozzle is the lubricant from a metering unit, preferably fed to each lubricant nozzle via a separate supply line, wherein the metering unit can be controlled or regulated by means of a freely programmable drive unit so that the amount and / or the time of each lubricant nozzle supplied lubricant in Depending on different operating parameters can be specified.
- the inventive lubrication system for a reciprocating internal combustion engine which in the following total with the Reference numeral 1 is designated, is particularly suitable for two-stroke large diesel engines with rinsing, as they are widely used, for example, in shipbuilding.
- Fig. 1 shows, partially in longitudinal section, a portion of a cylinder 4 of a two-stroke large diesel engine with longitudinal flush with the essential parts for understanding the invention, and an embodiment of the inventive lubrication system 1.
- On the representation of further, known per se components of such cylinder. 4 was omitted for the sake of clarity.
- Fig. 1 shows a portion of a cylinder 4 of a two-stroke large diesel engine in the area in which the lubricating system 1 is housed.
- the cylinder 4 essentially comprises a cylinder wall 3 which is delimited in the interior of the cylinder 4 by a running surface 2 and a piston 5 which is arranged in the direction of a cylinder axis 10 along the running surface 2 in the interior of the cylinder 4 back and forth.
- the piston has in known manner a piston rod 51, which is for driving the piston 5 with a crankshaft, not shown, and a combustion chamber 15 facing Kolbenoberlf kaue 52.
- In the tread 2 facing side surface 53 of the piston 5 are in in itself known manner and function housed one or more piston rings 54.
- the combustion chamber 15 is limited in a known manner by the piston surface 52, the cylinder wall 3 and a piston cover 52 opposite, not shown cylinder cover.
- the cylinder wall 3 comprises one or more recesses 6, in which recesses 6 preferably each a lubricant nozzle 7 for applying lubricant 8 is accommodated on the running surface 2.
- the lubricant nozzles 7 are arranged along a circumferential line of the cylinder 4, preferably (but not necessarily) at equidistant intervals, that of the circumferential line enclosed surface is perpendicular to the longitudinal axis of the cylinder 4 extending cylinder axis 10.
- the lubricating system 1 may comprise a plurality of lubricant nozzles 7, which are arranged along one or more parallel circumferential lines.
- the lubricant nozzle 7 is housed sunk in the cylinder wall 3 in the recess 6, that the piston can pass through the recess 6 during its movement without obstruction.
- the cylinder wall 3 has at least one circumferentially extending groove 11 for storing the lubricant 8 applied to the running surface 2, wherein a plurality of grooves 11 may be advantageous.
- the groove 11 may extend in a closed line, for example in the form of a circular line around the entire circumference of the cylinder wall 3. It is also conceivable that the groove 11 has one or more separate sections which do not extend in the form of a closed curve over the entire circumference of the cylinder wall 3.
- the piston 5 moves in a known manner between a moderately upper reversal point OT and a lower illustration point reversal point UT that the surface 52 of the piston 5 in its movement between the lower and upper reversal point in each case at least one recess 6 of the cylinder wall. 3 and / or at least one groove 11 so happens that at least one recess 6 of the cylinder wall 4 and / or at least one groove 11 is temporarily completely covered by the side surface 53 of the piston 5.
- the position of all the recesses 6 in the cylinder wall 3 and / or all grooves 11 can be selected so that when the piston is in the lower reversal point UT, all Recesses 6 in the cylinder wall 3 and / or all grooves 11 are in communication with the combustion chamber 15, and when the piston is in the position of the upper reversal point OT, all the recesses 6 in the cylinder wall 3 and / or all grooves 11 with the interior of the Cylinder 4 below the piston 5 are in communication.
- Fig. 2 shows in a section along the line A - A according to FIG. 1, a cylinder 4, comprising an embodiment of a lubricating system 1 according to the invention with lubricant nozzle 7, metering unit 13 and control device 14.
- the lubricant 8, the lubricant nozzle 7 by means of a feed line 12 of a metering unit 13 are supplied, which in turn is supplied via a supply line 131 centrally with lubricant 8.
- the supply of lubricant 8 to the lubricant nozzles 7 can also take place independently of the operating parameters of the reciprocating internal combustion engine according to a predeterminable scheme.
- one or more of the lubricant nozzles 7 are connected via a common feed line 12, for example in the form of a common rail system, for supplying the lubricant 8 with the metering unit 13.
- the lubricant 8 is supplied to the lubricant nozzle 7 via the supply line 12 at a prescribable working pressure.
- the lubricant nozzle 7 preferably has a valve 72, for example a valve 72 spring-loaded in a known manner.
- the valve 72 is adjustable so that it spontaneously opens under the action of the working pressure of the pending in the supply line 12 lubricant 8, so that the lubricant 8 from the supply line 12 flow into the lubricant nozzle 7 and the outlet opening impulsively the tread can be fed.
- the supply line 12 can also be protected against or in the lubricant nozzle 7 by a check valve 73 against cylinder-side overpressure.
- the valve 72 is designed so that it simultaneously fulfills its function as a check valve 73.
- the metering unit 13 which may also be equipped with a check valve, not shown, with respect to the supply line 12, so controlled or regulated by means of a programmable control device 14 that the amount and / or the time of each lubricant nozzle 7 supplied lubricant 8 in Dependence on different operating parameters, such as from the speed, the load, the cylinder temperature or other operating parameters is adjustable. Also, for example, the quality of lubricant 8 and / or the quality of the fuel or other fuels can determine both the time, as well as the amount of the supplied lubricant 8 with.
- the operating parameters can be read in by sensors, which are not shown here, and fed via data lines 141 to the freely programmable drive device 14, which controls or regulates the metering device correspondingly via a communication line 142.
- Fig. 3 is shown in a schematic manner, as the lubricant jet 9 is preferably applied to the tread 2.
- the lubricant nozzle 7 has an outlet opening 71 which is designed so that the lubricant 8 emerges in a compact lubricant jet 9, ie that atomization of the lubricant jet 9 through the lubricant nozzle 7 is largely avoidable.
- sputtering into the scavenging air and / or into a gas which is located in the cylinder is largely avoided.
- the lubricant 8 is applied directly to the running surface in pulsed fashion in a compact jet.
- the recess 6 is preferably designed as an oblique groove so that the emerging from the outlet opening 71 lubricant jet 9 with respect to the Running surface 2, preferably in a substantially tangential direction, so exits into the combustion chamber 15 that on the lying in the direction of the lubricant jet 9 portion 91 of the tread 2 lubricant 8 is applied directly.
- the partial region 91 extends, for example, from the outlet opening 71 to or approximately up to a further circumferential recess 6 in the circumferential direction, so that the running surface 2 can be acted upon with lubricant 8 in the circumferential direction, in a region determinable by the geometry of the lubricant jet 9.
- Each lubricant nozzle 7 can be arranged in the recess 6 of the cylinder wall 3 such that the lubricant jet 9 substantially tangentially, but at a respective angle to the cylinder axis 10 predeterminable angle from the lubricant nozzle 7 exits.
- the lubricant jet 9 also emerge perpendicular to the cylinder axis 10 and substantially in tangentilaer direction, so that the lubricant 8 can be applied to the running surface 2 largely in a plane in the circumferential direction, that is not spirally.
- the lubricant jet 9 is either before and / or during and / or after the piston passes the recess 6, impulsively applied to the tread 2 through the lubricant nozzle 7 and by the movement of the piston 5 and the piston rings 54 both in the circumferential direction and in axial direction on the tread 2 of the cylinder wall 3 additionally evenly distributed.
- both the quantity and the time of the lubricant delivered to each lubricant nozzle 7 can be optimized by means of the metering unit 13.
- the supply of lubricant 8 can be omitted on the tread 2, for example, for one or more cycles of the reciprocating internal combustion engine, whereby the consumption of the used lubricant 8 can be further reduced.
- the cylinder wall 3 may have one or more circumferentially extending grooves 11 in which a portion of the applied lubricant 8 can be stored. For example, by the piston rings 54, a portion of the lubricant 8, which is located on the tread 2, stripped into the groove 11 and stored, from which groove 11, the lubricant 8 at a later time back to the tread 2 and so again for Can contribute lubrication, a process that also contributes significantly to the saving of lubricant 8.
- the arrangement and configuration, in particular the lubricant nozzles of the inventive lubricating system ensures that the lubricant is applied directly to the running surface of the cylinder wall of the cylinder of the reciprocating internal combustion engine.
- the inventive lubricating system is characterized by its particularly simple structure, in particular the lubricant nozzles, which can be dispensed with costly additional equipment parts, such as on leak oil lines or the like, due to their simple Konstruktuion. It has been found that this results in a significantly more uniform lubricant application compared to the prior art, ie.
- the lubricant is optimally distributed both in the axial direction and in the circumferential direction on the running surface of the cylinder, whereby the wear of the running surface of the cylinder or the piston is significantly reduced.
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- Engineering & Computer Science (AREA)
- Mechanical Engineering (AREA)
- General Engineering & Computer Science (AREA)
- Chemical & Material Sciences (AREA)
- Combustion & Propulsion (AREA)
- Lubrication Of Internal Combustion Engines (AREA)
Claims (10)
- Dispositif de graissage pour graisser une surface de roulement (2) d'une paroi de cylindre (3) d'un cylindre (4) d'un moteur à combustion interne avec piston alternatif, en particulier d'un grand moteur diesel à deux temps avec un balayage longitudinal, cylindre (4) dans lequel un piston (5) est disposé le long de la surface de roulement (2) de manière à pouvoir se déplacer dans un mouvement de va-et-vient, le cylindre (4) comportant au moins une buse de lubrifiant (7), disposée dans un creux (6) de la paroi de cylindre (3), pour l'application de lubrifiant (8) sur la surface de roulement (2), caractérisé en ce que la buse de lubrifiant (7) comporte plusieurs orifices de sortie (71) pour l'application du lubrifiant (8), lesquels orifices de sortie (71) permettent un débit de lubrifiant identique ou différent, et en ce que la buse de lubrifiant (7) est disposée et réalisée de telle sorte que le lubrifiant (8) puisse être appliqué en plusieurs jets de lubrifiant (9) sur la surface de roulement (2) de la paroi de cylindre (3).
- Dispositif de graissage selon la revendication 1, le dispositif de graissage comportant plusieurs buses de lubrifiant (7) qui sont disposées le long d'une ligne circonférentielle du cylindre (4), de préférence à des écartements équidistants, la superficie incluse par la ligne circonférentielle étant perpendiculaire sur un axe de cylindre (10) s'étendant le long du cylindre (4).
- Dispositif de graissage selon l'une quelconque des revendications précédentes, le dispositif de graissage comportant plusieurs buses de lubrifiant (7) qui sont disposées le long de plusieurs lignes circonférentielles parallèles.
- Dispositif de graissage selon l'une quelconque des revendications précédentes, dans lequel chaque buse de lubrifiant (7) est disposée dans le creux (6) de la paroi de cylindre (3) de telle sorte que les jets de lubrifiant (9) puissent sortir de la buse de lubrifiant (7) à un angle prédéterminable par rapport à l'axe du cylindre (10).
- Dispositif de graissage selon l'une quelconque des revendications précédentes, dans lequel au moins une buse de lubrifiant (7) est disposée dans le creux relatif (6) de la paroi de cylindre (3) de telle sorte que les jets de lubrifiants (9) puissent sortir de la buse de lubrifiant (7) perpendiculairement à l'axe du cylindre (10).
- Dispositif de graissage selon l'une quelconque des revendications précédentes, dans lequel la paroi de cylindre (3) comporte une rainure (11) s'étendant dans le sens circonférentiel pour le stockage du lubrifiant (8) appliqué sur la surface de roulement (2).
- Dispositif de graissage selon l'une quelconque des revendications précédentes, dans lequel le lubrifiant (8) peut être amené vers chaque buse de lubrifiant (7) au moyen d'une conduite d'alimentation séparée (12) à partir d'une unité de dosage (13).
- Dispositif de graissage selon la revendication 7, dans lequel l'unité de dosage (13) peut être commandée ou réglée au moyen d'un dispositif de commande librement programmable (14) de telle sorte que la quantité et/ou le moment d'envoi du lubrifiant (8) amené vers chaque buse de lubrifiant (7) puissent être réglés de manière individuelle pour chaque buse de lubrifiant (7) en fonction de divers paramètres d'exploitation comme, par exemple, le régime, la charge, la température du cylindre ou d'autres paramètres d'exploitation ou, également, en fonction de la qualité d'un carburant, du lubrifiant (8) ou d'autres matières consommables.
- Procédé de graissage d'une surface de roulement d'une paroi de cylindre (3) d'un cylindre (4) d'un moteur à combustion interne avec piston alternatif, en particulier d'un grand moteur diesel à deux temps avec un balayage longitudinal, cylindre (4) dans lequel un piston (5) est déplacé le long de la surface de roulement (2) dans un mouvement de va-et-vient, du lubrifiant (8) étant appliqué sur la surface de roulement (2) par au moins une buse de lubrifiant (7) disposée dans un creux (6) de la paroi de cylindre (3), caractérisé en ce que le lubrifiant (8) est appliqué sur la surface de roulement (2) de la paroi de cylindre (3) en plusieurs jets de lubrifiant (9) par le biais de plusieurs orifices de sortie (71) de la buse de lubrifiant (7).
- Moteur à combustion interne avec piston alternatif, en particulier un grand moteur diesel à deux temps avec un balayage longitudinal, qui comporte un dispositif de graissage selon l'une quelconque des revendications 1 à 8 ou est actionné suivant un procédé selon la revendication 9.
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| EP03405148A EP1350929B2 (fr) | 2002-04-04 | 2003-03-05 | Dispositif de graissage pour un cylindre d'un moteur et procédure pour le graisser |
Applications Claiming Priority (3)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| EP02405264 | 2002-04-04 | ||
| EP02405264 | 2002-04-04 | ||
| EP03405148A EP1350929B2 (fr) | 2002-04-04 | 2003-03-05 | Dispositif de graissage pour un cylindre d'un moteur et procédure pour le graisser |
Publications (3)
| Publication Number | Publication Date |
|---|---|
| EP1350929A1 EP1350929A1 (fr) | 2003-10-08 |
| EP1350929B1 true EP1350929B1 (fr) | 2006-05-17 |
| EP1350929B2 EP1350929B2 (fr) | 2012-04-11 |
Family
ID=28686032
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| EP03405148A Expired - Lifetime EP1350929B2 (fr) | 2002-04-04 | 2003-03-05 | Dispositif de graissage pour un cylindre d'un moteur et procédure pour le graisser |
Country Status (7)
| Country | Link |
|---|---|
| EP (1) | EP1350929B2 (fr) |
| JP (1) | JP2004028085A (fr) |
| KR (1) | KR100969335B1 (fr) |
| CN (1) | CN1448618B (fr) |
| DE (1) | DE50303333D1 (fr) |
| DK (1) | DK1350929T4 (fr) |
| PL (1) | PL201184B1 (fr) |
Families Citing this family (11)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| PL1767751T3 (pl) * | 2005-09-23 | 2009-01-30 | Waertsilae Nsd Schweiz Ag | Układ smarowania cylindra w silniku o posuwisto-zwrotnym ruchu tłoka |
| EP2194244A1 (fr) * | 2008-12-02 | 2010-06-09 | Wärtsilä Schweiz AG | Dispositif de lubrification et procédé destiné à la lubrification d'une surface de roulement d'une paroi de cylindre |
| DK177746B1 (da) | 2009-06-23 | 2014-05-26 | Hans Jensen Lubricators As | Fremgangsmåde til cylindersmøring af store dieselmotorer såsom skibsmotorer |
| DK177620B1 (da) | 2010-03-12 | 2013-12-09 | Hans Jensen Lubricators As | Doseringssystem for cylindersmøreolie til store dieselmotorcylindre samt fremgangsmåde til dosering af cylindersmøreolie til store dieselmotorcylindre |
| DK177242B1 (da) * | 2011-03-22 | 2012-08-06 | Hans Jensen Lubricators As | Injektor, doseringssystem samt fremgangsmåde til indsprøjtning af cylindersmøreolie i store cylindre i en dieselmotor |
| CN103195444B (zh) * | 2013-04-11 | 2015-02-18 | 上海隧道工程股份有限公司 | 长平移行程的管片拼装机 |
| CN105673245B (zh) * | 2013-09-30 | 2018-01-16 | 泉州市中研智能机电研究院有限公司 | 一种活塞同步控制润滑孔的控制装置的运行方法 |
| CN103470392B (zh) * | 2013-09-30 | 2015-07-01 | 庄景阳 | 点火角度控制汽缸的润滑装置 |
| CN106164426B (zh) * | 2014-03-25 | 2018-10-09 | 汉斯延森注油器公司 | 为汽缸配给润滑油的方法及系统 |
| SG11201802914XA (en) * | 2015-10-28 | 2018-05-30 | Hans Jensen Lubricators As | A large slow-running two-stroke engine with sip lubricant injector |
| JP6685864B2 (ja) * | 2016-08-29 | 2020-04-22 | 三菱重工業株式会社 | シリンダ注油装置及びクロスヘッド式内燃機関 |
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| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| JPS59128909A (ja) * | 1983-01-11 | 1984-07-25 | Mitsubishi Heavy Ind Ltd | 内燃機関のシリンダ |
| JPH0663445B2 (ja) * | 1986-09-05 | 1994-08-22 | 三菱重工業株式会社 | シリンダ注油装置 |
| JPH01277612A (ja) * | 1988-04-28 | 1989-11-08 | Nissan Motor Co Ltd | 内燃機関の潤滑装置 |
| JP2637568B2 (ja) * | 1988-11-01 | 1997-08-06 | 三菱重工業株式会社 | 内燃機関のシリンダ注油装置 |
| JPH02135612U (fr) * | 1989-04-14 | 1990-11-13 | ||
| JPH03275913A (ja) * | 1990-03-23 | 1991-12-06 | Mitsubishi Heavy Ind Ltd | シリンダライナ |
| JPH04318215A (ja) * | 1991-04-16 | 1992-11-09 | Mitsubishi Motors Corp | 油冷式多気筒エンジン |
| CA2350105A1 (fr) * | 1998-11-05 | 2000-05-18 | Hans Jensen Lubricators A/S | Systeme de lubrification pour moteurs diesel de grande taille |
| US6273050B1 (en) * | 1999-10-21 | 2001-08-14 | Wen-Chang Ko | Two-stroke cylinder |
-
2003
- 2003-03-05 DE DE50303333T patent/DE50303333D1/de not_active Expired - Lifetime
- 2003-03-05 EP EP03405148A patent/EP1350929B2/fr not_active Expired - Lifetime
- 2003-03-05 DK DK03405148.2T patent/DK1350929T4/da active
- 2003-03-18 KR KR1020030016819A patent/KR100969335B1/ko not_active Expired - Fee Related
- 2003-04-02 PL PL359478A patent/PL201184B1/pl not_active IP Right Cessation
- 2003-04-03 CN CN03108673XA patent/CN1448618B/zh not_active Expired - Fee Related
- 2003-04-03 JP JP2003099802A patent/JP2004028085A/ja active Pending
Also Published As
| Publication number | Publication date |
|---|---|
| EP1350929B2 (fr) | 2012-04-11 |
| CN1448618A (zh) | 2003-10-15 |
| JP2004028085A (ja) | 2004-01-29 |
| DK1350929T4 (da) | 2012-07-16 |
| DE50303333D1 (de) | 2006-06-22 |
| EP1350929A1 (fr) | 2003-10-08 |
| CN1448618B (zh) | 2010-12-08 |
| DK1350929T3 (da) | 2006-06-12 |
| PL201184B1 (pl) | 2009-03-31 |
| KR20030079682A (ko) | 2003-10-10 |
| PL359478A1 (en) | 2003-10-06 |
| KR100969335B1 (ko) | 2010-07-09 |
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