EP2558690B1 - Oil mist separator of a crankcase ventilation device of an internal combustion engine - Google Patents
Oil mist separator of a crankcase ventilation device of an internal combustion engine Download PDFInfo
- Publication number
- EP2558690B1 EP2558690B1 EP11719207.0A EP11719207A EP2558690B1 EP 2558690 B1 EP2558690 B1 EP 2558690B1 EP 11719207 A EP11719207 A EP 11719207A EP 2558690 B1 EP2558690 B1 EP 2558690B1
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- EP
- European Patent Office
- Prior art keywords
- valve
- oil
- channel
- oil mist
- condensate
- 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.)
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- 239000003595 mist Substances 0.000 title claims description 50
- 238000002485 combustion reaction Methods 0.000 title claims description 29
- 238000009423 ventilation Methods 0.000 title claims description 10
- 230000003134 recirculating effect Effects 0.000 claims description 13
- 238000011144 upstream manufacturing Methods 0.000 claims description 6
- 239000000835 fiber Substances 0.000 claims description 3
- 238000007599 discharging Methods 0.000 claims description 2
- 238000000926 separation method Methods 0.000 description 19
- 230000005484 gravity Effects 0.000 description 4
- 238000007789 sealing Methods 0.000 description 4
- 238000009434 installation Methods 0.000 description 3
- 238000004519 manufacturing process Methods 0.000 description 3
- 235000001674 Agaricus brunnescens Nutrition 0.000 description 2
- 238000012423 maintenance Methods 0.000 description 2
- 230000000630 rising effect Effects 0.000 description 2
- 238000010521 absorption reaction Methods 0.000 description 1
- 238000001816 cooling Methods 0.000 description 1
- 238000004512 die casting Methods 0.000 description 1
- 230000009977 dual effect Effects 0.000 description 1
- 230000000694 effects Effects 0.000 description 1
- 229920001971 elastomer Polymers 0.000 description 1
- 239000000806 elastomer Substances 0.000 description 1
- 230000002706 hydrostatic effect Effects 0.000 description 1
- 238000002347 injection Methods 0.000 description 1
- 239000007924 injection Substances 0.000 description 1
- 230000007246 mechanism Effects 0.000 description 1
- 239000002184 metal Substances 0.000 description 1
- 239000002991 molded plastic Substances 0.000 description 1
- 239000004033 plastic Substances 0.000 description 1
- 239000012716 precipitator Substances 0.000 description 1
- 239000000243 solution Substances 0.000 description 1
Images
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
- F01M13/00—Crankcase ventilating or breathing
- F01M13/04—Crankcase ventilating or breathing having means for purifying air before leaving crankcase, e.g. removing oil
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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
- F01M13/00—Crankcase ventilating or breathing
- F01M13/04—Crankcase ventilating or breathing having means for purifying air before leaving crankcase, e.g. removing oil
- F01M2013/0422—Separating oil and gas with a centrifuge device
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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
- F01M13/00—Crankcase ventilating or breathing
- F01M13/04—Crankcase ventilating or breathing having means for purifying air before leaving crankcase, e.g. removing oil
- F01M2013/0438—Crankcase ventilating or breathing having means for purifying air before leaving crankcase, e.g. removing oil with a filter
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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
- F01M13/00—Crankcase ventilating or breathing
- F01M13/04—Crankcase ventilating or breathing having means for purifying air before leaving crankcase, e.g. removing oil
- F01M2013/0488—Crankcase ventilating or breathing having means for purifying air before leaving crankcase, e.g. removing oil with oil trap in the return conduit to the crankcase
- F01M2013/0494—Crankcase ventilating or breathing having means for purifying air before leaving crankcase, e.g. removing oil with oil trap in the return conduit to the crankcase using check valves
Definitions
- the present invention relates to a ⁇ lnebelabscheider a crankcase ventilation device of an internal combustion engine, with a separator housing, with a raw gas from the crankcase of the internal combustion engine in a Rohgas Society the separator leading raw gas duct, with a clean gas from a clean gas region of the separator discharging clean gas duct and with a separated from the crankcase ventilation gas in oil the crankcase of the internal combustion engine recirculating oil return passage, in the course of which a valve is arranged, which opens the oil return passage falls below a predetermined pressure difference between the two sides of the valve.
- An oil mist separator with the features indicated above is made US Pat. No. 6,907,869 B2 . US 2001/054418 A1 . FR 2932843 A1 and DE 100 2006 018783 known.
- the arranged in the course of the oil return passage valve here is a check valve, which is preferably located near the crankcase of the internal combustion engine, ie from the oil mist separator, to open the valve by the pressure of the oil collected upstream of the valve against the pressure prevailing in the crankcase gas pressure and then drain the oil from the oil return passage in the crankcase of the engine.
- a condensate return passage leads parallel to the oil return passage to the crankcase of the internal combustion engine from the deepest in use position range of the raw gas channel, wherein the condensate return passage is performed without a valve or a siphon.
- the object is to provide an oil mist separator of the type mentioned, which avoids the disadvantages mentioned and with the one hand, a reliable and trouble-free operation is ensured even under unfavorable pressure conditions and on the other hand, a reduced installation effort is achieved.
- valve as a valve body has a floating body whose density is smaller than the density of oil and by a rising from the crankcase ago oil level in the oil return channel in his Closed position against a valve seat can be raised, and that the weight of the valve body and the dimensions of the valve body surrounding the valve channel are coordinated so that upon reaching a predetermined speed of a gas flow in the valve passage in the direction of the crankcase to the separator housing the valve body by the gas flow and on the gas pressure difference acting on the valve body in its closed position against the valve seat can be raised.
- the invention provides an oil mist separator whose valve combines two valve functions, namely the function of a float valve and the function of a check valve.
- the function of the float valve always comes into play when, due to unfavorable pressure conditions, oil is forced out of the crankcase of the internal combustion engine through the oil return channel upwards in the direction of the separator housing.
- the valve body As soon as the rising oil level reaches the valve body, it floats on the oil and is thereby brought into sealing contact with its valve seat, whereby the valve closes.
- oil from the crankcase at most to the valve, but not further, in particular not in the clean gas region of the separator get.
- valve Since only a single valve is required to achieve the two valve functions, advantageously only a correspondingly low parts and assembly effort is required. At the same time, due to its dual function, the valve ensures a particularly high operational reliability of the oil mist separator, which contributes to compliance with relevant emission limit values of the associated internal combustion engine.
- valve body is a hollow ball and that the valve channel surrounding the valve channel is round in cross-section and forms a radial annular gap with the valve body in its open position.
- valve body is functionally independent of position, which contributes significantly to reliable operation.
- this results in a symmetrical loading of the valve body when it is flowed by gas from the crankcase, which contributes to a safe operation of the valve as a check valve.
- valve in the oil return passage opens only in the presence of suitable pressure conditions, in particular when the associated internal combustion engine is at a standstill, an oil collecting space is expediently formed upstream of the valve in the separator housing.
- the volume of the oil collection chamber should be selected according to the requirements in order to ensure the absorption of a sufficient amount of oil for all conceivable operational situations.
- the invention proposes that a condensate return duct branches off from a operating point of the oil mist separator deepest point of the Rohgaskanals and that the condensate return duct downstream of the arranged in the oil return passage, first valve opens into the oil return passage.
- the oil return channel is also used for the return of the condensate from the raw gas channel, so that a single line is sufficient as a combined oil and condensate return from the oil mist separator to the crankcase. This simplifies the connection of the ⁇ lnebelabscheiders to the associated internal combustion engine and reduces the number of necessary items.
- a second valve is arranged, which opens the condensate return duct falls below a predetermined pressure difference between the two sides of the second valve. This ensures that the condensate collected before the second valve is discharged into the crankcase only in the presence of suitable pressure conditions, in particular when the associated internal combustion engine is at a standstill. An undesirable, disturbing gas flow through the condensate return duct against the condensate flow direction is avoided by the second valve.
- the condensate return channel and the mouth of the condensate return channel in the oil return passage and possibly arranged in the condensate return passage second valve are integrated into the separator housing.
- the oil mist separator for the purpose of oil and condensate return as simple as possible with the associated internal combustion engine, it is preferably provided that viewed in the oil flow direction downstream of the first valve portion of the oil return channel is formed as protruding from the separator housing hose or pipe connection piece. At the connecting piece then a flexible hose or a stable pipe can be connected with little effort, the other end is connected to the crankcase of the associated internal combustion engine.
- the oil mist separator according to the present invention can be made variously and practically arbitrarily in terms of the means or mechanisms employed therein for separating oil mist from the crankcase ventilation gas.
- a rotatably drivable rotor is arranged as a separating element in the separator housing. Even with such an active separation element, effective separation of oil mist from the crankcase ventilation gas is ensured, and as a rule, a rotor advantageously has a longer life in comparison with a fiber or nonwoven body, or even a lifetime component of the precipitator which never has to be renewed.
- the separation element can be formed by at least one cyclone.
- the separator housing is made in one piece with the exception of a top, removable cover or composed of several interconnected, such as welded or glued or latched, items composed.
- a one-piece design is special inexpensive injection-molded plastic.
- An embodiment of several, preferably as few as possible, individual parts is still inexpensive to manufacture and also allows such geometric designs that are not integrally represented.
- the removable lid allows easy replacement of a separating element during maintenance of the oil mist separator.
- FIG. 1 shows in a partial longitudinal section a first oil mist separator 1 with a separator housing 10 and a separating element 11 arranged therein.
- the separating element 11 separates the interior of the oil mist separator 1 into a raw gas region 11.1 and a clean gas region 11.2.
- the separation element 11 consists of a hollow cylindrical fiber or nonwoven body, which can be removed during maintenance of the oil mist separator 1 from the separator housing 10 and replaced by a new separation element 11.
- the separator housing 10 is closed by a removable lid.
- the separator housing 10 comprises a in FIG. 1 only partially visible upper housing part 10.1, in which the separating element 11 is arranged and fixed. Downwards closes to the upper housing part 10.1 a lower housing part 10.2 to which side, in FIG. 1 to the left, merges into a nozzle part 10.3, which contains a raw gas channel 12.
- the nozzle part 10.3 is designed here as a hose connection piece, to which a crankcase ventilation gas supplying hose can be connected.
- the return duct part 10.5 contains an oil return duct 14 and a condensate return duct 15 opening into the oil return duct 14.
- the oil return duct 14 merges into a connecting pipe 19, to which an oil and condensate can be connected to the oil sump or the crankcase of the associated internal combustion engine.
- an oil collecting gutter 10.4 Radially outside of the separation element 11 is located in the separator housing 10, an oil collecting gutter 10.4, the at least one in FIG. 1 invisible connection opening is connected to a right in the housing lower part 10.2 provided oil collecting space 16.
- the oil collection chamber 16 goes down into an oil return passage 14, in the course of which a valve 2 is arranged.
- this crankcase ventilation gas which is charged with oil mist and is supplied through the raw gas duct 12 from the crankcase of an associated internal combustion engine, first passes into the raw gas region 11.1 located in the interior of the separation element 11. From there, the gas flows through the separation element 11 in the radial direction from the inside to the outside and enters as a cleared of oil mist clean gas in the clean gas area 11.2 radially outside of the separation element 11 a. From there, the clean gas is discharged via a clean gas channel not visible in the drawing, usually in the intake tract of the internal combustion engine.
- the separated in the separation element 11 from the gas flow oil passes under gravity within the separation element 11 down and passes from the separation element 11 into the oil collection channel 10.4 over. From the oil collecting channel 10.4, the separated oil continues to flow under gravity into the oil collection chamber 16 and collects in this. Another flow of the oil is prevented here in the operation of the associated internal combustion engine, because the valve 2 assumes its closed position in the oil return passage 14, in which its valve body 20 bears sealingly against the associated valve seat 21.
- valve 2 Under two conditions, namely a) when there is a gas pressure difference between the two sides of the valve 2, which is able to lift the designed as a hollow ball, correspondingly lightweight valve body 20 and into contact with the valve seat 21st or b) when oil in the oil return passage 14 from the crankcase of the associated internal combustion engine rises up to the valve 2 and the hollow ball forming the valve body 20 floats on the oil and is brought into abutment with the valve seat 21.
- the valve 2 thus combines in itself the functions of a check valve and a float valve.
- the valve 3 in the condensate return channel 15 is designed here as a mushroom valve with a valve body made of an elastomer. Also, the valve 3 is during operation of the associated internal combustion engine in its closed position, so that in the raw gas channel 12 already precipitated condensate in the condensate return passage 15 and the valve 3 upstream condensate collection chamber 17 collects.
- FIG. 2 shows in an enlarged sectional view, also in longitudinal section, the two valves 2 and 3 in their closed state.
- the valve body 20 of the first valve 2 is formed by a hollow ball, so it has a low weight.
- the weight of the valve body 20 and the extent of the valve body 20 receiving valve channel 22 are coordinated so that at a certain, specifiable speed overflowing gas flow through the oil return passage 14 in the direction of the crankcase to ⁇ lnebelabscheider, so according to the drawing from the bottom up, the gas flow and the force acting on the valve body 20 pressure difference on the valve body 20 exert a force sufficient to lift the valve body 20 and in the in FIG. 2 shown sealing system to bring the valve seat 21.
- the hollow ball forming the valve body 20 is lighter than oil, so that it floats on an oil level that may rise through the oil return channel 14 and into the oil level FIG. 2 shown closed position, in which the valve body 20 abuts the associated sealing seat 21.
- the second valve 3 is located in FIG. 2 also in closed position.
- the mushroom-shaped valve body 30 covers two valve channels 32, which connect the condensate collecting space 17 with the condensate return channel 15. If suitable pressure conditions are present, in particular if at standstill of the internal combustion engine on both sides of the valve 3, an equal pressure, in particular atmospheric pressure, is present, the weight of accumulated in the condensate collecting space 17 condensate in a position to deform the valve body 30 so that a condensate drain through the valve channels 32 is allowed past the valve body 30.
- the valve body 30 is an elastomeric body having a predetermined flexibility, elasticity and self-restoring force. For ease of assembly of the valve body 30 is in a valve channels 32 having wall within the housing base 10.2 locked. Instead of the mushroom valve, for example, a leaf or tongue valve can be used.
- FIG. 3 shows in the same representation as the FIG. 2 the same section of the ⁇ lnebelabscheider with the two valves 2 and 3, now the valve 2 is in its open position.
- the valve body 20 In this open position, the valve body 20 is within the valve channel 22 downwardly away from the valve seat 21 and there is an annular gap 23 between the outer periphery of the valve body 20 and the inner circumference of the valve channel 22 free, through which an outflow of oil collected in the oil collection chamber 16 below Gravity effect down into the oil return passage 14 is made possible.
- the valve body 20 is held by a not quantified stop, so that a further movement of the valve body 20 down is not possible.
- valve 3 is in FIG. 3 again shown in its closed position, the valve body 30 of the valve 3 assumes due to its own restoring force as soon as the condensate has flowed out of the condensate collection chamber 17 through the valve channels 32 and the valve body 30 is relieved of the weight of the condensate.
- the upper housing part 10.1, the lower housing part 10.2 and that return duct part 10.5 are in the example shown, the ⁇ lnebelabscheiders 1 each one-piece injection molded parts made of plastic or die castings made of light metal, which allows cost-effective mass production.
- FIG. 4 shows in a partial longitudinal section a second oil mist separator 1, also with a separator housing 10 and a separating element arranged therein 11.
- the separation element 11 consists in the second embodiment shown here of a rotatably mounted, rotatably drivable in a conventional manner rotor, which forms a Tellerstapelseparator.
- the separation element 11 in the form of the rotor is here as a rule a service life component of the oil mist separator 1 and must at most be removed from the separator housing 10 in the event of unexpected damage and replaced by a new separation element 11, ie by a new rotor.
- At his in FIG. 4 not visible top is to the separator housing 10 is closed by a removable lid.
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- Engineering & Computer Science (AREA)
- Mechanical Engineering (AREA)
- General Engineering & Computer Science (AREA)
- Lubrication Details And Ventilation Of Internal Combustion Engines (AREA)
Description
Die vorliegende Erfindung betrifft einen Ölnebelabscheider einer Kurbelgehäuseentlüftungseinrichtung einer Brennkraftmaschine, mit einem Abscheidergehäuse, mit einem Rohgas aus dem Kurbelgehäuse der Brennkraftmaschine in einen Rohgasbereich des Abscheiders führenden Rohgaskanal, mit einem Reingas aus einem Reingasbereich des Abscheiders abführenden Reingaskanal und mit einem aus dem Kurbelgehäuseentlüftungsgas abgeschiedenes Öl in das Kurbelgehäuse der Brennkraftmaschine zurückführenden Ölrückführkanal, in dessen Verlauf ein Ventil angeordnet ist, welches den Ölrückführkanal bei Unterschreiten einer vorgebbaren Druckdifferenz zwischen den beiden Seiten des Ventils öffnet.The present invention relates to a Ölnebelabscheider a crankcase ventilation device of an internal combustion engine, with a separator housing, with a raw gas from the crankcase of the internal combustion engine in a Rohgasbereich the separator leading raw gas duct, with a clean gas from a clean gas region of the separator discharging clean gas duct and with a separated from the crankcase ventilation gas in oil the crankcase of the internal combustion engine recirculating oil return passage, in the course of which a valve is arranged, which opens the oil return passage falls below a predetermined pressure difference between the two sides of the valve.
Ein Ölnebelabscheider mit den vorstehend angegebenen Merkmalen ist aus
Als nachteilig wird bei diesem bekannten Ölnebelabscheider angesehen, dass bei einem Aufsteigen von Öl vom Kurbelgehäuse her in den Ölrückführkanal, was bei ungünstigen Druckverhältnissen geschehen kann, ein störendes Eintreten von Öl in die Rohseite des Ölnebelabscheiders nicht sicher ausgeschlossen werden kann. Ein zweiter Nachteil dieses bekannten Ölnebelabscheiders wird darin gesehen, dass er in seiner Ausführung mit Kondensatrückführung aus dem Rohgaskanal zwei getrennte Leitungen, nämlich eine erste Leitung für den Ölrückführkanal und eine zweite Leitung für den Kondensatrückführkanal, vom Abscheidergehäuse zum Kurbelgehäuse benötigt. Hierdurch wird ein hoher Montageaufwand beim Anschließen des Ölnebelabscheiders an die zugehörige Brennkraftmaschine hervorgerufen.A disadvantage is considered in this known Ölnebelabscheider that an increase of oil from the crankcase forth in the oil return passage, which can happen at unfavorable pressure conditions, a disturbing entry of oil in the raw side of the oil mist can not be safely excluded. One second disadvantage of this known oil mist separator is seen in the fact that it requires in its design with condensate return from the Rohgaskanal two separate lines, namely a first line for the oil return passage and a second line for the condensate return passage from the separator housing to the crankcase. As a result, a high installation effort when connecting the Ölnebelabscheiders is caused to the associated internal combustion engine.
Für die vorliegende Erfindung stellt sich daher die Aufgabe, einen Ölnebelabscheider der eingangs genannten Art zu schaffen, der die angegebenen Nachteile vermeidet und mit dem einerseits ein zuverlässiger und störungsfreier Betrieb auch bei ungünstigen Druckverhältnissen gewährleistet wird und andererseits ein verminderter Montageaufwand erreicht wird.For the present invention, therefore, the object is to provide an oil mist separator of the type mentioned, which avoids the disadvantages mentioned and with the one hand, a reliable and trouble-free operation is ensured even under unfavorable pressure conditions and on the other hand, a reduced installation effort is achieved.
Die Lösung dieser Aufgabe gelingt erfindungsgemäß mit einem Ölnebelabscheider der eingangs genannten Art, der dadurch gekennzeichnet ist, dass das Ventil als Ventilkörper einen Schwimmkörper aufweist, dessen Dichte kleiner als die Dichte von Öl ist und der durch einen vom Kurbelgehäuse her ansteigenden Ölspiegel im Ölrückführkanal in seine Schließstellung gegen einen Ventilsitz anhebbar ist, und dass das Gewicht des Ventilkörpers und die Maße eines den Ventilkörper umgebenden Ventilkanals so aufeinander abgestimmt sind, dass bei Erreichen einer vorgebbaren Geschwindigkeit eines Gasstroms im Ventilkanal in Richtung vom Kurbelgehäuse zum Abscheidergehäuse der Ventilkörper durch den Gasstrom und eine auf den Ventilkörper wirkende Gasdruckdifferenz in seine Schließstellung gegen den Ventilsitz anhebbar ist.The solution of this object is achieved according to the invention with a Ölnebelabscheider of the type mentioned, which is characterized in that the valve as a valve body has a floating body whose density is smaller than the density of oil and by a rising from the crankcase ago oil level in the oil return channel in his Closed position against a valve seat can be raised, and that the weight of the valve body and the dimensions of the valve body surrounding the valve channel are coordinated so that upon reaching a predetermined speed of a gas flow in the valve passage in the direction of the crankcase to the separator housing the valve body by the gas flow and on the gas pressure difference acting on the valve body in its closed position against the valve seat can be raised.
Mit der Erfindung wird ein Ölnebelabscheider geschaffen, dessen Ventil zwei Ventilfunktionen in sich vereint, nämlich die Funktion eines Schwimmerventils und die Funktion eines Rückschlagventils. Die Funktion des Schwimmerventils kommt immer dann zum Tragen, wenn aufgrund ungünstiger Druckverhältnisse Öl aus dem Kurbelgehäuse der Brennkraftmaschine durch den Ölrückführkanal nach oben in Richtung zum Abscheidergehäuse gedrückt wird. Sobald der ansteigende Ölspiegel den Ventilkörper erreicht, schwimmt dieser auf dem Öl auf und wird dadurch in dichtende Anlage an seinen Ventilsitz gebracht, wodurch das Ventil schließt. Somit kann Öl aus dem Kurbelgehäuse höchstens bis zu dem Ventil, nicht jedoch weiter, insbesondere nicht in den Reingasbereich des Abscheiders, gelangen. Die Funktion des Rückschlagventils kommt immer dann zum Tragen, wenn durch den Ölrückführkanal Gas aus dem Kurbelgehäuse in Richtung zum Abscheidergehäuse des Ölnebelabscheiders strömt. Durch eine passende Abstimmung des Gewichts des Ventilkörpers und der Maße des den Ventilkörper umgebenden Ventilkanals wird sichergestellt, dass bei Erreichen einer vorgebbaren Gasgeschwindigkeit im Ventilkanal und infolge einer dadurch verursachten Gasdruckdifferenz auf den beiden Seiten des Ventilkörpers dieser angehoben und in dichtende Anlage an seinen Ventilsitz gebracht wird. Somit wird mit demselben Ventil auch eine unerwünschte Gasströmung aus dem Kurbelgehäuse durch den Ölrückführkanal in das Abscheidergehäuse zumindest weitestgehend verhindert. Bei geeigneter Wahl der vorgenannten Parameter kann schon eine geringe Gasgeschwindigkeit für das gewünschte Schließen des Ventils sorgen. Da nur ein einziges Ventil zur Erzielung der zwei Ventilfunktionen benötigt wird, ist vorteilhaft auch nur ein entsprechend geringer Teile- und Montageaufwand erforderlich. Gleichzeitig sorgt das Ventil aufgrund seiner doppelten Funktion für eine besonders hohe Betriebssicherheit des Ölnebelabscheiders, was zur Einhaltung von einschlägigen Emissionsgrenzwerten der zugehörigen Brennkraftmaschine beiträgt.The invention provides an oil mist separator whose valve combines two valve functions, namely the function of a float valve and the function of a check valve. The function of the float valve always comes into play when, due to unfavorable pressure conditions, oil is forced out of the crankcase of the internal combustion engine through the oil return channel upwards in the direction of the separator housing. As soon as the rising oil level reaches the valve body, it floats on the oil and is thereby brought into sealing contact with its valve seat, whereby the valve closes. Thus, oil from the crankcase at most to the valve, but not further, in particular not in the clean gas region of the separator, get. The function of the check valve always comes into play when passing through the oil return channel Gas from the crankcase flows towards the separator housing of the oil mist separator. By a suitable vote of the weight of the valve body and the dimensions of the valve body surrounding the valve channel ensures that upon reaching a predetermined gas velocity in the valve channel and due to a gas pressure difference caused thereby on the two sides of the valve body this is raised and placed in sealing contact with its valve seat , Thus, an undesirable gas flow from the crankcase through the oil return passage in the separator housing is at least largely prevented with the same valve. With a suitable choice of the aforementioned parameters, even a low gas velocity can ensure the desired closing of the valve. Since only a single valve is required to achieve the two valve functions, advantageously only a correspondingly low parts and assembly effort is required. At the same time, due to its dual function, the valve ensures a particularly high operational reliability of the oil mist separator, which contributes to compliance with relevant emission limit values of the associated internal combustion engine.
Eine bevorzugte Ausgestaltung des Ölnebelabscheiders sieht vor, dass der Ventilkörper eine hohle Kugel ist und dass der den Ventilkörper umgebende Ventilkanal im Querschnitt rund ist und mit dem Ventilkörper in dessen Öffnungsstellung einen radialen Ringspalt bildet. In dieser Ausführung ist der Ventilkörper in seiner Funktion lageunabhängig, was zu einem zuverlässigen Betrieb wesentlich beiträgt. Außerdem ergibt sich so eine symmetrische Beaufschlagung des Ventilkörpers, wenn er von Gas aus dem Kurbelgehäuse angeströmt wird, was zu einer sicheren Funktion des Ventils als Rückschlagventil beiträgt.A preferred embodiment of the oil mist separator provides that the valve body is a hollow ball and that the valve channel surrounding the valve channel is round in cross-section and forms a radial annular gap with the valve body in its open position. In this embodiment, the valve body is functionally independent of position, which contributes significantly to reliable operation. In addition, this results in a symmetrical loading of the valve body when it is flowed by gas from the crankcase, which contributes to a safe operation of the valve as a check valve.
Da das Ventil im Ölrückführkanal nur bei Vorliegen geeigneter Druckverhältnisse, insbesondere bei Stillstand der zugehörigen Brennkraftmaschine, öffnet, ist zweckmäßig stromauf des Ventils im Abscheidergehäuse ein Ölsammelraum ausgebildet. Das Volumen des Ölsammelraums ist dabei dem Bedarf entsprechend zu wählen, um für alle denkbaren betrieblichen Situationen die Aufnahme einer ausreichenden Menge an Öl zu gewährleisten.Since the valve in the oil return passage opens only in the presence of suitable pressure conditions, in particular when the associated internal combustion engine is at a standstill, an oil collecting space is expediently formed upstream of the valve in the separator housing. The volume of the oil collection chamber should be selected according to the requirements in order to ensure the absorption of a sufficient amount of oil for all conceivable operational situations.
Aus der einschlägigen Praxis ist es bekannt, dass sich im Verlauf des vom Kurbelgehäuse der Brennkraftmaschine zum Ölnebelabscheider führenden Rohgaskanals, insbesondere infolge von Abkühlung und/oder Strömungsumlenkung, Kondensat niederschlägt. Um den Ölnebelabscheider von diesem Kondensat zu entlasten, ist es, wie weiter oben schon erwähnt, bekannt, einen Kondensatrückführkanal von einer in Betrieb des Ölnebelabscheiders tiefsten Stelle des Rohgaskanals zum Kurbelgehäuse der Brennkraftmaschine zu führen, was aber mit dem Nachteil einer zusätzlichen Leitung verbunden ist. Um eine eigene Kondensatrückführleitung vom Ölnebelabscheider bis zum Kurbelgehäuse zu vermeiden, schlägt die Erfindung vor, dass von einer in Betriebsstellung des Ölnebelabscheiders tiefsten Stelle des Rohgaskanals ein Kondensatrückführkanal abzweigt und dass der Kondensatrückführkanal stromab des im Ölrückführkanal angeordneten, ersten Ventils in den Ölrückführkanal mündet. Vorteilhaft wird damit der Ölrückführkanal auch für die Rückführung des Kondensats aus dem Rohgaskanal genutzt, so dass eine einzige Leitung als kombinierter Öl- und Kondensatrückführkanal vom Ölnebelabscheider zum Kurbelgehäuse ausreicht. Dies vereinfacht das Anschließen des Ölnebelabscheiders an die zugehörige Brennkraftmaschine und vermindert die Zahl der nötigen Einzelteile.From the relevant practice, it is known that in the course of leading from the crankcase of the internal combustion engine to the oil mist separator raw gas channel, in particular as a result of cooling and / or flow deflection, condensate reflected. To relieve the Ölnebelabscheider of this condensate, it is, as already mentioned above, known to lead a condensate return passage of a running in operation of the oil mist separator deepest point of Rohgaskanals to the crankcase of the internal combustion engine, but this is associated with the disadvantage of an additional line. In order to avoid its own condensate return line from the oil mist separator to the crankcase, the invention proposes that a condensate return duct branches off from a operating point of the oil mist separator deepest point of the Rohgaskanals and that the condensate return duct downstream of the arranged in the oil return passage, first valve opens into the oil return passage. Advantageously, so that the oil return channel is also used for the return of the condensate from the raw gas channel, so that a single line is sufficient as a combined oil and condensate return from the oil mist separator to the crankcase. This simplifies the connection of the Ölnebelabscheiders to the associated internal combustion engine and reduces the number of necessary items.
In einer weiteren Ausgestaltung wird vorgeschlagen, dass im Kondensatrückführkanal ein zweites Ventil angeordnet ist, welches den Kondensatrückführkanal bei Unterschreiten einer vorgebbaren Druckdifferenz zwischen den beiden Seiten des zweiten Ventils öffnet. Hiermit wird gewährleistet, dass das vor dem zweiten Ventil gesammelte Kondensat nur bei Vorliegen geeigneter Druckverhältnisse, insbesondere bei Stillstand der zugehörigen Brennkraftmaschine, in das Kurbelgehäuse abgelassen wirf. Eine unerwünschte, störende Gasströmung durch den Kondensatrückführkanal gegen die Kondensatfließrichtung wird durch das zweite Ventil vermieden.In a further embodiment, it is proposed that in the condensate return duct, a second valve is arranged, which opens the condensate return duct falls below a predetermined pressure difference between the two sides of the second valve. This ensures that the condensate collected before the second valve is discharged into the crankcase only in the presence of suitable pressure conditions, in particular when the associated internal combustion engine is at a standstill. An undesirable, disturbing gas flow through the condensate return duct against the condensate flow direction is avoided by the second valve.
Insbesondere zur Erzielung einer kompakten Bauweise und einer kostengünstigen Herstellung wird weiter vorgeschlagen, dass der Kondensatrückführkanal und die Einmündung des Kondensatrückführkanals in den Ölrückführkanal und das ggf. im Kondensatrückführkanal angeordnete zweite Ventil in das Abscheidergehäuse integriert sind.In particular, to achieve a compact design and a cost-effective production is further proposed that the condensate return channel and the mouth of the condensate return channel in the oil return passage and possibly arranged in the condensate return passage second valve are integrated into the separator housing.
Da das zweite, im Kondensatrückführkanal angeordnete Ventil, ebenso wie das erste Ventil im Ölrückführkanal, nur bei Vorliegen geeigneter Druckverhältnisse, insbesondere bei Stillstand der zugehörigen Brennkraftmaschine, öffnet, ist zweckmäßig stromauf des zweiten Ventils im Abscheidergehäuse ein Kondensatsammelraum ausgebildet. Hierin kann sich ohne Störung der Funktion des Ölnebelabscheiders Kondensat sammeln, bis es durch Öffnen des zweiten Ventils abgeleitet wird.Since the second, arranged in the condensate return valve, as well as the first valve in the oil return passage, only in the presence of suitable pressure conditions, especially at standstill of the associated internal combustion engine opens, is expedient upstream of the second valve in the separator housing a condensate collecting space educated. Herein condensate can accumulate without disturbing the function of the oil mist separator until it is discharged by opening the second valve.
Um den Ölnebelabscheider zum Zweck der Öl- und Kondensatrückführung möglichst einfach mit der zugehörigen Brennkraftmaschine verbinden zu können, ist bevorzugt vorgesehen, dass ein in Ölströmungsrichtung gesehen stromab des ersten Ventils liegender Abschnitt des Ölrückführkanals als aus dem Abscheidergehäuse vorragender Schlauch- oder Rohranschlussstutzen ausgebildet ist. An den Anschlussstutzen kann dann mit geringem Aufwand eine flexible Schlauchleitung oder eine stabile Rohrleitung angeschlossen werden, deren anderes Ende mit dem Kurbelgehäuse der zugehörigen Brennkraftmaschine verbunden wird.In order to connect the oil mist separator for the purpose of oil and condensate return as simple as possible with the associated internal combustion engine, it is preferably provided that viewed in the oil flow direction downstream of the first valve portion of the oil return channel is formed as protruding from the separator housing hose or pipe connection piece. At the connecting piece then a flexible hose or a stable pipe can be connected with little effort, the other end is connected to the crankcase of the associated internal combustion engine.
Der erfindungsgemäße Ölnebelabscheider kann hinsichtlich der Mittel oder der Mechanismen, die in ihm zur Abscheidung von Ölnebel aus dem Kurbelgehäuseentlüftungsgas eingesetzt werden, unterschiedlich und praktisch beliebig ausgeführt werden. In einer ersten bevorzugten diesbezüglichen Ausgestaltung ist für den erfindungsgemäßen Ölnebelabscheider vorgesehen, dass im Abscheidergehäuse mindestens ein Faser- oder Vlieskörper als Abscheideelement angeordnet ist. Mit einem solchen Abscheideelement wird eine wirksame Abscheidung von Ölnebel aus dem Kurbelgehäuseentlüftungsgas gewährleistet. Gleichzeitig sind derartige Abscheideelemente in der Lage, das darin abgeschiedene Öl unter Schwerkraftwirkung nach unten hin abzuführen und abzugeben, so dass eine lange Betriebszeit erreicht wird, bevor das Abscheideelement durch ein neues Element ersetzt werden muss. In einer zweiten bevorzugten diesbezüglichen Ausgestaltung ist vorgesehen, dass im Abscheidergehäuse ein drehantreibbarer Rotor als Abscheideelement angeordnet ist. Auch mit einem solchen aktiven Abscheideelement wird eine wirksame Abscheidung von Ölnebel aus dem Kurbelgehäuseentlüftungsgas gewährleistet, wobei in der Regel ein Rotor im Vergleich mit einem Faser- oder Vlieskörper vorteilhaft eine längere Lebensdauer hat oder sogar ein Lebensdauerbauteil des Abscheiders ist, das nie erneuert werden muss. In einer bevorzugten weiteren Alternative kann das Abscheideelement durch mindestens einen Zyklon gebildet sein.The oil mist separator according to the present invention can be made variously and practically arbitrarily in terms of the means or mechanisms employed therein for separating oil mist from the crankcase ventilation gas. In a first preferred embodiment in this respect, it is provided for the oil mist separator according to the invention that at least one fibrous or nonwoven body is arranged as a separating element in the separator housing. With such a separation element, effective separation of oil mist from the crankcase ventilation gas is ensured. At the same time, such separation elements are able to dissipate and discharge the oil deposited therein under the action of gravity so that a long operating time is achieved before the separation element has to be replaced by a new element. In a second preferred embodiment, it is provided that a rotatably drivable rotor is arranged as a separating element in the separator housing. Even with such an active separation element, effective separation of oil mist from the crankcase ventilation gas is ensured, and as a rule, a rotor advantageously has a longer life in comparison with a fiber or nonwoven body, or even a lifetime component of the precipitator which never has to be renewed. In a preferred further alternative, the separation element can be formed by at least one cyclone.
Schließlich wird erfindungsgemäß vorgeschlagen, dass das Abscheidergehäuse mit Ausnehme eines oberseitigen, abnehmbaren Deckels einstückig ausgeführt oder aus mehreren miteinander verbundenen, wie verschweißten oder verklebten oder verrasteten, Einzelteilen zusammengesetzt ist. Eine einstückige Ausführung ist besonders kostengünstig im Spritzgussverfahren aus Kunststoff herstellbar. Auch eine Ausführung aus mehreren, bevorzugt möglichst wenigen, Einzelteilen ist noch kostengünstig in der Fertigung und erlaubt auch solche geometrischen Gestaltungen, die einstückig nicht darstellbar sind. Der abnehmbare Deckel erlaubt einen einfachen Austausch eines Abscheideelementes bei der Wartung des Ölnebelabscheiders.Finally, the invention proposes that the separator housing is made in one piece with the exception of a top, removable cover or composed of several interconnected, such as welded or glued or latched, items composed. A one-piece design is special inexpensive injection-molded plastic. An embodiment of several, preferably as few as possible, individual parts is still inexpensive to manufacture and also allows such geometric designs that are not integrally represented. The removable lid allows easy replacement of a separating element during maintenance of the oil mist separator.
Im Folgenden wird ein Ausführungsbeispiel der Erfindung anhand einer Zeichnung erläutert. Die Figuren der Zeichnung zeigen:
Figur 1- einen Ölnebelabscheider in einer ersten Ausführung in einem Teil-Längsschnitt durch seinen unteren Bereich,
Figur 2- einen vergrößerten Ausschnitt aus dem Ölnebelabscheider gemäß
im Bereich zweier Ventile, in einem ersten Betriebszustand, im Längsschnitt,Figur 1 Figur 3- den gleichen Ausschnitt wie
, in einem zweiten Betriebszustand, ebenfalls im Längsschnitt, undFigur 2 - Figur 4
- den Ölnebelabscheider in einer zweiten Ausführung, wieder in einem Teil-Längsschnitt durch seinen unteren Bereich.
- FIG. 1
- a Ölnebelabscheider in a first embodiment in a partial longitudinal section through its lower portion,
- FIG. 2
- an enlarged section of the oil mist according to
FIG. 1 in the region of two valves, in a first operating state, in longitudinal section, - FIG. 3
- the same section as
FIG. 2 , in a second operating state, also in longitudinal section, and - FIG. 4
- the oil mist separator in a second embodiment, again in a partial longitudinal section through its lower portion.
Das Abscheidergehäuse 10 umfasst ein in
Ganz unten in
Radial außen von dem Abscheideelement 11 befindet sich im Abscheidergehäuse 10 eine Ölsammelrinne 10.4, die über mindestens eine in
Von dem in Einbaulage des Ölnebelabscheiders 1 tiefsten Bereich des Rohgaskanals 12 geht ein Kondensatrückführkanal 15 nach unten hin ab, welcher stromab, also unterhalb, des Ventils 2 in den Ölrückführkanal 14 an der Einmündung 18 einmündet. Im Verlauf des Kondensatrückführkanals 15 ist ein weiteres, zweites Ventil 3 angeordnet.From the deepest in installation position of the
Im Betrieb des Ölnebelabscheiders 1 wird diesem durch den Rohgaskanal 12 aus dem Kurbelgehäuse einer zugehörigen Brennkraftmaschine kommendes, mit Ölnebel befrachtetes Kurbelgehäuseentlüftungsgas zugeführt, welches zunächst in den im Inneren des Abscheideelementes 11 liegenden Rohgasbereich 11.1 gelangt. Von dort durchströmt das Gas das Abscheideelement 11 in Radialrichtung von innen nach außen und tritt als vom Ölnebel befreites Reingas in den Reingasbereich 11.2 radial außen von dem Abscheideelement 11 ein. Von dort wird das Reingas über einen in der Zeichnung nicht sichtbaren Reingaskanal abgeführt, üblicherweise in den Ansaugtrakt der Brennkraftmaschine.During operation of the
Das in dem Abscheideelement 11 aus dem Gasstrom abgeschiedene Öl gelangt unter Schwerkraftwirkung innerhalb des Abscheideelementes 11 nach unten und tritt aus dem Abscheideelement 11 in die Ölsammelrinne 10.4 über. Aus der Ölsammelrinne 10.4 fließt das abgeschiedene Öl weiter unter Schwerkraftwirkung in den Ölsammelraum 16 und sammelt sich in diesem. Ein weiterer Fluss des Öls ist hier im Betrieb der zugehörigen Brennkraftmaschine verhindert, weil das Ventil 2 im Ölrückführkanal 14 seine Schließstellung einnimmt, in der sein Ventilkörper 20 an dem zugehörigen Ventilsitz 21 dichtend anliegt. Diese Schließstellung nimmt das Ventil 2 unter zwei Bedingungen ein, nämlich a) wenn eine Gasdruckdifferenz zwischen den beiden Seiten des Ventils 2 vorliegt, welche in der Lage ist, den als hohle Kugel ausgebildeten, entsprechend leichten Ventilkörper 20 anzuheben und in Anlage an dem Ventilsitz 21 zu bringen oder b) wenn Öl in dem Ölrückführkanal 14 vom Kurbelgehäuse der zugehörigen Brennkraftmaschine kommend bis zu dem Ventil 2 ansteigt und die den Ventilkörper 20 bildende hohle Kugel auf dem Öl aufschwimmt und so in Anlage an den Ventilsitz 21 gebracht wird. Das Ventil 2 vereint also in sich die Funktionen eines Rückschlagventils und eines Schwimmerventils.The separated in the
Das Ventil 3 in dem Kondensatrückführkanal 15 ist hier als Pilzventil mit einem Ventilkörper aus einem Elastomer ausgebildet. Auch das Ventil 3 befindet sich während des Betriebes der zugehörigen Brennkraftmaschine in seiner Schließstellung, so dass sich im Rohgaskanal 12 schon niedergeschlagenes Kondensat in dem dem Kondensatrückführkanal 15 und dem Ventil 3 vorgeschalteten Kondensatsammelraum 17 sammelt.The
Wenn entsprechende Druckverhältnisse beiderseits der beiden Ventile 2 und 3 vorliegen, was insbesondere bei Stillstand der zugehörigen Brennkraftmaschine der Fall ist, öffnen die beiden Ventile 2 und 3. Im geöffneten Zustand der Ventile 2 und 3 kann einerseits das im Ölsammelraum 16 gesammelte Öl über das Ventil 2 und anderseits das im Kondensatsammelraum 17 gesammelte Kondensat über das Ventil 3 und den Kondensatrückführkanal 15 abfließen, wobei die beiden Ströme stromab der Ventile 2 und 3 in dem Ölrückführkanal 14 vereinigt werden und durch diesen der Ölwanne oder dem Kurbelgehäuse der Brennkraftmaschine zugeführt werden. Das Öffnen der Ventile 2 und 3 wird dabei von dem hydrostatischen Druck des im Ölsammelraum 16 gesammelten Öls beziehungsweise des im Kondensatsammelraum 17 gesammelten Kondensats unterstützt.If appropriate pressure conditions on both sides of the two
Wird die Brennkraftmaschine erneut in Betrieb gesetzt, sorgen die dann entstehenden Druckverhältnisse auf den beiden Seiten der Ventile 2 und 3 dafür, dass diese wieder ihre in
Das im Kondensatrückführkanal 15 angeordnete, zweite Ventil 3 befindet sich in
Das Ventil 3 ist in
Wie die
Das Gehäuseoberteil 10.1, das Gehäuseunterteil 10.2 und dass Rückführkanalteil 10.5 sind bei dem gezeigten Beispiel des Ölnebelabscheiders 1 jeweils einstückige Spritzgussteile aus Kunststoff oder Druckgussteile aus Leichtmetall, was eine kostengünstige Massenfertigung ermöglicht.The upper housing part 10.1, the lower housing part 10.2 and that return duct part 10.5 are in the example shown, the
In seinen weiteren Eigenschaften und Funktionen entspricht der Ölnebelabscheider 1 gemäß
Claims (10)
- An oil mist separator (1) of a crankcase ventilation device of an internal combustion engine, comprising a separator housing (10), a raw gas channel (12) conducting raw gas out of the crankcase of the internal combustion engine into a raw gas region (11.1) of the separator (1), a clean gas channel discharging clean gas out of a clean gas region (11.2) of the separator (1), and an oil recirculation channel (14) recirculating oil separated from the crankcase ventilation gas into the crankcase of the internal combustion engine, with a valve (2), which opens the oil recirculation channel (14) if a predeterminable pressure difference between the two sides of the valve (2) is no longer met, being arranged in the course of said oil recirculation channel,
characterised in- that the valve (2) has a floating body as a valve body (20), the density of said floating body being lower than the density of oil and said floating body can be raised into the closed position thereof against a valve seat (21) by an oil level in the oil recirculation channel (14) that rises starting from the crankcase, and- that the weight of the valve body (20) and the size of a valve channel (22) enclosing the valve body (20) are matched to each other such that, when a predeterminable velocity of a gas flow is reached in the valve channel (22) in the direction from the crankcase to the separator housing (10), the valve body (20) can be raised against the valve seat (21) into the closed position thereof by the gas flow and a gas pressure difference acting on the valve body (20). - The oil mist separator according to claim 1, characterised in that the valve body (20) is a hollow sphere and that the cross section of the valve channel (22) surrounding the valve body (20) is round and forms a radial annular gap (23) with the valve body (20) in the open position thereof.
- The oil mist separator according to claim 1 or 2, characterised in that an oil collecting chamber (16) is embodied upstream of the valve (2) in the separator housing (10).
- The oil mist separator according to any one of claims 1 to 3, characterised in that a condensate recirculating channel (15) branches out from a position of the raw gas channel (12), which is lowest in operating position of the oil mist separator (1), and that the condensate recirculating channel (15) leads into the oil recirculating channel (14) downstream from the first valve (2) arranged in the oil recirculating channel (14).
- The oil mist separator according to claim 4, characterised in that a second valve (3), which opens the condensate recirculating channel (15) when a predeterminable pressure difference between the two sides of the second valve (3) is no longer met, is arranged in the condensate recirculating channel (15).
- The oil mist separator according to claim 4 or 5, characterised in that the condensate recirculating channel (15) and the junction (18) of the condensate recirculating channel (15) into the oil recirculating channel (14) and, if applicable, the second valve (3) arranged in the condensate recirculating channel (15) are integrated into the separator housing (10).
- The oil mist separator according to any one of claims 5 or 6, characterised in that a condensate collection chamber (17) is embodied upstream of the second valve (3) in the separator housing (10).
- The oil mist separator according to any one of claims 1 to 7, characterised in that a section of the oil recirculating channel (14) located downstream from the first valve (2), viewed in oil flow direction, is embodied as tube or pipe connecting piece (19), which projects from the separator housing (10).
- The oil mist separator according to any one of claims 1 to 8, characterised in that at least one fibre or nonwoven body or a rotationally drivable rotor or at least one cyclone is arranged in the separator housing (10) as separating element (11).
- The oil mist separator according to any one of claims 1 to 9, characterised in that, with the exception of an upper, removable lid, the separator housing (10) is embodied in one piece or is made up of a plurality of individual parts (10.1, 10.2, 10.5), which are connected to one another, for example welded or glued or locked.
Applications Claiming Priority (2)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
DE102010027783A DE102010027783A1 (en) | 2010-04-15 | 2010-04-15 | Oil mist separator of a crankcase ventilation device of an internal combustion engine |
PCT/EP2011/055782 WO2011141258A1 (en) | 2010-04-15 | 2011-04-13 | Oil mist separator of a crankcase ventilation device of an internal combustion engine |
Publications (2)
Publication Number | Publication Date |
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EP2558690A1 EP2558690A1 (en) | 2013-02-20 |
EP2558690B1 true EP2558690B1 (en) | 2015-10-28 |
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ID=44310942
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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EP11719207.0A Active EP2558690B1 (en) | 2010-04-15 | 2011-04-13 | Oil mist separator of a crankcase ventilation device of an internal combustion engine |
Country Status (3)
Country | Link |
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EP (1) | EP2558690B1 (en) |
DE (1) | DE102010027783A1 (en) |
WO (1) | WO2011141258A1 (en) |
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
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DE202016102827U1 (en) * | 2016-05-27 | 2017-09-18 | 3Nine Ab | oil separator |
DE102017201896A1 (en) | 2017-02-07 | 2018-08-09 | Mahle International Gmbh | Method for venting a crankcase of an internal combustion engine and associated device |
Families Citing this family (5)
Publication number | Priority date | Publication date | Assignee | Title |
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DE102010062321B4 (en) * | 2010-12-02 | 2023-10-12 | Elringklinger Ag | Oil separator unit |
DE102014220811B4 (en) | 2014-10-14 | 2023-02-16 | Elringklinger Ag | drainage device |
CN108301935B (en) * | 2018-03-28 | 2024-02-20 | 潍柴动力股份有限公司 | Oil-gas separator shell and diesel vehicle |
DE102019004377A1 (en) * | 2019-06-19 | 2020-12-24 | Deutz Aktiengesellschaft | Oil return valve for a crankcase ventilation system |
CH717661A1 (en) * | 2020-07-15 | 2022-01-31 | Liebherr Machines Bulle Sa | Aerosol separator for separating aerosols in a blow-by gas. |
Family Cites Families (10)
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DE3707271C1 (en) * | 1987-03-06 | 1988-05-19 | Mannesmann Kienzle Gmbh | Valve arrangement for a gas separator |
JPH0988542A (en) * | 1995-09-19 | 1997-03-31 | Kubota Corp | Blowby gas processing device for engine |
JP4627955B2 (en) * | 2000-05-24 | 2011-02-09 | パーカー−ハニフイン・コーポレーシヨン | Safety cutoff valve for crankcase emission control system |
EP1394372B1 (en) * | 2002-08-22 | 2007-04-11 | Perkins Engines Company Limited | Combined shut-off valve and cover for an engine breather system |
US6907869B2 (en) | 2003-01-17 | 2005-06-21 | Parker-Hannifin Corporation | Filter element and assembly with continuous drain |
DE102006018783A1 (en) * | 2005-04-22 | 2007-02-08 | Mann + Hummel Gmbh | Valve in crankcase venting system, used to return intercepted oil to sump, is associated with float assuring reliable closure under unfavorable differential pressure conditions |
FR2910051A3 (en) * | 2006-12-14 | 2008-06-20 | Renault Sas | Decanting oil evacuating device for internal combustion engine, has cannula whose outlet cooperates with ball, to permit flow of oil and prevent flow of oil and gas, during normal functioning and malfunctioning, respectively |
DE202007011585U1 (en) * | 2007-08-17 | 2007-10-18 | Dichtungstechnik G. Bruss Gmbh & Co. Kg | Oil return valve for crankcase ventilation |
DE202008002928U1 (en) * | 2008-02-29 | 2009-07-09 | Mann+Hummel Gmbh | Liquid separator with non-return valve, especially for cleaning crankcase gases |
FR2932843B1 (en) * | 2008-06-24 | 2010-08-20 | Mann & Hummel Gmbh | OIL PURGING DEVICE FOR MOTOR ENGINE OIL IN PARTICULAR MOTOR VEHICLE MOTOR AND METHOD OF MANUFACTURING SUCH A DEVICE. |
-
2010
- 2010-04-15 DE DE102010027783A patent/DE102010027783A1/en not_active Withdrawn
-
2011
- 2011-04-13 EP EP11719207.0A patent/EP2558690B1/en active Active
- 2011-04-13 WO PCT/EP2011/055782 patent/WO2011141258A1/en active Application Filing
Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
DE202016102827U1 (en) * | 2016-05-27 | 2017-09-18 | 3Nine Ab | oil separator |
DE102017201896A1 (en) | 2017-02-07 | 2018-08-09 | Mahle International Gmbh | Method for venting a crankcase of an internal combustion engine and associated device |
DE102017201896B4 (en) | 2017-02-07 | 2022-10-20 | Mahle International Gmbh | Method for venting a crankcase of an internal combustion engine and associated device |
Also Published As
Publication number | Publication date |
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WO2011141258A1 (en) | 2011-11-17 |
EP2558690A1 (en) | 2013-02-20 |
DE102010027783A1 (en) | 2011-10-20 |
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