WO2017115251A1 - Unité de réglage de l'élévation des soupapes d'un moteur à combustion interne. - Google Patents

Unité de réglage de l'élévation des soupapes d'un moteur à combustion interne. Download PDF

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Publication number
WO2017115251A1
WO2017115251A1 PCT/IB2016/057974 IB2016057974W WO2017115251A1 WO 2017115251 A1 WO2017115251 A1 WO 2017115251A1 IB 2016057974 W IB2016057974 W IB 2016057974W WO 2017115251 A1 WO2017115251 A1 WO 2017115251A1
Authority
WO
WIPO (PCT)
Prior art keywords
mobile
shutter
rod
adjustment unit
mobile rod
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.)
Ceased
Application number
PCT/IB2016/057974
Other languages
English (en)
Inventor
Giovambattista Vaccaro
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Individual
Original Assignee
Individual
Priority date (The priority date 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 date listed.)
Filing date
Publication date
Application filed by Individual filed Critical Individual
Publication of WO2017115251A1 publication Critical patent/WO2017115251A1/fr
Anticipated expiration legal-status Critical
Ceased legal-status Critical Current

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Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F01MACHINES OR ENGINES IN GENERAL; ENGINE PLANTS IN GENERAL; STEAM ENGINES
    • F01LCYCLICALLY OPERATING VALVES FOR MACHINES OR ENGINES
    • F01L1/00Valve-gear or valve arrangements, e.g. lift-valve gear
    • F01L1/20Adjusting or compensating clearance
    • F01L1/22Adjusting or compensating clearance automatically, e.g. mechanically
    • F01L1/24Adjusting or compensating clearance automatically, e.g. mechanically by fluid means, e.g. hydraulically
    • F01L1/2405Adjusting or compensating clearance automatically, e.g. mechanically by fluid means, e.g. hydraulically by means of a hydraulic adjusting device located between the cylinder head and rocker arm
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F01MACHINES OR ENGINES IN GENERAL; ENGINE PLANTS IN GENERAL; STEAM ENGINES
    • F01LCYCLICALLY OPERATING VALVES FOR MACHINES OR ENGINES
    • F01L13/00Modifications of valve-gear to facilitate reversing, braking, starting, changing compression ratio, or other specific operations
    • F01L13/0005Deactivating valves

Definitions

  • the invention regards a unit for adjusting the lift of the valves of an internal combustion engine.
  • internal combustion engines are combustion vehicles that thermodynamically process an operating fluid that is exchanged with the external environment through inlet and outlet openings controlled by means of valves.
  • valves are directly or indirectly controlled through mechanical means called tappets which comprise rocker arms actuated by rotating cams whose profile determines the degree and speed of the opening and closure of the aforementioned valves.
  • cams are associated to a rotating shaft, thus called camshaft, which rotates at half the speed of the driving shaft and it is controlled by the latter by means of a kinematic unit comprising pulleys driven in rotation by cogged belts, gearwheels and chains, or a gear train.
  • the engine displacement capacity may be varied by deactivating one or more cylinders with an ensuing considerable reduction of consumption and pollutant emissions of the engine.
  • the cyclic exclusion of cylinders may represent an efficient method for reducing pumping losses and to increase the actual mean pressure in the operating cylinders, so as to ensure a clean and stable combustion.
  • a first object of the present invention is to obtain a unit for adjusting the lift of the valves of an internal combustion engine that is less expensive to obtain with respect to equivalent adjustment units of the prior art.
  • Another object is that the adjustment unit of the invention has smaller overall dimensions with respect to equivalent prior art adjustment units.
  • the adjustment unit of the invention has the object of also enabling recovering the clearance of the tappets when the engine is running.
  • the adjustment unit of the invention may be installed on a wide range of motor vehicles.
  • the adjustment unit of the invention also enables automatically recovering the clearance of the tappets, it substantially behaves like known hydraulic tappets, with respect to which it also reveals substantially similar overall dimensions.
  • - fig. 1 represents an axonometric view of the adjustment unit of the invention associated to the tappet of an engine, regarding which in the figure there are represented the camshaft and a valve;
  • - fig. 2 represents a detail of the adjustment unit of the invention represented in fig. 1 ;
  • - fig. 3 represents an exploded view of a detail of fig. 2;
  • - fig. 4 represents an exploded view of another detail of fig. 2;
  • - fig. 5 represents a detail of fig. 2 and fig. 3;
  • - fig. 6 represents the longitudinal section of fig. 1 ;
  • - fig. 7 represents a detail of fig. 6 in enlarged view
  • - fig. 8 represents a detail of fig. 6 and fig. 7 in enlarged view
  • - figures 9 to 15 represent the longitudinal section of the assembly of fig. 1 in different operative positions.
  • the adjustment unit subject of the invention is represented in axonometric view in fig. 1 and in sectional view in figures 6 and from 9 to 15 where it is indicated in its entirety with 1.
  • first part 7 which is associated to a valve 2 of the engine and a second part 9 which is arranged on the opposite side of the first part 7 with respect to the idler roller 5.
  • rocker arm could simultaneously control several valves given that the one represented in the mentioned figures is only a possible reference embodiment for description.
  • the adjustment unit 1 As concerns the adjustment unit 1 , it should be observed that it comprises a housing 10 in which there are contained a mobile rod 11 inserted into a sliding seat 12 present in the housing 10 and having a first end 13 arranged at contact with the second part 9 of the rocker arm 6.
  • a second end 14 of the mobile rod 11 is arranged in a hydraulic chamber 15 present in the housing 10 and suitable to contain oil. It should be observed that the housing 10, in the embodiment described herein, takes the shape of a cartridge body.
  • the housing 10 can belong to the engine and be obtained, for example, in the cylinder head of the engine or in other parts thereof, are possible.
  • a fulcrum area F for the rotation of the rocker arm 6 which, as observable in figures 6 and from 9 to 15, is defined in the contact area between the first end 13 of the mobile rod 11 and the second part 9 of the rocker arm 6.
  • first end 13 of the mobile rod 11 and the second part 9 of the rocker arm 6 are configured with a suitable profile respectively concave and convex so that the contact area that forms the fulcrum area F is substantially the surface of a spherical cover.
  • the elastically yieldable means 16 that cooperate with the mobile rod 11 and a mobile shutter 17 are part of the adjustment unit 1. As observable, the mobile shutter projects into the hydraulic chamber 15 and it is slidingly housed in a through hole 18 obtained in the housing 10.
  • the mobile shutter 17 has a projecting end 19 faced towards the external of the housing 10 which is connected to actuator means, indicated in their entirety with 20, which will be described in detail hereinafter.
  • the mobile rod 11 and the elastically yieldable means 16 are configured to synergically cooperate and change the position of the fulcrum area F when, during the rotation of the camshaft 3, the actuator means 20 displace the shutter 17 in the hydraulic chamber 15, as described in detail hereinafter when illustrating the operating method of the adjustment unit of the invention.
  • the mobile rod 11 contrasts with an elastic element 31 belonging to the elastically yieldable means 16, which is coaxial to the mobile rod 11 and contrasts with it through an interposed compression ring nut 30.
  • the mobile rod 11 , the elastically yieldable means 16 and the shutter 17 are coaxial to each other according to a longitudinal axis Y which also defines the longitudinal axis of the housing 10. Furthermore, the elastically yieldable means 16 are arranged externally with respect to the mobile rod 11 and the latter is aligned coaxial to the shutter 17.
  • the mobile rod 11 in particular, has an inner longitudinal channel 11a and the hydraulic chamber 15 is divided into two parts comprising a pressure chamber 15a into which the shutter 17 is submerged and a compensation chamber 15b which is defined in a portion of the inner longitudinal channel 11a of the mobile rod 11.
  • the aforementioned chambers 15a, 15b are placed in communication with each other and in particular the pressure chamber 15a is placed in communication with a duct 48 for supplying pressurised oil through a one-way valve 49 which enables the oil to flow from the aforementioned supply duct 48 towards the pressure chamber 15a.
  • an elastic element 21 which is comprised between an annular area 23 obtained in the first end 13 of the mobile rod 11 and a slidable sealing cap 22 arranged at the second end 14 of the mobile rod 11 and faced towards the mobile shutter 17.
  • the elastic element 21 has a rigidity and assembly load such that in inoperative conditions it is compressed just for a minute section by the pressure of the oil coming from the one-way valve 49.
  • the elastically yieldable means 16 comprise the previously mentioned compression ring nut 30 arranged externally coaxial to the mobile rod 11 in proximity of the first end 13 thereof and the previously mentioned elastic element 31 arranged externally coaxial to the mobile rod 11 and axially comprised between the compression ring nut 30 and an annular seat 32 obtained in the housing 10.
  • the compression ring nut 30 may also be possibly obtained in a single body with the mobile rod 11.
  • the elastically yieldable means 16 also comprise a damper unit, indicated in its entirety with 35, which serves to decelerate the valve 2 during the closing and opening step, as described during the illustration of the operation of the adjustment unit.
  • the aforementioned damper unit 35 which is also observable in the detailed figures 2 to 5, comprises an auxiliary rocker arm 36 pivoted to the rocker arm 6 through the previously mentioned first pin 6a at the end of the valve 2 and to the housing 10 through a second pin 38.
  • auxiliary rocker arm 36 has an area with a shaped profile 39 which rests on a compression ring 40 housed in a cylindrical seat 42 obtained in the housing 10 externally with respect to the elastic element 31.
  • the compression ring 40 is arranged externally coaxial to the compression ring nut 30 and it is axially comprised between the shaped profile 39 and an elastic body 41.
  • the elastic body 41 is housed in a cylindrical chamber 43 obtained in longitudinal continuity with the annular seat 32 that houses the elastic element 31.
  • the compression ring 40 has an annular recession 44 which defines with the cylindrical chamber 42 in which it is received an annular channel 45.
  • the annular channel 45 communicates with a duct 46 for supplying pressurised oil through a one-way valve 47 having the opening direction enabling the flow of oil from the aforementioned supply duct 46 towards the annular channel 45 through a supply duct 48.
  • actuator means 20 comprise a connecting rod 50 having a first end 51 fixed to a rotary shaft 52 associated to a driving member (not represented) and a second end 53 associated to the projecting end 19 of the shutter 17.
  • connection between the second end 53 of the connecting rod 50 and the projecting end 19 of the shutter 17 occurs through a sliding joint belonging to the mobile shutter 17 and indicated in its entirety with 54, comprising a pin 54a inserted into a slotted hole 55 obtained in the second end 53 of the connecting rod 50.
  • the sliding joint 54 transforms the rotation of the connecting rod 50 into an axial movement of the mobile shutter 17 which, being guided by the through hole 18, coaxially approaches towards or moves away from the mobile rod 11 along the longitudinal direction Y depending on the direction of rotation of the rotary shaft 52.
  • the described embodiment is just one of the possible embodiments according to which the actuator means 20 for controlling the mobile shutter 17 can be obtained.
  • the end thereof present in the pressure chamber 15a is provided with a terminal collar 61 having a smaller diameter with respect to the body of the shutter 17, so as to enable the fitting insertion thereof into the terminal opening 11 b of the mobile rod 11 and thus into the compensation chamber 15b defined in the portion of the inner longitudinal channel 11a of the mobile rod 11.
  • such particular embodiment of the end 60 of the mobile shutter 17 serves to adjust the gradient according to which the pressure varies when the oil contained in the hydraulic chamber 15 is transferred between the pressure chamber 15a and the compensation chamber 15b.
  • the coupling precision represents a valid impediment to the pressure drop of the oil in the pressure chamber 15a due to seeping.
  • the one-way valve 49 possibly provides for supplementing possible losses due to seepage.
  • the adjustment unit 1 of the invention enables continuously varying the lift of the valve 2, regardless of the positions the cam 4 takes with respect to the rocker arm 6 and independently from the design geometric features of the cam 4.
  • valve 2 in question may indistinctly be the intake valve or the discharge valve, or both.
  • the variation of the lift occurs by varying the position of the fulcrum area F of the rocker arm 6 during the rotation of the camshaft 3.
  • the adjustment unit 1 of the invention intervenes during the rotation of the camshaft 3 imposing a displacement to the fulcrum area F of the rocker arm 6 which modifies the value of the lift of the valve 2 imposed by the profile of the cam 4.
  • Fig. 9 represents the inoperative condition in which the valve 2 is closed against the respective seat 2b and the idler roller 5 of the rocker arm 6 is at contact with the base circle 4a of the cam 4.
  • the end 60 of the shutter 17 is spaced from the terminal opening 11 b of the mobile rod 11 , thus the pressure chambers 15a and the compensation chambers 15b are placed in communication with each other.
  • the rotation of the camshaft 3 moves the shaped profile 4b of the cam 4 in contrast with the idler roller 5 lowering the rocker arm 6 up to the maximum lowering condition represented in fig. 10, that is achieved when the contact of the cam 4 with the idler roller 5 occurs in the end point of the shaped profile 4b of the cam 4.
  • Fig. 10 shows that the fulcrum area F lowered with respect to the initial inoperative condition represented in fig. 9 but the valve 2 remained closed against the respective seat 2b during the entire rotation of the cam 4.
  • the lowering that the fulcrum area F of the rocker arm 6 has been subjected to by the thrust of the cam 4 has caused the elastic lowering of the mobile rod 11 that has absorbed the entire potential lift of the cam, without such lift being transferred to the valve.
  • the lowering of the fulcrum area F ensuing the lowering in the vertical direction of the mobile rod 11 is caused by the thrust that the cam 4 exerts on the rocker arm 6 and it is enabled by the lower rigidity of the elastic element 31 placed at contact with the compression ring nut 30 and arranged externally coaxial to the mobile rod 11 , with respect to the return spring 2a of the valve 2.
  • the end 60 of the mobile shutter 17 does not obstruct the passage of oil from the pressure chamber 15a to the compensation chamber 15b and thus the oil acts against the slidable sealing cap 22 compressing the elastic element 21.
  • valve 2 will remain closed regardless of the angular position of the camshaft 3 and the respective cam 4.
  • the latter corresponds to the conditions in which the operation of the cylinder affected by the valve is excluded.
  • the position of the fulcrum area F lowers until the end 60 of the shutter 17 closes the terminal opening 11 b of the mobile rod 11 and the lowering travel thereof depends on the position that the actuator means 20 impose on the shutter 17 inside the longitudinal channel 11a of the mobile rod 11.
  • Figures 1 1 to 13 illustrate, by way of example, different conditions for the lift of the valve 2 as a function of the position of the shutter 17 in the internal longitudinal channel 11a of the mobile rod 11.
  • fig. 1 1 shows the adjustment condition in which the adjustment unit 1 maintains the lift H1 of the valve 2 equivalent to 1 /4 of the maximum design lift H defined by the shaped profile 4b of the cam 4 as observable in fig. 13.
  • Fig. 12 represents the adjustment condition in which the adjustment unit of the invention maintains the lift H2 of the valve equivalent to half the maximum design lift H defined by the shaped profile 4b of the cam 4 as observable in fig. 13.
  • fig. 13 represents the adjustment condition in which the adjustment unit of the invention maintains the lift of the valve equivalent to the maximum design lift H.
  • the oil contained in the hydraulic chamber 15 will be alternatively transferred from the pressure chamber 15a to the compensation chamber 15b and vice versa, depending on which section of the shaped profile 4b of the cam 4 is at contact with the rocker arm 6.
  • the end 60 of the shutter 17 has a terminal collar 61 which increases the pressure in the pressure chamber 15a with a desired gradient so as to progressively decelerate the mobile rod 11 which supports the rocker arm 6 and thus progressively decelerate the valve 2.
  • damper unit 35 which is arranged on the top part of the housing 10 and comprises the auxiliary rocker arm 36 hinged to the rocker arm 6 and the housing 10.
  • the area with shaped profile 39 of the auxiliary rocker arm 36 which is arranged resting against the compression ring 40 of the damper unit 35 is shaped in a manner such that the damper intervenes only for given distances of the valve 2 from the inoperative position.
  • the adjustment unit of the invention is easier to construct with respect to the equivalent prior art adjustment units and thus it is less expensive to manufacture.
  • this enables mounting the adjustment unit of the invention in engines that are installed on a wide range of motor vehicles and especially on vehicles of the low-price bracket.
  • the embodiment of the adjustment unit of the invention is such to enable it to also perform the function of recovering the clearance of the tappets which is normally carried out by the known hydraulic tappets.
  • the housing 10 which is configured in the form of a cartridge body in the figures, may also be constituted by a seat or a housing obtained in the cylinder head or cylinder block of the engine or in any part thereof suitable for the purpose.
  • the described elements that form the adjustment unit may be subjected to variants or modifications such to enable the arrangement thereof in different ways inside the housing 10, as long as they enable the same operation.
  • the actuator means 20 for the actuation of the shutter 17 may be of any type and obtained in any form as long as they are suitable to generate the displacement of the shutter 17 in the chambers.

Landscapes

  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Valve Device For Special Equipments (AREA)
  • Fuel-Injection Apparatus (AREA)
  • Valve-Gear Or Valve Arrangements (AREA)

Abstract

La présente invention concerne une unité (1) pour régler l'élévation des soupapes (2) d'un moteur à combustion interne comprenant un ou plusieurs arbres à cames (3) avec une ou plusieurs cames (4) agencées chacune en contact avec un rouleau libre (5) d'un culbuteur (6) ayant une première partie (7) associée à l'une des soupapes (2), comprenant : une tige mobile (11) insérée de manière coulissante dans un boîtier (10) et interposée entre une zone de point d'appui (F) pour la rotation du culbuteur (6) et une chambre hydraulique (15, 15a, 15b) contenant de l'huile ; des moyens déformables élastiquement (16) coopérant avec la tige mobile (11) et coaxiaux à celle-ci ; un volet mobile (17) agencé dans la chambre hydraulique (15) ; des moyens d'actionnement (20) pour déplacer le volet mobile (17) dans la chambre hydraulique (15). La tige mobile (11) et les moyens déformables élastiquement (16) sont configurés pour coopérer de manière synergique et modifier la position de la zone de point d'appui (F) lorsque, pendant la rotation de l'arbre à cames (3), les moyens d'actionnement (20) modifient la position du volet (17) par rapport à la tige mobile (11). La tige mobile (11), les moyens déformables élastiquement (16) et le volet mobile (17) sont coaxiaux les uns par rapport aux autres selon un axe longitudinal (Y), les moyens déformables élastiquement (16) étant agencés extérieurement par rapport à la tige mobile (11), et la tige mobile (11) étant alignée sur le volet mobile (17).
PCT/IB2016/057974 2015-12-28 2016-12-23 Unité de réglage de l'élévation des soupapes d'un moteur à combustion interne. Ceased WO2017115251A1 (fr)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
ITUB2015A009522A ITUB20159522A1 (it) 2015-12-28 2015-12-28 Gruppo regolatore dell?alzata delle valvole di un motore a combustione interna
IT102015000088055 2015-12-28

Publications (1)

Publication Number Publication Date
WO2017115251A1 true WO2017115251A1 (fr) 2017-07-06

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PCT/IB2016/057974 Ceased WO2017115251A1 (fr) 2015-12-28 2016-12-23 Unité de réglage de l'élévation des soupapes d'un moteur à combustion interne.

Country Status (2)

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IT (1) ITUB20159522A1 (fr)
WO (1) WO2017115251A1 (fr)

Citations (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4442806A (en) * 1981-12-03 1984-04-17 Honda Giken Kogyo Kabushiki Kaisha Valve driving control apparatus in an internal combustion engine
US4509467A (en) * 1982-11-09 1985-04-09 Aisin Seiki Kabushiki Kaisha Hydraulic lifter system for variable cylinder engines
US4546734A (en) * 1983-05-13 1985-10-15 Aisin Seiki Kabushiki Kaisha Hydraulic valve lifter for variable displacement engine
US4615307A (en) * 1984-03-29 1986-10-07 Aisin Seiki Kabushiki Kaisha Hydraulic valve lifter for variable displacement engine
EP0814240A1 (fr) * 1996-06-11 1997-12-29 Ricardo Consulting Engineers Limited Poussoir de soupape hydraulique
US5862784A (en) * 1998-05-01 1999-01-26 Eaton Corporation Hydraulic lash adjuster and check valve opening arrangement therefor
DE19818146A1 (de) * 1998-04-23 1999-10-28 Schaeffler Waelzlager Ohg Ventiltrieb einer Brennkraftmaschine
EP1493902A1 (fr) * 2003-06-30 2005-01-05 Ford Global Technologies, LLC, A subsidary of Ford Motor Company Dispositif pour désactiver une soupape
DE102008054011A1 (de) * 2008-10-30 2010-05-06 Schaeffler Kg Ventiltrieb einer Brennkraftmaschine mit einem abschaltbaren Abstützelement

Patent Citations (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4442806A (en) * 1981-12-03 1984-04-17 Honda Giken Kogyo Kabushiki Kaisha Valve driving control apparatus in an internal combustion engine
US4509467A (en) * 1982-11-09 1985-04-09 Aisin Seiki Kabushiki Kaisha Hydraulic lifter system for variable cylinder engines
US4546734A (en) * 1983-05-13 1985-10-15 Aisin Seiki Kabushiki Kaisha Hydraulic valve lifter for variable displacement engine
US4615307A (en) * 1984-03-29 1986-10-07 Aisin Seiki Kabushiki Kaisha Hydraulic valve lifter for variable displacement engine
EP0814240A1 (fr) * 1996-06-11 1997-12-29 Ricardo Consulting Engineers Limited Poussoir de soupape hydraulique
DE19818146A1 (de) * 1998-04-23 1999-10-28 Schaeffler Waelzlager Ohg Ventiltrieb einer Brennkraftmaschine
US5862784A (en) * 1998-05-01 1999-01-26 Eaton Corporation Hydraulic lash adjuster and check valve opening arrangement therefor
EP1493902A1 (fr) * 2003-06-30 2005-01-05 Ford Global Technologies, LLC, A subsidary of Ford Motor Company Dispositif pour désactiver une soupape
DE102008054011A1 (de) * 2008-10-30 2010-05-06 Schaeffler Kg Ventiltrieb einer Brennkraftmaschine mit einem abschaltbaren Abstützelement

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