EP4479635A1 - A phase change system for opening and/or closing intake valves - Google Patents
A phase change system for opening and/or closing intake valvesInfo
- Publication number
- EP4479635A1 EP4479635A1 EP23709752.2A EP23709752A EP4479635A1 EP 4479635 A1 EP4479635 A1 EP 4479635A1 EP 23709752 A EP23709752 A EP 23709752A EP 4479635 A1 EP4479635 A1 EP 4479635A1
- Authority
- EP
- European Patent Office
- Prior art keywords
- arm
- channel portion
- pin
- channel
- closing
- 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.)
- Granted
Links
Classifications
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F01—MACHINES OR ENGINES IN GENERAL; ENGINE PLANTS IN GENERAL; STEAM ENGINES
- F01L—CYCLICALLY OPERATING VALVES FOR MACHINES OR ENGINES
- F01L1/00—Valve-gear or valve arrangements, e.g. lift-valve gear
- F01L1/12—Transmitting gear between valve drive and valve
- F01L1/18—Rocking arms or levers
- F01L1/181—Centre pivot rocking arms
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F01—MACHINES OR ENGINES IN GENERAL; ENGINE PLANTS IN GENERAL; STEAM ENGINES
- F01L—CYCLICALLY OPERATING VALVES FOR MACHINES OR ENGINES
- F01L1/00—Valve-gear or valve arrangements, e.g. lift-valve gear
- F01L1/26—Valve-gear or valve arrangements, e.g. lift-valve gear characterised by the provision of two or more valves operated simultaneously by same transmitting-gear; peculiar to machines or engines with more than two lift-valves per cylinder
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F01—MACHINES OR ENGINES IN GENERAL; ENGINE PLANTS IN GENERAL; STEAM ENGINES
- F01L—CYCLICALLY OPERATING VALVES FOR MACHINES OR ENGINES
- F01L1/00—Valve-gear or valve arrangements, e.g. lift-valve gear
- F01L1/34—Valve-gear or valve arrangements, e.g. lift-valve gear characterised by the provision of means for changing the timing of the valves without changing the duration of opening and without affecting the magnitude of the valve lift
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F01—MACHINES OR ENGINES IN GENERAL; ENGINE PLANTS IN GENERAL; STEAM ENGINES
- F01L—CYCLICALLY OPERATING VALVES FOR MACHINES OR ENGINES
- F01L13/00—Modifications of valve-gear to facilitate reversing, braking, starting, changing compression ratio, or other specific operations
- F01L13/0015—Modifications of valve-gear to facilitate reversing, braking, starting, changing compression ratio, or other specific operations for optimising engine performances by modifying valve lift according to various working parameters, e.g. rotational speed, load, torque
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F01—MACHINES OR ENGINES IN GENERAL; ENGINE PLANTS IN GENERAL; STEAM ENGINES
- F01L—CYCLICALLY OPERATING VALVES FOR MACHINES OR ENGINES
- F01L13/00—Modifications of valve-gear to facilitate reversing, braking, starting, changing compression ratio, or other specific operations
- F01L13/0015—Modifications of valve-gear to facilitate reversing, braking, starting, changing compression ratio, or other specific operations for optimising engine performances by modifying valve lift according to various working parameters, e.g. rotational speed, load, torque
- F01L13/0021—Modifications of valve-gear to facilitate reversing, braking, starting, changing compression ratio, or other specific operations for optimising engine performances by modifying valve lift according to various working parameters, e.g. rotational speed, load, torque by modification of rocker arm ratio
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F01—MACHINES OR ENGINES IN GENERAL; ENGINE PLANTS IN GENERAL; STEAM ENGINES
- F01L—CYCLICALLY OPERATING VALVES FOR MACHINES OR ENGINES
- F01L1/00—Valve-gear or valve arrangements, e.g. lift-valve gear
- F01L1/02—Valve drive
- F01L1/04—Valve drive by means of cams, camshafts, cam discs, eccentrics or the like
- F01L1/047—Camshafts
- F01L1/053—Camshafts overhead type
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F01—MACHINES OR ENGINES IN GENERAL; ENGINE PLANTS IN GENERAL; STEAM ENGINES
- F01L—CYCLICALLY OPERATING VALVES FOR MACHINES OR ENGINES
- F01L1/00—Valve-gear or valve arrangements, e.g. lift-valve gear
- F01L1/26—Valve-gear or valve arrangements, e.g. lift-valve gear characterised by the provision of two or more valves operated simultaneously by same transmitting-gear; peculiar to machines or engines with more than two lift-valves per cylinder
- F01L1/267—Valve-gear or valve arrangements, e.g. lift-valve gear characterised by the provision of two or more valves operated simultaneously by same transmitting-gear; peculiar to machines or engines with more than two lift-valves per cylinder with means for varying the timing or the lift of the valves
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F01—MACHINES OR ENGINES IN GENERAL; ENGINE PLANTS IN GENERAL; STEAM ENGINES
- F01L—CYCLICALLY OPERATING VALVES FOR MACHINES OR ENGINES
- F01L1/00—Valve-gear or valve arrangements, e.g. lift-valve gear
- F01L1/02—Valve drive
- F01L1/04—Valve drive by means of cams, camshafts, cam discs, eccentrics or the like
- F01L1/047—Camshafts
- F01L1/053—Camshafts overhead type
- F01L2001/0535—Single overhead camshafts [SOHC]
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F01—MACHINES OR ENGINES IN GENERAL; ENGINE PLANTS IN GENERAL; STEAM ENGINES
- F01L—CYCLICALLY OPERATING VALVES FOR MACHINES OR ENGINES
- F01L1/00—Valve-gear or valve arrangements, e.g. lift-valve gear
- F01L1/02—Valve drive
- F01L1/04—Valve drive by means of cams, camshafts, cam discs, eccentrics or the like
- F01L1/047—Camshafts
- F01L1/053—Camshafts overhead type
- F01L2001/0537—Double overhead camshafts [DOHC]
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F01—MACHINES OR ENGINES IN GENERAL; ENGINE PLANTS IN GENERAL; STEAM ENGINES
- F01L—CYCLICALLY OPERATING VALVES FOR MACHINES OR ENGINES
- F01L1/00—Valve-gear or valve arrangements, e.g. lift-valve gear
- F01L1/12—Transmitting gear between valve drive and valve
- F01L1/18—Rocking arms or levers
- F01L2001/186—Split rocking arms, e.g. rocker arms having two articulated parts and means for varying the relative position of these parts or for selectively connecting the parts to move in unison
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F01—MACHINES OR ENGINES IN GENERAL; ENGINE PLANTS IN GENERAL; STEAM ENGINES
- F01L—CYCLICALLY OPERATING VALVES FOR MACHINES OR ENGINES
- F01L13/00—Modifications of valve-gear to facilitate reversing, braking, starting, changing compression ratio, or other specific operations
- F01L2013/10—Auxiliary actuators for variable valve timing
- F01L2013/101—Electromagnets
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F01—MACHINES OR ENGINES IN GENERAL; ENGINE PLANTS IN GENERAL; STEAM ENGINES
- F01L—CYCLICALLY OPERATING VALVES FOR MACHINES OR ENGINES
- F01L2820/00—Details on specific features characterising valve gear arrangements
- F01L2820/03—Auxiliary actuators
- F01L2820/031—Electromagnets
Definitions
- the present invention relates to the field of engines for saddle vehicles; more specifically, it refers to a phase change system for opening and/or closing at least one intake valve in an internal combustion engine for a saddle vehicle.
- the timing system in an internal combustion engine is the set of components that allow to control the flows of gases into and from the combustion chambers (cylinders) by controlling the intake and exhaust valves.
- these members work synchronously with the movement of the pistons in the cylinders; therefore, they must be perfectly "in phase” i.e. timed with the drive shaft, to which they are connected by means of kinematic members.
- valve timing indicates the opening and closing angles of the valves with reference to the bottom and top dead centers of the stroke of the pistons in the cylinders.
- the timing affects the power delivered by the engine. For example, delaying the intake valve closing allows to increase power at high rpm, thanks to a certain degree of supercharging due to the inertial effects of air motion, but results in losses at medium and low rpm, due to charge returns in the intake ducts.
- valve phasing is made variable thanks to the so-called variable valve timing (VVT) devices that improve the filling of the cylinder (by changing the timing of the valve lift) based on the rpm of the engine and, therefore, on the desired power.
- VVT variable valve timing
- a phase change system for opening and/or closing the valves in an internal combustion engine is disclosed for example in JP2012077741A.
- two coaxial adjacent rockers, controlling two distinct valves of a cylinder and moved by respective cam lobs of the camshaft are made integral with, or released from, each other through the mechanical action of a pin controlled by an actuator.
- this prior art system for changing the timing of the valve lift is necessarily affected by both cams associated with the two rockers, even when they are coupled, thus limiting the phase change.
- a phase change system with such a structure is not easily adaptable to engines requiring simple and economical VVT systems.
- EP2540996B1 discloses a phase change system for opening and/or closing a valve of a cylinder of an internal combustion engine, providing for a single rocker formed by three arms hinged to a same pivot axis, i.e. an arm for controlling the valve and two arms for actuating the rocker, interacting with respective lobs of the camshaft.
- the system provides for a selecting pin that is moved by the oil of a hydraulic system so as to take two different positions, a position where the control arm is integral with the first actuating arm and released from the second arm, and a second position where the actuating arm is integral with the second actuating arm and released from the first one. In this way, the active arms are not affected by the cams acting on the idle arm.
- the use of a hydraulic system for managing a VVT system is very complex, crucial and, lastly, expensive. Summary
- the present invention aims at solving the problems associated with the phase change systems for opening and/or closing the valves of a cylinder in an internal combustion engine; more particularly, an object of the invention is to provide a phase change system for opening and/or closing an intake valve in an internal combustion engine of a saddle vehicle, which is simple from a constructive viewpoint.
- a further object of the invention is to provide a phase change system for opening and/or closing an intake valve in an internal combustion engine of a saddle vehicle, which is reliable in operation.
- a further object of the invention is to provide a phase change system for opening and/or closing an intake valve in an internal combustion engine of a saddle vehicle, which can be easily adapted to different types of engines.
- a further important object of the invention is to provide a phase change system for opening and/or closing an intake valve in an internal combustion engine of a saddle vehicle, the rockers of which have reduced inertia.
- phase change system for opening and/or closing at least an intake valve in an internal combustion engine of a saddle vehicle, comprising
- rocker pivoting around a pivot axis and adapted to transform the rotary motion of a camshaft into a motion for opening/closing at least an intake valve of the engine
- the rocker comprises at least three arms, a first arm articulated around the pivot axis and provided with an area of interaction with the intake valve to allow actuating the valve, and at least a second and a third arm, both articulated around the pivot axis and provided with respective areas of interaction with the camshaft to allow the rocker to move based on the rotation of the camshaft, and wherein the at least three arms respectively define at least a first, a second and a third portion of a sliding channel for the selecting member, so that the selecting member is adapted to slide in this sliding channel so as to take at least two positions, a position adapted to make the first arm and the second arm rotate integrally around the pivot axis, and a position adapted to make the first arm and the third arm rotate integrally around the pivot axis, so that, based on the position taken by the selecting member in
- This particular configuration of the rocker and the selecting member allows to provide a phase change system for opening and/or closing the intake valve that is completely mechanical and, at the same time, has independent phase configurations for opening and/or closing the valve, i.e. each phase configuration is associated with only one cam of the camshaft.
- Each arm preferably has a respective hole for the insertion of a common pivot shaft.
- the engagement pin is preferably a single pin, i.e. formed by a single piece; in further embodiments it is formed by several portions that are axially separate but have such an axial length to engage two channel portions at a time.
- the extension pin is a single pin, i.e. formed by a single piece; in further embodiments it is formed by several portions that are axially separate but have such an axial length to serve as an extension.
- the engagement pin preferably has round cross section; in further embodiments it has a different shape, for example polygonal or elliptical or irregular shape.
- the extension pin preferably has round cross section; in further embodiments it has a different shape, for example polygonal or elliptical or irregular shape.
- both the extension pin and the engagement pin have round crosssections, but they can have differently shaped cross-sections; for instance, one pin has round cross section and the other one has polygonal cross section.
- the cross-sections of the channel portions are preferably round, but they can be shaped complementary to the shape of the pins sliding inside them.
- the second and the third arm are provided at opposite sides of the first arm, i.e. the first arm is provided between the second and the third arm.
- the engagement pin is adapted to engage two channel portions, in particular it is adapted to engage always the first channel portion and, alternatively, the second channel portion or the third channel portion, and the extension pin is adapted to engage only the second channel portion.
- the pushing body is adapted to push the extension pin so as to move it from
- the extension pin has a part projecting outside the second channel portion; this projecting part is adapted to be in contact with the pushing body.
- the engagement pin and the extension pin have different transverse width; preferably the engagement pin has at least a cross section larger than that of the extension pin; preferably the second channel portion has a change in cross section defining an end of stroke abutment for the engagement pin.
- a pushing device is provided in the third channel portion for pushing the engagement pin towards the second channel portion when the engagement pin engages the third channel portion; the pushing device preferably comprises an elastic element acting by compression.
- the pushing body is substantially not- aligned with, i.e. parallel to, the extension pin along a same movement direction, or the pushing body is substantially aligned with the extension pin along a same movement direction.
- the system comprises an actuator for moving the pushing body; the actuator preferably has an actuating head movable parallel to the pushing body or coaxially with the extension axis of the pushing body; the actuator is preferably an electro-mechanical solenoid actuator.
- the system comprises at least a hindering device preventing the second arm and the third arm from moving away from the respective cams of the camshaft;
- the hindering device is preferably a yielding device adapted to keep the arms touching the respective cams;
- the hindering device is preferably a torsion spring fastened to the first, the second and the third arms.
- the system comprises only three arms, each of which defines a respective channel portion; preferably, only one engagement pin and only one extension pin being provided.
- the invention also refers to a single-cylinder internal combustion engine for a saddle vehicle, comprising a cylinder, a piston sliding in the cylinder, a drive shaft kinematically connected to the drive shaft, a timing system comprising at least an intake valve for gas intake in the cylinder, at least an exhaust valve for gas discharge from the cylinder, and a camshaft; the engine is characterized by comprising a phase change system for opening and/or closing the intake valve according to one or more of the embodiments described above.
- the invention also relates to a saddle vehicle comprising this single-cylinder internal combustion engine.
- Fig. 1 is a schematic view of a saddle vehicle with the phase change system of the invention
- Fig. 2 is a cut-away schematic view of a portion of engine of a saddle vehicle with the phase change system of the invention
- Fig. 3 is an axonometric schematic view of a portion of engine with a phase change system according to the invention
- Fig. 4 is a schematic axonometric view of a phase change system according to the invention in the engine shown in the previous figures;
- Fig. 5 is a schematic side view of the system of Fig. 4;
- Fig. 6 is a schematic cross section of the system of Fig. 4, in a first operative configuration
- Fig. 7 is a schematic cross section of the system of Fig. 4, in a second operative configuration
- Fig. 8 is an exploded axonometric view of a rocker of a phase change system according to the invention.
- a saddle vehicle is indicated as a whole with the reference number 1000.
- Fig. 2 only a portion of the vehicle is shown, referring to the engine 100.
- the engine 100 is an internal combustion engine that will be described only briefly below, except as regards a phase change system 10 for opening and/or closing the intake valves of the engine.
- the engine 100 is schematically shown in Fig. 2.
- it comprises a base 101 where a cylinder 102 is provided, inside which a piston 103 slides.
- the head 101A is fastened to the base 101, at the top.
- a timing system is associated with the cylinder 102, the system comprising a gas intake valve 104 allowing the opening and closing of two intake ports 105 on the cylinder, a gas exhaust valve 106 allowing the opening and closing of two exhaust ports 107 on the cylinder, a camshaft 108 interacting with the intake and exhaust valves through respective rockers.
- a rocker 11 is associated with the intake valve 104 and forms part of the phase change system 10 for opening and/or closing the intake valve 104.
- the rocker 11 pivots on a pivot shaft 12 having a pivot axis X, and transforms the rotary motion of the camshaft 108 into an opening/closing movement of the intake valve 104.
- the rocker 11 comprises three arms.
- a first arm 13 has a first hole 14, for the insertion of the pivot shaft 12 to allow the pivot shaft to rotate around the pivot axis X, and is provided with an area of interaction with the intake valve 104 to allow the control thereof.
- the first arm 13 has an initial segment 13 A, which divides into two end segments 13B interacting with respective plates 15 (associated with return springs, not shown in the figures) closing the respective intake ports 105.
- the rocker 11 has a second arm 16 and a third arm 17, both provided with respective holes 18 and 19 for the insertion of the same pivot shaft 12 to allow the pivot shaft to rotate around the pivot axis X.
- the second arm 16 and the third arm 17 are provided, along the axis X, at opposite sides of the first arm 13, so that the first arm is arranged between the second arm and the third arm.
- the second arm 16 and the third arm 17 have respective areas of interaction with respective cams of the camshaft 108. These areas are embodied by a first and a second rotating brush 20 and 21 touching the respective cams, according to known construction methods.
- the areas of interaction with the camshaft are provided approximately at the opposite side of the pivot axis X relative to the areas of interaction with the intake valves, so that the rocker is a first-class lever.
- a selecting member 22 controlled in actuation for example based on the rpm, allows to make either the first arm 13 and the second arm 16, or the first arm 13 and the third arm 17, rotate integrally around the pivot axis, so that, based on the combination, the rocker takes two different operative configurations for opening/closing the intake valve, for postponing or advancing the opening/closing thereof.
- the first arm 13, the second arm 16 and the third arm 17 respectively define a first, a second and a third portion of a sliding channel 23, 24 and 25 for the selecting member 22.
- the second and the third channel portion 24 and 25 are provided along the axis X at opposite sides of the first channel portion 23, so that the first channel portion 23 is arranged between the second and the third channel portion.
- the selecting member 22 e adapted to slide in the sliding channel 23-24-25 to take two positions, a position adapted to make the first arm 13 and the second arm 16 rotate integrally around the pivot axis X (as shown in Fig. 6), and a position adapted to make the first arm 13 and the third arm 17 rotate integrally around the pivot axis X (as shown in Fig. 7), so that, based on the position taken by the selecting member in the sliding channel, the rocker takes different operative configurations for opening/closing the intake valve.
- the selecting member 22 comprises two axially adjacent pins sliding in the sliding channel 23-24-25, i.e. an engagement pin 26 and an extension pin 27, having two respective operative ends 26A and 27A always touching each other.
- Each pin 26 and 27 is preferably made in a single piece and has round cross section, the cross section of the engagement pin 26 having larger diameter than the cross section of the extension pin 27.
- the engagement pin 26 is adapted to engage two channel portions, in particular it is adapted to engage always the first channel portion 23 and, alternatively, the second channel portion 24 or the third channel portion 25.
- the extension pin 27 is adapted to engage, and to slide in, only the second channel portion 24 (i.e. it does not engage the first and the second channel portion), a part 27B of the extension pin projecting outside the sliding channel 23-24-25.
- a pushing body 28 is provided outside the sliding channel 23-24-25, for pushing the engagement pin 26 by pushing the extension pin 27 (extension pin and engagement pin are axially in contact with each other) at the projecting part 27B.
- the pushing body 28 is adapted to push the extension pin 27 for moving it between two positions:
- the first channel portion 23 and the third channel portion 25 have round cross sections that are essentially complementary to the cross section of the engagement pin 26.
- the second channel portion 24 has two parts, whose cross section have different diameter, a first part 24 A of larger diameter, having diameter equal to that of the first channel portion 23, and a second part 24B of smaller diameter, substantially complementary to the cross section of the extension pin 27. [0057] Therefore, the second channel portion 24 has a change in cross section defining an end of stroke abutment 24C for the end 26 A of the engagement pin 26.
- a pushing device 29 is provided for pushing the end 26B (opposite to the end 26A) of the engagement pin 26 towards the second channel portion 24 when the engagement pin engages the third channel portion 25.
- the pushing device 29 comprises an elastic element 29A (with which a glass-shaped element 29B is associated, where the engagement pin abuts, provided at the operative end thereof), adapted to be compressed by the engagement pin when the engagement pin moves from the first channel portion 23 toward the third channel portion 25.
- the pushing body 28 is, for example, a rod that can slide parallel to the pivot axis X, for instance inside a suitable guide 30, for example fixed relative to the head or the base of the engine.
- the system 10 further comprises an actuator 31 for moving the pushing body 28.
- the actuator for example a solenoid electro-mechanical actuator, has an actuating head 31 A movable parallel to the extension axis of the pushing body 28 (or, in further embodiments, coaxially with the extension axis).
- a first end 28A of the pushing body 28 touches the end 27B of the extension pin 27 opposite to the end 27A of contact with the engagement pin 26.
- the system comprises a hindering device 32 preventing the second arm 16 and the third arm 17 from moving away from the respective cams of the drive shaft, i.e. preventing from rotating around the axis X.
- the hindering device 32 is for example a yielding device adapted to keep the arms 16 and 17 touching the respective cams; in this embodiment, the hindering device is a torsion spring 32 fastened to the second and the third arms 16 and 17 and abutting against the first arm 13. Therefore, the second and the third arm 16 and 17, with the respective first and second rotating brushes 20 and 21, touch respective cams.
- Both the cams have a common arc of rotation of constant radius, i.e. they do not contribute to the movement of the second and the third arm of the rocker.
- the second and the third arm are synchronized, i.e. they have the same angular position relative to the axis X, whilst they have different angular position when they slide on the cams.
- the selecting member formed by the pins 26-27 is in the first operative position described above, i.e. With the engagement pin inserted in the first channel portion 23 and in the second channel portion 24, and the extension pin 27 partially outside the second channel portion 27, so that the second arm and the first arm are integral in rotation, forming a first operative configuration of the rocker (Fig. 6).
- This first operative configuration of the rocker occurs at low rpm, when the second arm 16 touches a cam allowing to advance the opening of the intake valve, thus optimizing the performance of the engine.
- the actuator 31 controls the head 31 A to move backward, so that the force of the pushing device 29 brings the gear train formed by engagement pin- extension pin - pushing body toward the actuator, i.e. in the first operative position described above (in fact, the engagement pin 26 exits the third channel portion 25 and enters the second channel portion 24, so that the second arm and the first arm are integral in rotation).
Landscapes
- Engineering & Computer Science (AREA)
- Mechanical Engineering (AREA)
- General Engineering & Computer Science (AREA)
- Valve Device For Special Equipments (AREA)
- Valve-Gear Or Valve Arrangements (AREA)
Abstract
Description
Claims
Applications Claiming Priority (2)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| IT102022000002711A IT202200002711A1 (en) | 2022-02-15 | 2022-02-15 | SYSTEM FOR VARIATION OF THE OPENING AND/OR CLOSING PHASE OF INTAKE VALVES |
| PCT/IB2023/051320 WO2023156899A1 (en) | 2022-02-15 | 2023-02-14 | A phase change system for opening and/or closing intake valves |
Publications (2)
| Publication Number | Publication Date |
|---|---|
| EP4479635A1 true EP4479635A1 (en) | 2024-12-25 |
| EP4479635B1 EP4479635B1 (en) | 2026-04-08 |
Family
ID=81580620
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| EP23709752.2A Active EP4479635B1 (en) | 2022-02-15 | 2023-02-14 | A phase change system for opening and/or closing intake valves |
Country Status (6)
| Country | Link |
|---|---|
| US (1) | US20250146429A1 (en) |
| EP (1) | EP4479635B1 (en) |
| JP (1) | JP2025505771A (en) |
| CN (1) | CN118829779A (en) |
| IT (1) | IT202200002711A1 (en) |
| WO (1) | WO2023156899A1 (en) |
Citations (4)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US4768475A (en) * | 1986-02-28 | 1988-09-06 | Fuji Jukogyo Kabushiki Kaisha | Valve mechanism for an automotive engine |
| US20040206324A1 (en) * | 2001-11-14 | 2004-10-21 | Jens Artmann | Finger lever of a valve train of an internal combustion engine |
| US20120325170A1 (en) * | 2011-06-27 | 2012-12-27 | Jung-Feng Ting | Structure of driving member for variable valve of engine |
| DE102021109489A1 (en) * | 2021-04-15 | 2022-10-20 | Schaeffler Technologies AG & Co. KG | Rocker arm assembly for a valve train of an internal combustion engine and method for operating a rocker arm assembly |
Family Cites Families (11)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| DE3735156A1 (en) * | 1986-10-16 | 1988-05-26 | Honda Motor Co Ltd | DEVICE FOR VALVE ACTUATION IN AN INTERNAL COMBUSTION ENGINE |
| KR100974122B1 (en) * | 2005-04-14 | 2010-08-04 | 미쯔비시 지도샤 고교 가부시끼가이샤 | Valve operating device for internal combustion engine |
| US7530338B2 (en) * | 2005-04-26 | 2009-05-12 | Chrysler Llc | Valvetrain system for an engine |
| CN102333937B (en) * | 2009-02-25 | 2014-04-02 | 丰田自动车株式会社 | Variable valve device for internal combustion engine |
| US8286599B2 (en) * | 2010-03-22 | 2012-10-16 | GM Global Technology Operations LLC | Engine having variable lift valvetrain |
| JP5907552B2 (en) | 2010-09-07 | 2016-04-26 | 本田技研工業株式会社 | Variable valve operating device for internal combustion engine |
| JP2014047623A (en) * | 2012-08-29 | 2014-03-17 | Honda Motor Co Ltd | Variable valve device |
| JP5883480B2 (en) * | 2013-12-05 | 2016-03-15 | ヤマハ発動機株式会社 | Internal combustion engine and saddle riding type vehicle |
| JP2018197498A (en) * | 2015-10-15 | 2018-12-13 | ヤマハ発動機株式会社 | Saddle-type vehicle engine |
| JP2019105174A (en) * | 2017-12-11 | 2019-06-27 | ヤマハ発動機株式会社 | engine |
| DE102020113219A1 (en) * | 2020-05-15 | 2021-11-18 | Schaeffler Technologies AG & Co. KG | Rocker arm arrangement for a valve train of an internal combustion engine |
-
2022
- 2022-02-15 IT IT102022000002711A patent/IT202200002711A1/en unknown
-
2023
- 2023-02-14 WO PCT/IB2023/051320 patent/WO2023156899A1/en not_active Ceased
- 2023-02-14 JP JP2024548341A patent/JP2025505771A/en active Pending
- 2023-02-14 US US18/838,299 patent/US20250146429A1/en active Pending
- 2023-02-14 CN CN202380025910.2A patent/CN118829779A/en active Pending
- 2023-02-14 EP EP23709752.2A patent/EP4479635B1/en active Active
Patent Citations (5)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US4768475A (en) * | 1986-02-28 | 1988-09-06 | Fuji Jukogyo Kabushiki Kaisha | Valve mechanism for an automotive engine |
| US20040206324A1 (en) * | 2001-11-14 | 2004-10-21 | Jens Artmann | Finger lever of a valve train of an internal combustion engine |
| US20120325170A1 (en) * | 2011-06-27 | 2012-12-27 | Jung-Feng Ting | Structure of driving member for variable valve of engine |
| EP2540996B1 (en) * | 2011-06-27 | 2015-02-25 | Kwang Yang Motor Co., Ltd. | Structure of driving member for variable valve of engine |
| DE102021109489A1 (en) * | 2021-04-15 | 2022-10-20 | Schaeffler Technologies AG & Co. KG | Rocker arm assembly for a valve train of an internal combustion engine and method for operating a rocker arm assembly |
Non-Patent Citations (1)
| Title |
|---|
| See also references of WO2023156899A1 * |
Also Published As
| Publication number | Publication date |
|---|---|
| EP4479635B1 (en) | 2026-04-08 |
| JP2025505771A (en) | 2025-02-28 |
| CN118829779A (en) | 2024-10-22 |
| IT202200002711A1 (en) | 2023-08-15 |
| US20250146429A1 (en) | 2025-05-08 |
| WO2023156899A1 (en) | 2023-08-24 |
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