US 12,247,502 B2
Multi-cylinder internal combustion engine, with cylinders equipped with intake valve variable actuation systems having hydraulic circuits which cross each other
Raffaele Ricco, Orbassano (IT); Sergio Stucchi, Orbassano (IT); Marcello Gargano, Orbassano (IT); Onofrio De Michele, Orbassano (IT); and Chiara Altamura, Orbassano (IT)
Assigned to C.R.F. SOCIETÀ CONSORTILE PER AZIONI, Orbassano (IT)
Appl. No. 18/708,390
Filed by C.R.F. SOCIETÀ CONSORTILE PER AZIONI, Orbassano (IT)
PCT Filed Nov. 14, 2022, PCT No. PCT/IB2022/060915
§ 371(c)(1), (2) Date May 8, 2024,
PCT Pub. No. WO2023/089464, PCT Pub. Date May 25, 2023.
Claims priority of application No. 21208408 (EP), filed on Nov. 16, 2021.
Prior Publication US 2025/0020072 A1, Jan. 16, 2025
Int. Cl. F01L 13/00 (2006.01); F01L 1/25 (2006.01); F01L 1/26 (2006.01); F01L 9/14 (2021.01); F01L 9/40 (2021.01); F02D 13/02 (2006.01); F01L 1/053 (2006.01); F01L 1/38 (2006.01); F01L 1/46 (2006.01)
CPC F01L 13/0005 (2013.01) [F01L 1/25 (2013.01); F01L 1/267 (2013.01); F01L 9/14 (2021.01); F01L 9/40 (2021.01); F02D 13/0226 (2013.01); F02D 13/0257 (2013.01); F01L 1/053 (2013.01); F01L 1/38 (2013.01); F01L 1/462 (2013.01); F01L 2201/00 (2013.01); F01L 2800/06 (2013.01); F01L 2820/031 (2013.01)] 5 Claims
OG exemplary drawing
 
1. An internal combustion engine, comprising:
a crankshaft;
a plurality of cylinders configured to execute respective operating cycles in a predetermined firing order, each cylinder including:
a piston operatively connected to the crankshaft so as to reciprocate within the cylinder,
a first intake valve controlling a flow of intake air from a first intake duct, the first intake valve including a first hydraulic actuator and a first return spring, and
a second intake valve controlling a flow of intake air from a second intake duct, the second intake valve including a second hydraulic actuator and a second return spring;
a camshaft driven via the crankshaft, the camshaft including a plurality of cams respectively associated with each cylinder;
a plurality of hydraulic circuits respectively associated with each cam, each hydraulic circuit including:
a tappet configured to engage the associated cam of the associated cylinder,
a pressure chamber,
a pumping piston driven by the associated cam via the tappet, the pumping piston configured to act on the pressure chamber so as to transfer pressurized fluid towards (i) the first hydraulic actuator of the first intake valve of the associated cylinder, and (ii) the second hydraulic actuator of the second intake valve of a preceding cylinder, the preceding cylinder being a cylinder of the plurality of cylinders which immediately precedes the associated cylinder in the predetermined firing order, such that the first and second intake valves of the associated cylinder are respectively controlled via two different cams of the plurality of cams,
a pressurized-fluid accumulator, and
an electrically actuated control valve configured to selectively communicate said pressure chamber with the pressurized-fluid accumulator via a low-pressure exhaust channel such that, when said electrically actuated control valve is open, the pressurized fluid is discharged from the pressure chamber into said low-pressure exhaust channel so as to deactivate the first intake valve of the associated cylinder and/or the second intake valve of the preceding cylinder; and
an electronic controller configured to control each electrically actuated control valve as a function of engine load and engine speed,
wherein each electrically actuated control valve is further configured to be switched to at least one of:
a full-lift mode in which both intake valves of the hydraulic circuit operate in accordance with a lift profile of the associated cam,
an early-closing mode in which both intake valves of the hydraulic circuit operate in accordance with a lift profile that is reduced with respect to the lift profile of the associated cam, and
a partial deactivation mode in which only one intake valve of the hydraulic circuit is deactivated, and
wherein, during an intake stage of each cylinder, an opening and closing timing of the second intake valve occurs subsequent to an opening and closing timing of the first intake valve.