Mechanically controllable valve drive
10851683 ยท 2020-12-01
Assignee
Inventors
- Michael Breuer (Simmerath, DE)
- Karsten Grimm (Aachen, DE)
- Stephan Schmitt (Willich, DE)
- Sabine Siebrandt (Viersen, DE)
Cpc classification
F01L2013/0068
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01L2305/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01L1/18
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01L1/047
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01L13/0063
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F01L13/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01L1/18
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A valve drive includes a transfer arrangement with an intermediate lever arrangement having a first roller element and an intermediate lever, and a drag lever arrangement having a drag lever. The first roller element is connected to a circumferential contour of a camshaft. The intermediate lever includes a second roller element and a working curve connected to the drag lever. A slotted guide is provided for the intermediate lever arrangement which is engaged by a guide roller element. A torsion spring element with first and second ends engages the intermediate lever arrangement. The first end rests on the cylinder housing portion. The second end acts on a counter bearing rigidly connected with the intermediate lever. The first and second roller element axes are arranged to introduce a force into the intermediate lever which presses the guide roller element against the slotted guide and the first roller element against the camshaft.
Claims
1. A mechanically controllable valve drive comprising: a gas exchange valve; a camshaft comprising a circumferential contour; a valve stroke adjusting device; a cylinder housing portion; a transfer arrangement paired with the gas exchange valve, the transfer arrangement comprising an intermediate lever arrangement and a drag lever arrangement, wherein, the drag lever arrangement comprises a drag lever, and the intermediate lever arrangement comprises, a first roller element comprising a first roller element axis, the first roller element being configured to be operatively connected to the circumferential contour of the camshaft, and an intermediate lever comprising a working curve and a second roller element, the working curve being configured to be operatively connected to the drag lever of the drag lever arrangement, and the second roller element being rotatably mounted on a second roller element axis so as to directly contact the valve stroke adjusting device such that different valve stroke positions are set; a spring configured to engage the intermediate lever arrangement; a counter bearing rigidly connected with the intermediate lever; and a guide configured to engage the intermediate lever arrangement, the guide consisting of a slotted guide which is engaged by the second roller element, wherein, the working curve of the intermediate lever is essentially formed by a first partial region formed as a circular path about a center of the second roller element axis, and a second partial region formed as a continuous lobe curve, the spring is a torsion spring element comprising a first end and a second end, the first end being configured to rest on the cylinder housing portion, and the second end being configured to act on the counter bearing which is rigidly connected with the intermediate lever, the first roller element axis has a distance to the counter bearing which is greater than a distance of the second roller element axis to the counter bearing such that a force is introduced into the intermediate lever which presses the second roller element against the slotted guide and presses the first roller element against the camshaft, the drag lever comprises a third roller element, the slotted guide comprises an effective contour which is formed as a circular path, and a center of the third roller element is a center of the circular path of the slotted guide.
2. The mechanically controllable valve drive as recited in claim 1, wherein the second roller element axis is rigidly connected with the intermediate lever.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The present invention is described in greater detail below on the basis of embodiments and of the drawings in which:
(2)
(3)
(4)
(5)
DETAILED DESCRIPTION
(6) In an embodiment of the present invention, an axis of the first rolling element can, for example, have a greater distance to the counter bearing than the axis of the second roller element so that a force is introduced into the intermediate lever which both presses the guide roller element against the slotted guide and presses the first roller against the camshaft. This provides a direct dissipation of the valve forces into the slotted guide, thereby significantly reducing the load of the intermediate lever. It is thus possible to design the intermediate lever to be compacter and lighter. Such an arrangement also changes the phase of the valve opening relative to the cam angle and thus to the crank angle. A camshaft actuator for the camshaft can thereby be used that has a reduced adjustment range.
(7) In an embodiment of the present invention, the guide roller element can, for example, be the second roller element. A common stationary contact roller is thereby provided for guiding in the slotted link and for operative connection with the valve stroke adjustment device. A significantly smaller number of components and less constructive effort is thereby possible. Less friction further occurs due to integrally shorter rolling paths under load. The moved mass of the intermediate lever arrangement is at the same time reduced. It is also possible, however, that at least one separate guide roller element is supported on the axis of the second roller element.
(8) In an embodiment of the present invention, the axis of the second roller element can, for example, be rigidly connected with the intermediate lever. In an embodiment of the present invention, an effective contour of the slotted link can, for example, be designed as a circular path around the center of a third roller element of the drag lever in contact with the base circle of the camshaft.
(9) The present invention will be explained in greater detail below under reference to the drawings.
(10) The basic function of a mechanical valve drive described hereunder is generally known by the designation UniValve. Reference is made to DE 10 2004 003 327 A1 and DE 10 2012 006 982 A1 for the general function of such a valve drive.
(11)
(12) In order to provide a particularly compact valve drive 2 that is optimal with respect to kinematic relations, the second roller element 20 is designed as a guide roller element in addition to its function as a contact surface for the valve stroke adjustment device 10, the guide roller element, together with a slotted guide 34, serving as a guide 36 for the intermediate lever 12. It should be clear that the guide 36 may also be formed as separate guide roller elements so that, in this case, at least one guide roller element would be arranged on the axis 22 beside the second roller element 20, the guide roller element engaging the slotted guide 34. In the shown embodiment, the axis 22 is rigidly connected with the intermediate lever 12 so that the same is very torsion resistant. An operative contour 38 of the slotted guide 34 is formed in the base circle design of the circumferential contour 16 of the camshaft 18 as a circular path around the center of the third roller element 26 of the drag lever 28 of the drag lever arrangement 8.
(13) A torsion spring element 40 is further provided which has a first end 42 supported in a cylinder housing part 43 and a second end 44 engaging a counter bearing 46 that is rigidly connected with the intermediate lever 12. An axis 53 of the first roller element 14 thereby has a distance to the counter bearing 46 which is greater than a distance of the axis 22 of the second roller element 14 to the counter bearing 46. A force is thereby introduced into the intermediate lever 12 which both presses the second roller element 20 against the slotted guide 34 and the valve stroke adjustment device 10 and presses the first roller element 14 against the camshaft 18.
(14)
(15)
(16)
(17)
(18) It should be clear that, between the extreme positions shown, a great number of intermediate positions are possible that entail a change not only of the valve stroke and the opening period, but also of the phase of the valve opening relative to the cam angle and thus to the crank angle.
(19) The present invention is not limited to embodiments described herein; reference should be had to the appended claims.