Variable valve apparatus

US11008905B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-11008905-B2
Application numberUS-201916684068-A
CountryUS
Kind codeB2
Filing dateNov 14, 2019
Priority dateJul 12, 2019
Publication dateMay 18, 2021
Grant dateMay 18, 2021

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  1. Title

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  2. Abstract

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  3. Assignees and inventors

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  4. Key dates

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  5. First independent claim

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  6. CPC / IPC classifications

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  7. Citations and related patents

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Abstract

Official abstract text for this publication.

A variable valve apparatus includes: a swing body mounted to rotate to open and close a valve; an inner body driven by a cam and mounted in the swing body so as to switch a relatively-rotatable state and a latched state with respect to the swing body; a latching pin slidably mounted in the swing body so as to switch the latched state and the relatively-rotatable state of the inner body with respect to the swing body; and a control mechanism pressing the latching pin to make the inner body be latched to the swing body.

First claim

Opening claim text (preview).

What is claimed is: 1. A variable valve apparatus comprising: a swing body mounted to rotate to open and close a valve; an inner body driven by a cam and mounted in the swing body so as to switch between a relatively-rotatable state and a latched state with respect to the swing body; a latching pin slidably mounted in the swing body so as to switch between the latched state and the relatively-rotatable state of the inner body with respect to the swing body; and a control mechanism pressing the latching pin to make the inner body be latched to the swing body, wherein: a plurality of inner bodies are coaxially arranged in a row in the swing body, a plurality of latching pins are mounted in the swing body so as to switch latched states of the plurality of inner bodies with respect to the swing body, respectively, and the control mechanism includes: first and second control shafts coaxially arranged to each other, and a plurality of control levers mounted on at least one of a first control shaft or a second control shaft, so that a rotational force of at least one of the first or second control shafts is converted into an elastic force applying to end portions of the plurality of latching pins protruding outward from the swing body. 2. The variable valve apparatus of claim 1 , wherein a lower portion of a first side of the swing body is spherically supported by a supporting member, and a lower portion of a second side of the swing body is in contact with a stem end of the valve, such that the swing body rotates with respect to the supporting member to open and close the valve. 3. The variable valve apparatus of claim 1 , wherein the inner body is mounted rotatably with respect to the swing body around a rotation axis parallel to a rotation axis of the swing body, and an inner roller is rotatably mounted while keeping a state of being in contact with the cam to receive movement of the cam. 4. The variable valve apparatus of claim 3 , wherein an inner spring is mounted between the inner body and the swing body to elastically support the inner roller of the inner body toward the cam, and a swing roller is mounted in the swing body so as to be rotatable around a rotation axis parallel to a rotation axis of the inner roller. 5. The variable valve apparatus of claim 4 , wherein the latching pin is inserted into an inner groove portion to constrain rotation of the inner body with respect to the swing body, the inner groove portion formed in the inner body, wherein the latching pin slidably penetrates a swing hole formed in the swing body, and wherein a latching spring elastically supports the latching pin in a direction away from the inner groove portion so that the latching pin protrudes outward from the swing body, the latching spring provided between the latching pin and the swing body. 6. The variable valve apparatus of claim 1 , wherein the cam includes a first cam and a second cam which are mounted on a same cam shaft and have cam profiles different from each other, first inner bodies among the plurality of inner bodies are installed to be each driven by the first cam, a second inner body among the plurality of inner bodies is mounted to be driven by the second cam, and the latching pins include first latching pins mounted to make the first inner bodies be latched to the swing body, and a second latching pin mounted to make the second inner body be latched to the swing body. 7. The variable valve apparatus of claim 6 , wherein the second inner body is mounted at a center of the swing body, the first inner bodies are mounted at opposite sides of the second inner body, respectively, and inner rollers of the first inner bodies each have a width smaller than a width of an inner roller of the second inner body. 8. The variable valve apparatus of claim 6 , wherein the first control shaft is a hollow shaft, and the second control shaft is inserted into the hollow shaft, wherein the plurality of control levers include: a first control lever connected to the first control shaft and configured to transfer an elastic force to the first latching pin, and a second control lever connected to the second control shaft and configured to transfer an elastic force to the second latching pin, and wherein a cut portion is formed in the first control shaft and configured to allow a rotational force of the second control shaft to be transferred to the second control lever positioned outside the first control shaft. 9. The variable valve apparatus of claim 8 , further comprising: a first connecting pin configured to limit a rotation range of the first control lever and fixed to the first control shaft; a first control spring mounted between the first connecting pin and the first control lever; a second connecting pin fixed to the second control shaft while penetrating through the cut portion so as to limit a rotation range of the second control lever; and a second control spring mounted between the second connecting pin and the second control lever, wherein the first control lever is rotatably mounted on an outer circumferential surface of the first control shaft, and the second control lever is rotatably mounted on the outer circumferential surface of the hollow shaft in a rotatable state with respect to the second control shaft. 10. The variable valve apparatus of claim 8 , wherein the first control lever has an elastically-deformable plate shape, and is fixed to an outer circumferential surface of the first control shaft by a first fixing pin, and wherein the second control lever has an elastically-deformable plate shape and is fixed to the second control shaft by a second fixing pin through the cut portion at the outside of the first control shaft. 11. A variable valve engine comprising: single variable valve apparatuses each including one inner body and mounted, respectively, at intake sides and exhaust sides of combustion chambers which correspond to the half of entire combustion chambers of the engine and have unconsecutive combustion sequences; a first control shaft mounted to switch a state of pressing latching pins of the single variable valve apparatuses mounted at the intake sides, respectively; a first motor mounted to drive the first control shaft; a second control shaft configured to change a state of pressing latching pins of the single variable valve apparatuses mounted at the exhaust sides; and a second motor configured to drive the second control shaft wherein the first and second control shafts are coaxially arranged to each other, and a plurality of control levers are mounted on at least one of the first control shaft or the second control shaft, so that a rotational force of at least one of the first or second control shafts is converted into an elastic force applying to end portions of the latching pins of the single variable valve apparatus. 12. The variable valve engine of claim 11 , wherein an inner roller mounted in the inner body of each of the single variable valve apparatuses is mounted so as to keep a state of being in contact with a cam having a base cam profile, and a swing roller mounted in a swing body of each of the single variable valve apparatuses is mounted so as to keep a state of being in contact with a cam which implements a zero lift. 13. A variable valve engine comprising: multi variable valve apparatuses each including a plurality of inner bodies and mounted, respectively, at intake sides of combustion chambers which correspond to the half of entire combustion chambers of the engine and have unconsecutive combustion sequences; single variable valve apparatuses each including one inner body a

Assignees

Inventors

Classifications

  • Lost motion springs · CPC title

  • 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 · CPC title

  • Overhead end-pivot rocking arms · CPC title

  • Deactivating valves · CPC title

  • Cutting-out cylinders · CPC title

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What does patent US11008905B2 cover?
A variable valve apparatus includes: a swing body mounted to rotate to open and close a valve; an inner body driven by a cam and mounted in the swing body so as to switch a relatively-rotatable state and a latched state with respect to the swing body; a latching pin slidably mounted in the swing body so as to switch the latched state and the relatively-rotatable state of the inner body with res…
Who is the assignee on this patent?
Hyundai Motor Co Ltd, Kia Motors Corp, Back You Seok, and 1 more
What technology area does this patent fall under?
Primary CPC classification F01L13/0005. Mapped technology areas include Mechanical Engineering.
When was this patent published?
Publication date Tue May 18 2021 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 8 related publications on this page (citations in our corpus or others sharing the same primary CPC).