Relief valve for oil pump having separated bypass period
US-11143067-B2 · Oct 12, 2021 · US
US9353653B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9353653-B2 |
| Application number | US-201414549617-A |
| Country | US |
| Kind code | B2 |
| Filing date | Nov 21, 2014 |
| Priority date | Nov 22, 2013 |
| Publication date | May 31, 2016 |
| Grant date | May 31, 2016 |
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A vane rotor includes a laminated portion and seal portions. The laminated portion includes a plurality of metal plates, which are stacked in an axial direction. The seal portions are placed on two axially opposite sides of each of an advancing port, a retarding port, and a supply port. Each seal portion is configured into an annular form to extend along an outer peripheral surface of a sleeve in a circumferential direction and is engaged with the laminated portion to limit deformation of the seal portion toward a radially outer side. The seal portion is made of a material that has a thermal expansion coefficient, which is larger than a thermal expansion coefficient of a material of each metal plate.
Opening claim text (preview).
What is claimed is: 1. A valve timing adjusting apparatus that is placed in a drive force transmission path for transmitting a drive force from a driving-side shaft of an internal combustion engine to a driven-side shaft and adjusts valve timing of at least one of an intake valve and an exhaust valve driven by the driven-side shaft, the valve timing adjusting apparatus comprising: a housing that is rotatable integrally with one of the driving-side shaft and the driven-side shaft; a vane rotor that is received in the housing and is rotatable integrally with the other one of the driving-side shaft and the driven-side shaft, wherein the vane rotor has a vane, which partitions a corresponding inner space of the housing into an advancing chamber and a retarding chamber, and the vane rotor includes: an advancing oil passage that is communicated with the advancing chamber; a retarding oil passage that is communicated with the retarding chamber; and a supply oil passage that is communicatable with an external oil supply source; a sleeve that is configured into a tubular form and extends in an axial direction at a center portion of the vane rotor, wherein the sleeve includes: an advancing port that is communicated with the advancing oil passage; a retarding port that is communicated with the retarding oil passage; and a supply port that is communicated with the supply oil passage; and a spool that is displaceable in the axial direction in an inside of the sleeve, wherein the spool connects between the supply port and the advancing port when the vane rotor is rotated to an advancing side relative to the housing, and the spool connects between the supply port and the retarding port when the vane rotor is rotated to a retarding side relative to the housing, wherein: the vane rotor includes: a laminated portion that includes a plurality of metal plates, which are stacked in the axial direction; and a seal portion that is placed on at least one of two axially opposite sides of at least one of the advancing port, the retarding port, and the supply port and is configured into an annular form to extend along an outer peripheral surface of the sleeve in a circumferential direction, wherein the seal portion is engaged with the laminated portion to limit displacement or deformation of the seal portion toward a radially outer side and is made of a material that has a thermal expansion coefficient, which is larger than a thermal expansion coefficient of a material of each of the plurality of metal plates. 2. The valve timing adjusting apparatus according to claim 1 , wherein: the laminated portion of the vane rotor includes a through-hole that extends from an outer peripheral wall surface of the laminated portion to the seal portion; and the vane rotor includes: a molding portion that is molded to surround the outer peripheral wall surface of the laminated portion; and a connecting portion that extends from the molding portion to the seal portion through the through-hole. 3. The valve timing adjusting apparatus according to claim 2 , wherein: the through-hole is one of a plurality of through-holes, which are formed in the laminated portion and radially extend from the seal portion of the vane rotor; and at least a portion of a corresponding one of the plurality of metal plates is circumferentially placed between each circumferentially adjacent two of the plurality of through-holes, which are placed at a common axial position. 4. The valve timing adjusting apparatus according to claim 3 , wherein: the vane is one of a plurality of vanes of the vane rotor; each of the plurality of vanes is circumferentially placed between corresponding circumferentially adjacent two of the plurality of through-holes, which are placed at the common axial position. 5. The valve timing adjusting apparatus according to claim 4 , wherein the number of the plurality of through-holes, which are placed at the common axial position, is equal to the number of the plurality of vanes. 6. The valve timing adjusting apparatus according to claim 2 , wherein the plurality of metal plates includes: a primary metal plate that includes a through-hole forming notch, which radially inwardly extends from an outer peripheral edge of the primary metal plate and forms the through-hole; and a secondary metal plate that is placed adjacent to the primary metal plate in the axial direction and is located on a radially outer side of the seal portion of the vane rotor while an inner peripheral edge of the secondary metal plate is placed on a radially outer side of a radially inner end of the through-hole forming notch. 7. The valve timing adjusting apparatus according to claim 1 , wherein the seal portion is formed as an annular plate and is stacked between corresponding adjacent two of the plurality of metal plates in the axial direction. 8. The valve timing adjusting apparatus according to claim 7 , wherein the seal portion is fixed to the laminated portion at a location, which is on a radially outer side of a radial center of a radial width of the seal portion.
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