Device and method for controlling variable compression ratio internal combustion engine
US-2015330315-A1 · Nov 19, 2015 · US
US9874128B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9874128-B2 |
| Application number | US-201414507880-A |
| Country | US |
| Kind code | B2 |
| Filing date | Oct 7, 2014 |
| Priority date | Nov 6, 2013 |
| Publication date | Jan 23, 2018 |
| Grant date | Jan 23, 2018 |
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A fluid injector includes a valve assembly constructed and arranged to control flow of fluid from an inlet to an outlet of the injector. A metal housing surrounds at least a portion of the valve assembly. A plastic body is molded over at least a portion of the housing. A distal end of the body defines an integral stepped portion extending from the body. A carrier surrounds at least the distal end of the body. A seal member is in contact with at least the stepped portion and a surface of the carrier to prevent liquid from entering a space between the housing and the body.
Opening claim text (preview).
What is claimed is: 1. A fluid injector comprising: a valve assembly constructed and arranged to control flow of fluid from an inlet to an outlet of the injector, a metal housing surrounding at least a portion of the valve assembly, a plastic body molded over at least a portion of the metal housing, a distal end of the plastic body defining an integral stepped portion extending from the plastic body, a carrier surrounding at least the distal end of the plastic body, and a seal member in contact with at least the stepped portion of the plastic body and a surface of the carrier to prevent liquid from entering a space between the metal housing and the plastic body. 2. The injector of claim 1 , wherein the valve assembly includes a coil, a pole piece, and an armature movable with respect to the pole piece. 3. The injector of claim 1 , wherein the stepped portion is in the form of a bead having a curved surface, the seal member engaging in the curved surface. 4. The injector of claim 1 , wherein the seal member contacts the stepped portion, a portion of the metal housing, and the surface of the carrier. 5. The injector of claim 1 , wherein the stepped portion abuts with the metal housing. 6. The injector of claim 1 , wherein the seal member is sandwiched between a planar surface of the stepped portion and the surface of the carrier to define a radial seal. 7. The injector of claim 6 , wherein a distal end of the metal housing includes a flange for holding the seal member, the stepped portion extending to the flange. 8. The injector of claim 1 , wherein a distal end of the metal housing includes a flange for holding the seal member, the flange being spaced from the stepped portion with the seal member disposed between the flange and the stepped portion. 9. The injector of claim 8 , wherein the seal member is an elastomer O-ring. 10. The injector of claim 1 , wherein the seal member is an elastomer O-ring. 11. The injector of claim 1 , wherein the injector is a reductant delivery unit injector and includes a shield surrounding a portion of the body and the carrier, the shield including openings defined thereon. 12. The injector of claim 1 , further comprising a shield surrounding a portion of the body and the carrier, the shield including openings defined thereon. 13. A fluid injector comprising: a valve assembly constructed and arranged to control flow of fluid from an inlet to an outlet of the fluid injector, a metal housing surrounding at least a portion of the valve assembly, a plastic body molded over at least a portion of the metal housing, a distal end of the plastic body defining an integral stepped portion extending from the plastic body, a carrier surrounding at least the distal end of the plastic body, and a seal member disposed between and contacting the stepped portion of the plastic body and the carrier, the seal member preventing liquid from entering a space between the metal housing and the plastic body. 14. The injector of claim 13 , wherein the stepped portion of the plastic body is in the form of a bead having a curved surface, the seal member engaging the curved surface. 15. The injector of claim 13 , wherein the seal member contacts the stepped portion of the plastic body, the metal housing, and the carrier. 16. The injector of claim 13 , wherein the stepped portion of the plastic body abuts with the metal housing. 17. The injector of claim 13 , wherein a distal end of the metal housing includes a flange for holding the seal member, the flange being spaced from the stepped portion of the plastic body with the seal member disposed between the flange and the stepped portion of the plastic body. 18. The injector of claim 13 , wherein a distal end of the metal housing includes a flange for holding the seal member, the stepped portion of the plastic body extending to the flange. 19. The injector of claim 13 , wherein the seal member is an elastomer O-ring. 20. The injector of claim 13 , wherein the seal member is disposed between and contacts the metal housing and the carrier and is disposed between and contacts the stepped portion of the plastic body and the carrier. 21. The injector of claim 13 , wherein the stepped portion of the plastic body contacts and is disposed between and contacts the metal housing and the seal member, and the seal member is disposed between and contacts the stepped portion of the plastic body and the carrier. 22. The injector of claim 13 , wherein the injector is a reductant delivery unit injector and includes a shield surrounding a portion of the body and the carrier, the shield including openings defined thereon. 23. The injector of claim 13 , further comprising a shield surrounding a portion of the body and the carrier, the shield including openings defined thereon.
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