Retaining ring and method of manufacture
US-12228218-B2 · Feb 18, 2025 · US
US9671027B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9671027-B2 |
| Application number | US-201514700561-A |
| Country | US |
| Kind code | B2 |
| Filing date | Apr 30, 2015 |
| Priority date | Apr 30, 2015 |
| Publication date | Jun 6, 2017 |
| Grant date | Jun 6, 2017 |
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Official abstract text for this publication.
A valve arrangement including a sealing element is provided. The valve arrangement includes a housing having a port. A rotary valve body includes an opening, and the rotary valve body is arranged within the housing. The port of the housing and the opening of the rotary valve body are alignable with each other via rotation of the rotary valve body in the housing. A sealing element is arranged within the port. The sealing element includes a seal body having a first axial end engaged against the rotary valve body and a second axial end including a resilient axially compressible portion that engages against a seat in the housing. The resilient axially compressible portion of the sealing element preloads the sealing element axially against the rotary valve body.
Opening claim text (preview).
What is claimed is: 1. A valve arrangement comprising: a housing including a port; a rotary valve body including an opening, the rotary valve body arranged within the housing, and the port of the housing and the opening of the rotary valve body are alignable with each other via rotation of the rotary valve body in the housing; and a sealing element arranged within the port, the sealing element including a seal body having a first axial end engaged against the rotary valve body and a second axial end including a resilient axially compressible portion and a first sealing lip that engages against a seat in the housing and a second sealing lip that engages the seat in the housing, and the second sealing lip is arranged radially inwardly from the resilient axially compressible portion and engages a radially outer surface of the port, and the resilient axially compressible portion of the sealing element preloads the sealing element axially against the rotary valve body. 2. The valve arrangement of claim 1 , wherein the seat is defined in or around the port. 3. The valve arrangement of claim 1 , wherein the seat is defined by a fitting in the port. 4. The valve arrangement of claim 1 , wherein the sealing element is formed from an elastomeric material. 5. The valve arrangement of claim 1 , wherein the resilient axially compressible portion includes an at least partially radially extending protrusion. 6. The valve arrangement of claim 5 , wherein the at least partially radially extending protrusion of the sealing element extends radially outwardly in the port. 7. The valve arrangement of claim 5 , wherein the at least partially radially extending protrusion of the sealing element defines the first lip seal. 8. The valve arrangement of claim 1 , wherein the second sealing lip engages against a radially outer surface of a shoulder of the port. 9. A valve arrangement comprising: a housing including a port with a circumferential shoulder arranged therein; a rotary valve body including an opening, the rotary valve body arranged within the housing, and the port of the housing and the opening of the rotary valve body are alignable with each other via rotation of the rotary valve body in the housing; and a sealing element arranged within the port, the sealing element including a seal body having a first axial end engaged against the rotary valve body and a second axial end including a resilient axially compressible portion with a first sealing lip that engages a surface of the circumferential shoulder in the port and a second sealing lip arranged radially inwardly from the resilient axially compressible portion that engages a radially outer surface of the circumferential shoulder in the port, and the resilient axially compressible portion of the sealing element preloads the sealing element axially against the rotary valve body. 10. The valve arrangement of claim 9 , wherein the resilient axially compressible portion engages against an axial end surface of the circumferential shoulder.
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