Threaded connection for pipes
US-2022128178-A1 · Apr 28, 2022 · US
US11933431B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11933431-B2 |
| Application number | US-202017427256-A |
| Country | US |
| Kind code | B2 |
| Filing date | Feb 7, 2020 |
| Priority date | Feb 12, 2019 |
| Publication date | Mar 19, 2024 |
| Grant date | Mar 19, 2024 |
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A threaded connection for pipes includes a pin, a box, a shoulder part plating layer, and a non-shoulder part plating layer. The shoulder part plating layer has an outermost layer formed of a high friction coefficient plating layer, and is arranged on a pin side shoulder part and/or a box side shoulder part. The non-shoulder part plating layer has an outermost layer formed of a low friction coefficient plating layer having a coefficient of friction lower than a coefficient of friction of the high friction coefficient plating layer, and the non-shoulder part plating layer is arranged on at least one of a pin side thread part, a pin side metal seal part, a box side thread part, and a box side metal seal part.
Opening claim text (preview).
The invention claimed is: 1. A threaded connection for pipes, comprising: a pin including a pin side thread part, a pin side metal seal part, and a pin side shoulder part; a box including a box side thread part, a box side metal seal part, and a box side shoulder part; a shoulder part plating layer which is arranged on the pin side shoulder part and/or the box side shoulder part, and includes one or more layers, wherein an outermost layer of the shoulder part plating layer is a high friction coefficient plating layer; and a non-shoulder part plating layer which is arranged on at least one of the pin side thread part, the pin side metal seal part, the box side thread part, and the box side metal seal part, and includes one or more layers, wherein an outermost layer of the non-shoulder part plating layer is a low friction coefficient plating layer having a coefficient of friction lower than a coefficient of friction of the high friction coefficient plating layer. 2. The threaded connection for pipes according to claim 1 , wherein the shoulder part plating layer is arranged on the pin side shoulder part, and the non-shoulder part plating layer is arranged on the pin side thread part and the pin side metal seal part. 3. The threaded connection for pipes according to claim 2 , wherein the shoulder part plating layer has a thickness of 1 to 50 μm, and the non-shoulder part plating layer has a thickness of 1 to 50 μm. 4. The threaded connection for pipes according to claim 3 , further comprising a lubricant coating arranged as an outermost layer on or above at least one of the pin side thread part, the pin side metal seal part, the pin side shoulder part, the box side thread part, the box side metal seal part, and the box side shoulder part, wherein the lubricant coating is in a liquid or semisolid state. 5. The threaded connection for pipes according to claim 2 , further comprising a lubricant coating arranged as an outermost layer on or above at least one of the pin side thread part, the pin side metal seal part, the pin side shoulder part, the box side thread part, the box side metal seal part, and the box side shoulder part, wherein the lubricant coating is in a liquid or semisolid state. 6. The threaded connection for pipes according to claim 1 , wherein the shoulder part plating layer is arranged on the box side shoulder part, and the non-shoulder part plating layer is arranged on the box side thread part and the box side metal seal part. 7. The threaded connection for pipes according to claim 6 , wherein the shoulder part plating layer has a thickness of 1 to 50 μm, and the non-shoulder part plating layer has a thickness of 1 to 50 μm. 8. The threaded connection for pipes according to claim 7 , further comprising a lubricant coating arranged as an outermost layer on or above at least one of the pin side thread part, the pin side metal seal part, the pin side shoulder part, the box side thread part, the box side metal seal part, and the box side shoulder part, wherein the lubricant coating is in a liquid or semisolid state. 9. The threaded connection for pipes according to claim 6 , further comprising a lubricant coating arranged as an outermost layer on or above at least one of the pin side thread part, the pin side metal seal part, the pin side shoulder part, the box side thread part, the box side metal seal part, and the box side shoulder part, wherein the lubricant coating is in a liquid or semisolid state. 10. The threaded connection for pipes according to claim 1 , wherein the shoulder part plating layer has a thickness of 1 to 50 μm, and the non-shoulder part plating layer has a thickness of 1 to 50 μm. 11. The threaded connection for pipes according to claim 10 , further comprising a lubricant coating arranged as an outermost layer on or above at least one of the pin side thread part, the pin side metal seal part, the pin side shoulder part, the box side thread part, the box side metal seal part, and the box side shoulder part, wherein the lubricant coating is in a liquid or semisolid state. 12. The threaded connection for pipes according to claim 1 , further comprising a lubricant coating arranged as an outermost layer on or above at least one of the pin side thread part, the pin side metal seal part, the pin side shoulder part, the box side thread part, the box side metal seal part, and the box side shoulder part, wherein the lubricant coating is in a liquid or semisolid state. 13. The threaded connection for pipes according to claim 1 , wherein the high friction coefficient plating layer is selected from the group consisting of a Ni—P alloy plating layer, a Zn—Ni alloy plating layer, a Cu plating layer, a Cr plating layer, and a Cu—Sn—Zn alloy plating layer, and the low friction coefficient plating layer is selected from the group consisting of a Zn—Ni alloy plating layer, a Cu plating layer, a Cr plating layer, a Cu—Sn—Zn alloy plating layer, and a Zn Plating Layer. 14. The threaded connection for pipes according to claim 13 , wherein the high friction coefficient plating layer is selected from the group consisting of a Ni—P alloy plating layer and a Zn—Ni alloy plating layer, and the low friction coefficient plating layer is selected from the group consisting of a Cu plating layer, a Cr plating layer, a Cu—Sn—Zn alloy plating layer, and a Zn plating layer.
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