Method for producing seamless metal pipe
US-2017001225-A1 · Jan 5, 2017 · US
US12269079B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-12269079-B2 |
| Application number | US-202017775952-A |
| Country | US |
| Kind code | B2 |
| Filing date | Sep 29, 2020 |
| Priority date | Nov 22, 2019 |
| Publication date | Apr 8, 2025 |
| Grant date | Apr 8, 2025 |
A practical reading order for non-experts. Skip the full description unless you need deep technical detail.
What the patent document calls the invention.
A short plain-language summary of the technical disclosure.
Who owns or filed the patent and who is credited as inventor.
Filing, priority, publication, and grant dates set the timeline.
The legal scope of protection — read this for what is actually claimed.
Technology tags used to group this patent with similar filings.
Prior art links and similar publications in this corpus.
Official abstract text for this publication.
A rolling mill includes three or more rolling rolls aligned along a circumferential direction and arranged so each rotary shaft is skewed with respect to a pass line of a material to be rolled, wherein the material to be rolled made of a pipe or bar material passes between the rolling rolls while being rotated to undergo diameter reducing rolling. At least one rolling roll selected from the three or more rolling rolls is smaller in roll diameter than at least one other rolling roll. When at least one rolling roll having a relatively maximum roll diameter defined as a maximum diameter rolling roll and at least one rolling roll smaller in roll diameter than the maximum is defined as a small diameter rolling roll, the small diameter rolling roll has a roll diameter equal to or less than 90% of the roll diameter of the maximum diameter rolling roll.
Opening claim text (preview).
The invention claimed is: 1. A rolling mill for diameter reducing rolling comprising: three or more rolling rolls aligned along a circumferential direction of a material to be rolled made of a pipe or bar material, and arranged such that each rotary shaft of the rolling rolls is skewed with respect to a pass line of the material to be rolled, at least one rolling roll from among the three or more rolling rolls being configured as a drive roll that is rotationally driven, and wherein the three or more rolling rolls are configured to pass the material to be rolled through between the three or more rolling rolls while rotating the material to undergo the diameter reducing rolling, wherein at least one rolling roll from among the three or more rolling rolls is smaller in roll diameter than at least one other rolling roll; and wherein, among the three or more rolling rolls, at least one rolling roll having a maximum roll diameter is defined as a maximum diameter rolling roll and at least one rolling roll smaller in diameter than the maximum diameter rolling roll is defined as a small diameter rolling roll, and the small diameter rolling roll has a roll diameter greater than or equal to 65% and equal to or less than 85% of the roll diameter of the maximum diameter rolling roll. 2. The rolling mill for diameter reducing rolling according to claim 1 , wherein at least one rolling roll from among the maximum diameter rolling roll is the drive roll, and at least one rolling roll from among the small diameter rolling roll is a non-drive rolling roll. 3. The rolling mill for diameter reducing rolling according to claim 1 , wherein a backup mechanism is provided to receive a load that is applied to the at least one rolling roll from among the small diameter rolling roll. 4. The rolling mill for diameter reducing rolling according to claim 1 , wherein roll rotary shafts of the three or more rolling rolls are arranged at an angle of 360 degrees/the number of rolls ±20 degrees along a circumferential direction of the pass line. 5. The rolling mill for diameter reducing rolling according to claim 4 , wherein in the three or more rolling rolls, arrangement angle intervals between the rotary shafts of the rolling rolls arranged along the circumferential direction of the pass line are different. 6. The rolling mill for diameter reducing rolling according to claim 1 , wherein the three or more rolling rolls are arranged asymmetrically along the circumferential direction of the pass line. 7. A method for manufacturing a strip material comprising operating the rolling mill for diameter reducing rolling according to claim 1 so as to roll the pipe or bar material and reduce an outer diameter of the pipe or bar material. 8. The rolling mill for diameter reducing rolling according to claim 2 , wherein a backup mechanism is provided to receive a load that is applied to the at least one rolling roll from among the small diameter rolling roll. 9. The rolling mill for diameter reducing rolling according to claim 2 , wherein roll rotary shafts of the three or more rolling rolls are arranged at ((an angle of 360 degrees/the number of rolls)±20 degrees) along a circumferential direction of the pass line. 10. The rolling mill for diameter reducing rolling according to claim 3 , wherein roll rotary shafts of the three or more rolling rolls are arranged at an angle of 360 degrees/the number of rolls ±20 degrees along a circumferential direction of the pass line. 11. The rolling mill for diameter reducing rolling according to claim 2 , wherein the three or more rolling rolls are arranged asymmetrically along the circumferential direction of the pass line. 12. The rolling mill for diameter reducing rolling according to claim 3 , wherein the three or more rolling rolls are arranged asymmetrically along the circumferential direction of the pass line. 13. The rolling mill for diameter reducing rolling according to claim 4 , wherein the three or more rolling rolls are arranged asymmetrically along the circumferential direction of the pass line. 14. The rolling mill for diameter reducing rolling according to claim 5 , wherein the three or more rolling rolls are arranged asymmetrically along the circumferential direction of the pass line. 15. A method for manufacturing a strip material comprising operating the rolling mill for diameter reducing rolling according to claim 2 so as to roll the pipe or bar material and reduce an outer diameter of the pipe or bar material. 16. A method for manufacturing a strip material comprising operating the rolling mill for diameter reducing rolling according to claim 3 so as to roll the pipe or bar material and reduce an outer diameter of the pipe or bar material. 17. A method for manufacturing a strip material comprising operating the rolling mill for diameter reducing rolling according to claim 4 so as to roll the pipe or bar material and reduce an outer diameter of the pipe or bar material. 18. A method for manufacturing a strip material comprising operating the rolling mill for diameter reducing rolling according to claim 5 so as to roll the pipe or bar material and reduce an outer diameter of the pipe or bar material. 19. A method for manufacturing a strip material comprising operating the rolling mill for diameter reducing rolling according to claim 6 so as to roll the pipe or bar material and reduce an outer diameter of the pipe or bar material. 20. The rolling mill for diameter reducing rolling according to claim 1 , wherein (i) only three rolling rolls are included, and (ii) two of the rolling rolls are small diameter rolls smaller in diameter than the third rolling roll of the three rolling rolls.
the axes of the rollers being arranged essentially diagonally to the axis of the work, e.g. "cross" tube-rolling {; Diescher mills, Stiefel disc piercers or Stiefel rotary piercers} · CPC title
Rolls for sheets or strips · CPC title
Finishing, e.g. smoothing, sizing {, reeling} · CPC title
Counter-pressure devices acting on rolls to inhibit deflection of same under load, e.g. backing rolls {; Roll bending devices, e.g. hydraulic actuators acting on roll shaft ends (control devices responsive to roll bending B21B37/38)} · CPC title
axes being arranged in different planes · CPC title
Related publications grouped by family.
Answers are generated from the same data shown on this page.