Independently rotatable flanges and attachable arbor hole adapters
US-2019193984-A1 · Jun 27, 2019 · US
US11524863B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11524863-B2 |
| Application number | US-202117198425-A |
| Country | US |
| Kind code | B2 |
| Filing date | Mar 11, 2021 |
| Priority date | Mar 11, 2021 |
| Publication date | Dec 13, 2022 |
| Grant date | Dec 13, 2022 |
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A spool has a first flange and a second flange. A barrel extends between the first flange and the second flange. A movable hub is located radially inward of the barrel. The barrel is axially wider than the movable hub and the movable hub is axially movable between a first operational position adjacent the first flange and a second operational position adjacent the second flange. The movable hub includes an axially-extending cantilevered detent arm forming a stop surface that limits axial movement of the movable hub toward one of the first flange and the second flange.
Opening claim text (preview).
What is claimed is: 1. A spool, comprising: a first flange; a second flange; a barrel extending between the first flange and the second flange; and a movable hub located radially inward of the barrel, wherein the barrel is axially wider than the movable hub and the movable hub is axially movable between a first operational position adjacent the first flange and a second operational position adjacent the second flange, wherein the movable hub includes an axially-extending cantilevered detent arm forming a stop surface that limits axial movement of the movable hub toward one of the first flange and the second flange. 2. The spool of claim 1 , wherein the movable hub includes a plurality of axially-extending cantilevered detent arms forming spokes between the movable hub and the barrel. 3. The spool of claim 2 , wherein the axially-extending cantilevered detent arms are spaced 120 degrees apart around the movable hub. 4. The spool of claim 2 , wherein the movable hub includes a radially-projecting rib between each of the axially-extending cantilevered detent arms, and wherein each radially-projecting rib forms a further stop surface that limits axial movement of the movable hub toward the other one of the first flange and the second flange. 5. The spool of claim 4 , wherein the movable hub is flush with the first flange when in the first operational position and flush with the second flange when in the second operational position. 6. The spool of claim 1 , wherein an inner surface of the barrel includes a rib having a notch that receives the axially-extending cantilevered detent arm and restricts rotation of the movable hub within the barrel. 7. The spool of claim 6 , wherein the axially-extending cantilevered detent arm includes a plurality of cam surfaces that interact with the notch to flex the axially-extending cantilevered detent arm during the axial movement of the movable hub. 8. The spool of claim 7 , wherein the rib is an annular rib, and wherein the inner surface of the barrel further includes an inward radial projection forming a further stop surface that limits axial movement of the movable hub toward the other one of the first flange and the second flange, wherein the inward radial projection is axially offset from the annular rib. 9. A welding wire spool, comprising: a barrel; a first flange surrounding the barrel; a second flange surrounding the barrel; a length of welding wire wound on the barrel between the first flange and the second flange; and a movable hub located radially inward of the barrel, wherein the barrel is axially wider than the movable hub and the movable hub is axially movable between a first operational position adjacent the first flange and a second operational position adjacent the second flange, wherein the movable hub includes an axially-extending spring arm that applies a radial bias force to the barrel during axial movement of the movable hub. 10. The welding wire spool of claim 9 , wherein the movable hub includes a plurality of axially-extending spring arms forming spokes between the movable hub and the barrel. 11. The welding wire spool of claim 10 , wherein the axially-extending spring arms are spaced 120 degrees apart around the movable hub. 12. The welding wire spool of claim 10 , wherein the axially-extending spring arms each include a detent for positioning the movable hub at one or both of the first operational position and the second operational position. 13. The welding wire spool of claim 10 , wherein each of the axially-extending spring arms includes a stop surface that limits axial movement of the movable hub toward one of the first flange and the second flange, wherein the movable hub includes a radially-projecting rib between each of the axially-extending spring arms, and wherein each radially-projecting rib forms a further stop surface that limits axial movement of the movable hub toward the other one of the first flange and the second flange. 14. The welding wire spool of claim 13 , wherein the movable hub is flush with the first flange when in the first operational position and flush with the second flange when in the second operational position. 15. The welding wire spool of claim 9 , wherein an inner surface of the barrel includes a rib having a notch that receives the axially-extending spring arm and restricts rotation of the movable hub within the barrel. 16. The welding wire spool of claim 15 , wherein the axially-extending spring arm includes a plurality of cam surfaces that interact with the notch to flex the axially-extending spring arm during the axial movement of the movable hub. 17. A spool, comprising: a first flange; a second flange; a barrel extending between the first flange and the second flange; and a movable hub located radially inward of the barrel, wherein the barrel is axially wider than the movable hub and the movable hub is axially movable between a first operational position adjacent the first flange and a second operational position adjacent the second flange, wherein the movable hub includes an axially-extending spring arm that applies a radial bias force to the barrel during axial movement of the movable hub, and wherein the barrel includes a stop surface that limits the axial movement of the movable hub toward one of the first flange and the second flange. 18. The spool of claim 17 , wherein the movable hub includes a plurality of axially-extending spring arms forming spokes between the movable hub and the barrel. 19. The spool of claim 18 , wherein the axially-extending spring arms are spaced 120 degrees apart around the movable hub. 20. The spool of claim 18 , wherein the axially-extending spring arms each include a detent for positioning the movable hub at one or both of the first operational position and the second operational position. 21. The spool of claim 17 , wherein the movable hub is flush with the first flange when in the first operational position and flush with the second flange when in the second operational position. 22. The spool of claim 17 , wherein an inner surface of the barrel includes a rib having a notch that receives the axially-extending spring arm and restricts rotation of the movable hub within the barrel. 23. The spool of claim 22 , wherein the axially-extending spring arm includes a plurality of cam surfaces that interact with the notch to flex the axially-extending spring arm during the axial movement of the movable hub. 24. The spool of claim 23 , wherein the rib is an annular rib that surrounds the movable hub.
with two end flanges · CPC title
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Collapsible hubs · CPC title
axially adjustable reels or bobbins · CPC title
collapsible; with removable parts · CPC title
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