EP4433400A1 - Fiber catching device for rotating tube - Google Patents
Fiber catching device for rotating tubeInfo
- Publication number
- EP4433400A1 EP4433400A1 EP22896441.7A EP22896441A EP4433400A1 EP 4433400 A1 EP4433400 A1 EP 4433400A1 EP 22896441 A EP22896441 A EP 22896441A EP 4433400 A1 EP4433400 A1 EP 4433400A1
- Authority
- EP
- European Patent Office
- Prior art keywords
- fiber
- catching device
- outboard
- fiber catching
- base
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Pending
Links
Classifications
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B65—CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
- B65H—HANDLING THIN OR FILAMENTARY MATERIAL, e.g. SHEETS, WEBS, CABLES
- B65H65/00—Securing material to cores or formers
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B65—CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
- B65H—HANDLING THIN OR FILAMENTARY MATERIAL, e.g. SHEETS, WEBS, CABLES
- B65H54/00—Winding, coiling, or depositing filamentary material
- B65H54/02—Winding and traversing material on to reels, bobbins, tubes, or like package cores or formers
- B65H54/38—Arrangements for preventing ribbon winding ; Arrangements for preventing irregular edge forming, e.g. edge raising or yarn falling from the edge
- B65H54/388—Preventing the yarn from falling off the edge of the package
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B65—CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
- B65H—HANDLING THIN OR FILAMENTARY MATERIAL, e.g. SHEETS, WEBS, CABLES
- B65H75/00—Storing webs, tapes, or filamentary material, e.g. on reels
- B65H75/02—Cores, formers, supports, or holders for coiled, wound, or folded material, e.g. reels, spindles, bobbins, cop tubes, cans, mandrels or chucks
- B65H75/18—Constructional details
- B65H75/28—Arrangements for positively securing ends of material
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B65—CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
- B65H—HANDLING THIN OR FILAMENTARY MATERIAL, e.g. SHEETS, WEBS, CABLES
- B65H2701/00—Handled material; Storage means
- B65H2701/30—Handled filamentary material
- B65H2701/31—Textiles threads or artificial strands of filaments
- B65H2701/312—Fibreglass strands
Definitions
- the present disclosure relates generally to the winding of fibers onto a tube to produce a doff, and more generally to an apparatus for guiding fibers during the winding process.
- Reinforcing fibers such as glass
- glass fibers can be used in insulation as well as in a variety of polymers for composite material applications.
- the fibers are wound onto a tube to form a doff.
- the tube typically rotates at high speeds, and the fibers are wound around the tube to quickly form the doff.
- Some winding operations include multiple tubes and thus involve the transfer of fibers from one tube to another. Transferring the continuous strand of fiber from one tube to the next in an efficient manner can be challenging at the high rotation speeds as fibers may tend to drift off the tube. When the fibers drift off the tube, a significant amount of manual labor is involved to re-direct/re-wind the fibers onto the tube, which also involves production down-time.
- a fiber catching device in one form, includes a base having an inboard portion and an outboard portion, an external wall extending upwardly from the inboard portion of the base, an outboard hook extending upwardly from the outboard portion of the base and extending to a height above the external wall, and at least one receiver disposed between the external wall and the outboard hook.
- a plurality of protrusions are disposed on the external wall and define a plurality of gaps there between; the gaps further comprise radial gaps arranged progressively closer to a top of the external wall; the gaps further comprise circumferential gaps arranged circumferentially along the external wall; the external wall is angled towards the outboard hook; the receiver is a groove; an inboard hook extends upwardly from the inboard portion of the base; a ridge extends upwardly from the base between the inboard and outboard hooks, wherein the receiver includes an inboard groove disposed between the inboard hook and the ridge, and an outboard groove disposed between the outboard hook and the ridge; the inboard portion of the base defines an inclined edge; the base further comprises opposed circumferential extensions; each of the opposed circumferential extensions comprises at least one aperture configured to receive a mechanical fastener; an internal recess extends radially below the base and is configured to receive an outboard edge of a
- a fiber catching system in another form of the present disclosure, includes a tube and a fiber catching device.
- the fiber catching device includes a base having an inboard portion and an outboard portion, an external wall extending upwardly from the inboard portion of the base, an outboard hook extending upwardly from the outboard portion of the base and extending to a height above the external wall, and at least one receiver disposed between the external wall and the outboard hook, wherein the fiber catching device is configured to direct a continuous fiber into the receiver of the fiber catching device and around an exterior surface of the tube during a fiber winding operation.
- FIG. 1 is a perspective view of a multiple-tube winding system to which the teachings of the present disclosure are applied;
- FIG. 2 is a perspective view of a fiber catching device constructed according to the teachings of the present disclosure
- FIG. 3 is a front view of the fiber catching device of FIG. 2;
- FIG. 4 is a side view of the fiber catching device of FIG. 2;
- FIG. 5 is a top view of the fiber catching device of FIG. 2;
- FIG. 6 is a cross-sectional view taken through line 6-6 of FIG. 5;
- FIG. 7 is a detail view of an end portion of the fiber catching device of FIG. 2;
- FIG. 8 is a perspective view of another form of a fiber catching device according to the teachings of the present disclosure.
- FIG. 9 is a front view of the fiber catching device of FIG. 8;
- FIG. 10 is a side view of the fiber catching device of FIG. 8;
- FIG. 11 is a top view of the fiber catching device of FIG. 8;
- FIG. 12 is a perspective view of another form of a fiber catching device according to the teachings of the present disclosure.
- FIG. 13 is a perspective view of yet another form of a fiber catching device according to the teachings of the present disclosure.
- FIG. 14 is a perspective view of still another form of a fiber catching device according to the teachings of the present disclosure.
- FIG. 15 is a perspective view of another form of a fiber catching device according to the teachings of the present disclosure.
- FIG. 16 is a perspective view of yet another form of a fiber catching device in according to the teachings of the present disclosure.
- FIG. 17 is a cross-sectional view of the fiber catching device of FIG. 16;
- FIG. 18 is a perspective view of a fiber catching ring including a ring and a fiber catching device according withe teachings of the present disclosure
- FIG. 19 is an enlarged perspective view of fibers caught within a fiber catching device according to the teachings of the present disclosure.
- the fiber winding system 10 generally includes one or more winders 12, onto which tubes 14 are mounted. Strands of continuous fiber 16 are wound onto the tubes 14 to form doffs 18, which are subsequently packaged and used in downstream products/processes.
- the fiber winding system 10 generally includes one or more winders 12, onto which tubes 14 are mounted. Strands of continuous fiber 16 are wound onto the tubes 14 to form doffs 18, which are subsequently packaged and used in downstream products/processes.
- two (2) winders 12 are shown. It should be understood, however, that the teachings of the present disclosure can be applied to fiber winding systems having only one (1 ) or multiple winders while remaining within the scope of the present disclosure.
- the strands of fiber 16 in this form are glass, however, it should be understood that other fiber materials, such as by way of example carbon, Kevlar®, and natural fibers, among others, may be used while remaining within the scope of the present disclosure.
- a “fiber winding operation” is a process by which the fiber 16 is wound about the tube 14 to form the doff 18.
- the fiber 16 is initially free from the tube 14, e.g., extending from a fiber manufacturing machine (not shown).
- the fiber 16 is directed around an exterior surface of the tube 14 as the tube 14 rotates about the rotatable axis R.
- the fiber 16 engages with the tube 14 such that the fiber 16 forms a friction fit with the tube 14, pulling the fiber 16 around and along the exterior surface of the tube 14.
- a fiber catching device 20 is provided to catch the fiber 16 during the fiber winding operation, and in one form when transferring from one winder 12/tube 14 to the next winder 12/tube 14.
- the fiber catching device 20 is generally an arcuate body configured to be secured to an outboard edge 15 of the tube 14. It should be understood that the body may define a shape other than arcuate while remaining within the scope of the present disclosure.
- the fiber catching device 20 is configured to "catch" and direct the fiber 16 that has been wound onto the tube 14, (illustrated and described in greater detail below), in the direction of rotation as indicated by arrow “R,” and to maintain the fiber 16 on the tube 14 during the fiber winding operation. Further, the fiber catching device 20 together with the tube 14 is also referred to herein as a fiber catching system.
- the fiber catching device 20 includes a base 22 and a receiver, which in this design is in the form of grooves 40/42, described in greater detail below.
- the term “receiver” should be construed to mean any element, feature, or material(s) of the fiber catching device 20 configured to receive the fiber 16.
- the fiber catching device 20 further includes an internal recess 24 extending radially below the base 22, an inboard hook 26 extending upwardly from the base 22, an outboard hook 28 extending upwardly from the base 22, and a ridge 30 extending upwardly from the base 22 between the inboard and outboard hooks 26, 28.
- the base 22 provides structure from which other portions of the body extend and provides a mounting area for the fiber catching device 20.
- the fiber catching device 20 being curved or arcuate in one form as shown, is designed to fit or slide onto the tube 14, as illustrated and set forth in greater detail below.
- the body can be formed using a variety of manufacturing methods, such as by way of example, 3D printing/additive manufacturing, casting, and molding, among others.
- the fiber catching device 20 is a thermoplastic polymer material formed using a multi-jet fusion additive manufacturing process.
- the fiber catching device 20 includes a ledge 32 extending radially below the base 22.
- the ledge 32 and the base 22 define the internal recess 24 therebetween.
- the fiber catching device 20 further includes an outboard wall 34 connecting the base 22 to the ledge 32.
- the base 22 has an inclined edge 36 extending downward toward the ledge 32.
- a height of the internal recess 24 between the inclined edge 36 and the ledge 32 is less than a height of the remainder of the internal recess 24 and is also less than the thickness of the tube 14.
- the fiber catching device 20 When the fiber catching device 20 is slid onto the tube 14, the tube 14 enters the recess 24, and the tube 14 elastically deforms the inclined edge 36 upward as shown, thereby forming a friction fit therebetween. The fiber catching device 20 is thus partially held onto the tube 14 with compressive force from the elastically deformed inclined edge 36. The fiber catching device 20 is further secured to the tube 14 using stitching (not shown) in one form of the present disclosure. In another form, the fiber catching device 20 may be riveted to the tube 14 or adhesively bonded, among other attachment means.
- the outboard hook 28 extends to a height above the inboard hook 26.
- the inboard and outboard hooks 26, 28 are generally curved structures arranged to direct and capture the fiber 16 within the fiber catching device 20. That is, the inboard and outboard hooks 26, 28 are curved such that when the fiber 16 moves up onto the fiber catching device 20, the curved hooks 26/28 hold the fiber 16 within the fiber catching device 20 and inhibit the fiber 16 from moving away from the tube 14.
- the inboard and outboard hooks 26, 28 are thus generally disposed opposite each other along the base 22 to contain the fiber 16 within the fiber catching device 20 during a winding operation. In one form, the inboard and outboard hooks 26, 28 each have rounded edges 38 that inhibit tearing or breaking of the fiber 16.
- the fiber catching device 20 further includes an inboard groove 40 and an outboard groove 42, separated by the ridge 30.
- the ridge 30 extends to a height below a top of the inboard hook 26 and a top of the outboard hook 28.
- the grooves 40, 42 are configured to further capture and maintain, or receive, the fiber 16 within the fiber catching device 20. Therefore, the grooves 40, 42, individually or together, should be considered to be a "receiver" as that term has been defined herein.
- the inboard hook 26 further includes an angled external wall 48.
- the angled external wall 48 is configured to face the fiber 16 as the fiber 16 approaches the fiber catching device 20.
- the angled external wall 48 guides the fiber 16 up onto the fiber catching device 20, up and over the inboard hook 26, and into one of the grooves 40, 42.
- the external wall 48 is angled relative to the base 22 to direct the fiber 16 into the grooves 40, 42. In other words, the external wall 48 and the base 22 define a nonzero angle such that the external wall 48 extends toward the center of the fiber catching device 20.
- the fiber catching device 20 also includes a plurality of protrusions 50 disposed on the angled external wall 48.
- the protrusions 50 are configured to catch and direct the fiber 16 along the angled external wall 48, past the inboard hook 26, and into one of the inboard groove 40 or the outboard groove 42.
- the protrusions 50 in this form include a leading protrusion 52.
- the leading protrusion 52 is positioned to be the first protrusion 50 that engages the fiber 16 as the tube 14 is rotated during the fiber winding operation.
- the leading protrusion 52 includes an angled face 54 that directs the fiber along the angled external wall 48.
- the protrusions 50 in one form also include rounded edges as shown to reduce the possibility of tearing or breaking the fiber 16.
- the protrusions 50 are further arranged to direct the fiber 16 progressively closer to a top of the angled external wall 48 through the use of strategically arranged gaps 56.
- the gaps 56 are arranged to catch fiber 16 that does not consistently ride up the angled external wall 48 during the fiber winding process.
- the gaps 56 include radial gaps 58 arranged progressively closer to the top of the angled external wall 48 of the inboard hook 26.
- the radial gaps 58 are arranged in a radial direction from a bottom of the angled external wall 48 to the top of the angled external wall 48.
- the gaps 56 further include circumferential gaps 60 arranged circumferentially along the angled external wall 48 of the inboard hook 26.
- the radial and circumferential gaps 58, 60 are configured to progressively catch and direct the fiber 16 up along the angled external wall 48.
- protrusions 50 and gaps 56 as illustrated and described herein are merely exemplary and a variety of other configurations may be employed while remaining within the scope of the present disclosure. It should also be understood that the angled external wall 48 may be normal or perpendicular to the base 22 rather than being angled while remaining within the scope of the present disclosure.
- the fiber catching device 70 includes a base 72 extending circumferentially from one end to the other as shown, and the base has an inboard portion 71 and an outboard portion 73.
- the base 72 further includes an inclined edge 74 at its inboard portion 71 , which extends downward as shown.
- the inclined edge 74 functions similar to the inclined edge previously illustrated and described.
- the base 72 further comprises opposed circumferential extensions 76 configured to align with a curvature of the tube 14. The inclined edge 74 and the circumferential extensions 76 are configured to inhibit fibers 16 from being caught beneath the base 72 and to direct the fibers 16 into the fiber catching device 70.
- the circumferential extensions 76 define optional apertures 78 therein to receive a mechanical fastener (not shown), such as a rivet that joins the fiber catching device 70 to the tube 14.
- a mechanical fastener such as a rivet that joins the fiber catching device 70 to the tube 14.
- the fiber catching device 70 may be secured to the tube 14 using stitching.
- the fiber catching device 70 may be adhesively bonded to the tube, among other attachment means. It should be understood that these attachment means may be employed individually or in any combination, such as by way of example, rivets and adhesive bonding.
- the fiber catching device 70 includes an inboard hook 80, an outboard hook 82, and a ridge 84 disposed between the hooks 80, 82.
- the fiber catching device 70 further includes an inboard groove 86 and an outboard groove 88, separated by the ridge 84.
- one or more of the grooves 86, 88 define a "receiver" as that term has been defined herein.
- the grooves 86, 88 are configured to further capture and maintain the fiber 16 within the fiber catching device 70. More specifically, protrusions 90 on an angled external wall 92 define gaps 94 therebetween, and the protrusions 90 progressively guide the fiber 16 toward the grooves 86, 88.
- the gaps 94 include radial gaps 96 arranged progressively closer to the top of the angled external wall 92 and circumferential gaps 98 arranged circumferentially along the angled external wall 92.
- the radial and circumferential gaps 96, 98 are configured to progressively catch and direct the fiber 16 up along the angled external wall 92.
- the angled external wall 92 (and those of other variations illustrated and described herein) is shown angled towards the outboard portion 73, it should be understood that this wall can be normal or perpendicular to the base 72 while remaining within the scope of the present disclosure. Accordingly, the term "external wall" is used to indicate no specific orientation.
- the fiber catching device 100 in this form includes a single groove 102 as the "receiver,” which is disposed between an outboard hook 104 and an external wall 106. Similar to the previous variations, the fiber 16 (not shown) is directed along the external wall 106 by protrusions 108 and into the groove 102. The protrusions 108 direct the fiber 16 along the external wall 106, down along a sloped internal wall 110, and into the groove 102. The protrusions 108 in this form are radially aligned with each other and are evenly spaced apart as shown. The protrusions 108 define gaps 112 therebetween, including radial gaps 114 and circumferential gaps 116 along the external wall 106. The gaps 114, 116 are configured to progressively catch and direct the fiber 16 up along the external wall 106.
- the fiber catching device 100 also includes a base 118 and circumferential extensions 119, similar to those previously described. While apertures are not specifically illustrated, it should be understood that the circumferential extensions 119 may include one or more apertures as previously described to accommodate fasteners to secure the fiber catching device 100 to the tube 14 (not shown). Other forms of attaching the fiber catching device 100 as set forth herein may also be employed. Further, some or all of the features set forth herein in connection with the various fiber catching devices (e.g., internal recess 24) may be employed with this fiber catching device 100 while remaining within the scope of the present disclosure.
- the fiber catching device 120 includes protrusions 122 that only have circumferential gaps 124, with no radial gaps or divisions along a length of an external wall 126. Without the radial gaps, the protrusions 122 are continuous along the external wall 126 as shown. Thus, the protrusions 122 guide the fiber 16 up over the external wall 126, along an internal wall 128, and into to a single groove 130.
- the single groove 130 is thus the "receiver" as that term has been defined herein.
- the fiber catching device 120 further includes an outboard hook 132, which functions as previously set forth with other variations of the fiber catching device.
- this fiber catching device 120 (and all other fiber catching devices illustrated and described herein) may include more than one groove 130 while remaining within the scope of the present disclosure. Further, some or all of the features set forth herein in connection with the various fiber catching devices, may be employed with this fiber catching device 120 while remaining within the scope of the present disclosure.
- FIG. 14 yet another form of a fiber catching device is illustrated and generally indicated by reference numeral 140.
- the fiber catching device 140 has no protrusions to guide the fiber 16. Rather, the fiber 16 is guided along an angled external wall 142, down along an internal wall 144, and into a single groove 146. The single groove 146 is thus the "receiver" as that term has been defined herein.
- This fiber catching device 140 further includes an outboard hook 148, which functions as the other outboard hooks illustrated and described herein. Further, some or all of the features set forth herein in connection with the various fiber catching devices, may be employed with this fiber catching device 140 while remaining within the scope of the present disclosure. Similar features of this fiber catching device 140 that are similar to previously illustrated and described features are omitted for purposes of clarity.
- the fiber catching device 150 includes protrusions 152 with circumferential gaps 154 that guide the fiber 16 along an external wall 156.
- the fiber 16 moves along the external wall 156, over a rounded edge 157, along an internal wall 158, and into a single groove 160.
- the single groove 160 is thus the "receiver" as that term has been defined herein.
- the fiber catching device 150 also includes an outboard wall 162 to block the fiber from moving away from the single groove 160.
- the outboard wall 162 in this form does not include a hook as with previous forms of the present disclosure.
- the outboard wall may be angled inwardly (not shown) to further inhibit the fiber 16 from leaving the fiber catching device 150.
- a fiber catching device 170 in another form, includes a base 171 , an external wall 172, an outboard hook 174, and a ridge 176 therebetween.
- the fiber catching device 170 in this form does not have any protrusions on the external wall 172 (although it could in another form of the present disclosure).
- An inboard groove 178 is disposed between the external wall 172 and the ridge 176, and an outboard groove 180 is disposed between the ridge and the outboard hook 174.
- the grooves 178, 180 act as the receivers for the fiber 16.
- a ramp 182 extends between the inboard groove 178 and the ridge 176.
- the ramp 182 generally directs the fiber 16 toward the outboard groove 180 if the fiber should leave the inboard groove 178 during the winding operation.
- the outboard hook 174 inhibits the fiber 16 from leaving the outboard groove 180. The fiber 16 thus can be received by the inboard groove 178 or the outboard groove 180.
- the external wall 172 extends to an edge 173, and an internal wall 177 extends down to the inboard groove 178.
- the internal wall in this form forms an acute angle 0 relative to a bottom wall 179 of the inboard groove 178, thereby creating a closed geometry to better retain the fiber 16.
- the internal wall 177 may be normal, or perpendicular to the bottom wall 179 for improved manufacturability while remaining within the scope of the present disclosure.
- FIG. 18 another form of the present disclosure is a fiber catching ring 190 that includes the fiber catching device 70 described above (or any of the other fiber catching devices illustrated and/or described herein) and a ring 192.
- the ring 192 is configured to attach to the outboard edge 15 of the tube 14 (FIG. 1 ). More specifically, the ring 192 has an internal diameter sized to be press fit onto the outboard edge 15 such that the ring 192 is securely attached to, and rotates with, the tube 14 during operation. It should be understood that other features to secure the ring 192 to the tube 14 may be employed while remaining within the scope herein.
- the fiber catching device 70 is integrally formed with the ring 192 to form a single, unitized piece.
- This unitized piece may be a single material or may be formed of different materials using, by way of example, an additive manufacturing process.
- the fiber catching ring 190 is manufactured from an individual ring 192 and an individual fiber catching device 70, as separate parts, which are joined in a secondary operation such as welding, adhesive bonding, mechanical fastening, and combinations thereof. While the fiber catching device 70 is shown generally as the form from FIG. 8, it should be understood that any of the fiber catching devices 20, 100, 120, 140, 150, 170 described above, among others, may be employed with the ring 192 to form a fiber catching ring 190 according to the teachings herein.
- the fiber 16 in operation, as the fiber 16 approaches the tube 14, the fiber 16 is directed along the exterior surface of the tube 14 towards its outboard edge 15. As the fiber 16 approaches the fiber catching device 20', and as the fiber 16 is transferred from one winder 12 to the next, the fiber 16 is directed into and "caught" by the fiber catching device 20'. It is within the scope of the disclosure to incorporate any of the other fiber catching devices 70, 100, 120, 140, 150, 170 described above, among others, to catch the fiber 16. It should also be understood that the fiber catching device 20' illustrated in this figure is secured to the tube 14 using rivets by way of example. This design is thus used to illustrate how the fiber catching device 20 captures fibers 16 and how the design can be secured to the outboard edge 15 of a tube 14. Therefore, this specific design configuration should not be construed as limiting the scope of the present disclosure.
- the phrase at least one of A, B, and C should be construed to mean a logical (A OR B OR C), using a non-exclusive logical OR, and should not be construed to mean “at least one of A, at least one of B, and at least one of C.”
Landscapes
- Engineering & Computer Science (AREA)
- Textile Engineering (AREA)
- Filtering Materials (AREA)
- Storage Of Web-Like Or Filamentary Materials (AREA)
- Spinning Or Twisting Of Yarns (AREA)
- Preliminary Treatment Of Fibers (AREA)
Abstract
Description
Claims
Applications Claiming Priority (2)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| US202163279951P | 2021-11-16 | 2021-11-16 | |
| PCT/US2022/050146 WO2023091514A1 (en) | 2021-11-16 | 2022-11-16 | Fiber catching device for rotating tube |
Publications (2)
| Publication Number | Publication Date |
|---|---|
| EP4433400A1 true EP4433400A1 (en) | 2024-09-25 |
| EP4433400A4 EP4433400A4 (en) | 2025-09-17 |
Family
ID=86397751
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| EP22896441.7A Pending EP4433400A4 (en) | 2021-11-16 | 2022-11-16 | FIBER CATCHING DEVICE FOR ROTATING PIPE |
Country Status (5)
| Country | Link |
|---|---|
| US (1) | US20240294355A1 (en) |
| EP (1) | EP4433400A4 (en) |
| KR (1) | KR20240126036A (en) |
| MX (1) | MX2024005528A (en) |
| WO (1) | WO2023091514A1 (en) |
Family Cites Families (22)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US1851314A (en) * | 1929-05-25 | 1932-03-29 | Belding Heminway Company | Spool for thread |
| US2470835A (en) * | 1945-04-05 | 1949-05-24 | Celanese Corp | Yarn package support |
| US2890842A (en) * | 1956-11-26 | 1959-06-16 | William H Rickard | Spool for fishing reel |
| NL286993A (en) * | 1962-12-19 | |||
| DE1560606A1 (en) * | 1963-07-30 | 1969-10-16 | Schlafhorst & Co W | Dishwasher |
| CH539689A (en) * | 1971-04-29 | 1973-07-31 | Rieter Ag Maschf | Device for taking up a thread when winding under on spindles |
| CH545246A (en) * | 1971-10-22 | 1973-12-15 | Rieter Ag Maschf | Mandrel for a sleeve as a spool carrier |
| CH558297A (en) * | 1972-09-07 | 1975-01-31 | Rieter Ag Maschf | TENSIONING ARM FOR A SLEEVE USED AS A WINDING CARRIER. |
| DE7531710U (en) * | 1975-10-06 | 1977-03-31 | Saurer-Allma Gmbh, Allgaeuer Maschinenbau, 8960 Kempten | SPINDLE WITH UNDERWIND CROWN FOR RING SPINNING AND RING TWISTING MACHINES, IN PARTICULAR FOR CORD TWISTING MACHINES |
| GB1572499A (en) * | 1977-02-04 | 1980-07-30 | Platt Saco Lowell Ltd | Bobbins |
| US4101086A (en) * | 1977-07-20 | 1978-07-18 | Eastman Kodak Company | Yarn tie-up and transfer tail method, and yarn package tube and apparatus for the method |
| US4477034A (en) * | 1983-08-15 | 1984-10-16 | Rieter Machine Works, Ltd. | Thread catching structure |
| US4796422A (en) * | 1987-05-26 | 1989-01-10 | Odawara Industry Co., Ltd. | Apparatus for treating tail yarn in textile spindle assembly |
| CS265841B1 (en) * | 1987-09-01 | 1989-11-14 | Kubata Milan | Cylindrical body especially core |
| US4828200A (en) * | 1988-07-19 | 1989-05-09 | Sonoco Products Company | Yarn carrier tube with universal yarn catching means |
| DE3923305C2 (en) * | 1988-07-25 | 1997-06-12 | Barmag Barmer Maschf | Cylindrical bobbin |
| US5791574A (en) * | 1996-03-18 | 1998-08-11 | Solutia, Inc. | Yarn bobbin with improved snagger |
| US6732964B2 (en) * | 2002-06-28 | 2004-05-11 | Sonoco Development, Inc. | Yarn winding tube with removable end ring |
| US7240875B2 (en) * | 2003-10-14 | 2007-07-10 | Sonoco Development, Inc. | Yarn carrier |
| US8382021B2 (en) * | 2010-08-06 | 2013-02-26 | Kun-Cheng Kuo | Bobbin |
| US11267672B1 (en) * | 2020-09-02 | 2022-03-08 | Sonoco Development, Inc. | Yarn carrier tubes |
| US20250066156A1 (en) * | 2023-08-21 | 2025-02-27 | Sonoco Development, Inc. | Yarn carrier tubes |
-
2022
- 2022-11-16 KR KR1020247019504A patent/KR20240126036A/en active Pending
- 2022-11-16 EP EP22896441.7A patent/EP4433400A4/en active Pending
- 2022-11-16 MX MX2024005528A patent/MX2024005528A/en unknown
- 2022-11-16 WO PCT/US2022/050146 patent/WO2023091514A1/en not_active Ceased
-
2024
- 2024-05-15 US US18/664,604 patent/US20240294355A1/en active Pending
Also Published As
| Publication number | Publication date |
|---|---|
| WO2023091514A1 (en) | 2023-05-25 |
| US20240294355A1 (en) | 2024-09-05 |
| KR20240126036A (en) | 2024-08-20 |
| EP4433400A4 (en) | 2025-09-17 |
| MX2024005528A (en) | 2024-05-21 |
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