Claims
- 1. An apparatus (110) for reducing catenary during winding of a fiber bundle (112) to form a package (116), the fiber bundle (112) comprising a plurality of fiber strands (122), characterized by:
- (a) a frame (126) adapted to support a plurality of fiber strand supply packages (120) and a plurality of tensioning devices (130);
- (b) the plurality of fiber strand supply packages (120), each supply package (120) permitting withdrawal of a fiber strand of the plurality of fiber strands (122) wound thereon;
- (c) the plurality of tensioning devices (130), each tensioning device receiving the fiber strand of the plurality of fiber strands (122) withdrawn from a supply package of the plurality of fiber strand supply packages (120) and applying a tension to the fiber strand of the plurality of fiber strands (122), wherein the tension applied to each of the fiber strands of the plurality of fiber strands (122) is substantially equal;
- (d) a gathering device (134) spaced apart from each of the plurality of tensioning devices (130) for gathering the plurality of substantially equally tensioned fiber strands (122) into the fiber bundle (112);
- (e) a feed device (136) spaced apart from the frame (126) for receiving the fiber bundle (112) from the gathering device and advancing the fiber bundle (112) at a predetermined speed to a winding device (138);
- (f) the winding device (138) spaced apart from the feed device (136), the winding device (138) comprising a rotatable packaging collector (172) about which the fiber bundle (112) is wound to form the package (116), the winding device (138) receiving the bundle (112) from the feed device (136) and applying a tension to the bundle (112);
- (g) a tension sensing device positioned between the feed device (136) and the winding device (138) for determining the tension in the bundle (112) after the bundle (112) is advanced by the feed device (136) to the winding device (138), the tension sensing device (136) providing a signal to a feed device controller (154); and
- (h) the feed device controller (154) electrically connected to the tension sensing device for receiving the signal from the tension sensing device and adjusting the tension of the bundle (112) by (1) decreasing the speed at which the feed device (136) advances the fiber bundle (112) when the tension is less than a first predetermined value and (2) increasing the speed at which the feed device (136) advances the fiber bundle (112) when the tension exceeds a second predetermined value in response to the signal from the tension sensing device, such that catenary of the fiber bundle (112) is minimized during winding.
- 2. The apparatus according to claim 1, wherein the fibers are glass fibers.
- 3. The apparatus according to claim 1, wherein at least one of the tensioning devices comprises a magnetic hysteresis brake (210).
- 4. The apparatus according to claim 1, wherein each of the tensioning devices applies about 60 to about 120 grams of tension to each of the fiber strands (122).
- 5. The apparatus according to claim 1, wherein at least one of the tensioning devices comprises a unitary, resilient strand engaging wheel (212) comprising a generally annular body (218) including opposing sidewalls (220,222) having a plurality of alternating, spaced-apart, tapered strand gripping abutments (226) projecting inwardly from the periphery (227) of the strand engaging wheel (212) to provide a serpentine strand path (228), a portion of each sidewall (220,222) between the abutments (226) having an opening (236) for providing access to the serpentine strand path (228).
- 6. The apparatus according to claim 5, wherein the serpentine strand path (228) is less than about 20 percent discontinuous.
- 7. The apparatus according to claim 5, wherein at least one abutment (226) spans from about 5 to about 10 percent of the strand path (228).
- 8. The apparatus according to claim 1, further comprising a tension device controller (132) for regulating power to each of the plurality of tensioning devices (130) to minimize variations in the tension applied to each of the fiber strands (122) of the bundle (112).
- 9. The apparatus according to claim 8, wherein the tension device controller (132) regulates the plurality of tensioning devices (130) such that the variation in tension between each of the strands (122) is less than about 10 grams.
- 10. The apparatus according to claim 1, wherein the gathering device comprises a gathering guide eye (134).
- 11. The apparatus according to claim 1, wherein the gathering device comprises a fiber bundle oscillating device (33) for oscillating the fiber bundle (112) across at least a portion of an outer surface (144) of a driven feed roll (140) and a corresponding portion of an outer surface of a nip roll (142).
- 12. The apparatus according to claim 1, wherein the feed device (136) comprises a feed device support (129) having mounted thereon a driven feed roll (140), an opposed nip roll (142), and a nip roll pressurizing device, the driven feed roll (140) having an axis of rotation (146) which is generally parallel and coplanar to an axis of rotation (148) of the nip roll (142), the nip roll pressurizing device engaging the nip roll (142) and applying pressure to bias an outer surface of the nip roll (142) against an outer surface of the feed roll (140) to apply pressure to a portion of the bundle passing therebetween.
- 13. The apparatus according to claim 12, wherein the driven feed roll (140) further comprises a drive device selected from the group consisting of a direct current regenerative drive and an alternating current drive having dynamic braking.
- 14. The apparatus according to claim 12, wherein the nip roll pressurizing device applies about 68948 to about 413686 N/m.sup.2 (about 10 to about 60 psi) pressure to the bundle.
- 15. The apparatus according to claim 12, wherein the nip roll (142) is opposed to the drive roll (140) to advance the fiber bundle (112) without wrapping of the bundle (112) around the drive roll (140).
- 16. The apparatus according to claim 12, wherein the feed device further comprises a stationary frame (13) having a guide rail member (15) and a biasing member (75), the feed device support further comprising a feed device support carriage (83) having mounted thereon the driven feed roll (140), the nip roll (142), and the nip roll pressurizing device, the feed device support carriage (83) being slidably secured to the guide rail member (15) of the stationary frame (13) by the biasing member (75), such that the feed device support carriage (83) is movable alone a length of the guide rail member (15) between a first position (87) and a second position (89).
- 17. The apparatus according to claim 16, wherein the biasing member (75) comprises a compressible spring (77) having a predetermined spring constant.
- 18. The apparatus according to claim 16, wherein the feed device support carriage (83) is movable along a length (85) of the guide rail member (15) between a first position (87) and a second position (89), such that (1) when the tension of the fiber bundle exceeds a predetermined value, the feed device support carriage (83) moves to the first position (87) and (2) when the tension of the fiber bundle is less than the predetermined value, the feed device support carriage (83) moves to the second position (89).
- 19. The apparatus according to claim 18, wherein the feed device support carriage (83) contacts (1) a first sensing device (91) when the tension of the fiber bundle exceeds the second predetermined value which is greater than the first predetermined value and (2) a second sensing device (93) when the tension of the fiber bundle is less than a third predetermined value which is less than the first predetermined value.
- 20. The apparatus according to claim 19, wherein when the tension of the fiber bundle (112) exceeds the second predetermined value, the first sensing device (91) provides a signal (95) to at least one of an operator (97) and the winder device (138) to deactivate the winding device (138).
- 21. The apparatus according to claim 19, wherein when the tension of the fiber bundle (112) is less than the third predetermined value, the second sensing device (93) provides a signal (101) to at least one of an operator (97) and the winder device (138) to deactivate the winding device (138).
- 22. The apparatus according to claim 19, wherein at least one of the first sensing device (91) and the second sensing device (93) is a limit switch.
- 23. The apparatus according to claim 1, wherein the tension sensing device comprises a housing (159) having a dancer arm assembly (158) mounted thereon, the dancer arm assembly comprising a pivotable dancer arm (160) and a resistance sensing device, the pivotable dancer arm (160) having two opposing ends and a rotatable roll (66), the rotatable roll being located at the first end of the pivotable dancer arm (160) for engaging a portion of the fiber bundle (112), the dancer arm (160) being pivotable between a first position and a second position, such that (1) when the tension of the bundle (112) is less than the first predetermined value, the dancer arm (160) pivots to the first position, the resistance sensing device senses the resistance of the dancer arm (160) in the first position and provides a first signal to the tension sensing device, and the tension sensing device provides a second signal to the feed device controller (154) to decrease the speed at which the feed device advances the fiber bundle (112) and (2) when the tension of the bundle exceeds the second predetermined value, the dancer arm (160) pivots to the second position, the resistance sensing device senses the resistance of the dancer arm (160) in the second position and provides a third signal to the tension sensing device, and the tension sensing device provides a fourth signal to the feed device controller (154) to increase the speed at which the feed device (136) advances the fiber bundle (112).
- 24. The apparatus according to claim 23, wherein the resistance sensing device is a potentiometer (62).
- 25. The apparatus according to claim 23, wherein the dancer arm assembly (158) further comprises a biasing member for providing a predetermined resistance to the tension of the bundle (112).
- 26. The apparatus according to claim 25, wherein the biasing member comprises a compressible spring (63) having a predetermined spring constant.
- 27. The apparatus according to claim 1, wherein the tension sensing device comprises a housing (159) having a dancer arm assembly (158) mounted thereon, the dancer arm assembly (158) comprising a pivotable dancer arm (160), a first sensing device (162) and a second sensing device (164), the pivotable dancer arm (160) having two opposing ends and a rotatable roll, the rotatable roll being located at the first end of the pivotable dancer arm for engaging a portion of the fiber bundle (112), the second, opposite end having a first side and a second side, the dancer arm being pivotable between a first position in which the first side of the second end of the dancer arm contacts the first sensing device (162) and a second position in which the second side of the second end of the dancer arm contacts the second sensing device (164), such that (1) when the tension of the bundle is less than the first predetermined value, the first side of the second end of the dancer arm contacts the first sensing device (162) and the tension sensing device provides a signal (109) to the feed device controller (154) to decrease the speed at which the feed device (136) advances the fiber bundle (112) and (2) when the tension of the bundle exceeds the second predetermined value, the second side of the second end of the dancer arm contacts the second sensing device (164) and the tension sensing device provides a signal to the feed device controller (154) to increase the speed at which the feed device (136) advances the fiber bundle (112).
- 28. The apparatus according to claim 27, wherein the dancer arm assembly (158) further comprises a biasing member for providing a predetermined resistance to the tension of the bundle.
- 29. The apparatus according to claim 28, wherein the biasing member comprises a piston and cylinder arrangement (168).
- 30. The apparatus according to claim 1, wherein the feed device (136) advances the fiber bundle at a speed of about 244 to about 366 m/min (about 800 to about 1200 ft/min).
- 31. The apparatus according to claim 1, wherein the feed device (136) supplies a tension to the fiber bundle of up to about 8 Newtons (about 1.8 pounds) when the number of fiber strands in the bundle is less than 30.
- 32. The apparatus according to claim 1, wherein the feed device (136) supplies a tension to the fiber bundle of at least 12 Newtons (about 2.7 pounds) when the number of fiber strands in the bundle greater than 30 and a nip roll pressure is 413686 N/m.sup.2 (about 60 psi).
- 33. The apparatus according to claim 1, wherein the fiber bundle (112) of the package produced by the winding device has less than 15 fiber strands and a static catenary of less than 3.81 centimeters (about 1.5 inches) in a 15.2 meters (50 foot) length of the bundle.
- 34. An apparatus (10) for reducing catenary during winding of a fiber bundle (12) to form a package (16), the fiber bundle (12) comprising a plurality of fiber strands (22), characterized by:
- (a) a frame (26) adapted to support a plurality of fiber strand supply packages (20) and a plurality of tensioning devices (30);
- (b) the plurality of fiber strand supply packages (20), each supply package (20) permitting withdrawal of a fiber strand of the plurality of fiber strands (22) wound thereon;
- (c) the plurality of tensioning devices (30), each tensioning device (30) receiving the fiber strand of the plurality of fiber strands (22) withdrawn from a supply package of the plurality of fiber strand supply packages (20) and applying a tension to the fiber strand, wherein the tension applied to each of the fiber strands of the plurality of fiber strands is substantially equal;
- (d) a gathering device (33) spaced apart from each of the plurality of tensioning devices (30) for gathering the plurality of substantially equally tensioned fiber strands (22) into the fiber bundle (12);
- (e) a feed device (36) spaced apart from the frame (26) for receiving the fiber bundle (12) from the gathering device (33) and advancing the fiber bundle (12) at a predetermined speed to a winding device (38), the feed device (36) comprising (1) a stationary frame (13) having a guide rail member (15) and a biasing member (75) and (2) a feed device support (29) including a feed device support carriage (83) having mounted thereon a driven feed roll (40), a nip roll (42), and a nip roll pressurizing device (56), the driven feed roll (40) having an axis of rotation (46) which is generally parallel and coplanar to an axis of rotation (48) of the nip roll (42), the nip roll pressurizing device (56) engaging the nip roll (42) and applying pressure to bias an outer surface of the nip roll (42) against an outer surface (44) of the feed roll (40) to apply pressure to a portion of the bundle (12) passing therebetween, the feed device support carriage (83) being slidably secured to the guide rail member(15);
- (f) the winding device (38) spaced apart from the feed device (36), the winding device (38) comprising a rotatable packaging collector (72) about which the fiber bundle (12) is wound to form the package (16), the winding device (38) receiving the bundle (12) from the feed device (36) and applying a tension to the bundle; and
- (g) a tension sensing device positioned between the feed device (36) and the winding device (38) for determining the tension in the bundle (12) after the bundle is advanced by the feed device to the winding device, the tension sensing device providing a signal (107) to the winding device (38), the winding device (38) receiving the signal (107) from the tension sensing device and adjusting a rotational speed of the packaging collector (72) in response to the signal (107) received from the tension sensing device.
- 35. An apparatus (10) for reducing catenary during winding of a fiber bundle (12) to form a package (16), the fiber bundle (12) comprising a plurality of fiber strands (22), characterized by:
- (a) a frame (26) adapted to support a plurality of fiber strand supply packages (20) and a plurality of tensioning devices (30);
- (b) the plurality of fiber strand supply packages (20), each supply package (20) permitting withdrawal of a fiber strand of the plurality of fiber strands (22) wound thereon;
- (c) the plurality of tensioning devices (30), each tensioning device (30) receiving the fiber strand of the plurality of fiber strands (22) withdrawn from a supply package (20) of the plurality of fiber strand supply packages and applying a tension to the fiber strand (22), wherein the tension applied to each of the fiber strands of the plurality of fiber strands (22) is substantially equal;
- (d) a gathering device (33) spaced apart from each of the plurality of tensioning devices (30) for gathering the plurality of substantially equally tensioned fiber strands (22) into a fiber bundle (12);
- (e) a feed device (36) spaced apart from the frame (26) for receiving the fiber bundle (12) from the gathering device (33) and advancing the fiber bundle (12) at a predetermined speed to a winding device (38), the feed device (36) comprising a feed device support (29) having mounted thereon a driven feed roll (40), a nip roll (42), and a nip roll pressurizing device, the driven feed roll (40) having an axis of rotation (46) which is generally parallel and coplanar to an axis of rotation (48) of the nip roll (42), the nip roll pressurizing device engaging the nip roll (42) and applying pressure to bias an outer surface of the nip roll (42) against an outer surface (44) of the feed roll (40) to apply pressure to a portion of the bundle (12) passing therebetween, the driven feed roll (40) including a drive device (80) selected from the group consisting of a direct current regenerative drive and an alternating current drive having dynamic braking;
- (f) the winding device (38) spaced apart from the feed device (36), the winding device (38) comprising a rotatable packaging collector (72) about which the fiber bundle (12) is wound to form the package (16), the winding device (38) receiving the bundle (12) from the feed device (38) and applying a tension to the bundle (12); and
- (g) a tension sensing device positioned between the feed device (36) and the winding device (38) for determining the tension in the bundle (12) after the bundle is advanced by the feed device (36) to the winding device (38), the tension sensing device providing a signal (107) to the winding device (38), the winding device (38) receiving the signal (107) from the tension sensing device and adjusting by (1) decreasing the rotational speed of the packaging collector (72) when the tension is less than a first predetermined value and (2) increasing the rotational speed of the packaging collector (72) when the tension exceeds a second predetermined value in response to the signal (107) received from the tension sensing device, such that catenary of the fiber bundle is minimized.
- 36. A method for reducing catenary during winding of a fiber bundle, the fiber bundle (12) comprising a plurality of fiber strands (22), the method characterized by:
- (a) applying substantially equal tension to each of the plurality of fiber strands (22);
- (b) gathering the plurality of fiber strands (22) to form the bundle (12) of generally parallel fiber strands (22);
- (c) advancing the fiber bundle (12) at a predetermined speed and tension toward a winding device (38);
- (d) measuring the tension of the fiber bundle (12);
- (e) adjusting the tension of the fiber bundle (12) by adjusting the speed at which the fiber bundle (12) is advanced, such that (1) the speed of advancement of the fiber bundle (12) is increased when the measured tension of the bundle (12) exceeds a predetermined value and (2) the speed of advancement of the fiber bundle (12) is decreased when the measured tension of the bundle (12) is less than a second predetermined value; and
- (f) winding the bundle (12) upon a rotatable packaging collector (72) of a winding device (38) to form a package (16) having minimum catenary.
- 37. The method according to claim 36, wherein the fibers are glass fibers.
- 38. The method according to claim 36, wherein about 60 to about 120 grams of tension is applied to each of the fiber strands (22) in step (a).
- 39. The method according to claim 36, further comprising applying pressure to the fiber bundle (12) in step (c).
- 40. The method according to claim 36, wherein step (c) further comprises advancing the fiber bundle (12) without wrapping of the fiber bundle (12) around a feed device (38).
- 41. The method according to claim 36, further comprising contacting a portion of the fiber bundle (12) with at least a portion of a dancer arm (60) for measuring the tension in the bundle, such that the dancer arm (60) is moved to a first position when the measured tension of the bundle (12) is less than a predetermined value and to a second position when the measured tension of the bundle (12) exceeds a second predetermined value.
RELATED APPLICATION
This patent application is a continuation-in-part of U.S. patent application Ser. No. 08/188,295, filed Jan. 28, 1994, now abandoned.
PCT Information
Filing Document |
Filing Date |
Country |
Kind |
102e Date |
371c Date |
PCT/US94/14538 |
12/15/1994 |
|
|
10/7/1996 |
10/7/1996 |
Publishing Document |
Publishing Date |
Country |
Kind |
WO95/20538 |
8/3/1995 |
|
|
US Referenced Citations (19)
Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
188295 |
Jan 1994 |
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