IP Library Granted Patent US 9,278,509
Granted Patent B2
US 9,278,509 · App. 14/569,657 · Granted Mar 8, 2016

Prepreg tape slitting method and apparatus

Inventors: Grand Hou (Norcross, GA); Christopher R. Horn (Johns Creek, GA); Manish Patel (Bogart, GA); Jianghong Liang (Decatur, GA)
Assignee: Web Industries, Inc.
B32B37/20B32B27/08B32B27/30B32B27/34B32B27/36B32B38/10B32B2250/02B32B2250/24Y10T156/1705Y10T428/269Y10T428/31725Y10T428/31786Y10T428/31938
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Quick Facts
Patent No.
US 9,278,509
App. No.
14/569,657
Granted
Mar 8, 2016
Kind
B2
Abstract

Improved methods and apparatus are provided for the production of prepreg slit tape wherein master rolls of prepreg sheet are formed which are capable of being slit, with liner attached, at high precision.

Claims (30)

1. A method of preparing a continuous sheet of prepreg material suitable for use in a slitting process for the production of slit tape which slitting process does not require the removal of a liner or backing prior to slitting nor the insertion of a liner prior to winding the slit tape so formed, the method comprising:

a) unwinding a master roll of a continuous sheet of prepreg material having a paper or polymer film backing attached,

b) removing the backing from the prepreg material,

c) aligning and mating a polymer film liner with the prepreg material, and

d) rewinding the mated prepreg material and polymer film liner to form a new master roll;

wherein the liner is a polymer film which is 1) able to be slit by the slitter without tearing, without the formation of fibrils, and without separating from the prepreg material; 2) resists elongation and/or the creation of stress fractures in the film under the stress of winding, and 3) manifests a sufficient adhesive or peel strength with the prepreg material so as avoid separating from the prepreg material under the stresses of the unwinding, slitting and winding processes.

2. The method of claim 1 wherein the liner is composed of a material that is compatible with the matrix resin of the prepreg material.

3. The method of claim 1 wherein the liner is composed of a material that has a thickness of 0.1 to about 12 mils, a lengthwise tensile strength of 500 psi to 40,000 psi, and an arithmetic average surface roughness of 0.01 to 200 um.

4. The method of claim 1 wherein the polymer film liner is composed of a polyolefin, a polyamide, a polyester, a vinyl polymer, or a polyacetate.

5. The method of claim 1 wherein the polymer film liner is polyethylene.

6. A master roll of a continuous sheet of prepreg material, said master roll having been formed by a method comprising:

a) unwinding a master roll of a continuous sheet of prepreg material having a paper or polymer film backing attached,

b) removing the backing from the prepreg material,

c) aligning and mating a polymer film liner with the prepreg material, and

d) rewinding the mated prepreg material and polymer film liner to form a new master roll;

wherein the liner is a polymer film which is 1) able to be slit by the slitter without tearing, without the formation of fibrils, and without separating from the prepreg material; 2) resists elongation and/or the creation of stress fractures in the film under the stress of winding, and 3) manifests a sufficient adhesive or peel strength with the prepreg material so as avoid separating from the prepreg material under the stresses of the unwinding, slitting and winding processes.

7. The master roll of claim 6 wherein the liner is composed of a material that is compatible with the matrix resin of the prepreg material.

8. The master roll of claim 6 wherein the liner is composed of a material that has a thickness of 0.1 to about 12 mils, a lengthwise tensile strength of 500 psi to 40,000 psi, and an arithmetic average surface roughness of 0.01 to 200 um.

9. The master roll of claim 6 wherein the polymer film liner is composed of a polyolefin, a polyamide, a polyester, a vinyl polymer, or a polyacetate.

10. The master roll of claim 6 wherein the polymer film liner is polyethylene.

11. An apparatus for the conversion of master rolls of continuous sheets of prepreg materials having a paper or polymer film backing to a master roll of a prepreg material having a liner whereby the prepreg material may be slit with liner attached, said apparatus comprising a master roll station for holding and unwinding the original master roll, a separator station wherein the backing of the original master roll is removed from the prepreg sheet material, a lining station wherein the prepreg material is aligned with an mated to a polymer film liner, and a winding station wherein the prepreg and liner are wound into a new master roll.

12. The apparatus of claim 11 wherein the master roll station comprises an axel, which may be motorized, upon which the master roll of prepreg material is to be mounted; the separator station comprises a motorized axel upon which a spindle is to be mounted for taking up and winding the backing as it is removed from the prepreg sheet material; the lining station comprises an axel, which may be motorized, upon which a roll of liner material is to be placed, and alignment mean for aligning and mating the liner material with the prepreg material; and the winding station comprises a motorized axel upon which a spindle is to be mounted about which the prepreg and liner combination is to be wound.

13. The apparatus of claim 12 further comprising a roll of a polymer film placed on the axel of the lining station wherein the polymer film is 1) able to be slit by the slitter without tearing, without the formation of fibrils, and without separating from the prepreg material; 2) resists elongation and/or the creation of stress fractures in the film under the stress of winding, and 3) manifests a sufficient adhesive or peel strength with the prepreg material to be slit so as avoid separating from the prepreg material under the stresses of the unwinding, slitting and winding processes.

14. The apparatus of claim 13 wherein the liner is composed of a material that has a thickness of 0.1 to about 12 mils, a lengthwise tensile strength of 500 psi to 40,000 psi, and an arithmetic average surface roughness of 0.01 to 200 um.

15. The apparatus of claim 13 wherein the polymer film liner is composed of a polyolefin, a polyamide, a polyester, a vinyl polymer, or a polyacetate.

16. The apparatus of claim 13 wherein the polymer film liner is polyethylene.

17. An improved process for the production of master rolls of continuous sheets of prepreg material adapted wherein the improvement comprises using a polymer film liner material as the backing in the preparation of the prepreg sheet wherein the liner is 1) able to be slit by the slitter without tearing, without the formation of fibrils, and without separating from the prepreg material; 2) resists elongation and/or the creation of stress fractures in the film under the stress of winding, and c) manifests a sufficient adhesive or peel strength with the prepreg material so as avoid separating from the prepreg material under the stresses of the unwinding, slitting and winding processes.

18. The improved process of claim 17 wherein the liner is composed of a material that is compatible with the matrix resin of the prepreg material.

19. The improved process of claim 17 wherein the liner is composed of a material that has a thickness of 0.1 to about 12 mils, a lengthwise tensile strength of 500 psi to 40,000 psi, and an arithmetic average surface roughness of 0.01 to 200 um.

20. The improved process of claim 17 wherein the polymer film liner is composed of a polyolefin, a polyamide, a polyester, a vinyl polymer, or a polyacetate.

Assignments (3)
SECURITY INTEREST Recorded Dec 2, 2024
From: WEB INDUSTRIES, INC.
To: BMO BANK N.A.
Reel/Frame 069447/0915 →
RELEASE OF SECURITY INTEREST Recorded Dec 2, 2024
From: JPMORGAN CHASE BANK, N.A.
To: WEB INDUSTRIES, INC.
Reel/Frame 069450/0595 →
SECURITY INTEREST Recorded Sep 20, 2024
From: WEB INDUSTRIES, INC.
To: JPMORGAN CHASE BANK, N.A.
Reel/Frame 068649/0181 →
Continuity (2)
Continuation 13627067 · Sep 26, 2012
Related Publication 20150099111A1 · Apr 9, 2015