Claims
- 1. A prepreg for an electronic support comprising:
(a) a matrix material; and (b) at least one non-degreased fabric comprising at least one strand comprising a plurality of fibers, wherein at least a portion of the fabric comprises a coating which is compatible with the matrix material, and wherein the at least one strand has a shape factor of greater than 1, measured in the warp direction or the fill direction of the at least one non-degreased fabric.
- 2. A prepreg according to claim 1, wherein the at least one strand has a shape factor of at least 3, measured in either the warp direction or the fill direction of the fabric.
- 3. A prepreg according to claim 2, wherein the at least one strand has a shape factor of at least 6, measured in either the warp direction or the fill direction of the fabric.
- 4. A prepreg according to claim 3, wherein the at least one strand has a shape factor of at least 8, measured in either the warp direction or the fill direction of the fabric.
- 5. A prepreg according to claim 1, wherein the compatible coating comprises a plurality of particles.
- 6. A prepreg according to claim 5, wherein the particles are formed from materials selected from polymeric inorganic materials, non-polymeric inorganic materials, polymeric organic materials, non-polymeric organic materials, composite materials and mixtures of any of the foregoing.
- 7. A prepreg according to claim 6, wherein the polymeric inorganic materials are selected from polyphosphazenes, polysilanes, polysiloxane, polygeremanes, polymeric sulfur, polymeric selenium, silicones and mixtures of any of the foregoing.
- 8. A prepreg according to claim 6, wherein the non-polymeric inorganic materials are selected from graphite, metals, oxides, carbides, nitrides, borides, sulfides, silicates, carbonates, sulfates, hydroxides, and mixtures of any of the foregoing.
- 9. A prepreg according to claim 6, wherein the polymeric organic materials are selected from thermosetting materials, thermoplastic materials, and mixtures thereof.
- 10. A prepreg according to claim 9, wherein the polymeric organic materials are thermosetting materials selected from thermosetting polyesters, vinyl esters, epoxy materials, phenolics, aminoplasts, thermosetting polyurethanes, and mixtures of any of the foregoing.
- 11. A prepreg according to claim 9, wherein the polymeric organic materials are thermoplastic materials selected from thermoplastic polyesters, polycarbonates, polyolefins, acrylic polymers, polyamides, thermoplastic polyurethanes, vinyl polymers, and mixtures of any of the foregoing.
- 12. A prepreg according to claim 6, wherein the composite materials are selected from particles that have a hardness at their surface that is different from the hardness of the internal portions of the particle beneath its surface.
- 13. A prepreg according to claim 12, wherein the composite materials are selected from particles formed from a primary material that is coated, clad or encapsulated with at least one secondary material.
- 14. A prepreg according to claim 13, wherein the composite materials are selected from particles formed from a primary material that is coated, clad or encapsulated with a differing form of the primary material.
- 15. A prepreg according to claim 5, wherein the particles have a thermal conductivity of at least 1 Watt per meter K at a temperature of 300 K.
- 16. A prepreg according to claim 5, wherein the particles have a Mohs' hardness value which does not exceed the Mohs' hardness value of any glass fiber in the at least one strand.
- 17. A prepreg according to claim 5, wherein the particles have an average particle size sufficient to allow strand wet out.
- 18. A prepreg according to claim 5, wherein the particles have an average particle size, measured according to laser scattering techniques, ranging from 0.1 to 5 microns.
- 19. A prepreg according to claim 5, wherein the compatible coating further comprises at least one lubricious material different from the plurality of particles.
- 20. A prepreg according to claim 5, wherein the compatible coating further comprises at least one film-forming material.
- 21. A prepreg according to claim 1, wherein the compatible coating has a loss on ignition of ranging from 0.1 to 1.6, and an air permeability, measured according to ASTM D 737, of no greater than 10 standard cubic feet per minute per square foot.
- 22. A prepreg according to claim 1, wherein the resin compatible coating further comprises a resin reactive diluent selected from a lubricant comprising one or more functional groups capable of reacting with an epoxy resin system and selected from the group consisting of amine groups, alcohol groups, anhydride groups, acid groups and epoxy groups.
- 23. A prepreg according to claim 1, wherein the at least one non-degreased fabric is selected from a 7628 style fabric, a 2116 style fabric, and a 1080 style fabric.
- 24. A prepreg for an electronic support comprising:
(a) a matrix material; and (b) at least one fabric comprising at least one strand comprising a plurality of fibers, wherein the at least one strand has a shape factor of at least 6, measured in the warp direction of the fabric.
- 25. A prepreg according to claim 24, wherein the at least one strand has a shape factor of at least 6.5, measured in warp direction of the fabric.
- 26. A prepreg according to claim 24, wherein the at least one fabric is fabric is selected from a 7628 style fabric.
- 27. A prepreg according to claim 26, wherein the at least one strand has a shape factor of at least 7, measured in fill direction of the fabric.
- 28. A prepreg according to claim 24, wherein the at least one fabric is fabric is selected from a 2116 style fabric.
- 29. A prepreg according to claim 28, wherein the at least one strand has a shape factor of at least 8, measured in fill direction of the fabric.
- 30. A prepreg according to claim 24, wherein the at least one fabric is fabric is selected from a 1080 style fabric.
- 31. A prepreg according to claim 30, wherein the at least one strand has a shape factor of at least 12, measured in fill direction of the fabric.
- 32. A laminate for an electronic support comprising:
(a) a matrix material; and (b) at least one non-degreased fabric comprising at least one strand comprising a plurality of fibers, wherein at least a portion of the fabric comprises a coating which is compatible with the matrix material, and wherein the at least one strand has a shape factor of greater than 1, measured in the warp direction or the fill direction of the at least one non-degreased fabric fabric.
- 33. A laminate according to claim 32, wherein the at least one strand has a shape factor of at least 6, measured in either the warp direction or the fill direction of the fabric.
- 34. A laminate according to claim 32, wherein the compatible coating comprises a plurality of particles.
- 35. A laminate according to claim 34, wherein the particles are formed from materials selected from polymeric inorganic materials, non-polymeric inorganic materials, polymeric organic materials, non-polymeric organic materials, composite materials and mixtures of any of the foregoing.
- 36. A laminate according to claim 34, wherein the particles have a thermal conductivity of at least 1 Watt per meter K at a temperature of 300 K.
- 37. A laminate according to claim 34, wherein the particles have a Mohs' hardness value which does not exceed the Mohs' hardness value of any glass fiber in the at least one strand.
- 38. A laminate according to claim 34, wherein the particles have an average particle size sufficient to allow strand wet out.
- 39. A laminate according to claim 34, wherein the particles have an average particle size, measured according to laser scattering techniques, ranging from 0.1 to 5 microns.
- 40. A laminate according to claim 34, wherein the compatible coating further comprises at least one lubricious material different from the plurality of particles.
- 41. A laminate according to claim 34, wherein the compatible coating further comprises at least one film-forming material.
- 42. A laminate according to claim 34, wherein the compatible coating has a loss on ignition of ranging from 0.1 to 1.6, and an air permeability, measured according to ASTM D 737, of no greater than 10 standard cubic feet per minute per square foot.
- 43. A laminate for an electronic support comprising:
(a) a matrix material; and (b) at least one fabric comprising at least one strand comprising a plurality of fibers, wherein the at least one strand has a shape factor of at least 6.75, measured in the warp direction of the fabric.
- 44. A laminate according to claim 43, wherein the at least one fabric is fabric is selected from a 7628 style fabric, and the at least one strand has a shape factor of at least 7, measured in fill direction of the fabric.
- 45. A laminate according to claim 43, wherein the at least one fabric is fabric is selected from a 2116 style fabric, and the at least one strand has a shape factor of at least 6.5, measured in fill direction of the fabric.
- 46. A laminate according to claim 43, wherein the at least one fabric is fabric is selected from a 1080 style fabric, and the at least one strand has a shape factor of at least 12, measured in fill direction of the fabric.
- 47. An electronic support comprising at least one prepreg according to claim 1.
- 48. An electronic support comprising at least one prepreg according to claim 24.
- 49. An electronic circuit board comprising at least one laminate according to claim 32.
- 50. An electronic circuit board comprising at least one laminate according to claim 43.
RELATED APPLICATIONS
[0001] This application claims the benefit of U.S. Provisional Application No. 60/233,460 entitled “Impregnated Glass Fiber Strands and Products Including the Same” filed on Sep. 18, 2000.
Provisional Applications (1)
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Number |
Date |
Country |
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60233460 |
Sep 2000 |
US |