Claims
- 1. An asphalt composite comprising asphalt and a filler, said filler comprising a blend of a fly ash and at least one other filler wherein the filler blend has a particle size distribution having at least three modes.
- 2. The asphalt composite according to claim 1, wherein the particle size distribution includes a first mode having a median particle diameter from 0.3 to 1.0 microns, a second mode having a median particle diameter from 10 to 25 microns, and a third mode having a median particle diameter from 40 to 80 microns.
- 3. The asphalt composite according to claim 1, wherein the at least one additional filler in the filler blend is a second fly ash.
- 4. The asphalt composite according to claim 3, wherein the filler blend comprises a high fine particle content fly ash filler and a low fine particle content fly ash filler.
- 5. The asphalt composite according to claim 1, wherein the at least one additional filler in the filler blend is a calcium carbonate filler.
- 6. An asphalt composite comprising asphalt and a subbituminous coal fly ash filler, wherein the subbituminous coal fly ash filler has a particle size distribution having at least three modes.
- 7. The asphalt composite according to claim 6, wherein the particle size distribution includes a first mode having a median particle diameter from 0.3 to 1.0 microns, a second mode having a median particle diameter from 10 to 25 microns, and a third mode having a median particle diameter from 40 to 80 microns.
- 8. The asphalt composite according to claim 6, wherein the subbituminous fly ash is a Class C fly ash.
- 9. An asphalt composite comprising asphalt and a filler having a particle size distribution with at least three modes, the filler comprising fly ash and having a loading of greater than 70% by weight.
- 10. The asphalt composite according to claim 9, wherein the particle size distribution has three modes.
- 11. The asphalt composite according to claim 9, wherein the particle size distribution includes a first mode having a median particle diameter from 0.3 to 1.0 microns, a second mode having a median particle diameter from 10 to 25 microns, and a third mode having a median particle diameter from 40 to 80 microns.
- 12. The asphalt composite according to claim 9, wherein the fly ash is a lignite coal fly ash.
- 13. The asphalt composite according to claim 9, wherein the fly ash is a subbituminous coal fly ash.
- 14. The asphalt composite according to claim 9, wherein the filler further includes a second fly ash.
- 15. The asphalt composite according to claim 9, wherein the filler further comprises calcium carbonate.
- 16. An asphalt composite comprising asphalt, a filler, and a primarily carbon-containing material.
- 17. The asphalt composite according to claim 16, wherein the filler has a particle size distribution having at least three modes.
- 18. The asphalt composite according to claim 17, wherein the filler includes a fly ash.
- 19. The asphalt composite according to claim 18, wherein the fly ash is a lignite coal fly ash.
- 20. The asphalt composite according to claim 18, wherein the fly ash is a subbituminous coal fly ash.
- 21. The asphalt composite according to claim 18, wherein the filler further includes a second fly ash.
- 22. The asphalt composite according to claim 18, wherein the filler further includes calcium carbonate.
- 23. The asphalt composite according to claim 16, wherein the filler includes calcium carbonate.
- 24. The asphalt composite according to claim 16, wherein the primarily carbon-containing material is present in the asphalt composite in an amount from about 0.1% to about 5% by weight.
- 25. An asphalt composite comprising asphalt and a calcium carbonate filler, wherein the calcium carbonate has a particle size distribution having at least three modes.
- 26. A filler for an asphalt composite comprising a blend of fly ash and at least one additional filler wherein the filler blend has a particle size distribution having at least three modes.
- 27. The filler according to claim 26, wherein the particle size distribution includes a first mode having a median particle diameter from 0.3 to 1.0 microns, a second mode having a median particle diameter from 10 to 25 microns, and a third mode having a median particle diameter from 40 to 80 microns.
- 28. The filler according to claim 26, wherein the at least one additional filler in the filler blend is a second fly ash.
- 29. The filler according to claim 28, wherein the filler blend comprises a high fine particle content fly ash filler and a low fine particle content fly ash filler.
- 30. The filler according to claim 26, wherein the at least one additional filler in the filler blend is a calcium carbonate filler.
- 31. A filler for an asphalt composite comprising asphalt and a subbituminous coal fly ash filler, wherein the subbituminous coal fly ash filler has a particle size distribution having at least three modes.
- 32. The filler according to claim 31, wherein the particle size distribution includes a first mode having a median particle diameter from 0.3 to 1.0 microns, a second mode having a median particle diameter from 10 to 25 microns, and a third mode having a median particle diameter from 40 to 80 microns.
- 33. The filler according to claim 31, wherein the subbituminous coal fly ash is a Class C fly ash.
- 34. A filler blend for an asphalt composite comprising a filler and a primarily carbon-containing material.
- 35. The filler blend according to claim 34, wherein the filler includes a fly ash.
- 36. The filler blend according to claim 35, wherein the fly ash is a lignite coal fly ash.
- 37. The filler blend according to claim 35, wherein the fly ash is a subbituminous coal fly ash.
- 38. The filler blend according to claim 35, wherein the filler further includes a second fly ash.
- 39. The filler blend according to claim 35, wherein the filler further includes calcium carbonate.
- 40. The filler blend according to claim 34, wherein the filler includes calcium carbonate.
- 41. The filler blend according to claim 34, wherein the primarily carbon-containing material is present in the filler blend in an amount from about 0.1% to about 5% by weight.
- 42. A method for producing an asphalt composite, comprising the steps of:
combining asphalt with a fly ash and at least one additional filler, the fly ash and at least one other filler together producing a filler blend having a particle size distribution having at least three modes; and producing an asphalt composite with the resulting filled asphalt.
- 43. The method according to claim 42, further comprising the step of blending the fly ash and the at least one additional filler together to produce a filler blend prior to said combining step.
- 44. The method according to claim 43, wherein the blending step comprises blending the fly ash filler and the at least one additional filler together to produce a filler blend having a particle size distribution wherein the particle size distribution includes a first mode having a median particle diameter from 0.3 to 1.0 microns, a second mode having a median particle diameter from 10 to 25 microns, and a third mode having a median particle diameter from 40 to 80 microns.
- 45. The method according to claim 43, wherein the blending step comprises blending a first fly ash and a second fly ash.
- 46. The method according to claim 45, wherein the blending step comprises blending a high fine particle content fly ash and a low fine particle content fly ash.
- 47. The method according to claim 43, wherein the blending step comprises blending a fly ash and a calcium carbonate.
- 48. The method according to claim 42, wherein the combining step comprises combining asphalt with a fly ash blend formed by burning two or more types of coal selected from the group consisting of lignite coal, subbituminous coal and bituminous coal.
- 49. A method for producing an asphalt composite, comprising the steps of:
combining asphalt with a subbituminous coal fly ash filler having a particle size distribution with at least three modes; and producing an asphalt composite with the resulting filled asphalt.
- 50. The method according to claim 49, wherein the combining step comprises combining asphalt with a fly ash filler having a particle size distribution wherein the particle size distribution includes a first mode having a median particle diameter from 0.3 to 1.0 microns, a second mode having a median particle diameter from 10 to 25 microns, and a third mode having a median particle diameter from 40 to 80 microns.
- 51. The method according to claim 49, wherein the combining step comprises combining asphalt with a subbituminous coal fly ash filler, wherein the subbituminous coal fly ash filler is a Class C fly ash filler.
- 52. A method for producing an asphalt composite, comprising the steps of:
combining asphalt with a filler at a filler loading of greater than 70% by weight, then filler having a particle size distribution with at least three modes and comprising fly ash, and producing an asphalt composite with the resulting filled asphalt.
- 53. The method according to claim 52, wherein the particle size distribution includes a first mode having a median particle diameter from 0.3 to 1.0 microns, a second mode having a median particle diameter from 10 to 25 microns, and a third mode having a median particle diameter from 40 to 80 microns.
- 54. The method according to claim 52, wherein the fly ash is a lignite coal fly ash.
- 55. The method according to claim 52, wherein the fly ash is a subbituminous coal fly ash.
- 56. The method according to claim 52, wherein the filler further includes a second fly ash.
- 57. The method according to claim 56, wherein the filler comprises a high fine particle content fly ash and a low fine particle content fly ash.
- 58. The method according to claim 52, wherein the filler further comprises calcium carbonate.
- 59. A method for producing an asphalt composite, comprising the steps of:
combining asphalt with a filler and a primarily carbon-containing material; and producing an asphalt composite with the resulting filled asphalt.
- 60. The method according to claim 59, wherein the filler has a particle size distribution having at least three modes.
- 61. The method according to claim 59, wherein the filler includes a fly ash.
- 62. The method according to claim 61, wherein the fly ash is a lignite coal fly ash.
- 63. The method according to claim 61, wherein the fly ash is a subbituminous coal fly ash.
- 64. The method according to claim 61, wherein the filler further includes a second fly ash.
- 65. The method according to claim 61, wherein the filler further includes calcium carbonate.
- 66. The method according to claim 59, wherein the filler includes calcium carbonate.
- 67. The method according to claim 59, wherein the primarily carbon-containing material is present in the asphalt composite in an amount from about 0. 1% to about 5% by weight.
- 68. A method for producing an asphalt composite, comprising the steps of:
combining asphalt with a calcium carbonate filler having a particle size distribution having at least three modes; and producing an asphalt composite with the resulting filled asphalt.
- 69. A method for producing an asphalt composite, comprising the steps of:
classifying a fly ash to produce a fly ash having a particle size distribution having at least three modes; combining the fly ash with asphalt to produce a filled asphalt; and producing an asphalt composite with the filled asphalt.
- 70. The method according to claim 69, wherein the classifying step comprises classifying the fly ash to produce a fly ash having a particle size distribution that includes a first mode having a median particle diameter from 0.3 to 1.0 microns, a second mode having a median particle diameter from 10 to 25 microns, and a third mode having a median particle diameter from 40 to 80 microns.
- 71. The method according to claim 69, wherein the combining step comprises combining the fly ash and at least one additional filler with asphalt to produce a filled asphalt.
- 72. The method according to claim 71, further comprising the step of blending the fly ash and the at least one additional filler together to produce a filler blend prior to said combining step.
- 73. The method according to claim 69, wherein the classifying step comprises air classifying the fly ash to produce a fly ash having a particle size distribution having at least three modes.
- 74. A method for producing an asphalt composite, comprising the step of selecting a fly ash filler for use in the asphalt composite or modifying a fly ash filler for use in the asphalt composite to have a particle size distribution with at least three modes to increase the packing factor of the fly ash filler and to improve the mechanical properties of the asphalt composite.
- 75. The method according to claim 74, wherein the selecting or modifying step comprises selecting or modifying a fly ash filler to have a particle size distribution with three modes.
- 76. The method according to claim 74, wherein the selecting or modifying step comprises selecting an asphalt that has good compatibility with the fly ash filler to improve the mechanical properties of the asphalt composite.
CROSS REFERENCE TO RELATED APPLICATIONS
[0001] This application is related to commonly owned, copending provisional application Serial No. 60/248,518, filed Nov. 14, 2000, and claims the benefit of the earlier filing date of this application under 35 U.S.C. § 119(e).
Provisional Applications (1)
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Number |
Date |
Country |
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60248518 |
Nov 2000 |
US |