Claims
- 1. A composite material comprising a reaction product of:
metal oxide; phosphate; reactive residual material; and water.
- 2. The composite material of claim 1, wherein the metal oxide comprises a plurality of metal oxide compositions.
- 3. The composite material of claim 2, wherein the metal oxide compositions have different reactivities.
- 4. The composite material of claim 1, wherein the metal oxide comprises a coarse particle size distribution and a fine particle size distribution.
- 5. The composite material of claim 4, wherein the metal oxide of the coarse particle size distribution and the metal oxide of the fine particle size distribution are the same composition.
- 6. The composite material of claim 4, wherein the metal oxide of the coarse particle size distribution and the metal oxide of the fine particle size distribution are different compositions.
- 7. The composite material of claim 4, wherein the weight ratio of the coarse to fine particle size distributions ranges from about 1:100 to about 100:1.
- 8. The composite material of claim 4, wherein the weight ratio of the coarse to fine particle size distributions ranges from about 1:20 to about 20:1.
- 9. The composite material of claim 4, wherein the weight ratio of the coarse to fine particle size distributions ranges from about 1:10 to about 10:1.
- 10. The composite material of claim 1, wherein the metal oxide comprises MgO, CaO, ZnO, TiO2, Al2O3, SiO2, iron oxide, MnO2 and/or B2O3.
- 11. The composite material of claim 1, wherein the metal oxide comprises MgO.
- 12. The composite material of claim 11, wherein the MgO comprises a mixture of MgO having different particle size distributions.
- 13. The composite material of claim 11, wherein the MgO comprises a mixture of MgO having different reactivities.
- 14. The composite material of claim 11, wherein the MgO comprises dead burned MgO.
- 15. The composite material of claim 11, wherein the MgO comprises hard burned MgO.
- 16. The composite material of claim 11, wherein the MgO has a purity of less than 99%.
- 17. The composite material of claim 11, wherein the MgO has a purity of from about 50 to 98%.
- 18. The composite material of claim 11, wherein the MgO comprises dead burned −30 mesh MgO.
- 19. The composite material of claim 11, wherein the MgO comprises dead burned −325 mesh MgO.
- 20. The composite material of claim 11, wherein the MgO comprises dead burned −30 mesh MgO and dead burned −325 mesh MgO.
- 21. The composite material of claim 11, wherein the MgO comprises hard burned −60 mesh MgO.
- 22. The composite material of claim 11, wherein the MgO comprises hard burned −30 mesh MgO.
- 23. The composite material of claim 1, wherein the phosphate comprises a plurality of phosphate compositions.
- 24. The composite material of claim 1, wherein the phosphate comprises a coarse particle size distribution and a fine particle size distribution.
- 25. The composite material of claim 24, wherein the phosphate of the coarse particle size distribution and the phosphate of the fine particle size distribution are the same composition.
- 26. The composite material of claim 24, wherein the phosphate of the coarse particle size distribution and the phosphate of the fine particle size distribution are different compositions.
- 27. The composite material of claim 24, wherein the weight ratio of the coarse to fine particle size distributions ranges from about 1:100 to about 100:1.
- 28. The composite material of claim 24, wherein the weight ratio of the coarse to fine particle distribution ranges from about 1:20 to about 20:1.
- 29. The composite material of claim 24, wherein the weight ratio of the coarse to fine particle size distributions ranges from about 1:10 to about 10:1.
- 30. The composite material of claim 1, wherein the phosphate comprises mono-potassium phosphate, mono-ammonium phosphate, mono-sodium phosphate, hexa-meta phosphate, di-potassium phosphate, di-hydrogen potassium phosphate and/or di-ammonium phosphate.
- 31. The composite material of claim 1, wherein the phosphate comprises mono-potassium phosphate.
- 32. The composite material of claim 1, wherein the phosphate comprises mono-ammonium phosphate.
- 33. The composite material of claim 1, wherein the phosphate comprises mono-sodium phosphate.
- 34. The composite material of claim 1, wherein the phosphate has a purity of from about 30 to about 85 weight percent.
- 35. The composite material of claim 1, wherein the metal oxide and phosphate have a weight ratio of from about 0.8:1 to about 2:1.
- 36. The composite material of claim 35, wherein the metal oxide comprises MgO and the phosphate comprises mono-potassium phosphate.
- 37. The composite material of claim 1, wherein the metal oxide and phosphate have a weight ratio of from about 0.9:1 to about 1.3:1.
- 38. The composite material of claim 37, wherein the metal oxide comprises MgO and the phosphate comprises mono-potassium phosphate.
- 39. The composite material of claim 1, wherein the metal oxide and phosphate have a weight ratio of from about 1.01:1 to about 1.15:1.
- 40. The composite material of claim 39, wherein the metal oxide comprises MgO and the phosphate comprises mono-potassium phosphate.
- 41. The composite material of claim 1, wherein the reactive residual material comprises fly ash, coal ash, CaO dredge, calcium-containing materials, municipal waste ash, phosphate slurry, biosolids ash, brake shoe dust, volcanic ash, flue gas desulfurization residue and/or mining residual material.
- 42. The composite material of claim 1, wherein the reactive residual material comprises fly ash.
- 43. The composite material of claim 42, wherein the fly ash comprises from about 5 to about 80 weight percent of the total of the combined metal oxide, phosphate and reactive residual material.
- 44. The composite material of claim 42, wherein the fly ash comprises from about 15 to about 70 weight percent of the total of the combined metal oxide, phosphate and reactive residual material.
- 45. The composite material of claim 42, wherein the fly ash comprises from about 20 to about 50 weight percent of the total of the combined metal oxide, phosphate and reactive residual material.
- 46. The composite material of claim 1, wherein the reactive residual material comprises phosphate slurry.
- 47. The composite material of claim 46, wherein the phosphate slurry comprises from about 5 to about 80 weight percent of the total of the combined metal oxide, phosphate and reactive residual material.
- 48. The composite material of claim 46, wherein the phosphate slurry comprises from about 20 to about 60 weight percent of the total of the combined metal oxide, phosphate and reactive residual material.
- 49. The composite material of claim 46, wherein the phosphate slurry comprises from about 25 to about 50 weight percent of the total of the combined metal oxide, phosphate and reactive residual material.
- 50. The composite material of claim 1, wherein the reactive residual material comprises CaO.
- 51. The composite material of claim 50, wherein the CaO comprises from about 5 to about 70 weight percent of the total of the combined metal oxide, phosphate and reactive residual material.
- 52. The composite material of claim 50, wherein the CaO comprises from about 10 to about 65 weight percent of the total of the combined metal oxide, phosphate and reactive residual material.
- 53. The composite material of claim 50, wherein the CaO comprises from about 15 to about 60 weight percent of the total of the combined metal oxide, phosphate and reactive residual material.
- 54. The composite material of claim 50, wherein the CaO comprises CaO dredge.
- 55. The composite material of claim 1, wherein the reactive residual material comprises coal ash.
- 56. The composite material of claim 1, wherein the reactive residual material comprises municipal waste ash.
- 57. The composite material of claim 1, wherein the reactive residual material comprises phosphate slurry.
- 58. The composite material of claim 1, wherein the reactive residual material comprises a calcium-containing material.
- 59. The composite material of claim 1, wherein the reactive residual material reacts with the metal oxide.
- 60. The composite material of claim 1, wherein the reactive residual material reacts with the phosphate.
- 61. The composite material of claim 1, wherein the reactive residual material reacts with the metal oxide and the phosphate.
- 62. The composite material of claim 1, wherein the composite material has a reaction time of less than about 90 minutes.
- 63. The composite material of claim 1, wherein the composite material has a reaction time of from about 1 to about 60 minutes.
- 64. The composite material of claim 1, wherein the composite material has a reaction time of from about 2 to about 30 minutes.
- 65. The composite material of claim 1, wherein the composite material has an initial set time of from about 1 to about 120 minutes.
- 66. The composite material of claim 1, wherein the composite material has an initial set time of from about 1.5 to about 45 minutes.
- 67. The composite material of claim 1, wherein the composite material has an initial set time of from about 2 to about 30 minutes.
- 68. The composite material of claim 1, wherein the composite material has a final set time of from about 2 to about 180 minutes.
- 69. The composite material of claim 1, wherein the composite material has a final set time of from about 4 to about 90 minutes.
- 70. The composite material of claim 1, wherein the composite material has a final set time of from about 5 to about 45 minutes.
- 71. The composite material of claim 1, wherein the composite material has a compressive strength of at least 1,500 psi.
- 72. The composite material of claim 1, wherein the composite material has a compressive strength of at least 2,500 psi.
- 73. The composite material of claim 1, further comprising a substantially inert filler material.
- 74. The composite material of claim 73, wherein the substantially inert filler material comprises sand, aggregate, fibers, plastic, wood and/or paper.
- 75. The composite material of claim 1, wherein the composite material further comprises from about 5 to about 80 weight percent sand.
- 76. The composite material of claim 1, wherein the composite material further comprises from about 1 to about 25 weight percent fibers.
- 77. The composite material of claim 76, wherein the fibers comprise metal, polymer, glass, e-glass and/or graphite.
- 78. A rapid repair material comprising the composite material of claim 1.
- 79. A pre-cast structure comprising the composite material of claim 1.
- 80. An in-situ structure comprising the composite material of claim 1.
- 81. A coating comprising the composite material of claim 1.
- 82. A grout comprising the composite material of claim 1.
- 83. An anchor bonding material comprising the composite material of claim 1.
- 84. A mix for making a composite material, the mix comprising:
metal oxide; phosphate; and reactive residual material.
- 85. The mix of claim 84, wherein the metal oxide comprises a plurality of metal oxide compositions.
- 86. The mix of claim 85, wherein the metal oxide compositions have different reactivities.
- 87. The mix of claim 84, wherein the metal oxide comprises a coarse particle size distribution and a fine particle size distribution.
- 88. The mix of claim 84, wherein the metal oxide of the coarse particle size distribution and the metal oxide of the fine particle size distribution are the same composition.
- 89. The mix of claim 87, wherein the metal oxide of the coarse particle size distribution and the metal oxide of the fine particle size distribution are different compositions.
- 90. The mix of claim 87, wherein the weight ratio of the coarse to fine particle size distributions ranges from about 1:100 to about 100:1.
- 91. The mix of claim 87, wherein the weight ratio of the coarse to fine particle size distributions ranges from about 1:20 to about 20:1.
- 92. The mix of claim 87, wherein the weight ratio of the coarse to fine particle size distributions ranges from about 1:10 to about 10:1.
- 93. The mix of claim 84, wherein the phosphate comprises a plurality of phosphate compositions.
- 94. The mix of claim 84, wherein the phosphate comprises a coarse particle size distribution and a fine particle size distribution.
- 95. The mix of claim 94, wherein the phosphate of the coarse particle size distribution and the phosphate of the fine particle size distribution are the same composition.
- 96. The mix of claim 94, wherein the phosphate of the coarse particle size distribution and the phosphate of the fine particle size distribution are different compositions.
- 97. The mix of claim 94, wherein the weight ratio of the coarse to fine particle size distributions ranges from about 1:100 to about 100:1.
- 98. The mix of claim 94, wherein the weight ratio of the coarse to fine particle size distributions ranges from about 1:20 to about 20:1.
- 99. The mix of claim 94, wherein the weight ratio of the coarse to fine particle size distributions ranges from about 1:10 to about 10:1.
- 100. The mix of claim 84, wherein the metal oxide comprises MgO, CaO, ZnO, TiO2, Al2O3, SiO2, iron oxide, MnO2 and/or B2O3, the phosphate comprises mono-potassium phosphate, mono-ammonium phosphate and/or mono-sodium phosphate, and the reactive residual material comprises fly ash, coal ash, CaO dredge, calcium-containing materials, municipal waste ash, phosphate slurry, biosolids ash, brake shoe dust, volcanic ash, flue gas desulfurization residue and/or mining residual material.
- 101. The mix of claim 84, wherein the mix further comprises a filler material.
- 102. The mix of claim 101, wherein the filler material comprises sand, aggregate, fibers, plastic, wood and/or paper.
- 103. The mix of claim 101, wherein the filler material comprises from about 5 to about 80 weight percent of the mix.
- 104. The mix of claim 101, wherein the metal oxide comprises from about 5 to about 50 weight percent of the mix, the phosphate comprises from about 5 to about 50 weight percent of the mix, and the reactive residual material comprises from about 5 to about 70 weight percent of the mix.
- 105. The mix of claim 101, wherein the metal oxide comprises from about 10 to about 40 weight percent of the mix, the phosphate comprises from about 10 to about 40 weight percent of the mix, and the reactive residual material comprises from about 10 to about 50 weight percent of the mix.
- 106. The mix of claim 101, wherein the metal oxide comprises from about 20 to about 30 weight percent of the mix, the phosphate comprises from about 20 to about 30 weight percent of the mix, and the reactive residual material comprises from about 15 to about 40 weight percent of the mix.
- 107. A rapid repair material comprising a reaction product of:
metal oxide; phosphate; reactive residual material; and water.
- 108. The rapid repair material of claim 107, wherein the metal oxide comprises MgO, CaO, ZnO, TiO2, Al2O3, SiO2, iron oxide, MnO2 and/or B2O3, the phosphate comprises mono-potassium phosphate, mono-ammonium phosphate and/or mono-sodium phosphate, and the reactive residual material comprises fly ash, coal ash, CaO dredge, calcium-containing materials, municipal waste ash, phosphate slurry, biosolids ash, brake shoe dust, volcanic ash, flue gas desulfurization residue and/or mining residual material.
- 109. The rapid repair material of claim 107, wherein the metal oxide comprises MgO and the phosphate comprises mono-potassium phosphate.
- 110. The rapid repair material of claim 109, wherein the reactive residual material comprises fly ash, volcanic ash and/or municipal solid waste ash.
- 111. The rapid repair material of claim 107, wherein the metal oxide comprises from about 10 to about 35 weight percent, the phosphate comprises from about 10 to about 35 weight percent, and the reactive residual material comprises from about 15 to about 70 weight percent of the total combined amount of the metal oxide, phosphate and reactive residual material.
- 112. The rapid repair material of claim 107, wherein the rapid repair material has an initial set time of less than about 30 minutes.
- 113. The rapid repair material of claim 107, wherein the rapid repair material has an initial set time of from about 0.1 to about 25 minutes.
- 114. The rapid repair material of claim 107, wherein the rapid repair material has an initial set time of from about 1 to about 15 minutes.
- 115. The rapid repair material of claim 107, wherein the rapid repair material has a final set time of less than about 60 minutes.
- 116. The rapid repair material of claim 107, wherein the rapid repair material has a compressive strength of at least 500 psi.
- 117. The rapid repair material of claim 107, wherein the rapid repair material has a compressive strength of at least 1,500 psi.
- 118. The rapid repair material of claim 107, wherein the rapid repair material has a compressive strength of at least 2,000 psi.
- 119. A method of making a composite material, the method comprising:
providing a mixture of a metal oxide, phosphate and reactive residual material; and adding water to the mixture.
- 120. The method of claim 119, wherein the step of adding water to the mixture is performed by pouring the water into the mixture.
- 121. The method of claim 119, wherein the step of adding water to the mixture is performed by pouring the mixture into the water.
- 122. The method of claim 119, wherein water comprises tap water, potable water or seawater.
- 123. The method of claim 119, wherein the water comprises from about 10 to about 40 weight percent of the mixture.
- 124. The method of claim 119, wherein the water comprises from about 15 to about 30 weight percent of the mixture.
- 125. The method of claim 119, wherein the metal oxide comprises MgO, CaO, ZnO, TiO2, Al2O3, SiO2, iron oxide, MnO2 and/or B2O3, the phosphate comprises mono-potassium phosphate, mono-ammonium phosphate and/or mono-sodium phosphate, and the reactive residual material comprises fly ash, coal ash, CaO dredge, calcium-containing materials, municipal waste ash, phosphate slurry, biosolids ash, brake shoe dust, volcanic ash, flue gas desulfurization residue and/or mining residual material.
- 126. The method of claim 119, wherein the metal oxide comprises from about 5 to about 50 weight percent, the phosphate comprises from about 5 to about 50 weight percent, and the reactive residual material comprises from about 5 to about 70 weight percent of the mixture.
- 127. The method of claim 119, wherein the composite material has an initial set time of less than about 120 minutes.
- 128. The method of claim 119, wherein the composite material has an initial set time of from about 1.5 to about 45 minutes.
- 129. The method of claim 119, wherein the composite material has an initial set time of from about 2 to about 30 minutes.
- 130. The method of claim 119, wherein the composite material has a final set time of less than about 180 minutes.
- 131. The method of claim 119, wherein the composite material has a final set time of from about 4 to about 90 minutes.
- 132. The method of claim 119, wherein the composite material has a final set time of from about 5 to about 45 minutes.
- 133. A composite material comprising a reaction product of:
a magnesium-containing material; phosphate; reactive residual material; and water.
- 134. The composite material of claim 133, wherein the magnesium-containing material comprises MgO, Mg(OH)2, MgSO4 and/or MgCO3.
- 135. The composite material of claim 133, wherein the magnesium-containing material comprises MgO.
- 136. A composite material comprising a reaction product of:
metal oxide; phosphate; and water, wherein at least a portion of the metal oxide and/or at least a portion of the phosphate is provided from a reactive residual material.
- 137. The composite material of claim 136, wherein the reactive residual material comprises MgO or phosphate residual slurry.
- 138. A composite material comprising a reaction product of:
a magnesium-containing material; phosphate; and water, wherein at least a portion of the magnesium-containing material and/or at least a portion of the phosphate is provided from a reactive residual material.
- 139. The composite material of claim 138, wherein the magnesium-containing material comprises MgO, Mg(OH)2, MgSO4 and/or MgCO3.
- 140. The composite material of claim 138, wherein the magnesium-containing material comprises MgO.
- 141. The composite material of claim 138, wherein the reactive residual material comprises MgO or phosphate residual slurry.
CROSS REFERENCE TO RELATED APPLICATION
[0001] This application claims the benefit of U.S. Provisional Application Serial No. 60/311,529 filed Aug. 10, 2001.
Provisional Applications (1)
|
Number |
Date |
Country |
|
60311529 |
Aug 2001 |
US |