Methods of forming asphalt pavement using foamed asphalt compositions
US-12466769-B2 · Nov 11, 2025 · US
US9464003B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9464003-B2 |
| Application number | US-201013380327-A |
| Country | US |
| Kind code | B2 |
| Filing date | Jun 24, 2010 |
| Priority date | Jun 24, 2009 |
| Publication date | Oct 11, 2016 |
| Grant date | Oct 11, 2016 |
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A method produces a composite material using a mixing system. The composite material comprises at least one aggregate, e.g. rock and/or glass, and the reaction product of a two-component polymeric binder composition comprising a first component, e.g. an isocyanate component, and a second component, e.g. an isocyanate-reactive component. The mixing system includes a mixing apparatus. The method includes the step of providing the aggregate, the first component and the second component into the mixing apparatus. The method further includes the step of mixing the first and second components to produce the reaction product of the two-component polymeric binder composition, and the step of applying the reaction product of the two-component polymeric binder composition to the aggregate within the mixing apparatus to produce the composite material. The composite material can be used for forming a paved structure, such as a sidewalk or a roadway.
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What is claimed is: 1. A method of producing a composite material, the composite material comprising an aggregate and a reaction product of a two-component polymeric binder composition comprising a first component and a second component, the method employing a mixing system comprising an aggregate vessel comprising the aggregate, a first vessel comprising the first component, a second vessel comprising the second component, and a mixing apparatus comprising a mixer and an auger rotatably disposed within a channel, wherein the mixing apparatus is in communication with the aggregate vessel, the first vessel, and the second vessel, the method comprising: (a) delivering the aggregate into the channel of the mixing apparatus at a delivery rate; (b) delivering the first and second components into the mixer of the mixing apparatus; (c) mixing the first and second components in the mixer of the mixing apparatus independent of the aggregate to obtain the reaction product of the two-component polymeric binder composition; and (d) contacting the reaction product of the two-component polymeric binder composition with the aggregate within the channel of the mixing apparatus at an application rate to obtain the composite material. 2. The method of claim 1 , wherein the mixing apparatus further comprises: a housing defining the channel, with the channel in communication with the mixer and the aggregate vessel and the method further comprises rotating the auger to mix the composite material and dispense the composite material from the channel; a conveyer disposed between the aggregate vessel and the mixing apparatus, and the method further comprises transporting the aggregate from the aggregate vessel into the channel at the delivery rate; a first pump in fluid communication with the first vessel and a second pump in fluid communication with the second vessel, wherein each of the pumps is also in fluid communication with the mixer; and a controller in communication with the pumps, and the method further comprises controlling the application rate of the reaction product of the two-component polymeric binder composition to the aggregate within the channel based on the delivery rate of the aggregate into the channel; wherein a portable platform comprises the aggregate vessel, the first vessel, the second vessel and the mixing apparatus. 3. A method of paving a defined area with a composite material to form a paved structure within the defined area, the composite material comprising an aggregate and a reaction product of a two-component polymeric binder composition comprising a first component and a second component, the method employing a mixing system comprising an aggregate vessel comprising the aggregate, a first vessel comprising the first component, a second vessel comprising the second component, and a mixing apparatus comprising: a mixer in fluid communication with the first vessel and the second vessel; a first pump in fluid communication with the first vessels; and a second pump in fluid communication with the second vessel, wherein each of the pumps is also in fluid communication with the mixer; a housing defining a channel in communication with the aggregate vessel and the mixer; a conveyer disposed between the aggregate vessel and the mixing apparatus; a controller in communication with the conveyer and the pumps; and an auger rotatably disposed within the channel; the method comprising: (i) transporting the first and second components from the first and second vessels into the mixer; (ii) mixing the first and second components independent of the aggregate to obtain the reaction product of the two-component polymeric binder composition; (iii) transporting the aggregate from the aggregate vessel into the channel at a delivery rate with the conveyor; (iv) transferring the reaction product of the two-component polymeric binder composition from the mixer to the channel; (v) operating the pumps with the controller to control an application rate of the two-component polymeric binder composition based on the delivery rate of the aggregate transported into the channel; (vi) contacting the reaction product of the two-component polymeric binder composition with the aggregate within the channel at the application rate to obtain the composite material; (vii) rotating the auger to mix the composite material; (viii) dispensing the composite material from the channel; and (ix) curing the composite material to form the paved structure. 4. The method of claim 1 , wherein the first component is an epoxy resin and the second component is a hardener. 5. The method of claim 1 , wherein the first component is an isocyanate and the second component is an isocyanate-reactive component. 6. The method of claim 5 , wherein the isocyanate-reactive component is an alcohol, an amine, or both. 7. The method of claim 1 , wherein the aggregate is about 1 to 99% by weight glass and about 1 to 99% by weight rock each based on the weight of the aggregate. 8. The method of claim 7 , wherein the aggregate has an average diameter of about ⅛ to about ¼ of an inch. 9. The method of claim 1 , wherein the aggregate comprises crumb rubber. 10. The method of claim 1 , wherein the aggregate comprises rock. 11. The method of claim 3 , wherein the dispensing (viii) further comprises dispensing the composite material from the channel directly into the defined area. 12. The method of claim 11 , comprising a plurality of forms, and the method further comprises positioning the forms to define a perimeter of the defined area prior to dispensing (viii) the composite material from the channel directly into the defined area. 13. The method of claim 3 , wherein the dispensing (viii) further comprises dispensing the composite material from the channel into a container. 14. The method of claim 13 , further comprising: transporting the composite material within the container to the defined area after dispensing (viii) the composite material from the channel into the container and prior to curing (ix) the composite material to form the paved structure; and dispensing the composite material from the container directly into the defined area after transporting the composite material within the container to the defined area. 15. The method of claim 14 , comprising a plurality of forms and the method further comprising positioning the forms to define a perimeter of the defined area prior to transporting the composite material into the defined area and prior to curing (ix) the composite material to form the paved structure. 16. The method of claim 3 , wherein the paved structure is a sidewalk or a roadway. 17. A method of producing a composite material, the composite material comprising an aggregate and a reaction product of a two-component polymeric binder composition comprising an isocyanate and a polyol wherein the polyol is in the binder composition in an amount of from about 30 to about 120 parts by weight based on 100 parts by pre-reaction weight of all components in the binder composition except the isocyanate component and wherein the reaction product is the reaction product of the isocyanate and polyol, the method employing a mixing system comprising an aggregate vessel comprising the aggregate, a first vessel comprising the first component, a second vessel comprising the second component, and a mixing apparatus comprising a mixer and an auger rotatably disposed within a channel, wherein the mixing apparatus is in communication with the aggregate vessel, the first vessel, and the second vessel, the method c
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