Dimensionally stable geopolymer composition and method
US-10221096-B2 · Mar 5, 2019 · US
US11560334B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11560334-B2 |
| Application number | US-201916657543-A |
| Country | US |
| Kind code | B2 |
| Filing date | Oct 18, 2019 |
| Priority date | Oct 23, 2018 |
| Publication date | Jan 24, 2023 |
| Grant date | Jan 24, 2023 |
A practical reading order for non-experts. Skip the full description unless you need deep technical detail.
What the patent document calls the invention.
A short plain-language summary of the technical disclosure.
Who owns or filed the patent and who is credited as inventor.
Filing, priority, publication, and grant dates set the timeline.
The legal scope of protection — read this for what is actually claimed.
Technology tags used to group this patent with similar filings.
Prior art links and similar publications in this corpus.
Official abstract text for this publication.
A concrete and asphalt repair coating formulation includes a cement component and an aggregate component. The cement component includes a calcium sulfoaluminate cement and a Portland cement. The aggregate component includes coarse aggregates between 125-500 microns in diameter and fine aggregates between 5-62.5 microns in diameter.
Opening claim text (preview).
What is claimed: 1. A concrete repair coating formulation, comprising: a cement component including a calcium sulfoaluminate cement and a Portland cement; and an aggregate component including coarse aggregates between 62.5 microns and 500 microns in diameter and fine aggregates between 62.5 microns to less than 5 microns in diameter wherein (a) said cement component has a ratio by weight of Portland cement to calcium sulfoaluminate cement ranging from 1/19 to 1/5.66 and (b) the coarse aggregates include screen fractions of (a) minus 500 microns by plus 250 microns of limestone, dolomitic limestone, dolomite or quartz sand constituting between 10-25% by weight of total product, (b) less than 250 microns by 125 microns constituting between 20-35% by weight of the total product and (c) less than 125 microns by plus 62.5 microns constituting between 6% to 10% by weight of total product. 2. The concrete repair coating formulation of claim 1 , wherein said coarse aggregates are 50% to 60% by weight above 62.5 microns in diameter of the total product. 3. The concrete repair coating formulation of claim 2 , wherein said fine aggregate of limestone, dolomitic limestone, dolomite and quartz sand fraction of less than 62.5 microns constitutes between 4-8% by weight of the total product. 4. The concrete repair coating formulation of claim 3 , wherein said fine aggregates further include a quartz flour filler with an average particle size 5 microns that constitutes between 5-15% by weight of total concrete repair coating formulation. 5. The concrete repair coating formulation of claim 4 , further including a set time retarder. 6. The concrete repair coating formulation of claim 5 , further including a water reducing agent. 7. The concrete repair coating formulation of claim 6 , further including a defoaming agent. 8. The concrete repair coating formulation of claim 7 , wherein said set time retarder is selected from a group of set time retarding agents consisting of citric acid, tartaric acid, glucose and combinations thereof. 9. The concrete repair coating formulation of claim 8 , wherein said set time retarder is provided at a first dosage range of 0.20-0.40% by weight of the total concrete repair coating formulation. 10. The concrete repair coating formulation of claim 9 , wherein said water reducing agent is selected from a group of water reducing agents consisting of naphthalene sulfonates, polycarboxylate and melamine-based agents and combination thereof. 11. The concrete repair coating formulation of claim 10 , wherein said water reducing agent is provided at a second dosage range of 0.75-1.25% by weight of the total concrete repair coating formulation. 12. The concrete repair coating formulation of claim 11 , wherein said defoaming agent is selected from a group of defoaming agents consisting of petroleum distillates and ethoxylated alcohols on a silica carrier. 13. The concrete repair coating formulation of claim 12 , wherein said defoaming agent is provided at a dosage range of 0.5%-1.0% of the total concrete coating formulation. 14. A concrete repair coating formulation, comprising: a cement component consisting of a calcium sulfoaluminate cement and a Portland cement having a ratio by weight of Portland cement to calcium sulfoaluminate cement ranging from 1/19 to 1/5.66; an aggregate component with gradation spanning from 500 microns to less than 5 microns; a set time retarder; a water reducing agent; and a defoaming agent. 15. A kit for concrete repair, comprising: a vessel including a dry concrete repair coating formulation including a cement component consisting of a calcium sulfoaluminate cement and a Portland cement having a ratio by weight of Portland cement to calcium sulfoaluminate cement ranging from 1/19 to 1/5.66 and an aggregate component with gradation spanning from 500 μm to less than 5 μm, a set time retarder; a water reducing agent; a defoaming agent and a premeasured water additive package adapted to prevent a user from overdosing with water. 16. An asphalt surface, comprising: weathered asphalt; and a concrete repair coating formulation bound to said weathered asphalt, said concrete repair coating formulation including (a) a cement component including a calcium sulfoaluminate cement and a Portland cement having a ratio by weight of Portland cement to calcium sulfoaluminate cement ranging from 1/19 to 1/5.66, (b) an aggregate component with gradation spanning 500 microns to 5 microns, (c) a set time retarder and (d) a water reducing agent (e) and a defoaming agent. 17. A concrete repair coating formulation, comprising: a cement component including a calcium sulfoaluminate cement and a Portland cement; and an aggregate component including coarse aggregates between 62.5 microns and 500 microns in diameter and fine aggregates between 62.5 microns to less than 5 microns in diameter wherein said course aggregates include screen fractions of limestone, dolomitic limestone, dolomite or quartz sand coarse aggregates including screen fractions of (a) minus 500 microns by plus 250 microns constituting between 10-25% by weight of the total product; (b) less than 250 microns by more than 125 microns constituting of between 20-35% by weight of the total product and (c) less than 125 microns by plus 62.5 microns constituting between 6-10% by weight of total product. 18. The concrete repair coating formulation of claim 17 , wherein said coarse aggregates are 60% by weight above 62.5 microns in diameter of the total product. 19. The concrete repair coating formulation of claim 18 , wherein said fine aggregates include a limestone, dolomitic limestone, dolomite or quartz sand fraction of less than 62.5 microns constituting between 4-8% by weight of the total product. 20. The concrete repair coating formulation of claim 19 , wherein said fine aggregates further include a quartz flour filler with an average (d50) particle size of 5 micron that constitutes between 5-15% by weight of total concrete repair coating formulation.
Heterocyclic nitrogen compounds · CPC title
as filling material for cavities or the like · CPC title
Water reducers · CPC title
Defoamers, air detrainers · CPC title
Calcium aluminosulfate cements, e.g. cements hydrating into ettringite · CPC title
Related publications grouped by family.
Answers are generated from the same data shown on this page.