IP Library › Granted Patent US 12,330,997
Granted Patent B2
US 12,330,997 · App. 17/992,702 · Granted Jun 17, 2025

Concrete formulations, structures, and inlays and methods therefore

Inventor: Andrew Morgan (Denton, TX)
C04B41/5079C04B28/04C04B41/009C04B41/4509C04B41/4539C04B2103/10C04B2103/30
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Quick Facts
Patent No.
US 12,330,997
App. No.
17/992,702
Granted
Jun 17, 2025
Kind
B2
Abstract

A process for forming an inlay in a cured concrete structure includes forming a pocket in a preexisting concrete structure, filling the pocket with a cementitious mixture, curing the mixture in the pocket to form a cured mixture, and polishing the cured mixture in the pocket. The cementitious mixture includes a Portland cement, an admixture comprising at least one of a strengthener, a plasticizer, or an accelerator, and an aggregate.

Claims (60)

1. A process for forming an inlay in a cured concrete structure, the process comprising:

forming a pocket in a preexisting concrete structure;

filling the pocket with a mixture, wherein filling the pocket with the mixture comprises filling the pocket with the mixture to a height at least about one half of an average diameter of the aggregate above a surface of the preexisting concrete structure, and wherein the mixture comprises:

a Portland cement comprising two or more oxides of silicon, iron, aluminum, calcium, magnesium, sulfur, potassium, and sodium;

an admixture comprising at least one of a strengthener; a plasticizer, or an accelerator; and

an aggregate; and

curing the mixture in the pocket to form a cured mixture; and

polishing the cured mixture in the pocket approximately level with the surface of the preexisting concrete structure.

2. The process of claim 1 , wherein the mixture comprises

a cementitious mixture, and wherein the cementitious mixture comprising:

a Portland cement comprising two or more oxides of silicon, iron, aluminum, calcium, magnesium, sulfur, potassium, and sodium;

an admixture comprising a plurality of: the strengthener; the plasticizer, or the accelerator; and

an aggregate, wherein the aggregate comprises a portion having an average diameter between about one-third to one-sixth of a thickness of the pocket.

3. The process of claim 1 , wherein the pocket has a thickness, and wherein the thickness is between about 0.1 in to about 1 in.

4. The process of claim 2 , wherein the aggregate has an average diameter, and wherein the average diameter is less than or equal to one-third of a thickness of the pocket.

5. The process of claim 2 , further comprising applying a bonding agent to the pocket prior to filling the pocket with the uncured mixture.

6. The process of claim 2 , wherein the aggregate comprises:

a first portion having an average diameter between about one-third to one-sixth of a thickness of the pocket; and

a second portion having an average diameter between about one-fiftieth to about one-sixth of the thickness of the pocket.

7. The process of claim 6 , wherein the first portion comprises between about 40% to about 60% by volume of the aggregate.

8. The process of claim 1 , wherein forming the pocket comprises:

etching the concrete structure to form the pocket.

9. The process of claim 1 , wherein forming the pocket comprises:

disposing a stencil in a surface of an uncured concrete;

curing the uncured concrete to form the concrete structure;

removing the stencil from the concrete structure to form the pocket.

10. The process of claim 1 , wherein the pocket comprises a concave edge in the concrete structure and wherein a surface of the concrete structure in the pocket has a textured surface.

11. The process of claim 1 , further comprising:

forming a dam around a perimeter of the pocket, wherein filling the pocket with the mixture comprises: filling the pocket with the mixture, and retaining the mixture in the pocket using the dam.

12. The process of claim 1 , wherein a coefficient of expansion of the mixture is less than a coefficient of expansion of the concrete structure.

13. The process of claim 1 , wherein the aggregate comprises between about 60% to about 80% by volume of the mixture.

14. The process of claim 1 , wherein the mixture comprises a curable polymeric material.

15. A composite having an inlay in a preexisting concrete structure, comprising:

a pocket formed in the preexisting concrete structure;

a cured mixture disposed in the pocket and bonded to the preexisting concrete structure, wherein the cured mixture is polished level with a surface of the concrete surrounding the pocket, and wherein the cured mixture comprises:

a cementitious mixture, comprising:

a Portland cement comprising two or more oxides of silicon, iron, aluminum, calcium, magnesium, sulfur, potassium, and sodium;

an aqueous fluid; and

at least one admixture comprising:

a strengthener,

a plasticizer, and

an accelerator; and

an aggregate.

16. The inlay of claim 15 , wherein the cured mixture and the surface of the concrete surrounding the pocket are polished level.

17. The inlay of claim 15 , wherein the pocket has a thickness, and wherein the thickness is between about 0.75 to about 0.1 inches.

18. The inlay of claim 15 , wherein the aggregate has an average diameter, and wherein the average diameter is less than or equal to one third of a thickness of the pocket.

19. The inlay of claim 15 , wherein the aggregate comprises:

a first portion having an average diameter between about one third to one sixth of a thickness of the pocket; and

a second portion having an average diameter between about one fiftieth to about one sixth of the thickness of the pocket.

20. A composite having an inlay in a preexisting concrete structure, comprising:

a pocket formed in the preexisting cured concrete structure;

a cured mixture disposed in the pocket and bonded to the preexisting concrete structure, wherein the cured mixture and the preexisting cured concrete structure are both polished level, and wherein the cured mixture comprises:

a cementitious mixture, comprising:

a Portland cement comprising two or more oxides of silicon, iron, aluminum, calcium, magnesium, sulfur, potassium, and sodium;

an aqueous fluid; and

at least one admixture comprising:

a strengthener,

a plasticizer, and

an accelerator; and

an aggregate, wherein the aggregate comprises between about 60% to about 80% by volume of the cementitious mixture.

Continuity (1)
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