IP Library Granted Patent US 10,221,569
Granted Patent B2
US 10,221,569 · App. 15/807,373 · Granted Mar 5, 2019

Cementitious composite constituent relationships

Inventors: Curren E. Krasnoff (Pacific Palisades, CA); Neal S. Berke (Portage, MI)
Assignee: Cortex Composites, Inc.
E04C5/00B32B3/20B32B3/28B32B3/30B32B5/022B32B5/024B32B5/026B32B5/028B32B5/06B32B5/16B32B5/22B32B5/26B32B7/10B32B7/12B32B13/02B32B13/12B32B13/14B32B27/12B32B27/14B32B27/304B32B27/306B32B27/32B32B27/36E01C9/001E01C11/18E04C5/07E04C5/073B32B3/266B32B7/045B32B7/05B32B2250/02B32B2250/03B32B2250/04B32B2255/02B32B2255/10B32B2260/021B32B2260/044B32B2262/02B32B2262/0223B32B2262/0253B32B2262/0261B32B2262/06B32B2262/062B32B2262/101B32B2262/103B32B2262/106B32B2264/10B32B2307/31B32B2307/54B32B2307/546B32B2307/71B32B2307/7166B32B2307/72B32B2307/726B32B2307/7265B32B2410/00B32B2419/00B32B2471/00Y10T428/24702Y10T428/249932Y10T442/198Y10T442/361Y10T442/3797Y10T442/653Y10T442/699
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Quick Facts
Patent No.
US 10,221,569
App. No.
15/807,373
Granted
Mar 5, 2019
Kind
B2
Abstract

A cementitious composite for in-situ hydration includes a first layer, a second layer spaced from the first layer, and a cementitious mixture disposed between the first layer and the second layer. The cementitious mixture includes cementitious materials. The cementitious mixture is configured to absorb a mass of water that provides a maximum 28 day compressive strength of the cementitious composite upon curing which is represented by M w =x·M c . M w is the mass of the water per unit area of the cementitious composite. M c is a mass of the cementitious materials of the cementitious mixture per unit area of the cementitious composite. x is a ratio of the mass of the water relative to the mass of the cementitious materials of the cementitious mixture per unit area of the cementitious composite that provides the maximum 28 day compressive strength of the cementitious composite. x is between 0.25 and 0.55.

Claims (40)

1. A cementitious composite for in-situ hydration, comprising:

a first layer;

a second layer spaced from the first layer;

a cementitious mixture disposed between the first layer and the second layer, the cementitious mixture including cementitious materials shaped and arranged to provide a void fraction of between 0.64 and 1.35, wherein the void fraction is defined as the ratio of the volume of the voids within the cementitious mixture per unit area of the cementitious composite to the volume of the cementitious materials per unit area of the cementitious composite; and

a structure layer comprising a nonwoven material and disposed between the first layer and the second layer, wherein the cementitious mixture is disposed within the structure layer;

wherein the cementitious mixture is configured to absorb a mass of water that provides a maximum 28 day compressive strength of the cementitious composite; and

wherein:

M w =x·M c

where:

M w is the mass of the water per unit area of the cementitious composite;

M c is a mass of the cementitious materials of the cementitious mixture per unit area of the cementitious composite; and

x is a ratio of the mass of the water relative to the mass of the cementitious materials of the cementitious mixture per unit area of the cementitious composite that provides the maximum 28 day compressive strength of the cementitious composite, wherein x is between 0.25 and 0.55.

2. The cementitious composite of claim 1 , wherein the ratio of the mass of the water relative to the mass of the cementitious materials of the cementitious mixture that provides the maximum 28 day compressive strength of the cementitious composite is between 0.30 and 0.55.

3. The cementitious composite of claim 1 , wherein the first layer is a sealing layer positioned to seal a first side of the cementitious composite such that the cementitious mixture and water does not migrate through the first side.

4. The cementitious composite of claim 1 , wherein the second layer is a containment layer positioned at an opposite second side of the cementitious composite to at least partially contain the cementitious mixture within the cementitious composite.

5. The cementitious composite of claim 4 , wherein the containment layer is water permeable and thereby configured to facilitate the in-situ hydration of the cementitious mixture.

6. A method for manufacturing a cementitious composite for in-situ hydration, the method comprising:

providing a first layer;

providing a second layer;

providing a structure layer comprising a nonwoven material and disposed between the first layer and the second layer; and

disposing a cementitious mixture between the first layer and the second layer, wherein the cementitious mixture is disposed within the structure layer, the cementitious mixture including cementitious materials shaped and arranged to provide a void fraction of between 0.64 and 1.35, wherein the void fraction is defined as the ratio of the volume of the voids within the cementitious mixture per unit area of the cementitious composite to the volume of the cementitious materials per unit area of the cementitious composite;

wherein the cementitious mixture is configured to absorb a mass of water, and the first layer and the second layer are configured to facilitate the absorption of the mass of water by the cementitious mixture, that provides a maximum 28 day compressive strength of the cementitious composite upon curing, wherein a ratio of the mass of the water relative to a mass of the cementitious materials of the cementitious mixture that provides the maximum 28 day compressive strength is between 0.25 and 0.55.

7. The method of claim 6 , wherein the ratio of the mass of the water relative to the mass of the cementitious materials of the cementitious mixture that provides the maximum 28 day compressive strength of the cementitious composite is between 0.30 and 0.55.

8. The method of claim 6 , wherein the first layer is a sealing layer positioned to seal a first side of the cementitious composite such that the cementitious mixture and water does not migrate through the first side.

9. The method of claim 6 , wherein the second layer is a containment layer positioned at an opposite second side of the cementitious composite to at least partially contain the cementitious mixture within the cementitious composite.

10. The method of claim 9 , wherein the containment layer is water permeable and thereby configured to facilitate the in-situ hydration of the cementitious mixture.

11. The method of claim 6 , further comprising a disposing a structure layer between the first layer and the second layer, wherein the cementitious mixture is disposed within the structure layer, and wherein the structure layer is configured to facilitate the absorption of the mass of water by the cementitious mixture that provides a maximum 28 day compressive strength of the cementitious composite upon curing.

12. The method of claim 6 , further comprising compacting the cementitious mixture between the first layer and the second layer.

13. The cementitious composite of claim 1 , wherein at least one of (a) the first layer, the second layer, and the structure layer are configured to facilitate the absorption of the mass of water by the cementitious mixture that provides the maximum 28 day compressive strength of the cementitious composite, (b) the first layer, the second layer, and the structure layer are configured to permit uninhibited expansion of the cementitious mixture, and (c) the cementitious mixture is of a nonexpansive type.

14. A cementitious composite for in-situ hydration, comprising:

a first layer;

a second layer spaced from the first layer; and

a cementitious mixture disposed between the first layer and the second layer, the cementitious mixture including cementitious materials and super absorbent polymers, the cementitious materials shaped and arranged to provide a void fraction of between 0.30 and 1.35, wherein the void fraction is defined as the ratio of the volume of the voids within the cementitious mixture per unit area of the cementitious composite to the volume of the cementitious materials per unit area of the cementitious composite;

wherein the cementitious mixture is configured to absorb a mass of water that provides a maximum 28 day compressive strength of the cementitious composite; and

wherein:

M w =x·M c

where:

M w is the mass of the water per unit area of the cementitious composite;

M c is a mass of the cementitious materials of the cementitious mixture per unit area of the cementitious composite; and

x is a ratio of the mass of the water relative to the mass of the cementitious materials of the cementitious mixture per unit area of the cementitious composite that provides the maximum 28 day compressive strength of the cementitious composite, wherein x is between 0.25 and 0.55.

Assignments (3)
SECURITY INTEREST Recorded Jun 24, 2021
From: CORTEX COMPOSITES, INC.
To: BURDENS AUSTRALIA, PTY LTD
Reel/Frame 056656/0338 →
SECURITY INTEREST Recorded Feb 26, 2019
From: CORTEX COMPOSITES, INC.
To: FOLEY & LARDNER LLP
Reel/Frame 048447/0430 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 15, 2017
From: KRASNOFF, CURREN E.; BERKE, NEAL S.
To: CORTEX COMPOSITES, INC.
Reel/Frame 044134/0928 →
Continuity (1)
Related Publication 20180066430A1 · Mar 8, 2018