IP Library Granted Patent US 12,565,449
Granted Patent B2
US 12,565,449 · App. 17/778,713 · Granted Mar 3, 2026

Ultra-high performance concretes with high early strength

Inventors: Pipat Termkhajornkit (Holderbank, CH); Caroline Meulenyzer (Holderbank, CH); Mohamed-Amine Handour (Holderbank, CH)
Assignee: Amrize Technology Switzerland LLC
C04B28/04C04B7/02C04B14/06C04B22/002C04B2103/32C04B2103/50C04B2111/72
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Quick Facts
Patent No.
US 12,565,449
App. No.
17/778,713
Granted
Mar 3, 2026
Kind
B2
Abstract

A hydraulic composition includes in relative parts by mass with respect to first Portland cement: 100 parts of a first Portland cement the particles of which have a D50 between 10 and 25 μm; from 25 to 76 parts of a second Portland cement the particles of which have a D50 between 0.5 and 6 μm; from 85 to 200 parts of sand; water; the water content being such that the hydraulic composition includes from 170 to 250 kg of water per cubic metre of hydraulic composition; the volume distribution of particle size of the first Portland cement and of the second Portland cement being further such that the ratio D50 of the first Portland cement/D50 of the second Portland cement is greater than 2.

Claims (29)

1 . A hydraulic composition comprising in relative parts by mass with respect to first Portland cement:

100 parts of a first Portland cement the particles of which have a D50 comprised between 10 and 25 μm;

from 25 to 76 parts of a second Portland cement the particles of which have a D50 comprised between 0.5 and 6 μm;

from 85 to 200 parts of sand;

water;

O the water content being such that the hydraulic composition comprises from 170 to 250 kg of water per cubic metre of hydraulic composition;

the volume distribution of particle size of the first Portland cement and of the second Portland cement being further such that the ratio D50 of the first Portland cement/D50 of the second Portland cement is greater than 2,

and wherein the hydraulic composition is self-leveling.

2 . The hydraulic composition according to claim 1 wherein the hydraulic composition comprises from 0 to 60 parts, as expressed in relative parts by mass with respect to first Portland cement, of one or more mineral components selected from silica fumes, pozzolanic materials, slags, calcined shales, materials containing calcium carbonate, siliceous additions, fly ashes, or mixtures thereof.

3 . The hydraulic composition according to claim 1 , wherein the first and/or the second Portland cement is a CEM I cement.

4 . The hydraulic composition according to claim 1 , wherein the sand has particles the D50 of which is between 200 μm and 3 mm.

5 . The hydraulic composition according to claim 1 , wherein the sand is a siliceous sand, a calcined bauxite sand, a siliceous limestone sand, a limestone sand, or mixtures thereof.

6 . The hydraulic composition according to claim 1 , further comprising from 0 to 35 parts of fibers.

7 . The hydraulic composition according to claim 1 , further comprising from 0 to 10 parts of superplasticizer.

8 . The hydraulic composition according to claim 1 , further comprising from 1 to 3 parts, of an anti-foaming agent.

9 . A method for producing a hydraulic composition according to claim 1 , wherein the first and second Portland cements, the sand, water, and optionally mineral component(s), fibers, a superplasticizer and/or an anti-foaming agent are mixed.

10 . An object formed for the field of construction comprising the hydraulic composition according to claim 1 .

11 . A method comprising utilizing the hydraulic composition according to claim 1 in the restoration and repair of infrastructure elements.

12 . The hydraulic composition according to claim 1 , wherein particles of the first Portland cement have a D50 comprised between 10 and 16 μm.

13 . The hydraulic composition according to claim 1 , wherein particles of the first Portland cement have a D50 comprised between 11 and 15 μm.

14 . The hydraulic composition according to claim 1 , wherein particles of the second Portland cement have a D50 between 0.5 and 5 μm.

15 . The hydraulic composition according to claim 1 , wherein the hydraulic composition comprises from 0 to less than 20 parts, as expressed in relative parts by mass with respect to first Portland cement, of one or more mineral components selected from silica fumes, pozzolanic materials, slags, calcined shales, materials containing calcium carbonate, limestone, siliceous additions, fly ashes, or mixtures thereof.

16 . A hydraulic binder in relative parts by mass with respect to first Portland cement:

100 parts of a first Portland cement the particles of which have a D50 comprised between 10 and 25 μm;

from 25 to 76 parts of a second Portland cement the particles of which have a D50 comprised between 0.5 and 6 μm;

from 85 to 200 parts of sand;

the volume distribution of particle size of the first Portland cement and of the second Portland cement being further such that the ratio D50 of the first Portland cement/D50 of the second Portland cement is greater than 2, and

wherein the hydraulic binder does not comprise liquid admixtures,

wherein upon being combined with water, to form a hydraulic composition, in an amount ranging from 170 to 250 kg of water per cubic metre of hydraulic composition, the hydraulic composition is self-leveling.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 14, 2025
From: HOLCIM TECHNOLOGY LTD
To: AMRIZE TECHNOLOGY SWITZERLAND LLC
Reel/Frame 073207/0820 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 20, 2022
From: TERMKHAJORNKIT, PIPAT; MEULENYZER, CAROLINE; HANDOUR, MOHAMED-AMINE
To: HOLCIM TECHNOLOGY LTD
Reel/Frame 060145/0179 →
Priority Claims (1)
EP 20305020 · Jan 14, 2020 · regional
Continuity (1)
Related Publication 20230002282A1 · Jan 5, 2023
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