IP Library Patent Application 18456287
Patent Application
App. No. 18/456,287

ULTRA STABLE CEMENTITIOUS MATERIAL FORMULATION, PROCESS FOR ITS MAKING, AND ULTRA STABLE TILE BACKER BOARD FORMULATION AND PROCESSES FOR ITS MAKING

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Patent No.
US None
App. No.
18/456,287
Abstract

An ultrastable cementitious material with nano-molecular veneer makes a cementitious material by blending 29 wt % to 40 wt % of a magnesium oxide dry powder containing 80 wt % to 98 wt % of magnesium oxide based on a final total weight of the cementitious material, with 14 wt % to 18 wt % of a magnesium chloride dissolved in water and reacting to form a liquid suspension, mixing from 2 to 10 minutes, adding a phosphorus-containing material, and allowing the liquid suspension to react into an amorphous phase cementitious material, wherein a portion of the amorphous phase cementitious material grows a plurality of crystals. The plurality of crystals are encapsulated by the amorphous phase cementitious material forming a nano-molecular veneer. A process to make the ultrastable cementitious material. A tile backer board incorporating the ultrastable cementitious material and a process for making the tile backer board.

Claims (29)

1 - 56 . (canceled)

57 . A cementitious construction material, the construction material comprising magnesium oxychloride crystals at least partially surrounded by a phosphorus-containing amorphous layer, wherein the magnesium oxychloride crystals constitute from 61 wt % to 74 wt % of the cementitious construction material, as determined by X-Ray Diffraction.

58 . The cementitious construction material of claim 57 , wherein the phosphorus-containing amorphous layer is substantially free of crystalline silica.

59 . The cementitious construction material of claim 58 , wherein the phosphorus-containing amorphous layer is in the form of a nano-molecular veneer comprising non-crystalline, phosphorus-containing species identifiable by elemental analysis utilizing a scanning electron microscope (SEM).

60 . The cementitious construction material of claim 59 , wherein at least a portion of the nano-molecular veneer is insoluble in water.

61 . The cementitious construction material of claim 57 , wherein from 10 wt % to about 50 wt % of a phosphorus-containing amorphous layer, as determined by X-Ray Diffraction.

62 . The cementitious construction material of claim 57 , wherein the magnesium oxychloride crystal content, after a 24-hour soak in water having a temperature of 60° C., is from about 2 wt % to about 50 wt %, as determined by X-Ray Diffraction.

63 . The cementitious construction material of claim 57 having a BET surface area of from about 20 m 2 /g to about 30 m 2 /g.

64 . The cementitious construction material of claim 57 , wherein the construction material is substantially free of magnesium phosphate.

65 . The cementitious construction material of claim 57 , the construction material further comprising from 0.1 wt % to 30 wt % of aggregate based on the total weight of the material.

66 . The cementitious construction material of claim 57 , the construction material further comprising from 0.1 wt % to 2 wt % of a reinforcing material based on the total weight of the material.

67 . The cementitious construction material of claim 57 , the construction material further comprising from 0.1 wt. % to 15 wt. % of biomass based on the total weight of the material.

68 . The cementitious construction material of claim 57 , the construction material further comprising from 0.1 wt % to 10 wt % of at least one surfactant based on the total weight of the material.

69 . The cementitious construction material of claim 57 , the construction material further comprising from 0.1 wt % to 5 wt. % of a re-dispersible powder polymer based on the final total weight of the material.

70 . The cementitious construction material of claim 57 , the construction material further comprising from 0.1 wt % to 5 wt % of an acrylic or styrene butadiene rubber (SBR) based on the total final weight of the material.

71 . The cementitious construction material of claim 57 , the construction material further comprising from 0.1 wt % to 15 wt % based on the total weight of the material of a reinforcing material.

72 . A process for making a cementitious construction material, the process comprising:

blending magnesium oxide and magnesium chloride in water and reacting the magnesium oxide and magnesium chloride, thereby forming a liquid suspension;

mixing the liquid suspension; and

following mixing of the liquid suspension, adding (i) a stabilizing material, and (ii) an additive selected from the group consisting of an aggregate, a reinforcing material, biomass, a surfactant, and combinations thereof to the liquid suspension while forming an amorphous phase that grows a plurality of magnesium oxychloride crystals at least partially surrounded by a phosphorus-containing amorphous layer, wherein the stabilizing material is selected from an aqueous solution comprising 55 wt % to 65 wt % of phosphorous acid (H 3 PO 3 ) and an aqueous solution comprising 80 wt % to 90 wt % of phosphoric acid (H 3 PO 4 ).

73 . The process of claim 72 , the process further comprising adding an aggregate to the liquid suspension, the aggregate added in an amount of from 2 wt % to 30 wt % based on the total weight of the cementitious construction material.

74 . The process of claim 73 , wherein the aggregate is added to the liquid suspension after addition of the stabilizing material thereto.

75 . A process for making a cementitious construction material, the process comprising:

forming a gel phase by blending together magnesium oxide and magnesium chloride in water;

adding at least one of phosphorous acid and/or phosphoric acid to the gel phase while forming an amorphous phase;

coating a substrate with the amorphous phase; and

crystallizing a portion of the amorphous phase into a cementitious material, wherein:

the cementitious material comprises magnesium oxychloride crystals at least partially surrounded by a phosphorus-containing amorphous layer, wherein the magnesium oxychloride crystals constitute from about 61 wt % to about 74 wt % of the cementitious material, as determined by X-Ray Diffraction.

76 . The process of claim 75 wherein the substrate is selected from oriented strand board, plywood, waterproof membrane, concrete, and wood.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 17, 2025
From: MITEK HOLDINGS, INC.
To: TRITON MGO PRODUCTS, LLC
Reel/Frame 073241/0502 →
NUNC PRO TUNC ASSIGNMENT Recorded Apr 11, 2024
From: WAMBAUGH, JAMES ALLEN; ROCHNER, BRETT
To: JET PRODUCTS, LLC
Reel/Frame 067074/0686 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 11, 2024
From: JET PRODUCTS, LLC
To: MITEK HOLDINGS, INC.
Reel/Frame 067075/0122 →