IP Library Granted Patent US 9,126,868
Granted Patent B2
US 9,126,868 · App. 14/124,330 · Granted Sep 8, 2015

Process and additive to improve adhesion of compositions to substrates

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Quick Facts
Patent No.
US 9,126,868
App. No.
14/124,330
Granted
Sep 8, 2015
Kind
B2
Abstract

The present invention provides a process to prepare a powdery additive suitable for improving adhesion of building material compositions to substrates having a surface energy of 50 mJ/m 2 or lower, measured according to DIN 5660-2:2011-12, the additive comprising a polysaccharide and a plasticizer, wherein the plasticizer is liquid at 50° C. or lower, has a boiling point of 100° C. or higher and is selected from a specific group, comprising the steps of a) admixing the plasticizer to an aqueous medium of the polysaccharide followed by the subsequent drying of the admixture, or b) preparing a first particle comprising the plasticizer by (i) adsorbing the plasticizer onto a carrier, or by emulsifying the plasticizer with a synthetic water-soluble polymer in water and subsequently drying the emulsion, and (ii) mixing this first particle with a second particle comprising the polysaccharide wherein the mean particle size of the coarser of the first and second particle is not more than 10 times the mean particle size of the finer particle, or agglomerating the first and second particles into one particle. The invention further provides the additive obtainable by this process, use of the additive and building material compositions containing the additive as well as a process to adhere such compositions to substrates having a surface energy of 50 mJ/m 2 or lower.

Claims (23)

1. Process to prepare a powdery additive suitable for improving adhesion of building material compositions to substrates having a surface energy of 50 mJ/m 2 or lower, measured according to DIN 55660-2:2011-12, the additive comprising a solid polysaccharide and a plasticizer, wherein the plasticizer is liquid at 50° C. or lower, has a boiling point of 100° C. or higher and is selected from the group of esters, ketones, aldehydes, carbonates, aromatic compounds, heteroaromatic compounds, heterocyclic compounds, halogenated hydrocarbons, cyclic unsaturated compounds, terpenes, sulfates and sulfoxides, comprising the steps of

a) admixing the plasticizer to an aqueous medium containing the polysaccharide followed by drying the admixture, or

b) preparing a first particle comprising the plasticizer by (i) adsorbing the plasticizer onto a solid carrier, or emulsifying the plasticizer with a synthetic water-soluble polymer in water and subsequently drying the emulsion, and (ii) mixing this first particle with a second particle comprising the polysaccharide wherein the mean particle size of the coarser of the first and second particle is not more than 10 times the mean particle size of the finer particle, or agglomerating this first particle and this second particle into one particle, and

wherein the polysaccharide is selected from

a polysaccharide ether containing alkyl, carboxyalkyl and/or hydroxyalkyl groups;

a dextrine;

a cold-water soluble starch; and

a derivative of any of the foregoing;

and wherein the sum of the polysaccharide weight and of the plasticizer weight is at least 10 wt. % based on the total weight of the additive.

2. Process of claim 1 , wherein the polysaccharide ether is a cellulose ether or a guar ether, wherein the alkyl group is a methyl, ethyl and/or propyl group, the carboxyalkyl group is a carboxymethyl and/or carboxyethyl group and/or the hydroxyalkyl group is a hydroxyethyl and/or hydroxypropyl group.

3. Process of claim 2 , wherein the plasticizer has a solubility parameter δ at 25° C. between 22.5 MPa 1/2 and 11 MPa 1/2 .

4. Process of claim 3 , wherein the weight ratio of the plasticizer to the polysaccharide is between 90:10 and 1:99.

5. Process of claim 4 , wherein the carrier has a BET surface area, measured according to ISO 5794-1, of at least 10 m 2 /g.

6. Process of claim 5 , wherein the synthetic water-soluble polymer is selected from the group of fully or partially saponified polyvinyl alcohols and their derivatives, polyvinyl pyrrolidone, polyvinyl acetal, melamine formaldehyde sulfonates, naphthalene formaldehyde sulfonates, polymerizates of propylene oxide and/or ethylene oxide, copolymerizates of propylene oxide and/or ethylene oxide, block copolymerizates of propylene oxide and/or ethylene oxide, styrene-maleic acid and vinyl ether-maleic acid copolymerizates.

7. Process of claim 1 , wherein the plasticizer has a solubility parameter δ at 25° C. between 22.5 MPa 1/2 and 11 MPa 1/2 .

8. Process of claim 1 , wherein the weight ratio of the plasticizer to the polysaccharide is between 90:10 and 1:99.

9. Process of claim 1 , wherein the carrier has a BET surface area, measured according to ISO 5794-1, of at least 10 m 2 /g.

10. Process of claim 1 , wherein the synthetic water-soluble polymer is selected from the group of fully or partially saponified polyvinyl alcohols and their derivatives, polyvinyl pyrrolidone, polyvinyl acetal, melamine formaldehyde sulfonates, naphthalene formaldehyde sulfonates, polymerizates of propylene oxide and/or ethylene oxide, copolymerizates of propylene oxide and/or ethylene oxide, block copolymerizates of propylene oxide and/or ethylene oxide, styrene-maleic acid and vinyl ether-maleic acid copolymerizates.

11. An additive obtainable by the process of claim 1 .

12. A method for increasing the adhesion of a building material composition to a difficult-to-bond substrate, said method comprising providing a building material composition that comprises the additive according to claim 11 , wherein said substrate has a surface energy of 50 mJ/m 2 or lower, measured according to DIN 55660-2:2011-12, and wherein the content of said additive is an amount sufficient to improve adhesion of said building material composition to said substrate.

13. The method according to claim 12 , wherein the substrate having a surface energy of 50 mJ/m 2 or lower is a substrate containing polystyrene, polyolefine, polyvinyl chloride, linoleum and/or bitumen.

14. A building material composition comprising the additive of claim 11 , a filler, a mineral binder and/or a water-insoluble polymer-binder.

15. A process to adhere a building material composition to a substrate having a surface energy of 50 mJ/m 2 , measured according to DIN 55660-2:2011-12, comprising the step of adding the additive of claim 7 to the building material composition, optionally adding and mixing with a solvent or solvent mixture, applying the obtained composition onto the substrate, and allowing the applied composition to dry.

Assignments (7)
CHANGE OF NAME Recorded Aug 27, 2020
From: NOURYON CHEMICALS AG
To: CELANESE SWITZERLAND AG
Reel/Frame 053616/0659 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 27, 2020
From: NOURYON CHEMICALS INTERNATIONAL B.V.
To: NOURYON CHEMICALS AG
Reel/Frame 053616/0266 →
RELEASE OF SECURITY INTEREST Recorded Apr 2, 2020
From: WILMINGTON TRUST (LONDON) LIMITED, AS COLLATERAL AGENT
To: NOURYON CHEMICALS INTERNATIONAL B.V. (FORMERLY KNOWN AS AKZO NOBEL CHEMICALS INTERNATIONAL B.V.); NOURYON SURFACE CHEMISTRY LLC (FORMERLY KNOWN AS AKZO NOBEL SURFACE CHEMISTRY LLC); NOURYON CHEMICALS B.V. (F/K/A AKZO NOBEL CHEMICALS B.V.)
Reel/Frame 052296/0436 →
CHANGE OF NAME Recorded Sep 18, 2019
From: AKZO NOBEL CHEMICALS INTERNATIONAL B.V.
To: NOURYON CHEMICALS INTERNATIONAL B.V.
Reel/Frame 050426/0671 →
SECURITY INTEREST Recorded Oct 1, 2018
From: STARFRUIT US MERGER SUB 1 LLC; STARFRUIT US MERGER SUB 2 LLC; AKZO NOBEL SURFACE CHEMISTRY LLC; AKZO NOBEL CHEMICALS B.V.; AKZO NOBEL CHEMICALS INTERNATIONAL B.V.
To: WILMINGTON TRUST (LONDON) LIMITED, AS COLLATERAL AGENT
Reel/Frame 047231/0001 →
CHANGE OF ADDRESS Recorded May 15, 2017
From: AKZO NOBEL CHEMICALS INTERNATIONAL B.V.
To: AKZO NOBEL CHEMICALS INTERNATIONAL B.V.
Reel/Frame 042745/0406 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 6, 2013
From: ALBERLE, THOMAS; KOELLIKER, ROBERT
To: AKZO NOBEL CHEMICALS INTERNATIONAL B.V.
Reel/Frame 031732/0631 →