IP Library Granted Patent US 8,343,378
Granted Patent B2
US 8,343,378 · App. 12/694,306 · Granted Jan 1, 2013

Aromatic polyesterpolyols, isocyanurate-modified polyurethane foams, and methods of making them

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Quick Facts
Patent No.
US 8,343,378
App. No.
12/694,306
Granted
Jan 1, 2013
Kind
B2
Abstract

Embodiments of this disclosure include, among others, polyol mixtures, methods of making a polyol mixture, methods of making a rigid isocyanurate-modified polyurethane foam, rigid isocyanurate-modified polyurethane foams, aromatic polyesterpolyols, and the like.

Claims (23)

1. A polyol mixture comprising:

an aromatic polyesterpolyol having an aromatic polyester polyol backbone, wherein the aromatic polyesterpolyol has a hydroxyl value (OHV) value of about 30 to 700 mg KOH/g and an average functionality of about 1.5 to 8 mg KOH/g, wherein the aromatic polyester polyol is an esterification/transesterification reaction product of the reaction of:

a polyfunctional alcohol;

an aromatic polycarboxylic acid component; and

a mixture including: hydroxycaproic acid, adipic acid, glutaric acid, 5-hydroxyvaleric acid, 1,2-cyclohexanediol, oxo- and oxa-compounds, oligomeric esters of hydroxycaproic acid and esters of hydroxycaproic acid with adipic acid, and the mixture also includes one or more of the following: formic acid, monocarboxylic acid, and diacarboxylic acid.

2. The polyol mixture of claim 1 , wherein the mixture includes: about 10 to 40 weight % adipic acid in the mixture, about 1 to 5 weight % glutaric acid in the mixture, about 5 to 15 weight % hydroxycaproic acid in the mixture, about 1 to 10 weight % of 5-hydroxyvaleric acid in the mixture, about 1 to 5 weight % of 1,2 cyclohexanediol in the mixture, less than 5 weight % of oxo- and oxa-compounds in the mixture, about 30 to 60 weight % of oligomeric esters of hydroxycaproic acid and esters of hydroxycaproic acid with adipic acid in the mixture, and less than 1 weight % of one or more of the following in the mixture: formic acid, monocarboxylic acid, and diacarboxylic acid.

3. The polyol mixture of claim 1 , wherein the polyfunctional alcohol is selected from the group consisting of: an aliphatic polyhydric alcohol, a cycloaliphatic polyhydric alcohol, an aromatic polyhydric alcohol, a heterocyclic polyhydric alcohol, and a combination thereof.

4. The polyol mixture of claim 1 , wherein the polyfunctional alcohol is selected from the group consisting of: non-alkoxylated glycerol, non-alkoxylated pentaerythritol, non-alkoxylated α-methylglucoside, non-alkoxylated sucrose, non-alkoxylated sorbitol, non-alkoxylated tri-methylolpropane, non-alkoxylated, trimethylolethane, tertiary alkynol amines, non-alkoxylated mono-disaccharide, non-alkoxylated mono-trisaccharide, non-alkoxylated mono-poly saccharide, and a combination thereof.

5. The polyol mixture of claim 1 , wherein the polyfunctional alcohol is selected from the group consisting of: ethylene glycol, diethyleneglycol, triethyleneglycol, polyethylene glycol, propylene glycol, dipropylene glycol, trimethylene glycol, an isomer of butanediol, an isomer of pentanediol, an isomer of hexanediol, an isomer of heptanediol, an isomer of octanediol, an isomer of decandiol, an isomer of dodecandiol, an isomer of glycerol, an isomer of polyglycerol, an isomer of monomethylolpropane, an isomer of dimethylolpropane, an isomer of trimethylolpropane, an isomer of 1 , 1 , 1 -trimethylol-propane, an isomer of 1,1,1-trimethylolethane, an isomer of pentaerythritol, one or more reaction products of pentaerythritol with ethylene- or propyleneoxide, dipentaerythritol, one or more reaction products of dipentaerythritol with ethylene- or propyleneoxide, 1,2,6-hexanetriol, α-methyl glucoside, sucrose, sorbitol, and a combination thereof.

6. The polyol mixture of claim 1 , wherein the aromatic polycarboxylic acid component is selected from the group or made from the group consisting of: phthalic acid; isophthalic acid; trimellitic acid; terephthalic acid; phthalic acid esters; phthalic acid anhydride; tetrahydrophthalic acid anhydride; pyromellitic dianhydride; tetrachlorophthalic acid anhydride; tetrabromophtalic acid anhydride; and a combination of each.

7. The polyol mixture of claim 1 , wherein the polyfunctional alcohol is about 30 to 50 weight % of the reaction product, wherein the aromatic polycarboxylic acid component is about 20 to 45 weight % of the reaction product, and the mixture is about 5 to 40 weight % of the reaction product.

8. The polyol mixture of claim 1 , wherein the average functionality is about 1.8 to 3 mg KOH/g.

9. The polyol mixture of claim 1 , wherein the average functionality is about 2 to 2.5 mg KOH/g.

10. The polyol mixture of claim 1 , wherein the OHV value is about 100 to 300 mg KOH/g.

11. The polyol mixture of claim 1 , wherein the OHV value is about 180 to 250 mg KOH/g.

12. The polyol mixture of claim 1 , wherein the reaction further comprises an oil selected from the group consisting of: a natural oil, a natural oil based product, and a combination thereof.

13. The polyol mixture of claim 12 , wherein the natural oil based product is selected from the group consisting of: oil from or derived from rapeseed, soya, coconut, sunflower, palm, tallow, tall oil fatty acid, and a combination thereof.

14. The polyol mixture of claim 1 , wherein the aromatic polyester polyol backbone is selected from the group consisting of an ester of an aromatic polyfunctional acid.

15. An aromatic polyesterpolyol, wherein the aromatic polyester polyol has an aromatic polyesterpolyol backbone, wherein the aromatic polyesterpolyol has a hydroxyl value (OHV) of about 30 to 700 mg KOH/g and an average functionality of about 1.5 to 8 mg KOH/g, wherein the aromatic polyester polyol is an esterification/transesterification reaction product of the reaction of:

a polyfunctional alcohol;

an aromatic polycarboxylic acid component; and

a mixture including: hydroxycaproic acid, adipic acid, glutaric acid, 5-hydroxyvaleric acid, 1,2-cyclohexanediol, oxo- and oxa-compounds, oligomeric esters of hydroxycaproic acid and esters of hydroxycaproic acid with adipic acid, and one or more of the following: formic acid, monocarboxylic acid, and diacarboxylic acid.

16. The aromatic polyesterpolyol of claim 15 , wherein the mixture includes: about 10 to 40 weight % adipic acid in the mixture, about 1 to 5 weight % glutaric acid in the mixture, about 5 to 15 weight % hydroxycaproic acid in the mixture, about 1 to 10 weight % of 5-hydroxyvaleric acid in the mixture, about 1 to 5 weight % of 1,2 cyclohexanediol in the mixture, less than 5 weight % of oxo- and oxa-compounds in the mixture, about 30 to 60 weight % of oligomeric esters of hydroxycaproic acid and esters of hydroxycaproic acid with adipic acid in the mixture, and less than 1 weight % of one or more of the following in the mixture: formic acid, monocarboxylic acid, and diacarboxylic acid.

Assignments (6)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 6, 2021
From: INV PERFORMANCE SURFACES, LLC; INVISTA TEXTILES (U.K.) LIMITED
To: STEPAN COMPANY
Reel/Frame 057109/0894 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 7, 2021
From: INVISTA NORTH AMERICA, LLC
To: INV PERFORMANCE SURFACES, LLC
Reel/Frame 054914/0854 →
CHANGE OF NAME Recorded Dec 15, 2020
From: INVISTA NORTH AMERICA S.A.R.L.
To: INVISTA NORTH AMERICA, LLC
Reel/Frame 054765/0645 →
RELEASE OF SECURITY INTEREST Recorded Nov 10, 2011
From: DEUTSCHE BANK AG NEW YORK BRANCH
To: INVISTA NORTH AMERICA S.A.R.L.
Reel/Frame 027211/0298 →
SECURITY AGREEMENT Recorded Aug 5, 2010
From: INVISTA NORTH AMERICA S.A.R.L.
To: DEUTSCHE BANK AG, NEW YORK BRANCH, AS COLLATERAL AGENT
Reel/Frame 024794/0102 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 1, 2010
From: GNEDIN, EUGEN; MCADAMS, CARINA ARAULLO
To: INVISTA NORTH AMERICA S.A R.L.
Reel/Frame 024469/0424 →