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Paul Nedwick

Bio: Paul Nedwick is an academic researcher from Rohm and Haas. The author has contributed to research in topics: Monomer & Molar mass distribution. The author has an hindex of 3, co-authored 6 publications receiving 232 citations.

Papers
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Patent
02 Oct 1998
TL;DR: In this paper, a fiberglass binder which contains a polycarboxy polymer and a polyol, with a pH of the binder being no greater than 3.5, is presented.
Abstract: Provided is a fiberglass binder which contains a polycarboxy polymer and a polyol, with a pH of the binder being no greater than 3.5. It is further preferred that the polycarboxy polymer has a molecular weight of less than 10,000, and more preferably about 5000 or less. The binder also preferably includes a catalyst which is an alkali metal salt of a phosphorus polyol is preferably triethanolamine. The binder also preferably includes a catalyst which is an alkali metal salt of a phosphorus-containing organic acid. The resultant binder, particularly when used in preparing fiberglass products, provides minimal processing difficulties and a product with excellent recovery and rigidity.

153 citations

Patent
05 Jun 1996
TL;DR: In this paper, a process for preparing binder-coated fiberglass products employs as a binder aqueous polymer systems comprising a nitrogenous formaldehyde resin such as a urea-extended alkaline phenol/formaldehyde resole together with an acidic polyacrylate which cocure to form a thermoset polymer while synergistically reducing ammonia emissions.
Abstract: A process for preparing binder-coated fiberglass products employs as a binder aqueous polymer systems comprising a nitrogenous formaldehyde resin such as a urea-extended alkaline phenol/formaldehyde resole together with an acidic polyacrylate which cocure to form a thermoset polymer while synergistically reducing ammonia emissions which normally occur during cure of the nitrogenous formaldehyde resin. The polymer system may be used in applications other than fiberglass where reduced emissions are desired.

52 citations

Patent
13 Jun 1997
TL;DR: In this paper, a method for flexibilizing a glass fiber nonwoven bound with a cured urea formaldehyde resin binder is provided in which the binder includes a cured Urea Formaldehyde resin and 0.5-5% by weight, based on the weight of the ureaformaldehyde resin, of a water-soluble polymer comprising 40-100% based on polymer weight, the polymer having a weight average molecular weight from 100,000 to 2,000,000.
Abstract: A method for flexibilizing a glass fiber nonwoven bound with a cured urea formaldehyde resin binder is provided in which the binder includes a cured urea formaldehyde resin and 0.5-5% by weight, based on the weight of the urea formaldehyde resin, of a water-soluble polymer comprising 40-100% by weight, based on polymer weight, of a polymerized ethylenically unsaturated carboxylic acid monomer, the polymer having a weight average molecular weight from 100,000 to 2,000,000.

25 citations

Patent
02 Mar 2016
TL;DR: In this article, a method for dispersing a first monomer mixture comprising at least one least monomer, the first mixture having a total glass transition temperature (Tg) in the range of from -10°C to -65°C with a surfactant and an initiator in an aqueous medium, was described.
Abstract: Disclosed is a method comprising: a) dispersing a first monomer mixture comprising least one least monomer, the first monomer mixture having a total glass transition temperature (Tg) in the range of from -10°C to -65°C with a surfactant and an initiator in an aqueous medium; b) when the first monomer mixture is completely dispersed, adding a second monomer mixture comprising at least one monomer, the second monomer mixture having a Tg at least 20°C greater than the Tg of the first monomer mixture, to the aqueous medium; c) when the second monomer mixture is completely dispersed, adding a third monomer mixture comprising at least one monomer, the third monomer mixture having a Tg in the range of from -25°C to 50°C; and d) forming a polymer with the first, second, and third monomer mixtures. Also disclosed is a pressure sensitive adhesive comprising the polymer formed by this method.

1 citations


Cited by
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Patent
26 Jul 2006
TL;DR: In this paper, a curable aqueous composition was proposed, comprising a carbohydrate, a crosslinking agent, and an amine base, with a pH adjusted by the base.
Abstract: A curable aqueous composition is disclosed comprising a carbohydrate, a crosslinking agent, and an amine base, wherein the curable aqueous composition has a pH adjusted by the amine base. Further disclosed is a method of forming a curable aqueous solution.

167 citations

Patent
02 Jan 2002
TL;DR: In this article, a fiberglass binder comprising a polycarboxy polymer and a polyol was proposed, and the ratio of equivalents of hydroxyl groups to carboxy groups was obtained in the range from about 0.6/1 to 0.8/1.
Abstract: Provided is a novel fiberglass binder comprising a polycarboxy polymer and a polyol. The amount of polycarboxy polymer and polyol contained in the binder is such that the ratio of equivalents of hydroxyl groups to carboxy groups is preferably in the range from from about 0.6/1 to 0.8/1. It is further preferred that the molecular weight of the polycarboxy polymer is less than 10,000, and more preferably less than 5000.

102 citations

Patent
23 Mar 2004
TL;DR: In this article, a polycarboxy binder composition that contains a dextrin as a co-binder is provided, and a prebinder composition is formed by admixing the poly carboxy polymer, the cross-linking agent, and optionally, the catalyst, in a mixing device.
Abstract: A polycarboxy binder composition that contains a dextrin as a co-binder is provided. The dextrin co-binder may be a dextrin, a modified dextrin, a maltodextrin, or combinations thereof. The dextrin may be chemically modified. A pre-binder composition is formed that contains a polycarboxy polymer, a crosslinking agent, and optionally a catalyst. The polycarboxy polymer may be a homopolymer or copolymer prepared from unsaturated carboxylic acids and may be modified to contain one or more vinyl compounds. The crosslinking agent may be a polyol that contains at least two hydroxyl groups. The pre-binder composition may be formed by admixing the polycarboxy polymer, the crosslinking agent, and optionally, the catalyst, in a mixing device. Dextrin may be added to the pre-binder composition in an amount of from 10-75% of the total binder composition. The dextrin binder composition may have a ratio of from approximately 90:10 to 25:75 pre-binder:dextrin co-binder.

84 citations

Patent
08 Oct 2010
TL;DR: In this article, an aqueous binder composition is provided that includes a carbohydrate and a crosslinking agent, which is used in the formation of insulation materials and nonwoven chopped strand mats.
Abstract: An aqueous binder composition is provided that includes a carbohydrate and a crosslinking agent. In exemplary embodiments, the carbohydrate-based binder composition may also include a catalyst, a coupling agent, a process aid, a crosslinking density enhancer, an extender, a moisture resistant agent, a dedusting oil, a colorant, a corrosion inhibitor, a surfactant, a pH adjuster, and combinations thereof. The carbohydrate may be natural in origin and derived from renewable resources. Additionally, the carbohydrate polymer may have a dextrose equivalent (DE) number from 2 to 20. In at least one exemplary embodiment, the carbohydrate is a water-soluble polysaccharide such as dextrin or maltodextrin and the crosslinking agent is citric acid. Advantageously, the carbohydrates have a low viscosity and cure at moderate temperatures. The environmentally friendly, formaldehyde-free binder may be used in the formation of insulation materials and non-woven chopped strand mats. A method of making fibrous insulation products is also provided.

83 citations

Patent
02 May 2006
TL;DR: A formaldehyde-free curable aqueous composition containing polyvinyl alcohol, a multi-functional crosslinking agent, and, optionally, a catalyst was used as a binder for non-woven products such as fiberglass insulation.
Abstract: A formaldehyde-free curable aqueous composition containing polyvinyl alcohol, a multi- functional crosslinking agent, and, optionally, a catalyst. The composition may be used as a binder for non-woven products such as fiberglass insulation. The non-woven products are formed by contacting the formaldehyde-free curable aqueous composition with fibrous components and the mixture is cured to form a rigid thermoset polymer providing excellent strength and water resistance of the cured nonwoven product.

73 citations