Abstract:
A powder slurry coating composition for coating a container, comprising between 20 and 50 percent by weight of a powder coating composition and water in an amount between 50 and 80 percent by weight. The powder coating comprises at least one epoxy resin having an epoxide equivalent weight of from 300 to 5500, at least one hardener having more than one phenolic hydroxyl group per molecule and a hydroxyl equivalent weight, based on the phenolic OH groups of from 100 to 500; and a catalyst. The mean particle size of the powder coating particles in the powder slurry is between 4.0 and 7.5 mu m. A method for coating the interior of a container and the coated article are also described.
Abstract:
A portable holding and mixing tank (10) is provided with a valving assembly (60), the activation of which responsively enables substantial simultaneous flow of each dissimilar liquid contained within the respective holding compartments to a manifold assembly. The substantial simultaneous flow of each dissimilar liquid to the manifold assembly thereby minimizes (if not eliminates entirely) the possibility that incorrect mixing ratios of the dissimilar chemicals will occur. The assembly mixes the liquids and discharges the mixed liquid through a meter to a transfer conduit. As such, the mixed liquids may be transferred to a storage tank (for example, a storage tank associated with agricultural spraying equipment).
Abstract:
Provided are compositions and methods of improving a plant growth factor. The compositions and methods contain combinations of aminoethoxyvinylglycine and mepiquat chloride. The compositions provide an improvement in a plant growth factor, such as an increase in yield in cotton plant.
Abstract:
The present invention relates to coating compositions comprising (A) at least one binder containing hydroxyl groups, (B) at least one crosslinking agent and (C) at least one aromatic mono- and/or polycarboxylic acid and/or at least anhydride of an aromatic mono- and/or polycarboxylic acid.
Abstract:
Disclosed herein is a composition for barrier layers for use in insulative cabinet wall structures, particularly those used in appliances such as refrigerators and dishwashers. The compositions of the barrier layer is resistant to the action of polyurethane foam blowing agents, and has (i) an effective amount of a modified polyolefin, which is most preferably, a polyethylene modified with a compound selected from the group consisting of maleic anhydride, maleic acid, maleic anhydride derivatives, maleic acid derivatives, and mixtures thereof; and (ii) an effective amount of a rubber. Optionally, and most preferably, the barrier layer composition may further contain (iii) an effective amount of a polyolefin selected from the group consisting of polyethylene, polypropylene, polybutylene, and copolymers thereof. The invention further provides thermoformable composites incorporating the above-described barrier layer as well as insulative cabinet wall structures incorporating the thermoformable composite. Finally, the invention further provides a method of making a thermoformable composite incorporating the barrier layer of the invention.
Abstract:
The present invention is directed to an electrocoating composition and process for preparation thereof. The electrocoating composition comprises a polycarbonate modified epoxy resin comprising the reaction product of i) a polyepoxide compound; ii) a polycarbonate diol; iii) optionally a compound having a functional group capable of reacting with component (i); and iv) an amine having at least one primary or one secondary amino group.
Abstract:
In a process for crosslinking a polymer, a beta -dicarbonyl functionality is present as a reactive diluent and/or as a reactive solvent and/or on a crosslinking entity. The beta -difunctional compound reacts with formaldehyde which is either released during the crosslinking reaction (or otherwise present) whereby less formaldehyde is released than would otherwise be released. The formaldehyde which reacts with the beta -dicarbonyl compound is either incorporated into the crosslinked polymer network or released in the form of a reaction product which is not as harmful to the environment as the unreacted formaldehyde. The process enables the reduction of formaldehyde release during crosslinking to levels otherwise unobtainable. Furthermore, the process enables a reduction in the amount of organic solvent utilized.
Abstract:
A two component composition suitable for coating a substrate comprises at least one crosslinker having a functionality thereon which is reactive with a functionality on at least one film forming polymer present in a separate component of the composition. The crosslinker comprises at least one member selected from the group consisting of: (1) an isocyanurate of isophorone diisocyanate; (2) a derivative of an isocyanurate of isophorone diisocyanate; (3) a biuret of isophorone diisocyanate; and (4) a derivative of a biuret of isophorone diisocyanate. The composition preferably comprises a blend of the crosslinker with a second crosslinker, wherein the second crosslinker is at least one member selected from the group consisting of: (1) an isocyanurate of hexamethylene diisocyanate; (2) a derivative of an isocyanurate of hexamethylene diisocyanate; (3) a biuret of hexamethylene diisocyanate; and (4) a derivative of a biuret of hexamethylene diisocyanate. The invention also pertains to a process for coating a substrate using the composition, as well as to a cured coating formed by the process of the present invention.
Abstract:
A coating composition for a clearcoat in a multilayer coating system for metallic substrates is described, comprising (a) a resin with epoxy and hydroxy functionality, (b) a resin with anhydride functionality, (c) an aminoplast resin and (d) additives selected from the group consisting of solvents, catalysts, flow agents, hindered amine light stabilizers, ultraviolet absorbers. The clearcoat exhibits superior solvent resistance, acid resistance and hardness.
Abstract:
The present invention is directed to a process for the preparation of amine modified copolymers as a pigment dispersant for cathodic electrocoating compositions comprising the steps of a) polymerizing i) an ethylenically unsaturated monomer containing an isocyanate group with ii) other ethylenically unsaturated monomers having no functional group capable of undergoing a reaction with said isocyanate group to form a copolymer with isocyanate groups and b) reacting stepwise or simultaneously said isocyanate groups with iii) a compound selected from the group consisting of a polyalkyleneglycol monoalkyl ether, an amino-terminated polyalkylene glycol monoalkyl ether and mixtures thereof and iv) a compound containing at least a tertiary amine group and one functional group capable of undergoing a reaction with said isocyanate group and v) optionally, another compound having one functional group capable of undergoing a reaction with said isocyanate group.