Abstract:
A method for making strontium-containing metal-oxide ceramic thin films from a precursor liquid by mixing a strontium neo-pentoxide dissolved in an amine solvent and at least one metal alkoxide dissolved in a solvent, said at least one metal alkoxide selected from the group consisting of alkoxides of calcium, barium, bismuth, cadmium, lead, titanium, tantalum, hafnium, tungsten, niobium, zirconium, yttrium, lanthanum, antimony, chromium and thallium, depositing a thin film of the precursor liquid on a substrate, and heating the thin film in the presence of oxygen at between 550 and 700° C.
Abstract:
A one-pack coating composition is disclosed. The composition comprises (A) an oligomer or polymer containing an acid anhydride group, a blocked hydroxyl group and an epoxy group as indispensable functional groups in the same or different molecules, (B) a heat-potential curing catalyst which comprises a complex of an organometallic compound and an electron-donating compound or an onium salt and which exhibits its activity upon heating, (C) an ultraviolet absorber comprising a triazine or oxalic anilide, and (D) a hindered amine light stabilizer having a piperidine ring of the following structure: wherein R represents R1—CO—, a C2 to C20 alkyl group or R1—O— (R1 being a C2 to C20 alkyl group), and R2, R3, R4 and R5 independently from each other represent a C1 to C3 alkyl group, or a phenolic antioxidant. A method for coating using this coating composition is also disclosed.
Abstract:
Silica-based refractories are impregnated with protective material that is more resistant towards attack by corrosive species. The protective material coats the surface of the refractory matrix and fills some of the cavity volume of its pores, crevices, surfaces imperfections and irregularities. The protective material is positioned by impregnating the refractory with a precursor which, under the input of energy, is converted into the corrosion resistant protective material.
Abstract:
A method (10) for coating a substrate including at least an elastomer substrate portion with a conductive coating is described. The method includes steps of (i) providing a substrate comprising elastomer material and (ii) coating (13) the substrate with an adhesion promoting layer. The layer comprises a thin layer of B stage heat curable epoxy. The method also includes steps of (iii) pre-curing (15) the adhesion-promoting layer, (iv) disposing (17) a conductive coating atop the layer and (v) post-curing (19) the adhesion-promoting layer.
Abstract:
An aqueous coating composition for coating concrete-like materials to prevent loss of water vapor during hardening. The aqueous coating composition comprises 5.0-45.0% by weight of a wax or wax-like material, 1.0-10.0% by weight of polyvinyl alcohol, 0-1.0% by weight of a biocide and the balance of water. Also disclosed is a method of coating a concrete-like material including the step of applying, to the surface of the concrete-like material a coating of the aqueous coating composition of the invention. Also disclosed is an article of manufacture which includes a concrete-like material having applied thereto a coating as described above. The aqueous coating composition surprisingly meets the relevant ASTM and other standards for concrete curing without employing any hazardous materials and/or volatile organic compounds.
Abstract:
A dry film coating composition for forming a coating suspension for film coating nutritional supplements, pharmaceutical tablets, and the like, comprising a dextrin and a detackifier.
Abstract:
A flat metal sealing gasket is made as follows: on an unhardened spring steel plate having an aperture and a bead surrounding the aperture, a sinterable powder is deposited along the bead in a desired shape and thickness. Thereafter a sufficiently high temperature is applied to the deposited sinterable powder to effect sintering or melting of the powder to provide a pressure-resistant overlay on the plate and to simultaneously effect a hardening of the plate.
Abstract:
A thermosetting plastic composition comprising thermosetting plastic resin with comminuted recycled glass powder as a filler. The composition may be up to 80% by weight glass powder. The recycled glass powder has non-uniform, rounded edges, is comminuted without the use of grinding compounds. A variety of thermosetting plastic resins may be used to form the composition. A method of protecting surfaces with a thermosetting plastic coating is also disclosed. A kit for producing a thermosetting plastic coating containing thermosetting plastic resin and comminuted recycled glass powder is also disclosed.
Abstract:
A method for preparing particulate materials useful in fabricating thin-film solar cells is disclosed. Particulate materials is prepared by the method include for example materials comprising copper and indium and/or gallium in the form of single-phase, mixed-metal oxide particulates; multi-phase, mixed-metal particulates comprising a metal oxide; and multinary metal particulates.
Abstract:
A method for coating moisture sensitive inorganic particles, such as phosphors, comprising mixing the inorganic particles which have a particle size of about 1 to 100 micrometers with nanometer sized coating particles, as of silica, and firing to soften or melt the nanometer sized particles, forming a moisture-impervious inorganic coating on the inorganic particles. The coated particles are washed to remove any uncoated particles and dried.