Abstract:
The invention relates to the use of a melt-in-place acrylic binder that is applied to a substrate in the form of a powder, followed by a fusing together of the binder powder by heat or radiation. Particulate filler is present either on the substrate, mixed with the binder powder, or admixed into the binder powder prior to fusion. The fused binder helps adhere the particulate fillers to the substrate, and may or may not cover the particulate filler.
Abstract:
A method of manufacturing an optical data storage medium, comprising at least one substrate (11) and a plurality of layers deposited on the substrate (11) is described. The medium includes at least one of a transparent spacer layer and transparent cover layer (12). The layer (12) is provided by applying a liquid onto the rotating substrate (11) and rotating the substrate (11) further in order to spread out the liquid into a layer substantially uniformly between an inner radius ri and an outer radius ro, and solidifying the liquid layer (12) by means of exposure to UV radiation. After applying the liquid onto the rotating substrate the liquid layer (12) is heated by heating means (14) in such a way that the temperature rise of the liquid layer (12) at ri has a value dTri, while the temperature rise of the liquid layer (12) between ri and ro gradually increases, and the temperature rise of the liquid layer (12) at ro has a value dTro>dTri. In this way the spacer layer or cover layer has a variation in thickness smaller than +/−1 μm, measured over the information storage area. Further a medium manufactured using said method and an apparatus for performing the method are described.
Abstract:
A method of powder coating application in which two thermo set powder resins can be applied to conductive substrates, non-conductive substrates or combinations of both within a single powder-coating booth and then subsequently co-cured. The substrates are cleaned, pre-treated if metal, dried, pre-heated and the first and second application of thermo set powder is done and then the powders are co-cured with heat.
Abstract:
A method for curing a paint coating applied to a workpiece includes applying radiant light energy to cure the paint coating on surfaces of the workpiece within a line of sight of a radiant light energy source, and applying ambient air to the workpiece to cure the paint coating on surfaces of the workpiece not within the line of sight of the radiant light energy source.
Abstract:
A localised extraction system (2) which allows a paint finishing process to be carried out without the need for a traditional spraybooth. The system (2) comprising a frame (36) with means to attach it about a portion of a surface which requires spraying and/or curing and/or drying, the frame (36) forming a localised containment wall thereabout, the frame (36) having an extraction means which draws air from the central aperture (38) of the frame and at the same time draws any paint overspray out of the aperture (38) for safe disposal. The frame (36) may comprise deflection means to retain overspray within the confines of the frame (36) and an optional curing unit which fits into the frames opening to cure the painted surface with the extraction operating at the same time to draw paint fumes emitted during drying. The extraction system, may additionally comprise a drying unit having means to supply a stream of forced air into the frame to facilitate drying.
Abstract:
To provide paint films which have excellent heat-radiating properties and with which many colors with light colors in the main can be obtained. (Means of Resolution). A paint film which has excellent heat-radiating properties which comprises an undercoat paint film layer which contains from 1 to 20 mass % with respect to the total solid fraction of the paint film of carbon black and a top-coat paint film layer which contains 1 to 40 mass % with respect to the total solid fraction of the paint film of a pearl pigment and which does not contain aluminum powder and the paint film thickness of the top-coat paint film layer is from 11 to 50 μm which can be formed with a method of forming paint films which have excellent heat-radiating properties wherein an undercoat paint which contains from 1 to 20 mass % with respect to the total solid fraction of the paint film of carbon black is applied and hardened and an undercoat paint film layer is formed and then a top-coat paint which contains 1 to 40 mass % with respect to the total solid fraction of the paint film of a pearl pigment and which does not contain aluminum powder is applied over said undercoat paint film layer and hardened and a top-coat paint film layer of which the paint film thickness is from 11 to 50 μm is formed.
Abstract:
Method of coating a web-form carrier material with an aqueously dispersed composition, the composition being applied to the carrier material with a suitable applicator with a coatweight of at least 10 g/m2 (dry) and the subsequent drying of the coated carrier material taking place in a suspension drying unit.
Abstract translation:用挥发性分散的组合物涂布网状载体材料的方法,该组合物用涂覆重量为至少10g / m 2(干燥)的适当涂布器施加到载体材料上,随后干燥涂覆的载体材料 放置在悬浮干燥单元中。
Abstract:
Methods and compositions for coating a substrate with at least a basecoat layer and clearcoat layer allow quick repairs to damaged vehicle panels under ambient temperatures and without requirement of actinic or thermal radiation to cure the layers. At least one basecoat and one clearcoat layer may be applied to a substrate and the clearcoat layer may be buffed with less than 30 minutes allocated to curing the basecoat and clearcoat layers, under ambient conditions, prior to buffing. Methods and compositions are also taught for coating a substrate with at least a primer layer, a basecoat layer, and a clearcoat layer, in which the clearcoat layer may be buffed with less than about 45 minutes allocated to curing the primer, basecoat and clearcoat layers, under ambient conditions, prior to buffing.
Abstract:
Apparatus and method for curing coating on articles using multi wavelength IR and UV energy sources, which can be pulsed in a system for analyzing and producing in-line programmed production of the finished product.
Abstract:
The invention is directed to a method for refinishing vehicles using infrared technology for drying and curing the paint coating. The method comprises the steps: A) applying a layer of a pigmented coating composition over a vehicle body or vehicle body part, subsequently applying a layer of clear coating composition, or applying alternatively a layer of pigmented top coating composition over the vehicle body or vehicle body part and B) curing the coating layers applied in step A), directly after completion of the application step, without interposing a final evaporation phase, by exposing to infrared radiation using a short-wave infrared radiator, a radiator distance in the range of 20 to 60 cm being adjusted and the quotient of radiator power in Kilowatt and radiator distance in centimeter ranges from 0.07 to 0.15.