Abstract:
An aqueous resin dispersion wherein a polymer (C) obtained by bonding a polyolefin (A) to a polyether resin (B) is dispersed in water; and the polyether resin (B) contains a polyether resin (B1) having an HLB of less than 8 and a polyether resin (B2) having an HLB of 8 to 20 according to calculation by the Griffin method.
Abstract:
The invention relates to a method for producing a covering layer for elastic laminate comprising a) impregnating a carrier fabric, b) applying a surface coating comprising a crosslinker and a prepolymer that can be crosslinked via reactive end groups, c) crosslinking the crosslinkable prepolymer, and d) drying the elastic laminate covering layer. The papers obtainable in this manner are suitable for producing a laminate that, with the elastic outer face thereof, has a pleasant and appealing feel underfoot and good haptics.
Abstract:
The present invention provides for method for forming a superhydrophobic, superoleophobic or superamphiphobic layer and imparting said property on a surface, comprising the steps of: a. preparing a liquid coating composition comprising a solvent and dispersed silicone nanoparticles, b. optionally priming the surface to form a primed surface on which a superhydrophobic, superoleophobic or superamphiphobic layer is to be formed, c. applying a layer of the liquid coating composition on the surface or primed surface on which the superhydrophobic, superoleophobic or superamphiphobic layer is to be formed, d. evaporating the solvent from the liquid coating composition to form a superhydrophobic, superoleophobic or superamphiphobic layer and impart said property on the surface or primed surface, wherein the dispersed silicone nanoparticles are formed by polymerization of at least one compound of formula I in an aprotic solvent comprising 5 to 500 ppm of water, RaSi(R1)n(X1)3-n (I) wherein Ra is a straight-chain or branched C(1-24) alkyl or alkenyl group, an aromatic group which is linked by a single covalent bond or linked by a straight-chain or branched alkylene unit having 1 to 8 carbon atoms, to the Si-atom, R1 a straight chain or a branched hydrocarbon radical having 1 to 6 carbon atoms, X1 is a hydrolysable group, which is one or more of a halogen or an alkoxy group, and n is 0 or 1, and preferably is 0.
Abstract:
A method for a structure 120 having a countersunk fastener head 112 includes forcing an aliphatic urethane surfacer 430 into a void 124 around the fastener head. The method is applicable to an aircraft 200 comprising a composite skin 420 and a plurality of fasteners 410 having heads 412 countersunk in an exterior surface of the skin 420.
Abstract:
A method of manufacturing an electrowetting device including dispensing a fluid from a channel and onto a surface of a support plate. The channel is formed by a part of the surface of the support plate, an interface between the fluid and another fluid, and a further surface which is for example a surface of a roller.
Abstract:
UV curing hydrophilic coating compositions and methods to make and use the compositions are disclosed. The compositions include about 40 wt. percent to about 95 wt. percent of a vinyl ether compound, an epoxide compound, a compound with vinyl ether and epoxy functional groups, or any combination thereof; about 0.1 wt. percent to about 40 wt. percent of at least one polar diluent; about 40 wt. percent or less of at least one non-polar diluent; and about 0.5 wt. percent to about 12 wt. percent of at least one photoinitiator.
Abstract:
Provided is a resin-coated metal sheet for a container with which it is possible to achieve excellent release property and to stably satisfy various properties. The resin-coated metal sheet has a resin layer (A) having a multi-layer structure containing polyester as a main component on an inner-surface side of the container when the metal sheet is formed into the container. 1) The resin layer (A) contains terephthalic acid in an amount of 85 mol% or more, 2) the resin layer (A) has at least two layers including an uppermost resin layer (a1) which comes into contact with contents and contains wax compounds in an amount of 0.10 mass% or more and 2.0 mass% or less with respect to the uppermost resin layer (a1), 3) with respect to a Raman band of 1615 cm -1 determined by performing Raman spectroscopy on the uppermost resin layer (a1), the maximum value of the peak intensity ratio (I MD /I ND ) of peak intensity in a longitudinal direction to peak intensity in a thickness direction is 1.0 or more and 4.0 or less, 4) a thickness of the uppermost resin layer (a1) is 0.5 µm or more and 10 µm or less, and 5) a thickness of the resin layer (A) excluding the thickness of the uppermost resin layer (a1) is 5 µm or more and 20 µm or less.
Abstract:
A process for producing a corrugated electrode for use in an electroactive polymer cartridge is disclosed. A laminated web comprising a support sheet laminated to a dielectric elastomer film is positioned. The support sheet defines areas exposing portions of the dielectric elastomer film. A force is applied to the positioned laminated web to stretch the laminated support sheet-dielectric elastomer film web in a direction that is orthogonal to a plane defined by the web. An electrically conductive material is applied to the laminated support sheet-dielectric elastomer film web while the laminated support sheet-dielectric elastomer film web is in a stretched state. The laminated support sheet-dielectric elastomer film web is relaxed to form the corrugated electrode on the dielectric elastomer film portion of the web.