Abstract:
PROBLEM TO BE SOLVED: To provide a composite or a multi-layer composite with enhanced adhesion of a metal layer to a substrate.SOLUTION: The invention provides a multi-layer composite precursor 2 comprising: i. a substrate 4, wherein the substrate comprises 1. light emitting organic compound, 2. a first surface 8 and 3. a second surface 10, wherein the second surface 10 is superimposed by a transparent electrically conducting layer 12; and ii. a liquid phase 18 superimposing at least a part of the first surface 8 comprising a metal-organic compound, wherein the metal-organic compound comprises an organic moiety, wherein the organic moiety comprises a C=O group, and wherein the liquid phase 18 further comprises a first silicon compound, wherein the first silicon compound comprises at least one carbon atom and at least one nitrogen atom.
Abstract:
PROBLEM TO BE SOLVED: To provide a failure detection method of a parallel coil permanent magnet motor, and to provide a supporting system therefor.SOLUTION: A failure detection method of a parallel coil permanent magnet motor includes a step for driving a parallel coil motor based on a predetermined current command value, a step for detecting the current vector of the motor, a step for calculating a current compensation value for removing the reverse-phase component of the motor based on the current vector, a step for providing the current compensation value to a reverse-phase current control machine, a step for calculating the failure phase of a parallel coil motor and the degree of failure by using a failure model to which the output from the reverse-phase current control machine, and the induction flux variation of a specific slot of a specific phase of the parallel coil motor failed and other slot of the same phase as the specific phase are applied, and an application step for applying a current command value to which the failure phase and the degree of failure thus calculated are applied.
Abstract:
PROBLEM TO BE SOLVED: To provide a positive electrode material for a lithium secondary battery containing a lithium manganese fluorophosphate (LiMnPOF), and a method for manufacturing the same.SOLUTION: The method for manufacturing the positive electrode material for a lithium secondary battery comprises the steps of: (i) synthesizing a positive electrode material NaMnPOF by applying pretreatment to a mixture obtained by homogeneously mixing a sodium (Na) oxide or a precursor thereof, a manganese (Mn) oxide or a precursor thereof, a phosphorus (P) oxide or a precursor thereof, and a fluoride (F) or a precursor thereof by means of a ball mill, and firing the mixture; and (ii) synthesizing LiMnPOF by intercalating lithium into the positive electrode material synthesized in the previous step, by an ion exchange method.
Abstract:
PROBLEM TO BE SOLVED: To provide a double window system capable of shielding thermal energy from flowing into an indoor or flowing out to an outdoor through primary reflection of infrared ray using glass processed from normal glass by coating the same with an infrared reflection material and through secondary reflection of the remaining infrared ray not shielded through the primary reflection using low-E glass or glass coated with a thermochromic material.SOLUTION: The present invention is a double window system to shied infrared ray and comprises: a first glass member; a second glass member; and a space member provided in a gap between the first glass member and the second glass member to maintain the gap. A nanomaterial coating membrane for reflecting near infrared ray is formed on one surface of the first glass member and a thermochromic material coating membrane is formed on the one surface of the second glass member.
Abstract:
PROBLEM TO BE SOLVED: To provide a multipurpose anisotropy particle arrangement and manufacturing method thereof, with thinning, weight reduction and shortening achieved, and capable of coupling two electrodes with fine pitches by repetitive crimping. SOLUTION: The anisotropy particle arrangement 100 consists of an elastic polymer layer 120, and an elastic electrical conductor 110 or an elastic heat conductor 110 placed so as an upper part and a lower part to be exposed in the elastic polymer layer 120. The manufacturing method of the anisotropy particle arrangement 100 includes a step for preparing a single layer of the elastic electrical conductor 110 or the elastic heat conductor 110, and a step for forming the elastic polymer layer 120 by filling elastic polymer between single layers of the elastic electrical conductor 110 or the elastic heat conductor 110 so as the upper part and the lower part of the elastic conductor 110 or the elastic heat conductor 110 to be exposed. COPYRIGHT: (C)2011,JPO&INPIT