Yotsuya
Gouki Yotsuya, Shizuoka-Ken JP
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20120258332 | METHOD OF WELDING DISSIMILAR METAL MATERIALS AND WELDED BODY OF DISSIMILAR METAL MATERIALS - A method of welding dissimilar metal materials, wherein a high melting-point material and a low melting-point material which are dissimilar metal materials having melting points different from each other are positioned to a planned welding position, and a rotatable tool is pressed to and then inserted into the high melting-point material to thereby perform a friction-stir-welding between the high melting-point material and the low melting-point material to each other. The friction-stir-welding between the high melting-point material and the low melting-point material is performed by disposing an intervening piece made from a same material as the high melting-point material between the rotatable tool and the high melting-point material. | 10-11-2012 |
Kenji Yotsuya, Kyoto-Shi JP
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20130335375 | CURVED TOUCH PANEL, METHOD FOR FABRICATING THE SAME, AND DISPLAY SYSTEM WITH THE SAME - A method for fabricating a capacitive curved touch panel is provided for solving the problems of the conventional methods, i.e., unsuitableness of the methods for mass production and fabricating large touch panels and touch panels of complicated curved surface shapes. The method includes the steps of (a) preparing a patterned plate | 12-19-2013 |
Koji Yotsuya, Numazu-Shi JP
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20140336896 | BRAKE CONTROL APPARATUS - An appropriate deceleration is achieved. A brake control apparatus is a brake control apparatus which performs a brake assist control for assisting a brake operation by a driver of a vehicle, the brake control apparatus is provided with: a calculating device which calculates a contact possibility of the vehicle contacting the obstacle; and a changing device which changes, on the basis of the contact possibility, a decreasing rate of a deceleration of the vehicle caused by the brake assist control. | 11-13-2014 |
Shinichi Yotsuya, Chino-Shi JP
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20090146557 | LIGHT-EMITTING DEVICE, ELECTRONIC APPARATUS, AND FILM-FORMING METHOD - A light-emitting device includes a substrate, and a light-emitting element including a lower electrode, a light-emitting function layer, and an upper electrode that are formed on the substrate in that order. At least one auxiliary electrode in a strip shape extends in a first direction on and in contact with the upper electrode. The auxiliary electrode has a cross section taken along the direction intersecting the first direction, having a shape including a tapered portion. The light-emitting device also includes a barrier layer covering the auxiliary electrode and the upper electrode. The barrier layer prevents water and oxygen from penetrating into the light-emitting element. | 06-11-2009 |
20120236401 | SCREEN AND METHOD FOR PRODUCING FORMING MOLD - A screen has an incidence plane that reflects a projected light, and, on the incidence plane, a plurality of lens elements are arranged. The plurality of lens elements have quarter-spherical surfaces, and the spherical surfaces are formed so as to face a light source of the projected light. In a portion of the spherical surface, the portion onto which the projected light is projected, a reflecting section that reflects the projected light is formed. This makes it possible to increase the area of the reflecting sections in the incidence plane and thereby increase the brightness of the screen. | 09-20-2012 |
Shuichi Yotsuya, Shiga JP
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20120059039 | ANTI-SHOCK AGENT COMPRISING DIAMINOTRIFLUOROMETHYLPYRIDINE DERIVATIVE - Septic shock is known to lead to, at the end stage, systematic inflammatory reaction syndrome and multiple organ failure (MOF) and cause the patients' death. In both diseases, the patient dies finally of MOF, and the infiltration by inflammatory cells plays a key role for MOF. Thus, development of therapeutic agents for septic shock by suppressing the infiltration by inflammatory cells has been desired. | 03-08-2012 |
Tadahiro Yotsuya, Sagamihara-Shi JP
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20100010248 | IMIDE COMPLEX, METHOD FOR PRODUCING THE SAME, METAL-CONTAINING THIN FILM AND METHOD FOR PRODUCING THE SAME - Objects of the present invention are to provide a novel niobium or tantalum complex having good vapor pressure and becoming a raw material for producing a niobium- or tantalum-containing thin film by a method such as CVD method, ALD method or the like, a method for producing the same, a metal-containing thin film using the same, and a method for producing the same. The present invention relates to producing an imide complex represented by the general formula (1) by, for example, the reaction between M | 01-14-2010 |
20110087039 | IMIDE COMPLEX, METHOD FOR PRODUCING THE SAME, METAL-CONTAINING THIN FILM AND METHOD FOR PRODUCING THE SAME - Objects of the present invention are to provide a novel niobium or tantalum complex having good vapor pressure and becoming a raw material for producing a niobium- or tantalum-containing thin film by a method such as CVD method, ALD method or the like, a method for producing the same, a metal-containing thin film using the same, and a method for producing the same. The present invention relates to producing an imide complex represented by the general formula (1) by, for example, the reaction between M | 04-14-2011 |
Tadahiro Yotsuya, Kanagawa JP
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20120029220 | TITANIUM COMPLEX, PROCESSES FOR PRODUCING THE SAME, TITANIUM-CONTAINING THIN FILM, AND PROCESS FOR PRODUCING THE SAME - A subject for the invention is to provide novel titanium complexes which have a high vapor pressure and high thermal stability and serve as an excellent material for producing a titanium-containing thin film by a technique such as the CVD method or ALD method and to further provide processes for producing these complexes, titanium-containing thin films produced from the complexes, and a process for producing the thin films. The invention relates to producing a titanium complex represented by general formula (1): | 02-02-2012 |
Taihei Yotsuya, Tokyo JP
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20120037303 | METHOD FOR ATTACHING A TEMPORARY MATERIAL TO A PIPING MODULE AND METHOD FOR CONVEYING A PIPING MODULE - To ensure required adhesion even when a pipe of a piping module collides with a temporary material during transport and achieve easier dismantling, the following measure is taken: the temporary material is fixed on a support rack to prevent the piping module placed on the support rack from largely displaced during conveyance and after the conveyance of the piping module, the temporary material is removed from the support rack. In this method, the following measures are taken: at the step of fixing the temporary material to the support rack, the temporary material is bonded to the support rack with the piping module set therein using adhesive; and at the step of removing the temporary material from the support rack after the conveyance of the piping module, the temporary material bonded to the support rack with the adhesive is peeled off from the support rack with heat applied thereto. | 02-16-2012 |
20120040122 | PIPE MODULE - A temporary part is fixed to a base by using an adhesive layer to which fillers are mixed at a predetermined density. When the temporary part is heated, heat is applied to the fillers and the adhesive layer. At a temperature equal to or higher than the glass-transition temperature of the adhesive agent, the heated adhesive layer is thermally contracted so as to release remaining stress, and on the other hand, the heated fillers are thermally expanded. In this manner, the peel-off strength between the adhesive layer and the base (or the temporary part) is reduced, and the disassembly is facilitated. | 02-16-2012 |
Tsutomu Yotsuya, Osaka JP
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20090072141 | Neutron Detector and Neutron Imaging Sensor - A neutron detector includes a plurality of neutron detecting element sections, each of the neutron detecting element sections having; a superconducting element including a substrate having at least one of surfaces thereof formed of a dielectric material, a strip line of the superconducting material formed on the surface and electrodes formed at opposed ends of the strip line, resistance determining sections for determining generation of heat resulting from a nuclear reaction between a superconducting element in the strip line and neutrons, through detection of change in a resistance value of said strip line, heat dissipation setting sections provided on a back side portion of the substrate opposite to the surface having the strip line formed thereon, the heat dissipation setting sections setting dissipation characteristics of the heat resulting from the nuclear reaction, and the heat dissipation characteristics being differentiated from each other between/among the neutron detecting element sections. | 03-19-2009 |