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    • 1. 发明专利
    • Temporary heat insulation storage
    • 临时热绝缘储存
    • JP2009155890A
    • 2009-07-16
    • JP2007334829
    • 2007-12-26
    • Kazuaki Fukushima一明 福島
    • FUKUSHIMA KAZUAKI
    • E04H1/12E04H15/02F25D23/06
    • PROBLEM TO BE SOLVED: To provide a temporary heat insulation storage particularly usable in the outdoors which facilitates the control of temperatures under constant conditions irrespective of weather, and enables the efficient control of temperatures of a heat insulation section when an air conditioner is used.
      SOLUTION: The temporary heat insulation storage 10 has: a skeleton 20; the heat insulation section 30 which has a ceiling 32A and sidewalls 32B formed of heat insulation panels 32, and has an entrance 34 formed in the sidewall 32B; a holding section 60 which is arranged in the heat insulation section 30 and allows the heat insulation section 30 to be held by the skeleton 20; and a sheathing body 40 which sheathes external surfaces of the skeleton 20.
      COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:为了提供特别可用于户外的临时隔热储存器,其有利于在恒定条件下控制温度,而不管天气如何,并且当空调器为空调器时,能够有效地控制隔热部件的温度 用过的。

      解决方案:临时绝热储存器10具有:骨架20; 绝热部分30具有顶盖32A和由隔热板32形成的侧壁32B,并且具有形成在侧壁32B中的入口34; 保持部60,其设置在隔热部30中,并且能够使骨架20保持隔热部30; 以及护套体40,其覆盖骨架20的外表面。版权所有(C)2009,JPO&INPIT

    • 2. 发明专利
    • Simple tent device
    • 简单的帐篷装置
    • JP2008308942A
    • 2008-12-25
    • JP2007159812
    • 2007-06-18
    • Kazuaki FukushimaHayashi Nagamasa永昌 林一明 福島
    • FUKUSHIMA KAZUAKILIN YUNG CHANG
    • E04H15/10A01G5/06E04H15/44F24F13/02F24F13/06
    • PROBLEM TO BE SOLVED: To provide a simple tent device, which is excellent in strength in spite of simple structure, and is capable of uniformly supplying temperature regulating air in the tent.
      SOLUTION: In the simple tent device 10, a frame structure 12 is covered with tent material 48 having heat insulation performance. A temperature regulating machine 32 is installed at a center of the floor, and a cylindrical support 34 is erected over the temperature regulating machine 32 to be connected to a blow out port of the temperature regulating machine 32, with an upper end closed. The top of the support 34 is fixed to an inner top part of a roof frame assembly 20, and a blow fan 42 is provided in the support 34. At an upper part of the support 34, a blow out port 46 is provided to blow out temperature regulating air temperature-regulated by the temperature regulating machine 32 by means of the blow fan 42 in all the directions inside the tent.
      COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:提供一种简单的帐篷装置,其结构简单,强度优良,能够在帐篷内均匀地供应调温空气。 解决方案:在简单帐篷装置10中,框架结构12被具有绝热性能的帐篷材料48覆盖。 温度调节机32安装在地板的中心,圆筒形支架34竖立在温度调节机32上,与温度调节机32的吹出口连接,上端封闭。 支撑件34的顶部固定到车顶框架组件20的内部顶部,并且吹风扇42设置在支撑件34中。在支撑件34的上部设有吹出口46以吹动 通过吹风扇42在帐篷内的所有方向上温度调节由温度调节机32调节的温度。 版权所有(C)2009,JPO&INPIT
    • 3. 发明专利
    • Heat insulating movable partition
    • 热绝缘可移动隔离
    • JP2008174930A
    • 2008-07-31
    • JP2007007770
    • 2007-01-17
    • Kazuaki Fukushima一明 福島
    • FUKUSHIMA KAZUAKI
    • E04B2/74
    • PROBLEM TO BE SOLVED: To provide a movable partition enabling easy working for forming a heat insulating movable partition by continuously arranging heat insulating sheets and having enhanced heat insulating property. SOLUTION: In this heat insulating movable partition having a foldable sheet 11 formed by foldably connecting the side edge of a heat insulating sheet 12 formed in a band shape by using a connection rail 40, a locking part 120 locked to the connection rail 40 is formed at the side edge of the heat insulating rail 12. A locking groove 40d in which a slit opening 40b continuous in the longitudinal direction of a rail is formed is formed in the connection rail 40. The locking parts 120 of the heat insulating sheets 12 adjacent to each other are so attached to the locking groove 40d as to be loosely inserted in the longitudinal direction of the locking groove 40d and to be locked in the direction opposed to the connection rail 40. Consequently, the foldable sheet 11 continuously arranging the heat insulating sheets 12 is formed. COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:提供一种能够通过连续布置绝热片并具有增强的隔热性而容易地加工用于形成隔热可移动隔板的活动隔板。 解决方案:在具有通过使用连接导轨40可折叠地连接形成为带状的隔热片12的侧边缘而形成的可折叠片11的隔热可动隔板中,锁定部分120锁定在连接轨道 40形成在绝热轨道12的侧边缘处。形成有在轨道的纵向方向上连续的狭缝开口40b的锁定槽40d。连接轨道40中的锁定部分120 彼此相邻的片材12被附接到锁定槽40d,以松动地插入锁定槽40d的纵向方向上并且被锁定在与连接轨道40相对的方向上。因此,可折叠片材11连续地布置 形成隔热片12。 版权所有(C)2008,JPO&INPIT
    • 4. 发明专利
    • Sheet shutter for parking lot
    • 停车场用的切纸机
    • JP2009174150A
    • 2009-08-06
    • JP2008012171
    • 2008-01-23
    • Kazuaki Fukushima一明 福島
    • FUKUSHIMA KAZUAKI
    • E06B9/13
    • PROBLEM TO BE SOLVED: To provide a sheet shutter for a parking lot which enables entrance and exist in/from the parking lot without the performance of cumbersome operations such as the opening and lift of the sheet shutter even in a shutter-lowered state.
      SOLUTION: This sheet shutter includes: a support 20 which is erected along a side edge of an opening for installing the sheet shutter and the cross section of which is formed in a C-shape; a sheet roll 30 which is arranged in the upside portion of the opening in the state of winding a sheet material 32 in an non-windable manner; a driving means 40 for rotating the sheet roll 30; and a guide rod 50 which has both ends fitted with rotators 60 rolling by being guided by the support 20 and to which a lower end of the sheet material 32 is connected. Positions of both width-direction edges of the sheet material 32 wound around the sheet roll 30 are separated from the inside of the support 20.
      COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:为了提供一种用于停车场的薄板闸门,其能够进入和停放在停车场中,而不会出现繁琐的操作,例如即使在快门下降中的打孔机的打开和升高 州。 解决方案:该薄板闸门包括:支撑件20,其沿着用于安装薄板闸板的开口的侧边缘竖立并且其横截面形成为C形; 以不可卷绕的方式卷绕片材32的状态配置在开口的上侧部的片卷30; 用于旋转片材卷30的驱动装置40; 以及导向杆50,其两端装配有通过由支撑件20引导而滚动的旋转体60,并且片材32的下端连接到该导杆50。 缠绕在片材卷30周围的片材32的两个宽度方向边缘的位置从支撑件20的内部分离。(C)版权所有(C)2009,JPO&INPIT
    • 5. 发明专利
    • Rain gutter for melting of snow, and vinyl plastic hothouse using it
    • 用于润滑雪的雨水和使用它的乙烯塑料蒸气浴
    • JP2005083112A
    • 2005-03-31
    • JP2003317853
    • 2003-09-10
    • Kazuaki FukushimaKunitada Kuboki国忠 久保木一明 福島
    • FUKUSHIMA KAZUAKIKUBOKI KUNITADA
    • A01G9/14E04D13/076E04H9/16
    • Y02A40/252
    • PROBLEM TO BE SOLVED: To provide a rain gutter for melting of snow, which prevents snow from being accumulated in a rain gutter part arranged in a valley part of a roof, wherein there is no risk that a vinyl plastic greenhouse can collapse under the weight of the snow, which can be easily transported and which facilitates arrangement work, and the vinyl plastic hothouse using the rain gutter.
      SOLUTION: This rain gutter 26 for the melting of the snow is equipped with a heat insulating part 26a which is formed like a long and flat cylinder by using an impermeable sheet 28, a heating element 32 which is elongated into the heat insulating part 26a in the long direction of the heat insulating part 26a, and locking parts 26c which are provided along both edges 26b of the heat insulating part 26a. The rain gutter 26 for use in the vinyl plastic greenhouse 10 is attached to an edge 24 of eaves of a building via the locking part 26c in such a manner that a central part of the heat insulating part 26a is bent downward.
      COPYRIGHT: (C)2005,JPO&NCIPI
    • 要解决的问题:提供一种用于融化雪的雨水沟,其防止雪积聚在布置在屋顶的山谷部分的雨沟部分中,其中不存在乙烯基塑料温室可能崩溃的风险 在雪的重量下,可以方便地运输,便于安排工作,以及使用雨沟的乙烯塑料温室。 解决方案:用于熔化雪的雨沟26配备有绝热部分26a,其通过使用不透水片28形成为长而扁平的圆筒,加热元件32延伸到隔热层 绝热部26a的长边方向的部分26a,以及隔热部26a的两边26b设置的锁定部26c。 用于乙烯塑料温室10的雨沟26通过锁定部26c以隔热部分26a的中心部分向下弯曲的方式附接到建筑物的屋檐边缘24。 版权所有(C)2005,JPO&NCIPI
    • 7. 发明专利
    • Collapsible cold reserving box and heat reserving box
    • 可折叠冷藏箱和热保温箱
    • JP2013088041A
    • 2013-05-13
    • JP2011229445
    • 2011-10-19
    • Kazuaki Fukushima一明 福島
    • FUKUSHIMA KAZUAKI
    • F25D15/00
    • PROBLEM TO BE SOLVED: To provide a collapsible cold reserving box and heat reserving box that can be easily assembled and disassembled, can be moved freely, and have no limitations on installation locations and uses.SOLUTION: The collapsible cold reserving box and heat reserving box are provided with a pipe frame collapsible for assembly and disassembly and movable in the assembled state thereof, an airtight exterior heat insulation sheet for covering the frame, a gateway opening/closing mechanism provided on one side of the exterior heat insulation sheet, and a cooling device for cooling internal air covered with the exterior heat insulation sheet by circulating it through a circulation passage.
    • 要解决的问题:为了提供易于组装和拆卸的可折叠冷库和储热箱,可以自由移动,对安装位置和用途没有限制。 解决方案:折叠式冷藏箱和储热箱设置有可折叠组装和拆卸的管框,可在其组装状态下移动,用于覆盖框架的气密外部隔热片,网关开闭机构 设置在外部隔热片的一侧,以及冷却装置,用于通过使其通过循环通道循环来冷却由外部隔热片覆盖的内部空气。 版权所有(C)2013,JPO&INPIT
    • 9. 发明申请
    • ION-CONDUCTING MICROPARTICLE AND METHOD OF MANUFACTURING THE SAME, ION-CONDUCTING COMPOSITE, MEMBRANE ELECTRODE ASSEMBLY (MEA), AND ELECTROCHEMICAL DEVICE
    • 离子导电微粒及其制造方法,导电复合材料,膜电极组件(MEA)和电化学装置
    • US20120100458A1
    • 2012-04-26
    • US13382261
    • 2010-07-07
    • Kenji KishimotoKazuaki FukushimaTakuro Hirakimoto
    • Kenji KishimotoKazuaki FukushimaTakuro Hirakimoto
    • H01M8/10C07F9/30C07F7/18C07F9/48B82Y99/00
    • H01B1/06H01B1/122H01M8/1011H01M8/1016H01M8/1048H01M8/1081Y02E60/523Y02P70/56
    • There are provided an ion-conducting microparticle including an ion-dissociative group and exhibiting an affinity for a fluorine-containing resin, and a method of manufacturing the same, an ion-conducting composite including the ion-conducting microparticle, a membrane electrode assembly (MEA) including the ion-conducting composite as an electrolyte, and an electrochemical device such as a fuel cell. A reacting molecule 13, which includes, in only one end, a second reacting group 14 capable of being bonded to a first reacting group 12, and includes, in a main part and/or the other end, an atom group 5 having an affinity for a fluorine-containing resin, acts on a material microparticle 11 including an ion-dissociative group 3 and the first reacting group 12 on a surface of a base-material microparticle 2, and a reformed group 4, which is bonded at only one end to the surface of the base-material microparticle 2, and includes, in a main part and/or the other end, the atom group 5 having an affinity for a fluorine-containing resin, is introduced into the surface of the base-material microparticle 2 by a reaction between the first reacting group 12 and the second reacting group 14 to form an ion-conducting microparticle 1.
    • 提供了包含离子解离基团并对含氟树脂具有亲和性的离子传导性微粒及其制造方法,包括离子传导性微粒的离子传导性复合体,膜电极接合体 MEA),以及诸如燃料电池的电化学装置。 反应分子13,其仅在一端包含能够与第一反应基团12键合的第二反应基团14,并且在主要部分和/或另一端包括具有亲和力的原子团5 对于含氟树脂,在基材微粒2的表面上作用于包含离子解离基团3和第一反应基团12的材料微粒11和仅在一端结合的重整基团4 在基材微粒2的表面,并且在主体部分和/或另一端包含对含氟树脂具有亲和性的原子团5引入基材微粒的表面 2通过第一反应基团12和第二反应基团14之间的反应形成离子传导微粒子1。
    • 10. 发明申请
    • ION-CONDUCTIVE COMPOSITE, MEMBRANE ELECTRODE ASSEMBLY (MEA), AND ELECTROCHEMICAL DEVICE
    • 离子导电复合材料,膜电极组件(MEA)和电化学装置
    • US20120094209A1
    • 2012-04-19
    • US13380713
    • 2010-06-24
    • Kenji KishimotoKazuaki FukushimaTakuro Hirakimoto
    • Kenji KishimotoKazuaki FukushimaTakuro Hirakimoto
    • H01M8/10B82Y30/00
    • H01B1/122H01M8/102H01M8/1039
    • Provided are an ion-conductive composite containing ion-conductive fine particles and a vinylidene fluoride homopolymer or copolymer and having excellent ion conductivity, a membrane electrode assembly (MEA) including the ion-conductive composite as an electrolyte, and an electrochemical device, such as a fuel cell.An ion-conductive composite is formed of ion-conductive fine particles having an ion-dissociative group and a vinylidene fluoride homopolymer or copolymer. Here, a vinylidene fluoride homopolymer or copolymer having a β-type crystal structure is used. Since polyvinylidene fluoride having the β-type crystal structure has a large dipole moment in a direction that is orthogonal to the direction of the molecular chain, permittivity in the vicinity of ion-conductive fine particles can be kept high, thus facilitating ionic conduction. As a result, the decrease in ion conductivity can be minimized when the composite is formed.
    • 提供了含有离子导电性微粒和偏二氟乙烯均聚物或共聚物并且离子传导性优异的离子传导性复合体,包含作为电解质的离子传导性复合物的膜电极接合体(MEA),以及电化学装置 燃料电池 离子导电性复合体由具有离子解离基团和偏二氟乙烯均聚物或共聚物的离子导电性微粒形成。 这里,使用具有“b”型晶体结构的偏二氟乙烯均聚物或共聚物。 由于具有“b”型晶体结构的聚偏二氟乙烯在与分子链方向正交的方向上具有大的偶极矩,所以可以将离子导电性微粒附近的介电常数保持为高,从而促进离子传导。 结果,当形成复合物时,离子电导率的降低可以最小化。