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    • 3. 发明专利
    • Disaster prevention system
    • 灾害预防系统
    • JP2014018311A
    • 2014-02-03
    • JP2012157912
    • 2012-07-13
    • Kyoritsu Air Tech Inc協立エアテック株式会社
    • UENO TAKESHIMORI YOJI
    • A62B13/00F24F7/06F24F11/02
    • PROBLEM TO BE SOLVED: To provide a disaster prevention system capable of easily building a new disaster prevention system and renovating an existing disaster prevention system.SOLUTION: A disaster prevention system 100 includes a smoke vent 20 which functions as disaster prevention means installed in a ceiling 11 of a living room 10 for preventing damage from spreading in the event of a fire in a building, a smoke vent opening device 30 which functions as wireless manual operation means fitted to a wall surface 12 for sending an actuation signal to the smoke vent 20, and a battery 21a constituting power feeding means for actuating the smoke vent 20. The battery 21a, incorporated in a power supply unit 21, is installed in a casing 22 of the smoke vent 20, and the battery 21a is charged by an electric current fed from a commercial power supply 14 for a lighting apparatus 13 installed on the ceiling 11 in the vicinity of the smoke vent 20 through a wire 23.
    • 要解决的问题:提供能够容易地构建新的防灾系统和改造现有的防灾系统的防灾系统。解决方案:防灾系统100包括排烟口20,其作为安装在天花板中的防灾装置 11,用于防止在建筑物中发生火灾时的扩散的破坏;用作无线手动操作装置的排烟口打开装置30,其装配到壁表面12,用于向排气口20发送致动信号 以及构成用于致动烟雾排出口20的供电装置的电池21a。并入电源单元21中的电池21a安装在排烟口20的壳体22中,并且电池21a通过电流 通过线23从用于安装在烟雾排出口20附近的天花板11上的照明装置13的商用电源14供给。
    • 4. 发明专利
    • Air capacity unit
    • 空气容量单位
    • JP2006194572A
    • 2006-07-27
    • JP2005209572
    • 2005-07-20
    • Kyoritsu Air Tech Inc協立エアテック株式会社
    • UENO TAKESHIMORI YOJIOGAMI NAOKI
    • F24F13/08F24F11/04F24F13/02
    • PROBLEM TO BE SOLVED: To provide an air capacity unit accurately controllable hardly influenced by turbulent air current in a duct, particularly drift, and swirling flow liable to occur in the case of a circular duct. SOLUTION: A casing of the air capacity unit is provided therein with an air speed sensor for detecting the speed of air flow in a casing; an opening/closing blade for opening/closing the inside of the casing around a shaft; an opening/closing device for driving the opening/closing blade, and an air current straightening means upstream of the air speed sensor. The air current straightening means comprises an air current straightening body for straightening the swirling flow formed in the duct, temporarily in the axial direction of the casing, and a drift straightening body of doughnut shape for straightening the drift formed in the duct, and supplies the straightened air current to the downstream air speed sensor. COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:提供几乎不受管道中的湍流气流影响的精确控制的空气容量单元,特别是漂移,并且在圆形管道的情况下容易产生涡旋流。 解决方案:空气容量单元的壳体设置有用于检测壳体中的空气流速的空气速度传感器; 用于打开/关闭围绕轴的壳体内部的打开/关闭叶片; 用于驱动开/关叶片的打开/关闭装置,以及在空气速度传感器上游的气流矫直装置。 气流整流装置包括气流矫直机构,用于使形成在管道中的旋转流暂时沿壳体的轴向矫直,以及用于矫正形成在管道中的漂移的环形的漂移校正体, 将气流拉直到下游空气速度传感器。 版权所有(C)2006,JPO&NCIPI
    • 5. 发明专利
    • Air conditioning installation
    • 空调安装
    • JP2003042524A
    • 2003-02-13
    • JP2001228522
    • 2001-07-27
    • Kyoritsu Air Tech Inc協立エアテック株式会社
    • OKADA SHINICHIUENO TAKESHIKOMURA SATOSHIMORI YOJI
    • F16L23/02F24F13/02
    • PROBLEM TO BE SOLVED: To improve assembling workability of an air conditioning installation such as an air conditioning duct, a damper, a chamber, and an elbow, and further improve configuration accuracy. SOLUTION: An air conditioning installation 1 comprises a rectangular cylindrical body casing 2 formed with a metal sheet, a flange 3 formed into a substantially inverted U shape by extending opposite end edges of the body casing 2, and a reinforcing fitment 5 fixed to a joint surface 3a of the flange 3 located at a corner of the body casing 2 with spot welding. The reinforcing fitment 5 comprises an L shaped body section 5a, and a flange holding section 5b formed by vertically providing part of the opposite side edges of the body section 5a to the side of the back surface of the flange 3. At a central portion of the body section 5a, there is formed a bolt hole 5c communicated coaxially with a bolt hole 3c of the flange 3 in order to insert a joining bolt, and a flange holding section 5a is fixed to the flange 3 in a closed state.
    • 要解决的问题:为了提高诸如空调管道,阻尼器,室和弯头之类的空调设备的组装可操作性,并且进一步提高配置精度。 解决方案:空调装置1包括:形成有金属板的矩形圆筒体壳体2,通过延伸主体壳体2的相对端边缘而形成为大致倒U形的凸缘3;以及固定到接头的加强配件5 凸缘3的表面3a位于主体外壳2的拐角处,具有点焊。 加强配件5包括L形主体部分5a和凸缘保持部分5b,该凸缘保持部分5b通过在主体部分5a的相对侧边缘的一侧垂直地设置在凸缘3的后表面侧。在中心部分 主体部5a形成有与凸缘3的螺栓孔3c同轴地连接的螺栓孔5c,以便插入接合螺栓,并且凸缘3处于关闭状态下固定有凸缘保持部5a。
    • 8. 发明专利
    • Ceiling material and ceiling material fixing structure
    • 天花材料和天花板材料固定结构
    • JP2014066128A
    • 2014-04-17
    • JP2013183183
    • 2013-09-04
    • Kyoritsu Air Tech Inc協立エアテック株式会社
    • TORIMI AKIRAMORI YOJIHANADA YUKINORINAGAMOTO TATSUYA
    • E04B1/94B32B3/28E04B9/04
    • PROBLEM TO BE SOLVED: To provide a ceiling material in which cracks are not generated, which does not break and drop in a case of occurrence of an earthquake, is excellent in safety, and also excellent in fireproofness and ceiling material fixing structure.SOLUTION: A ceiling material 100 is formed by coating the front face, the rear face and the peripheral end face of a corrugated cardboard panel material 102 with a core material part 101 formed by alternately sticking a plurality of middle cores 10, 11a, 11b and a plurality of middle liners 12a, 12b like a laminate, and outer liners 13a, 13b stuck to the front face and the rear face of the core material part 101 by aluminum foil 103, respectively. The mass of a material forming the outer liners 13a, 13b per unit area is 210 g/m, the mass of a material forming the middle cores 10, 11a, 11b per unit area is 180 g/m, and the mass of a material forming the middle liners 12a, 12b per unit area is 210 g/m.
    • 要解决的问题:为了提供不发生裂纹的天花板材料,在发生地震的情况下不会下降,安全性优异,耐火性和天花板材料固定结构也优异。解决方案: 通过用瓦楞纸板材102的前表面,后表面和外周端面涂覆有通过交替地粘附多个中间芯10,11a,11b而形成的芯材部分101和多个 中间衬垫12a,12b如层压体,外衬层13a,13b分别通过铝箔103粘附到芯材101的前表面和后表面。 形成每单位面积的外衬层13a,13b的材料的质量为210g / m 2,形成每单位面积的中间芯10,11a,11b的材料的质量为180g / m 2,材料的质量 形成每单位面积的中间衬垫12a,12b为210g / m 2。
    • 9. 发明专利
    • Wind volume adjusting unit
    • 风量调节单元
    • JP2007240065A
    • 2007-09-20
    • JP2006063354
    • 2006-03-08
    • Kyoritsu Air Tech Inc協立エアテック株式会社
    • MORI YOJIOGAMI NAOKI
    • F24F13/02
    • PROBLEM TO BE SOLVED: To provide a wind volume adjusting unit capable of being easily assembled and constructed with a simple structure, and reducing noise. SOLUTION: This wind volume adjusting unit 10 comprises a cylindrical casing 11 connected to an air conditioning duct and forming a flow channel inside, opening/closing blades 14 disposed in the casing 11 for opening and closing the flow channel, and a noise reduction material 24 as a noise reducing means, composed of a filter material made of synthetic fiber attached to outer surfaces (front and rear faces) of the opening and closing blades 14. Two sheets of opening/closing blades 14 are composed of approximate semicircular plate members, and attached in a state of forming an approximate circular shape on a shaft 13. This wind volume adjusting unit comprises a propeller type wind speed sensor 12 detecting a wind speed of airflow flowing in the casing 11, and an opening/closing device 15 rotating and driving the opening/closing blades 14, and the opening/closing blades 14 open and close the flow channel in the casing 11 by rotating the shaft 13 on the center. COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:提供一种能够以简单的结构容易地组装和构造并减少噪音的风量调节单元。 解决方案:该风量调节单元10包括连接到空调管道并在内部形成流动通道的圆柱形壳体11,设置在壳体11中的用于打开和关闭流动通道的开闭叶片14,以及噪声 还原材料24作为降噪装置,由安装在开闭叶片14的外表面(前后面)的合成纤维制成的过滤材料构成。两片开闭叶片14由近似的半圆板 构件,并且在轴13上形成大致圆形的状态。该风量调节单元包括螺旋桨式风速传感器12,其检测在壳体11中流动的气流的风速,以及开闭装置15 旋转并驱动开闭叶片14,并且打开/关闭叶片14通过使轴13在中心旋转而打开和关闭壳体11中的流动通道。 版权所有(C)2007,JPO&INPIT