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    • 1. 发明申请
    • VERTICAL WALL AND HIGH-SLOPE AFFORESTATION METHOD AND AGGREGATE CONTAINER, SHELF ASSEMBLY AND WATER SUPPLY DEVICE USED THERETO
    • 垂直墙和高斜率自动化方法和聚集容器,储存组件和使用的水供应装置
    • WO2011093625A3
    • 2012-01-05
    • PCT/KR2011000487
    • 2011-01-24
    • DAESAN L & CPARK CHUL-HONGKIM JAE-HONGGREEN INFRA CO LTD
    • PARK CHUL-HONGKIM JAE-HONG
    • A01G1/00A01G9/02A01G27/02E02B3/08E02D17/20
    • A01G9/025E02D17/20Y02P60/244
    • The present invention relates to a vertical wall and high-slope afforestation method and an aggregate container, a shelf assembly and a water supply device used thereto. In the present invention, a shelf assembly (10) comprises a support (12) and a support plate (20). The support (12) is equipped with a fixing leg (14) fixed to a reinforced earth layer (3), and a weight support unit (16) is positioned on an end of the fixing leg (14) so that the fixing leg is supported by being closely pressed to a slope or an end vertical wall (7) of the reinforced earth layer (3). A supporting leg (18) is slopingly extended in an opposite direction to gravity on an end of the weight support unit (16). The support plate (20) is supported on the supporting leg (18), wherein a vegetation soil (40) is placed on the support plate (20). Both ends of a horizontal supply pipe (36) are connected to vertical supply pipes (30) separated at certain intervals inside the vegetation soil (40), and a water pipe (38) is provided in the horizontal supply pipe (36). The inside of the water pipe (38) is filled with a filler (38), and a decompression valve (37') is provided on a connection pipe (37) which connects the water pipe (38) with the horizontal supply pipe (36). In the present invention, the shelf assembly (10) supports the weight of the vegetation soil (40) more efficiently and supplies water to the inside of the vegetation soil (40) more effectively.
    • 本发明涉及一种垂直墙体和高坡度造林方法,以及集体容器,搁架组件和使用其的供水装置。 在本发明中,搁架组件(10)包括支撑件(12)和支撑板(20)。 支撑件(12)配备有固定在加固地层(3)上的固定腿(14),并且配重支撑单元(16)定位在固定腿(14)的一端,使得固定腿 通过紧密地压靠到加强的地层(3)的斜坡或端部垂直壁(7)来支撑。 支撑腿(18)在重量支撑单元(16)的端部上沿与重力相反的方向倾斜地延伸。 支撑板(20)支撑在支撑腿(18)上,其中植被土(40)被放置在支撑板(20)上。 水平供水管36的两端连接在植被土40内以一定间隔隔开的垂直供水管30,水管38设在水平供水管36内。 水管38的内部填充有填充物38,在连接管37(37)上设有减压阀37,该连接管37将水管38与水平供给管36连接 )。 在本发明中,搁板组件(10)更有效地支撑植被土(40)的重量,并且更有效地向植被土(40)的内部供水。
    • 5. 发明申请
    • IN-BUILDING COMMUNICATION-RELAY SYSTEM USING POWER-LINE COMMUNICATION AND METHOD THEREOF
    • 使用电力线通信的内置通信继电系统及其方法
    • WO2009123404A1
    • 2009-10-08
    • PCT/KR2009001489
    • 2009-03-24
    • KT CORPLEE SUNG-BINPARK SUNG-GYUKIM JAE-HONG
    • LEE SUNG-BINPARK SUNG-GYUKIM JAE-HONG
    • H04B3/54
    • H04B3/54H04B3/58H04B2203/5441
    • This invention relates to an in-building communication-relay system and a method thereof for improving mobile communication service and reception in a building. According to the invention, the disclosed system relays a communication service provided from a communication system to the inside of a building and comprises a main unit and a remote unit. The main unit receives a communication signal from a repeater and a base station and modulates the received communication signal. In addition, the main unit is connected to an input terminal of power lines wired inside the building and supplies the modulated signal to the inside of the building through the power lines according to a PLC (Power-Line Communication) method. The remote unit which is connected to an end terminal of the power lines receives the communication signal via the PLC method. Then, the remote unit demodulates the communication signal and provides the communication service to the surrounding area.
    • 本发明涉及一种用于改善建筑物中的移动通信服务和接收的建筑内通信中继系统及其方法。 根据本发明,所公开的系统将从通信系统提供的通信服务中继到建筑物的内部,并且包括主单元和远程单元。 主单元从中继器和基站接收通信信号,并对接收到的通信信号进行调制。 此外,主单元连接到建筑物内布线的电力线的输入端,并根据PLC(电力线通信)方式通过电力线将调制信号提供给建筑物的内部。 连接到电力线的端子的远程单元通过PLC方法接收通信信号。 然后,远程单元解调通信信号,并向周边区域提供通信服务。
    • 7. 发明申请
    • DOOR DAMPER
    • 门禁器
    • WO2009031723A1
    • 2009-03-12
    • PCT/KR2007/004333
    • 2007-09-07
    • MOONJU HARDWARE CO., LTDKIM, Jae Hong
    • KIM, Jae Hong
    • E05F5/02E05F5/06E05F5/10
    • E05F5/10F16F9/061F16F13/007F16F2230/24Y10S16/10Y10S16/21Y10T16/2766Y10T16/2771Y10T16/2788Y10T16/61Y10T16/625
    • Disclosed is a door damper, in which a safety check valve is installed in consideration of the case in which an impact exceeding a design pressure will be applied, thereby absorbing the impact to enable a door to be closed safely and smoothly. In the door damper, a safety check valve is installed in a piston, and thus is opened in cooperation with another check valve installed between a spring holder and the piston when the pressure exceeding a design pressure is applied. Thereby, when the impact exceeding the design pressure occurs, the safety check valve can absorb the impact to prevent damage. A channel can be adjusted by only ridges formed on an outer circumference of the check valve, so that productivity can be improved thanks to easy tolerance management. Further, an oil seal is not contracted or deformed in spite of long-term use.
    • 公开了一种门阻尼器,其中考虑到将施加超过设计压力的冲击的情况来安装安全止回阀,从而吸收冲击以使门能够安全平稳地关闭。 在门阻尼器中,安全止回阀安装在活塞中,因此当施加超过设计压力的压力时,与安装在弹簧保持器和活塞之间的另一止回阀协同打开。 因此,当超过设计压力的冲击发生时,安全止回阀可以吸收冲击以防止损坏。 可以通过形成在止回阀的外周上的脊部来调节通道,从而通过容易的公差管理可以提高生产率。 此外,油封尽管长期使用也不会收缩或变形。
    • 8. 发明申请
    • HINGE DAMPER
    • HINGE阻尼器
    • WO2008153224A1
    • 2008-12-18
    • PCT/KR2007/002792
    • 2007-06-12
    • MOONJU HARDWARE CO., LTDKIM, Jae Hong
    • KIM, Jae Hong
    • E05D7/00E05D3/06E05F5/02
    • E05F5/006E05F5/08E05F5/10E05Y2201/21E05Y2201/212E05Y2201/256E05Y2201/264E05Y2900/20Y10T16/61Y10T16/615Y10T16/625
    • The present invention relates to a hinge damper and, more particularly, to a hinge damper that is configured to be adhered to a door hinge of the furniture having a door to attenuate impact and is designed in a small size but to attenuate a large amount of impact. In a hinge damper of the present invention, first and second seals are formed in an oil seal to prevent air from being introduced. A cross rib is formed on a piston to absorb a larger amount of impact with a small size. According to the present invention, the hinge damper can be small-sized while attenuating impact the present invention has been made. In addition, the hinge damper does not affect on the size of the hinge. Further, since the hinge damper can be identically sized to a screw used for fixing the hinge, it is not exposed to an external side.
    • 更具体地说,涉及一种铰链阻尼器,其被构造成粘附到具有门的家具的门铰链上以减弱冲击力并且设计成小尺寸,但是要减少大量的 影响。 在本发明的铰链阻尼器中,第一和第二密封件形成在油封中,以防止空气被引入。 在活塞上形成横肋,以较小的尺寸吸收较大量的冲击。 根据本发明,铰链阻尼器可以小型化,同时减弱了本发明的冲击。 此外,铰链阻尼器不会影响铰链的尺寸。 此外,由于铰链阻尼器的尺寸可以与用于固定铰链的螺钉相同,所以它不暴露于外侧。
    • 9. 发明申请
    • KNOWLEDGE MODELING SYSTEM USING ONTOLOGY
    • 使用本体的知识建模系统
    • WO2005052720A3
    • 2007-12-27
    • PCT/KR0302896
    • 2003-12-30
    • KOREA ELECTRONICS TELECOMMLIM SHIN-YOUNGHA YOUNG-GOOKKIM JAE-HONGPARK CHEON-SHUSOHN JOO-CHANHAM HO-SANG
    • LIM SHIN-YOUNGHA YOUNG-GOOKKIM JAE-HONGPARK CHEON-SHUSOHN JOO-CHANHAM HO-SANG
    • G06F17/30G06F20060101
    • G06N5/02
    • An ontology-based knowledge modeling system comprising: a conceptual modeling (100) unit for classifying a knowledge region of a specific domain, performing detailed modeling on a conceptual detailed domain within the classified knowledge region, and configuring a specific domain knowledge model (110) having the respective detailed models (120) as a set; a logical modeling (200) unit for configuring a schema-based logical model (210) based on respective detailed schemas (220) defined by referring to detailed models that correspond to the detailed schemas one by one from the set of the specific domain knowledge model of the conceptual modeling unit; and a physical modeling (300) unit for configuring a physical knowledge reposit model (310) by a detailed data repository (320) for physically analyzing the schemas defined by respective detailed schemas in the logical modeling process, and a mediator (340) for controlling an external interface (330) of the detailed data repository.
    • 一种基于本体的知识建模系统,包括:用于对特定领域的知识区域进行分类的概念建模(100)单元,对分类知识区域内的概念详细域执行详细建模,以及配置特定领域知识模型(110) 具有各自的详细模型(120)作为一组; 一种用于基于相应详细模式(220)来配置基于模式的逻辑模型(200)的逻辑建模(200)单元,所述详细模式(220)通过从所述特定领域知识模型的集合中逐个参考与详细模式相对应的详细模型来定义 的概念建模单元; 以及用于通过详细数据存储库(320)配置物理知识库模型(310)的物理建模(300)单元,用于在逻辑建模过程中物理分析由各个详细模式定义的模式,以及用于控制的调解器(340) 详细数据存储库的外部接口(330)。