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    • 1. 发明申请
    • Refrigerator
    • 冰箱
    • US20070086151A1
    • 2007-04-19
    • US10578709
    • 2004-11-12
    • Seung OhIk Kyu LeeChan JangKi Cheol Woo
    • Seung OhIk Kyu LeeChan JangKi Cheol Woo
    • G06F1/16
    • F16M11/10F16M11/041F16M13/02F16M2200/02F25D23/12F25D2323/023F25D2400/06F25D2400/361Y10S248/917
    • The present invention relates to a refrigerator. In the present invention, a communication pad 60 is installed in one of the doors 51 and 53 for opening and closing storage spaces formed in a refrigerator main body 50. The communication pad 60 is detachably installed in a seating; space 58 of the door 53. While an upper end of the communication pad 60 is seated in the seating space 58 by an upper clamp 61, a lower end of the communication pad 60 is seated in the seating space 58 by a lower clamp 61′. The upper clamp 61 and the lower clamp 61′ are installed in the seating space 58 through hinge assemblies 65. Here, the hinge assemblies 65 are configured so that the upper and lower clamps 61 and 61′ rotate only by a force of a predetermined value or higher. According to the present invention constructed as above, it is possible to get advantages in that the communication pad 60 is securely mounted to and easily dismounted from the door 53.
    • 冰箱技术领域本发明涉及一种冰箱。 在本发明中,通信垫60安装在门51和53之一中,用于打开和关闭在冰箱主体50中形成的存储空间。 通信垫60可拆卸地安装在座位上; 门53的空间58。 当通过上夹具61将通信垫60的上端置于座位空间58中时,通过下夹具61'将连通垫60的下端置于座位空间58中。 上夹具61和下夹61'通过铰链组件65安装在座位空间58中。 这里,铰链组件65被构造成使得上夹具61和下夹具61'仅旋转预定值或更高的力。 根据如上构造的本发明,可以获得如下优点:通信垫60被牢固地安装到门53上并且容易地从门53上拆下。
    • 2. 发明申请
    • Ice supply system
    • 供冰系统
    • US20060117786A1
    • 2006-06-08
    • US11337585
    • 2006-01-24
    • Wook LeeMyung LeeSeung OhEui Chung
    • Wook LeeMyung LeeSeung OhEui Chung
    • F25C1/22F25C5/18F25C5/08
    • F25C1/04F25C5/046F25C5/182F25C5/22F25C2400/04F25C2400/10F25C2500/06F25C2600/04F25C2700/06
    • An icemaker for an ice supply system for preventing water from overflowing from the ice tray by vibration and/or shaking of the surrounding structure includes an icemaker, a container provided at a lower part of the icemaker and an ice chute for supplying the ice stored in the ice container. An ejector in the ice tray of the icemaker and a dropper device having an inclined upper surface at a side of the open top of the ice tray are provided for dropping the ice discharged upwardly by the ejector. The dropper has no gap or slot through which the ejector passes to prevent water overflow through the dropper. An overflow prevention device is provided at another side of the open top of the ice tray for preventing water filled in the ice tray from overflowing.
    • 一种用于防止水从周围结构的振动和/或晃动而使水从冰盘溢出的制冰机,包括制冰机,设在制冰机下部的容器和用于供应储存在冰箱中的冰的冰槽 冰箱。 在制冰机的冰盘中的喷射器和在冰盘的开口顶部的一侧具有倾斜的上表面的滴管装置被设置用于将由喷射器向上排放的冰滴下。 滴管没有间隙或槽,喷射器通过该间隙或槽,以防止水通过滴管溢出。 在冰盘的开口顶部的另一侧设置溢流防止装置,以防止填充在冰盘中的水溢出。
    • 4. 发明申请
    • System and method for generating surface mesh surrounding particles
    • 用于产生周围颗粒的表面网格的系统和方法
    • US20070132758A1
    • 2007-06-14
    • US11633191
    • 2006-12-04
    • Seung OhBon KooManjai Lee
    • Seung OhBon KooManjai Lee
    • G06T17/00
    • G06T17/20
    • Provided are a system for generating a surface mesh surrounding particles on a 3D space. An implicit function module receives particle data containing three-dimensional location and radius data of the particles, grids the particles into rectangular parallelepiped shape, and generates implicit function data having implicit function value determining the surface at grid points. A mesh module generates a mesh through a pre-process of substituting the implicit function value of the gird point, where the implicit function value is defined, by zero when the a distance between a grid point where the implicit function value of the implicit function data and the vertex of the mesh is within a set distance. Accordingly, the system and method are useful for visualizing the results of particle simulations used in basic science and engineering. In particular, the system and method can generate high-quality mesh in computer graphics of fluid simulation using the particles.
    • 提供了一种用于在3D空间上生成围绕颗粒的表面网格的系统。 隐含函数模块接收包含粒子的三维位置和半径数据的粒子数据,将粒子网格化为长方体形状,并产生具有确定网格点表面的隐含函数值的隐含函数数据。 网格模块通过将网格点之间的距离代入隐式函数数据的隐含函数值的网格点之间的距离,通过将网格点的隐含函数值(其中隐含函数值定义)为0的前处理生成网格, 并且网格的顶点在设定的距离内。 因此,该系统和方法可用于可视化基础科学和工程中使用的粒子模拟的结果。 特别地,系统和方法可以使用粒子在流体模拟的计算机图形中生成高质量的网格。
    • 8. 发明申请
    • Methods of identifying longevity modulators and therapeutic methods of use thereof
    • 识别寿命调节剂的方法及其使用的治疗方法
    • US20060272039A1
    • 2006-11-30
    • US11372469
    • 2006-03-08
    • Heidi TissenbaumSeung Oh
    • Heidi TissenbaumSeung Oh
    • A01K67/033C12Q1/48A61K38/54
    • G01N33/573
    • The present invention is based at least in part on the discovery of a role for the JNK signaling pathway in longevity. In particular, the present inventors have shown that overexpression of c-jun N-terminal kinase 1 (jnk-1) extends lifespan and that said extended lifespan is associated with DAF-16 phosphorylation by JNK-1 and the consequent DAF-16 localization to the nucleus. Accordingly, the present invention features methods of identifying modulators of longevity in assays featuring organisms and/or cells having a JNK signaling pathway and, optionally, an IR signaling pathway. Also featured is an in vitro method of identifying an agent capable of enhancing longevity featuring an assay composition having a JNK signaling pathway molecule and insulin signaling pathway molecule. Further featured are therapeutic methods for the use of JNK signaling pathway modulators to enhance longevity, to prevent or reduce obesity and to prevent or treat type II diabetes.
    • 本发明至少部分地基于JNK信号通路在长寿中的作用的发现。 特别地,本发明人已经表明,c-jun N-末端激酶1(jnk-1)的过表达延长了寿命,并且所述延长的寿命与JNK-1的DAF-16磷酸化和随后的DAF-16定位相关 核心 因此,本发明的特征在于鉴定具有JNK信号传导途径和任选的IR信号传导途径的生物体和/或细胞的测定中鉴定寿命调节剂的方法。 还特征在于鉴定能够增强寿命特性的具有JNK信号传导途径分子和胰岛素信号通路分子的测定组合物的试剂的体外方法。 进一步的特征是使用JNK信号通路调节剂来增强寿命,预防或减少肥胖和预防或治疗II型糖尿病的治疗方法。
    • 9. 发明申请
    • Ex-vessel core melt retention device preventing molten core concrete interaction
    • US20060269035A1
    • 2006-11-30
    • US11392652
    • 2006-03-30
    • Jong ParkSeung OhT. Theofanous
    • Jong ParkSeung OhT. Theofanous
    • G21C9/00
    • G21C9/016Y02E30/40
    • The present invention relates to a safety design and risk management of a reactor of a nuclear plant, and more particularly, to an ex-vessel core melt device preventing molten core concrete interaction, which is to handle very severe accidents caused by cooling-function loss to nuclear fuel. Due to the large quantity of nuclear fuel existing in the reactor and decay heat which is latent and continuously generated within the fuel mass for a long time after the nuclear chain reaction, the nuclear fuel is melted in gross at temperature up to 2,500 degrees centigrade, and thereby the surrounding structures and a reactor vessel are attacked and damaged, and in the end, a containment building floor is eroded. This situation may cause environmental radioactivity either by ultimate penetration of the cavity floor or by the buildup of non-condensable gas pressure (i.e., pressurizing the containment building structure), unless the reaction is arrested. The ex-vessel core melt retention device preventing molten core concrete interaction, which is installed for alleviating risks due to unexpected accidents over accidents considered as a design criteria of a nuclear plant, includes: horizontal jacket pipes located on a shell boundary of a cavity floor, the horizontal jacket pipes having water inlets A formed at their lower half in an appropriate density for allowing water to enter the bottom of the pipes; vertical pipes connected at both ends of the horizontal jacket pipes in the form of a dovetail to communicate with each other; and a water supply part located at the lower portion of the horizontal jacket pipes for allowing water to enter from the whole area of the bottom.