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    • 2. 发明申请
    • METHOD FOR MANUFACTURING LAMINATED CONTAINER, AND LAMINATED CONTAINER USING THE SAME
    • 制造层压容器的方法以及使用该容器的层压容器
    • WO2010027146A2
    • 2010-03-11
    • PCT/KR2009003988
    • 2009-07-20
    • LEE SEUNG HUN
    • LEE SEUNG HUN
    • B29C47/04
    • B29C45/1646B29C49/06B29C49/221B29C2793/0018B29L2009/00B29L2009/001
    • The present invention relates to a method for manufacturing a laminated container and the laminated container using the same. The method comprises: a first injection step for injecting a resin into a mold through a first extruder, wherein the resin is for forming an inner layer and outer layer; a second injection step for injecting a resin between the inner layer and outer layer into the mold through a second extruder after the first injection step, wherein the resin is for forming an intermediate layer; a molding step for forming the outer shape of the container after the second injection step; and an inner layer shrinkage step for separating the inner layer from the intermediate layer and shrinking the inner layer by exhausting the inner air of the container in a state where the opening of the container is sealed after the molding step. Accordingly, a laminated container can be manufactured with no an adhesive layer between layers, so production costs may be reduced. Since an additional post-treatment process for forming breath holes is not needed and damage to the inner layer can be checked while breath holes are formed, productivity of the laminated container can be improved.
    • 用于制造层压容器的方法和使用该方法的层压容器技术领域本发明涉及用于制造层压容器的方法和使用该方法的层压容器。 该方法包括:第一注射步骤,用于通过第一挤出机将树脂注入模具中,其中所述树脂用于形成内层和外层; 第二注射步骤,用于在第一注射步骤之后通过第二挤压机将内层和外层之间的树脂注射到模具中,其中所述树脂用于形成中间层; 成型步骤,用于在第二注射步骤之后形成容器的外部形状; 以及内层收缩步骤,用于在模塑步骤之后在容器的开口被密封的状态下通过排出容器的内部空气而将内层从中间层分离并收缩内层。 因此,可以在层之间没有粘合剂层的情况下制造层压容器,因此可以降低生产成本。 由于不需要用于形成呼吸孔的附加后处理过程,并且可以在形成呼吸孔的同时检查对内层的损伤,因此可以提高层压容器的生产率。
    • 3. 发明申请
    • METHOD FOR MEASURING THE CONCENTRATION OF AN ATMOSPHERIC OR WATER POLLUTANT
    • 测量大气或水体污染物浓度的方法
    • WO2012158000A3
    • 2013-01-24
    • PCT/KR2012003997
    • 2012-05-21
    • KYUNGPOOK NAT UNIV IND ACADLEE JIE TAELEE SEUNG JAELEE SEUNG HUNLEE JI MIN
    • LEE JIE TAELEE SEUNG JAELEE SEUNG HUNLEE JI MIN
    • G01N21/78G01N33/18
    • G01N21/78
    • Disclosed is a method for measuring the concentration of an atmospheric or water pollutant. The method comprises the steps of: (a) testing variations of color based on the concentration of a pollutant contained in the atmosphere or water using a colorimetric measurement kit; (b) photographing the color of the colorimetric measurement kit and the color of a reference color sheet using a photographing device to obtain an image; (c) digitizing the chromaticities of the color of the colorimetric measurement kit and the color of the reference color sheet using an image analysis program; (d) and calculating the value of the concentration of the pollutant from the numerical value of the color of the colorimetric measurement kit using a linear interpolation method. According to the present invention, the necessity of separate expensive analysis equipment is eliminated to enable easy and inexpensive on-site measurement. Further, the colors of the colorimetric measurement kit and the reference color sheet may be obtained as a single image to allow for easy normalization of the image. In addition, the influences of a lighting environment and performance of a measurement device may be minimized during the process of acquiring the image.
    • 公开了一种测量大气或水污染物浓度的方法。 该方法包括以下步骤:(a)使用比色测量试剂盒测试基于大气或水中所含污染物浓度的颜色变化; (b)使用拍摄装置拍摄比色测量组件的颜色和参考色片的颜色以获得图像; (c)使用图像分析程序数字化比色测量套件的颜色的色度和参考色片的颜色; (d),并使用线性插值法从比色测量套件的颜色的数值计算污染物浓度的值。 根据本发明,消除了单独的昂贵分析设备的必要性,以便能够容易且便宜地进行现场测量。 此外,可以获得比色测量套件和参考色片的颜色作为单个图像,以便于图像的简单归一化。 此外,在获取图像的过程中,照明环境和测量装置的性能的影响可能被最小化。
    • 5. 发明申请
    • METHOD FOR MANUFACTURING LAMINATED CONTAINER, AND LAMINATED CONTAINER USING THE SAME
    • 制造层压容器的方法和使用其的层压容器
    • WO2010027146A3
    • 2010-05-14
    • PCT/KR2009003988
    • 2009-07-20
    • LEE SEUNG HUN
    • LEE SEUNG HUN
    • B29C47/04
    • B29C45/1646B29C49/06B29C49/221B29C2793/0018B29L2009/00B29L2009/001
    • The present invention relates to a method for manufacturing a laminated container and the laminated container using the same. The method comprises: a first injection step for injecting a resin into a mold through a first extruder, wherein the resin is for forming an inner layer and outer layer; a second injection step for injecting a resin between the inner layer and outer layer into the mold through a second extruder after the first injection step, wherein the resin is for forming an intermediate layer; a molding step for forming the outer shape of the container after the second injection step; and an inner layer shrinkage step for separating the inner layer from the intermediate layer and shrinking the inner layer by exhausting the inner air of the container in a state where the opening of the container is sealed after the molding step. Accordingly, a laminated container can be manufactured with no an adhesive layer between layers, so production costs may be reduced. Since an additional post-treatment process for forming breath holes is not needed and damage to the inner layer can be checked while breath holes are formed, productivity of the laminated container can be improved.
    • 本发明涉及层压容器的制造方法和使用其的层叠容器。 该方法包括:第一注射步骤,用于通过第一挤出机将树脂注射到模具中,其中所述树脂用于形成内层和外层; 第二注射步骤,用于在第一注射步骤之后通过第二挤出机将内层和外层之间的树脂注射到模具中,其中树脂用于形成中间层; 用于在第二注射步骤之后形成容器的外形的模制步骤; 以及内层收缩步骤,用于在内层与中间层分离,并且在模制步骤之后在容器的开口被密封的状态下排出容器的内部空气而收缩内层。 因此,可以在层之间没有粘合剂层的情况下制造层压容器,因此可能降低生产成本。 由于不需要用于形成呼吸孔的附加的后处理工艺,并且可以在形成呼吸孔的同时检查内层的损坏,因此可以提高层压容器的生产率。
    • 9. 发明申请
    • COMBINED CAMERA SUPPORTER AND STICK
    • 组合摄像机支持者和STICK
    • WO2005045301A1
    • 2005-05-19
    • PCT/KR2004/002912
    • 2004-11-08
    • LEE, Seung-Hun
    • LEE, Seung-Hun
    • F16M13/08
    • F16M13/08F16M13/00
    • The present invention discloses a combined camera supporter and stick which comprises: a stick body; fastening means mounted on the top end portion of the stick body; and a cover openably and closably mounted on the top end portion of the stick body for covering the fastening means to prevent the fastening means from being caught by a user’s hand, whereby the combined camera supporter and stick can be used as a stick at ordinary times by closing the cover for covering the bolt mounted on the top end portion of the stick body, and can be used as a camera supporter by opening the cover for assembling the stick body with a camera by means of the fastening means at the time of taking photographs.
    • 本发明公开了一种组合相机支架和棒,其包括:棒体; 安装在所述棒体的顶端部的紧固装置; 以及可开闭地安装在棒体的顶端部上的盖子,用于覆盖紧固装置,以防止紧固装置被使用者的手抓住,由此组合的相机支架和棒可以在平时被用作棍子 通过闭合用于覆盖安装在棒状物体的顶端部分上的螺栓的盖,并且可以通过在拍摄时通过紧固装置打开用于组装棒状物体的相机的盖子来用作照相机支撑件 照片。
    • 10. 发明申请
    • QUANTUM CRYPTOGRAPHY SYSTEM
    • 量子系统
    • WO2008016201A1
    • 2008-02-07
    • PCT/KR2006/004087
    • 2006-10-11
    • KOREA INSTITUTE OF SCIENCE AND TECHNOLOGYMOON, Sung-WookPARK, Jun-BumPARK, Chul-WooLEE, Kyung-WoonLEE, Seung-HunSHIN, Hyun-Joon
    • MOON, Sung-WookPARK, Jun-BumPARK, Chul-WooLEE, Kyung-WoonLEE, Seung-HunSHIN, Hyun-Joon
    • G02B6/036
    • H04L9/0852G02B6/03633G02B6/03644G02B6/2861
    • Disclosed are a quantum cryptography system comprising a transmitting part and a receiving part. The transmitting part include a first optical fiber array of longer and shorter optical fibers for imparting a first path difference to an optical signal introduced from a light source, thereby dividing the optical signal into two signals having the first path difference, a first phase modulator for phase-modulating one of the signals propagating along the longer optical fiber and an attenuator for producing single photons respectively from the two signals, which are divided by the first path difference of the first optical fiber array. The receiving part includes a second optical fiber array of longer and shorter optical fibers for imparting a second path difference to the signals, which are received from the transmitting part through a quantum channel and have the first path difference, a second phase modulator for phase-modulating corresponding signal propagating along the longer optical fiber of the second optical fiber array and detector for detecting interferences between the signals outputted from the second optical fiber array. Each of the optical fibers of the transmitting part and the receiving part comprises a core containing B 2 O 3 and the balance being SiO 2 and GeO 2 , an inner cladding layer arranged around the core and composed of SiO 2 and at least one additive of F and P added to SiO 2 and an outer cladding layer arranged on the inner cladding layer and composed of SiO 2 .
    • 公开了一种包括发送部分和接收部分的量子密码系统。 发送部分包括用于对从光源引入的光信号施加第一路径差的由较长和较短光纤组成的第一光纤阵列,从而将光信号划分为具有第一路径差的两个信号,第一相位调制器, 相位调制沿着较长光纤传播的信号中的一个信号和用于分别由第一光纤阵列的第一路径差划分的两个信号产生单个光子的衰减器。 接收部分包括用于对通过量子信道从发射部分接收并且具有第一路径差异的信号给予第二路径差的用于给予第二路径差的第二光纤阵列, 调制沿着第二光纤阵列的较长光纤传播的相应信号和检测器,用于检测从第二光纤阵列输出的信号之间的干扰。 发送部分和接收部分的每个光纤包括含有B 2 O 3 N 3的核心,其余为SiO 2和GeO 由芯子构成的由SiO 2组成的内包层和添加到SiO 2的F和P的至少一种添加剂构成的内包层,以及 外包层,其设置在内包层上并由SiO 2组成。