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    • 16. 发明授权
    • Missile separation device
    • 导弹分离装置
    • US08028625B2
    • 2011-10-04
    • US12366859
    • 2009-02-06
    • Jai-Ha KimDong-Ju LeeYang-Wook HurKi-Soo Bae
    • Jai-Ha KimDong-Ju LeeYang-Wook HurKi-Soo Bae
    • F42B15/36
    • F42B15/36
    • Disclosed is a device for separating a propulsion system from a missile, the device including a locking unit configured to fix a propulsion system to a missile, a string disposed to cross a rear portion of the propulsion system to be broken by heat of the propulsion system, and an unlocking unit configured to unlock the missile by the broken string, whereby the number of additional components of an unlocking system can be reduced as many as possible so as to simplify the configuration of the apparatus, resulting in guaranteeing an enhanced performance of the missile, an easy assembly of the missile, and a reduction of a fabricating cost.
    • 公开了一种用于将推进系统与导弹分离的装置,该装置包括构造成将推进系统固定到导弹的锁定单元,设置成跨越推进系统的后部以被推进系统的热量破坏的弦 以及解锁单元,其被配置为通过断线对所述导弹解锁,由此可以尽可能多地减少解锁系统的附加组件的数量,以便简化设备的配置,从而保证提高 导弹,易于组装的导弹,并减少制造成本。
    • 18. 发明申请
    • AUTOMOTIVE HEAT EXCHANGER TO THE UNIFICATION OF HEADER AND TANK AND FABRICATING METHOD THEREOF
    • 汽车热交换器对罐头和罐的统一及其制造方法
    • US20100270012A1
    • 2010-10-28
    • US12310378
    • 2007-09-20
    • Kon HurJung-Soo BaeWoon-Hyeuk HanRak-Gyun KimKyung-Min Woo
    • Kon HurJung-Soo BaeWoon-Hyeuk HanRak-Gyun KimKyung-Min Woo
    • F28F9/02B21D53/02B23P15/26
    • F28D1/05391F28F9/0246Y10T29/4935Y10T29/49393
    • There are provided an automobile heat exchanger having a header formed integrally with a tank and a method of manufacturing the same, and, more particularly, an automobile heat exchanger comprising a top header pipe unit formed of a pair of header pipes and a bottom header pipe unit formed of a pair of header pipes, the top header pipe unit to be connected to top ends of tubes and the bottom header pipe unit to be connected to bottom ends thereof, and the header pipe including a header formed integrally with a tank. In the heat exchanger, each header pipe is manufactured in a welded type or folded type so that the header is formed integrally with the tank. Accordingly, unlike a conventional heat exchanger, the present invention does not require any separate metal mold or assembling means for assembling the header and tank. Consequently, the manufacturing cost is reduced and the manufacturing time is shortened by simplifying the processes. Furthermore, the pressure strength in the header-tank increases and the risk of leaking a heat exchanging medium decreases, to increase the efficiency of heat exchange. Further, the width wise sectional shapes of the top and bottom header pipe units are controlled so that the condensate generated on the surface of a plurality of the header pipes is easily discharged.
    • 提供了一种具有与罐一体形成的集装箱的汽车热交换器及其制造方法,更具体地,涉及一种汽车热交换器,其包括由一对总管和底部集管构成的顶部集管单元 单元由一对总管形成,顶部管道单元连接到管的顶端,底部总管单元连接到其底端,并且总管包括与罐一体形成的集管。 在热交换器中,每个集管被制造成焊接式或折叠式,使得集管与罐一体地形成。 因此,与传统的热交换器不同,本发明不需要用于组装集管和罐的任何单独的金属模具或组装装置。 因此,制造成本降低,并且通过简化工艺来缩短制造时间。 此外,集水箱中的压力强度增加,并且泄漏热交换介质的风险降低,以提高热交换的效率。 此外,控制顶部和底部集管单元的宽度截面形状,使得在多个集管的表面上产生的冷凝物容易排出。
    • 20. 发明申请
    • TRANSPARENT COMPOSITE COMPOUND
    • 透明复合化合物
    • US20100178478A1
    • 2010-07-15
    • US12617357
    • 2009-11-12
    • Byeong-Soo BAEJungho JINSeung Cheol YANGJi Hoon KO
    • Byeong-Soo BAEJungho JINSeung Cheol YANGJi Hoon KO
    • B32B7/02C08L83/06
    • C08K3/40H01L29/78603Y10T428/23986Y10T428/24942Y10T428/2933Y10T428/2971Y10T428/31612Y10T428/31663Y10T442/2992C08L83/04
    • Provided is a non-hydrolytic transparent composite composition having excellent transparency and heat resistance, and a low thermal expansion coefficient. Particularly, the transparent composite composition includes a glass filler dispersed in a crosslinked transparent resin produced by a non-hydrolytic reaction. The non-hydrolytic transparent siloxane resin is a resin having Si—O (siloxane) bonds, a resin having at least one kind of heterometal bonds, including Si—O bonds, or the resin further containing other ingredients. When the transparent siloxane resin produced by a non-hydrolytic reaction forms a composite in combination with the glass filler, the composite realizes high transparency and heat resistance, as well as a low thermal expansion coefficient. Therefore, the transparent composite composition is useful as a substrate for thin film transistor (TFT) devices, display devices and optical devices.
    • 本发明提供透明性,耐热性优异,热膨胀系数低的非水解透明性复合组合物。 特别地,透明复合组合物包括分散在通过非水解反应制备的交联透明树脂中的玻璃填料。 非水解性透明硅氧烷树脂是具有Si-O(硅氧烷)键的树脂,具有至少一种包含Si-O键的异金属键的树脂,或还含有其它成分的树脂。 当通过非水解反应生成的透明硅氧烷树脂与玻璃填料组合形成复合物时,该复合物实现了高透明度和耐热性以及低的热膨胀系数。 因此,透明复合组合物可用作薄膜晶体管(TFT)器件,显示器件和光学器件的衬底。