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    • 2. 发明申请
    • System for Correcting Turbo Lag
    • 纠正涡轮滞后系统
    • US20120079823A1
    • 2012-04-05
    • US12957220
    • 2010-11-30
    • Jin Wook SONWon Seok ChangJeong Hwa ChaJin Kook KongSoo Hyung WooYoung Nam Kim
    • Jin Wook SONWon Seok ChangJeong Hwa ChaJin Kook KongSoo Hyung WooYoung Nam Kim
    • F02D23/00F04B35/00F02M15/00
    • F02B37/16F02B37/04F02B39/04F02B39/10F02B39/12Y02T10/144
    • A system for correcting turbo lag may include an engine provided with a plurality of cylinders, an intake manifold for supplying air to the plurality of cylinders, and an exhaust manifold for exhausting exhaust gas generated in the plurality of cylinders, an intake passage connected to the intake manifold so as to supply fresh air to the intake manifold, an exhaust passage connected to the exhaust manifold so as to exhaust the exhaust gas gathered in the exhaust manifold, a turbo charger provided with a turbine mounted at the exhaust manifold or the exhaust passage and rotated by the exhaust gas and a first compressor mounted at the intake passage and connected to the turbine so as to rotate with the turbine and compress the air of the intake passage, a bypass passage branching off at a first point of the intake passage and joining the intake passage at a second point of the intake passage downstream of the first point, a second compressor mounted at the bypass passage and compressing the air passing through the bypass passage, and driving means generating power for operating the second compressor and selectively supplying the power to the second compressor through a power delivery device, wherein the power delivery device comprises a plurality of pulleys, at least one of belts and shafts connecting each pulley to the second compressor, the driving means, or other pulley, and a tensioner maintaining tension of the belt.
    • 一种用于校正涡轮滞后的系统可以包括设置有多个气缸的发动机,用于向多个气缸供给空气的进气歧管和用于排出在多个气缸中产生的废气的排气歧管,连接到 进气歧管,以便向进气歧管供应新鲜空气,连接到排气歧管以排出聚集在排气歧管中的废气的排气通道,设置有安装在排气歧管或排气通道 并且由排气旋转,第一压缩机安装在进气通道处并连接到涡轮机,以与涡轮一起旋转并压缩进气通道的空气;旁路通道在进气通道的第一点分支; 在第一点下游的进气通道的第二点处连接进气通道,安装在旁路通道并压缩的第二压缩机 通过旁通通道的空气和产生用于操作第二压缩机的动力的驱动装置,并且通过动力输送装置选择性地将功率供应到第二压缩机,其中动力输送装置包括多个滑轮,至少一个皮带和 将每个滑轮连接到第二压缩机,驱动装置或其它滑轮的轴和保持皮带张力的张紧器。
    • 4. 发明申请
    • COMPRESSION IGNITION GASOLINE ENGINE
    • 压缩点火汽油发动机
    • US20110108001A1
    • 2011-05-12
    • US12842442
    • 2010-07-23
    • Ju Hun LeeJeong Hwa ChaJin-Kook KongYoung Nam Kim
    • Ju Hun LeeJeong Hwa ChaJin-Kook KongYoung Nam Kim
    • F02B1/12
    • F02B17/005F02B1/12F02B23/101F02D13/0207F02D41/402Y02T10/125Y02T10/18
    • A compression ignition gasoline engine uses low-cetane number fuel, such as gasoline. The engine includes a combustion control device having an injector directly injecting fuel into a combustion chamber, intake and exhaust valves, and a variable valve device changing a valve timing, in which the compression ignition gasoline engine includes: at least two intake valves and two exhaust valves; a spark plug positioned at the center portion of the combustion chamber; and an injector positioned adjacent to the spark plug toward the center portion of the combustion chamber, in which the exhaust valve is a symmetric valve lift in which the lift and the opening section of the tow exhaust valves are the same in low lift, and the intake valve is an asymmetric valve lift in which the lift and the opening of the two intake valves are different in the low lift.
    • 压燃点火汽油机采用低十六烷值燃料,如汽油。 发动机包括燃料控制装置,其具有将燃料直接喷射到燃烧室中的喷射器,进气和排气阀以及改变气门正时的可变气门装置,其中压燃点火汽油机包括:至少两个进气门和两个排气 阀门 位于所述燃烧室的中心部分的火花塞; 以及朝向燃烧室的中心部分位于火花塞附近的喷射器,其中排气门是对称的气门升程,其中,在低升程中,牵引排气门的升程和开启部分相同, 进气阀是不对称的气门升程,其中两个进气门的升程和开度在低升程中是不同的。
    • 9. 发明授权
    • Process for preparing carbon nanotube electrode comprising sulfur or metal nanoparticles as a binder
    • 制备包含硫或金属纳米粒子作为粘合剂的碳纳米管电极的方法
    • US07531267B2
    • 2009-05-12
    • US10783265
    • 2004-02-19
    • Young Nam Kim
    • Young Nam Kim
    • H01M4/96H01M4/58H01M4/88
    • H01G9/155B82Y30/00H01M4/583H01M4/621H01M4/96H01M8/0234Y02E60/13
    • The present invention provides an electrode made of carbon nanotubes or carbon nanofibers and a process for preparing the same. The electrode comprising a current collector, sulfur or metal nanoparicles as a binder, and carbon nanotubes or carbon nanofibers is characterized in that the sulfur or metal nanoparticles are bonded, deposited, or fused on the surfaces of the carbon nanotubes or carbon nanofibers so that the carbon nanotubes or carbon nanofibers are bonded to each other and also bonded to the current collector. The electrode prepared according to the present invention exhibits low internal resistance, strong durability and low equivalent series resistance, and therefore the electrode can be effectively used for secondary batteries, supercapacitors or fuel cells.
    • 本发明提供一种由碳纳米管或碳​​纳米纤维制成的电极及其制备方法。 包含作为粘合剂的集电体,硫或金属纳米颗粒和碳纳米管或碳​​纳米纤维的电极的特征在于,将硫或金属纳米颗粒结合,沉积或熔合在碳纳米管或碳​​纳米纤维的表面上,使得 碳纳米管或碳​​纳米纤维彼此键合并且也结合到集电体。 根据本发明制备的电极显示出低内阻,强耐久性和低等效串联电阻,因此电极可以有效地用于二次电池,超级电容器或燃料电池。
    • 10. 发明授权
    • Method for setting an RF channel in a video cassette recorder
    • 用于在录像机中设置RF频道的方法
    • US07315687B2
    • 2008-01-01
    • US10810798
    • 2004-03-29
    • Young Nam Kim
    • Young Nam Kim
    • H04N7/00H04N5/91H04N7/173
    • H03J1/0008
    • In a method for setting an RF channel in a VCR (video cassette recorder) system connected to a TV, it is checked whether a signal for setting a target RF channel in the VCR system is generated, e.g., by pressing a button installed on a remote control unit for the VCR system. Then, if the signal for setting the target RF channel is generated, the target RF channel is searched and a VCR message signal to be displayed on a screen of the TV is loaded on a carrier wave frequency corresponding to a current RF channel. Subsequently, a user confirms that the current RF channel is set as the target RF channel by pressing the button. In this way, the user can easily set an RF channel in a VCR system without setting a TV channel.
    • 在用于设置连接到TV的VCR(录像机)系统中的RF信道的方法中,检查在VCR系统中是否产生用于设置目标RF信道的信号,例如通过按下安装在VCR VCR系统的遥控单元。 然后,如果产生用于设定目标RF信道的信号,则搜索目标RF信道,并且在TV的屏幕上显示的VCR消息信号被加载在与当前RF信道相对应的载波频率上。 随后,用户通过按下按钮确认当前RF信道被设置为目标RF信道。 以这种方式,用户可以容易地在VCR系统中设置RF信道而不设置TV频道。