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    • 61. 发明授权
    • Dual structured contact for switchgear and switchgear having the same
    • 具有相同的开关柜和开关柜的双重结构接触
    • US08785801B2
    • 2014-07-22
    • US13452233
    • 2012-04-20
    • Hyung Choon Kim
    • Hyung Choon Kim
    • H01H3/00H01H1/38
    • H01H1/385
    • Provided is a dual structured contact for switchgear, which includes a moving contact unit being formed of a conducting material, the moving contact unit including first and second terminals, the first terminal comprising a cylinder and the second terminal extending to a driving unit such that the moving contact unit moves back and forth by the driving unit, and a fixing contact unit being formed of a conducting material, the fixing contact unit including first and second cylinders being outside and inside of the fixing contact unit with same axis, an inner part of the first cylinder being in contact with an outer part of the first terminal, and an outer part of the second cylinder being in contact with an inner part of the first terminal.
    • 本发明提供一种用于开关装置的双结构接触件,其包括由导电材料形成的可动接触单元,所述可移动接触单元包括第一和第二端子,所述第一端子包括气缸,所述第二端子延伸到驱动单元, 移动接触单元通过驱动单元来回移动,并且固定接触单元由导电材料形成,该固定接触单元包括第一和第二气缸,该第一和第二气缸位于具有相同轴线的定影接触单元的外部和内部, 所述第一气缸与所述第一端子的外部部分接触,并且所述第二气缸的外部部分与所述第一端子的内部部分接触。
    • 62. 发明授权
    • Method for methanol synthesis using synthesis gas generated by combined reforming of natural gas with carbon dioxide
    • 使用天然气与二氧化碳的组合重整产生的合成气进行甲醇合成的方法
    • US08729141B2
    • 2014-05-20
    • US13132471
    • 2009-09-14
    • Jong Wook BaeJong Hyeok OhKi Won JunYun Jo LeeJun-ho KoSeok-Lyong SongKeh-Sik Min
    • Jong Wook BaeJong Hyeok OhKi Won JunYun Jo LeeJun-ho KoSeok-Lyong SongKeh-Sik Min
    • C07C27/00
    • C07C29/154Y02P20/582C07C31/04
    • Disclosed is a method for methanol synthesis using synthesis gas obtained from reforming of natural gas with carbon dioxide. First, synthesis gas is obtained from steam carbon dioxide reforming of methane, in which steam reforming of natural gas is carried out simultaneously with carbon dioxide reforming of methane, by using a catalyst (Ni/Ce/MgAlOx, or Ni/Ce—Zr/MgAlOx) and processing condition capable of maintaining a predetermined ratio of carbon monoxide, carbon dioxide, and hydrogen [H2/(2CO+3CO2)=0.85-1.15]. Next, methanol synthesis is carried out by using the obtained synthesis gas and a catalyst system suitable for methanol synthesis with minimum byproduct formation (a catalyst system including a Cu—Zn—Al oxide containing CuO, ZnO, and Al2O3 at a predetermined ratio in combination with a cerium-zirconium oxide obtained by a sol-gel process). In addition, unreacted synthesis gas remaining after the operation of methanol synthesis is recycled efficiently to improve the carbon availability (methane and CO2 availability) and energy efficiency in the overall process.
    • 公开了使用由二氧化碳重整天然气得到的合成气进行甲醇合成的方法。 首先,通过使用催化剂(Ni / Ce / MgAlO x或Ni / Ce-Zr / Ni)与甲烷的二氧化碳重整与甲烷的二氧化碳重整同时进行天然气的蒸汽重整,从蒸汽二氧化碳重整获得合成气, MgAlOx)和能够保持一氧化碳,二氧化碳和氢气的预定比例的加氢条件[H 2 /(2CO + 3CO 2)= 0.85-1.15]。 接下来,通过使用所得到的合成气和适合于具有最小副产物形成的甲醇合成的催化剂体系(包含含有CuO,ZnO和Al 2 O 3的Cu-Zn-Al氧化物以预定比例组合的催化剂体系进行甲醇合成) 与通过溶胶 - 凝胶法获得的铈 - 氧化锆)。 此外,在甲醇合成操作之后残留的未反应的合成气被有效地再循环以提高整个过程中的碳利用率(甲烷和二氧化碳可用性)和能量效率。
    • 63. 发明申请
    • 3-WAY SWITCH FOR A GAS-INSULATED APPARATUS
    • 用于气体绝缘设备的3路开关
    • US20140116859A1
    • 2014-05-01
    • US14126532
    • 2012-02-21
    • Chul-Ho Lee
    • Chul-Ho Lee
    • H01H33/42
    • H01H33/42H01H1/38H01H31/003H01H31/32H01H33/64
    • Provided is a 3-way switch for a gas-insulated apparatus, including a pressure container having a space part therein, the pressure container including a first connecting part in an upper portion of the space part and a second connecting part in a side portion of the space part such that the second connecting part is perpendicular to the first connecting part, a support conductor provided in the space part, the support conductor having a first guide hole defined in a direction perpendicular to the direction of the first connecting part and a second guide hole defined in a direction parallel to the direction of the second connecting part, a disconnecting switch (DS) operating part slidably coupled to the first guide hole, the DS operating part being connected to or separated from the first connecting part by means of an insertion or extrusion thereof, an earthing switch (ES) operating part slidably coupled to the second guide hole such that the ES operating part is perpendicular to the disconnecting switch operating part, the ES operating part being connected to or separated from the second connecting part through an insertion or protrusion thereof, and a main lever, one end of which is rotatably coupled to the support conductor and the other end of which is eccentrically rotated and rotatably connected to the DS operating part and the ES operating part so as to linearly slide the DS operating part and the ES operating part into neutral positions.
    • 本发明提供一种用于气体绝缘设备的三通开关,其包括在其中具有空间部分的压力容器,所述压力容器包括位于所述空间部分的上部中的第一连接部分和在所述空间部分的侧部中的第二连接部分 所述空间部分使得所述第二连接部分垂直于所述第一连接部分,设置在所述空间部分中的支撑导体,所述支撑导体具有沿垂直于所述第一连接部分的方向的方向限定的第一引导孔, 引导孔,其在与第二连接部件的方向平行的方向上限定;可拆卸开关(DS)操作部件,其可滑动地联接到第一引导孔,DS操作部件通过第一连接部件与第一连接部件连接或与第一连接部件分离; 插入或挤出;接地开关(ES)操作部分,其可滑动地联接到第二引导孔,使得ES操作部分垂直于d 连接开关操作部分,ES操作部分通过其插入或突出连接到第二连接部分或与第二连接部分离,以及主杆,其一端可旋转地联接到支撑导体,另一端偏心 旋转并可旋转地连接到DS操作部和ES操作部,以将DS操作部和ES操作部线性地滑动到中立位置。
    • 65. 发明申请
    • GAS INSULATED SWITCHGEAR WITH WITHDRAWABLE CIRCUIT BREAKER UNIT
    • 气体绝缘开关与可拆卸电路断路器单元
    • US20130170104A1
    • 2013-07-04
    • US13600807
    • 2012-08-31
    • Min Hyung KIM
    • Min Hyung KIM
    • H02B7/01H02B11/00
    • H02B7/01H02B1/22H02B11/00H02B11/12H02B13/035
    • A GIS (Gas Insulated Switchgear) includes a main bus compartment including a main bus-bar unit, a transfer bus compartment including a transfer bus-bar unit, a sealed circuit breaker compartment including a circuit breaker unit and a load side compartment including a current transforming unit and a transfer bus conductor electrically coupling the transfer bus-bar unit and the current transformer unit. The circuit breaker unit is contained in the sealed circuit breaker compartment being separately independent from other compartments. The transfer bus conductor passes from the transfer bus-bar unit through the load side compartment to the current transformer unit without passing through the circuit breaker compartment. The sealed circuit breaker compartment and the load side compartment do not share insulating gas.
    • GIS(气体绝缘开关设备)包括主总线室,其包括主母线单元,包括传输母线单元的传输总线室,包括断路器单元的密封断路器室和包括电流的负载侧室 变压单元和将传输总线单元和电流互感器单元电耦合的传输总线导体。 断路器单元包含在密封断路器室中,与其它隔室分开独立。 传输总线导体从传输母线单元通过负载侧隔室传递到电流互感器单元,而不通过断路器室。 密封式断路器室和负载侧隔室不共享绝缘气体。
    • 66. 发明申请
    • FUEL INJECTION PUMP INCLUDING A VARIABLE PRESSURE COMPARTMENT
    • 燃油喷射泵,包括一个可变的压力舱
    • US20130156620A1
    • 2013-06-20
    • US13819005
    • 2011-03-21
    • Deuk-Jin ParkJu-Tae KimDong-Hun KimWook-Hyeon YoonByong-Seok KimTae-Hyung ParkEun HaBeom-Yong No
    • Deuk-Jin ParkJu-Tae KimDong-Hun KimWook-Hyeon YoonByong-Seok KimTae-Hyung ParkEun HaBeom-Yong No
    • F04B7/00
    • F04B7/00F02M59/022F02M59/20F02M59/205F02M59/22F02M59/462F04B1/053F04B11/0016F04B11/0033F04B49/12F04B49/16
    • The present invention relates to a fuel injection pump having a variable pressure chamber which can adjust a fuel injection timing according to each engine load with a simple structure and a lower manufacture cost compared to the conventional injection pump without a separate apparatus for moving a barrel as well as not modifying a shape of a plunger.The fuel injection pump having the variable pressure chamber further includes a pressure adjustment means including a contact plug of which lower portion is inserted and installed in the upper cover; a cylinder of which lower portion is inserted and installed in the contact plug and having the variable pressure chamber formed inside thereof; a main fuel pressing hole formed in the upper cover and the barrel to connect the variable pressure chamber of the cylinder and a plunger insertion hole of the barrel; a piston installed in the variable pressure chamber of the cylinder to enable an upward and downward sliding motion thereof; and a manual pressure adjustment unit installed on an upper portion of the cylinder to enable a vertical height adjustment to elastically support the upper portion of the piston.
    • 本发明涉及一种具有可变压力室的燃料喷射泵,该可变压力室与常规注射泵相比,可以以简单的结构和较低的制造成本根据每个发动机负载调节燃料喷射正时,而不需要用于移动筒的单独装置 以及不改变柱塞的形状。 具有可变压力室的燃料喷射泵还包括压力调节装置,包括其下部插入并安装在上盖中的接触塞; 其下部插入并安装在接触塞中并具有形成在其中的可变压力室的圆筒; 主燃料按压孔,其形成在所述上盖和所述筒体中,以连接所述气缸的可变压力室和所述筒的柱塞插入孔; 安装在所述气缸的所述可变压力室中以使其能够向上和向下滑动的活塞; 以及安装在气缸的上部上的手动压力调节单元,以能够进行垂直高度的调整,以弹性地支撑活塞的上部。
    • 67. 发明申请
    • METHOD FOR FABRICATING A BACK CONTACT SOLAR CELL
    • 制造背接触太阳能电池的方法
    • US20120282732A1
    • 2012-11-08
    • US13519249
    • 2011-01-18
    • Min Sung JeonWon Jae LeeEun Chel ChoJoon Sung Lee
    • Min Sung JeonWon Jae LeeEun Chel ChoJoon Sung Lee
    • H01L31/18
    • H01L31/1804H01L31/02363H01L31/0682Y02E10/547Y02P70/521
    • The present disclosure relates to a method for manufacturing a back electrode-type solar cell. The method for manufacturing a back electrode-type solar cell disclosed herein includes: A method for manufacturing a back electrode-type solar cell, comprising: preparing an n-type crystalline silicon substrate; forming a thermal diffusion control film on a front surface, a back surface and a side surface of the substrate; forming a p-type impurity region by implanting p-type impurity ions onto the back surface of the substrate; patterning the thermal diffusion control film so that the back surface of the substrate is selectively exposed; and forming a high-concentration back field layer (n+) at an exposed region of the back surface of the substrate and a low-concentration front field layer (n−) at the front surface of the substrate by performing a thermal diffusion process, and forming a p+ emitter region by activating the p-type impurity region.
    • 本发明涉及背电极型太阳能电池的制造方法。 本文公开的背面电极型太阳能电池的制造方法包括:背面电极型太阳能电池的制造方法,其包括:准备n型结晶硅基板; 在所述基板的前表面,背面和侧面上形成热扩散控制膜; 通过将p型杂质离子注入到衬底的背面上来形成p型杂质区; 图案化热扩散控制膜,使得衬底的背面被选择性地暴露; 以及通过进行热扩散处理在所述基板的背面的露出区域和所述基板的前表面处形成低浓度前场层(n),形成高浓度背景层(n +),以及 通过激活p型杂质区域形成p +发射极区域。
    • 68. 发明申请
    • SYSTEM FOR PREVENTING RUPTURE OF TRANSFORMER TANK
    • 防止变压器油箱破裂的系统
    • US20090072940A1
    • 2009-03-19
    • US12299733
    • 2006-10-10
    • Jae-Cheol YangJang-Kwan KimHeung-Seog Seo
    • Jae-Cheol YangJang-Kwan KimHeung-Seog Seo
    • H01F27/02
    • H01F27/14H01F27/025H01F27/12H01F27/321H01F2027/404
    • Disclosed herein is a rupture prevention system, which increases a limit of the deformation of a transformer tank, thus primarily preventing a sudden rise in pressure, and which increases the number of rupture disc per unit area, thus preventing the rupture of the tank wherever the arc is generated in tank. The system includes a support part installed in the transformer tank and supporting a shielding plate so that it is not directly attached to the transformer tank. A plurality of rupture discs is mounted to pipes extending outwards from the transformer tank, and is ruptured when pressure in the transformer tank reaches a predetermined pressure level. A plurality of relief tanks is vertically installed at a position neighboring the transformer, and is coupled to the pipes. Further, an oil gauge is mounted at a lower position in each of the relief tanks, and generates a signal when the insulating oil flows into the relief tank.
    • 这里公开了一种防裂系统,其增加了变压器箱的变形极限,从而主要防止压力突然升高,并且每单位面积增加了破裂盘的数量,从而防止了罐的破裂, 在水箱中产生电弧。 该系统包括安装在变压器箱中并支撑屏蔽板的支撑部件,使其不直接连接到变压器箱。 多个破裂盘安装在从变压器箱向外延伸的管道上,并且当变压器箱中的压力达到预定压力水平时破裂。 多个泄压罐垂直安装在与变压器相邻的位置处,并且联接到管道。 此外,油压计安装在每个泄压罐中的较低位置处,并且当绝缘油流入泄压罐时产生信号。
    • 69. 发明申请
    • Method of measuring thickness of thin film using infrared thermal imaging system
    • 使用红外热成像系统测量薄膜厚度的方法
    • US20050263706A1
    • 2005-12-01
    • US10869903
    • 2004-06-18
    • Il-Seok ParkSang-Min Park
    • Il-Seok ParkSang-Min Park
    • G01B11/06G01J5/00G01J5/02
    • G01B11/0658G01J5/0003G01J2005/0077G01J2005/0081
    • The present invention relates to a method of measuring the thickness of a thin film layer using an infrared thermal imaging system. The object of the present invention is to provide a method of measuring the thickness of a thin film layer fast in such a way as to obtain the two-dimensional (2-D) thickness distribution of the thin film layer at one time by measuring infrared spontaneous light emitted from a target surface using an infrared imaging camera. The present invention includes a means for measuring the thickness of a thin film coated on a flat base surface, which outputs the thickness of the thin film layer based on the emissivity of the base surface and the coating layer and the intensity of the infrared spontaneous light that is measured on the flat target surface and converted into temperature, and a means for measuring the thickness of a thin film layer coated on a curved base surface, which outputs the thickness of the thin film layer while considering directional emissivity attributable to the materials of the base surface and the coating layer.
    • 本发明涉及使用红外热成像系统测量薄膜层的厚度的方法。 本发明的目的是提供一种通过测量红外线来一次获得薄膜层的二维(2-D)厚度分布的方式来快速测量薄膜层的厚度。 使用红外成像照相机从目标表面发射的自发光。 本发明包括用于测量涂覆在平坦基面上的薄膜的厚度的装置,其基于基底表面和涂层的发射率和红外自发光的强度输出薄膜层的厚度 在平坦目标表面上测量并转换成温度,以及用于测量涂覆在弯曲基底表面上的薄膜层的厚度的装置,其输出薄膜层的厚度,同时考虑归因于材料的方向发射率 基面和涂层。
    • 70. 发明申请
    • Automatic pulse plasma welding method and apparatus for forming lap joint between membrane sheets
    • 自动脉冲等离子体焊接方法和在膜片之间形成搭接的装置
    • US20050247680A1
    • 2005-11-10
    • US10839263
    • 2004-05-06
    • Oh-Jong KwonHyung-Shik KimKyeong-Ju KimYoung-Jin Park
    • Oh-Jong KwonHyung-Shik KimKyeong-Ju KimYoung-Jin Park
    • B23K10/00B23K10/02
    • B23K10/006B23K10/02B23K2101/18
    • Disclosed herein is an automatic pulse plasma welding method and apparatus for forming a lap joint between membrane sheets, which applies plasma welding to a lap joint between membrane sheets to improve working efficiency and productivity, and which provides optimal welding conditions to the respective regions of the lap joint between membrane sheets to improve welding quality. In the present invention, each of corrugated parts of a lap joint between membrane sheets having flat parts and the corrugated parts is divided into a plurality of regions, optimal welding conditions are provided to each of the regions, a corrugated part is sensed by a photo sensor to improve sensitivities of two touch sensors, a θ axis of a welding torch moves by a difference value between outputs of the two touch sensors, the angle of the welding torch at each of the corrugated parts is recognized by output voltage values of a potentiometer mounted on the θ axis of the welding torch, and if a detection voltage corresponding to each of the regions is recognized, welding conditions of a corresponding region are varied/set to an optimal welding condition, thus enabling the lap joint between membrane sheets to be pulse plasma welded.
    • 本发明公开了一种用于在膜片之间形成搭接接头的自动脉冲等离子体焊接方法和装置,其将等离子体焊接施加到膜片之间的搭接接头,以提高工作效率和生产率,并且为各个区域提供最佳的焊接条件 膜片之间搭接,提高焊接质量。 在本发明中,将具有平坦部分的膜片与波纹部分之间的搭接接头的每个波纹部分分成多个区域,为每个区域提供最佳的焊接条件,波纹部分由照片感测 传感器,以提高两个触摸传感器的灵敏度,焊炬的θ轴移动两个触摸传感器的输出之间的差值,每个波纹部分处的焊炬的角度由电位器的输出电压值 安装在焊炬的θ轴上,并且如果识别到与每个区域相对应的检测电压,则相应区域的焊接条件被改变/设置为最佳焊接条件,从而使得膜片之间的搭接可以是 脉冲等离子焊接。