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    • 5. 发明授权
    • Method for manufacturing outlet nozzles for rocket engines
    • 制造火箭发动机出口喷嘴的方法
    • US06789316B2
    • 2004-09-14
    • US10604321
    • 2003-07-10
    • Jan HägganderJan Lundgren
    • Jan HägganderJan Lundgren
    • B23P1500
    • F02K9/64F02K9/97F05D2230/20F05D2250/19F05D2250/292F05D2250/71F05D2260/20Y10T29/49346Y10T29/49826Y10T29/49995
    • Method and arrangement for manufacturing an outlet nozzle (10) for use in a liquid fuel rocket engine. The nozzle forms a body of revolution having an axis of revolution and a cross section that varies in diameter along said axis. The nozzle has a wall structure comprising a plurality of mutually adjacent cooling channels extending substantially in parallel from the inlet end (12) of the nozzle to its outlet end (13). The method includes providing a plurality of preprocessed profile members, each having a web and flanges in opposite directions from said web. Each profile member is machined to present a longitudinally gradually tapering width. The member is curved to conform with the wall section of the nozzle, and members are joined by welding the flanges to form a bell-shaped nozzle structure with cooling channels (11) formed by adjacent webs and adjacent pairs of flanges.
    • 用于制造用于液体燃料火箭发动机的出口喷嘴(10)的方法和装置。 喷嘴形成具有沿所述轴线的直径变化的旋转轴线和截面的旋转体。 喷嘴具有包括多个相互相邻的冷却通道的壁结构,冷却通道从喷嘴的入口端(12)基本上平行延伸到其出口端(13)。 该方法包括提供多个预处理轮廓构件,每个预成型轮廓构件具有腹板和与所述腹板相反方向的凸缘。 每个轮廓构件被加工以呈现纵向逐渐变窄的宽度。 该构件被弯曲以符合喷嘴的壁部分,并且通过焊接凸缘来连接构件以形成钟形喷嘴结构,其具有由相邻的腹板和相邻的凸缘对形成的冷却通道(11)。
    • 6. 发明授权
    • Capacitor charger system and digital control module and isolated acquisition module for such a capacitor charger system
    • 电容充电器系统和数字控制模块以及这种电容充电系统的隔离采集模块
    • US08797001B2
    • 2014-08-05
    • US13378795
    • 2009-06-30
    • Klas ElmqvistCarl HartmanMagnus GraasAndreas WickströmJonas GustafssonJan LundgrenWalter Frederick John Crewson
    • Klas ElmqvistCarl HartmanMagnus GraasAndreas WickströmJonas GustafssonJan LundgrenWalter Frederick John Crewson
    • H02J7/00
    • H02J7/0093H02J7/345H03K3/53
    • The invention relates to a capacitor charger system (100) comprising a capacitor charger module (110), an isolated acquisition module (120), and a digital control module (130). The isolated acquisition module (120) is configured for sampling an output voltage level of said capacitor charger module (110). The digital control module (130) is connected to the isolated acquisition module (120) via a bi-directional link and connected to the capacitor charger module (110) via a control signal interface. The digital control module (130) is configured for generating control signal information and synchronization signal information based on data representative of sampled output voltage levels received via the bi-directional link from the isolated acquisition module. The digital control module (130) is further configured for sending the control signal information to the capacitor charger module (110) via the control signal interface and for sending the synchronization signal information to the isolated acquisition module (120) via the bidirectional link. The capacitor charger module (110) is controlled based on the control signal information from the digital control module, and the isolated acquisition module (120) is configured for performing sampling based on the synchronization signal information.
    • 本发明涉及一种包括电容器充电器模块(110),隔离采集模块(120)和数字控制模块(130)的电容器充电器系统(100)。 隔离采集模块(120)被配置为对所述电容器充电器模块(110)的输出电压电平进行采样。 数字控制模块(130)经由双向链路连接到隔离采集模块(120),并通过控制信号接口连接到电容充电器模块(110)。 数字控制模块(130)被配置为基于表示经由来自隔离采集模块的双向链路接收的采样输出电压电平的数据来产生控制信号信息和同步信号信息。 数字控制模块(130)还被配置为经由控制信号接口将控制信号信息发送到电容器充电器模块(110),并且经由双向链路将同步信号信息发送到隔离采集模块(120)。 基于来自数字控制模块的控制信号信息来控制电容器充电器模块(110),并且隔离采集模块(120)被配置为基于同步信号信息进行采样。
    • 7. 发明申请
    • CAPACITOR CHARGER SYSTEM AND DIGITAL CONTROL MODULE AND ISOLATED ACQUISITION MODULE FOR SUCH A CAPACITOR CHARGER SYSTEM
    • 电容充电器系统和数字控制模块和这种电容充电器系统的隔离采集模块
    • US20120086410A1
    • 2012-04-12
    • US13378795
    • 2009-06-30
    • Klas ElmqvistCarl HartmanMagnus GraasAndreas WickströmJonas GustafssonJan LundgrenWalter Frederick John Crewson
    • Klas ElmqvistCarl HartmanMagnus GraasAndreas WickströmJonas GustafssonJan LundgrenWalter Frederick John Crewson
    • H02J7/00
    • H02J7/0093H02J7/345H03K3/53
    • The invention relates to a capacitor charger system (100) comprising a capacitor charger module (110), an isolated acquisition module (120), and a digital control module (130). The isolated acquisition module (120) is configured for sampling an output voltage level of said capacitor charger module (110). The digital control module (130) is connected to the isolated acquisition module (120) via a bi-directional link and connected to the capacitor charger module (110) via a control signal interface. The digital control module (130) is configured for generating control signal information and synchronization signal information based on data representative of sampled output voltage levels received via the bi-directional link from the isolated acquisition module. The digital control module (130) is further configured for sending the control signal information to the capacitor charger module (110) via the control signal interface and for sending the synchronization signal information to the isolated acquisition module (120) via the bidirectional link. The capacitor charger module (110) is controlled based on the control signal information from the digital control module, and the isolated acquisition module (120) is configured for performing sampling based on the synchronization.
    • 本发明涉及一种包括电容器充电器模块(110),隔离采集模块(120)和数字控制模块(130)的电容器充电器系统(100)。 隔离采集模块(120)被配置为对所述电容器充电器模块(110)的输出电压电平进行采样。 数字控制模块(130)经由双向链路连接到隔离采集模块(120),并通过控制信号接口连接到电容充电器模块(110)。 数字控制模块(130)被配置为基于表示经由来自隔离采集模块的双向链路接收的采样输出电压电平的数据来产生控制信号信息和同步信号信息。 数字控制模块(130)还被配置为经由控制信号接口将控制信号信息发送到电容器充电器模块(110),并且经由双向链路将同步信号信息发送到隔离采集模块(120)。 基于来自数字控制模块的控制信号信息来控制电容器充电器模块(110),并且隔离采集模块(120)被配置为基于同步进行采样。
    • 8. 发明申请
    • GAS TURBINE CASING FOR ENCLOSING A GAS TURBINE COMPONENT
    • 用于封装气体涡轮组件的气体涡轮机壳体
    • US20090180872A1
    • 2009-07-16
    • US11576212
    • 2005-09-28
    • Jan Lundgren
    • Jan Lundgren
    • F01D25/24B23P15/04
    • F01D25/145F01D25/26F04D29/522F05D2230/232F05D2240/40F05D2250/141F05D2250/311F23R3/005Y02T50/671Y02T50/675Y10T29/4932
    • A gas turbine casing for enclosing a gas turbine component, such as a fan, a compressor, a combustion chamber or a turbine is provided. The casing includes a double wall structure having a first inner tube and a second outer tube, the first inner tube and the second outer tube extending around a geometric longitudinal axis, which is intended to basically coincide with a longitudinal geometric central axis of a gas turbine. The first inner tube and the second outer tube overlap one another when these are viewed in a radial direction, a gap being formed between the outer boundary surface of the first inner tube and the inner boundary surface of the second outer tube. The double wall structure furthermore has a plurality of stays which take the form of plates, which are spaced at an interval from one another and extend radially between the first inner tube and the second outer tube, and which stays connect the first inner tube and the second outer tube to one another.
    • 提供一种用于封闭燃气轮机部件的燃气轮机壳体,例如风扇,压缩机,燃烧室或涡轮机。 壳体包括具有第一内管和第二外管的双壁结构,第一内管和第二外管围绕几何纵向轴线延伸,其几乎与燃气轮机的纵向几何中心轴线重合 。 当从径向观察时,第一内管和第二外管彼此重叠,在第一内管的外边界面和第二外管的内边界面之间形成间隙。 双壁结构还具有多个支撑板,它们呈板状的形式,它们彼此间隔开并且在第一内管和第二外管之间径向延伸,并且其保持连接第一内管和第二内管 第二外管彼此。