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    • 1. 发明申请
    • CAM DRIVEN EXHAUST VALVE ACTUATION SYSTEM FOR LARGE TWO STROKE DIESEL ENGINE
    • 用于大型两轮柴油发动机的CAM驱动排气阀执行系统
    • WO2010006599A1
    • 2010-01-21
    • PCT/DK2008/000266
    • 2008-07-14
    • MAN DIESEL FILIAL AF MAN DIESEL SE, TYSKLANDPEDERSEN, Erik, Due
    • PEDERSEN, Erik, Due
    • F01L9/02F01L1/08F02M47/04F02M59/10
    • F01L9/021F01L9/023F01L9/025F01L2001/34446F02M47/04F02M59/105
    • A large two-stroke diesel engine (1) with an exhaust valve actuating system including a camshaft (28) and hydraulic pushrods that include a piston pump (32) driven by the camshaft coupled via conduit (36) to a hydraulic exhaust valve actuator (34) for moving the exhaust valve (11) concerned. The camshaft is provided with an exhaust cam (29) for each cylinder, and the exhaust cam is profiled with an increased lift (30) exceeding the lift required for opening the exhaust valve. A portion of the additional volume of hydraulic fluid generated by the increased lift of the hydraulic piston pumps is diverted from the hydraulic push rod and delivered to a consumer of pressurized hydraulic fluid that is associated with the engine. The other portion of the additional volume of hydraulic fluid results in additional exhaust valve lift. The energy stored in the air spring (33) urging the exhaust valve to close is returned to the camshaft during the return stroke of the exhaust valve.
    • 一种具有排气门致动系统的大型二冲程柴油发动机(1),包括凸轮轴(28)和液压推杆,其包括由通过导管(36)联接到液压排气阀致动器(36)的凸轮轴驱动的活塞泵(32) 34),用于移动所述排气阀(11)。 凸轮轴设置有用于每个气缸的排气凸轮(29),并且排气凸轮被成型为具有超过打开排气阀所需的升程的提升(30)。 通过液压活塞泵的增加的升程产生的附加体积的液压流体的一部分从液压推杆转向并被输送到与发动机相关联的加压液压流体的消耗器。 附加体积的液压流体的另一部分导致额外的排气门升程。 储存在促使排气阀关闭的空气弹簧(33)中的能量在排气门的返回行程期间返回到凸轮轴。
    • 3. 发明申请
    • A VOYAGE DATA RECORDER
    • VOYAGE数据记录器
    • WO2009068255A1
    • 2009-06-04
    • PCT/EP2008/010015
    • 2008-11-26
    • DANELEC ELECTRONICS A/SVIDECRANTZ, Peter
    • VIDECRANTZ, Peter
    • G07C5/08H05K5/02
    • G07C5/085H05K5/0213
    • The present invention relates to a hardened voyage data recorder. The data recorder comprises an inner capsule defining an interior cavity containing a data storage means. A thermal mass composition is surrounding the inner capsule, and an isolation material is surrounding the thermal mass composition. An outer capsule is surrounding the isolation material, which outer capsule is closed by a lid, said lid being arranged above and at a distance to the isolation material to thereby define a top cavity between the inside of the outer capsule lid and the isolation material. The top cavity contains a communication circuit board, where electronic communication circuitry is arranged on the communication circuit board. A mounting plate may be arranged above or on top of the isolation material, and the outer capsule lid may be arranged above and at a distance to the mounting plate thereby defining the top cavity between the inside of the outer capsule lid and the mounting plate. The data storage means may comprise a flash memory chip.
    • 本发明涉及一种硬化航行数据记录器。 数据记录器包括限定包含数据存储装置的内腔的内胶囊。 热质量组合物围绕内部胶囊,并且隔离材料围绕热质量组合物。 外壳围绕隔离材料,外壳由盖封闭,所述盖设置在隔离材料的上方并与隔离材料一定距离,从而在外胶囊盖的内部和隔离材料之间限定顶腔。 顶部空腔包含通信电路板,其中电子通信电路布置在通信电路板上。 安装板可以布置在隔离材料的上方或上方,并且外部胶囊盖可以布置在安装板的上方和一定距离处,从而限定外部胶囊盖的内部和安装板之间的顶部空腔。 数据存储装置可以包括闪存芯片。
    • 4. 发明申请
    • DIRECTING SHOE INSOLE
    • 指导鞋子
    • WO2008151642A1
    • 2008-12-18
    • PCT/EP2007/005168
    • 2007-06-12
    • NOKIA CORPORATIONRADIVOJEVIC, ZoranA., UUSITALO, Mikko
    • RADIVOJEVIC, ZoranA., UUSITALO, Mikko
    • A43B3/00A43B17/00A63B69/00G06F13/00G09B19/00G08B6/00G06F3/01A61B5/103
    • A43B3/00A43B3/0005A43B17/00A61B5/1038A63B71/0686A63B71/1225G06F3/011G09B19/0015
    • A shoe insole (101,102) is provided with skin transducers (131,132,133) that are coupled to a controller which in turn receives suggestive activation signals via a wireless receiver (127). A profile associated with the music and containing suggestive activation signals corresponding to dance steps that are synchronized with said music are stored in the electronic device. The electronic device transmits the suggestive activation signals via a wireless transmitter to the receiver of the shoe insole. The activation signals assist the user in performing the correct dance steps in the rhythm with the song that is played on a music player in the electronic device. Transducers implemented in a shoe insole provide tandem operation stimulating and sensing. The sensing is used for sending back information about walking/dancing style. Such information is further analyzed and exploited for health and wellness applications and/or low-level low cognitive effort security applications
    • 鞋垫(101,102)设置有皮肤换能器(131,132,133),皮肤换能器(131,132,133)耦合到控制器,控制器又经由无线接收器(127)接收暗示的激活信号。 与音乐相关联并且包含与所述音乐同步的跳舞步骤相对应的暗示激活信号的简档被存储在电子设备中。 电子设备经由无线发射机将提示激活信号发送到鞋垫的接收器。 激活信号帮助用户使用在电子设备中的音乐播放器上播放的歌曲来执行节奏中的正确舞蹈步骤。 在鞋垫中实施的传感器提供串联操作刺激和感测。 感应用于发送关于步行/跳舞风格的信息。 进一步分析和利用这些信息用于健康和健康应用和/或低水平的认知努力安全应用
    • 8. 发明申请
    • TACTILE TOUCH SCREEN
    • 触控触屏
    • WO2008037275A1
    • 2008-04-03
    • PCT/EP2006/009377
    • 2006-09-27
    • NOKIA CORPORATIONLAITINEN, Pauli
    • LAITINEN, Pauli
    • G06F3/041G06F3/01
    • G06F3/016G06F3/04886G06F2203/04809
    • A touchscreen including a touch sensitive layer wherein the user perceived surface roughness or friction coefficient is variable and dynamically controlled. The level of user perceived surface roughness or friction coefficient is related to the information that is displayed at the position at which an object touches the touch sensitive layer. The surface roughness is not locally changed but rather for a complete portion of the touchscreen or for the whole touchscreen simultaneously. Because the modulation of user experience surface roughness or friction coefficient is faster than the user interaction, the user will experience that the surface roughness of certain areas of the display is different from other areas, depending on the information that is being shown, although in fact the surface roughness or friction coefficient is uniform over the whole portion or the whole display at any given point of time.
    • 包括触感层的触摸屏,其中用户感知到的表面粗糙度或摩擦系数是可变和动态控制的。 用户感知的表面粗糙度或摩擦系数的水平与在物体接触触敏层的位置处显示的信息相关。 表面粗糙度不是局部变化的,而是对于触摸屏的完整部分或整个触摸屏同时进行。 由于用户体验表面粗糙度或摩擦系数的调制比用户交互更快,用户将会体会显示器某些区域的表面粗糙度与其他区域不同,具体取决于所显示的信息,尽管事实上 表面粗糙度或摩擦系数在任何给定时间点在整个部分或整个显示器上是均匀的。