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    • 2. 发明授权
    • Servomotor, particularly for a quick-action stop valve
    • 伺服电机,特别适用于快速停止阀
    • US5848779A
    • 1998-12-15
    • US639955
    • 1996-04-29
    • Dieter MurbeMatthias HartmannHans-Frieder Schneider
    • Dieter MurbeMatthias HartmannHans-Frieder Schneider
    • F01D25/00F01D17/26F01D21/00F01D21/18F15B11/024F15B11/06F15B13/02F15B15/00F15B15/14F16K31/122F16K31/124
    • F01D21/18F15B11/024F15B2011/0243Y10S91/03
    • A controlling motor for moving a stem along an axis has a hydraulic actuator with a cylinder in which a piston that is frictionally linked to the stem is slidingly and sealingly mounted, as well as a compression spring that is frictionally linked to the stem and acts against the actuator. The controlling motor has a trigger with an inflow area into which hydraulic fluid may be introduced, a pressure area that communicates with the inflow area through a diaphragm and is connected to the actuator, and a drainage area from which the hydraulic fluid may be evacuated without pressure, as well as a switching element that links the pressure area to the drainage area when a positive pressure differential occurs between the pressure area and the inflow area, and that otherwise shuts off the drainage area. The stem may be pushed out of the cylinder by the compression spring and may be drawn into the cylinder when hydraulic fluid is applied to the inflow area. This controlling motor is particularly suitable for driving a rising stem quick-action stop valve, such as those often used for example in steam power stations.
    • 用于沿着轴线移动杆的控制电动机具有液压致动器,其具有气缸,其中摩擦连接到杆的活塞滑动并密封地安装在所述气缸中,以及与所述杆摩擦连接的压缩弹簧, 执行器。 控制电动机具有可引入液压流体的流入区域的触发器,通过隔膜与流入区域连通并连接到致动器的压力区域以及排出区域,液压流体可从该排水区域排出而没有 压力以及当在压力区域和流入区域之间发生正压差时将压力区域连接到排水区域的开关元件,并且否则关闭排水区域。 杆可以通过压缩弹簧被推出气缸,并且当液压流体被施加到流入区域时可以将其拉入气缸中。 该控制电动机特别适用于驱动上升杆快速停止阀,例如通常用于蒸汽发电站的那些。
    • 4. 发明授权
    • Method for determining the rotor position of a synchronous machine operated in field-oriented manner
    • 用于确定以现场方式操作的同步电机的转子位置的方法
    • US09154073B2
    • 2015-10-06
    • US13394081
    • 2010-08-24
    • Wolfgang HammelMatthias HartmannHarald Wolf
    • Wolfgang HammelMatthias HartmannHarald Wolf
    • H02P1/46H02P21/00H02P25/02H02P21/14
    • H02P6/18H02P21/18H02P21/24H02P25/03H02P2207/05
    • A method for determining the rotor position of a synchronous machine operated in field-oriented manner, which has an effective inductivity that is dependent on the rotor position, the motor current being acquired, and the motor voltage being set with the aid of a pulse-width-modulation method, a signal which is in synchrony with the pulse-width-modulation frequency being superimposed on the motor voltage value to be set, values of the motor current being acquired in synchrony with the pulse-width modulation frequency, a current component induced by the superimposed voltage signal and a residual current component, i.e., fundamental wave component, being determined, the current component induced by the superimposed voltage signal being used for determining an estimated rotor angle position, whose phase error in relation to the actual rotor angle position is reduced by means of a flux model, the residual current component being supplied to a current controller.
    • 一种用于确定以场定向方式操作的同步电机的转子位置的方法,该方法具有取决于转子位置的有效电感,所获取的电动机电流以及借助脉冲 - 宽度调制方式,与要设定的电动机电压值重叠的脉宽调制频率同步的信号,与脉宽调制频率同步取得的电动机电流的值,电流分量 由叠加的电压信号和剩余电流分量(即基波分量)确定由叠加的电压信号引起的电流分量用于确定估计的转子角位置,该相位误差相对于实际的转子角度 位置通过通量模型减小,剩余电流分量被提供给电流控制器。
    • 5. 发明申请
    • METHOD FOR PRODUCING A SOLE OR A SOLE PART OF A SHOE
    • 生产鞋袜或鞋子的一部分的方法
    • US20140151918A1
    • 2014-06-05
    • US14235676
    • 2012-07-16
    • Matthias Hartmann
    • Matthias Hartmann
    • B29D35/06
    • B29D35/06B29C44/1285B29D35/00B29D35/0009B29D35/0054B29D35/122B29L2031/50C08J9/232C08J9/236C08J9/33C08J2375/04C08J2377/12C08J2475/04
    • The invention relates to a method or producing a sole (1) or a sole part of a shoe (2), in particular of a sports shoe. To obtain a lightweight shoe which has good rebound characteristics, the invention provides the following steps: a) Producing plastic elements (3), the extent (a, b, c) of which in the three spatial direction lies between 2 mm and 15 mm, preferably between 3 mm and 9 mm, wherein the plastic elements (3) consist of a foamed thermoplastic elastomer based on urethane (TPU, E-TPU, TPE-U) and/or based on polyether block amide (PEBA); b) Introducing the plastic elements (3) into a moulding tool which has a cavity which corresponds to the shape of the sole (1) or the sole part to be produced; c) Connecting the plastic elements (3) located in the moulding tool to one another, wherein a binder is put into the moulding tool to make the connection and/or wherein heat is allowed to act on the plastic elements (3) to make the connection.
    • 本发明涉及一种方法或制造鞋底(2)的鞋底(1)或鞋底部分,特别是运动鞋。 为了获得具有良好回弹特性的轻量级鞋,本发明提供以下步骤:a)生产塑料元件(3),其在三个空间方向上的程度(a,b,c)在2mm和15mm之间 (TPU,E-TPU,TPE-U)和/或基于聚醚嵌段酰胺(PEBA)的发泡热塑性弹性体组成的塑料元件(3),优选在3mm至9mm之间。 b)将塑料元件(3)引入到具有对应于要制造的鞋底(1)或鞋底部件的形状的空腔的模制工具中; c)将位于模制工具中的塑料元件(3)彼此连接,其中将粘合剂放入模制工具中以进行连接和/或允许热量作用在塑料元件(3)上,以使 连接。
    • 7. 发明申请
    • Method for Determining the Rotor Position of a Synchronous Machine Operated in Field-Oriented Manner
    • 确定以场为导向的同步电机转子位置的方法
    • US20120153883A1
    • 2012-06-21
    • US13394081
    • 2010-08-24
    • Wolfgang HammelMatthias HartmannHarald Wolf
    • Wolfgang HammelMatthias HartmannHarald Wolf
    • H02P6/00
    • H02P6/18H02P21/18H02P21/24H02P25/03H02P2207/05
    • A method for determining the rotor position of a synchronous machine operated in field-oriented manner, which has an effective inductivity that is dependent on the rotor position, the motor current being acquired, and the motor voltage being set with the aid of a pulse-width-modulation method, a signal which is in synchrony with the pulse-width-modulation frequency being superimposed on the motor voltage value to be set, values of the motor current being acquired in synchrony with the pulse-width modulation frequency, a current component induced by the superimposed voltage signal and a residual current component, i.e., fundamental wave component, being determined, the current component induced by the superimposed voltage signal being used for determining an estimated rotor angle position, whose phase error in relation to the actual rotor angle position is reduced by means of a flux model, the residual current component being supplied to a current controller.
    • 一种用于确定以场定向方式操作的同步电机的转子位置的方法,该方法具有取决于转子位置的有效电感,所获取的电动机电流以及借助脉冲 - 宽度调制方式,与要设定的电动机电压值重叠的脉宽调制频率同步的信号,与脉宽调制频率同步取得的电动机电流的值,电流分量 由叠加的电压信号和剩余电流分量(即基波分量)确定由叠加的电压信号引起的电流分量用于确定估计的转子角位置,该相位误差相对于实际的转子角度 位置通过通量模型减小,剩余电流分量被提供给电流控制器。
    • 8. 发明授权
    • Converter for providing a liquid at a measurement pressure corresponding
to a rotational speed
    • 用于在与转速对应的测量压力下提供液体的转换器
    • US5630698A
    • 1997-05-20
    • US528960
    • 1995-09-15
    • Matthias HartmannDieter M urbe
    • Matthias HartmannDieter M urbe
    • F01D21/00G01P3/28F01D17/06F01D17/08F01D17/26
    • G01P3/28
    • A converter assembly for providing a liquid in a measuring line includes a stationary housing and a component being rigidly connected to the housing. A journal is slidingly supported in the stationary housing and defines a gap disposed between the component and the journal forming a throttle. The journal has an axis of rotation, an end, at least one transverse bore formed in the journal, and a journal bore formed in the journal from the end along the axis. The housing has a groove formed therein surrounding the journal and communicating with the journal bore through the at least one transverse bore. A liquid flow path communicates with a reservoir at a primary pressure and a pressureless sump and includes the throttle, the groove, the transverse bore and the journal bore. A measuring line branching off from the path between the transverse bore and the throttle carries the liquid at a measurement pressure corresponding to a rotational speed of the journal rotating about the axis.
    • 用于在测量线中提供液体的转换器组件包括固定壳体和刚性地连接到壳体的部件。 轴颈滑动地支撑在固定壳体中并且限定了布置在部件和形成节气门的轴颈之间的间隙。 轴颈具有旋转轴线,端部,形成在轴颈中的至少一个横向孔,以及沿着轴线从端部形成在轴颈中的轴颈孔。 壳体具有形成在其中的凹槽,围绕轴颈并且通过至少一个横向孔与轴颈孔连通。 液体流动路径与初级压力和无压力贮槽中的储存器连通并且包括节流阀,槽,横向孔和轴颈孔。 从横向孔和节流阀之间的路径分支的测量线以对应于围绕轴线旋转的轴颈的旋转速度的测量压力运送液体。