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    • 1. 发明授权
    • Rotor blade and flow engine comprising a rotor blade
    • 转子叶片和流体发动机包括转子叶片
    • US08974187B2
    • 2015-03-10
    • US13002616
    • 2009-06-24
    • Günter NeumannJörg GatzkeUlrich HarbeckeMarc Andre SchwarzEduard Götzfried
    • Günter NeumannJörg GatzkeUlrich HarbeckeMarc Andre SchwarzEduard Götzfried
    • F01D5/30
    • F01D5/3023F01D5/3053F05D2220/31
    • A rotor blade for a flow machine, in particular a steam turbine, includes an insertion root with a first finger and two second fingers which are arranged on either side of the first finger in axial direction. The first finger and the second fingers have a shoulder in axial direction on axial sides facing one another such that the fingers have a radially outer first portion and a radially inner second portion whose axial extension is shorter than that of the outer, first portion. In relation to a total axial width between axial sides of the two second fingers which face away from one another, the radial height of the first, radially outer portion is in the range of 0.39 to 0.45, particularly 0.40 to 0.44, and the radial height of the second, radially inner portion is between 0.40 and 0.46, particularly between 0.41 and 0.45.
    • 用于流动机械,特别是蒸汽涡轮机的转子叶片包括具有第一手指的插入根和布置在第一手指的轴向两侧的两个第二指状物。 第一指状物和第二指状物在轴向上具有轴向方向上的肩部,所述轴向侧面彼此相对,使得指状物具有径向外部第一部分和径向内部第二部分,其轴向延伸短于外部第一部分的轴向延伸部。 相对于彼此远离的两个第二指状物的轴向侧面之间的总轴向宽度,第一径向外部的径向高度在0.39至0.45的范围内,特别是0.40至0.44,径向高度 的第二径向内部分在0.40和0.46之间,特别是在0.41和0.45之间。
    • 5. 发明申请
    • Rotor Blade and Flow Engine Comprising a Rotor Blade
    • 包括转子叶片的转子叶片和流动发动机
    • US20110110786A1
    • 2011-05-12
    • US13002616
    • 2009-06-24
    • Günter NeumannJörg GatzkeUlrich HarbeckeMarc Andre SchwarzEduard Götzfried
    • Günter NeumannJörg GatzkeUlrich HarbeckeMarc Andre SchwarzEduard Götzfried
    • F01D5/30
    • F01D5/3023F01D5/3053F05D2220/31
    • A rotor blade for a flow machine, in particular a steam turbine, includes an insertion root with a first finger and two second fingers which are arranged on either side of the first finger in axial direction. The first finger and the second fingers have a shoulder in axial direction on axial sides facing one another such that the fingers have a radially outer first portion and a radially inner second portion whose axial extension is shorter than that of the outer, first portion. In relation to a total axial width between axial sides of the two second fingers which face away from one another, the radial height of the first, radially outer portion is in the range of 0.39 to 0.45, particularly 0.40 to 0.44, and the radial height of the second, radially inner portion is between 0.40 and 0.46, particularly between 0.41 and 0.45.
    • 用于流动机械,特别是蒸汽涡轮机的转子叶片包括具有第一手指的插入根和布置在第一手指的轴向两侧的两个第二指状物。 第一指状物和第二指状物在轴向上具有轴向方向上的肩部,所述轴向侧面彼此相对,使得指状物具有径向外部第一部分和径向内部第二部分,其轴向延伸短于外部第一部分的轴向延伸部。 相对于彼此远离的两个第二指状物的轴向侧面之间的总轴向宽度,第一径向外部的径向高度在0.39至0.45的范围内,特别是0.40至0.44,径向高度 的第二径向内部分在0.40和0.46之间,特别是在0.41和0.45之间。
    • 6. 发明授权
    • Rotor of a steam or gas turbine
    • 蒸汽或燃气轮机的转子
    • US07104758B2
    • 2006-09-12
    • US10926439
    • 2004-08-25
    • Hans-Egon BrockGünter NeumannHans Jeske
    • Hans-Egon BrockGünter NeumannHans Jeske
    • F01D5/26
    • F01D5/225Y10S416/50
    • A rotor of a steam or gas turbine is equipped with rotor blades, which are held in the rotor (6) in a plurality of radial rows and comprise a blade foot 1 installed in the rotor (6), a blade leaf (2) and a cover plate (3). An open pocket (5) is prepared in the sloping surfaces of the cover plates (3) of a row of rotor blades, which the sloping surfaces are located opposite each other. The pockets (5) of two adjacent cover plates (3) form together an essentially closed cavity, which expands in the radial direction of the rotor (6). A pin, whose largest cross section is smaller than the largest cross section of the cavity but larger than the smallest cross section of the cavity, is placed freely movably into each cavity.
    • 蒸汽或燃气轮机的转子配备有转子叶片,转子叶片以多个径向排保持在转子(6)中并且包括安装在转子(6)中的叶片脚1,叶片叶片(2)和 盖板(3)。 在一排转子叶片的盖板(3)的倾斜表面上制备开口袋(5),倾斜表面彼此相对定位。 两个相邻的盖板(3)的凹穴(5)形成基本封闭的空腔,其在转子(6)的径向方向上膨胀。 一个销的最大横截面小于空腔的最大横截面,但大于空腔的最小横截面,可自由移动地放置到每个空腔中。
    • 7. 发明申请
    • Method for Setting the Clock Frequency of a Microprocessor of an Industrial Automation Component, and Automation Component Having a Microprocessor with a Variable Clock Frequency
    • 用于设置工业自动化组件的微处理器的时钟频率的方法以及具有可变时钟频率的微处理器的自动化组件
    • US20120198256A1
    • 2012-08-02
    • US13362313
    • 2012-01-31
    • Günter Neumann
    • Günter Neumann
    • G06F1/00
    • G05B19/041Y02P80/10
    • Method and an automation component for setting the clock frequency of a microprocessor in an industrial automation arrangement, the clock frequency of the microprocessor being selected depending on a required computation power, wherein in a first step, the required duration for execution of the main program cycle of a control program running on the automation component is detected, in a second step, this duration is compared with a maximum value, and in a third step, a new clock frequency is determined depending on the result of the comparison and used for the microprocessor. The method and automation component make it possible to match the clock frequency of the microprocessor dynamically, wherein firstly, the required computation power is always provided, and secondly an unnecessarily high clock frequency is avoided. As a result, a corresponding saving on energy and reduction in the power losses can be achieved.
    • 用于在工业自动化布置中设置微处理器的时钟频率的方法和自动化组件,所述微处理器的时钟频率根据所需的计算能力而被选择,其中在第一步骤中,执行所述主程序周期所需的持续时间 检测在自动化部件上运行的控制程序,在第二步骤中,将该持续时间与最大值进行比较,在第三步骤中,根据比较结果确定新的时钟频率并用于微处理器 。 该方法和自动化组件使得可以动态地匹配微处理器的时钟频率,其中首先总是提供所需的计算能力,其次避免不必要的高时钟频率。 结果,可以实现相应的能量节省和功率损耗的降低。
    • 8. 发明授权
    • Refrigerator and/or freezer
    • 冰箱和/或冷柜
    • US07805892B2
    • 2010-10-05
    • US11791628
    • 2005-11-29
    • Günter NeumannWerner SchadDorner GeorgJosef Hecht
    • Günter NeumannWerner SchadDorner GeorgJosef Hecht
    • E06B3/00
    • F25D23/02A47F3/0434
    • A refrigerator and/or freezer is provided with a glass door having a metal frame in which a glazing is inserted, the metal frame forming an outer skin of the door, which with a front-side portion and a narrow-side portion covers the front and circumferential sides of the glazing and forms the visible sides of the door, a circumferential glazing holder being connected with the outer skin. The outer skin is composed of a circumferentially integral one-piece metal casing, which on the visible sides of the door is formed without a seam, and the glazing holder is foamed into a circumferential foam body with which the metal casing is circumferentially foam-backed on its rear side.
    • 冰箱和/或冷柜设有玻璃门,玻璃门具有插入玻璃窗的金属框架,金属框架形成门的外皮,前侧部分和窄边部分覆盖前部 和玻璃窗的圆周侧,并形成门的可见边,与外皮连接的圆周玻璃保持架。 外皮由周向整体的一体式金属外壳构成,其在门的可见侧形成无接缝,并且玻璃保持器发泡成周向泡沫体,金属外壳具有周向泡沫支撑 在其后侧。
    • 9. 发明授权
    • Laser beam optics in a robot link
    • 机器人链接中的激光束光学
    • US06795482B2
    • 2004-09-21
    • US10025163
    • 2001-12-18
    • Peter GernhartStephan KnoppMatthias MiessenGünter Neumann
    • Peter GernhartStephan KnoppMatthias MiessenGünter Neumann
    • H01S300
    • B23K26/0884B23K26/0604B23K26/0608B23K26/0613B23K26/067B25J19/0037
    • The laser beam optics for a robot link, wherein a first beam path of a first working laser beam is arranged on the longitudinal axis of the robot link, the first beam path is deflected at an end facing a workpiece into an axis-parallel second beam path, and a third beam path of a second working laser beam is axis-parallel to the first beam path in the robot link, have two optical elements arranged successively in one of the first and second beam paths of the first working laser beam. The two optical elements are transmissive for the first working laser beam in a transmission direction toward a workpiece and are adjusted relative to one another so as to compensate laser beam displacement of the first working laser beam. The second optical element arranged downstream receives the second working laser beam and reflects it toward the workpiece.
    • 用于机器人连杆的激光束光学器件,其中第一工作激光束的第一光束路径布置在机器人连杆的纵向轴线上,第一光束路径在面向工件的端部处被偏​​转成轴平行的第二光束 路径,并且第二工作激光束的第三光束路径与机器人连杆中的第一光束路径轴平行,具有连续地布置在第一工作激光束的第一和第二光束路径中的一个中的两个光学元件。 两个光学元件对于朝向工件的透射方向的第一工作激光束是透射的,并且相对于彼此调节,以补偿第一工作激光束的激光束位移。 布置在下游的第二光学元件接收第二工作激光束并将其反射向工件。