会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 52. 发明授权
    • Pneumatic liquid on-line automatic balancer of rotor
    • 气动液体在线自动平衡机的转子
    • US09212723B2
    • 2015-12-15
    • US14370049
    • 2012-12-28
    • Beijing Bohua Xinzhi Technology, Inc.
    • Haiqi WuXin PanHui Gao
    • G05G1/30F16F15/16B23Q11/00F16F15/32G01M1/32G01M1/36F16F15/173
    • F16F15/161B23Q11/0035F16F15/16F16F15/173F16F15/32F16F15/322G01M1/323G01M1/365Y10T74/2122
    • A pneumatic liquid on-line automatic balancer of a rotor includes: a sealed balancing disk rotating with a balanced rotor and a pressure transfer device mated with the sealed balancing disk. At least two pairs of centrosymmetric chambers filled with appropriate balancing liquid are evenly distributed in the sealed balancing disk. The pressure transfer device controls compressed gas in and out of the chamber and makes the balancing liquid controllably flow in each pair of chambers to achieve dynamic balance of the rotor. A communicating channel of the balancing liquid is provided between each pair of the chambers. The communicating channel of the balancing liquid is one and a center of the communicating channel of the balancing liquid is communicated with the balancing channel pointed to a center of rotation. The balancing channel is communicated with an emptying channel opened to atmosphere.
    • 一种转子的气动液体在线自动平衡器包括:与平衡转子一起旋转的密封平衡盘和与密封平衡盘配合的压力传递装置。 填充有适当平衡液体的至少两对中心对称室均匀分布在密封平衡盘中。 压力传递装置控制压缩气体进出室,并使平衡液体可控制地流入每对室,以实现转子的动平衡。 平衡液体的连通通道设置在每对室之间。 平衡液体的连通通道为一个,平衡液体的连通通道的中心与指向旋转中心的平衡通道连通。 平衡通道与通向大气层的排空通道进行通信。
    • 53. 发明申请
    • BALANCING OF THE ROTARY ANODE OF AN X-RAY TUBE
    • X射线管的旋转阳极的平衡
    • US20130070903A1
    • 2013-03-21
    • US13388063
    • 2010-09-08
    • Rolf Karl Otto BehlingChristoph Bathe
    • Rolf Karl Otto BehlingChristoph Bathe
    • H01J35/10H01J9/02
    • H01J35/10G01M1/365H01J2235/1093
    • The invention relates to an X-ray tube (12) with a rotatable anode (30) for generating X-rays and an X-ray apparatus (10) with such an X-ray tube and a method for balancing a rotary anode of an X-ray tube. In order to provide a balancing of the rotary anode applicable to an anode mounted inside an X-ray tube, an X-ray tube with a rotatable anode (30) for generating X-rays is provided, wherein the anode comprises an anode disc (32) fixedly mounted to a rotatably driven support body (44, 46), which support body is rotatably supported by a bearing arrangement (34). The anode comprises at least one balancing cavity (70) to adjust the center of gravity of the anode, which balancing cavity (70) is partly filled with a balancing material (72) being solid at operating temperature of the X-ray tube and liquid at a higher temperature. Further, a method for balancing a rotary anode of an X-ray tube is provided, comprising the following steps: a) determining an imbalance of the anode; b) heating up a balancing material which is arranged inside at least one balancing cavity, which balancing material is solid at operating temperature of the X-ray tube and liquid at a higher temperature, such that the balancing material becomes liquid; c) dislocating at least a part of the balancing material inside the balancing cavity such that the imbalance of the anode is at least partially compensated; and d) cooling the balancing material, such that the balancing material becomes solid.
    • 本发明涉及具有用于产生X射线的可旋转阳极(30)和具有这种X射线管的X射线装置(10)的X射线管(12)和用于平衡 X光管。 为了提供适用于安装在X射线管内的阳极的旋转阳极的平衡,提供了具有用于产生X射线的可旋转阳极(30)的X射线管,其中阳极包括阳极盘 32),其固定地安装到可旋转地驱动的支撑体(44,46)上,所述支撑体由轴承装置(34)可旋转地支撑。 阳极包括至少一个平衡腔(70)以调节阳极的重心,该平衡腔(70)部分地填充有在X射线管和液体的操作温度下是固体的平衡材料(72) 在较高的温度。 此外,提供了一种用于平衡X射线管的旋转阳极的方法,包括以下步骤:a)确定阳极的不平衡; b)加热布置在至少一个平衡腔内的平衡材料,所述平衡材料在所述X射线管的操作温度和在较高温度下的液体是固体的,使得所述平衡材料变成液体; c)使所述平衡腔内的所述平衡材料的至少一部分脱位,使得所述阳极的不平衡被至少部分地补偿; 和d)冷却平衡材料,使得平衡材料变得固体。
    • 57. 发明授权
    • Rotational imbalance compensator
    • 旋转不平衡补偿器
    • US06606922B2
    • 2003-08-19
    • US09846098
    • 2001-04-30
    • Wayne A. CaseLaurence B. Penswick
    • Wayne A. CaseLaurence B. Penswick
    • F16F1518
    • G01M1/365F16F15/36F16F15/366F16F2224/045G01M1/36Y10T74/2122Y10T464/50
    • The present invention provides an enhanced system and method for compensating for load imbalances of rotating members. An imbalance compensator may have a balancing ring wirelessly controlled by a ring controller. The balancing ring may have a housing containing a plurality of actuators configured to exert force against a compensation ring within the housing. The actuators may move the compensation ring with respect to the axis of rotation of the shaft in a direction substantially opposite the direction of the imbalance. The actuators may directly contact the compensation ring, or may exert the force through the use of mechanical transfer devices that provide a selected mechanical advantage. Alternatively, a chamber containing a magnetic fluid may be used to provide a counterbalancing mass. Particles within the magnetic fluid maybe concentrated opposite the imbalance direction through the use of electromagnets or permanent magnets mounted on movable carts. As another alternative, fluid maybe pumped between a plurality of chambers by one or more micropumps, with or without the use of valves to control the fluid flow.
    • 本发明提供一种用于补偿旋转构件的负载不平衡的增强系统和方法。 不平衡补偿器可以具有由环控制器无线控制的平衡环。 平衡环可以具有包含多个致动器的壳体,所述致动器构造成对壳体内的补偿环施加力。 致动器可以在基本上与不平衡方向相反的方向上相对于轴的旋转轴线移动补偿环。 致动器可以直接接触补偿环,或者可以通过使用提供所选择的机械优点的机械传递装置施加力。 或者,可以使用包含磁性流体的室来提供平衡质量。 通过使用安装在可移动推车上的电磁体或永久磁铁,磁性流体内的颗粒可能集中在不平衡方向上。 作为另一替代方案,流体可以通过一个或多个微量泵在多个室之间泵送,带有或不使用阀来控制流体流动。
    • 58. 发明授权
    • Method and apparatus for introducing a pulverulent material into a tire
    • 将粉状材料引入轮胎的方法和装置
    • US5931204A
    • 1999-08-03
    • US685056
    • 1996-07-23
    • Robert D. Fogal, Sr.Ray G. BucklesWarren E. Schuessler, Jr.
    • Robert D. Fogal, Sr.Ray G. BucklesWarren E. Schuessler, Jr.
    • B60C5/00B60C19/00B60C29/06G01M1/36
    • G01M1/365B60C19/00B60C19/003B60C29/062
    • An apparatus for introducing a pulverulent material into a tire of a wheel assembly, through the valve stem thereof, without a large amount of operator time, effort, or intervention. The apparatus includes two main types of components--the mainframe component and one or more workstation components. Each workstation component serves as a location from which an operator of the apparatus introduces the pulverulent material into a tire and the mainframe component includes the a container for confining a predetermined amount of the pulverulent material and includes the other components required to dispense the pulverulent material into the container from a hopper or the like, and to evacuate the pulverulent material from the container and distribute the same out to a workstation through a suitable conduit where the pulverulent material is introduced into a tire. A method of introducing pulverulent material into a tire is also described.
    • 一种用于通过其阀杆将粉状材料引入轮组件的轮胎中的装置,而不需要大量的操作者时间,努力或干预。 该设备包括两种主要类型的组件 - 主机组件和一个或多个工作站组件。 每个工作站部件用作设备的操作者将粉状材料引入轮胎的位置,并且主机部件包括用于限制预定量的粉状材料的容器,并且包括将粉状材料分配到其中所需的其它部件 来自料斗等的容器,并且从容器中排出粉状材料,并通过合适的导管将粉末材料分散到工作站,将粉末材料引入到轮胎中。 还描述了将粉状材料引入轮胎的方法。
    • 59. 发明授权
    • Remote control system for rotary device
    • 旋转装置遥控系统
    • US4684944A
    • 1987-08-04
    • US592147
    • 1984-03-22
    • Jack H. Kerlin
    • Jack H. Kerlin
    • G01M1/36G08C19/30H04Q1/00
    • G08C19/30G01M1/365
    • A control system for the remote control of functions on a rotating object from a stationary location is disclosed. The control system, in the disclosed embodiment, constitutes a single channel, four function-select, power transmission system with an encoder at the stationary location and a decoder on the rotating object. The encoder is used to develop selected electrical waveform patterns each of which is uniquely correlated with a particular control function to be performed on the rotating object. Each waveform pattern consists of a unique pattern of electrical waveform half cycles. The particular electrical waveform pattern for the particular control function to be performed is transmitted to the rotating object via center contact assemblies which engage opposite ends of a spindle on which the rotating object is supported for rotation. The decoder circuit detects the particular electrical waveform pattern which is received on the rotating object and causes the electrical power of that waveform pattern to be used to perform the particular control function. The disclosed application of the invention is in an unbalance compensator.
    • 公开了一种用于从静止位置遥控旋转物体上的功能的控制系统。 所公开的实施例中的控制系统构成了在固定位置处具有编码器的单通道,四功能选择功率传输系统和旋转对象上的解码器。 编码器用于开发所选择的电波形图案,每个电波形图案与要在旋转对象上执行的特定控制功能唯一相关。 每个波形模式由独特的电波形半周期模式组成。 用于要执行的特定控制功能的特定电波形图案通过中心接触组件传递到旋转物体,中心接触组件接合旋转物体被支撑在其上的主轴的相对端旋转。 解码器电路检测在旋转对象上接收的特定电波形图案,并使该波形图案的电功率用于执行特定的控制功能。 本发明的公开应用在不平衡补偿器中。
    • 60. 发明授权
    • Apparatus for balancing bodies of revolution
    • 用于平衡革命体的装置
    • US4295386A
    • 1981-10-20
    • US19935
    • 1979-03-12
    • Jury G. Zhivotov
    • Jury G. Zhivotov
    • F16F15/31F16F15/36G01M1/36F16F15/22
    • F16F15/31F16F15/366G01M1/365Y10T464/50
    • The apparatus for balancing bodies of revolution includes balancing tanks located peripherally within the body of revolution. Mounted coaxially with the body of revolution is a distributing chamber with conduits hydraulically connecting said distributing chamber with the balancing tanks. The ends of the conduits are disposed inside the distributing chamber and are equidistant from the geometric axis of the body of revolution. Resilient diaphragms are fixed on the wall of the balancing tanks, at the outlet of the conduits. The apparatus for balancing bodies of revolution also comprises a liquid supply source hydraulically associated with the distributing chamber and made in the form of a chamber with a diameter smaller than that of the distributing chamber, and said chamber being located centrally within the body of revolution and forms a tight cavity with the distributing chamber and the portion of the balancing tank defined by the resilient diaphragm.
    • 用于平衡旋转体的装置包括位于旋转体周围的平衡罐。 与旋转体同轴安装的是具有将所述分配室与平衡罐液压连接的管道的分配室。 导管的端部设置在分配室内部并且与旋转体的几何轴线等距。 弹性膜片固定在平衡罐的壁上,在管道出口处。 用于平衡旋转体的设备还包括液体供应源,其与分配室液压连接并且形成为具有小于分配室的直径的室的形式,并且所述室位于旋转体内的中心, 与分配室形成紧密的空腔,并且由弹性隔膜限定平衡罐的部分。