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    • 5. 发明授权
    • Power transmission apparatus
    • 动力传动装置
    • US09240115B2
    • 2016-01-19
    • US14004330
    • 2011-03-11
    • Seiji OmuraHiroyuki Nishiura
    • Seiji OmuraHiroyuki Nishiura
    • F16G5/00F16G1/00G08B21/00F16H7/02G01M13/02
    • G08B21/00F16H7/023G01M13/023
    • Disclosed is a power transmission apparatus to detect the deterioration state of a timing belt in use, thereby making it possible to detect at a high accuracy whether or not the timing belt reaches an exchanging time. The power transmission apparatus comprises a crankshaft pulley, an intake camshaft pulley, and a timing belt wound around the crankshaft pulley and the intake camshaft pulley. The timing belt contains a stress light emission material capable of emitting light when receiving an external force. The power transmission apparatus further comprises an optical sensor and an ECU. The optical sensor is disposed to measure light emitted from the timing belt. The ECU is operative to judge whether or not the timing belt is deteriorated and to judge that the timing belt reaches the exchanging time when the timing belt is judged to be deteriorated.
    • 公开了一种用于检测使用中的同步带的劣化状态的动力传递装置,从而可以高精度地检测同步带是否达到交换时间。 动力传递装置包括曲轴皮带轮,进气凸轮轴滑轮和卷绕在曲轴皮带轮和进气凸轮轴滑轮周围的同步带。 同步带包含能够在接受外力时发光的应力发光材料。 动力传递装置还包括光学传感器和ECU。 光学传感器设置成测量从同步皮带发出的光。 ECU可操作以判断同步皮带是否劣化,并且当判定同步皮带劣化时判断同步皮带达到交换时间。
    • 6. 发明授权
    • Methods and systems for sensing tension in a timing belt
    • 用于感应同步皮带张力的方法和系统
    • US09228909B1
    • 2016-01-05
    • US14276032
    • 2014-05-13
    • Google Inc.
    • Justine RembiszAaron Edsinger
    • G01L3/02G01L3/08G01P3/44F16C41/00
    • G01L3/14B65G43/02F16C41/007F16H7/02F16H7/023G01B7/18G01L3/02G01L5/105G01M13/023G01N3/56G01P3/443
    • In examples, methods and systems for sensing tension in a timing belt are provided. In one example, a transmission device is provided that comprises a timing belt transmission configured to cause rotation of an output hub, and the timing belt transmission includes a timing belt with markings. The transmission device also includes a detector for detecting the markings on the timing belt as the timing belt is placed under a tension due to a load at the output hub, and a distance between the markings on the timing belt changes as the timing belt is placed under the tension. The transmission device also includes one or more processors for determining output torque of the timing belt transmission based on the distance between the markings on the timing belt or based on a time between detected markings.
    • 在实施例中,提供了用于感测同步带中的张力的方法和系统。 在一个示例中,提供了一种传动装置,其包括构造成使输出轮毂旋转的同步带传动装置,同步带传动装置包括具有标记的同步带。 传动装置还包括一个用于检测同步带上的标记的检测器,因为正时带由​​于输出轮毂处的负载而处于张力下,并且同步带上的标记之间的距离随同步带的位置而改变 在紧张局势下。 传输装置还包括一个或多个处理器,用于基于同步带上的标记之间的距离或者基于检测到的标记之间的时间来确定同步带传输的输出扭矩。
    • 7. 发明申请
    • DEVICE FOR INSPECTING A PROFILED WORKPIECE
    • 用于检查配置工作的设备
    • US20150285610A1
    • 2015-10-08
    • US14647016
    • 2013-11-21
    • Horst KNÄBEL
    • Horst Knäbel
    • G01B5/20
    • G01B5/202G01B5/20G01B5/24G01M13/023
    • A device for inspecting a profiled work pieces has a toothing, the profile metrologically detectable by the probe element of a profile probe. The profile and the profile probe are moved relative to one another and at right angles or tangentially to the measuring plane of the profile probe. The device measures work pieces having different numbers of teeth, modules and widths, directly after processing, on site and quickly, for accuracy and deviations, without special profiles for the toothing. The probe element of the profile probe can be applied to the profile of the work piece, can be applied to the profile edge of the work piece that is moving away from the probe element by the probe radius of the probe element, and subsequently, by the lateral surface of the probe element facing the profile edge opposite thereof, is configured so the probe element can be displaced from the profile gap.
    • 用于检查异形工件的装置具有齿形,该轮廓可由轮廓探针的探针元件计量地检测。 轮廓和轮廓探针相对于彼此并且与轮廓探针的测量平面成直角或相切地移动。 该设备可以直接在加工后,现场快速地测量不同数量的齿,模块和宽度的工件,以获得精确度和偏差,而不需要齿轮的特殊型材。 轮廓探头的探针元件可以应用于工件的轮廓,可以应用于通过探头元件的探头半径远离探头元件移动的工件的轮廓边缘,然后由 探针元件的面向与其相对的轮廓边缘的侧表面被配置成使得探针元件能够从轮廓间隙移位。