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    • 2. 发明授权
    • Sensor for measuring surface expansion of a hollow body with film
protecting against dirt and burrs
    • 用于测量具有防止灰尘和毛刺的膜的中空体的表面膨胀的传感器
    • US5942693A
    • 1999-08-24
    • US33602
    • 1998-03-03
    • Klaus-Christoph HarmsPaul KirschbaumJosef Glaser
    • Klaus-Christoph HarmsPaul KirschbaumJosef Glaser
    • G01L9/00G01L7/04G01L9/08G01M15/00
    • G01L9/008G01L9/0027
    • A sensor is provided that can be used for measuring the internal pressure of injection lines of diesel engines includes two housing parts that are connected via a joint and can be clamped to the injection line using a clamping device. At least one electrical measuring element is pressed, in essentially uniform elastic fashion, onto the surface of the hollow body to be measured. The sensor also includes a support element that operates essentially in radial fashion. A protective film is arranged between the surface and the measuring element. The protective film has a thickness greater than or equal to the radial dimension of foreign bodies or the like that are to be expected on the surface of the hollow body to be measured. The protective film consists of plastic with a low modulus of elasticity. In this way, impurities, burrs and the like on the tube can easily be "embedded" in the protective film, which, as a result of the low elasticity modulus, nonetheless still ensures a sufficiently good transmission to the measuring element of the surface expansions actually to be measured.
    • 提供了可用于测量柴油发动机注射管线内部压力的传感器,包括通过接头连接的两个壳体部件,并可使用夹紧装置将其夹紧到注射管线上。 至少一个电测量元件以基本均匀的弹性方式被按压到待测量的中空体的表面上。 传感器还包括基本上以径向方式操作的支撑元件。 在表面和测量元件之间布置有保护膜。 保护膜的厚度大于或等于要测量的中空体的表面上预期的异物等的径向尺寸。 保护膜由具有低弹性模量的塑料组成。 以这种方式,管上的杂质,毛刺等可以容易地“嵌入”保护膜中,由于低弹性模量,仍然确保了足够好的透射到测量元件的表面膨胀 实际上要测量。
    • 7. 发明申请
    • Test assembly and procedure for capturing performance data
    • 用于捕获性能数据的测试组件和过程
    • US20100017169A1
    • 2010-01-21
    • US12458285
    • 2009-07-07
    • Jerome GruazKlaus-Christoph HarmsMartin RzehorskaRüdiger Teichmann
    • Jerome GruazKlaus-Christoph HarmsMartin RzehorskaRüdiger Teichmann
    • G06F15/00
    • G01D3/022G01D3/08G01D5/02
    • In order to make error recognition, for example, in cabling, in the stored data or in the data allocation, in the allocation of a sensor unit to sensor-relevant data for calibration of an analysis unit that is connected with a sensor unit possible, it is proposed to locate, in or on the sensor unit (1) a sensor identification (6) that can be polled by the analysis unit (4) and to which sensor-specific data are allocated in a storage unit (5), and in or on the sensor unit (1) a data carrier (7) is located on which a second set of sensor-specific data are stored that can be read by the analysis unit (4) and can be compared with the first set of sensor-specific data of storage unit (5). Upon agreement of the first and second set of sensor-specific data, the measuring signals are transformed into measurement data by considering the sensor-specific data.
    • 为了进行错误识别,例如,在布线,存储的数据或数据分配中,在将传感器单元分配给与传感器单元连接的分析单元进行校准的传感器相关数据时, 建议在传感器单元(1)中或传感器单元(1)上定位可由分析单元(4)轮询的传感器标识(6),并将哪个传感器特定数据分配到存储单元(5)中,以及 在传感器单元(1)中或传感器单元(1)上,位于其上存储可由分析单元(4)读取的第二组传感器特定数据的数据载体(7),并且可以与第一组传感器 存储单元(5)的特定数据。 根据第一组和第二组传感器特定数据,通过考虑传感器特定的数据将测量信号转换成测量数据。
    • 8. 发明授权
    • Measuring arrangement and method to determine at intervals the usability potential of at least one operational fluid in an engine
    • 测量装置和方法,以间隔确定发动机中至少一个操作流体的可用性潜力
    • US07346448B2
    • 2008-03-18
    • US11085597
    • 2005-03-22
    • Franz GrafKarol SchleiferKlaus-Christoph Harms
    • Franz GrafKarol SchleiferKlaus-Christoph Harms
    • G01M15/00G01N33/26
    • G01M15/09
    • A measuring and testing system for a test piece (1) with at least one operational fluid, particularly to test an internal combustion engine, is provided with at least one measuring arrangement connected to a space (2) of the test piece (1) containing operational fluid, and comprising a partial measuring arrangement (4, 5, 6) for the quantity parameter of the operational fluid and at least one additional partial measuring arrangement (6, 7) for at least one quality parameter for the characterization of the physical and/or chemical condition of the operational fluid, as well as a control and evaluation unit (6) connected to the measuring arrangement. An evaluation logic is implemented in the evaluation unit (6) whereby said evaluation logic links the quantity parameters with at least one condition parameter according to a predefinable relationship and determines the usability potential of the operational fluid to be able to give in a systematic and simple manner also information about the admissibility and possible validity of the parameters of the operational fluids and possibly about other measuring and testing results.
    • 具有至少一个操作流体(特别是测试内燃机)的测试件(1)的测量和测试系统设置有连接到测试件(1)的空间(2)的至少一个测量装置,其包含 操作流体,并且包括用于操作流体的量参数的部分测量装置(4,5,6)和用于至少一个质量参数的至少一个额外的部分测量装置(6,7),用于表征物理和 /或操作流体的化学条件,以及连接到测量装置的控制和评估单元(6)。 在评估单元(6)中实现评估逻辑,由此所述评估逻辑根据预定义关系将数量参数与至少一个条件参数相连接,并确定操作流体能够以系统和简单的方式给出的可用性潜力 还可以了解有关操作流体参数的可接受性和可能的​​有效性以及可能涉及其他测量和测试结果的信息。
    • 9. 发明授权
    • Measuring chamber for photo-acoustical sensors
    • 光声传感器测量室
    • US07345766B2
    • 2008-03-18
    • US11018241
    • 2004-12-22
    • Wolfgang SchindlerKlaus-Christoph HarmsFranz KnopfHarald Grantner
    • Wolfgang SchindlerKlaus-Christoph HarmsFranz KnopfHarald Grantner
    • G01N21/00
    • G01N29/046G01N21/1702G01N29/2425G01N2291/02408G01N2291/02809G01N2291/02836G01N2291/02854G01N2291/0289
    • A measuring chamber for photo-acoustical sensors for the continuous measurement of radiation-absorbing substances, in particular of radiation-absorbing particles, in gaseous samples includes at least one entry and at least one exit for the samples, a tube section with microphone that allows for the flow-through of the sample in longitudinal direction, and at least one entry and exit point for a laser beam that is aligned with the tube section, and whereby these entry and exit points are both arranged at a distance from the measuring tube by at least one chamber with a cross-sectional area that is expanded relative to the tube section. To prevent soiling of the windows at the points of entry of the radiation into the cell and to slow down the deposition of the particles of the measured aerosol, whereby long-term, high-sensitivity operation of the measuring cell is possible, two entries (2, 3) are envisioned at two ends of the tube section (31) that are opposite relative to each other and at least one exit (4) that is arranged at a location which is centered between the entries (2, 3).
    • 用于在气体样品中连续测量辐射吸收物质,特别是辐射吸收颗粒的光声传感器的测量室包括用于样品的至少一个入口和至少一个出口,具有麦克风的管段,其允许 用于在纵向方向上流过样品,以及用于与管部分对准的激光束的至少一个入口和出口点,并且由此这些入口和出口点都被布置成距离测量管一定距离 至少一个腔室,其横截面积相对于管部分膨胀。 为了防止在进入电池的入口处的窗户被弄脏并且减缓测量的气溶胶颗粒的沉积,由此测量单元的长期,高灵敏度的操作是可能的,两个入口 在管段(31)的相对于彼此相对的两端设置有至少一个出口(4),其设置在位于入口(2,3)之间的中心位置处的至少一个出口(4)。
    • 10. 发明授权
    • Transducer with a flexible piezoelectric layer as a sensor element
    • 具有柔性压电层的传感器作为传感器元件
    • US4737676A
    • 1988-04-12
    • US942783
    • 1986-12-17
    • Gunter EngelPeter W. KremplKlaus-Christoph HarmsHelmut List
    • Gunter EngelPeter W. KremplKlaus-Christoph HarmsHelmut List
    • H01L41/08G01L1/16G01L9/08H01L41/113
    • H01L41/1132
    • A transducer comprising a flexible piezoelectric layer as a sensor element for measuring mechanical quantities in hollow bodies, above all pressures in pipes, the opposite sides of this layer being bonded to electrically-conductive contact layers and being connectable via leads to a display and evaluation unit. In order to achieve a high temperature stability in such transducers and to make them suitable for use at temperatures exceeding 80.degree. C., the piezoelectric layer is proposed to consist of wurtzite or sphalerite. One of the electrically-conductive contact layers can be of some heat-resistant, flexible supporting material, for instance flexible metal foil, such as Cu-Be foil, or a sheet of plastic, one or both of whose sides are metallized, and the other electrically-conductive contact layer can be a metal coating applied by evaporation.
    • 一种传感器,包括柔性压电层作为用于测量中空体中的机械量的传感器元件,高于管道中的所有压力,该层的相对侧被粘合到导电接触层并且可通过导线连接到显示器和评估单元 。 为了在这种换能器中实现高温稳定性并使其适合于在超过80℃的温度下使用,压电层被提出由纤锌矿或闪锌矿组成。 导电接触层中的一个可以是一些耐热柔性的支撑材料,例如柔性金属箔,例如Cu-Be箔,或一块塑料,其一面或两面被金属化,以及 其它导电接触层可以是通过蒸发施加的金属涂层。