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    • 3. 发明授权
    • Method for adjusting the inking in a printing press
    • 用于调节印刷机中的着色的方法
    • US5835626A
    • 1998-11-10
    • US643600
    • 1996-05-06
    • Werner HuberHarald BucherWolfgang GeisslerBernd Kistler
    • Werner HuberHarald BucherWolfgang GeisslerBernd Kistler
    • B41F33/00B41F31/02
    • B41F33/0045
    • A method for controlling inking during the printing process, in particular during the production run, in a printing press, the printing press having an imaging device coupled to a computing device operative for collecting image color measurement data from the imaging device, and numerically processing the image data, and in which color measurement data are obtained from printed images produced on an continuous basis, these data being used for control or regulation to influence image inking if a predetermined image color tolerance is exceeded, the method which comprises the steps of collecting the image color measurement data, over time using the image color measurement data for computing a color trend estimate; evaluating the color trend estimate and performing a corrective control of the inking if the color trend estimate data indicate that image coloring will move outside the allowable image color tolerance.
    • 一种用于在打印过程中特别是在生产运行期间在印刷机中控制着墨的方法,所述印刷机具有耦合到计算装置的成像装置,该计算装置可操作以从成像装置收集图像颜色测量数据,并且数字处理 图像数据,并且在连续地生成的打印图像中获得颜色测量数据,如果超过预定图像色彩公差,则这些数据用于控制或调节以影响图像上墨,该方法包括以下步骤: 图像颜色测量数据,随着时间的推移使用用于计算颜色趋势估计的图像颜色测量数据; 评估颜色趋势估计,并且如果颜色趋势估计数据指示图像着色将移动超出允许图像颜色容限,则执行上墨的校正控制。
    • 8. 发明授权
    • Pressure fluid reservoir
    • 压力容器
    • US4608870A
    • 1986-09-02
    • US687889
    • 1984-12-31
    • Werner HuberHeinz Leiber
    • Werner HuberHeinz Leiber
    • F15B1/24G01L7/16G01L9/14G01L19/04
    • F15B1/24F15B2201/205F15B2201/312F15B2201/41F15B2201/415
    • A pressure fluid reservoir comprising a cylinder with a reservoir connection, a piston displaceable in the cylinder and non-contact switch means for indicating piston positions. Between the reservoir connection and the piston, the cylinder encloses a pressure fluid chamber, which is intended for storing a pressure fluid such as hydraulic oil, brake pressure fluid or the like. Opposite the pressure fluid chamber, the piston defines a gas chamber. The non-contact switch indicating means comprise Reed contacts, for example, and are disposed outside the cylinder such that they are longitudinally adjustable along the cylinder. Adjustment is effected by a temperature-dependent adjusting means, embodied for instance as an expansion element. Permanent-magnet actuating means, for actuating the Reed contacts in a non-contacting manner are fixed in recesses in one side of the piston. The adjusting means adjusts the Reed contacts longitudinally such that when these contacts are actuated, the same pressure (p1) in the pressure fluid chamber is indicated, regardless of the temperature of the fluid in the pressure fluid reservoir.
    • 一种压力流体储存器,包括具有储存器连接的气缸,可在气缸中移动的活塞和用于指示活塞位置的非接触开关装置。 在储存器连接和活塞之间,气缸包围压力流体室,该压力流体室旨在存储诸如液压油,制动压力流体等的压力流体。 在压力流体室的对面,活塞限定气体室。 非接触式开关指示装置例如包括簧片触点,并且设置在气缸外部,使得它们沿气缸可纵向调节。 通过温度相关的调节装置进行调节,例如作为膨胀元件实现。 用于以非接触方式致动簧片接触件的永磁致动装置固定在活塞一侧的凹槽中。 调节装置纵向调节簧片触点,使得当这些触点被致动时,指示压力流体室中的相同压力(p1),而与压力流体存储器中的流体的温度无关。
    • 9. 发明授权
    • Automatic sample preparation device
    • 自动样品制备装置
    • US4042338A
    • 1977-08-16
    • US710015
    • 1976-07-30
    • Bernhard Werner Huber
    • Bernhard Werner Huber
    • G01N35/10G01N1/00G01N1/14
    • G01N35/1095
    • An automatic sample preparation device for use in flameless atomic absorption spectroscopy or the like, wherein samples to be examined for a particular element are successively mixed with graduated, metered additions of the element to be determined, which includes, in combination, controlled delivery pumping apparatus, a storage vessel system containing dilution agents connected to the inlet side of the pumping apparatus, a dosing probe connected to the outlet side of the pumping apparatus, a stepwise movable carrier, a plurality of sample containers mounted on the carrier, a sample withdrawing device for withdrawing samples from the carrier, and a control unit for moving the dosing probe with respect to the carrier so that one group of at least two successive sample containers on the carrier can be simultaneously mixed with graduated, metered additions of the element to be determined prior to sample withdrawal.
    • 一种用于无焰原子吸收光谱法等的自动样品制备装置,其中待特定元件的待检样品依次与要确定的元件的分级计量添加物组合,包括控制输送泵送装置 ,包含连接到泵送装置的入口侧的稀释剂的储存容器系统,连接到泵送装置的出口侧的计量探针,逐步移动的载体,安装在载体上的多个样品容器,样品提取装置 用于从载体中取出样品;以及控制单元,用于相对于载体移动计量探针,使得载体上的一组至少两个连续的样品容器可以与要测定的元素的分级计量添加物同时混合 抽样前。
    • 10. 发明授权
    • Method and apparatus for automated sampling with an atomic absorption
spectrometer
    • 用原子吸收光谱仪自动采样的方法和装置
    • US4042303A
    • 1977-08-16
    • US685007
    • 1976-05-10
    • Bernhard Werner Huber
    • Bernhard Werner Huber
    • G01N1/00G01N21/74G01J3/30G01N21/16
    • G01N21/74G01N35/1095
    • Method and apparatus for introducing a sample to be analyzed through an introduction aperture into a graphite tube of a graphite tube cell of an atomic absorption spectrometer, wherein a plurality of sample containers containing the samples to be analyzed are placed in a row in a sample holding device, the sample containers being open at both ends. The sample containers are successively transported to an introduction device and a sample container is inserted into the introduction aperture of the graphite tube by means of the introduction device. The sample is transferred from the sample container into the graphite tube and the sample container is removed therefrom and the next subsequent sample container is transported to the introduction device.
    • 将待分析样品通过引入孔引入原子吸收光谱仪的石墨管细胞的石墨管中的方法和装置,其中将含有待分析样品的多个样品容器放置在样品保持 装置,样品容器在两端打开。 样品容器依次传送到导入装置,样品容器通过引入装置插入到石墨管的引入孔中。 将样品从样品容器转移到石墨管中,并从中取出样品容器,并将下一个随后的样品容器运送到引入装置。