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    • 4. 发明申请
    • SAMPLE TAKING APPARATUS
    • 样品采购设备
    • WO2010064910A1
    • 2010-06-10
    • PCT/NL2009/050733
    • 2009-12-02
    • N.V. NEDERLANDSCHE APPARATENFABRIEK NEDAPSCHÄPERCLAUS, EdwinVAN DIJK, Jeroen, MartinKLOOSTRA, Sietze
    • SCHÄPERCLAUS, EdwinVAN DIJK, Jeroen, MartinKLOOSTRA, Sietze
    • G01N1/20
    • G01N1/2035
    • A sample taking apparatus for obtaining a sample liquid stream from a main liquid stream wherein the sample liquid stream is a predetermined percentage of the main liquid stream, wherein the sample taking apparatus is provided with at least one liquid stream divider for dividing a basic liquid stream into a first liquid stream and at least a second liquid stream, wherein the liquid stream divider is provided with a basic gutter provided with a basic inlet and a basic outlet, a first successive gutter and at least a second successive gutter wherein the first successive gutter is provided with a first successive inlet and the at least one second successive gutter is provided with a second successive inlet, wherein the basic gutter opens via the basic outlet into the first successive gutter via the first successive inlet and into the at least one second successive gutter via the second successive inlet, wherein the basic outlet and the first successive inlet are situated opposite each other and wherein the divider is so arranged that the liquid level in the basic outlet and the liquid level in the first successive inlet are equal to each other, wherein these liquid levels can vary depending on the magnitude of the flow of the basic liquid stream, wherein the first successive inlet and the basic outlet have a shape such that, in use, for each possible liquid flow in the basic gutter, it holds that the magnitude of the surface of an inlet cross section of the liquid stream through the first successive inlet, which inlet cross section lies in a plane of the first successive inlet, is a predetermined factor smaller than the magnitude of the surface of an outlet cross section of the liquid stream through the basic outlet, which outlet cross section lies in a plane of the basic outlet, so that the flow of the first liquid stream in the first successive gutter is the predetermined factor smaller than the flow of the basic liquid stream in the basic gutter.
    • 一种用于从主液体流中获得样品液体流的样品采集装置,其中样品液体流是主液体流的预定百分比,其中采样装置设置有至少一个液体流分离器,用于将碱性液体流 进入第一液体流和至少第二液体流,其中液体分配器设置有设置有基本入口和基本出口的基本沟槽,第一连续沟槽和至少第二连续沟槽,其中第一连续沟槽 设置有第一连续入口,并且所述至少一个第二连续沟槽设置有第二连续入口,其中所述基础沟槽经由所述基本出口经由所述第一连续入口打开到所述第一连续沟槽中,并且进入所述至少一个第二连续入口 通过第二连续入口排水沟,其中基本出口和第一连续入口位于每一个相对的两侧 并且其中所述分隔器被布置成使得所述基本出口中的液位和所述第一连续入口中的液面彼此相等,其中所述液面可以根据所述碱性液体流的流量的大小而变化, 其中所述第一连续入口和所述基本出口具有这样的形状,使得在使用中,对于所述基本沟槽中的每个可能的液体流动,所述形状保持所述液体流的入口横截面的表面的大小通过所述第一连续入口 该入口横截面位于第一连续入口的平面中,是比通过基本出口的液体流的出口横截面的表面的大小小的预定因子,该出口横截面位于 基本出口,使得第一连续沟槽中的第一液体流的流量小于基本沟槽中的基本液体流的流量。
    • 5. 发明申请
    • PRESSURE SENSOR FOR A MILK TRANSPORT SYSTEM
    • 用于奶牛运输系统的压力传感器
    • WO2009145634A1
    • 2009-12-03
    • PCT/NL2009/050305
    • 2009-06-02
    • N.V. NEDERLANDSCHE APPARATENFABRIEK NEDAPVAN DIJK, Jeroen MartinKLOOSTRA, SietzeSCHÄPERCLAUS, Edwin
    • VAN DIJK, Jeroen MartinKLOOSTRA, SietzeSCHÄPERCLAUS, Edwin
    • A01J5/04G01L9/00
    • G01L9/0076A01J5/04G01L9/0005G01L9/0007G01L9/003G01L9/0032G01L9/0072G01L9/0077G01L19/0023
    • A sensor (1) to determine the pressure in a milk transport system of an installation for milking animals, more particularly to determine to what extent a vacuum is present in the milk transport system. The sensor is provided with a first space (4), bounded by one first wall (2), which, in use, is in open communication with the milk transport system or is part of the milk transport system. The sensor is further provided with a first electrode (8) which is mechanically in contact with the first wall, a second electrode (12) and an electronic measuring circuit (16) for measuring a parameter which depends at least on the capacity formed by the first and the second electrode. The sensor is designed such that a distance between the first and second electrode varies as a function of a difference in pressure between the first space and the second space so that the parameter is a measure of the pressure prevailing in the first space relative to the pressure prevailing in the second space.
    • 一种传感器(1),其用于确定用于挤奶动物的装置的牛奶输送系统中的压力,更具体地,确定在牛奶输送系统中真空存在的程度。 传感器设置有第一空间(4),第一空间(4)由一个第一壁(2)限定,第一空间在使用中与牛奶输送系统开放连通,或者是牛奶输送系统的一部分。 传感器还设置有与第一壁机械接触的第一电极(8),第二电极(12)和电子测量电路(16),用于测量至少依赖于 第一和第二电极。 传感器被设计成使得第一和第二电极之间的距离作为第一空间和第二空间之间的压力差的函数而变化,使得参数是相对于压力在第一空间中的压力的​​量度 盛行于第二空间。
    • 8. 发明公开
    • PRESSURE SENSOR FOR A MILK TRANSPORT SYSTEM
    • DRUCKENSENSFÜREINMILCHFÖRDERUNGSSYSTEM
    • EP2299805A1
    • 2011-03-30
    • EP09755091.7
    • 2009-06-02
    • N.V. Nederlandsche Apparatenfabriek NEDAP
    • VAN DIJK, Jeroen MartinKLOOSTRA, SietzeSCHÄPERCLAUS, Edwin
    • A01J5/04G01L9/00
    • G01L9/0076A01J5/04G01L9/0005G01L9/0007G01L9/003G01L9/0032G01L9/0072G01L9/0077G01L19/0023
    • A sensor (1) to determine the pressure in a milk transport system of an installation for milking animals, more particularly to determine to what extent a vacuum is present in the milk transport system. The sensor is provided with a first space (4), bounded by one first wall (2), which, in use, is in open communication with the milk transport system or is part of the milk transport system. The sensor is further provided with a first electrode (8) which is mechanically in contact with the first wall, a second electrode (12) and an electronic measuring circuit (16) for measuring a parameter which depends at least on the capacity formed by the first and the second electrode. The sensor is designed such that a distance between the first and second electrode varies as a function of a difference in pressure between the first space and the second space so that the parameter is a measure of the pressure prevailing in the first space relative to the pressure prevailing in the second space.
    • 一种传感器(1),用于确定用于挤奶动物的装置的牛奶输送系统中的压力,更具体地,确定牛奶输送系统中真空存在的程度。 传感器设置有第一空间(4),第一空间(4)由一个第一壁(2)限定,其在使用中与牛奶输送系统开放连通或者是牛奶输送系统的一部分。 传感器还设置有与第一壁机械接触的第一电极(8),第二电极(12)和电子测量电路(16),用于测量至少取决于由 第一和第二电极。 传感器被设计成使得第一和第二电极之间的距离作为第一空间和第二空间之间的压力差的函数而变化,使得参数是在第一空间中相对于压力存在的压力的量度 盛行于第二空间。