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    • 1. 发明授权
    • Vibration-type measuring transducer having securement element for mounting components of the oscillation sensor
    • 具有固定元件的振动型测量传感器,用于安装振荡传感器的部件
    • US08104360B2
    • 2012-01-31
    • US12458949
    • 2009-07-28
    • Ennio BittoChristian SchützeMartin AnklinVivek Kumar
    • Ennio BittoChristian SchützeMartin AnklinVivek Kumar
    • G01F1/84
    • G01F1/8495G01F1/8413
    • A measuring transducer comprises a measuring tube vibrating at least at times during operation, having a wall thickness (s) and at least one oscillation sensor, especially an electrodynamic oscillation sensor, for producing at least one primary signal of the measuring transducer representing vibrations of the measuring tube. In the measuring transducer at least one securement element, especially a metal securement element, fixedly encircling the measuring tube essentially along a circumferential line thereof and having a total width (B), for holding a component of the oscillation sensor, especially a magnet coil or a permanent magnet, on the measuring tube is provided. The securement element has an essentially rectangular outer perimeter with a projection protruding out therefrom by a height (h) and serving for holding the component of the oscillation sensor. The projection has a width (e), which is smaller than the total width (B) of the securement element.
    • 测量传感器包括至少在操作期间振动的测量管,具有壁厚和至少一个振荡传感器,特别是电动振动传感器,用于产生表示振动的测量传感器的至少一个主信号 测量管。 在测量传感器中,至少一个固定元件,特别是金属固定元件,基本上沿其圆周线固定地围绕测量管并具有总宽度(B),用于保持振荡传感器,特别是磁体线圈或 设置在测量管上的永磁体。 固定元件具有基本上矩形的外周边,具有从其突出高度(h)的突出部,并且用于保持振动传感器的部件。 突起的宽度(e)小于固定元件的总宽度(B)。
    • 2. 发明授权
    • Vibratory transducer
    • 振动传感器
    • US06666098B2
    • 2003-12-23
    • US10152692
    • 2002-05-23
    • Wolfgang DrahmAlfred RiederEnnio BittoRainer LorenzChristian SchützeAlfred WengerMichael FuchsMartin Anklin
    • Wolfgang DrahmAlfred RiederEnnio BittoRainer LorenzChristian SchützeAlfred WengerMichael FuchsMartin Anklin
    • G01F184
    • G01F1/8413G01F1/8418G01F1/8472G01F1/8477
    • A vibratory transducer comprises a flow tube for conducting the fluid flowing in a pipe. The flow tube communicates with the pipe via an inlet-side tube section and an outlet-side tube section. An antivibrator is mechanically connected with the flow tube by an inlet-side coupler and an outlet-side coupler. For driving flow tube and antivibrator at an excitation frequency the transducer comprising an excitation system and for sensing inlet-side and outlet-side vibrations of the flow tube the transducer comprising a sensor system. An internal system formed by the flow tube, the antivibrator, the excitation system, and the sensor system, oscillating about a longitudinal axis of the transducer which is essentially in alignment with the inlet-side tube sections, forces a torsion of the couplers about the longitudinal axis and an essentially torsional elastic deformation of the inlet-side and outlet-side tube sections. The couplers are so dimensioned that an inherent torsion eigenmode of the inlet-side coupler and the inlet-side tube section has a natural frequency approximately equal to the excitation frequency, and an inherent torsion eigenmode of the outlet-side coupler and outlet-side tube section has a natural frequency essentially equal to the natural frequency of the inlet-side inherent torsion eigenmode.
    • 振动换能器包括用于导管在管中流动的流体的流管。 流管经由入口侧管部和出口侧管部与管连通。 防振器通过入口侧联接器和出口侧联接器与流量管机械连接。 为了以激励频率驱动流管和防振器,换能器包括激励系统并且用于感测流管的入口侧和出口侧振动,换能器包括传感器系统。 由流体管,防振器,激励系统和传感器系统形成的内部系统围绕换能器的纵向轴线摆动,该纵向轴线基本上与入口侧管段对准,迫使耦合器的扭转在 纵向轴线和入口侧和出口侧管段的基本上扭转的弹性变形。 耦合器的尺寸使得入口侧耦合器和入口侧管部分的固有扭转本征模具具有大致等于激发频率的固有频率,并且出口侧耦合器和出口侧管的固有扭转本征模式 截面具有基本上等于入口侧固有扭转本征模式的固有频率的固有频率。
    • 4. 发明授权
    • Measuring system for media flowing in a pipeline
    • 在管道中流动的介质的测量系统
    • US08333121B2
    • 2012-12-18
    • US12659534
    • 2010-03-11
    • Ennio BittoAlfred RiederMartin AnklinChristof HuberMichael Kirst
    • Ennio BittoAlfred RiederMartin AnklinChristof HuberMichael Kirst
    • G01F1/84
    • G01F1/8495G01F1/8409G01F1/8413G01F1/8431G01F1/8436G01F15/024G01N11/16
    • A measuring system comprises: a measuring transducer, through which medium flows and which produces oscillatory signals dependent on medium viscosity and/or a Reynolds number of the flowing medium; and transmitter electronics for driving the measuring transducer and for evaluating oscillatory signals. The measuring transducer includes: four, mutually spaced, flow openings; an outlet-side flow divider with four, mutually spaced, flow openings; four, mutually parallel, straight, measuring tubes for conveying flowing medium, connected to the flow dividers electromechanical exciter mechanism. The transmitter electronics feeds, by means of an electrical driver signal supplied to the exciter mechanism, electrical excitation power into the exciter mechanism, while the exciter mechanism converts electrical excitation power at least partially into torsional oscillations of the first measuring tube, opposite-equal torsional oscillations of the second measuring tube, as well as into torsional oscillations of the third measuring tube, opposite-equal torsional oscillations of the fourth measuring tube.
    • 测量系统包括:测量换能器,介质流过该传感器,并且其产生取决于介质粘度和/或流动介质的雷诺数的振荡信号; 以及用于驱动测量传感器和用于评估振荡信号的发射机电子装置。 测量传感器包括:四个相互间隔开的流动开口; 具有四个相互间隔开的流动开口的出口侧分流器; 四个相互平行的,直的测量管,用于输送流动介质,连接到分流器机电励磁机构。 发射机电子装置通过提供给激励机构的电驱动器信号将电激励功率馈送到激励机构中,而激励机构将电激励功率至少部分地转换成第一测量管的扭转振荡,相反的扭转 第二测量管的振荡以及第三测量管的扭转振荡,与第四测量管相反相等的扭转振荡。
    • 5. 发明授权
    • Measuring transducer of vibration-type, as well as an in-line measuring device having such a measuring transducer
    • 振动型测量传感器,以及具有这种测量传感器的在线测量装置
    • US08333120B2
    • 2012-12-18
    • US12659531
    • 2010-03-11
    • Ennio BittoAlfred RiederMartin AnklinChristof Huber
    • Ennio BittoAlfred RiederMartin AnklinChristof Huber
    • G01F1/84
    • G01F1/8495G01F1/8409G01F1/8413G01F1/8431G01F1/8436G01F15/024G01N11/16
    • A measuring transducer comprises: a transducer housing, an inlet-side, flow divider having exactly four spaced flow openings and an outlet-side, housing end by means of an outlet-side, flow divider having exactly four spaced flow openings; as well as exactly four, straight, measuring tubes connected to the flow dividers. Each of the four measuring tubes opens with an inlet-side, measuring tube end into one the flow openings and with an outlet-side, measuring tube end into one the flow openings of the outlet-side, flow divider. Additionally, the measuring transducer includes an electromechanical exciter mechanism, wherein the exciter mechanism is embodied in such a manner, that, therewith, the measuring tubes are excitable pairwise to execute opposite phase bending oscillations in, in each case, a shared imaginary plane of oscillation. The measuring transducer is suitable, especially, for measuring a density and/or a mass flow rate of a medium flowing in a pipeline, at least at times, with a mass flow rate of more than 2200 t/h.
    • 测量传感器包括:传感器壳体,具有正好四个间隔开的流动开口的入口侧流量分配器,以及具有正好四个间隔开的流动开口的出口侧分流器的出口侧壳体端; 以及连接到分流器的正好四个直的测量管。 四个测量管中的每一个都具有入口侧,测量管端部分为一个流动开口,出口侧的测量管端部分为出口侧流量分配器的流动开口。 此外,测量换能器包括机电激励器机构,其中激励器机构以这样的方式体现,即,因此,测量管成对地可激发,以在每种情况下执行相反相位弯曲振荡,共振的虚拟平面振荡 。 测量传感器特别适用于至少有时以质量流量大于2200t / h测量在管道中流动的介质的密度和/或质量流量。
    • 6. 发明授权
    • Measuring system for media flowing in a pipeline
    • 在管道中流动的介质的测量系统
    • US08316722B2
    • 2012-11-27
    • US12659535
    • 2010-03-11
    • Ennio BittoAlfred RiederMartin AnklinChristof HuberMichael Kirst
    • Ennio BittoAlfred RiederMartin AnklinChristof HuberMichael Kirst
    • G01F1/84
    • G01F1/8495G01F1/8409G01F1/8413G01F1/8431G01F1/8436G01F15/024G01N11/16
    • The measuring system comprises: a measuring transducer, through which medium flows during operation and which serves for producing oscillatory signals dependent on a viscosity of the flowing medium and/or a Reynolds number of the flowing medium; transmitter electronics for driven the measuring transducer and for evaluating oscillatory signals delivered by the measuring transducer. The measuring transducer includes: an inlet-side flow divider; an outlet-side flow divider; at least two, mutually parallel, straight, measuring tubes, connected to the flow dividers; as well as an electromechanical exciter mechanism for exciting and maintaining mechanical oscillations of the at least two measuring tubes. Each of the at least two measuring tubes opens with an inlet-side measuring tube end into a flow opening and with an outlet-side. The transmitter electronics feeds, by means of an electrical driver signal supplied to the exciter mechanism, electrical excitation power into the exciter mechanism, while the exciter mechanism converts electrical excitation power at least partially into opposite-equal torsional oscillations of the at least two measuring tubes.
    • 测量系统包括:测量传感器,介质在操作期间流动,用于根据流动介质的粘度和/或流动介质的雷诺数产生振荡信号; 用于驱动测量传感器并用于评估由测量传感器传递的振荡信号的变送器电子装置。 测量传感器包括:入口侧分流器; 出口侧分流器; 连接到分流器的至少两个相互平行的直的测量管; 以及用于激发和保持所述至少两个测量管的机械振荡的机电激励器机构。 至少两个测量管中的每一个打开,入口侧测量管端部进入流动开口并具有出口侧。 发射机电子装置通过提供给激励机构的电驱动器信号将电激励功率馈送到激励机构中,同时激励机构将电激励功率至少部分地转换成至少两个测量管的相等的扭转振荡 。
    • 8. 发明申请
    • Measuring transducer of vibration-type, as well as an in-line measuring device having such a measuring transducer
    • US20110146383A1
    • 2011-06-23
    • US12659533
    • 2010-03-11
    • Ennio BittoAlfred RiederMartin AnklinChristof Huber
    • Ennio BittoAlfred RiederMartin AnklinChristof Huber
    • G01F1/84G01N9/32
    • G01F1/8495G01F1/8409G01F1/8413G01F1/8431G01F1/8436G01F15/024G01N11/16
    • The measuring transducer serves for registering at least one physical, measured variable of a flowable medium guided in a pipeline and/or for producing Coriolis forces serving for registering a mass flow rate of a flowable medium guided in a pipeline. For such purpose, the measuring transducer comprises: A transducer housing (71), of which an inlet-side, housing end is formed by means of an inlet-side, flow divider (201) having exactly four flow openings (201A, 201B, 201C, 201D) spaced, in each case, from one another and an outlet-side, housing end is formed by means of an outlet-side, flow divider (202) having exactly four flow openings (202A, 202B, 202C, 202D) spaced, in each case, from one another; as well as exactly four, straight, measuring tubes (181, 182, 183, 184) connected to the flow dividers (201, 202) for guiding flowing medium along flow paths connected in parallel. Each of the four measuring tubes opens with an inlet-side, measuring tube end into one the flow openings (201A, 201B, 201C, 201D) of the inlet-side, flow divider (201) and with an outlet-side, measuring tube end into one the flow openings (202A, 202B, 202C, 202D) of the outlet-side, flow divider (202). Additionally, the measuring transducer includes an electromechanical exciter mechanism (5) for producing and/or maintaining mechanical oscillations of the four measuring tubes (181, 182, 183, 184), wherein the exciter mechanism is embodied in such a manner, that, therewith, the measuring tubes are excitable pairwise to execute opposite phase bending oscillations in, in each case, a shared imaginary plane of oscillation (XZ1, XZ2). The measuring transducer of the invention is suitable, especially, for measuring a density and/or a mass flow rate of a medium flowing in a pipeline, at least at times, with a mass flow rate of more than 2200 t/h.