EP1805494A1 - Capteur de pression a transmission hydraulique de la pression - Google Patents

Capteur de pression a transmission hydraulique de la pression

Info

Publication number
EP1805494A1
EP1805494A1 EP05801355A EP05801355A EP1805494A1 EP 1805494 A1 EP1805494 A1 EP 1805494A1 EP 05801355 A EP05801355 A EP 05801355A EP 05801355 A EP05801355 A EP 05801355A EP 1805494 A1 EP1805494 A1 EP 1805494A1
Authority
EP
European Patent Office
Prior art keywords
pressure
transmission
hydraulic path
transfer
sensor according
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Withdrawn
Application number
EP05801355A
Other languages
German (de)
English (en)
Inventor
Thomas Uehlin
Jürgen Lange
Olaf Textor
Raimund Becher
Karl-Heinz Banholzer
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Endress and Hauser SE and Co KG
Original Assignee
Endress and Hauser SE and Co KG
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Endress and Hauser SE and Co KG filed Critical Endress and Hauser SE and Co KG
Publication of EP1805494A1 publication Critical patent/EP1805494A1/fr
Withdrawn legal-status Critical Current

Links

Classifications

    • GPHYSICS
    • G01MEASURING; TESTING
    • G01LMEASURING FORCE, STRESS, TORQUE, WORK, MECHANICAL POWER, MECHANICAL EFFICIENCY, OR FLUID PRESSURE
    • G01L19/00Details of, or accessories for, apparatus for measuring steady or quasi-steady pressure of a fluent medium insofar as such details or accessories are not special to particular types of pressure gauges
    • G01L19/06Means for preventing overload or deleterious influence of the measured medium on the measuring device or vice versa
    • G01L19/0627Protection against aggressive medium in general
    • G01L19/0645Protection against aggressive medium in general using isolation membranes, specially adapted for protection
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01LMEASURING FORCE, STRESS, TORQUE, WORK, MECHANICAL POWER, MECHANICAL EFFICIENCY, OR FLUID PRESSURE
    • G01L19/00Details of, or accessories for, apparatus for measuring steady or quasi-steady pressure of a fluent medium insofar as such details or accessories are not special to particular types of pressure gauges
    • G01L19/0092Pressure sensor associated with other sensors, e.g. for measuring acceleration or temperature
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01LMEASURING FORCE, STRESS, TORQUE, WORK, MECHANICAL POWER, MECHANICAL EFFICIENCY, OR FLUID PRESSURE
    • G01L19/00Details of, or accessories for, apparatus for measuring steady or quasi-steady pressure of a fluent medium insofar as such details or accessories are not special to particular types of pressure gauges
    • G01L19/06Means for preventing overload or deleterious influence of the measured medium on the measuring device or vice versa
    • G01L19/0663Flame protection; Flame barriers
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01LMEASURING FORCE, STRESS, TORQUE, WORK, MECHANICAL POWER, MECHANICAL EFFICIENCY, OR FLUID PRESSURE
    • G01L19/00Details of, or accessories for, apparatus for measuring steady or quasi-steady pressure of a fluent medium insofar as such details or accessories are not special to particular types of pressure gauges
    • G01L19/06Means for preventing overload or deleterious influence of the measured medium on the measuring device or vice versa
    • G01L19/0681Protection against excessive heat

Definitions

  • the present invention relates to pressure transducers with hydraulic pressure transmission, in particular for use at high temperatures.
  • Pressure transmitters with hydraulic pressure transfer usually have a hydraulic path extending between a process diaphragm and a pressure measuring cell, the process diaphragm being exposed to a process medium whose pressure is to be determined.
  • the problem is situations in which high temperatures of the process medium occur at a low process pressure. For example, temperatures above 200 ° C at a pressure below 100 mbar. Under these circumstances, the transfer fluid in the hydraulic path evaporation or outgassing. In the most favorable case, this can be reversible according to the vapor pressure curve for the respective transfer fluid, but in this case too a plastic deformation of the process diaphragm threatens, which results in a measurement error.
  • the transfer liquid does not behave according to the vapor pressure curve for the pure and native state, because due to reactions with impurities or with the surfaces delimiting the hydraulic path, the transfer liquid may contain volatile decomposition products which no longer dissolve after outgassing walk.
  • the transfer fluid should be introduced into the hydraulic path in such a way that it remains chemically stable. However, this is often opposed by other boundary conditions. For example, electronic components and a semiconductor pressure measuring cell can not be exposed to the high temperatures that are advantageous for filling. Ideally, the filling temperature should not be below the maximum process temperature, and hydraulic transmission systems are currently being used to protect the electronic components and the measuring cells from the high process temperatures.
  • the pressure transducer according to the invention comprises
  • a sensor module having a sensor body which has a measuring cell chamber in which a pressure measuring cell is arranged, wherein the pressure measuring cell is pressurized via a first hydraulic path filled with a transfer fluid. is aufschlagbar;
  • a transmission module for transmitting a pressure to the first hydraulic path, wherein
  • the transfer module has a second hydraulic path filled with a transfer fluid, which extends from a process diaphragm through a transfer body to a transfer diaphragm,
  • the transmission membrane is pressure-tightly secured to the transmission body, and
  • the sensor body is connected in such a pressure-tight manner with the transfer body, that the first hydraulic path communicates with the transfer membrane, so that the pressure of the second hydraulic path through the transfer membrane to the first hydraulic path is transferable.
  • the transmission membrane is under
  • the process body may be integrally formed with or separated from the transfer body. From the viewpoint of effective thermal decoupling, a separately formed process body is currently preferred.
  • the process pressure chamber is formed in the end face of a process body, wherein the process body is spaced from the transmission body.
  • the second hydraulic path comprises a pressure line, in particular a capillary line, which extends between the process body and the transmission body.
  • the surfaces defining the second hydraulic path comprise a material or materials which are chemically resistant to the transfer fluid in the second hydraulic path and also have no catalytic effect for reactions of the transfer fluid.
  • the materials comprise, for example, corrosion-resistant alloys, in particular stainless steels.
  • the surfaces delimiting the second hydraulic path preferably comprise molybdenum-containing noble steels which have no titanium except for any impurities present.
  • the second hydraulic path is filled at a filling pressure PA and at a filling temperature TA with the transfer fluid, the filling temperature not more than 10 Kelvin below, preferably at least at, and more preferably at least 10 Kelvin above the speci - f ⁇ undergoen maximum temperature of the process medium for the operation of the Druck ⁇ is located.
  • the filling pressure PA for example, not more than 200 mbar, preferably not more than 100 mbar, more preferably not more than 50 mbar and more preferably not more than 25 mbar.
  • Suitable filling temperatures TA are for example not less than 200 ° C, preferably not less than 240 ° C, more preferably not less than 280 ° C and particularly preferably not less than 290 ° C.
  • the transmission module has a temperature sensor, which is preferably arranged adjacent to the process pressure chamber or to the process diaphragm in order to detect a temperature value which allows conclusions to be drawn about the temperature of the transmission fluid in the process pressure chamber ,
  • the sensor body is pressure-tightly connected to the transfer body, wherein the first hydraulic path comprises the trapped between the sensor body, the transfer membrane, and the transfer body volume.
  • the sensor body is pressure-tightly connected to the transmission body along the first and second mounting surfaces, preferably by welding.
  • the filling of the first hydraulic path with a transfer fluid is preferably carried out after the connection of the sensor body to the transfer body.
  • the transfer fluid in the first hydraulic path may be different from that in the second hydraulic path because it is not exposed to the high temperatures as the transfer fluid in the process pressure chamber.
  • the filling of the first hydraulic path can be carried out at moderate temperatures.
  • Fig. 1 A longitudinal section through a pressure sensor according to the invention.
  • Fig. 2 A longitudinal section through components of a sensor module and a transmission module of the pressure sensor according to the invention, wherein these components are not yet mounted.
  • the pressure sensor comprises a sensor module 1 and a transmission module 2.
  • the sensor module 1 comprises a sensor body 11, which has at least partially cylindrical symmetry or another axial symmetry.
  • a measuring cell chamber 15 is arranged, which is connected via a measuring cell channel 12 with a first end face of the sensor body 11.
  • the first end face is the transmission module 2 facing. It is also bounded by an annular mounting wall 17 which extends in the axial direction from the first end face.
  • the mounting wall 17 has a first mounting end face 18, which is planar according to a presently preferred embodiment.
  • the first mounting end face 18 is pressure-tightly connected to a mating second mounting surface. Details will be given below following a description of the structure of the transmission module.
  • the transmission module comprises a process body 21 and a transmission body 22, which each have at least a portion of cylindrical symmetry or rotational symmetry.
  • the symmetries mentioned are not essential to the invention, but they arise when the components of the pressure transducer are manufactured as turned parts.
  • a flexible process membrane 24 is attached pressure-tight along its circumference. Between the process membrane 24 and the process body 21, a process pressure chamber is formed, which communicates with the capillary line 23.
  • a flexible transmission membrane 25 is attached pressure-tight along its circumference. Between the transfer membrane 25 and the transfer body 22, a transfer pressure chamber 28 is thereby formed, which communicates with the capillary line 23 and thereby with the process pressure chamber 29.
  • the process pressure chamber 29, the capillary 23 and the transfer pressure chamber 28 are filled with a temperature-resistant transfer fluid.
  • the process membrane 24 can be exposed to a process medium, and the pressure of the medium is transmitted by means of the transfer liquid to the transfer membrane 25.
  • the sensor-side end face of the transmission body has the aforementioned second mounting surface, with which the first mounting surface of the sensor module welded pressure-tight, is.
  • the measuring cell chamber as well as the volume between it and the transmission diaphragm, ie the first hydraulic path, are filled with a transfer fluid after the sensor body has been connected to the transfer body along the first and second mounting surfaces.
  • a blind hole is further provided in the process body 21, in which a temperature sensor 33 can be positioned in order to detect a temperature of the process body which makes possible statements about the temperature in the second hydraulic path.
  • the connection lines 32 of the temperature sensor 33 are guided through the bore 30 in the edge region of the transmission body to the sensor module or to a circuit which evaluates the temperature data.
  • the connection lines can be guided in a steel tube 31 or in a steel jacket, as shown in FIG. 1.
  • the steel pipe is preferably inserted into the blind hole in the process body in such a way that the annular gap between the process body and the steel pipe meets the requirements for a flame arrestor. Accordingly, the connection of the steel pipe to the transmission body can be designed such that it meets the requirements for a flame arrestor.

Landscapes

  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Chemical & Material Sciences (AREA)
  • Analytical Chemistry (AREA)
  • Measuring Fluid Pressure (AREA)

Abstract

Capteur de pression pour des utilisations à haute température, qui comporte un module capteur (1) pourvu d'un corps (11) de capteur possédant une chambre (15) dans laquelle est située une cellule de mesure de pression (13), ladite cellule de mesure de pression (13) pouvant être soumise à l'action d'une pression via une première voie hydraulique remplie d'un liquide de transmission, et un module de transmission destiné à transmettre une pression à la première voie hydraulique. Ledit module de transmission (2) possède une seconde voie hydraulique remplie d'un liquide de transmission, qui s'étend d'une membrane de travail (24) via un corps de transmission (22) jusqu'à une membrane de transmission (25). La membrane de transmission (25) est fixée de manière étanche à la pression au corps de transmission (22) et le corps (11) de capteur est relié au corps de transmission de manière étanche à la pression de manière telle que la membrane de transmission (25) communique avec la première voie hydraulique si bien que la pression de la seconde voie hydraulique peut être transmise à la première voie hydraulique à travers la membrane de transmission.
EP05801355A 2004-10-29 2005-10-24 Capteur de pression a transmission hydraulique de la pression Withdrawn EP1805494A1 (fr)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
DE102004052950A DE102004052950A1 (de) 2004-10-29 2004-10-29 Druckaufnehmer mit hydraulischer Druckübertragung
PCT/EP2005/055492 WO2006045771A1 (fr) 2004-10-29 2005-10-24 Capteur de pression a transmission hydraulique de la pression

Publications (1)

Publication Number Publication Date
EP1805494A1 true EP1805494A1 (fr) 2007-07-11

Family

ID=35517212

Family Applications (1)

Application Number Title Priority Date Filing Date
EP05801355A Withdrawn EP1805494A1 (fr) 2004-10-29 2005-10-24 Capteur de pression a transmission hydraulique de la pression

Country Status (6)

Country Link
US (1) US7866214B2 (fr)
EP (1) EP1805494A1 (fr)
CN (1) CN101263374B (fr)
DE (1) DE102004052950A1 (fr)
RU (1) RU2381466C2 (fr)
WO (1) WO2006045771A1 (fr)

Families Citing this family (13)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE102006049942B4 (de) * 2006-10-19 2013-10-02 Endress + Hauser Gmbh + Co. Kg Druckmittler, Drucksensor mit Druckmittler und Verfahren zum Herstellen eines Druckmittlers
EP2547996B1 (fr) 2010-03-16 2020-02-19 Presens AS Capteur de pression récupérable
DE102011017824A1 (de) 2011-04-29 2012-10-31 Endress + Hauser Gmbh + Co. Kg Hochtemperaturdruckmessaufnehmer
NO333052B1 (no) 2011-09-08 2013-02-25 Presens As Trekkbar trykksensor
DE102012103688B4 (de) * 2012-04-26 2020-10-01 Endress+Hauser SE+Co. KG Differenzdruckmessaufnehmer
EP3598097B8 (fr) * 2013-07-19 2023-10-11 Rosemount, Inc. Émetteur de pression doté d'un ensemble d'isolation avec un bouchon d'isolateur en deux parties
DE102014011724B3 (de) * 2014-08-06 2015-12-10 Abb Technology Ag Schutzrohrvorrichtung zum Schutz eines Temperatursensors vor Kontakt mit einem Fluid
US9797237B2 (en) 2014-11-17 2017-10-24 General Electric Company Constant volume temperature to pressure transducer for use with retrievable pressure sensor assemblies
DE102015110351A1 (de) * 2015-06-26 2016-12-29 Endress + Hauser Gmbh + Co. Kg Druckübertragungsmodul und Druckmessaufnehmer mit einem Druckübertragungsmodul
CN107655618A (zh) * 2017-09-23 2018-02-02 南京律智诚专利技术开发有限公司 一种耐腐蚀压力变送器的生产方法
DE102018123433A1 (de) * 2018-09-24 2020-03-26 Endress+Hauser SE+Co. KG Hydraulischer Druckmittler und Druckaufnehmer mithydraulischem Druckmittler
DE102020122193A1 (de) * 2020-08-25 2022-03-03 Endress+Hauser SE+Co. KG Hydraulischer Druckmittler und Druckaufnehmer mit hydraulischem Druckmittler
DE102021128733A1 (de) * 2021-11-04 2023-05-04 Endress+Hauser SE+Co. KG Druckaufnehmer

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE1948191B1 (de) * 1969-09-24 1971-01-14 Siemens Ag Druckmessumformer fuer Messmedien hoher Temperatur
DE2808469A1 (de) * 1978-02-28 1979-09-06 Erich Brosa Druckaufnehmer fuer heisse medien
JPS5968636A (ja) * 1982-10-13 1984-04-18 Fuji Electric Corp Res & Dev Ltd 高温用圧力置換器
EP0828147A2 (fr) * 1996-09-10 1998-03-11 Fujikin Inc. Capteur de pression
WO2004097361A1 (fr) * 2003-04-29 2004-11-11 Endress+Hauser Gmbh+Co. Kg Capteur de pression a compensation de temperature

Family Cites Families (13)

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DE688097C (de) * 1935-02-14 1940-02-12 Rudolf Haas Dr Ing Membrandruckmesser
DE2523869A1 (de) * 1975-05-30 1976-12-16 Erich Brosa Druckaufnehmer fuer heisse massen
US4722228A (en) * 1985-11-20 1988-02-02 Honeywell Inc. Remote seal-type pressure signal generator
CN2051350U (zh) * 1989-03-25 1990-01-17 赵振勇 一种防腐压力传感器
CN1111729C (zh) * 1995-02-28 2003-06-18 罗斯蒙德公司 带远处膜片及其校正电路的压力变送器
RU2145703C1 (ru) 1995-02-28 2000-02-20 Роузмаунт Инк. Преобразователь давления с вынесенной герметичной диафрагмой и контуром коррекции и способ измерения давления
US6612175B1 (en) * 2000-07-20 2003-09-02 Nt International, Inc. Sensor usable in ultra pure and highly corrosive environments
DE10052079A1 (de) * 2000-10-19 2002-05-02 Endress Hauser Gmbh Co Druckmeßanordnung
DE10135568A1 (de) * 2001-07-20 2003-02-06 Endress & Hauser Gmbh & Co Kg Drucksensor
DE10150691A1 (de) * 2001-10-17 2003-04-30 Endress & Hauser Gmbh & Co Kg Druckmeßaufnehmer mit Trennmembran und Temperaturkompensation
DE10200779B4 (de) * 2002-01-10 2009-03-12 Endress + Hauser Gmbh + Co. Kg Druckmittler mit Modul zur Erkennung von Membranbrüchen und Druckmessgerät zur Erkennung von Membranbrüchen
DE102004006383A1 (de) * 2004-02-09 2005-08-25 Endress + Hauser Gmbh + Co. Kg Differenzdruckaufnehmer mit Überlastmembran
DE102004017580A1 (de) * 2004-04-07 2005-12-01 Endress + Hauser Gmbh + Co. Kg Differenzdruckaufnehmer mit dynamischem Überlastschutz

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE1948191B1 (de) * 1969-09-24 1971-01-14 Siemens Ag Druckmessumformer fuer Messmedien hoher Temperatur
DE2808469A1 (de) * 1978-02-28 1979-09-06 Erich Brosa Druckaufnehmer fuer heisse medien
JPS5968636A (ja) * 1982-10-13 1984-04-18 Fuji Electric Corp Res & Dev Ltd 高温用圧力置換器
EP0828147A2 (fr) * 1996-09-10 1998-03-11 Fujikin Inc. Capteur de pression
WO2004097361A1 (fr) * 2003-04-29 2004-11-11 Endress+Hauser Gmbh+Co. Kg Capteur de pression a compensation de temperature

Non-Patent Citations (1)

* Cited by examiner, † Cited by third party
Title
See also references of WO2006045771A1 *

Also Published As

Publication number Publication date
CN101263374A (zh) 2008-09-10
DE102004052950A1 (de) 2006-05-04
WO2006045771A1 (fr) 2006-05-04
US20090107245A1 (en) 2009-04-30
CN101263374B (zh) 2010-05-12
RU2381466C2 (ru) 2010-02-10
RU2007119713A (ru) 2008-12-10
US7866214B2 (en) 2011-01-11

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