EP2516969A1 - Support de montage pour un insert de mesure en forme de bâtonnet - Google Patents

Support de montage pour un insert de mesure en forme de bâtonnet

Info

Publication number
EP2516969A1
EP2516969A1 EP10776697A EP10776697A EP2516969A1 EP 2516969 A1 EP2516969 A1 EP 2516969A1 EP 10776697 A EP10776697 A EP 10776697A EP 10776697 A EP10776697 A EP 10776697A EP 2516969 A1 EP2516969 A1 EP 2516969A1
Authority
EP
European Patent Office
Prior art keywords
housing part
installation fitting
fitting
safety chamber
sealing device
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Withdrawn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
EP10776697A
Other languages
German (de)
English (en)
Inventor
Michele Pietroni
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 Wetzer GmbH and Co KG
Original Assignee
Endress and Hauser Wetzer GmbH 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 Wetzer GmbH and Co KG filed Critical Endress and Hauser Wetzer GmbH and Co KG
Priority to EP10776697A priority Critical patent/EP2516969A1/fr
Publication of EP2516969A1 publication Critical patent/EP2516969A1/fr
Withdrawn legal-status Critical Current

Links

Classifications

    • GPHYSICS
    • G01MEASURING; TESTING
    • G01DMEASURING NOT SPECIALLY ADAPTED FOR A SPECIFIC VARIABLE; ARRANGEMENTS FOR MEASURING TWO OR MORE VARIABLES NOT COVERED IN A SINGLE OTHER SUBCLASS; TARIFF METERING APPARATUS; MEASURING OR TESTING NOT OTHERWISE PROVIDED FOR
    • G01D11/00Component parts of measuring arrangements not specially adapted for a specific variable
    • G01D11/24Housings ; Casings for instruments
    • G01D11/245Housings for sensors
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y10TECHNICAL SUBJECTS COVERED BY FORMER USPC
    • Y10TTECHNICAL SUBJECTS COVERED BY FORMER US CLASSIFICATION
    • Y10T137/00Fluid handling
    • Y10T137/6851With casing, support, protector or static constructional installations

Definitions

  • the invention relates to a mounting fitting.
  • Installation fittings such as. A dip tube
  • a dip tube are usually used when pulling out a measuring insert for maintenance or replacement purposes, a guide tube into which the measuring insert is inserted and thus to close an opening in a container wall.
  • measuring inserts which are used, for example, to record measured variables such as pressure, temperature, fill level, flow, turbidity, conductivity and pH.
  • it is necessary to interrupt the process i. depressurise and / or empty a container. Of course, such interruptions are not desired.
  • US Pat. No. 4,376,227 discloses a protective tube-like fitting which is rigidly inserted in a container and by means of a
  • the sealing element is a single flange gasket, which, however, immediately exposes the container interior when opened.
  • US Pat. No. 4,410,756 describes a device which has a good thermal medium contact and a light thermal contact
  • thermometer end is sealed to a container to be sealed directly to the container with a screw-pinch seal, for example, to make an exchange for service purposes.
  • a device for electrically insulated attachment of a metallic probe electrode in the opening of a housing has become known from the published patent application DE 41 18715 A1.
  • a rod electrode is inserted into a mounting fitting, the installation fitting a
  • Process connection has to a so-called. Housing head, in which an associated operating electronics is connected directly.
  • Seal stage is formed by a piece of pipe that can be screwed onto a remote from the process end of the probe. Through the pipe section, the probe is then contacted electrically. However, the probe or its measuring insert can not be introduced or removed by the pipe section.
  • the publication US 2005/0223781 A1 shows a measuring arrangement with a safety module, which also has two sealing stages.
  • the security module also consists of a housing part, through which the measuring probe can be electrically contacted.
  • the actual measuring probe or the measuring insert are exposed to the process medium on the process medium and connected to the safety module via a permanent seal, via which the measuring insert can not be exchanged, without the medium emerging from the process.
  • the invention is therefore based on the object to propose an installation fitting, which can be operated safely even in the case of leakage of the installation fitting and the penetration of the medium in the installation fitting.
  • an installation fitting with a fitting housing for receiving at least one rod-shaped
  • the fitting housing has a tubular first and second housing part, wherein for receiving the
  • Valve housing inserted measuring insert serves to the second
  • Safety chamber against the first safety chamber in particular pressure and / or liquid-tight, seal.
  • the first safety chamber can thus be separated from the second safety chamber, for example, in the event of a fault, and thereby, in particular pressure and / or liquid-tight, sealed. Therefore, the security, e.g., according to the requirements of functional safety, i. SIL or ATEX can be guaranteed at the measuring point without having to stop the process. In particular, the reliability of a measuring device, for which the installation fitting is used, can thus be increased.
  • the separation or sealing can be done either automatically and / or manually by intervention of the operator.
  • the process connection has, for example, a first side, on which the first housing part is located, which contains the first safety chamber, and also has a second, in particular the first side opposite side, on which there is the second housing part containing the second safety cannister.
  • the first and second chambers in the event of a fault or interference, form a single chamber, i. a coherent total volume, in which, for example, the measuring insert is arranged.
  • a measuring medium that may penetrate into the fitting can therefore initially penetrate into both the first and the second chamber. In case of error, the
  • Total volume-forming chamber are then divided by means of the sealing device in the first and second safety chamber, so that the first and the second chamber from each other pressure and / or liquid-tight sealed.
  • the medium to be measured which has penetrated into the fitting via a leakage of the installation fitting in the region of the first housing part, within the first housing part or the first
  • Security chamber held and dammed there. Further penetration of the medium into the second safety chamber is thereby avoided.
  • the fitting itself thus consists, for example, of the first and second
  • Safety chamber connected connection head which contains a measuring and / or operating electronics.
  • a measuring and / or operating electronics In the fitting is a particular
  • the second safety chamber can then, for example, by being rinsed, be freed from the medium.
  • sealed third housing part is housed, characterized it is not in danger of being damaged by the medium entering it.
  • the sealing device can therefore also be closed and thus the first safety chamber can be separated from the second safety chamber when the measuring insert is partially located in the first safety chamber.
  • the sealing device can thus be closed even when in the fitting, more precisely in the first and the second safety chamber, introduced measuring insert.
  • the second housing part and the second safety chamber contained therein thus serve as well as the first housing part and the first safety chamber for receiving the
  • Sealing device eg. Have a bore through which the measuring insert is guided in the first safety chamber.
  • the bore can then be closed together with the part of the measuring insert guided through the bore, so that the first safety chamber is separated from the second safety chamber and, in particular pressure and / or liquid-tight, sealed.
  • the seal between the first and the second safety chamber can be made gas-tight. If a plurality of measuring inserts are present, they can be guided, for example, together through a bore in the sealing device or in each case through a bore in the sealing device. Sealant for closing the hole must then be provided accordingly.
  • the first safety chamber can essentially serve the
  • the purpose of the safety chamber is to protect the process environment from any medium that may have penetrated into the installation fitting.
  • Safety chamber can act in this way as an additional sealing level between the medium and the process environment, especially a remote control room.
  • Safety chamber to be contained in the first housing part.
  • the first housing part thus forms the environmental boundary of the Mounting fitting and thus provides protection for the first
  • Housing part introduced measuring insert against the exposed in case of operation fluid.
  • the first housing part is then arranged within a container and exposed to the medium, while the second housing part outside of the container in which the first housing part is located, is arranged.
  • the installation fitting is attached to the container via the process connection.
  • any medium that has penetrated within the first protective chamber i. within the installation fitting which consists, for example, of a protective tube, are held, so that the medium can not penetrate further than the process connection.
  • the surface temperature at the location of the installation fitting can be kept below the limit value required, for example, by the ATEX Directive T6. It can thus be maintained in the case of a fault, such as, for example, a leakage of the first housing part, the same level of security, as in the fault-free case.
  • the sealing device seals the first safety chamber of the second safety chamber in the area of the process connection.
  • the medium to be measured can be prevented from exiting the first housing part serving as a protective fitting, for example, and, as mentioned, any heating, in particular the
  • Valve housing a connected to the second housing part third housing part, which serves third housing part for receiving a measuring and / or operating electronics.
  • the third housing part can, for example, be a transmitter housing, in particular a so-called connection head, and be separated from the second safety chamber by a further sealing step. Consequently, an optionally penetrated into the second safety chamber
  • first and the second housing part, as well as the first and the second safety chamber serve for receiving and / or guiding the measuring insert
  • the third housing part the measuring and / or operating electronics housed for the measuring insert.
  • Operating electronics consists, for example, of electronic components or is composed of these. Accordingly, the first and the second housing part are preferably free of electronic components and thus do not contain any electronic components which serve for the preparation and / or processing of the measuring signal recorded by means of the measuring insert.
  • At least the first, second and third housing part are connected to each other and the
  • Valve body is modular essentially composed of the three housing parts.
  • the housing parts of the installation fitting can, for example, be connected to one another via a screw connection.
  • the second housing part can be screwed to the example designed as a flange process connection of the first housing part.
  • the installation fitting is partially in one piece, i. in that at least the first and the second and / or the third housing part form a unit and are therefore connected to one another, in particular by a material fit.
  • the first housing part is attached by means of the process connection to an opening of a container and protrudes into the container.
  • the first housing part is exposed during a measuring operation environment side of a medium.
  • the second housing part closes outside the
  • Sealing device to, in the event of leakage of the first housing part, the second housing part of the first housing part, in particular pressure and / or liquid-tight, seal, without the measuring operation
  • the measuring insert remains within the Einbauarnnatur, in particular, the measuring insert remains in an unchanged compared to the error-free measuring operation within the installation fitting.
  • the measuring insert can therefore be arranged both with the sealing device open and closed in the first safety chamber and in the second safety chamber.
  • the measuring insert which is at least partly arranged in the first and second safety chamber, should therefore not be damaged during sealing in order to be able to continue the measuring operation. As mentioned, can for separating the
  • Security chambers be provided a sealant and used to, for example, to close the bore of the sealing device through which the measuring insert is guided.
  • the measuring operation of the measuring device which uses the installation fitting, so it can be continued because the measuring insert, for example. As in the temperature measurement is still in thermal contact with the medium.
  • the second housing part may, for example, a
  • the sealing attachment can then, for example, by attaching the second
  • Housing part on the first housing part frictionally and / or
  • Sealing attachment as well as the entire sealing device integrated or incorporated into the second housing part.
  • the sealing attachment can serve as a connection between the first safety chamber located in the first housing part and the second safety chamber located in the second housing part.
  • the seal attachment further comprises at least one bore which serves to receive or carry out the at least one measuring insert.
  • the Measuring insert In the assembled state is the Measuring insert then, for example, passed through the sealing device.
  • the measuring insert can be guided by a bore provided in the sealing device, in particular the sealing attachment.
  • the first and the second safety chamber can be interconnected. By closing the sealing device, this connection can then be disconnected, and the first
  • the sealing step can be performed liquid-tight and / or pressure-tight or gas-tight.
  • the bore for receiving the measuring insert also serves to accommodate a, in particular substantially made of graphite, sleeve, which sleeve in turn serves to receive the at least one measuring insert.
  • the sleeve encloses the measuring insert in the region of the bore at least in sections along the longitudinal axis of the measuring insert.
  • the sleeves can be like in the
  • the installation fitting further pressure sleeves are provided on the seal attachment, which serve to cause a compression of the sleeves and thereby seal the first safety chamber against the second safety chamber, in particular pressure and / or liquid-tight.
  • the pressure sleeves may be, for example, stops made by a bore for the sleeve around the measuring insert. If the sleeve surrounding the measuring insert is pressed against the pressure sleeve, the sleeve may deform. The deformation of the sleeve can be used to fill a gap between the measuring insert and the wall of the bore, with which the material from which the sleeve is made.
  • the sealing attachment has a bore for receiving a pressure piston, which pressure piston causes the compression of the sleeve.
  • the pressure piston can take a look at it
  • the pressure piston may transmit a force in the longitudinal direction of the sleeve, so that the sleeve begins to deform at a force exceeding the stiffness in the longitudinal direction of the sleeve.
  • the sealing device automatically the first housing part relative to the second housing part, in particular pressure and / or liquid-tight from.
  • a pneumatic actuator can be provided.
  • the signal output for example, when switching a limit operating pressure, an actuator switches, for example.
  • pneumatic actuators causes the closure of the sealing device.
  • Pressure line actuated at the process pressure transmitted via the medium, resulting in an intrinsic closing function.
  • the sealing device in the event of leakage of the first housing part, the sealing device is kept, which is the first
  • Housing part relative to the second housing part in particular pressure and / or liquid-tight, automatically seals.
  • Operating limit pressure switches an actuator that causes by means of hydraulic or pneumatic actuators, the closure of the first safety chamber relative to the second safety chamber.
  • FIG. 1 shows a section through the longitudinal axis of a mounting fitting with several rod-shaped measuring inserts
  • FIG. 3 shows a further section through the longitudinal axis of the installation fitting at the level of the sealing device, but about a plane offset from FIG , and
  • FIG. 4 shows a section through an installed installation fitting a) in the fault-free operating state, b) in the event of leakage and filled first
  • Safety chamber in case of leakage and filled first and second safety chamber.
  • the installation fitting 4 consists of a dip tube 7, which is at least partially exposed to a medium 27 in the installed state and serves as a protective fitting against the medium 27.
  • the immersion tube 7 forms a first housing part of the installation fitting 4.
  • a process connection 9 in the form of a mounting flange is provided, which serves to secure the installation fitting 4 to the wall of a container B in which the medium 27 is located.
  • a sealing device 10 is arranged and connected to the dip tube 7.
  • the sealing device 10 is of a received second housing part 29, that is also above, that is arranged on the immersion tube 7 opposite side of the process connection 9, the immersion tube 7.
  • the second housing part 29 is here via a compression fitting 25 with the third housing part, not shown in Figure 1, connected.
  • Within the first housing part, ie the immersion tube 7, and the second housing part 29 a plurality of measuring inserts 5 are arranged within the first housing part, ie the immersion tube 7, and the second housing part 29 . These measuring inserts 5 can, for example, for receiving the temperature, in particular at several points of the first housing part 7, a
  • temperature sensor 6 can be provided.
  • the immersion tube 7 terminates at one end with the process connection 9.
  • the immersion tube 7 is closed at the end opposite the process connection 9 with a plug bush 8.
  • a pressure pipe 3 is provided, which receives a pressure occurring at the end and to the
  • Immersion tube 7 forms a first safety chamber 1, i. encloses a cavity in which the measuring inserts 5 are arranged. For alignment of the measuring inserts 5 are in the first safety chamber 1 also
  • Clamping brackets 26 are provided.
  • the sealing device 10 is disposed between the process connection 9 and the second safety chamber 2.
  • the first and the second safety chamber 1, 2 are, for example, connected to one another via the sealing device 10.
  • the measuring inserts 5 are also positioned by means of clamping brackets 26.
  • the second housing part monitoring terminals 26, by means of which the second safety chamber 2 can be monitored for incoming medium.
  • Monitoring connections 23 may, for example, also be valves.
  • the monitoring ports 23 may also be used for flushing, i.
  • Figure 2 shows a section through the longitudinal axis L of the installation fitting 4 at the level of the sealing device 10.
  • the present embodiment of the sealing device 10 will be described in more detail below.
  • the sealing device 10 is directly between
  • the measuring inserts 5 are guided through the sealing device 10 therethrough.
  • the sealing device 10 serves to the first safety chamber 1 of the second
  • a push rod 22 may be provided, by means of which a wedge-shaped body 20 experiences a propulsion, so that the wedge-shaped body 20 acts with a pressure side 18 against a pressure piston 19.
  • the pressure piston 19 which in particular has a prismatic shape, the graphite sleeves 14 surrounding the measuring inserts 5 are pressed against pressure sleeves 15, so that the bore 13 is guided by the deformation of the sleeves 14 through the respective one of the measuring inserts 5 and sealed ,
  • a spring 21 may be provided, which is disposed between the pressure piston 19 and a wall of the second housing part 29 and provides the necessary bias.
  • the sealing device can by the over
  • Pressure-receiving tube 3 transmitted pressure to be closed.
  • a channel not shown in FIG. 2, and FIG.
  • FIG. 3 again shows a section through the longitudinal axis L of FIG
  • FIG. 4 likewise shows a section through the longitudinal axis L of an installed installation fitting a) in the fault-free operating state, b) in the case of a leakage V and filled first safety chamber, c) in the event of leakage V and filled first and second safety chambers 1, 2.
  • the mode of operation the installation fitting 4 is to be clarified again with reference to the states shown in Figure 4.
  • the installation fitting 4 is shown in error-free condition.
  • the first housing part of the installation fitting 4, i. the immersion tube 7, is attached to an opening 20 of a wall W of the container B by means of the process connection 9.
  • the second housing body 29 is connected at one end to the process connection 9 of the immersion tube 7, while at the opposite end a third housing part, namely the transmitter housing 28 is connected.
  • the transmitter housing 28 is connected via a so-called. Armaturenkopf 1 1 with the second housing part 29.
  • Figure 4b shows the case that damage, in this case a leakage V, of the first housing part, i. of the immersion tube 7, medium 27 has penetrated into the first safety chamber 1.
  • the sealing device 10 of the proposed installation fitting 4 can be used to the installation fitting at the level of
  • the installation fitting 4 shown in FIG. 4 can also be used to exchange the measuring inserts 5 while the process is running. To this end the measuring inserts 5 are first pulled out of the first safety canister 1 into the second safety canister 2. Then the measuring inserts 5 are first pulled out of the first safety canister 1 into the second safety canister 2. Then the measuring inserts 5 are first pulled out of the first safety canister 1 into the second safety canister 2. Then the measuring inserts 5 are first pulled out of the first safety canister 1 into the second safety canister 2. Then the measuring inserts 5 are first pulled out of the first safety canister 1 into the second safety canister 2. Then the measuring inserts 5 are first pulled out of the first safety canister 1 into the second safety canister 2. Then the measuring inserts 5 are first pulled out of the first safety canister 1 into the second safety canister 2. Then the measuring inserts 5 are first pulled out of the first safety canister 1 into the second safety canister 2. Then the measuring inserts 5 are first pulled out of the first safety canister 1 into the second safety canister 2. Then
  • the pipeskannnner 2 can then be freed from the medium 27, for example, by being rinsed.
  • the measuring inserts 5 can then be exchanged. Subsequently, the sealing device 10 can be opened again and the
  • Measuring inserts 5 are again introduced into the first safety chamber 1.

Landscapes

  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Measuring Fluid Pressure (AREA)

Abstract

L'invention concerne un support de montage (4) présentant un boîtier de support (7, 29, 28) pour le logement d'au moins un insert de mesure (5) en forme de bâtonnet, le boîtier de support (7, 29, 28) comportant une première et une seconde partie tubulaire de boîtier (7, 29), une première chambre de sécurité (1) étant agencée dans la première partie de boîtier (7) et une seconde chambre de sécurité (2) étant agencée dans la seconde partie de boîtier (29) pour loger l'insert de mesure (5). La première partie de boîtier (7) comporte un raccord process (9) et est reliée à la seconde partie de boîtier (29) du côté du raccord process (9) opposé à la première partie de boîtier (7). Un dispositif d'étanchéité (10) sert à étancher la seconde chambre de sécurité (2) par rapport à la première chambre de sécurité (1), en particulier de façon étanche à la pression et/ou aux liquides, lorsque l'insert de mesure est introduit dans le boîtier de support.
EP10776697A 2009-12-22 2010-11-12 Support de montage pour un insert de mesure en forme de bâtonnet Withdrawn EP2516969A1 (fr)

Priority Applications (1)

Application Number Priority Date Filing Date Title
EP10776697A EP2516969A1 (fr) 2009-12-22 2010-11-12 Support de montage pour un insert de mesure en forme de bâtonnet

Applications Claiming Priority (3)

Application Number Priority Date Filing Date Title
EP20090180272 EP2343514B1 (fr) 2009-12-22 2009-12-22 Armature d'installation pour une sonde en forme de barre
EP10776697A EP2516969A1 (fr) 2009-12-22 2010-11-12 Support de montage pour un insert de mesure en forme de bâtonnet
PCT/EP2010/067354 WO2011076481A1 (fr) 2009-12-22 2010-11-12 Support de montage pour un insert de mesure en forme de bâtonnet

Publications (1)

Publication Number Publication Date
EP2516969A1 true EP2516969A1 (fr) 2012-10-31

Family

ID=42144746

Family Applications (2)

Application Number Title Priority Date Filing Date
EP20090180272 Active EP2343514B1 (fr) 2009-12-22 2009-12-22 Armature d'installation pour une sonde en forme de barre
EP10776697A Withdrawn EP2516969A1 (fr) 2009-12-22 2010-11-12 Support de montage pour un insert de mesure en forme de bâtonnet

Family Applications Before (1)

Application Number Title Priority Date Filing Date
EP20090180272 Active EP2343514B1 (fr) 2009-12-22 2009-12-22 Armature d'installation pour une sonde en forme de barre

Country Status (4)

Country Link
US (1) US20120261004A1 (fr)
EP (2) EP2343514B1 (fr)
PL (1) PL2343514T3 (fr)
WO (1) WO2011076481A1 (fr)

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Publication number Priority date Publication date Assignee Title
DE102011088736A1 (de) 2011-12-15 2013-06-20 Endress + Hauser Wetzer Gmbh + Co. Kg Einbauarmatur mit einer Dichtungsvorrichtung
EP3029441A1 (fr) 2014-12-05 2016-06-08 ENDRESS + HAUSER WETZER GmbH + Co. KG Raccord pour un insert de mesure d'un thermomètre
EP3118583B1 (fr) 2015-07-16 2019-03-27 ENDRESS + HAUSER WETZER GmbH + Co. KG Appareil d'étanchéité modulaire avec unité de détection de défaillance
US20170160142A1 (en) * 2015-12-07 2017-06-08 Endress + Hauser Wetzer Gmbh + Co. Kg Fitting for a Measuring Insert of a Thermometer
EP3454020A1 (fr) 2017-09-07 2019-03-13 Endress+Hauser Wetzer GmbH+CO. KG Appareil d'étanchéité modulaire ayant une unité de détection de défaillance
DE102021119770A1 (de) 2021-07-29 2023-02-02 Endress+Hauser Wetzer Gmbh+Co. Kg Diagnose eines Thermometers
EP4392993A1 (fr) * 2021-10-18 2024-07-03 Daily Instruments d/b/a Daily Thermetrics Corp. Ensemble de confinement de pression à double étanchéité

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Also Published As

Publication number Publication date
EP2343514A1 (fr) 2011-07-13
EP2343514B1 (fr) 2013-04-24
PL2343514T3 (pl) 2013-09-30
US20120261004A1 (en) 2012-10-18
WO2011076481A1 (fr) 2011-06-30

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