PISTON DIAPHRAGM SEAL AND SYSTEM COMPRISING A PRESSURE TRANSDUCER AND A PISTON DIAPHRAGM SEAL

20230251156 · 2023-08-10

    Inventors

    Cpc classification

    International classification

    Abstract

    The present disclosure relates to a piston diaphragm seal for transmitting a pressure of a medium to a pressure-measuring sensor a base body having a recess and a bore which is connected to the recess. The recess and the bore can be filled with a pressure transfer medium. A piston is arranged in the recess and can be moved within a predetermined region in the recess. A surface of the piston facing the medium can be loaded with the pressure of the medium, wherein the piston is separated by at least two sealing elements from the medium and the pressure transfer medium. A cavity is arranged in the piston between the at least two sealing elements. An attachment region is provided for connecting the piston diaphragm seal to the pressure-measuring sensor. A monitoring unit is designed to determine and/or monitor entry of medium and/or pressure transfer medium into the cavity.

    Claims

    1-7. (canceled)

    8. A piston diaphragm seal for transmitting a pressure of a medium to a pressure-measuring sensor, including: a base body having a recess and a bore which is connected to the recess, wherein the recess and the bore can be filled with a pressure transfer medium; a piston which is arranged in the recess and can be moved within a predetermined region in the recess, wherein a surface of the piston facing the medium can be loaded with the pressure of the medium, wherein the piston is separated by at least two sealing elements from the medium and the pressure transfer medium, wherein a cavity is arranged in the piston between the at least two sealing elements; an attachment region for connecting the piston diaphragm seal to the pressure-measuring sensor; and a monitoring unit which is designed to determine and/or monitor entry of medium and/or pressure transfer medium into the cavity.

    9. The piston diaphragm seal according to claim 8, wherein the monitoring unit has a sensor and/or an electrical switch.

    10. The piston diaphragm seal according to claim 9, wherein the sensor is a conductance, moisture or limit level sensor.

    11. The piston diaphragm seal according to claim 9, wherein the electrical switch is designed as a conductor through which current flows and which is coated with a coating which is soluble in the medium and/or in the pressure transfer medium.

    12. The piston diaphragm seal according to at least one of claim 8, wherein a closable filling bore for filling the piston diaphragm seal with pressure transfer medium is arranged in the base body.

    13. The piston diaphragm seal according to at least one of claim 8, wherein the cavity is arranged parallel to the at least two sealing elements and/or is annular.

    14. A system comprising a pressure-measuring sensor and a piston diaphragm seal, wherein the pressure-measuring sensor has a separating diaphragm, a pressure sensor and a connection region, wherein the piston diaphragm seal is designed, including: a base body having a recess and a bore which is connected to the recess, wherein the recess and the bore are filled with a pressure transfer medium; a piston which is arranged in the recess and can be moved within a predetermined region in the recess, wherein a surface of the piston facing the medium can be loaded with the pressure of the medium, wherein the piston is separated by at least two sealing elements from the medium and the pressure transfer medium, wherein a cavity is arranged in the piston between the at least two sealing elements; an attachment region for connecting the piston diaphragm seal to the pressure-measuring sensor; and a monitoring unit which is designed to determine and/or monitor entry of medium and/or pressure transfer medium into the cavity; wherein the piston diaphragm seal and the pressure-measuring sensor are connected to one another in the attachment region and in the connection region in such a way that the bore opens in the region of the separating diaphragm, wherein the pressure transfer medium is designed to transmit the pressure of the medium from the piston to the separating diaphragm, wherein the pressure sensor can be loaded with the pressure of the medium at least by means of the separating diaphragm.

    Description

    [0027] The present invention is explained in more detail below with reference to the following FIGS. 1-2. In the figures:

    [0028] FIG. 1 shows a schematic diagram of the piston diaphragm seal according to the invention.

    [0029] FIG. 2 shows a schematic diagram of the system according to the invention.

    [0030] FIG. 1 shows a piston diaphragm seal 1 according to the invention for transmitting a pressure of a medium 2 to a pressure-measuring sensor 3. A recess 5, a bore 6 and an optional filling bore 14 are arranged in a base body 4 of the piston diaphragm seal 1. The optional filling bore 14 is used to fill the piston diaphragm seal 1, in particular the recess 5 and the bore 6, with a pressure transfer medium 7. Since the bore 6 in the system 15 according to the invention is only closed by the connection to the pressure-measuring sensor 3, the piston diaphragm seal 1 is only filled after the connection to the pressure-measuring sensor 3. The bore 6 can take different shapes: in FIG. 1, the bore is designed as a straight, narrow bore, which widens in the direction of the pressure-measuring sensor 3. Any further embodiments of the bore 6, not shown here, are also conceivable. The bore 6 is always connected to the recess 5.

    [0031] A piston 8 is arranged in the recess 5 and is movable within a predetermined region 9 in the recess 5. A surface 8a of the piston 8 facing the medium 2 can be loaded with the pressure of the medium 2. Depending on the pressure of the medium 2, the piston 8 will move within the predetermined region 9 and transmit the pressure of the medium to the pressure-measuring sensor 3 by means of the pressure transfer medium 7. The piston 8 furthermore has a cavity 11, which is arranged between at least two sealing elements 10. The at least two sealing elements 10 seal the piston 8 off from the medium 2 and/or the pressure transfer medium 7 so that the cavity 11 is free of medium 2 and pressure transfer medium 7. The cavity 11 is in particular arranged parallel to the at least two sealing elements 10 and/or is annular.

    [0032] A leak of at least one of the at least two sealing elements 10 leads to ingress of medium 2 and/or pressure transfer medium 7 into the cavity 11, which is determined and/or monitored by a correspondingly designed monitoring unit 13. For example, the monitoring unit 13 has a sensor, in particular a conductance, moisture or limit level sensor, and/or an electrical switch. The electrical switch can be designed as a conductor through which current flows and which is coated with a coating which is soluble in the medium 2 and/or in the pressure transfer medium 7. The monitoring unit 13 is in particular arranged at least partially in the region of the cavity 11. If medium 2 and/or pressure transfer medium 7 enters the cavity 11, the monitoring unit can be designed to transmit information about the ingress of the medium 2 and/or the pressure transfer medium 7 to a higher-level unit, a display unit, in particular of the pressure-measuring sensor, and/or a user interface.

    [0033] The system 15 according to the invention, comprising a pressure-measuring sensor 3 and a piston diaphragm seal 1, is shown schematically in FIG. 2. The pressure-measuring sensor 3 has a separating diaphragm 16, a pressure sensor 17 and a connection region 18. The piston diaphragm seal 1 and the pressure-measuring sensor 3 are connected to one another, for example by means of a weld or flange, in the attachment region 12 and the connection region 18. The piston diaphragm seal 1 and the pressure-measuring sensor are connected in such a way that the bore 6 of the piston diaphragm seal 1 opens in the region of the separating diaphragm 16 in order to be able to transmit the pressure of the medium 2 via the piston diaphragm seal 1 to the separating diaphragm 16. The pressure-sensitive separating diaphragm 16 thus separates the pressure transfer medium 7 of the piston diaphragm seal 1 from an interior of the pressure-measuring sensor.

    [0034] The pressure transfer medium 7 is designed to transmit the pressure of the medium 2 from the piston 8 to the separating diaphragm 16, wherein the pressure sensor 17 can be loaded with the pressure of the medium 2 at least by means of the separating diaphragm 16. The pressure sensor 17 can be arranged at or on the separating diaphragm 16 or at a distance therefrom. In the latter case, a pressure transfer medium is also necessary within the pressure-measuring sensor 3 and transmits the pressure of the medium 2 from the separating diaphragm 16 to the pressure sensor 17 and loads the latter with the pressure of the medium 2, wherein a capillary tube 20 can be used. The separating diaphragm 16 generally has a diaphragm bed 21 associated therewith. The bore 6 is designed, for example, in an end region facing the separating diaphragm 16 such that the pressure transfer medium 7 impinges areally on the separating diaphragm 16, in particular such that the pressure transfer medium 7 completely covers the separating diaphragm 16. The pressure of the medium 2 is transmitted via the surface of the piston 8 facing the medium 2, the piston 8 and the pressure transfer medium 7 to the separating diaphragm 16 so that the separating diaphragm 16 is loaded with the pressure of the medium 2.

    [0035] In the example shown in FIG. 2, the pressure-measuring sensor 3 is designed as an absolute pressure-measuring sensor, which determines the pressure of the medium 2 relative to an absolute pressure, for example a vacuum. Alternatively, the pressure-measuring sensor can be designed as a relative or differential pressure-measuring sensor, wherein in the case of the differential pressure-measuring sensor, two piston diaphragm seals can optionally be used.

    [0036] The embodiments of the piston diaphragm seal 1 with the recess 5, the bore 6, the optional filling bore 14, the piston 8 and the cavity 11 are analogous to that of the piston diaphragm seal 1 shown in FIG. 1, with the difference that the piston diaphragm seal 1 in the system 15 is filled with the pressure transfer medium 7. After filling, the optional filling bore 14 must be closed, for example with the aid of a plug 19.

    [0037] In the example of FIG. 2, the piston 8 is arranged at a lower end region of the predetermined region 9, which corresponds, for example, to a lower end of a defined pressure range to be monitored by the pressure-measuring sensor. The piston diaphragm seal 1 is designed in such a way that the piston 8 moves only within the predetermined region 9 in the functional piston diaphragm seal 1. Only in the case of a leak or other damage to the piston diaphragm seal 1 will the piston 8 move out of the predetermined region 9.

    LIST OF REFERENCE SIGNS

    [0038] 1 Piston diaphragm seal [0039] 2 Medium [0040] 3 Pressure-measuring sensor [0041] 4 Base body [0042] 5 Recess [0043] 6 Bore [0044] 7 Pressure transfer medium [0045] 8 Piston [0046] 8a Surface of the piston facing the medium [0047] 9 Predetermined region [0048] 10 Sealing elements [0049] 11 Cavity [0050] 12 Attachment region [0051] 13 Monitoring unit [0052] 14 Filling bore [0053] 15 System [0054] 16 Separating diaphragm [0055] 17 Pressure sensor [0056] 18 Connection region [0057] 19 Plug [0058] 20 Capillary tube [0059] 21 Diaphragm bed