Pressure or Flow Rate Measuring Cell
20210348956 ยท 2021-11-11
Inventors
Cpc classification
G01L9/0048
PHYSICS
International classification
G01F1/38
PHYSICS
G01L13/02
PHYSICS
G01L9/00
PHYSICS
Abstract
A pressure measuring cell or flow rate measuring cell includes a pipe piece in which either a membrane to which a pressure that is to be measured is applied or an orifice plate is arranged in the cross-section through which a fluid flows, wherein the membrane or orifice plate and the pipe piece are formed together and interconnected via a solid-body joint, where a sensor is arranged outside the pipe piece near the solid-body joint or is accessible from this side, a tubular carrier part diverts forces past the solid-body joint when the pressure or flow rate measurement cell is being installed, and where the tubular carrier part has an inner diameter that is greater than the outer diameter of the pipe piece and has a wall in its cross section with a central circular opening, into which the pipe piece shortened to the thickness of the wall is inserted.
Claims
1.-6. (canceled)
7. A pressure or flow rate measuring cell comprising: a pipe piece through which a fluid flows having one of (i) a resiliently deflectable diaphragm to which a pressure to be measured is applied arranged in a cross-section of the pipe and (ii) a resiliently deflectable measuring orifice arranged in the cross-section of the pipe; and a pipe-shaped carrier part having an internal diameter which is greater than an external diameter of the pipe piece and having a wall with a central circular opening arranged in a cross-section of the pipe-shaped carrier part, into which the pipe piece shortened to the thickness of the wall is inserted, the pipe-shaped carrier part projecting beyond the pipe piece in an axial direction on both sides; wherein one of (i) the resiliently deflectable diaphragm and the pipe piece and (ii) the resiliently deflectable measuring orifice and the pipe piece are formed in one piece from a single material and are connected to one another via a solid-state joint; and wherein at least one sensor which records a deflection of one of (i) the resiliently deflectable diaphragm and (ii) the resiliently deflectable measuring orifice are arranged one of (i) in a region of the solid-state joint on an outer side of the pipe piece and (ii) such that said at least one sensor is accessible from said outer side of the pipe piece.
8. The pressure or flow rate measuring cell as claimed in claim 7, wherein the pipe piece is welded to the wall along the central circular opening.
9. The pressure or flow rate measuring cell as claimed in claim 7, wherein the inner wall of the central circular opening contains a circumferential groove, into which a borehole opens which extends transversely through the pipe-shaped carrier part and the wall externally.
10. The pressure or flow rate measuring cell as claimed in claim 8, wherein the inner wall of the central circular opening contains a circumferential groove, into which a borehole opens which extends transversely through the pipe-shaped carrier part and the wall externally.
11. The pressure or flow rate measuring cell as claimed in claim 7, wherein an outer wall of the pipe piece contains a circumferential groove have a width such that the pipe piece forms a collar-shaped flange at ends of the pipe.
12. A differential pressure measuring arrangement having the pressure measuring cell as claimed in claim 7, wherein the pipe-shaped carrier part is closed at both ends of the pipe-shaped carrier part by outer pressure caps which contain pressure supply openings and which are braced against the pipe-shaped carrier part in a sealing manner aided by clamping pins.
13. A flow rate measuring arrangement having the flow rate measuring cell as claimed in claim 7, wherein the pipe-shaped carrier part is formed at both ends of the pipe-shaped carrier part for installation in a pipeline which guides the fluid.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0019] On the basis of the drawings, which show exemplary embodiments of the invention in a simplified schematic representation, the invention as well as embodiments and advantages are explained below in further detail, in which:
[0020]
[0021]
[0022]
[0023]
[0024]
[0025]
DETAILED DESCRIPTION OF THE EXEMPLARY EMBODIMENTS
[0026] In the figures, the same parts are provided with the same reference characters.
[0027]
[0028] The pressure measuring cell 1 contains a pipe piece 6, in the cross-section of which a resiliently deflectable diaphragm 7, to which the differential pressure to be measured is applied, is arranged. The diaphragm 7 and the pipe piece 6 are embodied in one piece from a single material, e.g., steel, and are connected to one another via a solid-state joint 8. In order to form the solid-state joint 8, the pipe piece 6, on its peripheral side, contains a recess 9 in a region lying opposite the diaphragm 7 that reduces the wall thickness of the pipe piece 6 on both sides of the diaphragm 7. As shown here, the recess 9 may be formed as local or circumferential around the pipe piece 6. Sensors (not shown) that record a deflection of the diaphragm 7 are arranged here on the solid-state joint 8, in the recess 9 or accessible therefrom.
[0029] The pipe piece 6 with the diaphragm 7 is arranged in a pipe-shaped carrier part 10, the internal diameter of which is greater than the external diameter of the pipe piece 6 and which, in its cross-section, has a wall 11 with a central circular opening 12. The pipe piece 6 is inserted into this opening 12 and in doing so is connected to the wall 11 in a fixed manner. In particular, the pipe piece 6 may be welded to the wall 11 along the circular opening 12. In order to guide electrical contact lines from the sensors in the region of the solid-state joint 8 toward the outside, the inner wall of the circular opening 12 contains a circumferential groove 13, into which a borehole 14 opens that extends axially through the pipe-shaped carrier part 10 and the wall 11 from the outside. The length of the pipe piece 6 corresponds to the thickness of the wall 11, so that the pipe piece 6 closes flush with the wall 11 at both of its ends and the pipe-shaped carrier part 10 projects beyond the pipe piece 6 in the axial direction on both sides.
[0030] The pressure caps 2, 3 abut the ends of the pipe-shaped carrier part 10 and are braced against the carrier part 10 in a sealing manner with the aid of clamping pins 15, 16. The clamping forces are completely absorbed by the pipe-shaped carrier part 10 and are conducted around the solid-state joint 6 of the pressure measuring cell 1.
[0031]
[0032] The following
[0033] In the example shown in
[0034] The exemplary embodiment shown in
[0035] As
[0036] In the exemplary embodiments shown in
[0037] Thus, while there have been shown, described and pointed out fundamental novel features of the invention as applied to a preferred embodiment thereof, it will be understood that various omissions and substitutions and changes in the form and details of the methods described and the devices illustrated, and in their operation, may be made by those skilled in the art without departing from the spirit of the invention. For example, it is expressly intended that all combinations of those elements and/or method steps which perform substantially the same function in substantially the same way to achieve the same results are within the scope of the invention. Moreover, it should be recognized that structures and/or elements and/or method steps shown and/or described in connection with any disclosed form or embodiment of the invention may be incorporated in any other disclosed or described or suggested form or embodiment as a general matter of design choice. It is the intention, therefore, to be limited only as indicated by the scope of the claims appended hereto.