IP Library Granted Patent US 10,072,958
Granted Patent B2
US 10,072,958 · App. 15/507,837 · Granted Sep 11, 2018

Tube for measuring the differential pressure of a medium flowing through the tube

Inventor: Oliver Betz (Groebenzell, DE)
Assignee: systec Controls Mess-und Regeltechnik GmbH
G01F1/44
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Quick Facts
Patent No.
US 10,072,958
App. No.
15/507,837
Granted
Sep 11, 2018
Kind
B2
Abstract

A tube measures the differential pressure of a medium flowing through the tube. An insertion element for a tube as well as a method for assembling the insertion element and the tube are also provided.

Claims (43)

1. A tube for measuring the differential pressure of a medium flowing through the tube, the tube comprising:

an inner profile of the tube;

a tubular carrier having a wall with an inner wall surface; and

a tubular insertion element disposed on said inner wall surface of said tubular carrier, said tubular insertion element forming at least partial regions of said inner profile; and

two channels penetrating through said wall of said tubular carrier, said two channels being disposed one behind the other in a direction of flow of the medium;

said tubular insertion element having an interior carrying a flow of the medium, an outer surface, and a continuous groove running around said outer surface of said tubular insertion element;

said continuous groove being disposed between said tubular insertion element and said inner wall surface of said tubular carrier;

said continuous groove being connected with said interior of said tubular insertion element by a plurality of boreholes provided in said tubular insertion element; and

said continuous groove being connected with one of said two channels.

2. The tube according to claim 1 , wherein said continuous groove has a shape of a circular arc.

3. The tube according to claim 2 , wherein said circular arc formed by said continuous groove has two ends and is downwardly aligned in a vicinity of said two ends.

4. The tube according to claim 1 , wherein said tubular insertion element is sealed against said tubular carrier at least one of before or after said continuous groove in said direction of flow.

5. The tube according to claim 4 , which further comprises gaskets running around said outer surface of said tubular insertion element on both sides of said continuous groove.

6. The tube according to claim 4 , which further comprises an integral connection between said tubular carrier and said insertion element establishing a tightness of said continuous groove.

7. The tube according to claim 1 , wherein said continuous groove is formed in said outer wall surface of said tubular insertion element.

8. The tube according to claim 1 , wherein:

said continuous groove of said tubular insertion element is a first continuous groove;

said tubular insertion element includes a second continuous groove;

said two channels penetrating through said wall of said tubular carrier are first and second channels;

said first groove is joined with said first channel; and

said second groove is joined with said second channel.

9. The tube according to claim 1 , wherein said inner wall surface of said tubular carrier has a partial region forming a seat for said tubular insertion element.

10. A tubular insertion element to be disposed on an inner wall surface of a tubular carrier, the tubular insertion element comprising:

at least partial regions of an inner profile of a tube for measuring a differential pressure of a medium flowing through the tube;

two channels penetrating through said wall of said tubular carrier, said two channels being disposed one behind the other in a direction of flow of the medium;

said tubular insertion element having an interior carrying a flow of the medium, an outer surface, and a continuous groove running around said outer surface of said tubular insertion element;

said continuous groove being disposed between said tubular insertion element and said inner wall surface of said tubular carrier;

said continuous groove being connected with said interior of said tubular insertion element by a plurality of boreholes provided in said tubular insertion element; and

said continuous groove being connected with one of said two channels.

11. A method for fabricating a tube for measuring the differential pressure of a medium flowing through the tube, the method comprising the following steps:

aligning a tubular insertion element coaxially with a tubular carrier; and

then introducing the insertion element into the tubular carrier to place the tubular insertion element on an inner wall surface of the tubular carrier and to form at least partial regions of an inner profile of the tube inside the tubular insertion element;

to form a tube having:

an inner profile of the tube;

a tubular carrier having a wall with an inner wall surface; and

a tubular insertion element disposed on said inner wall surface of said tubular carrier, said tubular insertion element forming at least partial regions of said inner profile; and

two channels penetrating through said wall of said tubular carrier, said two channels being disposed one behind the other in a direction of flow of the medium;

said tubular insertion element having an interior carrying a flow of the medium, an outer surface, and a continuous groove running around said outer surface of said tubular insertion element;

said continuous groove being disposed between said tubular insertion element and said inner wall surface of said tubular carrier;

said continuous groove being connected with said interior of said tubular insertion element by a plurality of boreholes provided in said tubular insertion element; and

said continuous groove being connected with one of said two channels.

12. The tube according to claim 2 , wherein said circular arc of said continuous groove is an arc of 270 degrees, and said insertion element is positioned in such a way that the lower 90 degrees of the circumference are not run around by said continuous groove.

13. The tube according to claim 2 , which comprises at least two boreholes, of which each one of the ends of the circular arc is connected with the interior of the insertion element.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 2, 2022
From: SYSTEC CONTROLS MESS- UND REGELTECHNIK GMBH
To: SYSTEC AUTOMOTIVE GMBH
Reel/Frame 060974/0782 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 6, 2017
From: BETZ, OLIVER
To: SYSTEC CONTROLS MESS- UND REGELTECHNIK GMBH
Reel/Frame 041471/0696 →
Priority Claims (3)
DE 10 2014 013 242 · Sep 12, 2014 · national
DE 10 2014 114 891 · Oct 14, 2014 · national
DE 10 2014 115 289 · Oct 21, 2014 · national
Continuity (1)
Related Publication 20170254684A1 · Sep 7, 2017
Cited By (1)
US 12,281,965