IP Library Granted Patent US 12,529,439
Granted Patent B2
US 12,529,439 · App. 18/037,192 · Granted Jan 20, 2026

Fluid connection unit

Inventors: Dirk Schröter (Pfarrweisach, DE); Manfred Krauss (Hettstadt, DE); Sören Schröter (Hallstadt, DE)
Assignee: Fränkische Industrial Pipes GMBH & CO. KG
F16L37/0887F16L2201/60
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Quick Facts
Patent No.
US 12,529,439
App. No.
18/037,192
Granted
Jan 20, 2026
Kind
B2
Abstract

A unit for connecting a fluid line to a port of a superordinate assembly, comprising a base body comprising a connection piece at one axial end for connection to the fluid line and a receiving portion at another axial end. The unit comprises an insert element comprising a resilient material and at least one radially outwardly projecting protrusion. The insert element defines, in its interior, an axial central connection opening and is separate from and connectable to the base body. The at least one protrusion projects into a corresponding aperture formed in an area of the receiving portion. Each protrusion comprises a blocking flank extending outwardly in a substantially radial direction and facing the axial end of the base body opposite the connection piece. The blocking flank is configured to abut against a respective blocking protrusion on the base body in a receiving portion engaged state of the insert element.

Claims (26)

1 . A fluid connection unit for connecting a fluid line to a fluid line port of a superordinate assembly, comprising:

a base body comprising:

a connection piece at one axial end of the base body for connection to the fluid line;

a receiving portion at another axial end of the base body having a blocking protrusion, wherein the blocking protrusion extends radially outwardly from the base body;

a retaining protrusion that extends radially outwardly from the base body and is positioned between the connection piece and the receiving portion; and

a further receiving portion between the retaining protrusion and the connection piece;

wherein the blocking protrusion is connected to the retaining protrusion via webs, and wherein a minimum radial extension of the webs is less than a minimum radial extension of the remaining blocking protrusion such that radially inner sides of the webs define a smaller inner diameter than a radially inner surface of the blocking protrusion;

an insert element comprising a resilient rubbery material and comprising a plurality of radially outwardly projecting protrusions, wherein the insert element defines, in an interior of the insert element, an axial central connection opening, wherein the insert element is separate from the base body and is connectable to the base body such that the plurality of radially outwardly projecting protrusions are dimensioned to engage in a respective corresponding openings formed in the receiving portion between respective adjacent webs and project radially outwardly beyond the webs;

wherein each radially outwardly projecting protrusion comprises:

a respective blocking flank that extends, together with the radially outwardly projecting protrusion, outwardly in a substantially radial direction and that faces the axial end of the base body opposite the connection piece;

a respective insertion flank that extends, together with the radially outwardly projecting protrusion, outwardly in a substantially radial direction and that faces the base body in a direction of the connection piece; and

wherein the respective blocking flank is configured to abut against the blocking protrusion and the respective insertion flank is configured to abut against the retaining protrusion when the insert element is inserted into the receiving portion; and

a clamping element configured to engage the receiving portion and, in a state engaged with the receiving portion, to come into contact with and apply a force to the plurality of radially outwardly projecting protrusions to radially inwardly bias an inner wall defining the axial central connection opening of the insert element, wherein the further receiving portion is configured to be engaged by the clamping element in an initial position of the clamping element, and wherein the retaining protrusion projects radially outwardly from the base body such that the clamping element is prevented from being displaced from engagement with the further receiving portion toward engagement with the receiving portion without changing a diameter of the clamping element and in the initial position of the clamping element.

2 . The fluid connection unit of claim 1 , the fluid connection unit further comprising a code portion comprising a code, wherein the code is suitable for identifying a fluid connection unit.

3 . The fluid connection unit of claim 1 , further comprising a code portion comprising a code, wherein code portion is arranged in an area of the further receiving portion such that the code, in an engaged state of the clamping element with the further receiving portion, is superimposed radially outside by the clamping element.

4 . The fluid connection unit of claim 2 , wherein the code portion is separate from the base body and is connectable to the base body.

5 . The fluid connection unit of claim 1 , wherein an inner wall of the axial central connection opening of the insert element comprises a plurality of recesses recessed radially outwardly from a nominal diameter of the axial central connection opening, wherein the plurality of recesses extend in an axial direction relative to the connection opening at least in portions along the inner wall of the axial central connection opening of the insert element.

6 . The fluid connection unit of claim 1 , wherein a respective web of the base body is associated with a respective recess of the connection opening of the insert element such that the respective web and the respective recess, viewed in a radial direction, are aligned overlapping one another.

7 . The fluid connection unit of claim 5 , wherein the plurality of recesses extend from the axial end of the insert element associated with the blocking protrusion of the base body along the inner wall of the axial central connection opening of the insert element to a maximum of a location which is still just overlapped in a radial direction by the plurality of radially outwardly projecting protrusions.

8 . The fluid connection unit of claim 5 , wherein the inner wall of the axial central connection opening of the insert element comprises a circumferential notch.

9 . The fluid connection unit of claim 8 , wherein the notch is spaced apart from the plurality of recesses.

10 . The fluid connection unit of claim 1 , further comprising a sleeve unit configured to be disposed radially outwardly of the connection piece and to secure a connection of the connection piece to the fluid line.

11 . The fluid connection unit of claim 1 , wherein each of the protrusions of the insert element, in an area of the receiving portion, projects radially outward further than the base body.

12 . The fluid connection unit of claim 2 , wherein the code comprises a code unique to a respective fluid connection unit.

13 . The fluid connection unit of claim 2 , wherein the code comprises a machine readable code comprising one or more of a data matrix code (“DMC”) or a radio frequency identification (“RFID”) element.

14 . The fluid connection unit of claim 4 , wherein the code portion is connectable to the base body using one or more of an adhesive, a printing, or a form closure.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 12, 2023
From: SCHRÖTER, DIRK; KRAUSS, MANFRED; SCHRÖTER, SÖREN
To: FRÄNKISCHE INDUSTRIAL PIPES GMBH & CO. KG
Reel/Frame 065221/0177 →
Priority Claims (1)
DE 10 2020 130 213.4 · Nov 16, 2020 · national
Continuity (1)
Related Publication 20240003474A1 · Jan 4, 2024
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