IP Library Granted Patent US 11,274,687
Granted Patent B2
US 11,274,687 · App. 15/614,874 · Granted Mar 15, 2022

Liquid junction assembly

Inventors: Michael Bailey (Tacoma, WA); Brett R. Barnett (Victoria, AU); Paul S. Griffiths (Victoria, AU)
Assignee: Trajan Scientific Australia Pty Ltd
F15D1/025F16L13/02F16L13/103F16L15/00G01N30/6004G01N30/6026G01N30/6034G01N30/6095G01N30/7233G01N2030/6013
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Quick Facts
Patent No.
US 11,274,687
App. No.
15/614,874
Granted
Mar 15, 2022
Kind
B2
Abstract

A liquid junction assembly for providing a flow connection between two tubular conduits. The assembly includes respective bodies configured to define elongated passages of respective first and second cross sections to receive and locate the respective tubular conduits, a plate with at least one hole therethrough of a third cross section smaller than the first and second cross sections, and a seat for the plate, defined in a face of one or both of the bodies. The bodies and the plate are assembled with the plate in the seat and the elongated passages and the hole aligned along a common axis.

Claims (25)

1. A liquid junction assembly for providing a flow connection between two tubular conduits, comprising:

first and second bodies defining respective first and second elongated passages of respective first and second cross sections to receive and locate the respective tubular conduits, with the first and second passages being open at respective faces of the bodies;

a plate with at least one hole therethrough of a third cross section smaller than said first and second cross sections, wherein the plate is a disc, the disc having a thickness in the range of 25-100 μm; and

a seat for the plate, defined in one or both faces of said bodies;

wherein the bodies and the plate are assembled with the faces opposed and with the plate in the seat such that the plate is in engagement with both of the opposed faces and the elongated passages and the at least one hole are aligned;

wherein the first and second bodies and the plate are metal so as to permit diffusion bonding; and

wherein the metal bodies and the metal plate are diffusion bonded at interfaces of the metal bodies and between each face of the metal plate and the opposed face of the adjacent one of the first and second metal bodies.

2. A liquid junction assembly according to claim 1 wherein the first and second metal bodies are discrete bodies.

3. A liquid junction assembly according to claim 1 wherein the elongated passages are cylindrical.

4. A liquid junction assembly according to claim 1 wherein the at least one hole is a series or matrix of holes.

5. A liquid junction assembly according to claim 1 wherein the plate exhibits smooth parallel faces about the hole or holes, and the assembly is configured so that when the conduits are correctly located in the elongated passages, they squarely abut the respective sides of the plate so as to minimize any dead space and to accurately align the inner diameters of the conduits with the hole or holes in the plate.

6. A liquid junction assembly according to claim 1 wherein the elongated passages are of a diameter in the range of 0.5 mm-2 mm and each hole or holes is of a diameter in the range 10 μm-200 μm.

7. A liquid junction assembly according to claim 1 incorporated in a coupling assembly in which respective tubular conduits are located in the elongated passages and securely joined within the liquid junction assembly.

8. A liquid junction assembly for providing a flow connection between two tubular conduits, comprising:

first and second bodies defining respective first and second elongated passages of respective first and second cross sections to receive and locate the respective tubular conduits, with the first and second passages being open at respective faces which are defined on a spigot of the first body and within a recess of the second body;

a plate with at least one hole therethrough of a third cross section smaller than said first and second cross sections, wherein the plate is a disc, the disc having a thickness in the range of 25-100 μm; and

a seat for the plate defined by said recess;

wherein the bodies and the plate are assembled with the faces opposed with the spigot within the recess and the plate in the seat between said opposing faces, and the elongated passages and the at least one hole aligned;

wherein the first and second bodies and the plate are metal so as to permit diffusion bonding; and

wherein the metal bodies and the metal plate are diffusion bonded at interfaces of the metal bodies and between each face of the metal plate and the opposed face of the adjacent one of the first and second metal bodies.

9. A liquid junction assembly according to claim 8 wherein the first and second metal bodies are discrete bodies.

10. A liquid junction assembly according to claim 8 wherein the elongated passages are cylindrical.

11. A liquid junction assembly according to claim 8 wherein the at least one hole is a series or matrix of holes.

12. A liquid junction assembly according to claim 8 wherein the plate exhibits smooth parallel faces about the hole or holes, and the assembly is configured so that when the conduits are correctly located in the elongated passages, they squarely abut the respective sides of the plate so as to minimise any dead space and to accurately align the inner diameters of the conduits with the hole or holes in the plate.

13. A liquid junction assembly according to claim 8 wherein the elongated passages are of a diameter in the range of 0.5 mm-2 mm and each hole or holes is of a diameter in the range 10 μm-200 μm.

Assignments (2)
SECURITY INTEREST Recorded Aug 29, 2025
From: TRAJAN SCIENTIFIC AMERICAS INC.; CHROMATOGRAPHY RESEARCH SUPPLIES, LLC
To: TASOVAC PTY LIMITED ABN 51 108 013 467
Reel/Frame 072758/0663 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 19, 2017
From: BAILEY, MICHAEL; BARNETT, BRETT RUSSELL; GRIFFITHS, PAUL SCOTT
To: TRAJAN SCIENTIFIC AUSTRALIA PTY LTD
Reel/Frame 043258/0427 →
Priority Claims (1)
AU 2016902196 · Jun 6, 2016 · national
Continuity (1)
Related Publication 20170350429A1 · Dec 7, 2017