IP Library Granted Patent US 12,601,368
Granted Patent B2
US 12,601,368 · App. 18/787,553 · Granted Apr 14, 2026

Split coupler for pipes

Inventors: Michael L. Acosta (Gillette, WY); Timothy M. Acosta (Loveland, CO)
Assignee: MikeysQuickCoupler LLC
F16B37/0807F16L19/0231
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Quick Facts
Patent No.
US 12,601,368
App. No.
18/787,553
Granted
Apr 14, 2026
Kind
B2
Abstract

A split coupler, and methods of making and using such a split coupler, whereby the split coupler includes a first semi-cylindrical member, a second semi-cylindrical member, and an interlocking assembly configured to interlock the first and second semi-cylindrical members to form a substantially cylindrical coupler having a coupler inner surface which defines a throughbore. Additionally, the split coupler can include spiral threads coupled to the coupler inner surface. Furthermore, the split coupler can include a flange inwardly extending from the coupler inner surface.

Claims (57)

1 . A split coupler, comprising:

a first semi-cylindrical member including a first thread coupled to a first semi-cylindrical member inner surface;

a second semi-cylindrical member including a second thread coupled to a second semi-cylindrical member inner surface;

a first interlocking assembly comprising (i) a first latch outwardly extending from a first semi-cylindrical member outer surface proximate a first semi-cylindrical member first terminal edge, and (ii) a first catch outwardly extending from a second semi-cylindrical member outer surface proximate a second semi-cylindrical member first terminal edge;

one or more first latch teeth coupled to said first latch;

one or more first catch teeth coupled to said first catch;

wherein said one or more first latch teeth interlock with said one or more first catch teeth to resist or prevent separation of said first semi-cylindrical member first terminal edge from said second semi-cylindrical member first terminal edge;

a second interlocking assembly comprising (i) a second catch outwardly extending from said first semi-cylindrical member outer surface proximate a first semi-cylindrical member second terminal edge, and (ii) a second latch outwardly extending from said second semi-cylindrical member outer surface proximate a second semi-cylindrical member second terminal edge;

one or more second catch teeth coupled to said second catch; and

one or more second latch teeth coupled to said second latch;

wherein said one or more second catch teeth interlock with said one or more second latch teeth to resist or prevent separation of said first semi-cylindrical member second terminal edge from said second semi-cylindrical member second terminal edge.

2 . The split coupler of claim 1 , wherein said first semi-cylindrical member and said second semi-cylindrical member together form a cylindrical coupler having a coupler inner surface defining a throughbore.

3 . The split coupler of claim 1 , wherein said first latch and said first catch slidably interlock and said second latch and said second catch slidably interlock to resist or prevent separation of said first semi-cylindrical member from said second semi-cylindrical member.

4 . The split coupler of claim 1 , said first semi-cylindrical member including a first flange radially inwardly extending from said first semi-cylindrical member inner surface.

5 . The split coupler of claim 4 , said second semi-cylindrical member comprising a second flange radially inwardly extending from said second semi-cylindrical member inner surface.

6 . The split coupler of claim 5 , wherein upon engagement of said first and second semi-cylindrical members, said first and second flanges axially align to form an annular flange radially inwardly extending from a coupler inner surface.

7 . The split coupler of claim 1 , wherein engagement of said first and second semi-cylindrical members axially aligns said first and second threads to form a spiral thread.

8 . A split coupler, comprising:

a first semi-cylindrical member including a first thread coupled to said first semi-cylindrical member inner surface;

a second semi-cylindrical member including a second thread coupled to said second semi-cylindrical member inner surface;

a first interlocking assembly comprising (i) a first latch outwardly extending from a first semi-cylindrical member outer surface proximate a first semi-cylindrical member first terminal edge, and (ii) a first catch outwardly extending from a second semi-cylindrical member outer surface proximate a second semi-cylindrical member first terminal edge;

one or more first latch teeth coupled to said first latch; and

one or more first catch teeth coupled to said first catch;

wherein said one or more first latch teeth interlock with said one or more first catch teeth to resist or prevent separation of said first semi-cylindrical member first terminal edge from said second semi-cylindrical member first terminal edge.

9 . The split coupler of claim 8 , further comprising:

a second interlocking assembly comprising (i) a second catch outwardly extending from said first semi-cylindrical member outer surface proximate a first semi-cylindrical member second terminal edge, and (ii) a second latch outwardly extending from said second semi-cylindrical member outer surface proximate a second semi-cylindrical member second terminal edge;

one or more second catch teeth coupled to said second catch; and

one or more second latch teeth coupled to said second latch;

wherein said one or more second catch teeth interlock with said one or more second latch teeth to resist or prevent separation of said first semi-cylindrical member second terminal edge from said second semi-cylindrical member second terminal edge.

10 . The split coupler of claim 9 , wherein said first semi-cylindrical member and said second semi-cylindrical member together form a cylindrical coupler having a coupler inner surface defining a throughbore.

11 . The split coupler of claim 9 , wherein said first latch and said first catch slidably interlock and said second latch and said second catch slidably interlock to resist or prevent separation of said first semi-cylindrical member from said second semi-cylindrical member.

12 . The split coupler of claim 9 , said first semi-cylindrical member including a first flange radially inwardly extending from said first semi-cylindrical member inner surface.

13 . The split coupler of claim 12 , said second semi-cylindrical member comprising a second flange radially inwardly extending from said second semi-cylindrical member inner surface.

14 . The split coupler of claim 13 , wherein upon engagement of said first and second semi-cylindrical members, said first and second flanges axially align to form an annular flange radially inwardly extending from a coupler inner surface.

15 . The split coupler of claim 9 , wherein engagement of said first and second semi-cylindrical members axially aligns said first and second threads to form a spiral thread.

16 . A split coupler, comprising:

a first semi-cylindrical member including a first thread coupled to a first semi-cylindrical member inner surface;

a second semi-cylindrical member including a second thread coupled to a second semi-cylindrical member inner surface;

a first interlocking assembly coupled to (i) a first semi-cylindrical member outer surface proximate a first semi-cylindrical member first terminal edge, and (ii) a second semi-cylindrical member outer surface proximate a second semi-cylindrical member first terminal edge;

wherein when interlocked, said first interlocking assembly resists or prevents separation of said first semi-cylindrical member first terminal edge from said second semi-cylindrical member first terminal edge;

a second interlocking assembly coupled to (i) said first semi-cylindrical member outer surface proximate a first semi-cylindrical member second terminal edge, and (ii) said second semi-cylindrical member outer surface proximate a second semi-cylindrical member second terminal edge;

wherein when interlocked, said second interlocking assembly resists or prevents separation of said first semi-cylindrical member second terminal edge from said second semi-cylindrical member second terminal edge;

at least one first alignment pin extending from one of said first semi-cylindrical member first terminal edge or said second semi-cylindrical member first terminal edge, said first alignment pin configured to be mateably received by a corresponding first alignment socket disposed in the opposing said second semi-cylindrical member first terminal edge or said first semi-cylindrical member first terminal edge, respectively; and

at least one second alignment pin extending from one of said first semi-cylindrical member second terminal edge or said second semi-cylindrical member second terminal edge, said second alignment pin configured to be mateably received by a corresponding second alignment socket disposed in the opposing said second semi-cylindrical member second terminal edge or said first semi-cylindrical member second terminal edge, respectively.

17 . The split coupler of claim 16 , further comprising at least two said second alignment pins and at least two corresponding said second alignment sockets.

18 . The split coupler of claim 16 , wherein said first semi-cylindrical member and said second semi-cylindrical member together form a cylindrical coupler having a coupler inner surface defining a throughbore.

19 . A split coupler, comprising:

a first semi-cylindrical member including a first thread coupled to a first semi-cylindrical member inner surface;

a second semi-cylindrical member including a second thread coupled to a second semi-cylindrical member inner surface;

a first interlocking assembly coupled to (i) a first semi-cylindrical member outer surface proximate a first semi-cylindrical member first terminal edge, and (ii) a second semi-cylindrical member outer surface proximate a second semi-cylindrical member first terminal edge;

wherein when interlocked, said first interlocking assembly resists or prevents separation of said first semi-cylindrical member first terminal edge from said second semi-cylindrical member first terminal edge;

a second interlocking assembly coupled to (i) said first semi-cylindrical member outer surface proximate a first semi-cylindrical member second terminal edge, and (ii) said second semi-cylindrical member outer surface proximate a second semi-cylindrical member second terminal edge;

wherein when interlocked, said second interlocking assembly resists or prevents separation of said first semi-cylindrical member second terminal edge from said second semi-cylindrical member second terminal edge;

at least two first alignment pins extending from one of said first semi-cylindrical member first terminal edge or said second semi-cylindrical member first terminal edge; and

at least two corresponding first alignment sockets disposed in the opposing said second semi-cylindrical member first terminal edge or said first semi-cylindrical member first terminal edge, respectively;

wherein said first alignment pins are configured to be mateably received by said corresponding first alignment sockets.

20 . The split coupler of claim 19 , wherein said first semi-cylindrical member and said second semi-cylindrical member together form a cylindrical coupler having a coupler inner surface defining a throughbore.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 29, 2024
From: ACOSTA, MICHAEL L.; ACOSTA, TIMOTHY M.
To: MIKEYSQUICKCOUPLER LLC
Reel/Frame 068114/0773 →
Continuity (5)
Continuation 17570961 · Jan 7, 2022
Continuation In Part 16991829 · Aug 12, 2020
Provisional Application 62961375 · Jan 15, 2020
Provisional Application 62885597 · Aug 12, 2019
Related Publication 20240384745A1 · Nov 21, 2024
References Cited (2)
US 10113669B2 · Logan · 2018 [cited by examiner]
US 12049915B2 · Acosta · 2024 [cited by examiner]