IP Library Granted Patent US 11,560,725
Granted Patent B2
US 11,560,725 · App. 16/965,049 · Granted Jan 24, 2023

Formwork brace

Inventors: Nicholas Bruce Mullaney (Marulan, AU); Logan Peter Mullaney (Robertson, AU)
Assignee: InQuik IP Holdings Pty Ltd
E04G11/46E04G11/36E04G17/0755E04G17/14
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Quick Facts
Patent No.
US 11,560,725
App. No.
16/965,049
Granted
Jan 24, 2023
Kind
B2
Abstract

In summary the invention described herein is broadly directed to a module for forming a reinforced concrete structure comprising (a) a formwork member that defines a cavity, (b) a reinforcement structure in the cavity, and (c) at least one formwork brace interconnecting the formwork member and the reinforcement structure.

Claims (32)

1. A module for forming a reinforced concrete structure comprising (a) a formwork tray that defines a cavity for reinforcement and concrete, (b) an internal reinforcement structure disposed within the cavity, and (c) at least one formwork brace interconnecting the formwork tray and the reinforcement structure, the formwork brace comprising:

a body including a central portion and a pair of arms that extend away from opposing ends of the central portion, the body substantially conforming to and extending around an exterior of the formwork tray;

a first connector that extends across an interior of the formwork tray and engages with each of the pair of arms to thereby tension the body around the formwork tray; and

an anchor disposed internally of the formwork tray coupling together the body and the internal reinforcement structure through the formwork tray

wherein the module is configured such that, when concrete fills and cures within the cavity of the formwork tray to at least partially cover the internal reinforcement structure, the formwork tray, the internal reinforcement structure and the formwork brace are integrally combined.

2. The module defined in claim 1 , wherein the first connector comprises a central beam and a pair of mounts, with the central beam extending across the interior of the formwork tray, and with each mount being configured to engage with a respective arm of the body.

3. The module defined in claim 1 , comprising a plurality of the formwork braces at spaced intervals along the length of the module.

4. The module defined in claim 3 , wherein the formwork tray comprises a plurality of sections along the length of the module.

5. The module defined in claim 4 , wherein at least one of the plurality of formwork braces is located at an intersection between successive sections along the length of the module.

6. The module as defined in claim 4 , wherein the at least one formwork brace located at an intersection between successive sections overlaps a portion of each of the successive sections in substantially equal amounts.

7. The module of claim 1 , wherein the anchor supports the internal reinforcement structure at a predetermined distance from a base of the formwork tray.

8. The module of claim 7 , wherein the anchor comprises a pair of legs mounted to opposing ends of a cross-bar that extends across the cavity, the legs extending towards the base of the formwork tray and configured to position the formwork tray relative to the internal reinforcement structure.

9. The module of claim 1 , further comprising at least one spacer that locates the internal reinforcement structure within the cavity prior to the introduction of concrete.

10. The module of claim 9 , wherein the spacer extends from a respective end portion of the formwork brace inwardly of the formwork tray and couples the internal reinforcement structure to the formwork brace.

11. A formwork brace for interconnecting (a) a formwork tray that defines a cavity for reinforcement and concrete and (b) an internal reinforcement structure adapted to sit within the cavity, comprising:

a body including a central portion and a pair of integrally formed arms that extend away from opposing ends of the central portion, the body configured to substantially conform to and extend around an exterior of the formwork tray;

a first connector configured to extend across an interior of the formwork tray and to engage with each of the pair of arms to thereby tension the body around the tray; and

an anchor configured to interleave with the internal reinforcement structure within the formwork tray and to engage with the body from an exterior of the formwork tray to couple the body to the formwork tray,

wherein the formwork brace is configured such that, when concrete fills and cures within the cavity of the formwork tray to at least partially cover the internal reinforcement structure, the formwork tray, the internal reinforcement structure and the formwork brace are integrally combined.

12. The formwork brace of claim 11 , wherein the first connector comprises a central beam and a pair of mounts, with the central beam extending across the interior of the formwork tray and with each mount being configured to engage with an arm of the formwork brace.

13. The formwork brace of claim 11 , wherein the body is configured to be a U-shape.

14. The formwork brace of claim 12 , wherein the mounts of the first connector are configured to adjustably tension the first connector across the body.

15. The formwork brace of claim 11 , further comprising at least one spacer that extends inwardly from a respective arm of the body configured to locate the internal reinforcement structure within the cavity prior to the introduction of concrete.

16. The formwork brace of claim 15 , wherein the spacer is configured to directly engage with the internal reinforcement structure.

17. The formwork brace of claim 11 , wherein the anchor is dimensioned to support the internal reinforcement structure at a predetermined distance from a base of the formwork tray.

18. The formwork brace of claim 17 , wherein the anchor is configured to receive a retaining bolt that extends through the base of the formwork tray from the exterior of the formwork tray.

19. The formwork brace of claim 18 , wherein the anchor further comprises a pair of legs mounted to opposing ends of the cross-bar, the pair of legs extending towards the base of the formwork tray and configured to position the formwork tray relative to the internal reinforcement structure.

20. A method of constructing a formwork tray that defines a cavity for reinforcement and a settable substrate, comprising the steps of:

positioning a plurality of formwork sections end-to-end such that an end portion of a first formwork section abuts an end portion of a second formwork section;

locating a formwork brace to cradle overlapping ends of the first and second formwork sections, the formwork brace comprising a body including a central portion and a pair of arms that extend away from opposing ends of the central portion, the body substantially conforming to and extending around an exterior of the formwork sections;

inserting a reinforcement structure into the cavity; and

engaging a first connector to extend between and engage with each of the pair of arms of the formwork brace through the first and second formwork sections to thereby hold the first and second formwork sections in tension, with the first connector extending across an interior of the formwork sections such that the formwork brace will integrally combine with the formwork tray and internal reinforcement structure when the settable substrate is poured into the cavity and cures.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 5, 2022
From: LIFTING POINT PRE-FORM PTY LIMITED
To: INQUIK IP HOLDINGS PTY LTD
Reel/Frame 061315/0159 →
CORRECTIVE ASSIGNMENT TO CORRECT THE ASSIGNEE NAME PREVIOUSLY RECORDED AT REEL: 053314 FRAME: 0786. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT. Recorded Sep 11, 2020
From: MULLANEY, NICHOLAS BRUCE; MULLANEY, LOGAN PETER
To: LIFTING POINT PRE-FORM PTY LIMITED
Reel/Frame 053755/0638 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 27, 2020
From: MULLANEY, NICHOLAS BRUCE; MULLANEY, LOGAN PETER
To: LIFTING POINT PRE-POINT PTY LIMITED
Reel/Frame 053314/0786 →
Priority Claims (1)
AU 2018200667 · Jan 29, 2018 · national
Continuity (1)
Related Publication 20200407986A1 · Dec 31, 2020