FORMWORK SYSTEM AND METHOD
20240279889 ยท 2024-08-22
Assignee
Inventors
- Julian Huber (Merklingen, DE)
- Andrew Read (Voehringen, DE)
- Florian Sturm (Unterroth, DE)
- Ken Harris (Elkridge, MD, US)
- Justin Lunday (Elkridge, MD, US)
- Dan Straub (Elkridge, MD, US)
Cpc classification
E01D21/00
FIXED CONSTRUCTIONS
E01D19/02
FIXED CONSTRUCTIONS
International classification
E01D22/00
FIXED CONSTRUCTIONS
E01D19/02
FIXED CONSTRUCTIONS
Abstract
A formwork system, including a plurality of side formwork elements configured to confront a concrete structure, a horizontal formwork panel configured to support the concrete structure, and at least one working platform, wherein the system is configured to be split in a longitudinal direction and stricken or cycled from the concrete structure in two discrete parts.
Claims
1. (canceled)
2. A formwork system, comprising: at least one horizontal formwork element configured to support a concrete structure; a first connection beam having an integrally formed first connection element and being releasably connected to the horizontal formwork element via a first fixation element received by the first connection element; a second connection beam having an integrally formed second connection element and being releasably connected to the horizontal formwork element via a second fixation element received by the second connection element such that, upon disengagement of one of the first fixation element or the second fixation element, the formwork system is configured to split in a longitudinal direction and stricken or cycled from the concrete structure in two or more discrete parts; and a plurality of main beams configured to support the at least one horizontal formwork element, the first connection beam, and the second connection beam.
3. The formwork system of claim 2, wherein at least one of the plurality of main beams is releasably connected to at least one of the first connection beam or the second connection beam.
4. The formwork system of claim 2, further comprising a plurality of jacks fixed to a bridge pier configured to a least partially support the plurality of main beams, wherein the plurality of jacks, upon actuation, cause respective vertical displacement of the plurality of main beams.
5. The formwork system of claim 2, wherein at least one of the first fixation element or the second fixation element is a bolt.
6. The formwork system of claim 2, further comprising at least one vertical beam configured to indirectly attach to the concrete structure, and wherein the concrete structure comprises a bridge pier cap.
7. The formwork system of claim 2, wherein a first part of the two discrete parts comprises the first connection beam and a first main beam of the plurality of main beams.
8. The formwork system of claim 7, wherein a second part of the two discrete parts comprises at least the horizontal formwork panel, the second connection beam and a second main beam of the plurality of main beams.
9. The formwork system of claim 8, wherein the first main beam is disposed below the first connection beam and the horizontal formwork element, and the second main beam is disposed below the second connection beam and the horizontal formwork element.
10. A formwork system, comprising: at least one horizontal formwork element configured to support a concrete structure; at least one connection beam having an integrally formed connection element and being releasably connected to the at least one horizontal formwork element via a fixation element received by the connection element such that, upon disengagement of the fixation element, the formwork system is configured to split in a longitudinal direction and stricken or cycled from the concrete structure in two or more discrete parts; and a plurality of main beams configured to support the at least one horizontal formwork element and the at least one connection beam.
11. The formwork system of claim 10, wherein the at least one connection beam comprises a plurality of connection beams.
12. The formwork system of claim 11, wherein at least one of the plurality of main beams is releasably connected to at least one of the plurality of connection beams.
13. The formwork system of claim 10, further comprising a plurality of jacks fixed to a bridge pier configured to a least partially support the plurality of main beams, wherein the plurality of jacks, upon actuation, cause respective vertical displacement of the plurality of main beams.
14. The formwork system of claim 10, wherein the fixation element is a bolt.
15. The formwork system of claim 10, further comprising at least one vertical beam configured to indirectly attach to the concrete structure, and wherein the concrete structure comprises a bridge pier cap.
16. The formwork system of claim 11, wherein a first part of the two discrete parts comprises a first connection beam of the plurality of connection beams and a first main beam of the plurality of main beams.
17. The formwork system of claim 16, wherein a second part of the two discrete parts comprises at least the horizontal formwork panel, a second connection beam of the plurality of connection beams and a second main beam of the plurality of main beams.
18. The formwork system of claim 17, wherein the first main beam is disposed below the first connection beam and the horizontal formwork element, and the second main beam is disposed below the second connection beam and the horizontal formwork element.
19. A system, comprising: a formwork system, including: at least one horizontal formwork element configured to support a concrete structure, at least one connection beam having an integrally formed first connection element and being releasably connected to the horizontal formwork element via a fixation element received by the connection element such that, upon disengagement of the fixation element, the formwork system is configured to split in a longitudinal direction and stricken or cycled from the concrete structure in two or more discrete parts, and a plurality of main beams configured to support the at least one horizontal formwork element and the at least one connection beam; and a sideform assembly including a plurality of side formwork elements, the side formwork elements and horizontal formwork element defining a volume for receiving poured concrete, the sideform assembly removably engagable with the formwork system.
20. The formwork system of claim 19, wherein the at least one connection beam comprises a plurality of connection beams.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0036] The invention description below refers to the accompanying drawings, of which:
[0037]
[0038]
[0039]
[0040]
[0041]
DETAILED DESCRIPTION
[0042]
[0043] The formwork system 100 can include a horizontal formwork element 108, respective connection beams 120a, b, and main beams 110a, b. The main beams 110a, b can be supported by respective jacks 112a, b with respect to the bridge pier 114, as will be described in greater detail below. The horizontal formwork element 108, respective connection beams 120a, b, and main beams 110a, b can be formed of any material, such as metal (e.g., steel), wood, a polymer, or any combination thereof. In some examples, the horizontal formwork element 108 can be a formwork panel, such as a soffit panel, and have a top layer of a form liner (e.g., formlining or skin layer). In one example, the horizontal formwork element can be a formwork element according to commonly assigned U.S. patent application Ser. No. 16/988,483, entitled FORMWORK SYSTEM AND METHOD, by Huber et al., filed on Aug. 7, 2020.
[0044] As shown in
[0045] As shown, the main beams 110a, b can be disposed below the connection beams 120a, b and horizontal formwork element 108 relative to the vertical y direction.
[0046] The horizontal formwork element 108 can extend in the longitudinal direction (e.g., perpendicular to both the horizontal x direction and the vertical y direction) and can have a length less than a length of main beams 110a, b. In this regard, two horizontal formwork elements 108 can be employed at opposing positions relative to the bridge pier 114 with the bridge pier 114 occupying a space defined between the elements 108. In this regard, a combination of the lengths of the two elements 108 with the bridge pier 114 can combine to have a length in the longitudinal direction approximately equal to a length of main beams 110a.
[0047] The horizontal formwork element 108 can have a height in the vertical y direction that is the same as a height of the connection beams 120a, b. A width of the horizontal formwork element 108 in the horizontal x direction can correspond to a distance between inner surfaces of side formwork elements 102a, b and correspond to a width of the bridge pier cap 116 in the horizontal x direction. In some examples, a top surface of the horizontal formwork element 108 can be planar and form a continuous surface with a top surface of bridge pier 114, thereby providing a flat surface for the formation and support of the bridge pier cap.
[0048] The length (oriented in longitudinal direction) of the horizontal formwork element 108 can be based on the metric measurement system and the width (oriented in horizontal x direction) of the horizontal formwork element 108 can be based on the imperial or US customary units measurement system or vice versa, or a combination of both. For example, the length of the horizontal formwork element 108 can be an integer multiple of one centimeter (for example, 5 centimeters, 57 centimeters, 96 centimeters, 130 centimeters, etc.) or a multiple of 50 centimeters (for example, 50 centimeters, 100 centimeters, 200 centimeters, etc.). The width of the horizontal formwork element 108 can be an integer multiple of an inch (for example, 1 inch, 2 inches, 10 inches, 47 inches, 98 inches, etc.) or an integer multiple of a foot (for example, 1 foot, 3 feet, 10 feet). Thus the panel can be used in different countries with different measurement systems without modification. Furthermore, the panel can be rotated (so that the length side now corresponds to the width side and vice versa), depending on whether the structure to be concreted (such as the bridge pier head) is aligned according to the metric or the imperial measurement system.
[0049] As shown in
[0050] As shown in
[0051] The formwork system 100 can engage with a sideform assembly comprising vertically aligned side formwork elements 102a, b (such as formwork panels) and formwork crossbeam 101. The side formwork elements 102a, b and horizontal formwork element 108 generally define a volume for receiving poured concrete and hardening of the concrete for forming the bridge pier cap 116. The formwork crossbeam 101, side formwork elements 102a, b, and the horizontal formwork element 108 can be formed of any suitable material, such as metal, a polymer, wood, or any combination thereof. The side formwork elements 102a, b confront the bridge pier cap 116 by virtue of the pouring and concreting process in forming the bridge pier cap 116. The side formwork elements 102a, b can extend in the longitudinal direction and can have a height extending in the vertical direction that is greater than a height of the desired bridge pier cap 116.
[0052] The side formwork elements 102a, b can be removably engaged with the formwork system 100 by respective connection elements 104a, b. In this regard, the connection elements 104a, b can respectively extend from and be engaged with connection beams 120a, b such that the connection elements 104a, b can be disengaged, allowing for the side formwork elements 102a, b to be disengaged from the formwork system 100.
[0053] The formwork system 100 can include respective working platforms 106a, b extending in the horizontal direction that are attached permanently, semi-permanently, or releasably with main beams 110a, b and/or connection beams 120a, b. The working platforms 106a, b can include guardrails 118a, b extending in a vertical direction to provide a safe working space for a worker and/or to prevent equipment from falling off the platforms 106a, b. The platforms 106a, b and the guardrail 118a, b can be formed of any suitable material, such as metal, a polymer, wood, or any combination thereof.
[0054] The horizontal formwork element 108 is releasably attached to both the left-hand connection beam 120a and the right-hand connection beam 120b, with either or both capable of being detached or disengaged at the same time. In the example of
[0055] The right-hand connection beam 120b, right-hand working platform 106b (optionally), right-hand main beam 110b, and horizontal formwork element 108 can be stricken, cycled and moved as a single unit by virtue of connection element 122b shown in
[0056] The formwork system 100 and the components thereof can be supported by bridge pier 114 by virtue of one or more jacks 112a, b that are anchored to the bridge pier 114 and support the main beams 110a, b.
[0057]
[0058]
[0059] As shown, the jacks 112a, b are configured to support main beams 110a, b during pouring and hardening of bridge pier cap 116. The jack 112a can include a head bearing 112a-2 that can directly or indirectly confront the main beam 110a. The jack 112a can be affixed to bridge pier 114 by tie rod 112a-4 and nut 112a-6 in a removably engageable manner.
[0060] In
[0061]
[0062]
[0063]
[0064] In
[0065] In
[0066] In
[0067] In
[0068] In
[0069] While the stages of
[0070] The foregoing has been a detailed description of illustrative embodiments of the invention. Various modifications and additions can be made without departing from the spirit and scope of this invention. Features of each of the various embodiments described above may be combined with features of other described embodiments as appropriate in order to provide a multiplicity of feature combinations in associated new embodiments. Furthermore, while the foregoing describes a number of separate embodiments of the apparatus and method of the present invention, what has been described herein is merely illustrative of the application of the principles of the present invention. Accordingly, this description is meant to be taken only by way of example, and not to otherwise limit the scope of this invention.