This application claims priority, under Section 371, and/or as a continuation under Section 120, to PCT Application No. PCT/IB2020/057612, filed Aug. 13, 2020, which claims priority to New Zealand 756344, filed Aug. 16, 2019.
The invention relates to an apparatus and process apparatus for producing bent multi-sided pultruded fibre reinforced plastic reinforcement bar for concrete (commonly known as FRP rebar).
Pultruded FRP rod is produced by drawing a bundle of fibreglass or other reinforcement rovings through a resin bath to wet the roving with resin, and subsequently heating the wet roving to cure the resin and form a solid product.
Reinforcing bar or rebar used as concrete reinforcing is typically formed from steel rod but may be formed from fibre reinforced bar or rod. Steel rebar may comprise straight lengths or may be bent to multi-sided shapes. Typically reinforcing in a square cross-section concrete beam for example, comprises multiple rebar lengths in the length of the beam, and three or four-sided bent steel rebar elements spaced in the length of the beam to tie the rebar lengths together. These are wire-tied to the rebar lengths to hold them in place before the beam is poured.
An object of the invention is to provide an improved or at least alternative apparatus and/or process apparatus for producing bent multi-sided pultruded composite rebar.
In broad terms in one aspect the invention comprises apparatus for producing bent multi-sided pultruded FRP rebar, which comprises:
In broad terms in another aspect the invention comprises a process for producing bent multi-sided pultruded FRP rebar, which comprises:
In broad terms in another aspect the invention comprises a process for producing bent multi-sided pultruded FRP rebar, which comprises:
In some embodiments the process comprises cutting the bent multi-sided pultruded FRP bar on the or each former frame into multiple individual bent multi-sided pultruded FRP rebar end products.
In some embodiments the process comprises winding multiple wet rovings onto one or more rotating multi-sided former frame(s) while removing cured product(s) from one or more other former frame or frames.
In broad terms in a further aspect the invention comprises apparatus for producing bent multi-sided pultruded FRP rebar, which comprises multiple resin wetting stages to simultaneously resin pressure impregnate multiple bundles of fibre rovings continuously drawn through the resin wetting stages, and multiple spiral winding stages each arranged to spiral wind a warp around a wet roving exiting one of the resin wetting stages.
Definitions
In this specification:
The invention is further described with reference to the accompanying figures, by way of example and without intending to be limiting. In the figures:
Referring first to
As the wet rovings R exit the impregnation stage a warp is spiral wound around each wet rovings bundle. Each warp may comprise a single strand or a small bundle of multiple strands, of the same material as the fibre rovings, or other suitable material such as Nylon or other synthetic material or cotton or other organic material for example. The spiral warp is wound at a spaced pitch, such that for example if the impregnated rovings bundle has a cross-section dimension in the range 1-3 cm for example, then the warp pitch may also be in the range 1-3 cm. The spiral warp is preferably wound at a tension to slightly compress the rovings bundles beneath the warp along the length of the warp where it contacts the rovings, relative to the rovings segments between warp spirals, which help create a non-smooth exterior surface on the finished solid rebar product and may give it a slightly varying diameter. Referring to
The frames 10/11 at each of eight corners comprise a slotted former 14 (all marked in
The two cured roving turns on that frame 10 (multiple turns for example 6 turns) may be cut into individual (for example 10) multisided products which are then individually removed from the frame 10, or in an alternative embodiment the whole frame may be removed and replaced with another empty frame, and the roving turns cut from that frame while off the machine, into individual products.
While one of the frames on one side of the machine is driven to rotate, and take up wet roving the cured roving on the other side of the machine is being removed. The speed of rotation of the moving frame is co-ordinated with the speed of movement of the roving bundles through the machine.
In the embodiment described above the two resin wetting stages and spiral warp winding stages feed one of the two former frames while the other former frame is stationary during curing and removal but in a higher volume production embodiment three or four or more resin wetting and spiral warp winding stages may feed three or four or more former frames.
The foregoing description of the invention includes preferred forms thereof. Modifications may be made thereto without departing from the scope of the invention as defined in the accompanying claims.
Number | Date | Country | Kind |
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756344 | Aug 2019 | NZ | national |
Filing Document | Filing Date | Country | Kind |
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PCT/IB2020/057612 | 8/13/2020 | WO |
Publishing Document | Publishing Date | Country | Kind |
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WO2021/033086 | 2/25/2021 | WO | A |
Number | Name | Date | Kind |
---|---|---|---|
8333857 | Brandstrom | Dec 2012 | B2 |
20160089820 | Schinkinger | Mar 2016 | A1 |
Number | Date | Country |
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2731343 | Oct 2011 | CA |
H03129040 | Jun 1991 | JP |
H06297591 | Oct 1994 | JP |
WO-2014084755 | Jun 2014 | WO |
WO-2020016668 | Jan 2020 | WO |
Entry |
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Australian Patent Office, International Search Report in PCT Application No. PCT/IB2020/057612, dated Sep. 22, 2020 (3 pgs.). |
Australian Patent Office, Written Opinion of the International Searching Authority, dated Sep. 22, 2020 (5 pgs.). |
Examination Report from SA Application No. 522431676 dated Nov. 29, 2022. |
Examination Report from EA Application No. 202291867 dated Dec. 20, 2022. |
Number | Date | Country | |
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20220297393 A1 | Sep 2022 | US |