Supporting structure capable of adjusting alignment after placement of laminated slabs
By using an adjustable support structure during the hoisting of the composite slab, including mounting bases, telescopic components A/B, universal ball bearings, and elastic pads, the problem of strong impact connection between the composite slab and the aluminum formwork was solved, achieving a safe and precise installation process.
Patent Information
- Application Number
- CN202422918999.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-28
- Publication Date
- 2025-12-05
- Estimated Expiration
- 2034-11-28
AI Technical Summary
When the composite slab is hoisted above the aluminum formwork, there is a problem with the strong impact and docking installation with the aluminum formwork, and it cannot be adjusted for alignment after being lowered.
An adjustable support structure is adopted, including a mounting base, telescopic component A and telescopic component B, with a universal ball bearing and elastic pad installed on the top. The slow docking of the composite plates is achieved by controlling the telescopic components, and the universal ball bearing and elastic pad provide multi-point support and cushioning.
It enables impact-free installation of the composite slab and aluminum formwork, eliminating safety hazards during hoisting and allowing for subsequent precise alignment adjustments.
Smart Images

Figure CN223634407U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a kind of supporting structure of laminated slab after being placed adjustable alignment, belong to laminated slab construction technical field. BACKGROUND
[0002] Laminated slab combines aluminum mold construction, can improve the floor slab construction forming efficiency of building.
[0003] Laminated slab is prefabricated after being prefabricated in prefabricated plant, and after being transported to construction site, it needs to be hoisted to the position corresponding to aluminum mold (see Chinese patent publication No. CN118728057A);And laminated slab is hoisted to the position corresponding to aluminum mold, and when tower crane is instantaneously lowered to laminated slab with a certain height distance from aluminum mold, the problem of strong impact docking installation with aluminum mold will appear, and displacement adjustment cannot be carried out after being lowered to alignment. UTILITY MODEL CONTENTS
[0004] To solve the above technical problems, the utility model provides a kind of supporting structure of laminated slab after being placed adjustable alignment.
[0005] The utility model is realized by the following technical solutions.
[0006] The utility model provides a kind of supporting structure of laminated slab after being placed adjustable alignment, including:
[0007] Mounting seat;
[0008] Telescopic piece A and telescopic piece B fixedly installed on mounting seat.
[0009] The top of telescopic piece A is provided with universal ball that can be rolled and rotated, telescopic piece B top is fixed with the elastic pad that provides buffer, and laminated slab is supported by universal ball and elastic pad contact.
[0010] It further includes aluminum mold for detachably fixed mounting seat.
[0011] The bottom of aluminum mold is supported by support rod.
[0012] The top support point of support rod is supported at the cross of aluminum mold.
[0013] The elastic pad is the elastic rubber plate cut from waste tire.
[0014] The mounting seat is L-shaped.
[0015] The utility model discloses beneficial effect lies in: when telescopic spare A is with universal ball and is lowered and is separated with the bottom surface of laminated board, the elastic backing plate of this time and laminated board support, and the universal ball is lower than aluminium mould, and then through the control telescopic spare B is with the elastic backing plate slowly lowered to be lower than aluminium mould top surface, makes laminated board in the support of elastic backing plate and aluminium mould no. Strong impact butt joint installation has solved laminated board and aluminium mould have certain height distance condition instantaneous down and will appear with aluminium mould strong impact butt joint installation problem. BRIEF DESCRIPTION OF DRAWINGS
[0016] Figure 1 It is the structure schematic drawing of the utility model hoist state time;
[0017] Figure 2 It is the structure schematic drawing of the utility model laminated board and guard board installation time;
[0018] Figure 3 It is the schematic drawing of the utility model laminated board and universal ball, elastic backing plate contact;
[0019] Figure 4 It is the structure schematic drawing of the utility model laminated board and universal ball, elastic backing plate contact;
[0020] Figure 5 It is the structure schematic drawing of the utility model universal ball, elastic backing plate and aluminium mould installation;
[0021] In the drawing: 1-aluminium mould;2-supporting rod;11-mounting seat;12-telescopic spare A;13-telescopic spare B;14-universal ball;15-elastic backing plate;3-laminated board;31-reserved steel body;4-guard board;41-muffled plug hole;42-baffle;43-binder;5-hanging chain. DETAILED DESCRIPTION
[0022] The technical scheme of the utility model will be further described below, but the scope of protection is not limited to the description.
[0023] As Figures 1 to 5 Indicated.
[0024] The application discloses a fabricated laminated board construction method, which comprises the following steps.
[0025] Step one, aluminium mould erection: aluminium mould 1 is erected by supporting rod 2, the supporting rod 2 top supporting point is on the cross of aluminium mould, the aluminium mould 1 is fixed with L-shaped mounting seat 11, the mounting seat 11 is installed with telescopic spare A 12 and telescopic spare B 13, the telescopic spare A 12 top is installed with rotatable universal ball 14, the telescopic spare B 13 top is fixed with elastic backing plate 15 providing buffer, and multiple universal balls 14 can provide multiple-point rotatable support for laminated board 3 in the later period, and multiple elastic backing plates 15 can provide damping buffer when laminated board 3 is lowered.
[0026] Step two, the preparation of hoisting the laminated slab: install the protective plate 4 made of plastic foam plate at the end of the laminated slab 3, and the plug-in hole 41 of the protective plate 4 is inserted with the reserved steel body 31, so that the reserved steel body 31 is completely inside the plug-in hole 41 of the protective plate 4 and does not protrude, the baffle 42 made of plastic foam plate on the protective plate 4 is rotated and erected, and the baffle 42 is relatively fixed by the band 43, and the four baffles 42 protect the four sides of the laminated slab 3, which presents a protective structure in the state of hoisting the laminated slab, and the laminated slab 3 without cleaning the sundries can be limited and protected by the four baffles 42, so as to avoid the sundries falling from high altitude during hoisting; the lifting chain 5 is fixedly connected with the laminated slab 3.
[0027] Step three, hoisting the laminated slab: the tower crane hoists the laminated slab 3 from the construction site through the lifting chain 5, and then rotates to the corresponding position above the aluminum mold 1, and the laminated slab 3 is lowered by the tower crane, and when the laminated slab 3 can be touched and controlled by the working personnel, the reserved steel body 31 is not in the protruding state because it is inside the plug-in hole 41 of the protective plate 4 and does not protrude.
[0028] The laminated slab 3 continues to be lowered, the elastic pad 15 is lifted by the telescopic member B13 and is higher than the aluminum mold 1, the bottom of the laminated slab 3 contacts the elastic pad 15 which is higher than the aluminum mold 1, the bottom of the laminated slab 3 is buffered and lowered on the multiple elastic pads 15, the lifting chain 5 and the protective plate 4 are disassembled, the telescopic member A12 lifts the universal ball 14 and pushes against the laminated slab 3, so that the laminated slab 3 is separated from the elastic pad 15, the laminated slab 3 is adjusted by rolling on the universal ball 14, after the reserved steel body 31 of the adjacent laminated slab 3 is aligned, the telescopic member A12 lowers the universal ball 14, the laminated slab 3, and when the laminated slab 3 contacts the universal ball 14 and the elastic pad 15, a support structure for adjusting and aligning after placing the laminated slab is presented; then the telescopic member A12 continues to lower the universal ball 14 and separates from the bottom surface of the laminated slab 3, until the elastic pad 15 supports the laminated slab 3, at this time the universal ball 14 is lower than the aluminum mold 1, then the telescopic member B13 slowly lowers the elastic pad 15 by control, so that the laminated slab 3 is installed without strong impact with the aluminum mold 1; the mounting seat 11 disassembles the telescopic member A12 and the telescopic member B13 from the aluminum mold 1.
[0029] Repeat steps two and three to install multiple laminated slabs 3 on the aluminum mold 1.
[0030] The above laminated slab support structure for adjusting and aligning after placing the laminated slab includes:
[0031] Mounting seat 11 for detachable fixing on aluminum mold 1 by bolt, mounting seat 11 is fixed with telescopic telescopic piece A12, telescopic piece B13, telescopic piece A12 top is provided with universal ball 14 which can roll and rotate, telescopic piece B13 top is fixed with elastic pad 15 which provides buffer, universal ball 14, elastic pad 15 contact support laminated board 3.
[0032] When telescopic piece A12 with universal ball 14 is lowered and separated from the bottom surface of laminated board 3, at this time, elastic pad 15 supports laminated board 3, and universal ball 14 is lower than aluminum mold 1; then by controlling telescopic piece B13 with elastic pad 15 to slowly descend below the top surface of aluminum mold 1, laminated board 3 is installed without strong impact butt joint with aluminum mold 1 under the support of elastic pad 15, which solves the problem of strong impact butt joint installation of laminated board with aluminum mold when it is instantaneously lowered with a certain height distance.
[0033] The above-mentioned protection structure in the state of hoisting laminated board, comprising:
[0034] The laminated board 3 with the reserved steel body 31 reserved and fixed on the four side surfaces, and the protection plate 4 provided with the plug-in hole 41, the protection plate 4 is four corresponding to the four side surfaces of the laminated board 3; the plug-in hole 41 of the protection plate 4 is plugged with the reserved steel body 31 of the laminated board 3, at this time, the reserved steel body 31 is not exposed and not in the state of extending in the plug-in hole 41.
[0035] When the laminated board 3 is hoisted to the space above the aluminum mold 1 for the operation of the construction personnel to touch and control, since the reserved steel body 31 is not exposed and not in the state of extending in the plug-in hole 41 of the protection plate 4, the problem of safety hazard of the reserved steel body in the state of extending to the operation of the construction personnel is solved.
[0036] The protection plate 4 is rotatably connected with the baffle 42, and the baffle 42 can be rotated inward and outward on the protection plate 4; the opposite baffle 42 is bound by the binding belt 43.
Claims
1. A support structure for post-positioning adjustment of laminated boards, characterized in that Comprising: a mounting base (11); a telescopic part A (12) and a telescopic part B (13) fixedly mounted on the mounting base (11); a universal ball (14) rotatably mounted on the top of the telescopic part A (12) and an elastic pad (15) fixedly mounted on the top of the telescopic part B (13) to provide cushioning, the universal ball (14) and the elastic pad (15) in contact support a laminated board (3).
2. The support structure for post-positionable alignment of laminated panels according to claim 1, wherein: Further comprising an aluminum mold (1) for detachably and fixedly mounting the mounting base (11).
3. The support structure for post-positionable alignment of laminated panels of claim 2, wherein: The bottom of the aluminum mold (1) is supported by a support rod (2).
4. The support structure for post-positionable adjustment of laminated panels according to claim 3, characterized in that: The top support point of the support rod (2) is on the cross of the aluminum mold (1).
5. The support structure for post-positionable adjustment of laminated panels according to claim 1, wherein: The elastic pad (15) is an elastic rubber plate cut from a discarded tire.
6. The support structure for post-positionable adjustment of laminated panels according to claim 1, wherein: The mounting base (11) is L-shaped.
Citation Information
Patent Citations
Aluminum mold mounting method for high-rise fabricated building
CN118728057A