Integral lifting type aluminum mold transmission device based on light equipment integration platform
By designing an integrated lifting aluminum formwork transfer device, and utilizing the lifting system and mechanical equipment of a lightweight equipment integration platform, rapid and safe transfer and automatic cleaning of aluminum formwork were achieved. This solved the problems of low efficiency and safety risks associated with traditional manual transfer, and improved construction quality and efficiency.
Patent Information
- Application Number
- CN202520551243.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-26
- Publication Date
- 2026-01-23
- Estimated Expiration
- 2035-03-26
AI Technical Summary
Under the integrated platform of light equipment, the transmission efficiency of aluminum molds is low, which poses safety risks and occupational disease hazards. In addition, the manual transmission method is inefficient and increases the cost of subsequent hole repair.
Design an integrated lifting aluminum mold transmission device based on a lightweight equipment integration platform, including a frame base, a winch, a wire rope, a motor, and a snap-on slide. The device utilizes the lifting system of the lightweight equipment integration platform to mechanically lift the aluminum mold and automatically cleans the surface of the aluminum mold using cleaning rollers.
It enables rapid and safe transfer of aluminum formwork, reduces labor requirements, lowers safety risks, improves construction quality and efficiency, and avoids the need for aluminum formwork falling and manual cleaning.
Smart Images

Figure CN223823136U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of building construction, and more specifically, to an integrated lifting aluminum formwork transmission device based on a lightweight equipment integration platform. Background Technology
[0002] Currently, lightweight equipment integrated platforms are being continuously used in high-rise and super high-rise buildings. These platforms mainly consist of a lifting system, a steel platform system, a hanging frame system, and a control system. They offer good safety protection, fast lifting speed, and can be equipped with various automated tools to assist in structural construction. However, during the construction of the main structure aluminum formwork under the lightweight equipment integrated platform, the aluminum formwork below the working level still requires manual transfer after demolding. This is achieved by pre-reserving multiple suitable openings for the aluminum formwork at designated locations on the floor slab. After concrete pouring, workers pass the aluminum formwork from the demolded level through these openings to the workers on the working level, who then clean the formwork surface. This repetitive transfer method is not only inefficient and prone to occupational diseases with prolonged operation, but the pre-reserved openings on the floor slab also increase safety risks and the cost of subsequent repairs. Summary of the Invention
[0003] The technical problem to be solved by this utility model is to provide an aluminum mold transmission device based on a lightweight equipment integration platform, which enables faster aluminum mold transmission, minimizes the labor of workers, reduces safety risks during aluminum mold transmission, and improves the surface quality of aluminum mold.
[0004] The technical solution adopted by this utility model to solve its technical problem is as follows: Construct an overall lifting aluminum mold transmission device based on a lightweight equipment integration platform, including a frame base, a winch, a steel wire rope, a motor, a cleaning roller, and a snap-on slide; the frame base is connected to the horizontal keel of the lightweight equipment integration platform, the lightweight equipment integration platform is lifted to drive the frame base to lift, the winch is set on the upper part of the frame base, the winch drives the snap-on slide to slide on the frame base through the steel wire rope, the motor is set on the frame base, and the motor drives the cleaning roller to rotate.
[0005] In the above scheme, the frame base includes C-shaped uprights and horizontal beams, and the C-shaped uprights are fixed to the horizontal keel of the light equipment integration platform.
[0006] In the above scheme, the C-shaped upright is fixed to the horizontal keel of the light equipment integration platform by a snap-fit component.
[0007] In the above scheme, the electric motor drives the cleaning roller to rotate via a transmission belt.
[0008] In the above scheme, the snap-on slide block and the C-shaped upright are connected by a transverse rectangular tube with rollers on both sides, and the rollers can roll freely in the groove of the C-shaped upright.
[0009] In the above scheme, the snap-fit slide is connected to the horizontal rectangular tube by bolts through vertical angle steel.
[0010] In the above scheme, the bottom of the snap-on slide is provided with a bracket, which is connected to the limiting steel wire rope. The bracket can move up and down within the limiting range of the limiting column.
[0011] In the above scheme, the snap-on slide is provided with a snap and a slide groove. A limiting spring is provided between the snap and the slide groove. The limiting spring is connected to the limiting wire rope. When the limiting wire rope is pulled down, the snaps on both sides move inward. At this time, the limiting spring is compressed, the limiting wire rope is not under force, the limiting spring returns to its original state, and drives the snaps on both sides to move outward.
[0012] The integrated lifting aluminum mold transmission device based on a lightweight equipment integration platform, which implements this utility model, has the following beneficial effects:
[0013] 1. This utility model is fixed on the bracket of the light equipment integration platform. The device can be lifted as a whole by the lifting of the platform. No personnel or other machinery are required to lift it, making it convenient to use and maintain.
[0014] 2. This utility model adopts mechanical lifting of aluminum molds to replace the traditional manual transfer method, which greatly liberates labor and reduces the workload of template workers. The automatic buckle design effectively avoids the risk of aluminum molds falling during the transfer process.
[0015] 3. The cleaning roller equipped in this utility model can automatically clean the surface of the aluminum mold while it is being transported upwards, which can replace the manual rolling operation of the workers and effectively improve the construction quality of concrete. Attached Figure Description
[0016] The present invention will be further described below with reference to the accompanying drawings and embodiments. In the accompanying drawings:
[0017] Figure 1 This is an elevation view of the integrated lifting aluminum mold transmission device based on a lightweight equipment integration platform of this utility model;
[0018] Figure 2 This is an elevation view of the integrated lifting aluminum mold transmission device based on a lightweight equipment integration platform, which is part of this utility model.
[0019] Figure 3 yes Figure 1 Elevation view of the snap-fit sliding block;
[0020] Figure 4 yes Figure 3Elevation view of the automatic latch;
[0021] Figure 5 yes Figure 1 Top view cut by section AA;
[0022] Figure 6 yes Figure 1 Top view of BB section;
[0023] Figure 7 yes Figure 1 Top view cut by CC;
[0024] Figure 8 yes Figure 1 Top view of DD section;
[0025] Figure 9 yes Figure 1 Top view of the EE section. Detailed Implementation
[0026] To provide a clearer understanding of the technical features, objectives, and effects of this utility model, the specific embodiments of this utility model will now be described in detail with reference to the accompanying drawings.
[0027] like Figures 1 to 9 As shown, this utility model is based on a lightweight equipment integrated platform with an overall lifting aluminum mold transmission device, including a C-shaped upright 1, a horizontal beam 2, a winch 3, a lifting wire rope 4, a motor 5, a cleaning roller 6, a conveyor belt 7, a snap-on slide 8, and a fall-prevention base plate 9.
[0028] The C-shaped upright 1 is equipped with a detachable buckle 21 according to the step distance of the horizontal keel inside the light equipment integration platform bracket. The C-shaped upright 1 is fixed by bolts. The two vertical C-shaped uprights 1 are connected by a horizontal beam 2. The bottom of the C-shaped upright 1 is equipped with a limiting baffle 9, which can limit the limiting rod 12 on the buckle slide 8.
[0029] The winch 3 drives the entire snap-on slide 8 to move up and down in the groove of the C-shaped upright 1 by lifting the wire rope 4. The winch is equipped with start and stop buttons on the demolding layer and the working layer to control the opening and closing of the winch.
[0030] The motor 5 is fixed to the C-shaped upright 1 by the bracket and is in a rotating state throughout the transmission process, driving the cleaning roller 6 to rotate. At the same time, the auxiliary cleaning roller is driven to rotate synchronously through the belt, which improves the cleaning effect on the surface of the aluminum mold.
[0031] The snap-fit slide block 8 includes a horizontal rectangular tube 17, a vertical angle steel 10, a wire rope 12, a snap 15, a slide groove 14, and a limiting spring 16.
[0032] The snap-fit slide 8 and the C-shaped upright 1 are connected by a transverse rectangular tube 17 with rollers 18 on both sides. The rollers 18 can roll freely in the groove of the C-shaped upright 1. The snap-fit slide 8 is bolted to the transverse rectangular tube 17 through a vertical angle steel 10. A bracket 13 is provided at the bottom of the snap-fit slide 8. The bracket 13 is connected to the limiting steel wire rope 12. The bracket 13 can move up and down within the limiting range of the limiting post 19.
[0033] A limiting spring 16 is provided between the buckle 15 and the slide 14. The limiting spring 16 is connected to the limiting wire rope 12. When the limiting wire rope 12 is pulled down, the buckles 15 on both sides move inward. At this time, the limiting spring 16 is compressed, the limiting wire rope 12 is not under force, the limiting spring 16 returns to its original state, and drives the buckles 15 on both sides to move outward.
[0034] This utility model relies on a lightweight equipment integration platform for overall improvement; the following only describes its usage process:
[0035] Step 1: The workers in the demolding layer remove the aluminum formwork for the walls, columns, beams, and slabs;
[0036] Step 2: The worker transfers the aluminum mold to the bracket 13 of the snap-on slide block 8. The bracket 13 is lowered by the load of the aluminum mold, which pulls the limiting steel wire rope 12 downward. The limiting steel wire rope 12 drives the buckles 15 on both sides to retract with the roller 20 as the fulcrum, and locks the aluminum mold. At this time, the limiting spring 16 is compressed.
[0037] Step 3: With the start of the workers on the demolding layer, the winch 3 lifts the snap-fit slide 8 along the C-shaped upright 1 to the working layer.
[0038] Step 4: The workers on the working level lift the aluminum mold upwards. At this time, the support 13 is released from its stress state, the limit wire rope 12 is no longer under downward tension, the limit spring 16 returns to its original state, and the buckles 15 on both sides automatically open.
[0039] Step 5: The worker on the working level starts the device, and the snap-on slide 8 descends along the C-shaped upright 1 to the working level. The limiting rod 12 on the slide automatically stops after it touches the limiting baffle 9 at the bottom of the C-shaped upright 1.
[0040] Step 6: Complete the transfer of the aluminum mold by repeating the above steps.
[0041] The embodiments of the present invention have been described above with reference to the accompanying drawings. However, the present invention is not limited to the specific embodiments described above. The specific embodiments described above are merely illustrative and not restrictive. Those skilled in the art can make many other forms under the guidance of the present invention without departing from the spirit and scope of the claims. All of these forms are within the protection scope of the present invention.
Claims
1. A lightweight equipment integrated platform-based integrated lifting aluminum mold transmission device, characterized in that, It includes a frame base, a winch, a wire rope, a motor, a cleaning roller, and a snap-on slide. The frame base is connected to the horizontal keel of the light equipment integration platform. The light equipment integration platform lifts the frame base. A winch is installed on the upper part of the frame base. The winch drives the snap-on slide to slide on the frame base through the wire rope. The motor is installed on the frame base and drives the cleaning roller to rotate.
2. The integrated lifting aluminum mold transmission device based on a lightweight equipment integration platform according to claim 1, characterized in that, The frame base includes C-shaped uprights and horizontal beams, with the C-shaped uprights fixed to the horizontal keel of the light equipment integration platform.
3. The integrated lifting aluminum mold transmission device based on a lightweight equipment integration platform according to claim 2, characterized in that, The C-shaped uprights are fixed to the horizontal keel of the light equipment integration platform by snap-fit components.
4. The integrated lifting aluminum mold transmission device based on a lightweight equipment integration platform according to claim 1, characterized in that, The electric motor drives the cleaning roller to rotate via a conveyor belt.
5. The integrated lifting aluminum mold transmission device based on a lightweight equipment integration platform according to claim 2, characterized in that, The snap-fit sliding block is connected to the C-shaped upright by a transverse rectangular tube with rollers on both sides, and the rollers can roll freely in the groove of the C-shaped upright.
6. The integrated lifting aluminum mold transmission device based on a lightweight equipment integration platform according to claim 5, characterized in that, The snap-fit sliding block is connected to the horizontal rectangular tube by bolts through vertical angle steel.
7. The integrated lifting aluminum mold transmission device based on a lightweight equipment integration platform according to claim 1, characterized in that, The bottom of the snap-on slide is equipped with a bracket, which is connected to a limiting steel wire rope. The bracket can move up and down within the limiting range of the limiting column.
8. The integrated lifting aluminum mold transmission device based on a lightweight equipment integration platform according to claim 7, characterized in that, The snap-on slide block is provided with a snap-on and a slide groove. A limiting spring is set between the snap-on and the slide groove. The limiting spring is connected to a limiting steel wire rope. When the limiting steel wire rope is pulled down, the snap-on on both sides moves inward. At this time, the limiting spring is compressed, the limiting steel wire rope is not under force, the limiting spring returns to its original state, and drives the snap-on on both sides to move outward.