A movable platform for building material placement and rapid transfer

By designing a movable platform for storing sheet metal and pipes, the problem of existing tools being unable to store different materials simultaneously was solved, achieving stable transportation and protection, and improving construction efficiency and safety.

CN118953850BActive Publication Date: 2026-07-21THE FIRST COMPARY OF CHINA EIGHTH ENG BUREAU LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
THE FIRST COMPARY OF CHINA EIGHTH ENG BUREAU LTD
Filing Date
2024-09-23
Publication Date
2026-07-21

AI Technical Summary

Technical Problem

Existing building material transport tools lack versatility and cannot effectively store and transport different types of materials at the same time. Especially in complex construction environments, they are prone to causing materials to tilt and slip, affecting construction efficiency and safety.

Method used

Design a mobile platform comprising sheet metal storage units and pipe storage units, employing guardrails, dividers, hydraulic mechanisms, and a worm gear drive system, combined with pulleys and a rain shelter, to achieve stable storage and rapid transfer of sheet metal and pipes.

Benefits of technology

It improves the efficiency and safety of equipment use, protects materials from damage, adapts to different construction environments, and reduces construction delays and economic losses.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application provides a movable platform for building material placement and rapid transfer, and relates to the technical field of building material storage and transfer equipment, and comprises a plate storage unit arranged above a base, the plate storage unit comprises a plurality of partition racks slidably connected to the base, a top base is connected to the top of the plate storage unit through a lifting unit, a pipe storage unit is hingedly connected to the top base, the pipe storage unit comprises an L-shaped support base, the support base is connected to the top base through a hydraulic mechanism, the plate storage unit comprises a plurality of pipe supports, a rain shelter is arranged above the pipe storage unit, and the plate storage unit and the pipe storage unit are both provided with a protective fence. The application has the advantages of reasonable design, simple structure, safety and reliability, and can safely store and transfer pipe materials and plate materials and other building materials.
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Description

Technical Field

[0001] This invention relates to the field of building material storage and transportation equipment, and in particular to a mobile platform for placing and rapidly transporting building materials. Background Technology

[0002] In construction, sheet metal and pipes are common basic building materials, typically large in volume and heavy in weight. The transfer and storage of these materials on construction sites is unavoidable. However, traditional storage and transfer methods often present numerous problems, such as unstable storage, slippage during transport, and damage from collisions. This not only affects construction efficiency but may also pose safety hazards.

[0003] Most existing building material transport tools are designed for only a single type of material, lacking versatility, which is particularly inconvenient when different types of materials need to be transported and stored simultaneously. For example, boards usually need to be placed horizontally, while pipes require certain fixing measures to prevent them from rolling. This differentiated storage and transport requirement brings great inconvenience to material management on construction sites, especially in complex construction environments, such as on slopes or uneven ground. Traditional tools cannot effectively cope with these conditions, easily causing materials to tilt or even slip, affecting construction progress and safety.

[0004] How to solve the above-mentioned technical problems is the challenge facing this invention. Summary of the Invention

[0005] To address the shortcomings of existing technologies, this invention provides a reasonably designed, simple, safe, and reliable mobile platform for storing and rapidly transporting building materials such as pipes and plates.

[0006] The technical solution adopted by the present invention to solve its technical problem is: the present invention provides a movable platform for placing and quickly transporting building materials, including a base, and a board storage unit is provided on the base. The board storage unit includes several partitions that are slidably connected to the base.

[0007] The top of the sheet material storage unit is connected to a top seat via a lifting unit. A pipe storage unit is hinged to the top seat. The pipe storage unit includes an L-shaped support seat. The support seat is connected to the top seat via a hydraulic mechanism. The sheet material storage unit includes several pipe supports.

[0008] A rain shelter is provided above the pipe storage unit;

[0009] Both the sheet material storage unit and the pipe material storage unit are equipped with protective railings.

[0010] Each of the four corners of the top surface of the base is provided with a column. The columns are vertically arranged and a protective railing is provided between two adjacent columns. One side is not provided with a protective railing and is the opening of the board storage unit.

[0011] Each of the columns is slidably connected to a lifting column, and the top surface of the lifting column is fixedly connected to the top seat, which is arranged parallel to the base.

[0012] A protective railing is provided between two adjacent lifting columns, corresponding to the opening of the board storage unit.

[0013] Each of the columns is rotatably connected to a threaded rod parallel to it, and each of the lifting columns has a threaded hole parallel to it on its bottom surface. The top surface of the column is open, and the threaded rod is located in the threaded hole and threadedly connected to the threaded hole.

[0014] The bottom end of each threaded rod is located inside the base and is coaxially fixedly connected to a first worm gear. All four first worm gears are meshed with a first worm rotatably connected inside the base. Two parallel first worm rotats are provided.

[0015] Each of the first worm gears has a second worm wheel coaxially and fixedly mounted on its outer side. Both second worm wheels mesh with the same second worm gear. The second worm gear is rotatably connected to the inside of the base and coaxially connected to a drive motor. The drive motor is electrically connected to a switch.

[0016] The board storage unit includes several parallel sliding grooves on the top surface of the base. The bottom surface of the sliding groove is provided with a toothed rack parallel to it. The two side walls of the sliding groove are provided with limiting grooves parallel to the sliding groove, and the two side walls of the sliding groove are also provided with through grooves parallel to the sliding groove.

[0017] The partition frame is slidably connected within the chute. The partition frame includes several vertical sliding columns. The bottom of each sliding column is rotatably connected to a gear via a gear shaft. The gear is located above the rack and meshes with the rack.

[0018] Both sides of the bottom end of the sliding column are provided with horizontal limiting blocks. The limiting blocks are located in the limiting groove and slide in cooperation with the limiting groove. The gear shaft passes through the through groove and the front side of the base and is coaxially connected to the outside of the base. The motor slides in the adjustment groove on the front side of the base and is provided with a switch.

[0019] The sliding columns of the partition frame are fixedly connected by a connecting rod, and both the sliding columns and the connecting rod are covered with a soft material.

[0020] A pressure sensor is provided on the front side of the sliding column in the direction of movement;

[0021] The top of each sliding column at the location away from the opening of the board storage unit of each of the partitions is slidably connected to a crossbar, which is fixed and horizontally positioned inside the column.

[0022] The base has several pulleys on the top surface where the groove is not formed, and the direction of the pulley shafts is the same as the direction of movement of the partition frame.

[0023] The surface of the pulley is made of rubber.

[0024] The support base includes a bottom plate and a side plate located on one side of the bottom plate and perpendicularly connected to the bottom plate, and a soft pad is provided on the inner side of the side plate.

[0025] The top surface of the top seat is hinged to the intersection of the side plate and the bottom plate, and the bottom surface of the bottom plate is connected to the top surface of the top seat through a hydraulic telescopic rod, which is driven by remote control.

[0026] A plurality of pipe supports perpendicular to the base plate are fixedly installed on the base plate. A plurality of L-shaped support rods are evenly arranged on both sides of the pipe supports, and pipes are placed on the L-shaped support rods.

[0027] The protective railings are provided on both sides of the top of the support base plate, but no protective railing is provided on the side opposite to the side plate where the base plate is connected to the side plate.

[0028] Two opposing first connecting columns are fixedly installed on the top surface of the top seat. A second connecting column is detachably connected to the top of the first connecting column. The rain shelter is connected to the side of the second connecting column near the support seat. A guardrail is installed between the two first connecting columns.

[0029] The rain shelter includes two horizontal main beams, which are respectively hinged to two second connecting columns. Several secondary beams are connected to the top of the main beams by fixing bolts, and a cover plate is provided on the top surface of the secondary beams.

[0030] Each main beam has two support rods hinged to its bottom. The two support rods are hinged to the top surface of the top seat. Both ends of the support rods are connected to the main beam and the top seat through hinged seats. The hinged seats are detachably connected to the main beam and the top seat.

[0031] The top seat is provided with an overlapping unit on the opening side corresponding to the pipe storage unit. The overlapping unit includes several grooves and fixing rods in the grooves.

[0032] The base is provided with several legs or casters at its bottom, and the legs or casters are detachably connected to the base.

[0033] The beneficial effects of this invention are as follows:

[0034] 1. The mobile platform of this invention combines the functions of storing and transporting sheet metal and pipes. By setting sheet metal storage units and pipe storage units on the base, multiple different types of building materials can be stored and transported simultaneously. This design avoids the limitation of traditional equipment that can only handle a single type of material, greatly improving the efficiency and applicability of the equipment, and is especially suitable for applications where multiple materials need to be used simultaneously on the construction site. It eliminates the need for multiple devices or frequent equipment changes, efficiently completing the handling of multiple materials and significantly improving construction efficiency.

[0035] 2. This invention fully considers material protection in its design. The sheet metal storage unit employs protective railings and adjustable dividers. The sliding fit of the dividers and the wrapping of soft material allow for clamping of sheets of different thicknesses, preventing displacement or collision during transportation and thus avoiding material damage. Simultaneously, the pipe storage unit utilizes an L-shaped support base and a hydraulic mechanism to secure and protect the pipes during transport. The support base can be tilted as needed, especially when the equipment is placed at an angle; the hydraulic telescopic rod adjusts the angle of the support base to ensure the pipes do not fall off. This design not only improves transportation safety but also reduces the risk of material damage and extends the material's service life.

[0036] 3. The threaded rod inside the column of this invention is connected to the lifting column. The drive motor drives the worm gear and worm wheel assembly to rotate, which can flexibly adjust the height of the top seat to meet the operation requirements of boards of different heights. Furthermore, by adjusting the height, the opening of the board storage unit can be opened to take out and put in the board.

[0037] 4. The bottom of the board storage unit of this invention is equipped with pulleys, which facilitate the loading and unloading of boards. The pulley surface is made of rubber, which not only provides a good rolling effect but also effectively prevents wear and tear on the boards caused by friction and collision during handling. This improves operational convenience while further protecting the integrity of the materials.

[0038] 5. This invention also incorporates an adjustable rain shelter on the top of the pipe storage unit. The rain shelter not only provides shade and rain protection during storage but can also be disassembled as needed during transportation. Connected to the top base via support rods, the rain shelter's tilt angle can be adjusted according to the height of the support base to adapt to different usage scenarios. This design greatly enhances the equipment's versatility and flexibility, especially at open-air construction sites, effectively protecting materials from severe weather and reducing construction delays and economic losses caused by material damage.

[0039] 6. The mobile platform of this invention also embodies a compact structure and convenient operation. The organic combination of components such as the uprights, lifting columns, and threaded rods makes the platform very compact in its overall structure, occupying little space, and suitable for use in confined spaces on construction sites. The reasonable design of the cooperation between the various components allows users to achieve platform lifting, material loading and unloading, and equipment movement through simple operation, greatly reducing the difficulty of operation and saving labor costs. Attached Figure Description

[0040] Figure 1 This is a three-dimensional structural diagram of the present invention.

[0041] Figure 2 This is a front view of the top seat after it has been raised according to the present invention.

[0042] Figure 3 This is a schematic diagram of the internal structure of the board storage unit of the present invention.

[0043] Figure 4 for Figure 3 A magnified view of a portion of area A.

[0044] Figure 5 This is a three-dimensional structural diagram of the separator of the present invention.

[0045] Figure 6 This is a front view of the support base of the present invention in an inclined state.

[0046] Figure 7 This is a three-dimensional structural diagram of the support base of the present invention in an inclined state.

[0047] Figure 8 This is a three-dimensional structural diagram of the worm gear assembly inside the base of the present invention.

[0048] The attached diagram is labeled as follows: 1, base; 101, support leg; 102, column; 103, threaded rod; 105. First worm gear; 106. First worm; 107. Second worm gear; 108. Second worm; 109. Slide groove; 110. Rack; 111. Limiting groove; 112. Through groove; 113. Adjusting groove; 2. Divider frame; 201. Sliding column; 202. Gear shaft; 203. Gear; 204. Limiting block; 205. Motor; 206. Switch; 207. Connecting rod; 208. Crossbar; 209. Pulley; 3. Top seat; 301. Lifting column; 4. Support seat; 401. Base plate; 402. Side plate; 403. Hydraulic telescopic rod; 5. Pipe support; 501. L-shaped support rod; 6. Rain shelter; 601. First connecting column; 602. Second connecting column; 603. Main beam; 604. Secondary beam; 605. Shelter plate; 606. Hinge seat; 607. Support rod; 7. Guardrail; 8. Groove; 801. Fixing rod. Detailed Implementation

[0049] To clearly illustrate the technical features of this solution, the following detailed implementation method will be used to explain the solution.

[0050] See Figures 1 to 8 As shown, this embodiment is a movable platform for placing and quickly transporting building materials, including a base 1. A board storage unit is arranged on top of the base 1. Columns 102 are arranged at the four corners of the top surface of the base 1, with the columns 102 vertically arranged. A guardrail 7 is arranged between adjacent columns 102, with one side without a guardrail 7, serving as the opening of the board storage unit. A lifting column 301 is slidably connected inside each column 102. A top seat 3 is fixedly connected to the top surface of the lifting column 301, and the top seat 3 is parallel to the base 1. A guardrail 7 is arranged between two adjacent lifting columns 301, corresponding to the opening of the board storage unit. A threaded rod 103 parallel to the lifting column 102 is rotatably connected inside each column 102. A groove is opened on the bottom surface of each lifting column 301. The top surface of the column 102 is open, with a threaded hole parallel to it. The threaded rod 103 is located inside the threaded hole and threadedly connected to it. The bottom end of each threaded rod 103 is located inside the base 1 and is coaxially fixedly connected to a first worm gear 105. The four first worm gears 105 are all engaged with a first worm 106 rotatably connected inside the base 1. There are two parallel first worm gears 106. The outer side of each first worm gear 106 is coaxially fixedly provided with a second worm gear 107. The two second worm gears 107 are engaged with the same second worm 108. The second worm 108 is rotatably connected inside the base 1 and coaxially connected to a drive motor. The drive motor is electrically connected to a switch. Several support legs 101 are provided at the bottom of the base 1. The support legs 101 are detachably connected to the base 1.

[0051] The board storage unit includes several parallel sliding grooves 109 on the top surface of the base 1. A rack 110 parallel to the bottom surface of each sliding groove 109 is provided. Limiting grooves 111 parallel to the sliding groove 109 are provided on both side walls of the sliding groove 109, and through grooves 112 parallel to the sliding groove 109 are also provided on both side walls of the sliding groove 109. The board storage unit includes several partitions 2 slidably connected to the base 1. Partitions 2 are slidably connected within the sliding grooves 109. Each partition 2 includes several vertical sliding columns 201. Gears 203 are rotatably connected to the bottom of each sliding column 201 via gear shafts 202. Gears 203 are located above and mesh with the rack 110. Horizontal grooves are provided on both sides of the bottom of each sliding column 201. Limiting block 204 is located in limiting groove 111 and slides in cooperation with limiting groove 111. Gear shaft 202 passes through through groove 112 and the front side of base 1 and is coaxially connected to motor 205 on the outside of base 1. Motor 205 slides in adjustment groove 113 on the front side of base 1 and is equipped with switch 206. The sliding columns 201 of the partition frame 2 are fixedly connected by connecting rod 207. The sliding columns 201 and connecting rod 207 are covered with soft material. Pressure sensor is provided on the front side of the sliding column 201 in the direction of movement. The top of the sliding column 201 of each partition frame 2 away from the opening of the board storage unit is slidably connected to crossbar 208. Crossbar 208 is fixed and horizontally set inside column 102.

[0052] Several pulleys 209 are provided on the top surface of the base 1 where there is no sliding groove 109. The direction of the shaft of the pulley 209 is consistent with the direction of movement of the partition frame 2. The surface of the pulley 209 is made of rubber. In order not to affect the arrangement of the pulley 209, the through groove 112 and the limiting groove 111 are both set in the depth of the sliding groove 109 near the bottom. In order to show the internal structure of the sliding groove 109, the through groove 112 and the limiting groove 111 are set at a higher height than the actual height in the figure of this invention.

[0053] The top of the sheet material storage unit is connected to a top seat 3 via a lifting unit. A pipe storage unit is hinged to the top seat 3. The pipe storage unit includes an L-shaped support base 4, which is connected to the top seat 3 via a hydraulic mechanism. The sheet material storage unit includes several pipe supports 5. The support base 4 includes a bottom plate 401 and a side plate 402 located on one side of the bottom plate 401 and perpendicularly connected to it. The top surface of the top seat 3 is hinged at the intersection of the side plate 402 and the bottom plate 401. The bottom surface of the bottom plate 401 is connected to the top seat 3 via a hydraulic mechanism. The telescopic rod 403 is connected to the top surface of the top seat 3. The hydraulic telescopic rod 403 is driven by remote control. Several pipe supports 5 perpendicular to the bottom plate 401 are fixedly installed on the bottom plate 401 of the support seat 4. Several L-shaped support rods 501 are evenly arranged on both sides of the pipe supports 5. Pipes are placed on the L-shaped support rods 501. Guardrails 7 are provided on both sides of the top of the bottom plate 401 of the support seat 4. No guardrail is provided on the side opposite to the bottom plate 401 and the side plate 402. A soft pad is provided on the inner side of the side plate 402.

[0054] Two opposing first connecting columns 601 are fixedly installed on the top surface of the top seat 3. A second connecting column 602 is detachably connected to the top of the first connecting column 601. A rain shelter 6 is connected to the side of the second connecting column 602 near the support seat 4. A guardrail 7 is installed between the two first connecting columns 601.

[0055] A rain shelter 6 is installed above the pipe storage unit. The rain shelter 6 includes two horizontal main beams 603. The two main beams 603 are respectively hinged to two second connecting columns 602. Several secondary beams 604 are connected to the top of the main beams 603 by fixing bolts. A cover plate 605 is installed on the top surface of the secondary beams 604. Two support rods 607 are hinged to the bottom of each main beam 603. The two support rods 607 are hinged to the top surface of the top seat 3. Both ends of the support rods 607 are connected to the main beams 603 and the top seat 3 through hinge seats 606. The hinge seats 606 are detachably connected to the main beams 603 and the top seat 3.

[0056] The top seat 3 is provided with an overlapping unit on the opening side corresponding to the pipe storage unit. The overlapping unit includes several grooves 8 and fixing rods 801 in the grooves 8. Both the plate storage unit and the pipe storage unit are provided with guardrails 7.

[0057] In actual use, this invention:

[0058] When building materials need to be stored, the motor is driven by remote control to drive the worm gear assembly, which in turn drives the four threaded rods 103 to rotate in the same direction. This causes the lifting column 301, which is threaded to them, to be lifted. After being lifted to a certain height, the opening of the board storage unit opens, and the boards to be stored or transported can be placed between the two partition racks 2 via the pulleys 209. Then, the partition rack 2 is driven to move left and right by the switch 206 of the motor 205 to clamp the boards. Specifically, the motor 205 drives the gear 203 to rotate on the rack 110 in the slide groove 109. At this time, when the pressure sensor detects that the pressure is too high, an alarm is triggered. The staff stops the movement by using the switch 206. After all the boards are fixed, the lifting column 301 is driven to descend and close the opening by remote control. The bottom of the top seat 3 is also equipped with a soft pad and a pressure sensor. After pressing down below, the descent will stop. If the height of the boards is high and higher than the partition rack 2, the height of the top seat 3 can be adjusted to be higher. This method is suitable for boards of various sizes and thicknesses. When placing pipes, simply insert them through the opening of the pipe storage unit. The overlapping unit can be used to place ladders or connect vehicle bodies for transport when the top seat 3 is high. If the construction site is sloping or uneven during storage or transport, the opening of the pipe storage unit can be raised by remotely driving the hydraulic telescopic rod 403. At this time, the pipe will hit the side plate 402 and will not fall. The inner side of the side plate 402 is equipped with a soft pad and the outer side of the side plate is reliably connected to the guardrail 7 on the first connecting column 601, effectively protecting the pipes and the side plate 402 from damage. The tilted support seat 4 can well protect the coffin during storage and transport. The flattened support seat 4 makes it convenient for workers to pick up and put down the pipes. When in use, the angle of the rain shelter 6 can be adjusted by moving the upper and lower hinge seats 606 to adapt to changes in the shape, height, and angle of the support seat 4. When storing this device at the construction site, it can be fixed in place using support legs 101 to ensure a certain distance from the ground to avoid moisture. When frequent changes of location and transportation are required, casters can be installed. The casters are equipped with a locking mechanism for fixed placement and transportation.

[0059] The technical features of this invention not described can be implemented by or using existing technology, and will not be repeated here. Of course, the above description is not a limitation of this invention, and this invention is not limited to the examples above. Any changes, modifications, additions or substitutions made by those skilled in the art within the scope of this invention should also be within the protection scope of this invention.

Claims

1. A mobile platform for placing and rapidly transferring building materials, characterized in that, Includes a base (1), and a board storage unit is provided above the base (1). The board storage unit includes several partitions (2) that are slidably connected to the base (1). The top of the board storage unit is connected to a top seat (3) via a lifting unit. A pipe storage unit is hinged on the top seat (3). The pipe storage unit includes an L-shaped support seat (4). The support seat (4) is connected to the top seat (3) via a hydraulic mechanism. The board storage unit includes several pipe supports (5). A rain shelter (6) is provided above the pipe storage unit. Both the sheet material storage unit and the pipe material storage unit are equipped with protective railings (7). The base (1) has four columns (102) at the top corners. The columns (102) are vertically arranged, and the guardrail (7) is arranged between two adjacent columns (102). One side does not have the guardrail (7) and is the opening of the board storage unit. Each of the columns (102) is slidably connected to a lifting column (301), and the top surface of the lifting column (301) is fixedly connected to the top seat (3). The top seat (3) is arranged parallel to the base (1). A guardrail (7) is provided between two adjacent lifting columns (301), corresponding to the opening of the board storage unit; The board storage unit includes several parallel sliding grooves (109) on the top surface of the base (1). The bottom surface of the sliding groove (109) is provided with a rack (110) parallel to it. The two side walls of the sliding groove (109) are provided with limiting grooves (111) parallel to the sliding groove (109). The two side walls of the sliding groove (109) are also provided with through grooves (112) parallel to the sliding groove (109). The partition frame (2) is slidably connected in the groove (109). The partition frame (2) includes several vertical sliding columns (201). The bottom of the sliding column (201) is rotatably connected to a gear (203) through a gear shaft (202). The gear (203) is located above the rack (110) and meshes with the rack (110). The sliding columns (201) of the partition frame (2) are fixedly connected to each other by a connecting rod (207); Both the sliding column (201) and the connecting rod (207) are wrapped with soft material. A pressure sensor is provided on the front side of the sliding column (201) in the direction of movement; The support base (4) includes a bottom plate (401) and a side plate (402) located on one side of the bottom plate (401) and perpendicularly connected to the bottom plate (401). The top surface of the top seat (3) is hinged at the intersection of the side plate (402) and the bottom plate (401), and the bottom surface of the bottom plate (401) is connected to the top surface of the top seat (3) through a hydraulic telescopic rod (403); The base plate (401) of the support seat (4) is fixedly provided with a number of pipe supports (5) perpendicular to the base plate (401), and a number of L-shaped support rods (501) are evenly provided on both sides of the pipe supports (5). A soft pad is provided on the inner side of the side plate (402).

2. The mobile platform for placing and rapidly transferring building materials according to claim 1, characterized in that, Each of the columns (102) is rotatably connected with a threaded rod (103) parallel to it, and each of the lifting columns (301) has a threaded hole parallel to it on its bottom surface. The top surface of the column (102) is open, and the threaded rod (103) is located in the threaded hole and is threadedly connected to the threaded hole. The bottom end of each of the threaded rods (103) is located inside the base (1) and is coaxially fixedly connected to a first worm gear (105). The four first worm gears (105) are all meshed with a first worm (106) rotatably connected inside the base (1). The first worm (106) has two parallel ones. Each of the first worm gears (106) has a second worm wheel (107) coaxially and fixedly installed on the outside of the rod body. Both second worm wheels (107) are meshed with the same second worm gear (108). The second worm gear (108) is rotatably connected to the inside of the base (1) and coaxially connected to a drive motor. The drive motor is electrically connected to a switch.

3. The mobile platform for placing and rapidly transferring building materials according to claim 2, characterized in that, Both sides of the bottom end of the sliding column (201) are provided with horizontal limiting blocks (204). The limiting blocks (204) are located in the limiting groove (111) and slide in cooperation with the limiting groove (111). The gear shaft (202) passes through the through groove (112) and the front side of the base (1) and is coaxially connected to the outside of the base (1) with a motor (205). The motor (205) slides in the adjustment groove (113) on the front side of the base (1) and is provided with a switch (206). The top of the sliding column (201) of each of the partitions (2) away from the opening of the board storage unit is slidably connected to the crossbar (208), and the crossbar (208) is fixed and horizontally arranged inside the column (102).

4. The mobile platform for placing and rapidly transferring building materials according to claim 3, characterized in that, The base (1) has several pulleys (209) on its top surface where the groove (109) is not opened. The direction of the pulley (209) shaft is consistent with the direction of movement of the partition frame (2). The surface of the pulley (209) is made of rubber.

5. The mobile platform for placing and rapidly transferring building materials according to claim 1, characterized in that, The hydraulic telescopic rod (403) is driven by remote control; The tube is placed on the L-shaped support rod (501); The protective railings (7) are provided on both sides of the top of the base plate (401) of the support seat (4), and no protective railing is provided on the side opposite to the side plate (402) where the base plate (401) is connected.

6. The mobile platform for placing and rapidly transferring building materials according to claim 1, characterized in that, The top surface of the top seat (3) is fixedly provided with two opposing first connecting columns (601). The top of the first connecting column (601) is detachably connected to a second connecting column (602). The second connecting column (602) is connected to the rain shelter (6) on the side near the support seat (4). A guardrail (7) is provided between the two first connecting columns (601).

7. The mobile platform for placing and rapidly transferring building materials according to claim 6, characterized in that, The rain shelter (6) includes two horizontal main beams (603), which are respectively hinged to two second connecting columns (602). Several secondary beams (604) are connected to the top of the main beams (603) by fixing bolts, and a cover plate (605) is provided on the top surface of the secondary beams (604). Two support rods (607) are hinged to the bottom of each main beam (603). The two support rods (607) are hinged to the top surface of the top seat (3). Both ends of the support rods (607) are connected to the main beam (603) and the top seat (3) through hinge seats (606). The hinge seats (606) are detachably connected to the main beam (603) and the top seat (3).

8. The mobile platform for placing and rapidly transferring building materials according to claim 1, characterized in that, The top seat (3) is provided with an overlapping unit on the opening side of the pipe storage unit. The overlapping unit includes several grooves (8) and a fixing rod (801) in the grooves (8).

9. The movable platform for placing and rapidly transferring building materials according to claim 1, characterized in that, The base (1) is provided with several legs (101) or casters at the bottom, and the legs (101) or casters are detachably connected to the base (1).