Building material storage device facilitating transport

By designing a building material storage device that facilitates transportation, and utilizing a combination of storage and hoisting components, the problems of steel pipe wear and transportation stability in traditional storage methods are solved, achieving stable transportation and efficient hoisting of steel pipes.

CN120736094BActive Publication Date: 2025-11-11JINAN URBAN CONSTRUCTION GROUP CO LTD
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Patent Information

Application Number
CN202511250136.2
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-09-03
Publication Date
2025-11-11
Estimated Expiration
2045-09-03

AI Technical Summary

Technical Problem

Traditional methods of storing steel pipes in buildings are prone to wear and tear and are inconvenient to transport. Existing storage devices are also inconvenient to use.

Method used

Design a building material storage device that includes a storage section and a hoisting section. The storage section consists of detachable storage supports and a hoisting frame. The hoisting frame can be connected to multiple storage supports. The stability of the steel pipes is ensured by limiting components and anti-slip strips. During hoisting, the steel pipes are changed from a 'wide stack' to a 'high stack' to increase the contact area. The structural innovation solves the safety and efficiency problems of traditional methods.

Benefits of technology

It enables stable transportation of building steel pipes, reduces the number of hoisting operations, improves hoisting efficiency, reduces wear due to anti-slip strip design, is compatible with steel pipes of different diameters, and is easy to operate.

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Abstract

This invention relates to the field of building material transfer devices, specifically a building material storage device for easy transfer. It includes a storage section and a hoisting section. The storage section, used for storing building steel pipes, includes several storage supports. The hoisting section is detachably connected to the storage section. Each storage support is detachably connected to a limiting component, which includes a transverse support beam and side positioning supports positioned on both sides of the building steel pipe. The two side positioning supports can move closer to the building steel pipe along the support beam. The support beam is equipped with a downward-extending top positioning support. Both the top positioning support and the two side positioning supports are equipped with several partitions. The partitions are equipped with anti-slip strips; the front of the anti-slip strips is made of a smooth material, and the back is coated with an anti-slip material. This application integrates storage and hoisting functions, solving the safety and efficiency problems of traditional methods through structural innovation, and is particularly suitable for the large-scale management of steel pipes on construction sites.
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Description

Technical Field

[0001] This invention relates to the field of building material transfer devices, specifically a building material storage device that facilitates transfer. Background Technology

[0002] During construction, the storage and transportation of long materials such as steel pipes are common operations. Traditional methods of storing steel pipes usually involve using simple supports or stacking them directly on the ground, which has the following drawbacks: stacking steel pipes on the ground can easily cause wear and rust, and ordinary storage racks are inconvenient for transportation and are not very convenient to use.

[0003] Therefore, this application provides a building material storage device that facilitates transportation, solving the problem that steel pipe storage devices in the prior art are inconvenient to transport, and improving the stability of the steel pipe transportation process. Summary of the Invention

[0004] To address the above problems, the present invention provides a building material storage device that facilitates transportation.

[0005] The technical solution adopted by the present invention to solve its technical problem is: a building material storage device that is easy to transport, comprising a storage part and a hoisting part, wherein the storage part is used to store building steel pipes and includes several storage supports, and the hoisting part is detachably connected to the storage part;

[0006] The hoisting component includes a hoisting frame, which can be connected to multiple storage brackets simultaneously. Each storage bracket is detachably connected to a limiting component, which includes a transverse support beam and side positioning brackets located on both sides of the building steel pipe. Two of the side positioning brackets can move closer to the building steel pipe along the support beam. The support beam is equipped with a downwardly extending top positioning bracket. Both the top positioning bracket and the two side positioning brackets are equipped with several partition plates. Each partition plate is equipped with anti-slip strips. The front of the anti-slip strips is made of a smooth material, and the back of the anti-slip strips is coated with an anti-slip material.

[0007] As an optimization, the anti-slip strips of the two horizontally opposite partitions are symmetrically arranged, with the outer ends of the anti-slip strips inclined away from the storage area, and the side of the anti-slip strip opposite to the building steel pipe is the front side;

[0008] The support beam is equipped with a positioning telescopic rod, the extended end of which is connected to the top positioning bracket, and the partition plates of the top positioning bracket are vertically spaced.

[0009] As an optimization, the storage bracket includes a support base and an H-shaped placement rack. The vertical support portion of the H-shaped placement rack is equipped with connecting feet, and the connecting feet are detachably connected to the support base.

[0010] The support base includes a base plate and a connecting pipe, the connecting pipe being vertically disposed on the base plate and used to accommodate the connecting feet.

[0011] As an optimization, the lower end of the connecting leg is lower than the lateral support of the H-shaped placement frame;

[0012] The connecting leg includes a positioning tube, a supporting telescopic rod, and several support legs. The positioning tube is coaxially fixed to the bottom of the vertical support. The supporting telescopic rod is coaxially arranged with the positioning tube. An end plate is provided at the movable end of the supporting telescopic rod. A spring shaft is connected between the upper end of each support leg and the positioning tube. The support leg has a tendency to rotate in the direction of the axis of the positioning tube. Several support legs are arranged along the circumference of the positioning tube. A guide ramp is provided at the lower end of the side of each support leg opposite to the spring shaft. When the spring shaft is shortened, the end plate moves upward along the guide ramp, causing the support leg to open outward.

[0013] As an optimization, the support beam is horizontally connected between the two vertical support parts of the storage bracket, the support beam is provided with a sliding groove, the sliding groove is equipped with an adjusting rod, and the side positioning bracket is slidably connected to the sliding groove;

[0014] The adjusting rod is a threaded rod with both positive and negative threads, and the adjusting rod is threadedly connected to the side positioning bracket.

[0015] As an optimization, the hoisting frame includes at least two fixed beams arranged along the length of the storage section and several reinforcing beams fixedly arranged with the fixed beams, and the several reinforcing beams are arranged corresponding to the vertical support parts of the several storage brackets;

[0016] The two ends of the reinforcing beam are bent downward to form a connecting part, which is detachably connected to the vertical support part of the storage bracket. The bottom surface of the hoisting frame is provided with reinforcing ribs, and the upper side of the hoisting frame is provided with a hoisting buckle, which is used to connect the hoisting equipment.

[0017] As an optimization, the fixed beam is composed of several connecting beams that overlap end to end. The several connecting beams include several long connecting beams and several short connecting beams. The ends of the long connecting beams are provided with lower overlap grooves, and the two ends of the short connecting beams are provided with upper overlap grooves and lower overlap grooves, respectively.

[0018] The upper and lower lap grooves are provided with a number of connection holes. The upper and lower lap grooves of two adjacent connecting beams are fitted together. When adjacent connecting beams are joined, the connection holes are arranged vertically opposite each other and are connected by bolts.

[0019] As an optimization, the lower outer side of the storage section is detachably connected to several movable parts, which are connected by reinforcing angle steel. Each movable part includes a connecting seat, a telescopic assembly, and a traveling wheel. The connecting seat is L-shaped, and the telescopic assembly includes an adjusting screw and several adjusting telescopic rods. The adjusting telescopic rods are vertically arranged between the connecting seat and the traveling wheel, and the adjusting screw is threadedly connected to the connecting seat.

[0020] The lower part of the vertical support and the upper part of the connecting seat are both provided with second fixing screw holes, and the connecting seat and the vertical support are connected by fixing bolts.

[0021] As an optimization, the storage section includes a storage state and a hoisting state. In the storage state, the building steel pipes are stacked in an upright triangular shape.

[0022] During hoisting, the building steel pipes are pushed towards the axis of the device by the side positioning brackets, while the top positioning brackets push them down to make the building steel pipes stacked in a square shape.

[0023] As an optimization, when the side positioning bracket moves toward the building steel pipe, the building steel pipe squeezes the anti-slip strip, causing the anti-slip strip to fall away from the building steel pipe, and the front of the building steel pipe and the anti-slip strip make contact, which facilitates the partition plate to enter between two adjacent building steel pipes.

[0024] During hoisting, if the steel pipe slips, it will cause the anti-slip strip to flip, bringing the steel pipe into contact with the back of the anti-slip strip and preventing further slippage. This solution offers the following advantages:

[0025] This application integrates storage and hoisting functions, and solves the safety and efficiency problems of traditional methods through structural innovation, making it particularly suitable for the large-scale management of steel pipes on construction sites;

[0026] By quickly connecting the hoisting frame with multiple storage supports, the entire structure can be hoisted, reducing the number of hoisting operations per trip and improving hoisting efficiency. At the same time, during hoisting, the steel pipes are squeezed by the limiting components, changing them from a "wide stack" to a "high stack" state, increasing the contact area between the steel pipes and the limiting components, and improving stability.

[0027] The partition board features an anti-slip strip design: the rubber front reduces wear on the steel pipe during storage, and the anti-slip strip flips when the steel pipe slides during hoisting, while the anti-slip material on the back increases friction, providing double anti-slip protection; the adjustable positioning bracket adapts to steel pipes of different diameters, and the distance between the brackets on both sides is controlled synchronously by the positive and negative threaded rods, making operation convenient. Attached Figure Description

[0028] Figure 1 This is an isometric view of the present invention.

[0029] Figure 2 This is a schematic diagram of the main view of the present invention.

[0030] Figure 3 This is a schematic diagram of the left side of the present invention.

[0031] Figure 4 For the present invention Figure 1 A magnified structural diagram of part A.

[0032] Figure 5 This is a schematic diagram of the storage portion of the present invention.

[0033] Figure 6 This is a left-side view of the storage portion of the present invention.

[0034] Figure 7 This is a front view schematic diagram of the storage portion of the present invention.

[0035] Figure 8 This is an isometric view of the hoisting part of the present invention.

[0036] Figure 9 This is a bottom axonometric view of the hoisting part of the present invention.

[0037] Figure 10 This is a bottom axial view of the present invention, omitting the support base.

[0038] Figure 11 This is a schematic diagram of the support seat from the axial side of the present invention.

[0039] Figure 12 This is a cross-sectional view of the connecting pin of the present invention.

[0040] Figure 13 This is a schematic diagram of the moving part of the present invention.

[0041] Figure 14 This is a schematic diagram of the connection structure between the moving part and the storage part of the present invention.

[0042] Figure 15 This is a left-side view of the connection structure between the movable part and the storage part of the present invention.

[0043] The components include: 1. H-shaped placement rack; 2. base plate; 3. connecting pipe; 4. vertical support; 5. fixed beam; 6. reinforcing beam; 7. lifting buckle; 8. support beam; 9. side positioning bracket; 10. partition plate; 11. anti-slip strip; 12. positioning pipe; 13. support telescopic rod; 14. support leg; 15. sliding groove; 16. adjusting rod; 17. top positioning bracket; 18. long connecting beam; 19. short connecting beam; 20. connecting seat; 21. traveling wheel; 22. telescopic assembly; 23. reinforcing angle steel; 24. second fixing screw hole; and 25. positioning telescopic rod. Detailed Implementation

[0044] like Figures 1-12As shown, a building material storage device that facilitates transportation includes a storage section and a hoisting section. The storage section is used to store building steel pipes and includes several storage supports. The hoisting section is detachably connected to the storage section.

[0045] The hoisting section includes a hoisting frame, which can be connected to multiple storage brackets simultaneously. Each storage bracket is detachably connected to a limiting assembly, which includes a transverse support beam 8 and side positioning brackets 9 positioned on both sides of the building steel pipe. Two side positioning brackets 9 can move closer to the building steel pipe along the support beam 8. The support beam 8 is equipped with a downward-extending top positioning bracket 17. Both the top positioning bracket 17 and the two side positioning brackets 9 are equipped with several partition plates 10. Each partition plate 10 is equipped with anti-slip strips 11. The anti-slip strips are soft, with a smooth front surface to facilitate insertion of the partition plates between adjacent building steel pipes. The back of the anti-slip strips 11 is coated with an anti-slip material to prevent the building steel pipe from sliding outwards. When the building steel pipe slides outwards, friction causes the anti-slip strips to rub and flip, bringing the anti-slip material on the back into contact with the steel pipe, increasing friction and preventing the building steel pipe from sliding out.

[0046] The H-shaped storage rack 1 is made of high-strength steel, either welded or integrally formed. Its horizontal support section is used to support the building steel pipes, and the horizontal support section is preferably 15-25cm above the ground. The vertical support section 4 is used to support and fix the horizontal support section. The height of the building steel pipes on the storage rack does not exceed the top positioning bracket 17. The top of the storage rack has a first fixing screw hole, and the hoisting rack and the storage rack are connected through the first fixing screw hole and fixing bolts.

[0047] like Figure 3 and Figure 4 As shown, the anti-slip strips 11 of the two horizontally opposite partition plates 10 are symmetrically arranged. The outer ends of the anti-slip strips 11 are inclined in the direction away from the storage part, and the side of the anti-slip strip 11 opposite to the building steel pipe is the front.

[0048] The support beam 8 is equipped with a positioning telescopic rod 25, the extended end of which is connected to the top positioning bracket 17, and the partition plates 10 of the top positioning bracket 17 are vertically spaced.

[0049] Looking along the length of the storage section, the anti-slip strips 11 of the partition plates 10 at both ends of the storage section are symmetrically arranged to prevent the building steel pipes from sliding to the sides. The anti-slip strips 11 are made of soft material. When the building steel pipes come into contact with the anti-slip strips 11, they can be pressed down. When the building steel pipes and the partition plates are relatively displaced, the anti-slip strips 11 can be pulled and flipped.

[0050] The anti-slip material can be a polyurethane anti-slip coating, and the front of the anti-slip strip 11 is coated with Teflon or other coatings with low friction.

[0051] The positioning telescopic rod 25 is used to push the top positioning bracket 17 downward to press the building steel pipe.

[0052] The distance between two adjacent partition plates 10 should be slightly larger than the diameter of the building steel pipe, so that the building steel pipe can be smoothly inserted between the two partition plates 10.

[0053] like Figure 1 and Figure 3 As shown, the storage bracket includes a support base and an H-shaped placement rack 1. The vertical support portion 4 of the H-shaped placement rack 1 is equipped with connecting feet, which are detachably connected to the support base.

[0054] The support base includes a base plate 2 and a connecting pipe 3. The connecting pipe 3 is vertically arranged on the base plate 2 and is used to accommodate the connecting feet.

[0055] The base plate 2 has fixing holes for connecting anchor bolts and other connecting parts. In the storage state, the H-shaped storage rack 1 is supported and fixed by the support base. The width of the base plate 2 should be greater than the width of the H-shaped storage rack 1.

[0056] like Figure 10 and Figure 12 As shown, the lower end of the connecting leg is lower than the lateral support of the H-shaped placement frame 1;

[0057] The connecting foot includes a positioning tube 12, a supporting telescopic rod 13, and several support feet 14. The positioning tube 12 is coaxially fixed to the bottom of the vertical support part 4. The supporting telescopic rod 13 is coaxially arranged with the positioning tube 12. An end plate is provided at the movable end of the supporting telescopic rod 13. A spring shaft is connected between the upper end of the support foot 14 and the positioning tube 12. The support foot 14 has a tendency to rotate in the direction of the axis of the positioning tube 12. Several of the support feet 14 are arranged along the circumference of the positioning tube 12. A guide ramp is provided at the lower end of the side of the support foot 14 opposite to the spring shaft. When the spring shaft is shortened, the end plate moves upward along the guide ramp, causing the support foot 14 to open outward.

[0058] The support telescopic rod 13 can be electrically telescopic or spring telescopic. When the support leg 14 is in the retracted state, the support telescopic rod 13 is in the natural state, and the bottom surface of the end plate is lower than the bottom surface of the support leg 14. When the end plate is pressed, the support telescopic rod 13 shortens, and pushes the support leg 14 outward through the end plate.

[0059] like Figure 1As shown, the support beam 8 is horizontally connected between the two vertical support parts 4 of the storage bracket. The support beam 8 has a sliding groove 15, and the sliding groove 15 is equipped with an adjusting rod 16. The side positioning bracket 9 is slidably connected to the sliding groove 15.

[0060] The adjusting rod 16 is a threaded rod with both positive and negative threads, and the adjusting rod 16 is threadedly connected to the side positioning bracket 9.

[0061] The adjusting rod 16 can also be electrically adjusted. Rotating the adjusting rod 16 can simultaneously drive the two side positioning brackets 9 to move in opposite directions, so that the two side positioning brackets 9 move away from or move closer to the building steel pipe at the same time.

[0062] Correspondingly, guide rods can also be set parallel to the support beam 8, so that the side positioning bracket 9 can be supported by the support beam 8 and the guide rods at the same time, so that the side positioning bracket 9 can move vertically and stably.

[0063] like Figure 1 As shown, the hoisting frame includes at least two fixed beams 5 arranged along the length of the storage section and several reinforcing beams 6 fixedly arranged with the fixed beams 5. The several reinforcing beams 6 are correspondingly arranged with the vertical support parts 4 of the several storage brackets.

[0064] The two ends of the reinforcing beam 6 are bent downward to form a connecting part, which is detachably connected to the vertical support part 4 of the storage bracket. The bottom surface of the hoisting frame is provided with reinforcing ribs, and the upper side of the hoisting frame is provided with a hoisting buckle 7, which is used to connect the hoisting equipment.

[0065] The length of the fixed beam 5 is not less than the total length of the storage section, and the hoisting frame is reinforced by the reinforcing beam 6 and the reinforcing ribs.

[0066] The upper part of the vertical support part 4 is provided with a first fixing bolt, and the connecting part is connected to the vertical support part 4 by fixing bolts and locking pins.

[0067] like Figure 8 and Figure 9 As shown, the fixed beam 5 is composed of several connecting beams that overlap at both ends. The several connecting beams include several long connecting beams 18 and several short connecting beams 19. The ends of the long connecting beams 18 are provided with lower overlap grooves, and the two ends of the short connecting beams 19 are provided with upper overlap grooves and lower overlap grooves, respectively.

[0068] The upper and lower lap grooves are provided with a number of connection holes. The upper and lower lap grooves of two adjacent connecting beams are fitted together. When adjacent connecting beams are joined, the connection holes are arranged vertically opposite each other and are connected by bolts.

[0069] like Figure 8The fixed beam 5 shown is formed by connecting a long connecting beam 18 and two short connecting beams 19. When the upper and lower lap grooves are connected, the lap length of the two can be adjusted according to the actual use, so as to adjust the length of the fixed beam 5.

[0070] Correspondingly, the lower part of the long connecting beam 18 should be recessed to form a groove for accommodating the reinforcing beam 6.

[0071] like Figure 13 and Figure 14 As shown, the lower outer side of the storage section is detachably connected to several movable parts, which are connected by reinforcing angle steel 23. Each movable part includes a connecting seat 20, a telescopic assembly 22, and a traveling wheel 21. The connecting seat 20 is L-shaped, and the telescopic assembly 22 includes an adjusting screw and several adjusting telescopic rods. The adjusting telescopic rods are vertically arranged between the connecting seat 20 and the traveling wheel 21, and the adjusting screw is threadedly connected to the connecting seat 20.

[0072] The lower part of the vertical support part 4 and the upper part of the connecting seat 20 are both provided with second fixing screw holes 24, and the connecting seat 20 and the vertical support part 4 are connected by fixing bolts.

[0073] Multiple moving parts are connected as a whole by reinforcing angle steel 23. A fixing block is provided at the lower end of the telescopic assembly 22, and the fixing block is fixedly connected to the reinforcing angle steel 23. The lower end of the adjusting screw is rotatably connected to the fixing block, and the adjusting telescopic rod can also be a support cylinder.

[0074] The storage section includes both the storage state and the hoisting state. In the storage state, the building steel pipes are stacked in an upright triangular shape.

[0075] During hoisting, the building steel pipes are pushed towards the axis of the device by the side positioning bracket 9, while the top positioning bracket 17 is pushed down to tighten them, so that the building steel pipes are stacked in a square shape.

[0076] During hoisting, the building steel pipe is made to make efficient contact with the side positioning bracket 9 and the top positioning bracket 17, so that the building steel pipe maintains a stable center of gravity during transportation and avoids shaking and falling off.

[0077] When the side positioning bracket 9 moves toward the building steel pipe, the building steel pipe squeezes the anti-slip strip 11, causing the anti-slip strip 11 to fall away from the building steel pipe. The front of the building steel pipe and the anti-slip strip 11 come into contact, making it easier for the partition plate 10 to enter between two adjacent building steel pipes.

[0078] If the building steel pipe slips during hoisting, the building steel pipe will cause the anti-slip strip 11 to flip, so that the building steel pipe contacts the back of the anti-slip strip 11, thus preventing the building steel pipe from slipping.

[0079] How to use:

[0080] In practical use, the device includes storage and hoisting states. In storage state, the H-shaped placement rack 1 is supported by the support base and multiple storage brackets to support the building steel pipes, so that the building steel pipes are stored in a standardized manner, avoiding mess, and the building steel pipes are separated from the ground to avoid damage. The appropriate number of storage brackets can be selected according to the shape of the building steel pipes.

[0081] In the hoisting state, the hoisting frame is connected to the top of the storage bracket. According to the actual use requirements, select an appropriate number of long connecting beams 18 and short connecting beams 19 and connect them. The hoisting frame and the storage bracket are connected and locked by fixing bolts or locking pins.

[0082] Connect the limiting component to the H-shaped placement rack 1. Multiple limiting components can be set in the storage section at the same time, so that the support beam 8 is connected and locked to the H-shaped placement rack 1. Rotate the adjusting rod 16 to move the side positioning bracket 9 towards the building steel pipe. The partition plate 10 is inserted between two adjacent building steel pipes. The positioning telescopic rod 25 is extended so that the top positioning bracket 17 presses the building steel pipe downward. The partition plate 10 is inserted between adjacent building steel pipes from top to bottom. At the same time, the side positioning bracket 9 pushes the building steel pipe closer to the axis of the H-shaped placement rack 1 until it can no longer be adjusted. The building steel pipes are tightly stacked between the two side positioning brackets 9, the transverse support and the top positioning bracket 17.

[0083] Connect the hoisting equipment to the hoisting buckle 7, and hoist the storage bracket and building steel pipe through the hoisting frame;

[0084] As the storage section of this application is lifted, the connecting leg separates from the support base, and the storage section can be transported to any position and connected to the pre-fixed support base.

[0085] During the hoisting process, if the storage part needs to be temporarily placed, as the H-shaped placement frame 1 is lowered, the end plate is pressed and pushes the support leg 14 to unfold outward, so that the two sides of the H-shaped placement frame 1 temporarily form a relatively stable support structure to prevent the device from shaking. When the storage part is hoisted again, the support telescopic rod 13 returns to normal, and the support leg 14 retracts inward under the action of the spring shaft.

[0086] When the storage part of this application needs to be moved, the connecting seat 20 of the walking part is connected to the second fixing screw hole 24 of the vertical support part 4, so that the telescopic component 22 extends and the walking wheel 21 gradually lowers until the storage part is separated from the ground, and the main body of the device can be moved. Similarly, when the moving part needs to be removed, the adjusting screw is turned until the walking wheel 21 is raised to above the bottom of the storage part.

[0087] This application is a storage device for building steel pipes, and can also be used to store building or non-building materials such as steel bars, plastic pipes, and plastic strips with a certain length. It can simultaneously perform the functions of holding, moving, and hoisting, and can effectively avoid disorderly stacking of building steel pipes and improve the transfer efficiency of building materials.

[0088] The above-described specific embodiments are merely specific examples of the present invention. The patent protection scope of the present invention includes, but is not limited to, the product form and style of the above-described specific embodiments. Any building material storage device that is easy to transport and conforms to the claims of the present invention, and any appropriate changes or modifications made to it by a person skilled in the art, shall fall within the patent protection scope of the present invention.

Claims

1. A building material storage device that facilitates transportation, characterized in that: It includes a storage section and a hoisting section. The storage section is used to store building steel pipes and includes several storage supports. The hoisting section is detachably connected to the storage section. The hoisting part includes a hoisting frame, which can be connected to multiple storage brackets at the same time. The storage brackets are detachably connected to a limiting component. The limiting component includes a transverse support beam (8) and side positioning brackets (9) set on both sides of the building steel pipe. The two side positioning brackets (9) can move closer to the building steel pipe along the support beam (8). The support beam (8) is equipped with a top positioning bracket (17) that can extend downward. The top positioning bracket (17) and the two side positioning brackets (9) are each equipped with several partition plates (10). The partition plates (10) are equipped with anti-slip strips (11). The front of the anti-slip strips (11) is made of smooth material, and the back of the anti-slip strips (11) is coated with anti-slip material. The antislip strips (11) of the two horizontally opposite partitions (10) are symmetrically arranged. The outer ends of the antislip strips (11) are inclined away from the storage part. The side of the antislip strip (11) opposite to the building steel pipe is the front. The support beam (8) is equipped with a positioning telescopic rod (25), the extended end of the positioning telescopic rod (25) is connected to the top positioning bracket (17), and the partition plates (10) of the top positioning bracket (17) are vertically spaced. The storage bracket includes a support base and an H-shaped placement rack (1). The vertical support part (4) of the H-shaped placement rack (1) is equipped with connecting feet, which are detachably connected to the support base. The support base includes a base plate (2) and a connecting pipe (3). The connecting pipe (3) is vertically arranged on the base plate (2) and is used to accommodate connecting feet. The lower end of the connecting leg is lower than the lateral support of the H-shaped placement frame (1); The connecting foot includes a positioning tube (12), a support telescopic rod (13), and several support feet (14). The positioning tube (12) is coaxially fixed to the bottom of the vertical support part (4). The support telescopic rod (13) is coaxially arranged with the positioning tube (12). The movable end of the support telescopic rod (13) is equipped with an end plate. The upper end of the support foot (14) is connected to the positioning tube (12) by a spring shaft. The support foot (14) has a tendency to rotate in the direction of the axis of the positioning tube (12). Several support feet (14) are arranged along the circumference of the positioning tube (12). The lower end of the side of the support foot (14) opposite to the spring shaft is provided with a guide ramp. When the spring shaft is shortened, the end plate moves upward along the guide ramp, causing the support foot (14) to open outward. The support beam (8) is horizontally connected between the two vertical support parts (4) of the storage bracket. The support beam (8) has a sliding groove (15). The sliding groove (15) is equipped with an adjusting rod (16). The side positioning bracket (9) is slidably connected to the sliding groove (15). The adjusting rod (16) is a positive and negative threaded rod, and the adjusting rod (16) is threadedly connected to the side positioning bracket (9); The hoisting frame includes at least two fixed beams (5) arranged along the length of the storage section and several reinforcing beams (6) fixedly arranged with the fixed beams (5). The several reinforcing beams (6) are arranged corresponding to the vertical support parts (4) of the several storage brackets. The two ends of the reinforcing beam (6) are bent downward to form a connecting part. The connecting part is detachably connected to the vertical support part (4) of the storage bracket. The bottom surface of the hoisting frame is provided with reinforcing ribs. The upper side of the hoisting frame is provided with a hoisting buckle (7). The hoisting buckle (7) is used to connect the lifting equipment.

2. The building material storage device for easy transfer according to claim 1, characterized in that: The fixed beam (5) is composed of several connecting beams that overlap at the ends. The several connecting beams include several long connecting beams (18) and several short connecting beams (19). The ends of the long connecting beams (18) are provided with lower overlap grooves, and the two ends of the short connecting beams (19) are provided with upper overlap grooves and lower overlap grooves, respectively. The upper and lower lap grooves are provided with a number of connection holes. The upper and lower lap grooves of two adjacent connecting beams are fitted together. When adjacent connecting beams are joined, the connection holes are arranged vertically opposite each other and are connected by bolts.

3. The building material storage device for easy transfer according to claim 1, characterized in that: The lower outer side of the storage section is detachably connected to several movable parts. The multiple movable parts are connected by reinforcing angle steel (23). The movable parts include a connecting seat (20), a telescopic component (22), and a walking wheel (21). The connecting seat (20) is L-shaped. The telescopic component (22) includes an adjusting screw and several adjusting telescopic rods. The adjusting telescopic rods are vertically arranged between the connecting seat (20) and the walking wheel (21). The adjusting screw is threadedly connected to the connecting seat (20). The lower part of the vertical support (4) and the upper part of the connecting seat (20) are both provided with a second fixing screw hole (24), and a fixing bolt is connected between the connecting seat (20) and the vertical support (4).

4. The building material storage device for easy transfer according to claim 1, characterized in that: The storage section includes both the storage state and the hoisting state. In the storage state, the building steel pipes are stacked in an upright triangular shape. During hoisting, the building steel pipe is pushed to move in the direction of the axis of the device by the side positioning bracket (9), while the top positioning bracket (17) pushes it down to make the building steel pipe stacked in a square shape.

5. A building material storage device for easy transfer according to claim 1, characterized in that: When the side positioning bracket (9) moves toward the building steel pipe, the building steel pipe squeezes the anti-slip strip (11), causing the anti-slip strip (11) to fall away from the building steel pipe. The front of the building steel pipe and the anti-slip strip (11) come into contact, making it easier for the partition plate (10) to enter between two adjacent building steel pipes. If the building steel pipe slides during hoisting, the building steel pipe will cause the anti-slip strip (11) to flip, so that the building steel pipe contacts the back of the anti-slip strip (11) to prevent the building steel pipe from sliding.

Citation Information

Patent Citations

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