Multi-layer building engineering building material storage rack
By introducing a material guiding structure into the building material storage rack of multi-story building projects, and utilizing the rotating rack design with built-in plates and rollers, the problems of time-consuming and labor-intensive loading and unloading of materials and wear and tear on building materials are solved, achieving convenience and protection for loading and unloading of building materials.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-25
- Publication Date
- 2026-03-24
AI Technical Summary
Existing multi-story building material storage racks are time-consuming and labor-intensive to load and unload, and are prone to causing wear and tear on the surface of building materials.
The design incorporates a material guiding structure, including an internal plate, a rotating frame, and rollers. The rotating rollers enable the building materials to move at an angle, reducing friction with the placed plate.
It saves time and effort in loading and unloading building materials and protects the surface of building materials from wear.
Smart Images

Figure CN224029638U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to the technical field of storage rack, specifically relates to a multi -layer building engineering building material storage rack. BACKGROUND
[0002] The multi -layer building engineering building material storage rack is a rack for storing various building materials specially designed for building engineering, which usually has a multi -layer structure, can place different building materials on different layers, can improve space utilization, optimize space layout, facilitate building material management and building material protection and has many other functions.
[0003] The existing storage rack has certain drawbacks in use, and when building materials are fed or discharged, not only time and effort are wasted, but also the building materials are easily scratched with the layers, which causes certain wear to the surface of the building materials, therefore, a new multi -layer building engineering building material storage rack needs to be designed to solve the problem. UTILITY MODEL CONTENTS
[0004] The utility model aims at providing a multi -layer building engineering building material storage rack to solve the problem of time and effort wasted and easy scratching when building materials are fed or discharged in the above background technology.
[0005] To achieve the above object, the utility model provides the following technical scheme: a multi -layer building engineering building material storage rack, comprising
[0006] Three placement plates distributed upward and downward, and support rods penetrating through the four corners of the placement plates;
[0007] The guide structure comprises a receiving groove formed in the interior of the two ends of the placement plate, an internal plate movably installed in the receiving groove, a rectangular groove formed in the surface of the internal plate, a rotating frame rotatably connected in the rectangular groove, a roller connected to the inner side of the rotating frame, and
[0008] The rotating shaft assembly comprises a shaft body fixed on both sides of the rotating frame, a fixed block symmetrically fixed on the surface of the shaft body on both sides, an outer groove formed on both sides of the rectangular groove, an inner groove formed in the interior of the outer groove and provided with the shaft body, and a stop block fixed on the inner wall of the outer groove.
[0009] Preferably, the internal plate is symmetrically fixed with a anti -drop block on both sides of the inner end, the receiving groove is symmetrically formed with an anti -drop groove slidably connected with the anti -drop block on both sides, and the anti -drop groove is closed at both ends.
[0010] Preferably, the internal plate and the receiving groove are both rectangular in cross section, and the outer surface of the internal plate is adapted to the inner wall of the receiving groove.
[0011] Preferably, the bottom of the receiving groove is formed with a bottom groove, and the front end of the internal plate is fixed with a push handle penetrating through the bottom groove.
[0012] Preferably, an adjusting assembly is arranged between the four corners of the placing plate and the support rods, the adjusting assembly comprises a threaded sleeve A and a threaded sleeve B, each support rod is provided with a thread, and the threaded sleeve A and the threaded sleeve B are screwed on the thread respectively, and the threaded sleeve A and the threaded sleeve B are arranged on the upper and lower surfaces of the placing plate and are pressed against the placing plate.
[0013] Preferably, the outer surface of the threaded sleeve A is sleeved with a rubber sleeve, and vertical anti-skid lines are arranged on the outer surface.
[0014] Preferably, the adjusting assembly further comprises a top cover, and the top cover is inserted into the top end of the support rod.
[0015] Compared with the prior art, the utility model has the advantages that:
[0016] Through the designed material guiding structure, the building materials can be conveniently fed and discharged, in use, the built-in plate is first pulled out, then the rotating shaft assembly is turned over, the roller is turned out from the rectangular groove, and is inclined towards the placing plate, when feeding and discharging, one end of the building material can be overlapped on the roller, and then the building material is slowly moved, so that the feeding and discharging can be realized, through the design, time and labor are saved, and the building material and the placing plate are not easy to scratch, so that the outer surface of the building material is protected. BRIEF DESCRIPTION OF DRAWINGS
[0017] Figure 1 It is a three-dimensional schematic view of the utility model;
[0018] Figure 2 It is a three-dimensional schematic view of the material guiding structure of the utility model;
[0019] Figure 3 It is an exploded schematic view of the rotating shaft assembly of the utility model;
[0020] Figure 4 It is a front view and sectional view of the material guiding structure of the utility model;
[0021] Figure 5 It is a three-dimensional schematic view of the utility model Figure 1 It is an enlarged schematic view of the A area of the utility model;
[0022] In the drawing: 100, placing plate; 200, support rod; 300, material guiding structure; 301, built-in plate; 302, rectangular groove; 303, rotating frame; 304, rotating shaft assembly; 3041, shaft body; 3042, fixed block; 3043, outer groove; 3044, inner groove; 3045, stop block; 305, roller; 306, anti-dropping block; 307, storage groove; 308, bottom groove; 309, pushing handle; 400, adjusting assembly; 401, threaded sleeve A; 402, threaded sleeve B; 403, top cover. DETAILED DESCRIPTION
[0023] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the utility model.
[0024] Embodiment
[0025] Please refer to Figures 1 to 5 For the embodiments of the utility model, the embodiment provides a technical scheme: a multi-layer building engineering building material storage rack, comprising
[0026] Three placing plates 100 distributed upwards and downwards, and support rods 200 penetrating through the four corners of the placing plates 100, various building materials can be placed on the placing plates 100;
[0027] The material guiding structure 300 comprises a receiving groove 307 opened in the inner part of both ends of the placing plate 100, an inner plate 301 movably installed in the inner part of the receiving groove 307, a rectangular groove 302 opened on the surface of the inner plate 301, a rotating frame 303 rotatably connected in the inner part of the rectangular groove 302, a roller 305 connected to the inner side of the rotating frame 303, and a rotating shaft assembly 304 comprising a shaft body 3041 fixed on both sides of the rotating frame 303, a fixed block 3042 symmetrically fixed on the surface of both sides of the shaft body 3041, an outer groove 3043 opened on both sides of the rectangular groove 302, an inner groove 3044 opened in the inner part of the outer groove 3043 and provided for the shaft body 3041 to be inserted, and a stop block 3045 fixed on the inner wall of the outer groove 3043. If loading is to be performed, the inner plate 301 can be first pulled out from the inner part of the receiving groove 307 to completely expose the rectangular groove 302, then the rotating frame 303 is rotated to rotate the roller 305 out of the inner part of the rectangular groove 302, in the rotating process, the shaft body 3041 and the fixed block 3042 are rotated in the inner groove 3044 and the outer groove 3043 respectively, until the fixed block 3042 abuts against the stop block 3045, at this time the roller 305 is inclined towards the placing plate 100, then loading can be performed, only the one end of the building material is first overlapped on the roller 305, then the building material is pushed towards the inner part of the placing plate 100, the roller 305 is rotated to provide convenience for loading, and scratching is not easy to occur, and the same is true for unloading.
[0028] In the embodiment, preferably, the inner end of the inner plate 301 is symmetrically fixed with a anti-falling block 306 on both sides, anti-falling grooves are symmetrically opened on both sides of the receiving groove 307 and are in sliding connection with the anti-falling block 306, the anti-falling grooves are closed at both ends, the anti-falling grooves can limit the anti-falling block 306 to prevent the inner plate 301 from falling off.
[0029] In the embodiment, preferably, the built-in plate 301 and the receiving groove 307 are both rectangular in cross section, the outer surface of the built-in plate 301 is adapted to the inner wall of the receiving groove 307, so that the built-in plate 301 can slide stably inside the receiving groove 307.
[0030] In the embodiment, preferably, the bottom of the receiving groove 307 is provided with a bottom groove 308, and the front end of the built-in plate 301 is fixed with a pushing handle 309 penetrating through the bottom groove 308, so that the built-in plate 301 can be moved by the pushing handle 309.
[0031] In the embodiment, preferably, the four corners of the placing plate 100 and the supporting rod 200 are provided with an adjusting assembly 400, which can adjust and limit the distance between the placing plates 100, the adjusting assembly 400 comprises a threaded sleeve A 401 and a threaded sleeve B 402, each supporting rod 200 is provided with a thread, and is respectively screwed with the threaded sleeve A 401 and the threaded sleeve B 402, the threaded sleeve A 401 and the threaded sleeve B 402 are respectively located on the upper and lower surfaces of the placing plate 100 and are pressed against the placing plate 100, when the position of the placing plate 100 is adjusted, the threaded sleeve A 401 and the threaded sleeve B 402 can be loosened, then the position of the placing plate 100 is adjusted, and then the threaded sleeve A 401 and the threaded sleeve B 402 are tightened.
[0032] In the embodiment, preferably, the outer surface of the threaded sleeve A 401 is sleeved with a rubber sleeve and is provided with vertical anti-skid lines, and has good anti-skid ability.
[0033] In the embodiment, preferably, the adjusting assembly 400 further comprises a top cover 403, which is inserted into the top end of the supporting rod 200 to prevent the threaded sleeve A 401 from falling off.
[0034] Although the embodiments of the utility model have been shown and described (see the above detailed description), it can be understood by those skilled in the art that various changes, modifications, replacements and variations can be made to these embodiments without departing from the principles and spirits of the utility model, and the scope of the utility model is defined by the appended claims and their equivalents.
Claims
1. A multi-tiered construction material storage rack characterized by: Comprising Three placement plates (100) distributed vertically, and support rods (200) penetrating through the four corners of the placement plates (100); A material guiding structure (300) comprising a receiving groove (307) opened in the inner part of both ends of the placement plate (100), an inner plate (301) movably installed in the receiving groove (307), a rectangular groove (302) opened on the surface of the inner plate (301), a rotating frame (303) rotatably connected in the rectangular groove (302), a roller (305) connected to the inner side of the rotating frame (303), and A rotating shaft assembly (304) comprising a shaft body (3041) fixed on both sides of the rotating frame (303), a fixed block (3042) symmetrically fixed on the surface of both sides of the shaft body (3041), an outer groove (3043) opened on both sides of the rectangular groove (302), an inner groove (3044) opened in the inner part of the outer groove (3043) and provided for the shaft body (3041) to be inserted, and a stop block (3045) fixed on the inner wall of the outer groove (3043).
2. A multi-tiered construction material storage rack as defined in claim 1, wherein: The inner end of the inner plate (301) is symmetrically fixed with a anti-falling block (306), and the both sides of the receiving groove (307) are symmetrically provided with an anti-falling groove in sliding connection with the anti-falling block (306), and the both ends of the anti-falling groove are closed.
3. A multi-tiered construction material storage rack as defined in claim 2, wherein: The inner plate (301) and the receiving groove (307) are both rectangular in cross section, and the outer surface of the inner plate (301) is matched with the inner wall of the receiving groove (307).
4. A multi-tiered construction material storage rack as defined in claim 3, wherein: A bottom groove (308) is opened in the bottom of the receiving groove (307), and a push handle (309) penetrating through the bottom groove (308) is fixed on the front end of the inner plate (301).
5. A multi-tiered construction material storage rack as defined in claim 4, wherein: An adjusting assembly (400) is arranged between the four corners of the placement plate (100) and the support rod (200), the adjusting assembly (400) comprises a threaded sleeve A (401) and a threaded sleeve B (402), each support rod (200) is provided with threads, and is respectively threaded with the threaded sleeve A (401) and the threaded sleeve B (402), the threaded sleeve A (401) and the threaded sleeve B (402) are respectively located on the upper and lower surfaces of the placement plate (100) and are pressed against the placement plate (100).
6. A multi-tiered construction material storage rack as defined in claim 5, wherein: The outer surface of the threaded sleeve A (401) is sleeved with a rubber sleeve, and is provided with vertical anti-slip lines.
7. A multi-tiered construction material storage rack as defined in claim 6, wherein: The adjusting assembly (400) further comprises a top cover (403) inserted into the top end of the support rod (200).