Storage device for building decoration materials

By designing adjustable-height fixing components and modular storage devices, the problem of materials falling due to external impacts or vibrations is solved, achieving stable fixing and efficient storage management of materials.

CN224029708UActive Publication Date: 2026-03-24SHANGHAI OUTONG DECORATION MATERIALS CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-05-13
Publication Date
2026-03-24

AI Technical Summary

Technical Problem

Existing storage facilities are typically open-style, and when subjected to external impacts or vibrations, building decoration materials can easily fall off the shelves, potentially injuring people or damaging the materials.

Method used

A storage device comprising a rectangular support plate and a placement platform is designed. Through adjustable height fixing components and a modular structure, the material is stably fixed on the placement platform, preventing it from falling due to external impact or vibration.

Benefits of technology

It effectively prevents materials from falling due to external impacts or vibrations, reduces the risk of damage, improves space utilization and the orderliness of storage management, adapts to the storage needs of various specifications of materials, and reduces equipment maintenance costs.

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Abstract

The utility model relates to the field of storage devices, in particular to a storage device for building decoration materials, which comprises a rectangular supporting plate. Four rectangular supporting plates are arranged in a surrounding array mode, a plurality of containing tables are vertically arranged among the four rectangular supporting plates, and a plurality of fixing assemblies are fixedly connected to the two sides and the middle of the upper end of each containing table in the width direction of the containing table. According to the thickness condition of materials needing to be stored, the height of the containing table is adjusted along the rectangular supporting plate so that a proper height space can be reserved, the containing table and the rectangular supporting plate are assembled, and then the materials penetrate through the three fixing assemblies in the length direction of the containing table so that the materials can be stored. Then the height of the fixing assembly is adjusted according to the thickness of the material, the two sides of the material are limited, finally the first rectangular sleeves at the two ends of the containing table are assembled, and the two ends of the material are limited and protected, and through the method, the situation that the building decoration material slides off from the storage device due to accidental collision, vibration or unstable placement can be effectively prevented; and the quality and integrity of the material are ensured.
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Description

Technical Field

[0001] This utility model relates to the field of storage devices, and more particularly to storage devices for building decoration materials. Background Technology

[0002] Building decoration materials are a general term for all kinds of materials used on the surface and interior space of buildings to beautify the environment, protect the building structure, and meet the functional requirements. Storage devices are equipment or facilities used to store various building decoration materials. Their purpose is to ensure that the materials are not damaged during storage, maintain their quality, and facilitate the management and retrieval of the materials. For example, material racks are mainly used to store long strips or plates of building decoration materials, such as wood, gypsum board, and aluminum plates. The materials can be stacked in layers, saving space while making it convenient to handle and retrieve them.

[0003] Existing storage devices are usually open-type. When the device is subjected to external impact or vibration, some round or smooth-surfaced building and decorative materials, such as metal pipes and cylindrical wood, are prone to falling off the rack. This can not only damage the materials themselves and affect their performance, but may also cause damage to surrounding workers or equipment.

[0004] Therefore, since the existing storage devices are usually open, materials are prone to falling off the shelves when subjected to external impact or vibration, which may injure people or damage the materials. Storage devices for building decoration materials can be designed to protect and fix the materials to prevent them from falling off due to external impact or vibration. Utility Model Content

[0005] To overcome the problem that existing storage devices are usually open, and materials are prone to falling off the shelves when subjected to external impacts or vibrations, which may injure people or damage the materials, a storage device for building decoration materials is proposed.

[0006] The technical solution of this utility model is as follows: a storage device for building decoration materials, including a rectangular support plate; four sets of rectangular support plates are arranged in a circular array, and multiple sets of placement platforms are vertically arranged between the four sets of rectangular support plates. Multiple sets of fixing components are fixedly connected to the upper sides and the middle of the placement platform along its width direction. Each end of the placement platform is provided with a strip-shaped insertion groove. A first rectangular sleeve is symmetrically provided at both ends of the placement platform. A strip-shaped insertion block is fixedly connected to the side of the first rectangular sleeve near the placement platform. The strip-shaped insertion block is adapted to the strip-shaped insertion groove, and the strip-shaped insertion block is positioned and inserted into the placement platform along the strip-shaped insertion groove. The fixing components include a pressure plate. A rectangular column is fixedly connected to each end of the pressure plate. A second rectangular sleeve is sleeved on the outside of the rectangular column. Positioning pins are symmetrically provided on both sides of the connection between the second rectangular sleeve and the rectangular column. Multiple sets of positioning holes are vertically symmetrically opened on both sides of the rectangular column.

[0007] Furthermore, a mounting plate is fixed to the lower end of the rectangular support plate, and screw holes are opened at each corner of the mounting plate, with screws threaded in the center of the screw holes.

[0008] Furthermore, a rectangular groove is provided on the inner side of the rectangular support plate, and multiple sets of first circular holes located on one side of the rectangular groove are vertically provided on the rectangular support plate.

[0009] Furthermore, two sets of rectangular sliders are symmetrically fixed to both sides of the placement platform along its length. The rectangular sliders slide along the rectangular grooves and are slidably connected to the rectangular support plate. A second circular hole is opened on the side of the rectangular slider away from the placement platform, and a fixing bolt is provided inside the second circular hole.

[0010] Furthermore, a rectangular plate is fitted inside the first rectangular sleeve. Fixed pins are symmetrically provided at both ends of the connection between the rectangular plate and the first rectangular sleeve. Multiple sets of fixed holes are vertically symmetrically opened at both ends of the rectangular plate. The fixed pins pass through the first rectangular sleeve and are positioned and connected to the rectangular plate through the fixed holes. A transparent placement box is fixedly connected to the side of the first rectangular sleeve away from the placement platform.

[0011] Furthermore, the lower end of the second rectangular sleeve is fixedly connected to the upper end of the placement platform, and the positioning pin passes through the second rectangular sleeve and is positioned and connected to the rectangular column through the positioning hole.

[0012] Furthermore, a module is provided below the pressure plate, and a rectangular plug-in block is fixed to the upper end of the module. A rectangular plug-in slot is provided below the pressure plate. The rectangular plug-in block is adapted to the rectangular plug-in slot, and the rectangular plug-in block is positioned and plugged into the pressure plate through the rectangular plug-in slot.

[0013] The beneficial effects of this utility model are as follows: The placement platform, which is height-adjustable along a rectangular support plate, allows for precise adjustment of the platform height based on the thickness of the building decoration materials to be stored. This creates a height space within the storage device that accommodates different material thicknesses. This structural design not only fully utilizes the three-dimensional space of the storage device, improving space utilization, but also avoids chaotic material stacking due to unreasonable space arrangement, thus enhancing the orderliness of material storage management. The material is then passed along the length of the placement platform through three sets of height-adjustable fixing components. These components limit the material's sides through height adjustment, ensuring a close fit to the side contours of materials of different thicknesses. Stable lateral constraints ensure that the material is fixed in position along the length of the placement platform, effectively preventing lateral displacement or slippage due to external impacts, vibrations, or unstable placement. This significantly reduces the risk of damage such as breakage or deformation caused by falling materials, ensuring material quality and integrity. In addition, the modular structure of the placement platform and rectangular support plate, along with the adjustable design of the fixing components, gives the storage device a modular feature. On the one hand, this facilitates the installation, disassembly, and maintenance of the device, reducing equipment maintenance costs. On the other hand, by adjusting and combining the various components, it can adapt to the storage needs of various specifications and types of building decoration materials, significantly improving the versatility of the storage device and broadening its application scenarios and scope. Attached Figure Description

[0014] Figure 1 This is a schematic diagram of the overall structure of the present invention;

[0015] Figure 2 This is a schematic diagram of the rectangular support plate structure of this utility model;

[0016] Figure 3 This is a schematic diagram of the placement platform structure of this utility model;

[0017] Figure 4 This is a schematic diagram of the rectangular column structure of this utility model;

[0018] Figure 5 This is a schematic diagram of the module structure of this utility model.

[0019] Explanation of reference numerals in the attached drawings: 1. Rectangular support plate; 2. Placement platform; 101. Mounting plate; 102. Screw hole; 103. Screw; 104. Rectangular slide groove; 105. First round hole; 201. Rectangular slider; 202. Second round hole; 203. Fixing bolt; 204. Strip-shaped insertion groove; 205. First rectangular sleeve; 206. Rectangular plate; 207. Fixing pin; 208. Fixing hole; 209. Strip-shaped insertion block; 210. Transparent placement box; 301. Pressure plate; 302. Rectangular column; 303. Second rectangular sleeve; 304. Positioning pin; 305. Positioning hole; 306. Module; 307. Rectangular insertion block; 308. Rectangular insertion groove. Detailed Implementation

[0020] The present invention will be further described below with reference to the accompanying drawings and embodiments.

[0021] like Figures 1-5 As shown, this utility model provides an embodiment: a storage device for building decoration materials, including a rectangular support plate 1; four sets of rectangular support plates 1 are arranged in a circular array, and multiple sets of placement platforms 2 are vertically arranged between the four sets of rectangular support plates 1. Multiple sets of fixing components are fixedly connected to the upper sides and the middle of the placement platform 2 along its width direction. Each end of the placement platform 2 has a strip-shaped insertion groove 204. The two ends of the placement platform 2 are symmetrically provided with a first rectangular sleeve 205. A strip-shaped insertion block 209 is fixedly connected to the side of the first rectangular sleeve 205 near the placement platform 2. The strip-shaped insertion block 209 is adapted to the strip-shaped insertion groove 204, and the strip-shaped insertion block 209 is positioned and inserted into the placement platform 2 along the strip-shaped insertion groove 204. The fixing components include a pressure plate 301. A rectangular column 302 is fixed to each end. A second rectangular sleeve 303 is fitted on the outside of the rectangular column 302. Positioning pins 304 are symmetrically provided on both sides of the connection between the second rectangular sleeve 303 and the rectangular column 302. Multiple sets of positioning holes 305 are vertically symmetrically opened on both sides of the rectangular column 302. Depending on the thickness of the material to be stored, the height of the placement platform 2 is adjusted along the rectangular support plate 1 to leave a suitable height space. The placement platform 2 is then assembled with the rectangular support plate 1. Next, the material is passed through three sets of fixing components along the length of the placement platform 2. Then, the height of the fixing components is adjusted according to the material thickness to limit the material on both sides. Finally, the first rectangular sleeves 205 at both ends of the placement platform 2 are assembled to limit and protect the material at both ends.

[0022] Please see Figure 2 In this embodiment, a mounting plate 101 is fixedly connected to the lower end of the rectangular support plate 1. Each corner of the mounting plate 101 is provided with a screw hole 102. A screw 103 is threaded in the middle of the screw hole 102. A rectangular groove 104 is provided on the inner side of the rectangular support plate 1. Multiple sets of first circular holes 105 located on one side of the rectangular groove 104 are vertically provided on the rectangular support plate 1. The four sets of rectangular support plates 1 are placed in a rectangular array. Then, the screw 103 is passed through the screw hole 102 so that the mounting plate 101 is attached to the ground, thereby fixing the placement position of the rectangular support plate 1.

[0023] Please see Figure 3In this embodiment, two sets of rectangular sliders 201 are symmetrically fixed to both sides of the placement platform 2 along its length. The rectangular sliders 201 are slidably connected to the rectangular support plate 1 along the rectangular slide groove 104. A second circular hole 202 is opened on the side of the rectangular slider 201 away from the placement platform 2. A fixing bolt 203 is provided inside the second circular hole 202. A rectangular plate 206 is fitted inside the first rectangular sleeve 205. Fixing pins 207 are symmetrically provided at both ends of the connection between the rectangular plate 206 and the first rectangular sleeve 205. Multiple sets of fixing holes 208 are vertically symmetrically opened at both ends of the rectangular plate 206. The fixing pins 207 pass through the first rectangular sleeve 205. The first rectangular sleeve 205 is positioned and connected to the rectangular plate 206 through the fixing hole 208. A transparent placement box 210 is fixed to the side of the first rectangular sleeve 205 away from the placement platform 2. By adjusting the fixing pin 207, the rectangular plate 206 is adjusted to a suitable height along the first rectangular sleeve 205, thereby limiting and protecting the material from both ends. After confirming that everything is correct, the fixing pin 207 is picked up and passed through the first rectangular sleeve 205 and positioned and connected to the rectangular plate 206 through the fixing hole 208. Then the first rectangular sleeve 205 is picked up so that the strip-shaped insertion block 209 is positioned and inserted into the placement platform 2 along the strip-shaped insertion groove 204.

[0024] Please see Figures 4-5 In this embodiment, the lower end of the second rectangular sleeve 303 is fixedly connected to the upper end of the placement platform 2. The positioning pin 304 passes through the second rectangular sleeve 303 and is positioned and connected to the rectangular column 302 through the positioning hole 305. A module 306 is provided below the pressure plate 301. A rectangular insertion block 307 is fixedly connected to the upper end of the module 306. A rectangular insertion groove 308 is opened below the pressure plate 301. The rectangular insertion block 307 is adapted to the rectangular insertion groove 308, and the rectangular insertion block 307 is positioned and inserted into the pressure plate 301 through the rectangular insertion groove 308. According to the shape of the material, a suitable module 306 is selected. Then, the rectangular insertion block 307 is positioned and inserted into the pressure plate 301 through the rectangular insertion groove 308. Then, the material is passed through the three sets of fixing components along the length direction of the placement platform 2. Then, according to the thickness of the material, the rectangular column 302 is adjusted to a suitable height along the second rectangular sleeve 303 by adjusting the positioning pin 304, so that the module 306 is close to and fits the material.

[0025] First, place four sets of rectangular support plates 1 in a rectangular array. Then, pass screws 103 through screw holes 102 to make the mounting plate 101 fit against the ground, thus fixing the position of the rectangular support plates 1. Then, according to the required thickness of the stored material, lift the placement platform 2 so that the rectangular slider 201 slides along the rectangular groove 104 and connects with the rectangular support plate 1 to adjust the height, thus leaving a suitable height space. After the rectangular slider 201 reaches the appropriate position, pick up the fixing bolt 203 and pass it through the first round hole 105 and the second round hole 202 to fix the position of the rectangular slider 201. After adjusting all the placement platforms 2 in sequence, select the appropriate module 306 according to the shape of the material. Then, the rectangular plug block 307 is positioned and plugged into the pressure plate 301 through the rectangular plug slot 308. Then, pass the material along the length of the placement platform 2 through the three sets of fixing components, and then adjust the material thickness accordingly. By adjusting the positioning pin 304, the rectangular column 302 is adjusted to a suitable height along the second rectangular sleeve 303, so that the module 306 is close to the material. After confirming that everything is correct, the positioning pin 304 is picked up and passed through the second rectangular sleeve 303 and positioned and connected to the rectangular column 302 through the positioning hole 305, thereby limiting the material on both sides. Then, by adjusting the fixing pin 207, the rectangular plate 206 is adjusted to a suitable height along the first rectangular sleeve 205, thereby limiting and protecting the material from both ends. After confirming that everything is correct, the fixing pin 207 is picked up and passed through the first rectangular sleeve 205 and positioned and connected to the rectangular plate 206 through the fixing hole 208. Then, the first rectangular sleeve 205 is picked up so that the strip plug block 209 is positioned and plugged into the placement platform 2 along the strip plug slot 204. After assembly, the material can be stored. Finally, the card with the material name is placed in the transparent placement box 210 for easy retrieval later.

Claims

1. A storage device for building decoration materials, comprising a rectangular support plate (1); characterized in that: Four groups of rectangular support plates (1) are arranged around the array, and multiple groups of placement tables (2) are vertically arranged between the four groups of rectangular support plates (1). Multiple groups of fixing assemblies are fixedly connected to the upper end of the placement table (2) on both sides and in the middle along the width direction thereof. Strip-shaped insertion grooves (204) are formed at both ends of the placement table (2). First rectangular sleeves (205) are symmetrically arranged at both ends of the placement table (2). Strip-shaped insertion blocks (209) are fixedly connected to one side of the first rectangular sleeve (205) close to the placement table (2). The strip-shaped insertion blocks (209) are matched with the strip-shaped insertion grooves (204), and the strip-shaped insertion blocks (209) are positioned and inserted into the strip-shaped insertion grooves (204) and the placement table (2). The fixing assembly comprises a pressing plate (301). Rectangular columns (302) are fixedly connected to both ends of the pressing plate (301). Second rectangular sleeves (303) are arranged outside the rectangular columns (302). Positioning pins (304) are symmetrically arranged at both sides of the connection between the second rectangular sleeves (303) and the rectangular columns (302). Multiple groups of positioning holes (305) are vertically and symmetrically formed at both sides of the rectangular columns (302).

2. The storage device for architectural finishing material according to claim 1, characterized by: The lower end of the rectangular support plate (1) is fixedly connected with a mounting plate (101). Screw holes (102) are formed at the corners of the mounting plate (101). Screws (103) are threadedly installed in the middle of the screw holes (102).

3. The storage device for architectural finishing material according to claim 1, characterized in that: A rectangular sliding groove (104) is formed in the inner side of the rectangular support plate (1). Multiple groups of first circular holes (105) are vertically formed on one side of the rectangular sliding groove (104) of the rectangular support plate (1).

4. The storage device for architectural finishing material according to claim 1, characterized by: Two groups of rectangular sliding blocks (201) are symmetrically fixedly connected to both sides of the placement table (2) along the length direction thereof. The rectangular sliding blocks (201) are slidingly connected with the rectangular support plate (1) along the rectangular sliding groove (104). Second circular holes (202) are formed on one side of the rectangular sliding block (201) away from the placement table (2). Fixing pins (203) are arranged inside the second circular holes (202).

5. The storage device for architectural finishing material according to claim 1, characterized in that: A rectangular plate (206) is arranged inside the first rectangular sleeve (205). Fixing pins (207) are symmetrically arranged at both ends of the connection between the rectangular plate (206) and the first rectangular sleeve (205). Multiple groups of fixing holes (208) are vertically and symmetrically formed at both ends of the rectangular plate (206). The fixing pins (207) pass through the first rectangular sleeve (205) and are positioned and connected with the rectangular plate (206) through the fixing holes (208). A transparent placement box (210) is fixedly connected to one side of the first rectangular sleeve (205) away from the placement table (2).

6. The storage device for architectural finishing material according to claim 1, wherein: The lower end of the second rectangular sleeve (303) is fixedly connected with the upper end of the placement table (2). The positioning pins (304) pass through the second rectangular sleeve (303) and are positioned and connected with the rectangular column (302) through the positioning holes (305).

7. The storage device for architectural finishing material according to claim 1, wherein: A module (306) is arranged below the pressing plate (301). A rectangular insertion block (307) is fixedly connected to the upper end of the module (306). A rectangular insertion groove (308) is formed below the pressing plate (301). The rectangular insertion block (307) is matched with the rectangular insertion groove (308), and the rectangular insertion block (307) is positioned and inserted into the rectangular insertion groove (308) and the pressing plate (301).