A display screen storage device for LED display screen manufacturing
By introducing a buffer layer, clamps, and support devices into the LED display storage device, the problem of damage to the display screen during storage and transportation is solved, achieving efficient and stable protection and operation, and reducing production costs.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Filing Date
- 2025-03-24
- Publication Date
- 2026-07-14
AI Technical Summary
Existing LED display storage devices lack effective cushioning and protection measures, making the displays easily damaged during storage and transportation. They are also unstable, inconvenient to operate, and affect production efficiency and costs.
A storage device is designed that includes a buffer layer, multi-layer storage box units, interlayer clamping mechanism and lateral support device. The buffer layer and sealing plate material provide all-round cushioning protection, and the display screen is fixed by clamps and support plates to ensure stability and convenient operation.
It effectively reduces the risk of display screen damage, improves space utilization, ensures the safety of the display screen during storage and transportation, and improves operational efficiency.
Smart Images

Figure CN224492172U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of LED display manufacturing technology, and more specifically, to a display storage device for LED display manufacturing. Background Technology
[0002] In the manufacturing process of LED displays, the storage of the displays is crucial. Because LED displays are precision electronic devices, their screens are relatively fragile and easily damaged by external forces such as impacts and pressure. However, existing LED display storage devices have many problems, causing inconvenience and risks to the production process.
[0003] Some traditional storage devices have simple structures and lack effective cushioning protection measures. For example, using only ordinary boxes for storage without special cushioning materials inside makes the display screens highly susceptible to damage such as screen breakage and pixel damage during storage and transportation, increasing the product defect rate and raising production costs.
[0004] Traditional storage devices have shortcomings in securing the display screens. The screens are prone to shaking or shifting during storage, especially during handling or transportation. This shaking and shifting can cause the screens to collide with each other or with the inner walls of the storage device, further increasing the risk of damage.
[0005] In addition, some existing storage devices are inconvenient to operate when retrieving or placing displays. For example, the structural design of the storage device makes it difficult to quickly and easily remove or place the display, which not only reduces work efficiency but may also damage the display due to improper operation by the operator. Utility Model Content
[0006] Based on the above-mentioned technical problems, this utility model proposes a display screen storage device for LED display screen manufacturing.
[0007] An LED display screen storage device for manufacturing LED displays includes: a storage box, which consists of a box body and a detachable box cover. The top of the box body has an opening, and the box cover closes the opening by a snap or hinge structure. The inner wall of the box body is covered with a lightweight cushioning layer, which is in close contact with the inner wall of the box body.
[0008] Multiple storage box units, each storage box unit includes a box body and a removable sealing plate, the box body has a display screen receiving cavity, the sealing plate covers the top opening of the box body and is made of the same material as the buffer layer; the multiple storage box units are arranged in multiple layers stacked in the box body;
[0009] An interlayer clamping mechanism is provided between adjacent upper and lower storage box units, including a movable clamp on the top of the lower storage box unit and a matching snap-fit part on the bottom of the upper storage box unit; the clamp includes a vertical clamping part and a horizontal pressing part, the vertical clamping part is located on both sides of the side wall of the upper and lower storage box units, and the horizontal pressing part is located in the middle between the vertical clamping parts, and the upper storage box unit is snapped into the upper part of the clamp through the snap-fit part;
[0010] A lateral support device is provided between adjacent storage box units, including a retractable or inflatable support plate. The support plate abuts against the side walls of the storage box units on both sides by unfolding, thereby restricting the lateral displacement of the storage box units.
[0011] Preferably, the buffer layer is made of closed-cell foam material, and its surface is provided with an array of open holes.
[0012] Preferably, a pressure plate is provided above the sealing plate of the uppermost storage box unit inside the box. The pressure plate is made of engineering plastic and its edges are supported by the top of the buffer layer.
[0013] Preferably, the clamp is an integrally formed structure, the clamp has a right-angled symmetrical structure, and a clamp is provided at each of the four corners of each storage box unit.
[0014] Preferably, the lateral support device is an inflatable support plate, including a flexible outer layer and an internal air cavity. After inflation, the thickness expands to support the laterally adjacent storage box units. An inflation valve is provided on the side of the support plate, and the inflation valve is connected to an external air pump through a quick-connect air pipe.
[0015] Beneficial effects:
[0016] 1. High-efficiency buffer protection: The buffer layer inside the cabinet and the sealing plate material of the storage box unit, combined with the shock-absorbing hole design on the surface of the buffer layer, can effectively absorb collision energy and provide all-round buffer protection for the LED display screen, greatly reducing the risk of damage to the display screen during storage and transportation.
[0017] 2. High space utilization: The multi-layer stacked storage box units make reasonable use of the internal space of the cabinet. Displays of different sizes can be stored in an orderly manner, increasing the number of display screens stored in a unit space and reducing the waste of storage space.
[0018] 3. Stable and secure: The interlayer clamping mechanism and the lateral support device work together to fix the storage box unit from both the top and bottom and the lateral directions, ensuring that the display screen will not shift or shake during storage and transportation, thus further ensuring the safety of the display screen.
[0019] 4. Convenient operation: The detachable cover, detachable sealing plate, and convenient inflatable support plate make the process of picking up and putting down the display screen more convenient, improve work efficiency, and reduce the possibility of damage to the display screen due to improper operation. Attached Figure Description
[0020] Figure 1 A schematic diagram of the structure of this utility model is shown. Figure 1 ;
[0021] Figure 2 A schematic diagram of the structure of this utility model is shown. Figure 2 ;
[0022] Figure 3 A schematic diagram of the structure of this utility model is shown. Figure 3 ;
[0023] Figure 4 A schematic diagram of the storage box unit is shown. Figure 1 ;
[0024] Figure 5 A schematic diagram of the storage box unit is shown. Figure 2 ;
[0025] Figure 6 A schematic diagram of the storage box unit is shown. Figure 3 ;
[0026] In the attached drawings, 1 is the box body, 2 is the box cover, 3 is the buffer layer, 4 is the storage box unit, 401 is the box body, 402 is the sealing plate, 403 is the snap-fit part, 5 is the clamp, 501 is the vertical clamping part, 502 is the horizontal pressing part, 6 is the transverse support device, 601 is the support plate, 602 is the inflation valve, 7 is the pressure plate, 8 is the display screen, and 9 is the thin plate. Detailed Implementation
[0027] To better understand the above-mentioned objectives, features, and advantages of this utility model, the present utility model will be further described in detail below with reference to the accompanying drawings and specific embodiments. It should be noted that, unless otherwise specified, the embodiments and features described in these embodiments can be combined with each other.
[0028] like Figures 1-6 The above describes a display screen storage device for LED display manufacturing. The device mainly consists of a storage box, multiple storage box units 4, an interlayer clamping mechanism, and a horizontal support device 6.
[0029] The storage box consists of a box body 1 and a detachable lid 2. The top of the box body 1 has an opening, and the lid 2 closes the opening with a snap or hinge structure. This design facilitates the placement and removal of the LED display screen 8. The inner wall of the box body 1 is covered with a lightweight cushioning layer 3. The cushioning layer 3 is tightly attached to the inner wall of the box body 1. Its main function is to provide cushioning protection for the LED display screen 8 placed in the box body 1, reducing the damage to the display screen 8 caused by collisions during transportation or storage.
[0030] Multiple storage box units 4 are the core components of the storage device. Each storage box unit 4 includes a box body 401 and a removable sealing plate 402. The box body 401 has a space specifically for accommodating the display screen 8. The sealing plate 402 covers the top opening of the box body 401 and is made of the same material as the buffer layer 3, which further enhances the protection of the display screen 8. Multiple storage box units 4 are arranged in a multi-layer stacked manner inside the box body 1. This layout effectively improves the space utilization rate, allowing display screens 8 of different sizes to be stored in an orderly manner.
[0031] The displays 8 are stacked horizontally in the storage box, and thin plates 9 are placed between the displays 8. The thin plates 9 can be made of foam board. If there are gaps, they can be filled with thin plates 9 to prevent them from shaking in the storage box unit 4.
[0032] The interlayer clamping mechanism is located between adjacent upper and lower storage box units 4. It includes a movable clamp 5 located on the top of the lower storage box unit 4 and a matching snap-fit part 403 at the bottom of the upper storage box unit 4. The clamp 5 consists of a vertical clamping part 501 and a horizontal pressing part 502. The vertical clamping part 501 is located on both sides of the side wall of the upper and lower storage box units 4, which plays a role in lateral fixation and prevents the upper and lower storage box units 4 from being displaced laterally. The horizontal pressing part 502 is located in the middle between the vertical clamping parts 501 and serves as a partition between the side walls of the upper and lower storage boxes. The upper storage box unit 4 is snapped into the upper part of the clamp 5 through the snap-fit part 403. In this way, a stable connection between the upper and lower storage box units 4 is ensured, and the storage box units 4 are prevented from shifting due to shaking or vibration during storage and transportation, thereby protecting the LED display screen 8 placed inside.
[0033] The clamp 5 is designed as an integral molded structure with a right-angled symmetrical structure. This structure ensures the strength and stability of the clamp 5. Each storage box unit 4 is equipped with a clamp 5 at each of its four corners. Through the joint action of the four clamps 5, the upper and lower storage box units 4 can be more firmly fixed, preventing them from shifting in any direction.
[0034] A lateral support device 6 is provided between adjacent storage box units 4, including a retractable or inflatable support plate 601. The support plate 601 abuts against the side walls of the two storage box units 4 by unfolding, thereby limiting the lateral displacement of the storage box units 4, further enhancing the stability of the storage device, and ensuring that the display screens 8 will not collide with each other or with the cabinet 1 due to lateral shaking during storage.
[0035] The buffer layer 3 is made of closed-cell foam material, which has good cushioning performance. Its thickness is set at 10-30mm, which can provide sufficient cushioning protection without taking up too much space in the cabinet 1. The surface is provided with an array of openings, which further enhances the shock absorption effect of the buffer layer 3 and can better absorb the energy generated by the collision, protecting the display screen 8.
[0036] A pressure plate 7 is provided above the sealing plate 402 of the uppermost storage box unit 4 inside the housing 1. The pressure plate 7 is made of engineering plastic and has a certain strength. Its edge is supported by the top of the buffer layer 3, and the lower part of the pressure plate 7 is supported by the sealing plate 402. The function of the pressure plate 7 is to apply downward pressure to the uppermost storage box unit 4, further fix the storage box unit 4, and prevent it from moving upward due to vibration during transportation, thereby better protecting the internal LED display screen 8.
[0037] The lateral support device 6 adopts an inflatable support plate 601, which includes a flexible outer layer and an internal air cavity. After inflation, the thickness expands to support the laterally adjacent storage box units 4. This design allows the support plate 601 to adaptively adjust according to the spacing between the storage box units 4. The support plate 601 is equipped with an inflation valve 602 on its side. The inflation valve 602 is connected to an external air pump through a quick-connect air pipe, which allows for convenient and quick inflation and deflation of the support plate 601 to adapt to different storage needs.
[0038] The above description is merely a preferred embodiment of this utility model and is not intended to limit the utility model. Various modifications and variations can be made to this utility model by those skilled in the art. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this utility model should be included within the protection scope of this utility model.
Claims
1. A display screen storage device for LED display screen manufacturing, characterized in that, include: The storage box consists of a box body (1) and a detachable box lid (2). The top of the box body (1) has an opening, and the box lid (2) closes the opening by a snap or hinge structure. The inner wall of the box body (1) is covered with a lightweight cushioning layer (3), which is in close contact with the inner wall of the box body (1). Multiple storage box units (4), each storage box unit (4) includes a box body (401) and a removable sealing plate (402). The box body (401) has a display screen receiving cavity inside. The sealing plate (402) covers the top opening of the box body (401) and is made of the same material as the buffer layer (3). Multiple storage box units (4) are arranged in multiple layers in the box body (1). The interlayer clamping mechanism is disposed between adjacent upper and lower storage box units (4), including a movable clamp (5) disposed on the top of the lower storage box unit (4) and a matching snap-fit part (403) at the bottom of the upper storage box unit (4); the clamp (5) includes a vertical clamping part (501) and a horizontal pressing part (502), the vertical clamping part (501) is located on both sides of the side wall of the upper and lower storage box units (4), the horizontal pressing part (502) is located in the middle between the vertical clamping parts (501), and the upper storage box unit (4) is snapped with the upper part of the clamp (5) through the snap-fit part (403); A lateral support device (6) is provided between adjacent storage box units (4), including a retractable or inflatable support plate (601). The support plate (601) abuts against the side walls of the storage box units (4) on both sides by unfolding, thereby restricting the lateral displacement of the storage box units (4). The display screens (8) are stacked horizontally in the storage box unit (4), and thin plates (9) are placed between adjacent display screens (8).
2. The LED display screen storage device for manufacturing according to claim 1, characterized in that: The buffer layer (3) is made of closed-cell foam material, and its surface is provided with an array of open holes.
3. The LED display screen storage device for manufacturing according to claim 1, characterized in that: The uppermost storage box unit (4) inside the box (1) has a pressure plate (7) above the sealing plate (402). The pressure plate (7) is made of engineering plastic and its edge is supported by the top of the buffer layer (3).
4. The LED display screen storage device for manufacturing according to claim 1, characterized in that: The clamp (5) is an integrally formed structure. The clamp (5) has a right-angled symmetrical structure. A clamp (5) is provided at each of the four corners of each storage box unit (4).
5. The LED display screen storage device for manufacturing according to claim 1, characterized in that: The lateral support device (6) is an inflatable support plate (601), which includes a flexible outer layer and an internal air cavity. After inflation, the thickness expands to support the adjacent storage box unit (4) in the lateral direction. An inflation valve (602) is provided on the side of the support plate (601), and the inflation valve (602) is connected to an external air pump through a quick-connect air pipe.