Annular three-dimensional storage rack
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- HAINAN CHENGHONG IMPORT & EXPORT TRADING CO LTD
- Filing Date
- 2025-01-13
- Publication Date
- 2026-08-07
AI Technical Summary
[0004]本实用新型的目的在于提供一种环形立体式仓储货架,具备便捷存取货物、良好防尘防潮保护及易于维护的优点,解决了传统仓储货架存在的货物易落尘、高层取货不便、缺乏湿度控制和维护困难的问题
[0014] 1. This utility model achieves the rotation of the storage rack through a drive component. When the user steps on the pedal, it drives the transmission shaft to rotate, which in turn drives the second rotating shaft to rotate through the first and second toothed umbrellas, causing the storage rack to rotate so that different positions face the access port. This design facilitates the retrieval of goods on the storage rack, while goods that do not need to be retrieved are located inside the protective cylinder, which can reduce their impact from dust and bumps, and improve the protection of stored goods. A one-way bearing is set in the bushing so that the pedal can drive the storage rack to rotate when it is stepped on, and the pedal will not drive the storage rack to rotate in the opposite direction when it bounces up under the return action of the spring. This feature allows the user to quickly switch the storage rack to different areas, improving the convenience and efficiency of operation.
Smart Images

Figure CN224603788U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of warehouse racking technology, specifically a ring-shaped three-dimensional warehouse racking. Background Technology
[0002] In the modern logistics and warehousing industry, with the increase in the variety of goods and the higher requirements for storage conditions, traditional flat warehouse racks can no longer meet the needs of efficient space utilization and goods protection. Especially when storing humidity-sensitive goods, such as food, pharmaceuticals, and electronic components, maintaining a suitable dry environment is one of the key factors in ensuring product quality.
[0003] However, existing warehousing systems often have the following shortcomings: most warehouse racks are exposed structures, which makes the surface of goods prone to dust accumulation, and other goods may be bumped or knocked when being retrieved. For high-rise racks, workers need to use ladders or lifting platforms to access goods, which not only increases the difficulty of operation but may also pose safety hazards. Most warehouse racks do not have devices specifically designed to control internal humidity, which makes goods susceptible to the effects of humid air and reduces their quality. Therefore, a circular three-dimensional warehouse rack is needed to solve the above problems. Utility Model Content
[0004] The purpose of this utility model is to provide a circular three-dimensional warehouse rack, which has the advantages of convenient storage and retrieval of goods, good dust and moisture protection, and easy maintenance. It solves the problems of traditional warehouse racks, such as goods being prone to dust accumulation, inconvenience in retrieving goods from high-rise buildings, lack of humidity control, and difficulty in maintenance.
[0005] To achieve the above objectives, this utility model provides the following technical solution: a ring-shaped three-dimensional storage rack, comprising a protective cylinder and a storage rack, characterized in that: a dehumidification component is detachably installed inside the storage rack, and a drive component is installed inside the protective cylinder;
[0006] The drive assembly includes a pedal, a spring, a drive shaft, and a bearing seat. A first rotating shaft is located at the bottom of the storage rack. A second partition is located inside the protective cylinder, dividing the protective cylinder into a storage chamber and an equipment chamber. An access port is located on the side end of the storage chamber. A shaft hole that mates with the first rotating shaft is located at the bottom of the first rotating shaft. A second rotating shaft is located at the bottom of the first rotating shaft, and a first toothed bevel is located on the second rotating shaft. The bearing seat is fixedly installed at the bottom of the equipment chamber. The drive shaft passes through the bearing seat and is rotatably connected to it. A second toothed bevel that meshes with the first toothed bevel is located on the drive shaft. A bushing is located on the pedal, and the pedal is mounted on the drive shaft via the bushing. A spring is installed between the pedal and the protective cylinder, and the pedal is elastically connected to the protective cylinder via the spring. A limiting groove is located on the side of the equipment chamber, and the pedal passes through the limiting groove and is slidably connected to the protective cylinder.
[0007] As a preferred embodiment of the circular three-dimensional storage rack of this utility model, a one-way bearing is provided inside the bushing, and the pedal and the drive shaft are rotatably connected through the one-way bearing.
[0008] As a preferred embodiment of the circular three-dimensional storage rack of this utility model, the lower end surface of the pedal and the upper end surface of the bottom of the equipment room are provided with positioning posts that cooperate with springs, and the upper and lower ends of the springs are sleeved on the positioning posts.
[0009] As a preferred embodiment of the circular three-dimensional storage rack of this utility model, the storage rack has a cylindrical structure, storage compartments are provided on the side of the storage rack, a first partition is provided between adjacent storage compartments, a drying chamber is provided in the center of the storage rack, a breathable mesh plate is provided between the drying chamber and the storage compartments, and the dehumidification component includes a desiccant cylinder and a sealing cap, and the dehumidification component is detachably installed in the drying chamber.
[0010] As a preferred embodiment of the circular three-dimensional storage rack of this utility model, the desiccant cylinder is a hollow cylindrical structure, the side wall of the desiccant cylinder is a honeycomb structure, the top of the desiccant cylinder is provided with a hook, the bottom of the desiccant cylinder is provided with a first hanging rod, and the bottom of the sealing cap is provided with a second hanging rod.
[0011] As a preferred embodiment of the circular three-dimensional storage rack of this utility model, the side end face of the sealing cover is provided with an external thread, the top inner end face of the drying chamber is provided with an internal thread that mates with the sealing cover, and the top of the sealing cover is provided with a handle.
[0012] As a preferred embodiment of the circular three-dimensional storage rack of this utility model, a ladder is provided on the side end face of the protective cylinder.
[0013] Compared with the prior art, the beneficial effects of this utility model are as follows:
[0014] 1. This utility model achieves the rotation of the storage rack through a drive component. When the user steps on the pedal, it drives the transmission shaft to rotate, which in turn drives the second rotating shaft to rotate through the first and second toothed umbrellas, causing the storage rack to rotate so that different positions face the access port. This design facilitates the retrieval of goods on the storage rack, while goods that do not need to be retrieved are located inside the protective cylinder, which can reduce their impact from dust and bumps, and improve the protection of stored goods. A one-way bearing is set in the bushing so that the pedal can drive the storage rack to rotate when it is stepped on, and the pedal will not drive the storage rack to rotate in the opposite direction when it bounces up under the return action of the spring. This feature allows the user to quickly switch the storage rack to different areas, improving the convenience and efficiency of operation.
[0015] 2. The storage rack of this utility model has a cylindrical structure with a central drying chamber separated from the side storage compartments by a breathable mesh panel. The dehumidification component includes a desiccant cylinder and a sealing cap, which are detachably installed inside the drying chamber. Desiccant is filled into the desiccant cylinder, which absorbs moisture from the storage compartments through the breathable mesh panel, thereby improving storage efficiency and extending the storage time of goods. The desiccant cylinder has a hollow cylindrical structure with honeycomb-shaped side walls, a hook at the top, a first hanging rod at the bottom, and a second hanging rod at the bottom of the sealing cap. Multiple desiccant cylinders can be connected in series by hooking them onto the first hanging rod, allowing for flexible combinations based on the depth of the drying chamber. Hooking them onto the second hanging rod allows the desiccant cylinders to be connected in series with the sealing cap. This series-connected desiccant cylinder design facilitates the replacement of individual desiccant cylinders, avoiding waste caused by uneven desiccant consumption. Furthermore, the detachable structure reduces the required installation height, making it easier to install and replace the desiccant cylinders. Attached Figure Description
[0016] Figure 1 This is a schematic diagram of the overall structure of this utility model;
[0017] Figure 2 This is a cross-sectional structural diagram of the present invention;
[0018] Figure 3 This is a front view of the present invention;
[0019] Figure 4 For the present utility model Figure 3 Cross-sectional view of the middle section (BB);
[0020] Figure 5 For the present utility model Figure 4 CC section view;
[0021] Figure 6 For the present utility model Figure 2 Enlarged view of point A in the middle;
[0022] Figure 7 This is a schematic diagram of the desiccant cylinder structure of this utility model;
[0023] Figure 8 For the present utility model Figure 5 Enlarged view of point D in the middle.
[0024] In the diagram: 1. Protective cylinder; 101. Storage chamber; 1011. Shaft hole; 1012. Access port; 102. Equipment chamber; 103. Ladder; 104. Limiting slide groove; 105. Second partition; 2. Storage rack; 201. Storage compartment; 202. First partition; 203. Breathable mesh plate; 204. Second rotating shaft; 205. First toothed umbrella; 206. Drying chamber; 207. First rotating shaft; 3. Dehumidification assembly; 301. Desiccant cylinder; 3011. Hook; 3012. First hanging rod; 302. Sealing cover; 3021. Handle; 3022. Second hanging rod; 4. Drive assembly; 401. Pedal; 4011. Bushing; 4012. One-way bearing; 4013. Positioning post; 402. Spring; 403. Drive shaft; 404. Shaft seat; 405. Second toothed umbrella. Detailed Implementation
[0025] Please see Figures 1-8 A circular three-dimensional storage rack includes a protective cylinder 1 and a storage rack 2. A dehumidification component 3 is detachably installed inside the storage rack 2, and a drive component 4 is installed inside the protective cylinder 1.
[0026] The drive assembly 4 includes a pedal 401, a spring 402, a drive shaft 403, and a bearing seat 404. A first rotating shaft 207 is provided at the bottom of the storage rack 2. A second partition 105 is provided inside the protective cylinder 1, dividing the protective cylinder 1 into a storage chamber 101 and an equipment chamber 102. An access port 1012 is provided on the side end face of the storage chamber 101. A shaft hole 1011 that mates with the first rotating shaft 207 is provided at the bottom of the storage chamber 101. A second rotating shaft 204 is provided at the bottom of the first rotating shaft 207, and a first toothed bevel 205 is provided on the second rotating shaft 204. The bearing seat 404... The drive shaft 403 is fixedly installed at the bottom of the equipment chamber 102. It passes through the bearing seat 404 and is rotatably connected to it. The drive shaft 403 is provided with a second toothed bevel 405 that meshes with the first toothed bevel 205. The pedal 401 is provided with a bushing 4011. The pedal 401 is installed on the drive shaft 403 through the bushing 4011. The spring 402 is installed between the pedal 401 and the protective cylinder 1. The pedal 401 is elastically connected to the protective cylinder 1 through the spring 402. The side of the equipment chamber 102 is provided with a limiting groove 104. The pedal 401 passes through the limiting groove 104 and is slidably connected to the protective cylinder 1.
[0027] By stepping on the pedal 401, the drive shaft 403 is rotated. The drive shaft 403 drives the second rotating shaft 204 to rotate through the first toothed umbrella 205 and the second toothed umbrella 405, thereby driving the storage rack 2 to rotate. This causes different positions on the storage rack 2 to face the access port 1012, making it convenient to retrieve goods from the storage rack 2. Goods that do not need to be retrieved are located inside the protective cylinder 1, reducing their exposure to dust and impacts.
[0028] Furthermore, a one-way bearing 4012 is provided inside the bushing 4011, and the pedal 401 and the drive shaft 403 are rotatably connected through the one-way bearing 4012.
[0029] When the pedal 401 is pressed down, it can drive the storage rack 2 to rotate. When the pedal 401 bounces up under the reset action of the spring 402, it will not drive the storage rack 2 to rotate in the opposite direction, so that the user can quickly switch the storage rack 2 to different areas.
[0030] Furthermore, the lower end face of the pedal 401 and the upper bottom end face of the equipment chamber 102 are provided with positioning posts 4013 that cooperate with the spring 402, and the upper and lower ends of the spring 402 are sleeved on the positioning posts 4013.
[0031] The positioning post 4013 prevents the spring 402 from slipping, thus ensuring that the spring 402 remains stable in place even when the pedal 401 is repeatedly stepped on, thereby extending the service life of the equipment.
[0032] Furthermore, the storage rack 2 has a cylindrical structure, and storage compartments 201 are provided on the side of the storage rack 2. A first partition 202 is provided between adjacent storage compartments 201. A drying chamber 206 is provided in the center of the storage rack 2. A breathable mesh plate 203 is provided between the drying chamber 206 and the storage compartments 201. The dehumidification component 3 includes a desiccant cylinder 301 and a sealing cap 302. The dehumidification component 3 is detachably installed in the drying chamber 206.
[0033] By filling the desiccant cylinder 301 with desiccant, the desiccant passes through the breathable mesh 203 and absorbs the moisture in the storage compartment 201, thereby improving the storage effect and extending the storage time of goods.
[0034] Furthermore, the desiccant cylinder 301 is a hollow cylindrical structure filled with desiccant. The side wall of the desiccant cylinder 301 has a honeycomb structure. A hook 3011 is provided on the top of the desiccant cylinder 301, a first hanging rod 3012 is provided on the bottom of the desiccant cylinder 301, and a second hanging rod 3022 is provided on the bottom of the sealing cap 302.
[0035] By hanging the hook 3011 of the desiccant cartridge 301 on the first hanging rod 3012, multiple desiccant cartridges 301 can be connected in series, allowing the desiccant cartridges 301 to be freely combined according to the depth of the drying chamber 206. By hanging the hook 3011 on the second hanging rod 3022, the desiccant cartridges 301 can be connected in series with the sealing cap 302. The series-connected desiccant cartridges 301 facilitate the replacement of a single desiccant cartridge 301, avoiding waste caused by uneven desiccant consumption. In addition, the detachable structure reduces the required installation height, thereby facilitating the installation and replacement of the desiccant cartridges 301.
[0036] Furthermore, the side end face of the sealing cover 302 is provided with external threads, the top inner end face of the drying chamber 206 is provided with internal threads that mate with the sealing cover 302, and the top of the sealing cover 302 is provided with a handle 3021.
[0037] The handle 3021 allows for easy rotation of the sealing cover 302, facilitating the installation and removal of the sealing cover 302 and the replacement of the desiccant cartridge 301 below.
[0038] Furthermore, a ladder 103 is provided on the side end face of the protective cylinder 1.
[0039] The ladder 103 allows for easy access to goods in the high storage compartment 201, and also facilitates climbing onto the protective cylinder 1 to replace the dehumidification component 3 on top, further enhancing the convenience of the equipment.
[0040] When using this equipment, an appropriate amount of desiccant is loaded into the desiccant cylinder 301. Since the desiccant cylinder 301 is hollow and has a honeycomb structure on its side walls, it facilitates the desiccant's effectiveness. The desiccant cylinder 301 is hooked onto the first hanging rod 3012 at the bottom of another set of desiccant cylinders 301 via the hook 3011 at the top of the drying chamber 206. Multiple desiccant cylinders 301 are connected in series according to the depth of the drying chamber 206. The series-connected desiccant cylinders 301 are then placed into the drying chamber 206 in the center of the storage rack 2. The second hanging rod 3022 at the bottom of the sealing cover 302 is connected to the hook 3011 of the uppermost desiccant cylinder 301. Then, the external thread on the side end face of the sealing cover 302 engages with the internal thread on the inner end face of the top of the drying chamber 206. Using the handle 3021 at the top of the sealing cover 302, the sealing cover 302 is tightened onto the top of the drying chamber 206, completing the installation of the dehumidification component 3. The operator stands on the side of the protective cylinder 1 and steps on the pedal 40 at the limiting slide groove 104 on the side of the equipment chamber 102. The pedal 401 is mounted on the drive shaft 403 via a bushing 4011. A one-way bearing 4012 is provided inside the bushing 4011. When the pedal 401 is stepped on, the pedal 401 drives the drive shaft 403 to rotate. The second toothed bevel 405 on the drive shaft 403 meshes with the first toothed bevel 205 on the second rotating shaft 204, thereby driving the second rotating shaft 204 and the storage rack 2 connected thereto to rotate. Due to the function of the one-way bearing 4012, the pedal 401 will not drive the storage rack 2 to rotate in the opposite direction when the spring 402 returns to its original position. The storage rack 2 can be quickly switched to different areas so that the storage compartment 201 corresponding to the required goods faces the access port 1012. When the storage compartment 201 where the required goods are located rotates to the position of the access port 1012, the operator can directly take or store the goods from the access port 1012. For the goods in the storage compartment 201 at a high position, the operator can use the ladder 103 provided on the side end of the protective cylinder 1 to climb up and operate.
[0041] The above are merely preferred embodiments of the present utility model and are not intended to limit the present utility model. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.
Claims
1. A circular three-dimensional storage rack, comprising a protective cylinder (1) and a storage rack (2), characterized in that: The storage rack (2) is detachably equipped with a dehumidification component (3), and the protective cylinder (1) is equipped with a drive component (4). The drive assembly (4) includes a pedal (401), a spring (402), a drive shaft (403), and a bearing seat (404). A first rotating shaft (207) is provided at the bottom of the storage rack (2). A second partition (105) is provided inside the protective cylinder (1), dividing the protective cylinder (1) into a storage chamber (101) and an equipment chamber (102). An access port (1012) is provided on the side end face of the storage chamber (101). A shaft hole (1011) that mates with the first rotating shaft (207) is provided at the bottom of the storage chamber (101). A second rotating shaft (204) is provided at the bottom of the first rotating shaft (207), and a first toothed bevel (205) is provided on the second rotating shaft (204). The bearing seat (403)... 4) Fixedly installed at the bottom of the equipment room (102), the drive shaft (403) passes through the bearing seat (404) and is rotatably connected to it. The drive shaft (403) is provided with a second toothed bevel (405) that meshes with the first toothed bevel (205). The pedal (401) is provided with a bushing (4011). The pedal (401) is installed on the drive shaft (403) through the bushing (4011). The spring (402) is installed between the pedal (401) and the protective cylinder (1). The pedal (401) is elastically connected to the protective cylinder (1) through the spring (402). The side of the equipment room (102) is provided with a limiting groove (104). The pedal (401) passes through the limiting groove (104) and is slidably connected to the protective cylinder (1).
2. The circular three-dimensional storage rack as described in claim 1, characterized in that: A one-way bearing (4012) is provided inside the bushing (4011), and the pedal (401) and the drive shaft (403) are rotatably connected through the one-way bearing (4012).
3. The circular three-dimensional storage rack as described in claim 1, characterized in that: The lower end face of the pedal (401) and the upper bottom end face of the equipment chamber (102) are provided with positioning posts (4013) that cooperate with the spring (402), and the upper and lower ends of the spring (402) are sleeved on the positioning posts (4013).
4. The circular three-dimensional storage rack as described in claim 1, characterized in that: The storage rack (2) has a cylindrical structure. Storage compartments (201) are provided on the side of the storage rack (2). A first partition (202) is provided between adjacent storage compartments (201). A drying chamber (206) is provided in the center of the storage rack (2). A breathable mesh plate (203) is provided between the drying chamber (206) and the storage compartments (201). The dehumidification component (3) includes a desiccant cylinder (301) and a sealing cap (302). The dehumidification component (3) is detachably installed in the drying chamber (206).
5. A circular three-dimensional storage rack as described in claim 4, characterized in that: The sidewall of the desiccant cylinder (301) has a honeycomb structure. The top of the desiccant cylinder (301) is provided with a hook (3011), the bottom of the desiccant cylinder (301) is provided with a first hanging rod (3012), and the bottom of the sealing cap (302) is provided with a second hanging rod (3022).
6. The circular three-dimensional storage rack as described in claim 5, characterized in that: The sealing cover (302) has an external thread on its side end face, the drying chamber (206) has an internal thread on its top inner end face that mates with the sealing cover (302), and the sealing cover (302) has a handle (3021) on its top.
7. A circular three-dimensional storage rack as described in claim 1, characterized in that: A ladder (103) is provided on the side end face of the protective cylinder (1).