Air cooling device for bio-based degradable material
By incorporating cable management channels, reversing channels, decorative covers, rubber pads, and protective frames into the bio-based biodegradable material cooling device, the problem of chaotic cable management is solved, the stability, safety, and cooling efficiency of the equipment are improved, and the lifespan of the cables is extended.
Patent Information
- Application Number
- CN202520263181.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-19
- Publication Date
- 2026-01-30
- Estimated Expiration
- 2035-02-19
AI Technical Summary
Poor wire management in existing bio-based biodegradable material cooling devices leads to tangled and messy wires, affecting equipment stability and safety, and making maintenance difficult.
The design incorporates cable management channels and reversing channels to organize power cords, and includes decorative covers and rubber pads to protect the wires. The fan assembly is equipped with a protective frame, and the air outlet duct is connected via a flange, employing a modular design.
Effectively organize cables to prevent tangling and damage, improve equipment stability and safety, reduce maintenance costs, extend cable life, and enhance cooling efficiency and equipment durability.
Smart Images

Figure CN223855996U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of air cooling device, especially a biological base degradable material air cooling device. BACKGROUND
[0002] With the continuous enhancement of environmental protection consciousness, the application of biological base degradable material has been widely concerned. Biological base degradable material gradually becomes an important material to replace traditional plastics due to its degradable, non-toxic and other advantages. However, in the production process of biological base degradable material, cooling is a crucial step. In the working process of the existing biological base degradable material cooling device, various operations such as cooling fan, temperature control system, etc. are usually driven by electricity. However, due to the improper layout and management of the electric wire, the electric wire often appears winding and disorderly, causing unstable operation of the equipment, difficult maintenance, and even potential safety hazards.
[0003] Although there are cooling devices applied in the production process of biological base degradable material in the market at present, the electric wire management function of most equipment is still weak. The storage problem of electric wire and cable cannot be effectively solved. The exposed electric wire not only affects the appearance, but also is easy to be disturbed and damaged in the production process, and even affects the normal operation and service life of the cooling device. Therefore, it is necessary to improve the existing cooling device in order to improve the storage and arrangement effect of the electric wire, enhance the safety, reliability and service life of the equipment, and reduce the maintenance cost.
[0004] Therefore, the present application is produced. UTILITY MODEL CONTENT
[0005] (I) Technical problem solved
[0006] The purpose of the present application is to provide a biological base degradable material air cooling device, which at least solves the problem of easy disorder of electric wire and lack of effective storage function of the existing air cooling device.
[0007] (II) Technical scheme
[0008] To solve the above technical problems, the utility model provides the following technical scheme:
[0009] The application provides a kind of biological base degradation material air cooling device, including box, the box one end is fixedly arranged with air outlet pipe, the other end of the box is provided with cooling assembly, the cooling assembly includes shell, the shell bottom is provided with cold water inlet and cold water outlet, the shell inside is provided with condenser pipe, the front end of the shell is provided with fan assembly, the fan assembly is fixedly provided with power cord for driving its work, the side end surface of the shell is provided with a plurality of wire arrangement grooves in horizontal direction, and the end surface of the same side of the shell is provided with reversing groove for power cord reversing vertically to the wire arrangement groove, the reversing groove is connected and passes through the wire arrangement groove.
[0010] In further schemes, the groove depth of the wire arrangement groove and the reversing groove is not less than the diameter of the power cord.
[0011] In further schemes, the wire arrangement groove is detachably provided with facing cover on the end surface of the shell, which covers the wire arrangement groove and the reversing groove.
[0012] In further schemes, the facing cover is detachably fixed on the side end surface of the shell through mortise and tenon structure.
[0013] In further schemes, the mortise and tenon structure includes trapezoidal protrusion fixedly arranged on the facing plate and recess adapted to the shape of the protrusion on the shell.
[0014] In further schemes, the surface of the wire arrangement groove and the reversing groove is fixedly provided with rubber pad.
[0015] In further schemes, the fan assembly includes fan blade, and the surface of the fan blade is fixedly provided with protective frame.
[0016] In further schemes, the air outlet pipe and the box are connected and fixed through flange plate.
[0017] (Three) beneficial effects
[0018] Compared with the prior art, the utility model has the following beneficial effects:
[0019] The innovative design solves the problems of power cord disorder and lack of effective storage function in existing cooling devices, with significant beneficial effects. First, the design of the wire management groove and the reversing groove can effectively guide and store the power cord, avoiding entanglement, damage or electrical failure caused by excessive bending, thereby improving the stability and safety of the equipment. Second, the setting of the veneer cover not only improves the appearance of the device and protects the power cord from the external environment, but also facilitates maintenance and reduces maintenance costs in later use. In addition, the application of rubber pads effectively reduces the friction between the power cord and the groove wall, prolongs the service life of the power cord, and improves the durability and reliability of the device. The protective design of the fan assembly improves safety, prevents foreign matter from entering the fan interior, and ensures the stability and efficiency of the equipment during long-term operation.
[0020] The specific embodiments of the present application will be described in further detail below with reference to the accompanying drawings. BRIEF DESCRIPTION OF DRAWINGS
[0021] Among them:
[0022] Figure 1 is the overall structure of the present application Figure 1 ;
[0023] Figure 2 is the overall structure of the present application Figure 2 ;
[0024] Figure 3 is the overall structure of the present application
[0025] Figure 4 is the overall structure of the present application Figure 1 partial enlarged schematic view.
[0026] Label explanation:
[0027] 1, box body;
[0028] 2, cooling assembly; 21, shell; 22, cold water inlet; 23, cold water outlet; 24, condenser pipe; 25, fan assembly; 251, fan blade; 252, protective frame;
[0029] 3, air outlet pipe; 4, power cord; 5, wire management groove; 6, reversing groove; 7, veneer; 8, rubber pad;
[0030] 9, mortise and tenon structure; 91, protrusion; 92, groove;
[0031] 10, flange. DETAILED DESCRIPTION
[0032] In order to make the technical problems, technical schemes and beneficial effects of the utility model clearer and more explicit, the utility model will be further described in detail below in combination with the drawings and examples. It should be understood that the specific examples described herein are only used to explain the utility model and not to limit the utility model.
[0033] The utility model provides a kind of biological base degradation material air cooling device, to solve the problem of power cord 4 confusion, lack of effective storage function in existing cooling device. By optimizing the structure of cooling device, the application not only can effectively arrange power cord 4, avoid the entanglement of cable, damage, also enhance the safety, stability and service life of equipment.
[0034] As Figure 1 As shown in the figure, biological base degradation material air cooling device is mainly composed of box 1, cooling assembly 2, fan assembly 25, power cord 4 management system etc. Box 1 is as the external protective shell 21 of device, inside integrated cooling system and power cord 4 arrangement system. One end of box 1 is fixedly provided with air outlet pipe 3, for cooling airflow is delivered to the processing area of biological base degradation material, realizes efficient cooling. The other end of box 1 is provided with cooling assembly 2. The main function of cooling assembly 2 is to heat absorption and release heat through condenser pipe 24 circulation cooling liquid, to maintain the stable temperature of system.
[0035] The bottom of the shell 21 of cooling assembly 2 is provided with cold water inlet 22 and cold water outlet 23, guarantees the flow and heat exchange function of cooling liquid. Condenser pipe 24 is installed inside cooling assembly 2, and condenser pipe 24 is responsible for guiding cooling liquid to cooling site, thereby improving the cooling speed of biological base degradation material. At the front end of shell 21, fan assembly 25 is provided, and the fan generates airflow by rapid rotation, and uniformly delivers cooling air to the component to be cooled.
[0036] As Figure 3 As shown in the figure, one of the core improvements of the application is the effective management of power cord 4. Power cord 4 is installed on fan assembly 25, and the running direction of power cord 4 is reasonably arranged through wire slot 5 and reversing slot 6 design, to avoid power cord 4 confusion or entanglement, thereby improving the running stability of equipment.
[0037] Wire slot 5 is arranged on the end face of one side of shell 21, and the thickness and arrangement space of power cord 4 are fully considered during design, so that it can accommodate power cord 4 of a certain diameter without excessive bending or loosening. The groove depth is matched with the diameter of power cord 4, to ensure that power cord 4 can smoothly pass through the channel and be stably fixed.
[0038] To further organize the power line 4, the wire management groove 5 is distributed along the horizontal plane, and the reversing groove 6 is designed to be vertically arranged on one side of the wire management groove 5. The function of the reversing groove 6 is to guide the power line 4 to turn, so that the power line 4 can orderly go to different parts of the shell 21, avoiding the situation of crossing and mutual entanglement.
[0039] As shown in Figure 1 and Figure 3 , the setting of the finish cover 7 further optimizes the storage and protection of the power line 4. The finish cover 7 is fixed with the shell 21 through the mortise and tenon structure 9, which includes the trapezoidal protrusion 91 arranged on the finish cover 7 and the groove 92 on the end face of the shell 21. This connection method not only ensures the firm fixation of the finish cover 7, but also facilitates disassembly and maintenance. Users can easily remove the finish cover 7 for power line 4 adjustment or inspection, which is convenient for disassembly and reinstallation, not only enhances the appearance protection of power line 4 storage, but also facilitates user maintenance and adjustment. The material selection of the finish cover 7 takes into account the requirements of high temperature resistance and corrosion resistance, ensuring that it still maintains good performance during long-term use.
[0040] As shown in Figure 3 , the application of the rubber pad 8 on the surface of the wire management groove 5 and the reversing groove 6 can reduce the friction between the power line 4 and the groove wall, reduce wear and prolong the service life of the power line 4. In addition, the rubber pad 8 also has a certain elasticity, which can buffer the vibration when the fan is running at high speed, improving the stability of the entire system.
[0041] The fan assembly 25 in the device is the key to realize efficient cooling. The fan assembly 25 includes a fan blade 251 and a protective frame 252. The fan blade 251 is driven by a motor to rotate at high speed, generating a strong airflow to introduce cooling air into the cooling system, thereby quickly removing heat and helping the material to cool down quickly.
[0042] As shown in Figure 1 , in order to improve the safety of the fan assembly 25, the fan blade 251 surface is designed with a protective frame 252, which can effectively prevent foreign matter from entering the fan system and avoid fan failure caused by foreign matter interference. The material of the protective frame 252 is high-temperature-resistant and corrosion-resistant metal, which ensures that it will not deform or be damaged due to high temperature or chemical corrosion during long-term operation.
[0043] The fan will vibrate during operation, and the protective frame 252 also has a certain anti-vibration design to ensure the stability of the equipment. The design of the protective frame 252 not only improves the safety of the equipment, but also reduces the noise during the operation of the fan.
[0044] As shown in Figure 2As shown, the air outlet duct 3 is connected to the housing 1 via flange 10. The flange 10 connection design ensures the airtightness between the air outlet duct 3 and the housing 1, preventing cold air leakage and improving cooling efficiency. The sealing part of the flange 10 is equipped with a high-density sealing gasket, which can maintain excellent sealing performance for a long time under high pressure and high temperature operating environments, ensuring the stable operation of the cooling system.
[0045] The air outlet duct 3 can be fixed to the housing 1 via the flange 10 connection, and can also be disassembled and maintained when needed. The flange 10 connection is highly adaptable and can be customized according to the needs of different devices, facilitating connection with other equipment.
[0046] This application also adopts a modular design approach. All cooling components 2, fan components 25, and power cord 4 management systems are standardized, making disassembly, maintenance, and replacement of the device more convenient. The interfaces of each component are precisely matched to ensure error-free installation and avoid instability caused by interface mismatch.
[0047] Modular design allows the equipment to be flexibly configured to meet different production needs. For example, under different cooling requirements, users can adjust the number of fans, the arrangement of cooling components 2, or the layout of power lines 4 according to actual conditions, greatly improving the adaptability and scalability of the equipment.
[0048] Through optimized design, the problem of disorganized power cord management in traditional cooling devices was successfully solved. The design of the cable management trough 5, reversing trough 6, and decorative cover 7 not only effectively organizes the power cord 4, preventing tangling and damage, but also improves the aesthetics and safety of the equipment. The application of rubber pads 8 reduces friction and wear on the power cord 4, extending its service life.
[0049] The safety protection design of the fan assembly 25 improves the stability and reliability of the system, prevents foreign objects from entering the fan system, and reduces equipment noise. The connection between the air outlet duct 3 and the flange 10 of the housing 1 ensures maximum cooling efficiency.
[0050] In summary, the air-cooling device for bio-based degradable materials provided in this application has significant advantages in terms of power cord management, safety, and cooling efficiency. Through modular design and precise structural optimization, this device not only meets the cooling requirements of bio-based degradable materials but also possesses better operability, maintainability, and a longer service life, making it suitable for widespread application in various industrial production processes.
[0051] The utility model has been described exemplarily above in combination with the drawings, obviously, the utility model specific implementation is not limited by the above-mentioned mode, as long as various non-essential improvements of method concept and technical scheme of adopting the utility model or the utility model concept and technical scheme are directly applied to other occasions without improvement, all are within the protection scope of the utility model.
Claims
1. A bio-based degradable material air cooling device, characterized in that, The utility model provides a cooling box, including box (1), one end of box (1) is fixedly arranged with air outlet pipe (3), and the other end of box (1) is provided with cooling assembly (2), cooling assembly (2) includes casing (21), the bottom of casing (21) is provided with cold water inlet (22) and cold water outlet (23), and the inside of casing (21) is provided with condenser pipe (24), and the front end of casing (21) is provided with fan assembly (25), and the power cord (4) of driving its work is fixedly arranged on fan assembly (25), and the side end surface of casing (21) is provided with a plurality of wire arrangement groove (5) in horizontal direction, and the end surface of the same side of casing (21) is provided with the reversing groove (6) for power cord (4) turning on the vertical of wire arrangement groove (5), and reversing groove (6) is connected and penetrates wire arrangement groove (5).
2. A bio-based degradable material air cooling device according to claim 1, characterized in that, The depth of the wire arrangement groove (5) and the reversing groove (6) is not less than the diameter of the power cord (4).
3. A bio-based degradable material air cooling device according to claim 2, characterized in that, The wire arrangement groove (5) is detachably arranged on the end surface of the casing (21) and is provided with a decorative cover (7) for shielding the wire arrangement groove (5) and the reversing groove (6).
4. A bio-based degradable material air cooling device according to claim 3, characterized in that, The decorative cover (7) is detachably fixed on the side end surface of the casing (21) by a mortise and tenon structure (9).
5. A bio-based degradable material air cooling device according to claim 4, characterized in that, The mortise and tenon structure (9) includes a trapezoidal protrusion (91) fixedly arranged on the decorative cover (7) and a groove (92) adapted to the shape of the protrusion (91) on the casing (21).
6. A bio-based degradable material air cooling device according to claim 1, characterized in that, The surface of the wire arrangement groove (5) and the reversing groove (6) is fixedly provided with a rubber pad (8).
7. A bio-based degradable material air cooling device according to claim 1, characterized in that: The fan assembly (25) includes a fan blade (251) fixedly provided with a protective frame (252) on the surface.
8. A bio-based degradable material air cooling device according to claim 1, characterized in that, The air outlet pipe (3) and the box (1) are connected and fixed by a flange (10).