Ventilation and heat dissipation shutter of energy storage integrated cabinet
By optimizing the card slot structure and using clamping limit components in the ventilation and cooling shutters of the energy storage integrated cabinet, the problem of reduced sealing caused by loosening between the card slot and the filter layer main body is solved, and stronger connection strength and higher ventilation and heat dissipation efficiency are achieved.
Patent Information
- Application Number
- CN202422108043.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-29
- Publication Date
- 2025-06-24
- Estimated Expiration
- 2034-08-29
AI Technical Summary
After the existing integrated energy storage cabinet ventilation and heat dissipation blinds are used for a long time or inserted and unplugged for multiple times, the coordination between the slot and the filter layer body may become loose, resulting in a decrease in sealing, affecting the dustproof effect, and posing a risk of dust penetration.
A comprehensive energy storage cabinet ventilation and cooling shutter is designed, adopting an optimized slot structure and clamping limiting assembly, which is connected to the filter layer body through clamping limiting assembly to ensure its stable and fixedness. The ventilation efficiency and cooling effect are improved through the "Z" type blade and an adjustable spacing control mechanism.
It effectively prevents dust from penetration, improves the strength of the connection between the outer frame assembly and the filter layer main body, ensures smooth ventilation path, reduces heat accumulation, improves heat dissipation efficiency, ensures stable operation of the equipment and extends service life.
Smart Images

Figure CN223023369U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to a ventilation and heat dissipation louver for an integrated energy storage cabinet, belonging to the technical field of ventilation and heat dissipation. Background Technique
[0002] The ventilation and heat dissipation louver for an integrated energy storage cabinet is a ventilation and heat dissipation device specifically designed for an energy storage system. Its main function is to effectively remove internal heat while ensuring the normal operation of the equipment inside the energy storage cabinet, and maintain the working temperature of the equipment within a safe range. This kind of louver usually adopts a high protection level design and has multiple functions such as rainproof, dustproof, and sandproof to adapt to the complex and changeable outdoor environment.
[0003] According to the plug-in dustproof device disclosed in the Chinese utility model patent CN212720247U; it includes: an outer frame assembly and a filter layer main body. Among them, the outer frame assembly is provided with a card slot, and the filter layer main body can be obliquely inserted into the card slot on the side of the outer frame assembly. A limiting mechanism is arranged on the outer frame assembly to limit the lateral deviation of the filter layer main body from the outer frame assembly. When in use, the filter layer main body can be obliquely inserted into the card slot from the side of the outer frame assembly, and the filter layer main body is limited by the card slot, and then the other parts of the filter layer main body are positioned by the limiting mechanism to prevent the filter layer main body from falling laterally. The installation and disassembly are very convenient, and the oblique loading method can make the dustproof device suitable for embedded installation and will not cause interference to the plugging of the filter layer main body.
[0004] Although a card slot and a limiting mechanism are designed to fix the filter layer main body, after long-term use or multiple pluggings and unpluggings, the fit between the card slot and the filter layer main body may become loose, resulting in a decrease in sealing performance, and further affecting the dustproof effect; in addition, if the design of the card slot is not fine enough, there may also be a risk of dust penetration from the gap. Content of the Utility Model
[0005] The technical problem to be solved by the utility model is: to provide a ventilation and heat dissipation louver for an integrated energy storage cabinet, optimize the structural design of the card slot, prevent dust penetration, and improve the connection strength between the outer frame assembly and the filter layer main body.
[0006] A ventilation and heat dissipation louver for an integrated energy storage cabinet of the utility model includes an outer frame assembly. The outer frame assembly is provided with a filter layer main body installation frame. The filter layer main body installation frame is rectangular. A filter layer main body is arranged inside the filter layer main body installation frame, and a waterproof structure is arranged outside the filter layer main body;
[0007] A clamping and limiting component is arranged outside the filter layer main body, and the clamping and limiting component is connected with the filter layer main body;
[0008] The outer frame assembly is provided with an installation hole group.
[0009] Furthermore, the outer frame assembly includes a positioning frame I and a positioning frame II. A number of blades are provided inside the positioning frame I. The blades are in a "Z" shape. Sawteeth and grooves are formed at both ends of the blades. An adjustable spacing control mechanism is provided between the blades.
[0010] One end of the blade is provided with a positioning post I and an adjusting post I. The positioning post I is hinged to the positioning frame I.
[0011] The adjustable spacing control mechanism includes a guiding and positioning strip. The guiding and positioning strip is rotatably connected to the adjusting post I. A guiding rail is provided on one side of the guiding and positioning strip. The positioning strip is slidably connected to the guiding rail.
[0012] The positioning frame I is provided with a long adjusting hole. An adjusting button is provided on one side of the positioning strip. The adjusting button is slidably connected to the long adjusting hole.
[0013] Furthermore, the installation hole group includes an oblong hole and a positioning hole. Vertical oblong holes are formed in the positioning frame I on the left side and the positioning frame II on the top. Horizontal positioning holes are formed in the positioning frame I on the right side and the positioning frame II on the bottom.
[0014] Furthermore, the filter layer main body includes a base body. A filter core paper is installed on one side of the base body. A support protection net is provided on the other side of the base body.
[0015] Furthermore, the clamping and limiting assembly includes a mounting plate. Two positioning plates are welded to the top of the mounting plate. A positioning sheet metal pin is movably connected inside the two positioning plates. A support handle is welded to the top of the positioning sheet metal pin. The support handle is located between the two positioning plates. An arc-shaped protection piece is welded to one side of the support handle.
[0016] The positioning sheet metal pin is connected to the base body.
[0017] Among them, the support handle is triangular.
[0018] The convex surface of the arc-shaped protection piece faces the support handle.
[0019] Furthermore,
[0020] The other end of the blade is provided with a positioning post II and an adjusting post II. The adjusting post II is in a driven connection with the positioning frame II.
[0021] Furthermore, the waterproof structure is a sealing strip.
[0022] Compared with the prior art, the beneficial effects of the present utility model are:
[0023] A ventilation and heat dissipation louver for an integrated energy storage cabinet of the present utility model. The combination of the outer frame assembly and the main body of the filter layer forms an effective ventilation path, ensuring smooth air circulation inside the integrated energy storage cabinet, effectively reducing the heat accumulation generated during the operation of the equipment, improving the heat dissipation efficiency of the system, thus ensuring the stable operation of the equipment and extending its service life. A ventilation and heat dissipation louver for an integrated energy storage cabinet is provided, with an optimized structural design of the card slot to prevent dust penetration. At the same time, the connection strength between the outer frame assembly and the main body of the filter layer is enhanced. BRIEF DESCRIPTION OF THE DRAWINGS
[0024] Figure 1 is a three-dimensional view of Embodiment 1 of the present utility model Figure Ⅰ ;
[0025] Figure 2 is a three-dimensional view of Embodiment 1 of the present utility model Figure Ⅱ ;
[0026] Figure 3 is the front view of Embodiment 1 of the present utility model;
[0027] Figure 4 is the exploded schematic diagram of the positioning frame II, the blade and the adjustable spacing control mechanism;
[0028] Figure 5 is the bottom view of Embodiment 1 of the present utility model;
[0029] Figure 6 is Figure 3 the cross-sectional view at A-A in
[0030] Figure 7 is the three-dimensional view of the clamping and limiting component;
[0031] Figure 8 is Figure 4 the partial enlarged view at B in
[0032] Figure 9 is Figure 4 the partial enlarged view at C in
[0033] Figure 10 is Figure 5 the partial enlarged view at D in
[0034] In the figure: 1. Outer frame assembly; 2. Main body of the filter layer; 3. Installation frame of the main body of the filter layer; 4. Waterproof structure; 5. Clamping and limiting component; 6. Group of mounting holes; 7. Adjustable spacing control mechanism;
[0035] 11. Positioning frame I; 12. Blade; 13. Sawtooth; 14. Groove; 15. Positioning frame II;
[0036] 111. Long strip adjustment hole;
[0037] 121. Positioning post I; 122. Adjusting post I; 123. Guide positioning strip; 124. Guide rail; 125. Positioning post II; 126. Adjusting post II;
[0038] 1231. Adjusting button;
[0039] 21. Substrate; 22. Filter core paper; 23. Support protection net;
[0040] 61. Waist-shaped hole; 62. Positioning hole;
[0041] 51. Mounting plate; 52. Positioning plate; 53. Positioning sheet metal pin; 54. Support handle; 55. Arc protection part. Detailed implementation mode
[0042] Embodiment 1
[0043] As Figures 1 to 10 shown, a ventilation and heat dissipation louver for an integrated energy storage cabinet of the present utility model, the outer frame assembly 1 is provided with a filter layer main body installation frame 3, the filter layer main body installation frame 3 is rectangular, and a waterproof structure 4 is provided outside the filter layer main body 2;
[0044] A clamping and limiting component 5 is provided outside the filter layer main body 2, and the clamping and limiting component 5 is in contact connection with the filter layer main body 2;
[0045] The outer frame assembly 1 is provided with an installation hole group 6.
[0046] The combination of the outer frame assembly 1 and the filter layer main body 2 forms an effective ventilation path, ensuring smooth air circulation inside the integrated energy storage cabinet, effectively reducing the heat accumulation generated during the operation of the equipment, improving the heat dissipation efficiency of the system, thereby ensuring the stable operation of the equipment and extending its service life;
[0047] The waterproof structure 4 provided outside the filter layer main body 2 effectively blocks the intrusion of external moisture and dust, keeps the inside of the cabinet clean and dry, reduces the risk of equipment failure caused by dust accumulation or moisture, and enhances the environmental adaptability and reliability of the equipment;
[0048] The installation hole group 6 provided on the outer frame assembly 1 and the clamping and limiting component 5 provided outside the filter layer main body 2 make the installation and replacement of the filter layer main body 2 simple and fast, and can be completed without complex tools or professional skills, greatly reducing the maintenance cost and time cost and improving the work efficiency;
[0049] The close connection design between the outer frame assembly 1 and the filter layer main body 2, and the firm fixation achieved through the clamping and limiting component 5 ensure that the louver is not easily loosened or detached during long-term use, guaranteeing the overall safety and stability of the equipment;
[0050] The filter layer main body installation frame 3 with a rectangular design not only meets the functional requirements, but also improves the appearance neatness and aesthetics of the integrated energy storage cabinet, conforms to the aesthetic standards of modern industrial design, and enhances the market competitiveness of the product.
[0051] As Figures 1 to 10 shown, as an optimization, the outer frame assembly 1 includes a positioning frame I 11 and a positioning frame II 15. A number of blades 12 are provided inside the positioning frame I 11. The blades 12 are in a "Z" shape. Sawteeth 13 and grooves 14 are provided at both ends of the blades 12. An adjustable spacing control mechanism 7 is provided between the blades 12;
[0052] One end of the blade 12 is provided with a positioning post I 121 and an adjustment post I 122. The positioning post I 121 is hinged to the positioning frame I 11;
[0053] The adjustable spacing control mechanism 7 includes a guiding and positioning strip 123. The guiding and positioning strip 123 is rotatably connected to the adjustment post I 122. A guiding rail 124 is provided on one side of the guiding and positioning strip 123. The positioning strip is slidably connected to the guiding rail 124;
[0054] The positioning frame I 11 is provided with a long adjusting hole 111. An adjusting button 1231 is provided on one side of the positioning strip. The adjusting button 1231 is slidably connected to the long adjusting hole 111.
[0055] By adopting the "Z" - shaped blade 12 design, not only the contact area between the blade 12 and the air is increased, but also the air can form a more complex flow path when passing through the louvers, thus enhancing the ventilation efficiency; meanwhile, an adjustable spacing control mechanism 7 is provided between the blades 12, allowing the user to adjust the angle of the blades 12 according to actual needs to adapt to different heat dissipation requirements and heat dissipation directions, improving the flexibility and adaptability of the device;
[0056] The sawteeth 13 and grooves 14 design at the edge of the blade 12 helps to reduce the resistance during air flow, and at the same time may generate a vortex effect, further promoting air mixing and heat dissipation, improving the aerodynamic performance, and making the heat dissipation effect more significant;
[0057] The adjustable spacing control mechanism 7 realizes the easy adjustment of the spacing between the blades 12 through the sliding connection of the guiding and positioning strip 123, the adjustment post I 122, the guiding rail 124, and the guiding and positioning strip 123 and the adjusting button 1231; the operator can adjust the direction of the blade 12 externally by operating the adjusting button 1231 without disassembly;
[0058] The design of the rotational pair connection between the positioning post I 121 and the positioning frame I 11 enables the blade 12 to rotate around the positioning post I 121 relative to the positioning frame I 11 during the adjustment process.
[0059] As shown Figures 1 to 10 in the figure, the mounting hole group 6 includes an oblong hole 61 and a positioning hole 62. The vertical oblong holes 61 are opened in the positioning frame I 11 on the left side and the positioning frame II 15 on the top, and the horizontal positioning holes 62 are opened in the positioning frame I 11 on the right side and the positioning frame II 15 on the bottom.
[0060] By opening the vertical mounting hole group 616 on the left and right edges of the outer frame assembly 1 and the horizontal mounting hole group 626 on the upper and lower edges, the installation of the outer frame assembly 1 allows for vertical and horizontal displacement deviations; to adapt to different installation scenarios;
[0061] The design of the vertical mounting hole group 61 and the horizontal mounting hole group 62 makes the selection and adjustment of bolts or other fasteners during the installation process more convenient; installers do not need to precisely measure the position of each installation point, and only need to pass the fasteners through the mounting hole group 6 and fix them, which greatly simplifies the installation process and improves the installation efficiency.
[0062] As shown Figures 1 to 10 in the figure, as an optimization, the clamping and limiting component 5 includes a mounting plate 51. Two positioning plates 52 are welded to the top of the mounting plate 51. A positioning sheet metal pin 53 is movably connected inside the two positioning plates 52. A support handle 54 is welded to the top of the positioning sheet metal pin 53. The support handle 54 is located between the two positioning plates 52. An arc-shaped protection piece 55 is welded to one side of the support handle 54;
[0063] The positioning sheet metal pin 53 is connected to the base body 21;
[0064] Among them, the support handle 54 is triangular;
[0065] The convex surface of the arc-shaped protection piece 55 faces the support handle 54.
[0066] Through the positioning plates 52 provided on the mounting plate 51 and the movably connected positioning sheet metal pin 53, the clamping and limiting component 5 can firmly fix the filter layer main body 2, preventing it from shifting or falling off during operation, thereby enhancing the overall stability and safety of the energy storage integrated cabinet ventilation and heat dissipation louvers;
[0067] The triangular shape design of the support handle 54 is convenient for users to grasp and operate, and also increases the contact area between the hand and the support handle 54, improving the comfort and stability of the operation; users can easily complete the installation, disassembly or adjustment of the filter layer main body 2 by simply lifting or rotating the support handle 54;
[0068] The setting of the arc-shaped protection piece 55, and its convex surface facing the support handle 54, effectively avoids the direct contact between the hand and the sharp edge during the use process by the user, reducing the risk of hand injury, which conforms to the ergonomic design principle.
[0069] As Figures 1 to 10 shown, as an optimization,
[0070] At the other end of the blade 12, a positioning post II 125 and an adjusting post II 126 are provided, and the adjusting post II 126 is connected to the positioning frame II 15.
[0071] The adjusting post II 126 at the other end of the blade 12 and the positioning frame II 15 are connected in a driven manner, so that the blade 12 can be finely adjusted in the vertical direction; this fine-tuning mechanism enables the spacing and angle of the blade 12 to be precisely adjusted according to specific requirements, thereby optimizing the ventilation effect and meeting the heat dissipation requirements in different scenarios;
[0072] Due to the driven connection between the adjusting post II 126 and the positioning frame II 15, users can adjust the blade 12 through simple operations such as rotation and sliding, without complex tools or professional skills; this greatly simplifies the adjustment process and improves the usage efficiency;
[0073] The tight fit between the positioning frame II 15 and the adjusting post II 126 ensures the stability of the blade 12 during the adjustment process, avoiding loosening or falling off caused by improper adjustment.
[0074] As Figures 1 to 10 shown, as an optimization, the filter layer main body 2 includes a base body 21, a filter core paper 22 is installed on one side of the base body 31, and a support protection net 23 is provided on the other side of the base body 21.
[0075] By installing the filter core paper 22 on one side of the base body 21, the filtering ability of the filter layer main body 2 is effectively enhanced; the filter core paper 22 can efficiently intercept and remove impurities such as dust and particles in the air, maintaining the cleanliness of the air inside the energy storage integrated cabinet, thereby improving the operation efficiency and stability of the equipment;
[0076] The support protection net 23 provided on the other side of the base body 21 not only provides additional support for the filter core paper 22 to prevent it from deforming or being damaged during long-term use, but also plays a protective role; the support protection net 23 can prevent external objects from directly hitting the filter core paper 22, extending the service life of the filter layer main body 2;
[0077] This modular design of the filter layer main body 2 makes the installation, disassembly and replacement of the filter core paper 22 and the support protection net 23 simple and fast; users can easily complete the replacement of the filter core paper 22 without disassembling the entire filter layer main body 2, reducing the maintenance cost and time cost;
[0078] The optimized design of the filter layer body 2 not only improves the filtering efficiency and the support and protection performance, but also enhances the overall performance through reasonable layout and structural design. For example, the combination of the support protection net 23 and the filter core paper 22 enables the air to form a more uniform flow when passing through the filter layer, further improving the heat dissipation effect and the ventilation efficiency.
[0079] As Figures 1 to 10 shown, as an optimization, the waterproof structure 4 is a sealing strip.
[0080] Working process or working principle:
[0081] Installation stage: Manually operate the support handle 54 to place the positioning sheet metal pin 53 in the open state, then integrally embed the filter layer body 2 into the filter layer body installation frame 3, and finally manually operate the support handle 54 to place the positioning sheet metal pin 53 in the closed state; fix the outer frame assembly 1 to the specified position through the vertical installation hole group 616 and the horizontal installation hole group 626;
[0082] Heat dissipation stage: After the heat dissipation cold air is filtered by the filter core paper 22 to remove some impurities, it enters the shutter through the "Z"-shaped blade 12. External personnel drive the external adjustment button 1231, which in turn drives the guiding positioning strip 123 to move along the guiding rail 124, thereby adjusting the angle between the "Z"-shaped blade 12 and the positioning frame II 15 to achieve heat dissipation in different directions in the internal equipment.
[0083] In the present utility model, the description of the directions and relative position relationships of the structures, such as the descriptions of front, back, left, right, up, and down, does not constitute a limitation to the present utility model, but is only for the convenience of description.
Claims
1. A ventilation and heat dissipation shutter for an energy storage integrated cabinet, characterized in that: The invention comprises an outer frame component (1), wherein the outer frame component (1) is provided with a filter layer main body installation frame (3), the filter layer main body installation frame (3) is rectangular, a filter layer main body (2) is arranged inside the filter layer main body installation frame (3), and a waterproof structure (4) is arranged outside the filter layer main body (2); A clamping and limiting assembly (5) is provided on the outside of the filter layer body (2), and the clamping and limiting assembly (5) is connected to the filter layer body (2); The outer frame component (1) is provided with a mounting hole group (6).
2. The energy storage integrated cabinet ventilation and heat dissipation shutter according to claim 1, characterized in that: The outer frame assembly (1) comprises a positioning frame I (11) and a positioning frame II (15). A plurality of blades (12) are arranged in the positioning frame I (11). The blades (12) are in a "Z" shape. Saw teeth (13) and grooves (14) are provided at both ends of the blades (12). An adjustable spacing control mechanism (7) is provided between the blades (12). A positioning column I (121) and an adjusting column I (122) are provided at one end of the blade (12), and the positioning column I (121) is hinged to the positioning frame I (11); The adjustable spacing control mechanism (7) comprises a guide positioning bar (123), wherein the guide positioning bar (123) is rotatably connected to the adjustment column I (122), a guide rail (124) is provided on one side of the guide positioning bar (123), and the positioning bar and the guide rail (124) are slidably connected; The positioning frame I (11) is provided with a long strip adjustment hole (111), and an adjustment button (1231) is provided on one side of the positioning strip. The adjustment button (1231) is slidably connected to the long strip adjustment hole (111).
3. The energy storage integrated cabinet ventilation and heat dissipation shutter according to claim 2, characterized in that: The mounting hole group (6) includes waist-shaped holes (61) and positioning holes (62). The positioning frame I (11) located on the left and the positioning frame II (15) located on the top are provided with vertical waist-shaped holes (61), and the positioning frame I (11) located on the right and the positioning frame II (15) located on the bottom are provided with horizontal positioning holes (62).
4. The ventilation and heat dissipation shutter of the energy storage integrated cabinet according to claim 3, characterized in that: The filter layer body (2) comprises a base body (21), a filter core paper (22) is installed on one side of the base body (21), and a supporting protection net (23) is provided on the other side of the base body (21).
5. The ventilation and heat dissipation shutter of the energy storage integrated cabinet according to claim 4, characterized in that: The clamping and limiting assembly (5) comprises a mounting plate (51), two positioning plates (52) are welded on the top of the mounting plate (51), positioning sheet metal pins (53) are movably connected inside the two positioning plates (52), a supporting handle (54) is welded on the top of the positioning sheet metal pin (53), the supporting handle (54) is located between the two positioning plates (52), and an arc-shaped protective member (55) is welded on one side of the supporting handle (54); The positioning sheet metal pin (53) is connected to the base (21); Wherein, the support handle (54) is triangular in shape; The convex surface of the arc-shaped protection member (55) faces the support handle (54).
6. The energy storage integrated cabinet ventilation and heat dissipation shutter according to claim 5, characterized in that: The other end of the blade (12) is provided with a positioning column II (125) and an adjusting column II (126), and the adjusting column II (126) is connected to the positioning frame II (15).
7. The ventilation and heat dissipation shutter of the energy storage integrated cabinet according to claim 6, characterized in that: The waterproof structure (4) is a sealing strip.
Citation Information
Patent Citations
Pulling-inserting type dustproof device
CN212720247U