Louver assembly and outdoor energy storage equipment

By designing curved flow channels, inclined bottom and side surfaces, and water retaining plates in the shutter assembly, the problem of rainwater entering the inside is solved, better waterproofness and ventilation effects are achieved, the internal structure is protected, and maintenance costs are reduced.

CN223446928UActive Publication Date: 2025-10-17EVE ENERGY CO LTD
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Patent Information

Application Number
CN202422673482.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-01
Publication Date
2025-10-17
Estimated Expiration
2034-11-01

AI Technical Summary

Technical Problem

The flow channel design of the existing shutter assembly causes a large amount of rainwater to enter the inside, resulting in poor waterproof performance and damage or destruction of the structure caused by rainwater splashing into the inside.

Method used

The flow channel design is set by bending upward in the middle of the flow channel, allowing air to flow freely from the outside of the first window to the inside or from the inside of the first window to the outside. The middle of the flow channel is bent upward, the bottom and side surfaces are set in a decreasing manner, the water baffle is set at an angle, and the flow channel is designed to be inclined to block and guide rainwater.

Benefits of technology

The waterproofness and ventilation effect of the shutter components are improved, the erosion and damage of the internal structure by rainwater are reduced, the service life is extended and the maintenance cost is reduced.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model provides a blind window assembly and outdoor energy storage equipment, the blind window assembly comprises a first window body and a frame body, the first window body forms a plurality of flow channels arranged at intervals, each flow channel is used for communicating the inner side and the outer side of the first window body, the middle of each flow channel is bent upwards, and the frame body is arranged in the frame body. Rainwater flowing into the first window body from the channel is reduced. The frame body is used for installing the first window body, and the frame body is provided with a first side face opposite to the bottom face of the first window body and arranged in a spaced mode, so that rainwater entering the inner side of the first window body can be discharged from a gap between the bottom face and the first side face, and it is avoided that the rainwater gathers on the inner side of the first window body for a long time; and the distance between the first side surface and the bottom surface is gradually reduced, so that splashing rainwater is prevented from directly splashing into the first window body, and the waterproofness of the shutter assembly is improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to energy storage technical field, concretely relates to louver assembly and outdoor energy storage equipment. BACKGROUND

[0002] Louver assembly is used for ventilation waterproof, and is widely used in outdoor energy storage equipment.In related technologies, louver assembly forms a plurality of flow channels and a drainage port for connecting the inside and outside thereof, however, the flow channels are usually arranged in a straight line, so that a large amount of rainwater flows to the inside of the louver assembly through the flow channels, in addition, rainwater is easy to splash to the inside of the louver assembly from the drainage port, so that the waterproof performance of the louver assembly is poor. SUMMARY

[0003] The embodiment of the utility model provides a kind of louver assembly and outdoor energy storage equipment, to solve the problem of related technologies, a large amount of rainwater enters the inside of louver assembly through flow channel and drainage port, leading to the poor waterproof performance of louver assembly.

[0004] In the first aspect, the embodiment of the utility model provides a kind of louver assembly.

[0005] In an embodiment, the louver assembly comprises:

[0006] The first window body is formed with a plurality of spaced flow channels, each of the flow channels is used to connect the inside and outside of the first window body, and the middle of each flow channel is arranged upwardly bent;

[0007] The frame is used for mounting the first window body, and the frame has a first side surface opposite to and spaced from the bottom surface of the first window body, wherein, from the outside to the inside of the first window body, the distance between the first side surface and the bottom surface decreases.

[0008] In an embodiment, from the outside to the inside of the first window body, the bottom surface is arranged downwardly inclined.

[0009] In an embodiment, the first window body comprises:

[0010] The window body is formed with a plurality of spaced flow channels, the window body is connected with the frame, and the bottom of the window body is spaced from the first side surface;

[0011] The water baffle is connected with the bottom of the window body, from the outside to the inside of the first window body, the water baffle is arranged downwardly inclined, and the water baffle forms the bottom surface.

[0012] In an embodiment, each of the flow channels comprises a first flow channel and a second flow channel connected in sequence along the direction from the inner side to the outer side of the first window body, the first flow channel is arranged to be inclined downward along the direction from the outer side to the inner side of the first window body, and the second flow channel is arranged to be inclined upward along the direction from the outer side to the inner side of the first window body.

[0013] The window body comprises a first louver and a second louver arranged in sequence along the direction from the inner side to the outer side of the window body, the first louver and / or the second louver is connected with the frame body, the first louver forms the first flow channel, and the second louver forms the second flow channel.

[0014] In an embodiment, the bottom of the second louver is below the bottom of the first louver, and the bottom of the second louver is connected with the water baffle.

[0015] In an embodiment, the frame body has two installation surfaces arranged in opposite directions along the horizontal direction.

[0016] The first louver comprises:

[0017] A first body connected with the two installation surfaces, a plurality of first air holes are arranged in the first body in a spaced manner, each of the first air holes is arranged to penetrate the first body along the direction from the inner side to the outer side of the first window body;

[0018] A plurality of first louvers protruding from one side of the first body facing the inner side of the first window body, the first louvers are arranged between adjacent two first air holes along the up-down direction, each of the first louvers is arranged to be inclined downward along the direction from the outer side to the inner side of the first window body, and the first flow channel is formed between adjacent two first louvers along the up-down direction.

[0019] In an embodiment, the second louver comprises:

[0020] A second body connected with the first body in a pasting manner, the second body is provided with a plurality of second air holes, each of the second air holes is arranged to penetrate the second body along the direction from the inner side to the outer side of the first window body, and the second air holes are arranged in one-to-one correspondence with the first air holes;

[0021] A plurality of second louvers protruding from one side of the second body away from the first body, the second louvers are arranged between adjacent two second air holes along the up-down direction, each of the second louvers is arranged to be inclined upward along the direction from the outer side to the inner side of the first window body, and the second flow channel is formed between adjacent two second louvers along the up-down direction.

[0022] In an embodiment, the second body comprises:

[0023] a substrate disposed opposite to the first body and attached to the first body, a bottom of the substrate being below a bottom of the first body, the bottom of the substrate being connected to the water baffle, the substrate being provided with a plurality of the second air holes, a side of the substrate away from the first body being provided with a plurality of the second louvers;

[0024] a surrounding part including two first surrounding segments disposed opposite to each other in a horizontal direction and a second surrounding segment clamped between the two first surrounding segments, the two first surrounding segments being connected to two ends of the substrate in the horizontal direction, the second surrounding segment being connected to a top of the substrate, so that the substrate, the two first surrounding segments, the second surrounding segment and the water baffle are adapted to form a containing groove, the first body being installed in the containing groove and the first body being adapted to abut against an inner side wall of the containing groove.

[0025] In an embodiment, the first side surface is inclined upward from an outer side to an inner side of the first window body.

[0026] In an embodiment, the frame body includes two first frame segments disposed opposite to each other in the horizontal direction and spaced apart, and a second frame segment clamped between the two first frame segments and connected to the two first frame segments at two ends respectively, the first side surface being formed on the second frame segment.

[0027] In a vertical direction, the first window body is disposed spaced apart from the second frame segment, and the first window body is connected to the two first frame segments respectively.

[0028] In an embodiment, the second frame segment is inclined upward from an outer side to an inner side of the first window body.

[0029] In an embodiment, the frame body further includes a mounting plate disposed opposite to and spaced apart from the first window body at an inner side of the first window body, the mounting plate being penetrated by at least one through hole in an inner side to outer side direction of the first window body, a peripheral side of the mounting plate being connected to the two first frame segments and the second frame segment, so that the frame body is adapted to form a containing cavity with the first window body, the containing cavity being provided with an opening upwardly.

[0030] The louver assembly further includes a filter part adapted to be placed in the containing cavity from the opening, the filter part abutting against the mounting plate, the filter part being adapted to filter water vapor and / or impurities.

[0031] In an embodiment, a third louver is further included, the third louver is installed in the cavity and is arranged opposite and spaced apart from the first louver along the inside-to-outside direction of the first louver, the third louver is formed with a plurality of third flow channels, the plurality of third flow channels are respectively connected with the plurality of flow channels, and each of the third flow channels is arranged upwardly inclined along the outside-to-inside direction of the first louver.

[0032] In an embodiment, the third louver includes:

[0033] A third body is connected with the two first frame segments, the third body is spaced apart and provided with a plurality of third air holes, each of the third air holes is arranged through the third body along the inside-to-outside direction of the first louver;

[0034] A plurality of third louvers are protruded from a side of the third body facing the first louver, along the up-and-down direction, the third louvers are arranged between adjacent two third air holes along the up-and-down direction, the third louvers are arranged upwardly inclined along the outside-to-inside direction of the first louver, and the third flow channels are formed between adjacent two third louvers along the up-and-down direction.

[0035] In an embodiment, a water stop portion is further included, the water stop portion is connected with a side of the third louver facing the first louver, the water stop portion has a second side surface arranged opposite and spaced apart from the first side surface, and the second side surface is arranged upwardly inclined along the outside-to-inside direction of the first louver.

[0036] In an embodiment, the water stop portion includes:

[0037] A connecting plate is arranged opposite to the third louver and is connected with a side of the third louver facing the first louver;

[0038] A water stop plate is connected with the connecting plate, the water stop plate is arranged upwardly inclined along the outside-to-inside direction of the first louver, and the water stop plate forms the second side surface.

[0039] In a second aspect, an embodiment of the utility model provides an outdoor energy storage equipment.

[0040] In an embodiment, the outdoor energy storage equipment includes the louver assembly as described above.

[0041] The embodiment of the utility model has the advantages of:

[0042] In the embodiment of the utility model, the design of multiple interval distribution flow channels allows air to flow freely from the outside to the inside of the first window or from the inside to the outside of the first window, thereby enhancing the ventilation effect of the shutter assembly. The middle of each flow channel is upwardly bent, so that an obstacle is formed on the path of rainwater flowing from the flow channel to the inside of the first window. When rainwater attempts to flow from the outside to the inside of the first window, the first end of the flow channel connected to the outside of the first window is lower than the middle position of the flow channel, so that the flow channel can block rainwater from splashing into the inside of the first window. In addition, rainwater at the first end and the middle position of the flow channel can slide out towards the outside of the first window under the action of gravity, reducing the amount of rainwater entering the inside of the first window along the flow channel. The bottom surface and the first side surface are oppositely and intervally arranged, so that rainwater entering the inside of the first window can be discharged from the gap between the bottom surface and the first side surface, avoiding long-term accumulation of rainwater in the inside of the first window, which can cause damage to the shutter assembly. From the outside to the inside of the first window, the distance between the first side surface and the bottom surface is gradually reduced, so that when rainwater splashes from bottom to top onto the first window, the gradually reduced distance between the first side surface and the bottom surface forms a gradually narrowing channel, which causes the splashing rainwater to directly fall into the first side surface and the bottom surface. The gradually reduced distance between the first side surface and the bottom surface can change the speed and direction of the flowing rainwater, thereby avoiding direct splashing of the splashing rainwater into the first window, improving the waterproofness of the shutter assembly, and better protecting the structures and components inside the outdoor energy storage equipment with the shutter assembly, reducing the damage and maintenance costs of the structures and components inside the outdoor energy storage equipment caused by rainwater erosion. BRIEF DESCRIPTION OF DRAWINGS

[0043] In order to more clearly illustrate the technical solutions in the embodiments of the utility model, the following will briefly introduce the drawings needed to be used in the embodiment description. Obviously, the drawings in the following description are only some embodiments of the utility model, and other drawings can be obtained by those skilled in the art without creative labor.

[0044] Figure 1 is the exploded schematic view of the shutter assembly provided by the embodiment of the utility model;

[0045] Figure 2 is Figure 1 is the cross-sectional schematic view of the shutter assembly (one angle) shown in the figure;

[0046] Figure 3 is Figure 2 is the local enlarged schematic view of A shown in the figure;

[0047] Figure 4is Figure 1 a sectional view of the shutter assembly (another angle) as shown in the figure;

[0048] Figure 5 is Figure 1 a structural view of the second shutter as shown in the figure;

[0049] Figure 6 is Figure 1 a structural view of the frame as shown in the figure.

[0050] BRIEF DESCRIPTION OF DRAWINGS

[0051] 10. Shutter assembly

[0052] 1. First shutter, 11. Flow channel, 111. First flow channel, 112. Second flow channel, 12. Bottom surface, 131. First shutter, 1311. First main body, 13111. First air hole, 1312. First shutter blade, 132. Second shutter, 1321. Second main body, 13211. Second air hole, 13212. Base plate, 13213. First blocking section, 13214. Second blocking section, 1322. Second shutter blade, 14. Water baffle

[0053] 2. Frame, 21. First side surface, 22. Mounting surface, 23. First frame section, 24. Second frame section, 25. Mounting plate, 251. Through hole

[0054] 3. Filter part, 4. Third shutter, 41. Third flow channel, 42. Third main body, 421. Third air hole, 43. Third shutter blade

[0055] 5. Water stopping part, 51. Second side surface, 52. Connecting plate, 53. Water stopping plate

[0056] a. Containing groove, b. Containing cavity DETAILED DESCRIPTION

[0057] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application. In addition, it should be understood that the specific embodiments described herein are only used to illustrate and explain the present application, and are not used to limit the present application. In the present application, the orientation words such as "upper" and "lower" generally refer to the upper and lower of the device in the actual use or working state, and specifically refer to the direction of the drawing surface in the drawings. And "inner" and "outer" refer to the outline of the device.

[0058] The shutter assembly is used for ventilation and waterproofing, and is widely applied to outdoor energy storage equipment. In the related art, the shutter assembly forms a plurality of flow channels and a drainage port for communicating the inside and outside of the shutter assembly. However, the flow channels are usually arranged in a straight line, so that a large amount of rainwater flows to the inside of the shutter assembly through the flow channels, and in addition, rainwater is easily splashed from the drainage port to the inside of the shutter assembly, so that the waterproof performance of the shutter assembly is poor.

[0059] In view of this, the utility model provides a shutter assembly, Figures 1 to 6 The structure schematic diagram of the embodiment of the shutter assembly provided by the utility model greatly improves the waterproof performance of the shutter assembly. The shutter assembly will be described in detail below in combination with the main drawings.

[0060] Referring to Figures 1 to 3 The shutter assembly 10 comprises a first window body 1 and a frame body 2. The first window body 1 is formed with a plurality of spaced flow channels 11. Each flow channel 11 is used to communicate the inside and outside of the first window body 1. The middle of each flow channel 11 is arranged to be upwardly bent. The frame body 2 is used for mounting the first window body 1. The frame body 2 has a first side surface 21 which is opposite to and spaced from the bottom surface 12 of the first window body 1. In the direction from the outside to the inside of the first window body 1, the distance between the first side surface 21 and the bottom surface 12 is arranged to be gradually reduced.

[0061] In the embodiment of the utility model, the design of multiple interval distribution flow channel 11 allows air to flow freely from the outside to the inside of the first window body 1 or from the inside to the outside of the first window body 1, thereby enhancing the ventilation effect of the shutter assembly 10. The middle of each flow channel 11 is upwardly bent, so that an obstacle is equivalent to being arranged on the path of rainwater flowing from the flow channel 11 to the inside of the first window body 1. When rainwater attempts to flow from the outside to the inside of the first window body 1, the first end of the flow channel 11 connected to the outside of the first window body 1 is lower than the middle position of the flow channel 11, so that the flow channel 11 can block rainwater from splashing to the inside of the first window body 1. In addition, rainwater at the first end and the middle position of the flow channel 11 can slide out towards the outside of the first window body 1 under the action of its own gravity, thereby reducing the amount of rainwater entering the inside of the first window body 1 along the flow channel 11. The bottom surface 12 and the first side surface 21 are oppositely and intervally arranged, so that rainwater entering the inside of the first window body 1 can be discharged from the gap between the bottom surface 12 and the first side surface 21, thereby avoiding the long-time accumulation of rainwater in the inside of the first window body 1 and causing damage to the shutter assembly 10. From the outside to the inside of the first window body 1, the distance between the first side surface 21 and the bottom surface 12 is gradually reduced, so that when rainwater splashes upwards from below to the first window body 1, the gradually reduced distance between the first side surface 21 and the bottom surface 12 forms a gradually narrowing channel, which causes the splashing rainwater to directly fall into the first side surface 21 and the bottom surface 12. The gradually reduced distance between the first side surface 21 and the bottom surface 12 can change the speed and direction of the flow of rainwater, thereby avoiding the splashing rainwater from directly splashing into the first window body 1, improving the waterproofness of the shutter assembly 10, and better protecting the structures and components inside the outdoor energy storage equipment having the shutter assembly 10, thereby reducing the damage and maintenance costs of the structures and components inside the outdoor energy storage equipment caused by rainwater erosion.

[0062] Referring to Figure 2 and Figure 3 In an embodiment, from the outside to the inside of the first window body 1, the bottom surface 12 is downwardly inclined, so that when the splashing rainwater enters from the gap between the first side surface 21 and the bottom surface 12, the inclined bottom surface 12 causes the splashing rainwater to splash onto the bottom surface 12, thereby blocking the rainwater from directly entering the inside of the first window body 1, reducing the risk of the rainwater contacting other components inside the first window body 1, and protecting the other components inside the first window body 1. In addition, when the rainwater splashes onto the bottom surface 12, the inclined bottom surface 12 causes the rainwater to slide downwards along the bottom surface 12 due to its own gravity, the sliding rainwater drops onto the first side surface 21 and can be quickly discharged from the gap between the first side surface 21 and the bottom surface 12, thereby avoiding the long-time accumulation of rainwater in the inside of the first window body 1 and improving the service life of the shutter assembly 10.

[0063] With reference to Figure 2 and Figure 3 In an embodiment, the first window body 1 comprises a window body and a water baffle 14, the window body is formed with a plurality of spaced flow channels 11, the window body is connected with the frame 2, and the bottom of the window body is spaced from the first side 21. The water baffle 14 is connected with the bottom of the window body, and is inclined downward from the outer side to the inner side of the first window body 1. The water baffle 14 is formed with a bottom surface 12. In this way, the rainwater splashed from the gap between the first side 21 and the bottom surface 12 will directly fall on the water baffle 14, preventing the splashed rainwater from directly entering the first window body 1, thereby improving the waterproof performance of the shutter assembly 10. In addition, the inclined arrangement of the water baffle 14 allows the rainwater falling on the water baffle 14 to quickly gather and fall into the first side 21, and then quickly drain out of the first window body 1 through the gap between the bottom surface 12 and the first side 21, thereby avoiding the accumulation of rainwater inside the first window body 1 and improving the service life of the shutter assembly 10. In addition, the water baffle 14 is directly inclined, and the water baffle 14 is formed with a bottom surface 12. In this way, the structure of the first window body 1 is simple, and the processing technology of the first window body 1 is simplified.

[0064] With reference to Figure 3 In an embodiment, each flow channel 11 comprises a first flow channel 111 and a second flow channel 112 connected in sequence from the inner side to the outer side of the first window body 1. The first flow channel 111 is inclined downward from the outer side to the inner side of the first window body 1. In this way, the first flow channel 111 can quickly guide the rainwater entering the first flow channel 11 to the bottom of the first window body 1, effectively preventing the rainwater from accumulating on the first window body 1. In addition, the inclined first flow channel 111 can also prevent the rainwater from splashing directly onto the structure and components inside the first window body 1. The second flow channel 112 is inclined upward from the outer side to the inner side of the first window body 1. In this way, the possibility of rainwater entering the first flow channel 111 can be reduced. In addition, the inclined first flow channel 111 and the second flow channel 112 have a simple design structure and improve the waterproof effect of the first window body 1. The window body comprises a first shutter 131 and a second shutter 132 arranged in sequence from the inner side to the outer side of the window body. The first shutter 131 and / or the second shutter 132 are connected with the frame 2. The first shutter 131 is formed with the first flow channel 111, and the second shutter 132 is formed with the second flow channel 112. In this way, the structure of the first shutter 131 and the second shutter 132 is simple and easy to process.

[0065] With reference to Figure 3In an embodiment, the bottom of the second shutter 132 is below the bottom of the first shutter 131, and the bottom of the second shutter 132 is connected to the apron 14, so that when there is a gap between the second shutter 132 and the first shutter 131, the rainwater entering the gap between the second shutter 132 and the first shutter 131 can flow quickly along the apron 14 to a suitable drainage position, avoiding the rainwater gathering in the gap between the second shutter 132 and the first shutter 131, causing the second shutter 132 and the first shutter 131 to rust or be damaged, and prolonging the service life of the second shutter 132 and the first shutter 131. By designing the bottom of the second shutter 132 below the bottom of the first shutter 131, the second shutter 132 can shield the first shutter 131, avoiding the first shutter 131 being exposed, and improving the overall aesthetics of the first window body 1.

[0066] With reference to Figure 4 and Figure 6 In an embodiment, the frame body 2 has two installation surfaces 22 arranged opposite to each other in the horizontal direction, the first shutter 131 includes a first main body 1311 and a plurality of first louvers 1312, and the first main body 1311 is connected to the two installation surfaces 22, which can ensure the stability of the first shutter 131 after installation. The arrangement of the two installation surfaces 22 enables the first shutter 131 to be more evenly dispersed when stressed, avoiding the situation that the first shutter 131 is locally stressed too much, which helps to prolong the service life of the first shutter 131. The first main body 1311 is spaced apart and provided with a plurality of first air holes 13111, each first air hole 13111 is arranged through the first main body 1311 in the direction from the inside to the outside of the first window body 1, and the plurality of first louvers 1312 are protruding from the side of the first main body 1311 facing the inside of the first window body 1. In the up-down direction, a first louver 1312 is arranged between each two first air holes 13111, and each first louver 1312 is arranged downwardly from the outside to the inside of the first window body 1. Among them, a first flow channel 111 is formed between each two first louvers 1312 in the up-down direction, so that each first louver 1312 can block the rainwater from splashing directly to the structure and components inside the first window body 1. In addition, the first flow channel 111 formed between each two first louvers 1312 in the up-down direction can quickly guide the rainwater entering the first flow channel 11 to the bottom of the first window body 1, effectively preventing the rainwater from accumulating on the first window body 1, and avoiding the risk of rusting of the first shutter 131 due to long-term accumulation of rainwater. The connection mode between the plurality of first louvers 1312 and the first main body 1311 and the arrangement mode between the plurality of first louvers 1312 can also increase the structural stability of the first window body 1.

[0067] It should be noted that the first air hole 13111 and the first louver 1312 can be formed at the same time by stamping, so as to improve the structural strength of the first louver 131.

[0068] With reference to Figure 3 and Figure 4 In an embodiment, the second louver 132 includes a second body 1321 and a plurality of second louvers 1322, the second body 1321 is in close contact with the first body 1311, so that the first louver 131 and the second louver 132 can minimize the space occupation when combined. The close contact between the second body 1321 and the first body 1311 helps to reduce the gap of the first window body 1, thereby improving the sealing performance of the first window body 1. The close contact between the second body 1321 and the first body 1311 can enhance the overall structural strength of the first window body 1, thereby improving its wind pressure resistance performance.

[0069] The second body 1321 is provided with a plurality of second air holes 13211, each of which is arranged through the second body 1321 along the direction from the inner side to the outer side of the first window body 1, and the plurality of second air holes 13211 are arranged one by one with the plurality of first air holes 13111. The plurality of second louvers 1322 are protruding from the side of the second body 1321 away from the first body 1311, arranged along the up-down direction, and the second louver 1322 is arranged between each two adjacent second air holes 13211 along the up-down direction, each of which is arranged upwardly inclined from the outer side to the inner side of the first window body 1. Among them, the second flow channel 112 is formed between each two adjacent second louvers 1322 along the up-down direction, and the second air hole 13211 on the second body 1321 is arranged one by one with the first air hole 13111 on the first body 1311, forming a flow channel 11 through the entire first window body 1. This design allows external air to pass through the second air hole 13211 under the guidance of the second flow channel 112, and then enter the inner side of the first window body 1 through the first air hole 13111 under the guidance of the first flow channel 111, thereby improving the ventilation efficiency of the first window body 1.

[0070] It should be noted that the second air hole 13211 and the second louver 1322 can be formed at the same time by stamping, so as to improve the structural strength of the second louver 132.

[0071] The upwardly inclined arrangement of the second louvers 1322 allows the air to be guided during the flow process, reducing the turbulence and vortex of the air flow, thereby improving the ventilation efficiency. In addition, the upwardly inclined design of the second louvers 1322 can effectively block the intrusion of external rainwater. When rain falls on the window, due to the inclination angle of the second louvers 1322, the rainwater will be guided to the outside of the first window 1, reducing the possibility of rainwater entering the inside of the first window 1. In addition to rainproof, the inclined second louvers 1322 can also block external debris from directly entering the inside of the first window 1 through the second air hole 13211. The orderly arrangement and inclined arrangement of the second louvers 1322 make the first window 1 more visually neat and aesthetically pleasing. The abutment of the second body 1321 and the first body 1311 and the arrangement of the second louvers 1322 can increase the structural stability of the first window 1.

[0072] It should be noted that in an embodiment, the abutment of the second body 1321 and the first body 1311 can be fixed by welding. In other embodiments, the abutment of the second body 1321 and the first body 1311 can be fixed by adhesive bonding. Specifically, the present application does not limit the fixing method of the abutment of the second body 1321 and the first body 1311.

[0073] Referring to Figure 2 , Figure 4 and Figure 5In an embodiment, the second body 1321 comprises a base plate 13212 and a surrounding part. The base plate 13212 is arranged opposite to the first body 1311 and is connected to the first body 1311. The bottom of the base plate 13212 is below the bottom of the first body 1311. The bottom of the base plate 13212 is connected to the water baffle 14. The base plate 13212 is provided with a plurality of second air holes 13211. The side of the base plate 13212 away from the first body 1311 is provided with a plurality of second louvers 1322. The surrounding part comprises two first surrounding segments 13213 arranged opposite to each other in the horizontal direction and a second surrounding segment 13214 clamped between the two first surrounding segments 13213. The two first surrounding segments 13213 are connected to the two ends of the base plate 13212 in the horizontal direction. The second surrounding segment 13214 is connected to the top of the base plate 13212. The base plate 13212, the two first surrounding segments 13213, the second surrounding segment 13214 and the water baffle 14 are adapted to form a containing groove a. The first body 1311 is installed in the containing groove a and is in abutment with the inner side wall of the containing groove a. In this way, a stable frame structure is formed by the combination of the base plate 13212, the surrounding part (comprising the two first surrounding segments 13213 and the second surrounding segment 13214) and the water baffle 14. This design not only enhances the overall structural strength of the second louver window 132, but also improves its wind pressure resistance, impact resistance and other performances. The first body 1311 is installed in the containing groove a formed by the base plate 13212, the surrounding part and the water baffle 14 and is in abutment with the inner side wall of the containing groove a. This design effectively protects the first body 1311 from direct erosion of the external environment and prolongs the service life of the first body 1311. The first body 1311 is directly installed in the containing groove a formed by the base plate 13212, the surrounding part and the water baffle 14 without the need for additional positioning devices or steps. This design simplifies the installation process of the first louver window 131 and reduces the installation cost.

[0074] It should be noted that the connection mode of the base plate 13212, the two first enclosing segments 13213, the second enclosing segment 13214 and the baffle 14 is various, for example, in an embodiment, the base plate 13212, the two first enclosing segments 13213, the second enclosing segment 13214 and the baffle 14 can be fixed by welding. In another embodiment, the base plate 13212, the two first enclosing segments 13213, the second enclosing segment 13214 and the baffle 14 can be integrally formed. The mode of integrally forming the base plate 13212, the two first enclosing segments 13213, the second enclosing segment 13214 and the baffle 14 is various, for example, in an embodiment, the base plate 13212, the two first enclosing segments 13213, the second enclosing segment 13214 and the baffle 14 can be integrally formed by injection molding, and in another embodiment, the base plate 13212, the two first enclosing segments 13213, the second enclosing segment 13214 and the baffle 14 can be integrally formed by die molding. Specifically, in the embodiment of the present application, the base plate 13212, the two first enclosing segments 13213, the second enclosing segment 13214 and the baffle 14 are integrally formed by bending sheet metal. The present application does not limit the mode of integrally forming the base plate 13212, the two first enclosing segments 13213, the second enclosing segment 13214 and the baffle 14.

[0075] Referring to Figures 1 to 3 In an embodiment, from the outside to the inside of the first window body 1, the first side surface 21 is arranged in an upward inclination, so that the inclined first side surface 21 can guide rainwater to flow away quickly along the inclined surface, reducing the possibility of rainwater accumulation inside the first window body 1. The inclined first side surface 21 can more effectively disperse wind pressure, reduce the force area of the first window body 1 under strong wind conditions, thereby enhancing the wind pressure resistance of the first window body 1, which helps to improve the stability and safety of the first window body 1. In addition, the inclined first side surface 21 can also block the rainwater splashing from the gap between the bottom surface 12 and the first side surface 21, preventing the splashing rainwater from directly entering the inside of the first window body 1 and contacting the inside structure and components of the first window body 1, causing damage to the corresponding components by rainwater.

[0076] Referring to Figure 6 In an embodiment, the frame body 2 includes two first frame segments 23 arranged opposite and spaced apart in the horizontal direction, and a second frame segment 24 clamped between the two first frame segments 23 and connected to the two first frame segments 23 at both ends, and the first side surface 21 is formed on the second frame segment 24. The first window body 1 is arranged spaced apart from the second frame segment 24 in the up-down direction, so that the bottom surface 12 and the first side surface 21 are arranged opposite and spaced apart, with simple structure. The first window body 1 is connected to the two first frame segments 23, respectively, improving the stability of the connection between the first window body 1 and the frame body 2.

[0077] In an embodiment, the first window body 1 and the two first frame sections 23 can be fixed by welding, so as to improve the sealing of the connection between the first window body 1 and the two first frame sections 23, and prevent rainwater from penetrating from the connection between the first window body 1 and the two first frame sections 23. In addition, sealant can be applied to the connection between the first window body 1 and the two first frame sections 23 to improve the sealing of the connection between the first window body 1 and the two first frame sections 23.

[0078] It should be noted that, in an embodiment, the two first frame sections 23 and the second frame section 24 can be fixed by welding, and in other embodiments, the two first frame sections 23 and the second frame section 24 can be integrally formed. Specifically, the present application does not limit the connection mode of the two first frame sections 23 and the second frame section 24.

[0079] Referring to Figure 3 In an embodiment, the second frame section 24 is inclined upward from the outer side to the inner side of the first window body 1, so that the inclined second frame section 24 can guide rainwater to flow quickly along the inclined surface, effectively reducing the possibility of rainwater accumulation on the inner side of the first window body 1. Under the action of wind force, the inclined second frame section 24 can more effectively guide air flow, enhancing the ventilation effect of the window body. The design of the inclined second frame section 24 also helps to enhance the stability of the first window body 1. The inclined second frame section 24 can more effectively disperse wind pressure, reducing the impact force on the first window body 1, thereby reducing the risk of loosening or falling of the first window body 1.

[0080] Referring to Figure 1 , Figure 2 and Figure 6In one embodiment, the frame 2 further includes a mounting plate 25, which is disposed on the inner side of the first window 1 and spaced from the first window 1. The mounting plate 25 has at least one through-hole 251 extending from the inner side of the first window 1 to the outer side. The mounting plate 25 is connected to the first and second frame segments 23 and 24 around its periphery, so that the frame 2 and the first window 1 together form a cavity b with an upwardly facing opening. The blind assembly 10 further includes a filter 3, which is adapted to be placed into the cavity b through the opening. This opening facilitates easy access to the filter 3 and facilitates routine maintenance and repair of the filter 3 when the filter 3 loses its filtering effect due to prolonged use. The filter 3 filters moisture and / or impurities, enabling the blind assembly 10 to achieve an IP66 rating. This IP66 rating means that the blind assembly 10 is completely protected from dust ingress and can withstand strong water jets, preventing water from entering the inner side of the first window 1. The abutment between the filter 3 and the mounting plate 25 prevents deformation or displacement of the filter 3 under wind pressure, thereby ensuring the stability and durability of the filtering effect. This abutment between the filter 3 and the mounting plate 25 makes replacement and maintenance of the filter 3 simple and quick. For example, when the filter 3 is covered with dust or needs cleaning, the user simply removes the filter 3 from the mounting plate 25 for cleaning or replacement. This design not only reduces maintenance costs but also improves the user experience.

[0081] It should be noted that there are various ways to connect the circumferential side of the mounting plate 25 to the two first frame segments 23 and the second frame segment 24. For example, in one embodiment, the circumferential side of the mounting plate 25 and the two first frame segments 23 and the second frame segment 24 can be welded. In another embodiment, the circumferential side of the mounting plate 25 and the two first frame segments 23 and the second frame segment 24 can also be integrally formed. Specifically, this application does not limit the method for connecting the circumferential side of the mounting plate 25 to the two first frame segments 23 and the second frame segment 24.

[0082] In addition, there are many types of filter parts 3. For example, the filter part 3 may include filter cotton, microporous filter membrane, ceramic filter membrane, activated carbon filter, etc. The specific type of filter part 3 can be selected according to needs, and this application does not limit this.

[0083] Reference Figure 1 、 Figure 2 and Figure 3In an embodiment, the shutter assembly 10 further comprises a third shutter 4, which is installed in the cavity b and is located between the filtering part 3 and the first shutter 1 in the direction from the inner side to the outer side of the first shutter 1. The third shutter 4 is arranged opposite and spaced apart from the first shutter 1. The third shutter 4 is formed with a plurality of third flow channels 41, which are respectively connected with the plurality of flow channels 11. This design enables air to flow more smoothly through the flow channels 11 and the third flow channels 41, ensuring the ventilation effect of the shutter assembly 10. Each third flow channel 41 is arranged upwardly inclined in the direction from the outer side to the inner side of the first shutter 1. In this way, the third shutter 4 can further block impurities such as dust, particulate matter and the like from the outside from entering the indoor side, improving the air quality in the indoor side of the shutter assembly 10. The third flow channels 41 arranged in an inclined manner can further block rainwater from entering the indoor side of the shutter assembly 10. The cooperation of the flow channels 11 and the third flow channels 41 greatly improves the waterproof effect of the shutter assembly 10.

[0084] With reference to Figure 1 and Figure 4 In an embodiment, the third shutter 4 comprises a third main body 42 and a plurality of third louvers 43. The third main body 42 is connected with the two first frame segments 23. In this way, the stability of the overall structure of the third shutter 4 can be enhanced, and the risk of deformation or damage of the third shutter 4 can be reduced. The third main body 42 is spaced apart and provided with a plurality of third air holes 421. Each third air hole 421 is arranged through the third main body 42 in the direction from the inner side to the outer side of the first shutter 1. The plurality of third louvers 43 are protruded from one side of the third main body 42 facing the first shutter 1. In the upward and downward direction, the third louvers 43 are arranged between any two adjacent third air holes 421. The third louvers 43 are arranged upwardly inclined in the direction from the outer side to the inner side of the first shutter 1. Among them, the third flow channels 41 are formed between any two adjacent third louvers 43 in the upward and downward direction. In this way, the cooperation of the third flow channels 41 and the third air holes 421 enables air to flow more smoothly through the shutter assembly 10. The third louvers 43 arranged in an inclined manner enable the rainwater entering from the flow channels 11 to fall into the third louvers 43. The third louvers 43 can block the rainwater from entering the third air holes 421, thereby preventing the rainwater from entering the indoor side of the shutter assembly 10, greatly improving the waterproof performance of the shutter assembly 10.

[0085] It should be noted that the third air holes 421 and the third louvers 43 can be formed simultaneously by stamping. In this way, the structural strength of the third shutter 4 is improved.

[0086] In an embodiment, the periphery of the third shutter 4 is connected to the two first enclosing segments 13213 and the second enclosing segment 13214, so that the third shutter 4 is stable, and gaps between the periphery of the third shutter 4 and the two first enclosing segments 13213 and the second enclosing segment 13214 are avoided, so that rainwater is prevented from entering through the gaps, and the waterproof performance of the shutter assembly 10 is improved.

[0087] It should be noted that the periphery of the third shutter 4 can be connected to the two first enclosing segments 13213 and the second enclosing segment 13214 in various ways. For example, in an embodiment, the periphery of the third shutter 4 is welded to the two first enclosing segments 13213 and the second enclosing segment 13214, so that the sealing performance of the connection between the periphery of the third shutter 4 and the two first enclosing segments 13213 and the second enclosing segment 13214 is improved.

[0088] Referring to Figure 4 In an embodiment, the periphery of the third shutter 4 is welded to the two first enclosing segments 13213 and the second enclosing segment 13214, so that the sealing performance of the connection between the periphery of the third shutter 4 and the two first enclosing segments 13213 and the second enclosing segment 13214 is improved, rainwater is prevented from entering through the connection between the periphery of the third shutter 4 and the two first enclosing segments 13213 and the second enclosing segment 13214, and the waterproof performance of the shutter assembly 10 is improved. In addition, waterproof glue can be applied to the connection between the periphery of the third shutter 4 and the two first enclosing segments 13213 and the second enclosing segment 13214, so that the waterproof performance of the connection between the periphery of the third shutter 4 and the two first enclosing segments 13213 and the second enclosing segment 13214 is further improved.

[0089] In the above embodiments, the hole spacing of the plurality of first air holes 13111 can be designed to be relatively small, and correspondingly, the hole spacing of the plurality of second air holes 13211 can be designed to be relatively small, and correspondingly, the hole spacing of the plurality of third air holes 421 can be designed to be relatively small, so that the ventilation area is increased, and the ventilation efficiency is improved.

[0090] Referring to Figure 1 and Figure 3In an embodiment, the shutter assembly 10 further comprises a water-stopping part 5, which is connected to the side of the third shutter 4 facing the first window 1, and the water-stopping part 5 has a second side 51 opposite to the first side 21 and arranged in a spaced manner, and the second side 51 is arranged in an upwardly inclined manner from the outside to the inside of the first window 1, so that when the rainwater splashes into the inside of the first window 1 from the gap between the first side 21 and the bottom surface 12, the rainwater is blocked by the second side 51 due to the existence of the water-stopping part 5 and the upwardly inclined arrangement of the second side 51, so as to prevent the splashed rainwater from entering the third air hole 421. In addition, the second side 51 arranged in an inclined manner can also make the rainwater gathered on the second side 51 flow to the outside of the third shutter 4, so as to accelerate the efficiency of the rainwater discharging from the shutter assembly 10.

[0091] Referring to Figure 3 In an embodiment, the water-stopping part 5 comprises a connecting plate 52 and a water-stopping plate 53, the connecting plate 52 is arranged opposite to the third shutter 4 and connected to the side of the third shutter 4 facing the first window 1, the water-stopping plate 53 is connected to the connecting plate 52, the water-stopping plate 53 is arranged in an upwardly inclined manner from the outside to the inside of the first window 1, and the water-stopping plate 53 forms the second side 51, so that on the one hand, the inclined water-stopping plate 53 can block the splashed rainwater from entering the third air hole 421 from bottom to top, so as to prevent the splashed rainwater from entering the inside of the shutter assembly 10. On the other hand, the inclined water-stopping plate 53 can guide the rainwater gathered on the water-stopping plate 53 to flow to the outside of the third shutter 4 smoothly, so as to improve the waterproof performance of the shutter assembly 10. In addition, the connecting plate 52 serves as a bridge between the water-stopping part 5 and the third shutter 4, and plays a role in reinforcing the overall structure of the water-stopping part 5.

[0092] The embodiment of the utility model further proposes an outdoor energy storage equipment, outdoor energy storage equipment includes shutter assembly 10 as above, the specific structure of shutter assembly 10 refers to the above embodiment, because this outdoor energy storage equipment adopts all technical schemes of all above embodiments, so at least has all beneficial effects brought by the technical scheme of above embodiment, here will not repeat again.

[0093] The above embodiments of the utility model are introduced in detail, the principle and implementation mode of the utility model are described in this paper by applying specific examples, the above embodiment is only used for helping understanding the method and core idea of the utility model, and for the person skilled in the art, according to the idea of the utility model, the specific implementation mode and application range will have the change, and the above is described, and the content of the specification should not be understood as the limitation of the utility model.

Claims

1. A shutter assembly, characterized in that: include: A first window body is formed with a plurality of flow channels arranged at intervals, each of the flow channels is used to connect the inner and outer sides of the first window body, and the middle of each flow channel is bent upward; A frame is provided for mounting the first window, wherein the frame has a first side surface opposite to and spaced from the bottom surface of the first window, wherein the distance between the first side surface and the bottom surface decreases from the outside to the inside of the first window.

2. The shutter assembly according to claim 1, characterized in that From the outer side to the inner side of the first window, the bottom surface is inclined downward.

3. The shutter assembly according to claim 2, characterized in that The first window includes: A window body is formed with a plurality of flow channels arranged at intervals, the window body is connected to the frame, and the bottom of the window body is arranged at intervals from the first side surface; The water baffle is connected to the bottom of the window body. From the outside to the inside of the first window body, the water baffle is arranged to be tilted downward, and the water baffle forms the bottom surface.

4. The shutter assembly according to claim 3, characterized in that Each of the flow channels includes a first flow channel and a second flow channel connected along the direction from the inside to the outside of the first window, the first flow channel is arranged to be inclined downward from the outside to the inside of the first window, and the second flow channel is arranged to be inclined upward from the outside to the inside of the first window; The window body includes a first blind and a second blind sequentially attached from the inside to the outside of the window body, the first blind and / or the second blind are connected to the frame, the first blind forms the first flow channel, and the second blind forms the second flow channel.

5. The shutter assembly according to claim 4, characterized in that in, The bottom of the second louver is located below the bottom of the first louver, and the bottom of the second louver is connected to the water baffle.

6. The shutter assembly according to claim 4, characterized in that The frame has two mounting surfaces arranged opposite to each other in the horizontal direction; The first shutter comprises: a first body connected to the two mounting surfaces, the first body being provided with a plurality of first air holes at intervals, each of the first air holes being provided through the first body from the inner side to the outer side of the first window; Multiple first louvers are protrudingly arranged on the side of the first main body facing the inner side of the first window. The first louvers are arranged between two adjacent first air holes in the up and down directions. Each of the first louvers is arranged to be inclined downward from the outer side to the inner side of the first window, wherein the first flow channel is formed between two adjacent first louvers in the up and down directions.

7. The shutter assembly according to claim 6, wherein: The second shutter comprises: a second body, attached to the first body, the second body being provided with a plurality of second air holes, each of the second air holes being provided through the second body from the inner side to the outer side of the first window, the plurality of second air holes being aligned one by one with the plurality of first air holes; Multiple second louvers are protrudingly arranged on the side of the second main body facing away from the first main body. Along the up and down directions, a second louver is arranged between two adjacent second air holes. Each second louver is arranged to be inclined upward from the outside to the inside of the first window body, wherein the second flow channel is formed between two adjacent second louvers along the up and down directions.

8. The shutter assembly according to claim 7, wherein: The second body includes: a base plate, disposed opposite to and in contact with the first main body, the bottom of the base plate being located below the bottom of the first main body, the bottom of the base plate being connected to the water retaining plate, the base plate being provided with a plurality of second air holes, and a plurality of second louvers being protruding from a side of the base plate facing away from the first main body; The enclosure portion includes two first enclosure sections arranged opposite to each other in the horizontal direction and a second enclosure section sandwiched between the two first enclosure sections, the two first enclosure sections are connected to the two horizontal ends of the base plate, and the second enclosure section is connected to the top of the base plate, so that the base plate, the two first enclosure sections, the second enclosure section and the water retaining plate are suitable for enclosing to form a receiving groove, the first main body is installed in the receiving groove and the first main body is used to abut against the inner side wall of the receiving groove.

9. The shutter assembly according to any one of claims 1 to 8, characterized in that: From the outer side to the inner side of the first window body, the first side surface is inclined upward.

10. The shutter assembly according to claim 9, wherein: The frame body includes two first frame segments that are horizontally opposite and spaced apart, and a second frame segment that is sandwiched between the two first frame segments and connected to the two first frame segments at both ends, wherein the first side surface is formed on the second frame segment. Along the up-down direction, the first window body and the second frame segment are arranged at intervals, and the first window body is connected to two of the first frame segments respectively.

11. The shutter assembly according to claim 10, wherein: From the outer side to the inner side of the first window body, the second frame segment is arranged to be inclined upward.

12. The shutter assembly according to claim 10, wherein: The frame further includes a mounting plate, the mounting plate being disposed on the inner side of the first window and being spaced apart from and opposite to the first window. The mounting plate has at least one through-hole extending from the inner side to the outer side of the first window. The circumferential side of the mounting plate is connected to the two first frame segments and the second frame segment, so that the frame and the first window are adapted to jointly enclose a cavity with an upward opening. The shutter assembly further includes a filter portion, which is suitable for being placed in the cavity through the opening. The filter portion is in contact with the mounting plate and is used for filtering water vapor and / or impurities.

13. The shutter assembly according to claim 12, wherein: It also includes a third louver, which is installed in the cavity and is located between the filter portion and the first window. Along the direction from the inside to the outside of the first window, the third louver is opposite to the first window and is arranged at intervals. The third louver forms a plurality of third flow channels, and the plurality of third flow channels are respectively connected to the plurality of flow channels, and each of the third flow channels is arranged to be inclined upward from the outside to the inside of the first window.

14. The shutter assembly according to claim 13, wherein: The third shutter comprises: a third body connected to the two first frame segments, the third body being provided with a plurality of third air holes at intervals, each of the third air holes being provided through the third body from the inner side to the outer side of the first window body; A plurality of third louvers are protrudingly arranged on the side of the third main body facing the first window body. The third louvers are arranged between two adjacent third air holes in the up-down direction. The third louvers are arranged to be inclined upward from the outside to the inside of the first window body, wherein the third flow channel is formed between two adjacent third louvers in the up-down direction.

15. The shutter assembly according to claim 13, wherein: It also includes a water stop portion, which is connected to the side of the third blind facing the first window body. The water stop portion has a second side surface opposite to and spaced apart from the first side surface. From the outside to the inside of the first window body, the second side surface is inclined upward.

16. The shutter assembly according to claim 15, wherein: The water stop portion comprises: a connecting plate, disposed opposite to the third louver and connected to a side of the third louver facing the first window body; A water stop plate is connected to the connecting plate, the water stop plate is arranged to be inclined upward from the outer side to the inner side of the first window body, and the water stop plate is formed with the second side surface.

17. An outdoor energy storage device, characterized in that: The invention comprises a shutter assembly according to any one of claims 1 to 16.