Connecting window for factory ventilation
By designing a connecting window for factory ventilation, and using the adjustment mechanism and ventilation mechanism to form an acceleration channel, the problem of poor ventilation effect of traditional factory doors and windows is solved, and the air flow rate is improved and the ventilation effect is enhanced.
Patent Information
- Application Number
- CN202510438209.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-09
- Publication Date
- 2025-06-06
AI Technical Summary
Traditional factory doors and windows have insufficient ventilation, resulting in slow air flow rate and it is difficult to achieve rapid renewal of air in the factory, which in turn leads to the accumulation of pollutants and endangers workers' health and production equipment.
A connecting window for ventilation in the factory is designed, including an adjustment mechanism, a window body and a ventilation mechanism. The adjustment mechanism is arranged on the wall, the window body is fixed on the mobile end of the adjustment mechanism, and the ventilation mechanism is deflected by the flexible flow guide to form an acceleration channel to increase the air flow rate.
Through the coordination of the adjustment mechanism and the ventilation mechanism, an acceleration channel is formed, which greatly improves the air flow rate, enhances the ventilation effect, meets different ventilation needs, and effectively reduces indoor temperature and pollutant accumulation.
Smart Images

Figure CN120100298A_ABST
Abstract
Description
Technical Field
[0001] The invention belongs to the technical field of factory doors and windows, and particularly relates to a connecting window used for factory ventilation. Background Art
[0002] Factory doors and windows are an important part of factory buildings. Reasonable design of doors and windows can allow natural light to fully enter the factory, reduce dependence on artificial lighting during the day, and save energy. At the same time, good ventilation performance helps to keep the indoor air fresh and improve the working environment.
[0003] In the prior art, during the factory production process, good ventilation is crucial to maintaining indoor air quality, protecting the health of workers, and ensuring the normal operation of production equipment. However, traditional factory doors and windows have many deficiencies in ventilation. Usually, windows are installed on the wall, but the opening method is relatively simple. The air flows slowly after entering the room, making it difficult to achieve rapid renewal of the air in the factory. In some production workshops that generate a large amount of heat, exhaust gas and dust, poor ventilation will cause pollutants to accumulate indoors, which not only endangers the health of workers, but may also damage production equipment, reduce product quality, and have poor adaptability and practicality. Summary of the invention
[0004] An embodiment of the present invention provides a connecting window for factory ventilation, aiming to solve the problem that existing factory windows have poor ventilation effects, causing harm to workers' health and damage to production equipment.
[0005] To achieve the above object, the technical solution adopted by the present invention is: to provide a connecting window for factory ventilation, comprising: The adjusting mechanism is arranged on the wall and has a fixed end connected to the wall and a movable end extending outward in a vertical direction of the wall; A window body, fixedly mounted on the movable end of the adjusting mechanism, wherein the window body comprises a connecting portion connected to the movable end of the adjusting mechanism and a light-transmitting portion arranged parallel to the wall; The ventilation mechanism is arranged on the connecting part of the window body and is located on the inner side of the light-transmitting part. The ventilation mechanism has a flexible guide part. The flexible guide part is arranged on the connecting part of the window body. The flexible guide part is used for deflecting an angle so that the adjustment mechanism and the flexible guide part form an acceleration channel to speed up the air flow through the wind speed channel.
[0006] In a possible implementation, the adjustment mechanism includes two adjustment structures, the two adjustment structures are arranged at intervals along the vertical direction at the upper opening of the wall, each of the adjustment structures includes a plurality of sliding plates, each of the sliding plates is slidably connected in sequence along the vertical direction of the wall, and the plurality of sliding plates jointly constitute a sliding track, one end of each of the sliding tracks is connected to the wall, and the other end of each of the sliding tracks is connected to the window body; Wherein, a sliding rail for sliding connection of the corresponding sliding plate is fixedly arranged on the wall.
[0007] In a possible implementation, the window body includes: A movable window frame is fixed on the corresponding sliding plate and moves along the extending direction of the sliding track, and the movable window frame is the connecting part; A light-transmitting window is fixed on the movable window frame, the light-transmitting window is arranged parallel to the wall, and the light-transmitting window is the light-transmitting part.
[0008] In a possible implementation, the ventilation mechanism includes: A first ventilation structure, arranged on the movable window frame, having a first connecting end movable in a vertical direction of the wall; A second ventilation structure, arranged on the movable window frame and spaced horizontally from the first ventilation structure, the second ventilation structure having a second connecting end movable in a vertical direction of the wall; A flexible guide membrane is arranged between the first ventilation structure and the second ventilation structure, and two ends of the flexible guide membrane are respectively connected to the first connecting end and the second connecting end, and is used to change the inclination angle of the flexible guide membrane along with the movement of the first connecting end and the second connecting end. The flexible guide membrane and the two sliding rails together constitute the acceleration channel.
[0009] In a possible implementation, the first ventilation structure includes: There are two first telescopic structures, the two first telescopic structures are arranged on the movable window frame at intervals along the vertical direction, the fixed end of each first telescopic structure is fixed on the movable window frame, and the telescopic end of each first telescopic structure extends toward the wall along the vertical direction of the wall; A first connection box is arranged in a vertical direction, the first connection box is connected to the telescopic ends of the two first telescopic structures, a reel is arranged in the first connection box in a vertical direction, both ends of the reel are provided with a torsion spring, the reel is connected to one end of the flexible guide film, and the torsion spring is used to make the flexible guide film always have a tendency to be retracted into the first connection box; Wherein, the first connection box is provided with a first long opening for the flexible guide membrane to pass through.
[0010] In a possible implementation, the second ventilation structure includes: The second telescopic structure is provided with two, the two second telescopic structures are arranged on the movable window frame at intervals in the vertical direction, the fixed end of each second telescopic structure is fixed on the movable window frame, and the telescopic end of each second telescopic structure extends toward the wall along the vertical direction of the wall; A second connection box is arranged in the vertical direction, the second connection box is connected to the telescopic ends of the two second telescopic structures, and the second connection box is provided with a second long strip opening, and the second long strip opening is used for the other end of the flexible guide membrane to be clamped and fixed; Wherein, a clamping block is provided at the clamping end of the flexible guide membrane.
[0011] In a possible implementation manner, a handle is provided on the movable window frame.
[0012] In a possible implementation, the flexible guide film is made of a light-transmitting material.
[0013] In a possible implementation, each of the sliding plates is provided with a sliding groove for sliding connection of adjacent sliding plates.
[0014] In the present implementation, compared with the prior art, an adjustment mechanism is provided which can be arranged on a wall, and can be extended outward in a vertical direction of the wall through the movable end of the adjustment mechanism; the window body can be arranged on the movable end of the adjustment mechanism; a ventilation mechanism is provided on the window body, and the flexible guide portion of the ventilation mechanism can be deflected at an angle so that the adjustment mechanism and the flexible guide portion form an acceleration channel with one end larger than the other end, thereby accelerating the air flow rate through the wind speed channel. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] Figure 1 A schematic diagram of the structure of a connecting window for factory ventilation provided by an embodiment of the present invention Figure 1 ; Figure 2 A schematic diagram of the structure of a connecting window for factory ventilation provided by an embodiment of the present invention Figure 2 ; Figure 3 A schematic diagram of the guide structure of the connecting window for factory ventilation provided by an embodiment of the present invention; Description of reference numerals: 10. Adjustment mechanism; 11. Adjustment structure; 111. Sliding plate; 20. Window body; 21. Movable window frame; 211. Handle; 22. Light-transmitting window; 30. Ventilation mechanism; 31. First ventilation structure; 311. First telescopic structure; 312. First connection box; 32. Second ventilation structure; 321. Second telescopic structure; 322. Second connection box; 33. Flexible guide membrane; 40. Wall. DETAILED DESCRIPTION
[0016] In order to make the technical problems, technical solutions and beneficial effects to be solved by the present invention more clearly understood, the present invention is further described in detail below in conjunction with the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the present invention and are not intended to limit the present invention.
[0017] It should be noted that the directions or positional relationships indicated by terms such as “length”, “width”, “height”, “thickness”, “up”, “down”, “front”, “back”, “left”, “right”, “vertical”, “horizontal”, “top”, “bottom”, “inside”, “outside”, “head” and “tail” are based on the directions or positional relationships shown in the accompanying drawings and are only for the convenience of describing the present invention and simplifying the description. They do not indicate or imply that the device or element referred to must have a specific direction, be constructed and operated in a specific direction, and therefore should not be understood as limiting the present invention.
[0018] It should also be noted that, unless otherwise clearly specified and limited, the terms such as "installation", "connection", "fixation", "setting" and the like should be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or an integral connection. It can be a mechanical connection or an electrical connection. It can be a direct connection or an indirect connection through an intermediate medium. It can be the internal connection of two elements or the interaction relationship between two elements. For ordinary technicians in this field, the specific meanings of the above terms in the present invention can be understood according to the specific circumstances.
[0019] In addition, the terms "first" and "second" are used for descriptive purposes only and should not be understood as indicating or implying relative importance or implicitly indicating the number of the indicated technical features. Therefore, the features defined as "first" and "second" may explicitly or implicitly include one or more of the features. In addition, the meaning of "multiple" and "several" is two or more, unless otherwise clearly and specifically defined.
[0020] Please also read Figures 1 to 3, the connecting window for factory ventilation provided by the present invention is now described. The connecting window for factory ventilation includes an adjusting mechanism 10, a window body 20 and a ventilation mechanism 30. The adjusting mechanism 10 is arranged on the wall 40, and has a fixed end connected to the wall 40 and a movable end extending outward in a vertical direction of the wall 40. The window body 20 is fixed on the movable end of the adjusting mechanism 10, and the window body 20 has a connecting portion connected to the movable end of the adjusting mechanism 10 and a light-transmitting portion arranged parallel to the wall 40. The ventilation mechanism 30 is arranged on the connecting portion of the window body 20 and is located on the inner side of the light-transmitting portion. The ventilation mechanism 30 has a flexible guide portion, which is arranged on the connecting portion of the window body 20. The flexible guide portion is used for deflecting an angle so that the adjusting mechanism 10 and the flexible guide portion form an acceleration channel, thereby accelerating the air flow rate through the wind speed channel.
[0021] Compared with the prior art, the connecting window for factory area ventilation provided in this embodiment is provided with an adjustment mechanism 10 which can be arranged on a wall 40, and can extend outward in a vertical direction of the wall 40 through the movable end of the adjustment mechanism 10. The window body 20 can be arranged on the movable end of the adjustment mechanism 10. A ventilation mechanism 30 is arranged on the window body 20, and the flexible guide part of the ventilation mechanism 30 can be deflected at an angle so that the adjustment mechanism 10 and the flexible guide part form an acceleration channel with a large end and a small end, so that the air flow rate through the wind speed channel is accelerated.
[0022] The adjustment mechanism 10 can flexibly change the relative position of the window body 20 and the wall 40, and the flexible guide part of the ventilation mechanism 30 can adjust the angle to form an accelerated channel, greatly improving the air flow rate, enhancing the ventilation effect, and meeting different ventilation needs. In the processing plant area, when the temperature is high in summer, the window body 20 is extended outward by a certain distance through the adjustment mechanism 10, and the angle of the flexible guide part of the ventilation mechanism 30 is adjusted at the same time to accelerate the formation of the channel, so that the air in the workshop circulates quickly, effectively reducing the indoor temperature.
[0023] In some embodiments, the adjustment mechanism 10 may be implemented as follows: Figures 1 to 3 See the structure shown. Figures 1 to 3 The adjustment mechanism 10 includes two adjustment structures 11, and the two adjustment structures 11 are arranged at intervals in the upper opening of the wall 40 along the vertical direction. Each adjustment structure 11 includes a plurality of sliding plates 111, and each sliding plate 111 is slidably connected in sequence along the vertical direction of the wall 40. The plurality of sliding plates 111 collectively constitute a sliding track, one end of each sliding track is connected to the wall 40, and the other end of each sliding track is connected to the window body 20.
[0024] A sliding rail for slidingly connecting the corresponding sliding plate 111 is fixedly disposed on the wall 40 .
[0025] The sliding track formed by the multiple sliding plates 111 makes the movement of the window body 20 more stable and flexible, and can accurately control the extended length of the window body 20 to meet different ventilation requirements. In the production plant, according to the ventilation requirements of different areas in the workshop, the window body 20 can be adjusted to a suitable position by sliding the sliding plate 111 on the slide rail to achieve precise ventilation.
[0026] In some embodiments, the window body 20 may be formed as follows: Figure 1 , Figure 2 See the structure shown. Figure 1 , Figure 2 The window body 20 includes a movable window frame 21 and a light-transmitting window body 22. The movable window frame 21 is fixed on the corresponding sliding plate 111 and moves along the extension direction of the sliding track. The movable window frame 21 is a connecting part. The light-transmitting window body 22 is fixed on the movable window frame 21, and the light-transmitting window body 22 is arranged parallel to the wall 40, and the light-transmitting window body 22 is a light-transmitting part.
[0027] The movable window frame 21 is connected to the sliding plate 111, which facilitates the overall movement of the window body 20. The light-transmitting window body 22 ensures the lighting function and meets the dual needs of the factory area for lighting and ventilation. In the processing plant area, the movable window frame 21 of the window body 20 moves on the sliding track, and the light-transmitting window 22 not only provides sufficient light, but also has a good ventilation effect, ensuring that the workshop is bright and the air is fresh.
[0028] In some embodiments, the ventilation mechanism 30 may be implemented as follows: Figures 1 to 3 See the structure shown. Figures 1 to 3 The ventilation mechanism 30 includes: a first ventilation structure 31, a second ventilation structure 32 and a flexible guide membrane 33. The first ventilation structure 31 is arranged on the movable window frame 21, and has a first connection end that can move in the vertical direction of the wall 40. The second ventilation structure 32 is arranged on the movable window frame 21 and is arranged horizontally spaced from the first ventilation structure 31, and the second ventilation structure 32 has a second connection end that can move in the vertical direction of the wall 40. The flexible guide membrane 33 is arranged between the first ventilation structure 31 and the second ventilation structure 32, and the two ends of the flexible guide membrane 33 are respectively connected to the first connection end and the second connection end, so as to change the inclination angle of the flexible guide membrane 33 with the movement of the first connection end and the second connection end, and the flexible guide membrane 33 and the two sliding tracks together constitute an acceleration channel.
[0029] The inclination angle of the flexible guide film 33 can be flexibly adjusted by moving the first and second ventilation structures 32, thereby accurately changing the shape and size of the acceleration channel and realizing precise control of the wind speed. In the production plant, when it is necessary to quickly discharge harmful gases, the first and second ventilation structures 32 are adjusted so that the flexible guide film 33 forms an acceleration channel with a suitable angle, speeds up the air flow rate, and quickly discharges harmful gases.
[0030] In some embodiments, the first ventilation structure 31 may be configured as follows: Figures 1 to 3 See the structure shown. Figures 1 to 3 The first ventilation structure 31 includes a first telescopic structure 311 and a first connection box 312. Two first telescopic structures 311 are provided, and the two first telescopic structures 311 are arranged on the movable window frame 21 at intervals in the vertical direction. The fixed end of each first telescopic structure 311 is fixed on the movable window frame 21, and the telescopic end of each first telescopic structure 311 extends toward the wall 40 along the vertical direction of the wall 40. The first connection box 312 is arranged in the vertical direction, and the first connection box 312 is connected to the telescopic ends of the two first telescopic structures 311. A reel is arranged in the first connection box 312, and the reel is arranged in the first connection box 312 in the vertical direction. Torsion springs are arranged at both ends of the reel, and the reel is connected to one end of the flexible guide film 33. The torsion spring is used to make the flexible guide film 33 always have a tendency to be retracted into the first connection box 312.
[0031] The first connection box 312 is provided with a first long opening for the flexible guide membrane 33 to pass through.
[0032] The first telescopic structure 311 can adjust the position of the first connection box 312, and then adjust the height of one end of the flexible guide membrane 33. The setting of the torsion spring allows the flexible guide membrane 33 to be automatically retracted when not in use, which is convenient for storage and protection. In the factory area, when the ventilation demand is small, the first telescopic structure 311 contracts, and the torsion spring retracts the flexible guide membrane 33 into the first connection box 312. When the ventilation demand increases, the first telescopic structure 311 extends to adjust the position of the flexible guide membrane 33.
[0033] In some embodiments, the second ventilation structure 32 may be configured as follows: Figures 1 to 3 See the structure shown. Figures 1 to 3 The second ventilation structure 32 includes a second telescopic structure 321 and a second connection box 322. Two second telescopic structures 321 are provided, and the two second telescopic structures 321 are arranged on the movable window frame 21 at intervals along the vertical direction. The fixed end of each second telescopic structure 321 is fixed on the movable window frame 21, and the telescopic end of each second telescopic structure 321 extends toward the wall 40 along the vertical direction of the wall 40. The second connection box 322 is arranged in the vertical direction, and the second connection box 322 is connected to the telescopic ends of the two second telescopic structures 321. The second connection box 322 is provided with a second long strip opening, and the second long strip opening is used for the other end of the flexible guide membrane 33 to be clamped and fixed.
[0034] Wherein, a clamping block is provided at the clamping end of the flexible guide membrane 33 .
[0035] The second telescopic structure 321 can adjust the position of the second connection box 322, and cooperate with the first ventilation structure 31 to accurately adjust the angle of the flexible guide membrane 33. The arrangement of the clamping block and the second long strip opening facilitates the installation and fixation of the flexible guide membrane 33. In the automobile manufacturing plant, when installing the flexible guide membrane 33, the clamping block is inserted into the second long strip opening, and the position of the second connection box 322 is adjusted by the second telescopic structure 321, which cooperates with the first ventilation structure 31 to achieve precise adjustment of the ventilation acceleration channel.
[0036] In some embodiments, the movable window frame 21 may be Figure 1 , Figure 2 See the structure shown. Figure 1 , Figure 2 The movable window frame 21 is provided with a handle 211 .
[0037] The operator can conveniently manually adjust the position of the window body 20, and the operation is simple and convenient. In the production plant, workers can easily move the window body 20 through the handle 211 to adjust the ventilation state.
[0038] In some embodiments, the flexible guide film 33 may be formed as follows: Figure 1 , Figure 2 See the structure shown. Figure 1 , Figure 2 , the flexible guide film 33 is made of light-transmitting material.
[0039] While ensuring the ventilation acceleration function, it does not affect the indoor lighting, making the indoor light more uniform. The flexible guide film 33 is made of a light-transmitting material, which not only achieves a good ventilation acceleration effect, but also does not affect the light requirements of the flowers.
[0040] In some embodiments, the sliding plate 111 may be Figure 1 , Figure 2 See the structure shown. Figure 1 , Figure 2 Each sliding plate 111 is provided with a sliding groove for sliding connection of adjacent sliding plates 111 .
[0041] The stability and smoothness of the sliding between the sliding plates 111 can be further improved, ensuring the smooth movement of the window body 20. During the adjustment process of the window body 20, the sliding grooves on the sliding plates 111 make the sliding plates 111 fit closely and move smoothly, ensuring stable adjustment of the ventilation effect.
[0042] The above are only preferred embodiments of the present invention and are not intended to limit the present invention. Any modifications, equivalent substitutions and improvements made within the spirit and principles of the present invention should be included in the protection scope of the present invention.
Claims
1. A connecting window for factory ventilation, characterized in that: include: The adjusting mechanism is arranged on the wall and has a fixed end connected to the wall and a movable end extending outward in a vertical direction of the wall; A window body, fixedly mounted on the movable end of the adjusting mechanism, wherein the window body comprises a connecting portion connected to the movable end of the adjusting mechanism and a light-transmitting portion arranged parallel to the wall; The ventilation mechanism is arranged on the connecting part of the window body and is located on the inner side of the light-transmitting part. The ventilation mechanism has a flexible guide part. The flexible guide part is arranged on the connecting part of the window body. The flexible guide part is used for deflecting an angle so that the adjustment mechanism and the flexible guide part form an acceleration channel to speed up the air flow through the wind speed channel.
2. The connecting window for factory ventilation according to claim 1, characterized in that: The adjustment mechanism includes two adjustment structures, the two adjustment structures are arranged at intervals at the upper opening of the wall along the vertical direction, each of the adjustment structures includes a plurality of sliding plates, each of the sliding plates is slidably connected in sequence along the vertical direction of the wall, and the plurality of sliding plates jointly constitute a sliding track, one end of each sliding track is connected to the wall, and the other end of each sliding track is connected to the window body; Wherein, a sliding rail for sliding connection of the corresponding sliding plate is fixedly arranged on the wall.
3. The connecting window for factory ventilation according to claim 2, characterized in that: The window body comprises: A movable window frame is fixed on the corresponding sliding plate and moves along the extending direction of the sliding track, and the movable window frame is the connecting part; A light-transmitting window is fixed on the movable window frame, the light-transmitting window is arranged parallel to the wall, and the light-transmitting window is the light-transmitting part.
4. The connecting window for factory ventilation as claimed in claim 3, characterized in that: The ventilation mechanism comprises: A first ventilation structure, arranged on the movable window frame, having a first connecting end movable in a vertical direction of the wall; A second ventilation structure, arranged on the movable window frame and spaced horizontally from the first ventilation structure, the second ventilation structure having a second connecting end movable in a vertical direction of the wall; A flexible guide membrane is arranged between the first ventilation structure and the second ventilation structure, and two ends of the flexible guide membrane are respectively connected to the first connecting end and the second connecting end, and is used to change the inclination angle of the flexible guide membrane along with the movement of the first connecting end and the second connecting end. The flexible guide membrane and the two sliding rails together constitute the acceleration channel.
5. The connecting window for factory ventilation as claimed in claim 4, characterized in that: The first ventilation structure comprises: There are two first telescopic structures, the two first telescopic structures are arranged on the movable window frame at intervals along the vertical direction, the fixed end of each first telescopic structure is fixed on the movable window frame, and the telescopic end of each first telescopic structure extends toward the wall along the vertical direction of the wall; A first connection box is arranged in a vertical direction, the first connection box is connected to the telescopic ends of the two first telescopic structures, a reel is arranged in the first connection box in a vertical direction, both ends of the reel are provided with a torsion spring, the reel is connected to one end of the flexible guide film, and the torsion spring is used to make the flexible guide film always have a tendency to be retracted into the first connection box; Wherein, the first connection box is provided with a first long opening for the flexible guide membrane to pass through.
6. The connecting window for factory ventilation according to claim 5, characterized in that: The second ventilation structure comprises: The second telescopic structure is provided with two, the two second telescopic structures are arranged on the movable window frame at intervals in the vertical direction, the fixed end of each second telescopic structure is fixed on the movable window frame, and the telescopic end of each second telescopic structure extends toward the wall along the vertical direction of the wall; A second connection box is arranged in the vertical direction, the second connection box is connected to the telescopic ends of the two second telescopic structures, and the second connection box is provided with a second long strip opening, and the second long strip opening is used for the other end of the flexible guide membrane to be clamped and fixed; Wherein, a clamping block is provided at the clamping end of the flexible guide membrane.
7. The connecting window for factory ventilation as claimed in claim 3, characterized in that: The movable window frame is provided with a handle.
8. The connecting window for factory ventilation as claimed in claim 4, characterized in that: The flexible guide film is made of light-transmitting material.
9. The connecting window for factory ventilation as claimed in claim 2, characterized in that: Each of the sliding plates is provided with a sliding groove for sliding connection of adjacent sliding plates.
Citation Information
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