Humidifying device
By designing a humidification device including air guide parts, humidification pipes and dispersing parts, the problem that existing humidification devices are difficult to humidify air conditioners evenly, achieving uniform distribution of air humidity and ensuring the quality of yarn processing.
Patent Information
- Application Number
- CN202421850787.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-31
- Publication Date
- 2025-06-03
- Estimated Expiration
- 2034-07-31
AI Technical Summary
Existing humidification devices are difficult to humidify the air in the air conditioner cold air evenly, resulting in uneven moisture during yarn processing, affecting production quality.
A humidification device is designed, including air guide parts, humidification pipes and dispersing parts. The air guide member introduces the air conditioner and cold air through the first air guide duct. The humidification pipe transports the mist generated by the humidifier into the air guide duct. The dispersing member uses a spiral air guide strip to fully mix the mist and air.
Through this humidification device, the humidity in the air is evenly distributed, ensuring the quality of the yarn during processing, and solving the problem of uneven humidification.
Smart Images

Figure CN222937948U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of air humidification, in particular to a humidifying device. Background Art
[0002] In the textile industry, to ensure the appropriate softness, tension of yarns and reduce the generation of static electricity, the air humidity has relatively high requirements for yarns during the processing of fine yarns.
[0003] In the actual working environment, the conventional air-conditioning humidification function is difficult to meet the humidification requirements of the fine yarn workshop. Usually, humidifiers or wet curtain systems are used to increase the air humidity in the workshop. However, the mist generated by the humidifying device is difficult to be fully mixed with the cold air of the air conditioner, and the humidity in the workshop is unevenly humidified, thus affecting the production quality of yarns during the processing of fine yarns. Therefore, this application particularly proposes a humidifying device that can uniformly humidify the cold air of the air conditioner. Summary of the Utility Model
[0004] The main purpose of the utility model is to provide a humidifying device that can uniformly humidify the cold air of the air conditioner.
[0005] To achieve the above purpose, the utility model provides a humidifying device, including:
[0006] A wind guiding component, the wind guiding component includes a first air duct connected to the air outlet of the air conditioner. The first air duct is composed of a first pipe section and a second pipe section, and the end of the second pipe section of the first air duct is the air outlet;
[0007] A humidifying pipe, the humidifying pipe is arranged on one side of the first air duct, and one end of the humidifying pipe is communicated with the first pipe section of the first air duct, and the other end is communicated with a humidifier. The humidifying pipe is used to convey the mist produced by the humidifier into the first air duct;
[0008] A dispersing component, which is arranged in the second pipe section of the first air duct and is used to disperse the mist in the air.
[0009] Further, the dispersing component includes a plurality of wind guiding strips spirally distributed on the inner wall of the second pipe section, and each wind guiding strip is used to guide the air and mist in the first air duct to be output spirally.
[0010] Further, a second air duct is provided on one side of the first air duct. The air inlet of the second air duct is communicated with the first air duct, and the air inlet of the second air duct is arranged above the outlet of the humidifying pipe. A connecting component is provided at the air inlet of the second air duct. The connecting component is used to guide the air and mist in the first air duct into the second air duct. A control unit is provided on the second air duct, and an adjusting component is provided at the air outlet of the first air duct. The air outlet of the second air duct is communicated with the adjusting component. When the second air duct is in communication, the adjusting component is used to adjust the air outlet direction of the air and mist in the second air duct.
[0011] Further, the connecting component includes a third air duct slidably arranged at the air inlet of the second air duct. A power unit is provided on the second air duct. The power unit is used to drive the third air duct to reciprocate in the second air duct along the direction of the air outlet of the second air duct. When the third air duct extends out, the air inlet of the third air duct is located above the outlet of the humidifying pipe, and the windward cross-section of the air inlet of the third air duct corresponds to the wind direction in the first pipe section of the first air duct.
[0012] Further, the adjusting component includes an air storage disc arranged at one end close to the air outlet of the first air duct. An adjusting disc is rotatably arranged on one side of the air storage disc close to the air outlet of the first air duct. The air storage disc and the adjusting disc are in dynamic sealing cooperation. The adjusting disc rotates around the axis of the second pipe section. Inner cavities are provided in both the air storage disc and the adjusting disc and are communicated with each other. A plurality of air outlet pipes are distributed on the side of the adjusting disc away from the air storage disc. Each air outlet pipe is used to discharge the air and mist in the second air duct.
[0013] Further, a blower is provided in the first pipe section of the first air duct, and the blower is arranged below the connection between the first air duct and the humidifying pipe. The blower is used to drain the air blown out by the air conditioner.
[0014] The beneficial effects of the present utility model are embodied in:
[0015] In the present utility model, through the cooperation of the air guiding component and the humidifying pipe, when the air passes through the first air duct, it contacts the mist. As the air continues to flow and contacts the dispersing component, the dispersing component fully mixes the mist and the air, so that the humidity distribution in the air is uniform, ensuring the quality of the yarn during processing. Description of the Drawings
[0016] Figure 1 is a three-dimensional view of the front of the humidifying device of the present utility model;
[0017] Figure 2It is a cross-sectional view of the humidifying device of the present utility model.
[0018] Explanation of reference numerals:
[0019] 1. Air guiding component; 11. First air duct; 111. First pipe section; 112. Second pipe section; 12. Fan; 2. Humidifying pipe; 3. Dispersion component; 31. Air guiding strip; 4. Second air duct; 41. Connecting component; 411. Third air duct; 42. Control unit; 5. Adjusting component; 51. Air storage tray; 52. Adjusting tray; 521. Air outlet pipe; 6. Air conditioner; 7. Humidifier. Specific implementation
[0020] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. Without conflict, the embodiments in this application and the features in the embodiments can be combined with each other.
[0021] See Figure 1 - Figure 2 .
[0022] The present utility model discloses a humidifying device, including:
[0023] An air guiding component 1, which includes a first air duct 11 connected to the air outlet of the air conditioner 6. The first air duct 11 is composed of a first pipe section 111 and a second pipe section 112, and the end of the second pipe section 112 of the first air duct 11 is the air outlet;
[0024] A humidifying pipe 2, which is arranged on one side of the first air duct 11, and one end of the humidifying pipe 2 is communicated with the first pipe section 111 of the first air duct 11, and the other end is communicated with the humidifier 7. The humidifying pipe 2 is used to convey the mist produced by the humidifier 7 into the first air duct 11;
[0025] A dispersion component 3, which is arranged in the second pipe section 112 of the first air duct 11 and is used to disperse the mist in the air.
[0026] In specific implementation, when the air conditioner 6 sends air into the first pipe section 111 of the first air duct 11, the humidifier 7 sends the mist into the first pipe section 111 of the first air duct 11 through the humidifying pipe 2. The air carries the mist into the second pipe section 112 of the first air duct 11 and contacts the dispersion component 3. The dispersion component 3 evenly disperses the mist in the air until the air with uniform humidity is blown out of the first air duct 11.
[0027] In this utility model, through the cooperation of the air guiding component 1 and the humidifying pipe 2, when air passes through the first air duct 11, it contacts with the mist. As the air continues to flow and contacts with the dispersing component 3, the dispersing component 3 fully mixes the mist with the air, so as to make the humidity distribution in the air uniform and ensure the quality of the yarn during processing.
[0028] In one embodiment, the dispersing component 3 includes a plurality of air guiding strips 31 spirally distributed on the inner wall of the second pipe section 112 of the first air duct 11, and each air guiding strip 31 is used to guide the air and mist in the first air duct 11 to output spirally.
[0029] With such a design, when the air carrying the mist flows into the second pipe section 112 of the first air duct 11, the air and mist near the inner wall of the second pipe section 112 of the first air duct 11 rotate along the spiral direction of the air guiding strip 31 and drive the air and mist near the center direction of the second pipe section 112 of the first air duct 11 to rotate until the air and mist in the second pipe section 112 of the first air duct 11 are mixed with each other. At this time, the air humidity in the air is evenly distributed and flows into the workshop.
[0030] In one embodiment, a second air duct 4 is provided on one side of the first air duct 11. The air inlet of the second air duct 4 is communicated with the first air duct 11 and the air inlet of the second air duct 4 is arranged above the outlet of the humidifying pipe 2. And a connecting component 41 is provided at the air inlet of the second air duct 4. The connecting component 41 is used to guide the air and mist in the first air duct 11 into the second air duct 4. A control unit 42 is provided on the second air duct 4. An adjusting component 5 is provided at the air outlet of the first air duct 11. The air outlet of the second air duct 4 is communicated with the air outlet of the adjusting component 5. When the second air duct 4 is in a through state, the adjusting component 5 is used to adjust the air outlet direction of the air and mist in the second air duct 4.
[0031] With such a design, when the humidity required by some spinning machines in the workshop during processing is higher than that of other spinning machines, the air outlet direction of the second air duct 4 is adjusted to the side of the corresponding spinning machine through the adjusting component 5. At this time, the control unit 42 is opened to make the second air duct 4 in a through state, and a part of the air and mist in the first air duct 11 is guided into the second air duct 4 through the connecting component 41. The air and mist in the second air duct 4 enter the adjusting component 5 and are discharged towards the corresponding spinning machine, so as to perform additional humidification on the spinning machine located on one side of the first air duct 11. When additional humidification of the spinning machine is not required, the control unit 42 is closed. At this time, the second air duct 4 is in an open state, and the whole workshop is humidified.
[0032] Preferably, the control unit 42 can adopt a solenoid valve in the prior art.
[0033] In one embodiment, the connection component 41 includes a third air duct 411 slidably disposed at the air inlet of the second air duct 4. A power unit (not shown in the figure) is provided on the second air duct 4. The power unit is configured to drive the third air duct 411 to reciprocally move along the direction in which the air outlet of the second air duct 4 is opened within the second air duct 4. When the third air duct 411 extends, the air inlet of the third air duct 411 is located above the outlet of the humidifying pipe 2, and the windward cross-section of the air inlet of the third air duct 411 corresponds to the wind direction in the first pipe segment 111 of the first air duct 11.
[0034] With such a design, when the adjusting component 5 needs to work, the power unit drives the third air duct 411 to extend out of the second air duct 4 and insert into the first pipe segment 111 of the first air duct 11. At this time, the air inlet of the third air duct 411 is located above the outlet of the humidifying pipe 2, and the humidity of the mist at the air inlet of the third air duct 411 is the highest. Part of the air in the first pipe segment 111 of the first air duct 11 carries part of the mist and flows into the second air duct 4 through the third air duct 411. When the adjusting component 5 does not need to work, the power unit drives the third air duct 411 to contract into the second air duct 4, and the second air duct 4 is no longer in communication. At this time, the third air duct 411 does not affect the air flow velocity in the first pipe segment 111 of the first air duct 11.
[0035] Preferably, the power unit is an electric telescopic rod or a pneumatic telescopic component.
[0036] In one embodiment, the adjusting component 5 includes an air storage disc 51 disposed at one end near the air outlet of the first air duct 11. An adjusting disc 52 is rotatably provided on one side of the air storage disc 51 close to the air outlet of the first air duct 11, and the air storage disc 51 is in dynamic sealing cooperation with the adjusting disc 52. The adjusting disc 52 rotates around the axis of the second pipe segment 112. Inner cavities are provided in both the air storage disc 51 and the adjusting disc 52 and are in communication with each other. A plurality of air outlet pipes 521 are further distributed on the side of the adjusting disc 52 away from the air storage disc 51. Each air outlet pipe 521 is configured to discharge the air and mist in the second air duct 4.
[0037] With such a design, when additional humidification of the corresponding spinning machine is required, by rotating the adjusting disc 52, each air outlet pipe 521 is adjusted to the position corresponding to the spinning machine. At this time, the second air duct 4 is in communication, and the air and mist in the second air duct 4 enter the cavity of the air storage disc 51 and flow into the inner cavity of the adjusting disc 52, and then are discharged from each air outlet pipe 521, so as to realize the adjustment of the air outlet direction of the air and mist in the second air duct 4.
[0038] In one embodiment, a blower 12 is provided in the first pipe segment 111 of the first air duct 11, and the blower 12 is disposed below the connection between the first air duct 11 and the humidifying pipe 2. The blower 12 is configured to divert the air blown out by the air conditioner 6.
[0039] With such a design, when air passes through the first pipe section 111 of the first air duct 11, the fan 12 starts and increases the flow velocity of the air flow in the first pipe section 111. When the air passes through the humidifying pipe 2, it will actively carry away the mist in the humidifying pipe 2, further improving the humidifying quality. Moreover, the fan 12 is located below the humidifying pipe 2, and the mist rises with the air flow and is difficult to adhere to the fan 12, so it is not easy to affect the operation of the fan 12.
[0040] The above are only the preferred embodiments of the present invention and are not intended to limit the present invention. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principles of the present invention shall be included in the protection scope of the present invention. In addition, "a plurality of", "multiple groups", and "several" mean two or more.
Claims
1. A humidifying device, characterized in that: include: An air guide component (1), the air guide component (1) comprising a first air guide pipe (11) connected to an air outlet of an air conditioner (6), the first air guide pipe (11) comprising a first pipe section (111) and a second pipe section (112), the end of the second pipe section (112) of the first air guide pipe (11) being an air outlet; a humidifying pipe (2), the humidifying pipe (2) being arranged on one side of the first air duct (11), and one end of the humidifying pipe (2) being connected to the first pipe section (111) of the first air duct (11), and the other end of the humidifying pipe (2) being connected to the humidifier (7), the humidifying pipe (2) being used for conveying the mist produced by the humidifier (7) into the first air duct (11); A dispersion component (3) is arranged in the second pipe section (112) of the first air guide pipe (11) and is used to disperse mist in the air.
2. The humidifying device according to claim 1, characterized in that: The dispersion component (3) comprises a plurality of air guide strips (31) spirally distributed on the inner wall of the second pipe section (112), each of the air guide strips (31) being used to guide the air and mist in the first air guide pipe (11) to be spirally output.
3. The humidifying device according to claim 1, characterized in that: A second air duct (4) is provided on one side of the first air duct (11); an air inlet of the second air duct (4) is connected to the first air duct (11); and the air inlet of the second air duct (4) is arranged above the outlet of the humidifying tube (2); and a connecting component (41) is provided at the air inlet of the second air duct (4); the connecting component (41) is used to guide the air and mist in the first air duct (11) into the second air duct (4); a control unit (42) is provided on the second air duct (4); an adjusting component (5) is provided at the air outlet of the first air duct (11); the air outlet of the second air duct (4) is connected to the air outlet of the adjusting component (5); when the second air duct (4) is open, the adjusting component (5) is used to adjust the air outlet direction of the air and mist in the second air duct (4).
4. The humidifying device according to claim 3, characterized in that: The connecting component (41) comprises a third air duct (411) slidably arranged at the air inlet of the second air duct (4); a power unit is arranged on the second air duct (4); the power unit is used to drive the third air duct (411) to move back and forth in the second air duct (4) along the direction of the air outlet of the second air duct (4); when the third air duct (411) is extended, the air inlet of the third air duct (411) is located above the outlet of the humidifying tube (2), and the windward cross-section of the air inlet of the third air duct (411) corresponds to the wind direction in the first pipe section (111) of the first air duct (11).
5. The humidifying device according to claim 3, characterized in that: The regulating component (5) comprises an air storage disk (51) arranged at one end of the air outlet of the first air duct (11); an regulating disk (52) is rotatably provided on one side of the air storage disk (51) close to the air outlet of the first air duct (11); the air storage disk (51) and the regulating disk (52) are dynamically sealed; the regulating disk (52) rotates around the axis of the second pipe section (112); the air storage disk (51) and the regulating disk (52) are both provided with inner cavities and are interconnected; a plurality of air outlet pipes (521) are distributed on one side of the regulating disk (52) away from the air storage disk (51); each of the air outlet pipes (521) is used to discharge air and mist in the second air duct (4).
6. The humidifying device according to claim 1, characterized in that: A fan (12) is provided in the first pipe section (111) of the first air guide pipe (11), and the fan (12) is arranged below the connection point between the first air guide pipe (11) and the humidification pipe (2), and the fan (12) is used to guide the air blown out by the air conditioner (6).