Neck-hung type water anion device
By designing a neck-mounted water negative ion device that combines a water negative ion mechanism and an air outlet mechanism, the problem of existing devices being unable to provide water negative ions is solved. This achieves the purification and flow of water mist and air, providing health benefits and portability.
Patent Information
- Application Number
- CN202423216159.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-25
- Publication Date
- 2025-11-14
- Estimated Expiration
- 2034-12-25
AI Technical Summary
Existing neck-mounted negative air purifiers cannot provide negative water ions, thus failing to meet consumers' demand for the health benefits of negative water ions.
A neck-mounted water negative ion device was designed, comprising a water negative ion mechanism and an air outlet mechanism. The water negative ion mechanism generates water mist, and the air outlet mechanism creates airflow that carries the water mist to the target area. The air outlet mechanism is equipped with a negative ion generator and a high-voltage transformer. Combined with a fan and a filter assembly, it achieves the purification and flow of water mist and air.
It enables portable water negative ions and water mist inhalation in front of the nose and mouth, providing air purification and cooling functions, ensuring air cleanliness and negative ion content, and has a compact structure that reduces the failure rate and energy consumption of the fan.
Smart Images

Figure CN223550601U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of portable air handling devices, specifically relating to a neck-mounted water negative ion device. Background Technology
[0002] In recent years, with the escalation of air pollution, the impact of air quality on human health has received increasing attention. Negative ions are widely recognized for their numerous health benefits, including air purification, improved breathing quality, and enhanced immunity. Therefore, air handling equipment, especially portable air purifiers, has become an increasingly popular choice for consumers. To facilitate portability and use, neck-mounted negative air purifiers have emerged. These devices typically feature a lightweight design, worn around the neck, providing continuously treated air to help improve the air quality of the surrounding environment. However, current neck-mounted negative air purifiers still cannot provide water-based negative ions; therefore, there is an urgent need for a neck-mounted negative air purifier capable of generating water-based negative ions. Utility Model Content
[0003] The technical problem to be solved by this utility model is to provide a neck-mounted water negative ion device that can provide water negative ions.
[0004] This utility model provides a neck-mounted water negative ion device, including a neck-mounted body and a water negative ion mechanism and an air outlet mechanism disposed at at least one front end of the neck-mounted body.
[0005] The water negative ion mechanism is used to generate water mist with water negative ions, and the air outlet mechanism is used to create flowing air to move the water mist to the target area.
[0006] Furthermore, one of the front ends of the neckband body is equipped with a water negative ion mechanism and an air outlet mechanism, while the other front end is equipped with a separate air outlet mechanism.
[0007] Furthermore, the target areas of the flowing air formed by the two air outlet mechanisms are consistent.
[0008] Furthermore, a negative ion generator is installed on the air outlet channel of the air outlet mechanism.
[0009] Furthermore, the negative ion generator is connected to a high-voltage transformer.
[0010] Furthermore, the air inlets of the two air outlet mechanisms are located on opposite sides of the two front ends of the neckband body;
[0011] The air outlet channels of the two air outlet mechanisms are located on the upper side of the two front ends of the neck hanger body.
[0012] Furthermore, the air outlet mechanism includes a fan;
[0013] The air outlet channel includes an air inlet and an air outlet, and the air inlet is connected to the air outlet of the fan;
[0014] The air outlet channel is a rectangular channel, and the air inlet and air outlet are located on adjacent side walls of the rectangular channel;
[0015] The air outlet mechanism also includes an air inlet channel that communicates with the air inlet end. The air inlet channel is parallel to the air outlet channel, and the air outlet of the fan is connected to the inlet of the air inlet channel.
[0016] The air inlet and outlet of the fan are perpendicular to each other. A filter assembly is provided on the air inlet. The air outlet channel, air inlet channel, fan and filter assembly are arranged in a rectangular pattern.
[0017] Furthermore, the air outlet channel of the air outlet mechanism on the same side as the water negative ion mechanism is arranged adjacent to the water mist outlet of the water negative ion mechanism.
[0018] Furthermore, a separator is provided in the air outlet channel of the air outlet mechanism on the same side as the water negative ion mechanism. The separator divides the air outlet channel into two relatively independent channels I and II. Channel II is located between channel I and the water mist outlet.
[0019] A negative ion generator is installed in channel I.
[0020] Furthermore, the water negative ion mechanism includes a water storage chamber, an atomizing chamber, a water storage chamber, a suction device, and a vibrating plate with micropores;
[0021] One end of the microporous vibrating plate passes through the water storage cavity, and the other end passes through the atomizing cavity. A water mist outlet is provided on the surface of the atomizing cavity.
[0022] The water storage chamber is located below the atomizing chamber, and a water inlet is provided between the water storage chamber and the atomizing chamber. The suction device is used to draw water from the water storage chamber into the water storage chamber.
[0023] The beneficial effects of this utility model are that the neck-mounted water negative ion device provided by this utility model can realize the water negative ion generating mechanism to be carried with one's body, and the water mist generated by the water negative ion generating mechanism can be moved to the front of the user's nose and mouth through the air outlet mechanism, so that the user can inhale water negative ions anytime and anywhere. At the same time, the air outlet mechanism can form a flow of air, and thus can be used as a fan to cool the user. When the air outlet mechanism is equipped with a filter component, it can ensure that the air in front of the user's nose and mouth is purified, and can be used as an air purification device. Attached Figure Description
[0024] Appendix Figure 1 This is a schematic diagram of the structure of this utility model;
[0025] Appendix Figure 2 This is a top view of the present invention;
[0026] Appendix Figure 3 For the appendix Figure 2 Sectional view along line AA;
[0027] Appendix Figure 4 This is a schematic diagram of the first angle structure of the concealed neck-hanging body shell of this utility model;
[0028] Appendix Figure 5 This is a schematic diagram of the second angle structure of the concealed neck-hanging body shell of this utility model;
[0029] Appendix Figure 6 For the appendix Figure 5 A magnified view of the front end of the device containing water negative ion generators;
[0030] Appendix Figure 7 For the appendix Figure 6 A schematic diagram of the explosion from the first angle;
[0031] Appendix Figure 8 For the appendix Figure 6 A diagram illustrating the explosion from the second angle.
[0032] In the diagram, 1-neck hanger body; 11-air handling unit; 111-front end; 12-connector; 2-water negative ion mechanism; 21-water storage chamber; 22-atomizing chamber; 221-water mist outlet; 23-water storage chamber; 24-suction device; 25-with microporous vibrating plate; 26-water inlet; 3-air outlet mechanism; 31-fan; 311-air inlet; 312-air outlet; 32-air outlet channel; 321-channel I; 322-channel II; 323-air inlet end; 324-air outlet end; 325-separator; 33-air inlet channel; 34-filter assembly; 4-negative ion generator; 5-high voltage transformer. Detailed Implementation
[0033] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0034] It should be noted that all directional indicators (such as up, down, left, right, front, back, etc.) in this utility model embodiment are only used to explain the relative positional relationship and movement of each component in a certain specific posture (as shown in the figure). If the specific posture changes, the directional indicator will also change accordingly.
[0035] Furthermore, in this utility model, the use of terms such as "first," "second," etc., is for descriptive purposes only and should not be construed as indicating or implying their relative importance or implicitly specifying the number of technical features indicated. Therefore, a feature defined as "first" or "second" may explicitly or implicitly include at least one of that feature. In the description of this utility model, "multiple" means at least two, such as two, three, etc., unless otherwise explicitly specified.
[0036] In this utility model, unless otherwise explicitly specified and limited, the terms "connection," "fixed," etc., should be interpreted broadly. For example, "fixed" can mean a fixed connection, a detachable connection, or an integral part; it can mean a mechanical connection, an electrical connection, a physical connection, or a wireless communication connection; it can mean a direct connection or an indirect connection through an intermediate medium; it can mean the internal connection of two components or the interaction between two components, unless otherwise explicitly limited. Those skilled in the art can understand the specific meaning of the above terms in this utility model according to the specific circumstances.
[0037] Furthermore, the technical solutions of the various embodiments of this utility model can be combined with each other, but only if they are based on the ability of those skilled in the art to implement them. When the combination of technical solutions is contradictory or cannot be implemented, it should be considered that such combination of technical solutions does not exist and is not within the scope of protection claimed by this utility model.
[0038] As attached Figure 1 -Appendix Figure 8 As shown, this utility model provides a neck-mounted water negative ion device, including a neck-mounted body 1 and a water negative ion mechanism 2 and an air outlet mechanism 3 disposed at at least one front end 111 of the neck-mounted body 1. The neck-mounted body 1 includes a connector 12 and air treatment sections 11 disposed at both ends of the connector 12. The end of the air treatment section 11 facing away from the connector 12 is the front end 111. In specific use, the connector 12 is used to wear on the back of the neck of the human body, while the air treatment section 11 corresponds to the side of the neck of the human body, and its front end 111 is located in front of the side of the neck of the human body. The water negative ion mechanism 2 and the air outlet mechanism 3 can be disposed at only one front end 111 of the air treatment section 11, or they can be disposed at the front end 111 of both air treatment sections 11.
[0039] The water negative ion mechanism 2 is used to generate water mist with water negative ions, and the air outlet mechanism 3 is used to form flowing air to move the water mist to the target area. In specific use, the target area can be the nose and / or the area in front of the nose and mouth of the human body, so that the user can inhale the air with water negative ions.
[0040] The neck-mounted negative ion device provided by this utility model allows the negative ion generator 2 to be carried around, and the water mist generated by the negative ion generator 2 can be moved to the front of the user's nose and mouth through the air outlet mechanism 3, so that the user can inhale the negative ions anytime and anywhere. At the same time, the air outlet mechanism 3 can form a flow of air, and thus can be used as a fan to cool the user. When the air outlet mechanism 3 is equipped with a filter component 34, it can ensure that the air in front of the user's nose and mouth is purified, and can be used as an air purification device.
[0041] In one embodiment, one front end 111 of the neckband body 1 is provided with a water negative ion mechanism 2 and an air outlet mechanism 3, while the other front end 111 is provided with only one air outlet mechanism 3. In this embodiment, only one of the two front ends 111 is provided with both the water negative ion mechanism 2 and the air outlet mechanism 3, while the other front end 111 is provided with only one air outlet mechanism 3. This can control the amount of water mist, avoid excessive water mist in front of the user's nose and mouth, and ensure the airflow effect in front of the user's nose and mouth. When the air outlet mechanism 3 is equipped with a filter component 34, it can ensure that the air in front of the user's nose and mouth is purified.
[0042] In one embodiment, the target area of the flowing air formed by the two air outlet mechanisms 3 is the same, that is, the flowing air formed by the two air outlet mechanisms 3 is used to flow towards the front of the user's nose and mouth to ensure the cleanliness of the air inhaled by the user.
[0043] In one embodiment, a negative ion generator 4 is installed on the air outlet channel 32 of the air outlet mechanism 3. The negative ion generator 4 can generate negative air ions, further increasing the negative ion content in the air. At this time, the flowing air generated by both air outlet mechanisms 3 carries abundant negative ions, ensuring the amount of negative ions in front of the user's nose and mouth. In addition, the air negative ions generated by the air outlet mechanism 3 on the same side as the water negative ion mechanism 2 will also combine with water mist carrying water negative ions, increasing the residence time and travel distance of water negative ions in the air.
[0044] In one embodiment, the negative ion generator 4 is connected to a high-voltage transformer 5. The high-voltage transformer 5 can be an FHV-212 / ZF38124061808 high-voltage transformer, which has good internal insulation and waterproof performance. The high-voltage transformer 5 can provide high voltage to the negative ion generator 4 so that the negative ion generator 4 can generate negative air ions.
[0045] In one embodiment, the air inlets 311 of the two air outlet mechanisms 3 are located on opposite sides of the two front ends 111 of the neck hanger body 1. In actual use, the air inlets 311 are located in front of the human head, which is relatively open and can provide enough air to enter the air inlets 311 to form flowing air.
[0046] The air outlet channels 32 of the two air outlet mechanisms 3 are located on the upper side of the two front ends 111 of the neckband body 1, that is, the air outlet channels 32 form a flow of air moving from the front of the user's throat towards the nose and mouth.
[0047] In one embodiment, the air outlet mechanism 3 includes a fan 31;
[0048] The air outlet duct 32 includes an air inlet 323 and an air outlet 324, with the air inlet 323 connected to the air outlet 312 of the fan 31. In this case, the air outlet duct 32 is not the air outlet 312 of the fan 31; it can guide and direct the airflow from the fan 31, causing the air to flow in a relatively concentrated manner to the target area.
[0049] The air outlet channel 32 is a rectangular channel, and the air inlet 323 and the air outlet 324 are arranged on the adjacent two side walls of the rectangular channel;
[0050] The air outlet mechanism 3 also includes an air inlet channel 33 that communicates with the air inlet end 323. The air inlet channel 33 is parallel to the air outlet channel 32, and the air outlet 312 of the fan 31 is connected to the inlet of the air inlet channel 33.
[0051] The air inlet 311 and air outlet 312 of the fan 31 are perpendicular to each other. The fan 31 can be a centrifugal fan. A filter assembly 34 is provided on the air inlet 311 to filter the flowing air and further improve air quality. The air outlet channel 32, air inlet channel 33, fan 31, and filter assembly 34 are arranged in a rectangular pattern. Preferably, the air outlet channel 32 and air inlet channel 33 are arranged horizontally at the top, the fan 31 is arranged below the air inlet channel 33, and the filter assembly 34 is arranged below the air outlet channel 32. This ensures that the entire air outlet mechanism 3 has a compact structure and reduces the size of the water negative ion mechanism 2.
[0052] In this embodiment, the air outlet channel 32, air inlet channel 33, fan 31 and filter component 34 of the air outlet mechanism 3 can be highly integrated to ensure a compact structure, ensure the size of the front end 111 of the neckband body 1, and thus reduce the wearing burden on the user.
[0053] In one embodiment, the air outlet channel 32 of the air outlet mechanism 3 on the same side as the water negative ion mechanism 2 is arranged adjacent to the water mist outlet 221 of the water negative ion mechanism 2. In this embodiment, the air outlet duct 32 and the water mist outlet 221 are arranged adjacently, making them independent of each other. On the one hand, this can prevent the water mist generated by the water negative ion mechanism 2 from entering the fan 31 of the air outlet mechanism 3, thus preventing the electrical and mechanical parts of the fan 31 from getting damp, reducing the failure rate of the fan 31 and improving its durability. This way, the drive system of the fan 31 does not need excessive waterproofing and moisture-proofing, reducing the performance requirements of the fan 31. At the same time, it can also prevent water mist from accumulating inside the air outlet mechanism 3, thereby reducing the risk of bacterial growth and reducing the cleaning frequency. On the other hand, the airflow generated by the air outlet mechanism 3 in the air outlet duct 32 can be used to move the water mist with water negative ions to the target area. This not only moves the water mist to the target area, but also enhances the diffusion effect of the water mist through airflow, effectively increasing the distribution range of water negative ions. This reduces the need for water mist delivery devices that require additional energy, and achieves the effect of water negative ions while simplifying the overall structure and reducing energy consumption.
[0054] In one embodiment, a separator 325 is provided in the air outlet channel 32 of the air outlet mechanism 3 on the same side as the water negative ion mechanism 2. The separator 325 divides the air outlet channel 32 into two relatively independent channels I 321 and channel II 322. The channel II 322 is located between the channel I 321 and the water mist outlet 221.
[0055] A negative ion generator 4 is installed in channel I321.
[0056] In this embodiment, the negative ion generator 4 is used to generate negative air ions in channel I 321, and the generated negative air ions will flow out of the air flowing in the air outlet channel 32. At this time, the flowing air with negative air ions flows out of channel I 321, the flowing air flows out of channel II 322, and the water mist outlet 221 flows out of water mist with negative water ions. The flowing air will drive the water mist to flow. Finally, the negative air ions, air and water mist mix in the process of moving to the target area, so that the negative air ions and negative water ions combine, which greatly increases the negative ion content of the target area, while also ensuring the humidity of the target area.
[0057] Meanwhile, at the air outlet 32 and the water mist outlet 221, the simple flowing air from channel II 322 is located between the flowing air with negative air ions from channel I 321 and the water mist with negative water ions from water mist outlet 221. This can isolate the water mist from channel I 321 at the air outlet 32 and the water mist outlet 221, thus preventing the water mist from entering channel I 321 and contacting the negative ion generator 4, and avoiding the water mist affecting the operation and durability of the negative ion generator 4.
[0058] Furthermore, the design of the separator 325 can be used to distribute the airflow of channel I 321 and channel II 322, and can regulate the mixing position of negative air ions and water mist, further reducing the possibility of water mist entering channel I 321 and channel II 322. In a preferred embodiment, the position of the separator 325 is adjustable, thereby actively regulating the airflow of channel I 321 and channel II 322. Combined with the amount of water mist generated by the negative water ion generator 2, the airflow of channel II 322 is adjusted accordingly, ensuring that water mist cannot enter channel I 321 and channel II 322 under different water mist conditions.
[0059] Furthermore, in the specific structure of the air outlet mechanism 3 located on the same side as the water negative ion unit 2, the air outlet channel 32 includes an air inlet end 323 and an air outlet end 324, with the air inlet end 323 connected to the air outlet 312 of the fan 31. In this case, the air outlet channel 32 is not the air outlet 312 of the fan 31; it not only guides the airflow from the fan 31, causing it to flow in a relatively concentrated manner to the target area, but also extends the distance the water mist travels to the fan 31, further increasing the difficulty for the water mist to enter the fan 31.
[0060] Similarly, the air outlet channel 32 is a rectangular channel, and the air inlet 323 and air outlet 324 are located on adjacent side walls of the rectangular channel. In this case, since the air inlet 323 and air outlet 324 are not on a straight line, it can further increase the difficulty for water mist to enter the fan 31.
[0061] The air outlet mechanism 3 also includes an air inlet channel 33 connected to the air inlet end 323; the air inlet channel 33 is parallel to the air outlet channel 32, that is, the air supply direction of the air inlet channel 33 is the same as the air supply direction of the air outlet channel 32; the air outlet 312 of the fan 31 is connected to the inlet of the air inlet channel 33. At this time, the air from the air outlet 312 of the fan 31 can enter the air outlet channel 32 through the air inlet channel 33, and the distance that water mist needs to travel to enter the fan 31 can be further extended, thereby further increasing the difficulty for water mist to enter the fan 31.
[0062] In one embodiment, the water negative ion mechanism 2 includes a water storage chamber 21, an atomizing chamber 22, a water storage chamber 23, a suction device 24, and a microporous vibrating plate 25.
[0063] One end of the microporous vibrating plate 25 passes through the water storage cavity 21, and the other end passes through the atomizing cavity 22. A water mist outlet 221 is provided on the cavity surface of the atomizing cavity 22. The microporous vibrating plate 25 is used to obtain water in the water storage cavity 21 and atomize the obtained water into water mist with negative water ions through vibration. The water mist enters the atomizing cavity 22 and flows out from the water mist outlet 221 of the atomizing cavity 22, thereby generating negative water ions.
[0064] The water storage chamber 23 is located below the atomizing chamber 22, and an inlet 26 is provided between the water storage chamber 23 and the atomizing chamber 22. The suction device 24 is used to draw water from the water storage chamber 23 into the water storage chamber 21. The water storage chamber 23 is used to receive the condensate water that does not flow out of the water mist outlet 221 in the atomizing chamber 22. The condensate water in the atomizing chamber 22 flows into the water storage chamber 23 from the inlet 26 by gravity, and then is reinjected into the water storage chamber 21 by the suction device 24 to realize the recycling of condensate water.
[0065] The water negative ion device 2 has an atomizing chamber 22 that controls the amount of water mist carrying negative ions flowing out of the device, preventing excessive water mist from entering the air. This is especially important when the device is installed on a neck-mounted air purifier, as it helps prevent users from inhaling too much water mist. In addition, the atomizing chamber 22 can collect condensate. Excess water mist that is not discharged from the water mist outlet 221 will condense into condensate in the atomizing chamber 22, then flow into the water storage chamber 23 through the water inlet 26, and finally be re-injected into the water storage chamber 21 by the suction device 24 for reuse.
[0066] The negative ion device 2 can control the outflow of water mist and can also re-inject excess water mist into the water storage chamber 21 after condensation, which can greatly reduce the water injection frequency and save water resources.
[0067] The above description is merely an embodiment and does not constitute any limitation on this utility model. Any person skilled in the art can make many possible variations, modifications, or alterations to the technical solution of this utility model without departing from its scope. Therefore, any simple modifications, equivalent changes, and alterations made to the above embodiments based on the technical essence of this utility model, without departing from its scope, should fall within the protection scope of this utility model.
Claims
1. A neck-mounted water negative ion device, characterized in that, It includes a neck-hanging body (1) and a water negative ion mechanism (2) and an air outlet mechanism (3) disposed at at least one front end (111) of the neck-hanging body (1). The water negative ion mechanism (2) is used to generate water mist with water negative ions, and the air outlet mechanism (3) is used to form flowing air to move the water mist to the target area.
2. The neck-mounted negative ion device as described in claim 1, characterized in that, The neck-hanging body (1) has a water negative ion mechanism (2) and an air outlet mechanism (3) on one of its front ends (111), and a separate air outlet mechanism (3) on the other front end (111).
3. The neck-mounted negative ion device as described in claim 2, characterized in that, The target areas of the flowing air formed by the two air outlet mechanisms (3) are the same.
4. The neck-mounted negative ion device as described in claim 3, characterized in that, A negative ion generator (4) is installed on the air outlet channel (32) of the air outlet mechanism (3).
5. The neck-mounted negative ion device as described in claim 4, characterized in that, The negative ion generator (4) is connected to a high voltage transformer (5).
6. The neck-mounted negative ion device as described in any one of claims 2-5, characterized in that, The air inlets (311) of the two air outlet mechanisms (3) are located on opposite sides of the two front ends (111) of the neck-hanging body (1); The air outlet channels (32) of the two air outlet mechanisms (3) are located on the upper side of the two front ends (111) of the neck hanger body (1).
7. The neck-mounted negative ion device as described in claim 6, characterized in that, The air outlet mechanism (3) includes a fan (31); The air outlet channel (32) includes an air inlet (323) and an air outlet (324), wherein the air inlet (323) is connected to the air outlet (312) of the fan (31); The air outlet channel (32) is a rectangular channel, and the air inlet (323) and air outlet (324) are located on the adjacent two side walls of the rectangular channel; The air outlet mechanism (3) also includes an air inlet channel (33) connected to the air inlet end (323), the air inlet channel (33) is parallel to the air outlet channel (32), and the air outlet (312) of the fan (31) is connected to the inlet of the air inlet channel (33); The air inlet (311) and air outlet (312) of the fan (31) are perpendicular to each other. A filter assembly (34) is provided on the air inlet (311). The air outlet channel (32), air inlet channel (33), fan (31) and filter assembly (34) are arranged in a rectangular pattern.
8. The neck-mounted negative ion device as described in any one of claims 1-5 and 7, characterized in that, The air outlet channel (32) of the air outlet mechanism (3) on the same side as the water negative ion mechanism (2) is arranged adjacent to the water mist outlet (221) of the water negative ion mechanism (2).
9. The neck-mounted negative ion device as described in claim 8, characterized in that, A separator (325) is provided in the air outlet channel (32) of the air outlet mechanism (3) on the same side as the water negative ion mechanism (2). The separator (325) divides the air outlet channel (32) into two relatively independent channels I (321) and channel II (322). The channel II (322) is located between the channel I (321) and the water mist outlet (221). A negative ion generator (4) is installed in channel I (321).
10. The neck-mounted negative ion device as described in any one of claims 1-5 and 7, characterized in that, The water negative ion mechanism (2) includes a water storage chamber (21), an atomizing chamber (22), a water storage chamber (23), a suction device (24), and a microporous vibrating plate (25). One end of the microporous vibrating plate (25) passes through the water storage cavity (21), and the other end passes through the atomizing cavity (22). A water mist outlet (221) is provided on the cavity surface of the atomizing cavity (22). The water storage chamber (23) is located below the atomizing chamber (22), and a water inlet (26) is provided between the water storage chamber (23) and the atomizing chamber (22). The suction device (24) is used to pump the water in the water storage chamber (23) into the water storage chamber (21).