Multi-adaptability negative ion generating mechanism
By setting an external interface on the shell of the negative ion generating mechanism, a closed-loop system is formed with equipment such as oxygen concentrators and ventilators, which solves the problems of complex structure and poor adaptability in the existing technology and achieves a highly adaptable and low-cost negative ion generation effect.
Patent Information
- Application Number
- CN202422841853.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-21
- Publication Date
- 2025-10-24
- Estimated Expiration
- 2034-11-21
AI Technical Summary
Existing negative ion generating mechanisms are usually fixedly installed on functional instruments and equipment, resulting in complex structure, high cost of use and poor adaptability, and inability to achieve multi-purpose use of one machine.
A multi-adaptable negative ion generating mechanism is designed. By setting an external interface on the shell, it can be connected to equipment such as oxygen concentrators and ventilators to form a closed-loop system, achieve efficient output of negative ion concentration, and adapt to external devices with different functions through detachable connections.
The negative ion generating mechanism has high adaptability and low maintenance cost, has a simple structure, is easy to use, is applicable to a variety of medical equipment, and has low cost when used alone.
Smart Images

Figure CN223471913U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to negative ion equipment technical field especially relates to a multi-adaptability negative ion generating mechanism. BACKGROUND
[0002] The negative oxygen ion generating machine is a small household appliance commonly seen in modern life, which can produce air negative ions through artificial negative ion generating technology, and can create a negative oxygen ion bath environment for our home air environment. Thus, it has good health care effect on the body, so more and more families or public places will install negative ion machines to achieve the purpose of air purification.
[0003] In the prior art, a portable oxygen generator with a negative oxygen ion generating device is disclosed in Chinese utility model patent with publication number CN201470293U, which discloses a portable oxygen generator with a negative oxygen ion generating device, and specifically relates to an oxygen generator. It comprises an oxygen generator shell, and the oxygen generator shell is provided with an air compressor, an air separator and an oxygen storage tank connected in sequence. A negative ion generator is arranged between the air separator and the oxygen storage tank. The air separator is a molecular sieve air separator. The negative ion generator is also provided with a negative ion concentration control system for controlling the negative ion concentration. The negative ion concentration control system comprises a negative ion concentration sensor, which is located in the oxygen storage tank. The device has the effect of increasing the negative oxygen ions in the air. The negative oxygen ion concentration in the air is maintained at an appropriate standard, meeting the needs of customers and saving energy.
[0004] For example, a circulating negative ion breathing machine is disclosed in Chinese utility model patent with publication number CN210992433U, which discloses a circulating negative ion breathing machine, comprising a machine body and a breathing mask. The breathing mask is connected to the machine body. A through port is arranged on the left side wall of the breathing mask near the lower end center position. A connecting ring is arranged at the center position of the through port. An elastic rubber sheet is fixedly arranged between the outer ring edge of the connecting ring and the inner ring edge of the through port. A spiral ring is vertically arranged on the left side of the position where the through port is located. A threaded top pipe is transversely arranged in the spiral ring. The threaded top pipe is in contact with the connecting ring near the mouth of the wearer during use. In this process, the elastic rubber sheet is gradually stretched and expanded. Finally, the connecting ring is attached to the position near the mouth of the wearer. In this way, the space where the mouth is located is connected to the external space through the connecting ring and the threaded top pipe, which facilitates the effective spread of the words spoken by the wearer. At the same time, the elastic rubber sheet that is stretched and expanded seals the space between the connecting ring and the through port, reducing the leakage of gas from the machine body into the breathing mask.
[0005] In the prior art, the negative ion generating mechanism is fixedly arranged on the functional instrument device to achieve the treatment effect, which cannot be used in multiple ways. Not only does it complicate the structure and increase the use cost, but also it has poor adaptability. Utility model content
[0006] The utility model provides a kind of multi-adaptability negative ion generating mechanism for the deficiency in prior art, which can be used with various medical devices in the external environment, and can also be used alone, with simple structure and low use cost.
[0007] To solve the above technical problems, the utility model solves by the following technical scheme: a kind of multi-adaptability negative ion generating mechanism, including shell, the shell is separated into negative ion generating cavity and ionization component installation cavity by ionization plate, the shell is provided with the external interface that is communicated with the negative ion generating cavity and forms closed loop.
[0008] In the above technical solution, the external interface is an oxygen generator interface, which can be connected with an oxygen generator.
[0009] In the above technical solution, the oxygen generator interface includes an oxygen generator inlet and an oxygen generator outlet, forming a closed loop system.
[0010] In the above technical solution, the external interface is a respirator interface, which can be connected with a respirator.
[0011] In the above technical solution, the respirator interface includes a respirator inlet and a respirator outlet, forming a closed loop system.
[0012] In the above technical solution, the external interface is a detachable connection, which is convenient for matching external devices with different functions.
[0013] In the above technical solution, the shell includes an upper shell and a lower shell that are adapted to each other, which reduces the difficulty of mold opening and makes installation more convenient.
[0014] In the above technical solution, the upper shell is divided into an open outer cavity and an inner cavity by an upper shell top plate, and the external interface protrudes from the outer surface of the shell top plate and is located in the outer cavity.
[0015] In the above technical solution, a plurality of connection parts are provided at the lower edge of the inner cavity, and the ionization plate closes the lower bottom surface of the inner cavity through the connection parts, so that there is a working space between the upper working surface of the ionization plate and the shell top plate and a negative ion generating cavity is formed.
[0016] In the above technical solution, the lower shell is provided with an ionization component installation cavity, and the ionization component is located in the ionization component installation cavity, including a power supply, a PCB board and a control component that are electrically connected to each other, and the control panel outside the lower shell is electrically connected to the control component.
[0017] Compared with the prior art, the utility model has following beneficial effect: through setting up the external interface on the casing, with the negative ion generating cavity forms a closed loop, it is favorable to provide the output negative ion concentration, realizes use purpose, and the external interface can match different function external equipment, the adaptability is higher, can external negative ion generating mechanism without changing equipment condition, the reconstruction cost is lower, uses more conveniently. BRIEF DESCRIPTION OF DRAWINGS
[0018] In order to more clearly illustrate the technical scheme in the embodiment of the utility model, the following will be needed to use the drawings in the embodiment briefly introduced, obviously, the drawings in the following description only some embodiments of the utility model, for those skilled in the art, under the premise of not paying creative labor, other drawings can also be obtained according to these drawings.
[0019] Fig. 1 It is structure schematic diagram in the embodiment 1 of the utility model.
[0020] Fig. 2 It is sectional structure schematic diagram in the embodiment 1 of the utility model.
[0021] Fig. 3 It is sectional structure schematic diagram of upper casing in the embodiment 1 of the utility model.
[0022] Fig. 4 It is structure schematic diagram in the embodiment 2 of the utility model.
[0023] Fig. 5 It is explosive structure schematic diagram in the embodiment 2 of the utility model.
[0024] Fig. 6 It is sectional structure schematic diagram of upper casing in the embodiment 2 of the utility model. DETAILED DESCRIPTION
[0025] The utility model is further described in detail below in combination with the drawings.
[0026] The following description is used to disclose the utility model so that those skilled in the art can realize the utility model.The preferred embodiments in the following description are only as examples, and other obvious modifications can be conceived by those skilled in the art.The basic principles of the utility model defined in the following description can be used in other embodiments, modification schemes, improvement schemes, equivalent schemes and other technical schemes without departing from the spirit and scope of the utility model.
[0027] Those skilled in the art should understand that in the disclosure of the utility model, the orientation or position indicated by the terms "longitudinal", "transverse", "upper", "lower", "left", "right", "front", "rear", "vertical", "horizontal", "top", "bottom", "inner", "outer" and the like is based on the orientation or position relationship shown in the drawings, which is only for the convenience of the simplified description of the utility model and does not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, therefore the above terms cannot be understood as a limitation on the utility model.
[0028] It can be understood that the term "one" should be understood as "at least one" or "one or more", that is, in one embodiment, the number of one element can be one, and in another embodiment, the number of the element can be multiple, and the term "one" cannot be understood as a limitation on the number.
[0029] Embodiment 1: see Figs. 1 to 3 A multi-adaptability negative ion generating mechanism comprises a shell 1 formed by mutually adapted upper shell 11 and lower shell 12, wherein the upper shell 11 is divided into an open outer cavity 110 and an inner cavity 111 by an upper shell top plate 10, an external interface is arranged on the outer surface of the shell top plate 10 and located in the outer cavity 110, and the end of the external interface is not higher than the eaves of the outer cavity 110, so that the protection of the external interface is facilitated and the external interface cannot be damaged due to external force.
[0030] A plurality of connecting parts 111a are arranged at the lower edge of the inner cavity 111, and the ionization plate 21 closes the lower bottom surface of the inner cavity 111 through the connecting parts 111a, so that there is a working space between the upper working surface of the ionization plate 21 and the shell top plate 10 and a negative ion generating cavity 31 is formed, and thus the external interface is communicated with the negative ion generating cavity 31 and forms a closed loop.
[0031] It is worth mentioning that the lower shell 12 is provided with an external power supply reserved groove 121 at the bottom, so that the shell can be stably placed on the supporting surface.
[0032] In this embodiment, the external interface is an oxygen generator interface, which comprises an oxygen generator inlet 41 and an oxygen generator outlet 42, of course, the external interface and the shell top plate 10 are detachably connected, so that one negative ion generating mechanism can adapt to different external devices, of course, the external interface and the shell top plate 10 can also be fixedly connected and used for fixed devices.
[0033] When the above mechanism is used, only the oxygen interface of the oxygen generator is connected to the oxygen generator inlet 41, and the output end is connected to the oxygen generator outlet 42. When the oxygen enters the negative ion generating cavity 31 from the oxygen generator inlet 41, the negative ions do not escape because the entire closed loop is closed, and the ionization forms a high concentration of negative ions, which are sent to the terminal from the oxygen generator outlet 42 to achieve the treatment or physiotherapy effect.
[0034] If the negative ion generating mechanism is damaged, only the negative ion generating mechanism needs to be replaced, without the need to replace the oxygen generating device together. Compared with the traditional structure of integrating the negative ion generating mechanism and the oxygen generator, the maintenance cost is lower, the structure is simpler, the adaptability is higher, and the use is more convenient.
[0035] Embodiment 2: see Figs. 4 to 6 A multi-adaptive negative ion generating mechanism, which is consistent with embodiment one, also includes a shell 1 formed by a mutually adaptive upper shell 11 and lower shell 12. The upper shell 11 is divided into an open outer cavity 110 and an inner cavity 111 by the upper shell top plate 10. The external interface protrudes from the outer surface of the shell top plate 10 and is located in the outer cavity 110. The end of the external interface is not higher than the eaves of the outer cavity 110, which is beneficial to the protection of the external interface and will not be damaged by external force.
[0036] A plurality of connection parts 111a are arranged at the lower edge of the inner cavity 111. The ionization plate 21 closes the lower bottom surface of the inner cavity 111 through the connection part 111a, so that there is a working space between the upper working surface of the ionization plate 21 and the shell top plate 10 and forms a negative ion generating cavity 31. In this way, the external interface is connected with the negative ion generating cavity 31 and forms a closed loop. The lower shell 12 is provided with an ionization component installation cavity 32. The ionization component is located in the ionization component installation cavity 32 and includes a power supply 221, a PCB board 222, and a control component 223 which are electrically connected with each other. The control panel 224 located outside the lower shell 12 is electrically connected with the control component 223.
[0037] It is worth mentioning that the lower shell 12 is provided with an external power supply reserved slot 121, so that the shell can be stably placed on the support surface.
[0038] Different from embodiment 1, in this embodiment, the external interface is a breathing machine interface, which includes a breathing machine inlet 51 and a breathing machine outlet 52. Similarly, the external interface and the shell top plate 10 are detachably connected, so that one negative ion generating mechanism can adapt to different external devices. Of course, the external interface and the shell top plate 10 can also be fixedly connected for use with fixed devices.
[0039] When the mechanism is used, only the interface of the breathing machine is connected to the breathing machine inlet 51, and the output end is connected to the breathing machine outlet 52, when the airflow enters the negative ion generating cavity 31 from the breathing machine inlet 51, since the whole closed loop is closed, the negative ions cannot escape, and after ionization, a high concentration of negative ions is formed, which is sent to the terminal from the breathing machine outlet 52, to achieve the treatment or physiotherapy effect.
[0040] If the negative ion generating mechanism is damaged, only the negative ion generating mechanism needs to be replaced, without replacing the breathing machine device, compared with the traditional structure that the negative ion generating mechanism and the breathing machine are integrated, the maintenance cost is lower, the structure is simpler, the adaptability is higher, and the use is more convenient.
[0041] It should be understood by those skilled in the art that the embodiments of the utility model shown in the above description and the drawings are only as examples and do not limit the utility model. The purpose of the utility model has been completely and effectively realized. The function and structural principle of the utility model have been shown and explained in the embodiments, and the embodiments of the utility model can have any deformation or modification without departing from the principle.
Claims
1. A multi-adaptability negative ion generating mechanism comprising a housing (1), characterized in that, The shell (1) is divided into a negative ion generating cavity (31) and an ionization component installation cavity (32) by an ionization plate (21), and an external interface is arranged on the shell (1) and communicates with the negative ion generating cavity (31) and forms a closed loop.
2. The multi-adaptable negative ion generating mechanism according to claim 1, wherein, The external interface is an oxygen generator interface.
3. The multi-adaptable negative ion generating mechanism of claim 2, wherein, The oxygen generator interface comprises an oxygen generator inlet (41) and an oxygen generator outlet (42).
4. The multi-adaptable negative ion generating mechanism of claim 1, wherein, The external interface is a breathing machine interface.
5. The multi-adaptable negative ion generating mechanism of claim 4, wherein, The breathing machine interface comprises a breathing machine inlet (51) and a breathing machine outlet (52).
6. The multi-adaptable negative ion generating mechanism of claim 1, wherein, The external interface is a detachable connection.
7. The multi-adaptable negative ion generating mechanism of claim 1, wherein, The shell (1) comprises an upper shell (11) and a lower shell (12) which are adapted to each other.
8. The multi-adaptable negative ion generating mechanism of claim 7, wherein, The upper shell (11) is divided into an open outer cavity (110) and an inner cavity (111) by an upper shell top plate (10), and the external interface is arranged on the outer surface of the shell top plate (10) and located in the outer cavity (110).
9. The multi-adaptable negative ion generating mechanism of claim 8, wherein, A plurality of connecting portions (111a) are arranged at the lower edge of the inner cavity (111), the lower bottom surface of the inner cavity (111) is closed by the connecting portions (111a), and a working space is formed between the upper working surface of the ionization plate (21) and the shell top plate (10) to form the negative ion generating cavity (31).
10. The multi-adaptable negative ion generating mechanism of claim 7, wherein, The lower shell (12) is provided with the ionization component installation cavity (32), and the ionization component is located in the ionization component installation cavity (32) and comprises a power supply (221), a PCB (222) and a control component (223) which are electrically connected to each other, and a control panel (224) located outside the lower shell (12) is electrically connected to the control component (223).
Citation Information
Patent Citations
Portable oxygen generator with negative oxygen ion generating device
CN201470293U
Circulating type negative ion breathing machine
CN210992433U