Air conditioner negative ion generator mounting structure
By fixing the negative ion generator on the air conditioner's swing blade connecting rod so that it moves synchronously with the swing blade, the problem of uneven negative ion air supply is solved, improving user experience and reducing production costs.
Patent Information
- Application Number
- CN202422832173.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-20
- Publication Date
- 2025-09-23
- Estimated Expiration
- 2034-11-20
AI Technical Summary
The negative ion generator of the existing wall-mounted air conditioner can easily cause the negative ions to fail to reach the designated area in time during the air supply process, causing accumulation in some locations, affecting the user experience and possibly damaging other electrical components.
The negative ion generator is fixedly installed on the swing blade connecting rod of the air conditioner so that it moves synchronously with the swing blade, ensuring that the negative ions are always located at the point with the largest air volume of the supply air flow, and the assembly time of the structural parts is reduced through the integrated design.
Negative ions are effectively delivered to the user's specified range along with the air flow, improving user experience while optimizing production efficiency and reducing assembly costs.
Smart Images

Figure CN223375950U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to an installation structure of a negative ion generator for an air conditioner, belonging to the technical field of air conditioners. Background Art
[0002] At present, wall-mounted air conditioners have relatively more attached functional modules, among which negative ion or electric ion modules, as functional modules that increase the user's comfort experience, effectively improve the user's experience of air freshness. For example, the Chinese patent document with publication number CN210980085U discloses a negative ion air outlet structure, including an air conditioner housing and a negative ion generator. The negative ion generator is arranged at the air outlet and is located on the same side as the drive motor of the fan blade swing assembly. In this way, the wiring distance of the negative ion generator can be shortened, the wiring process can be simplified, and the structure is compact. In this solution, the negative ion generator is fixed to one side of the air outlet. In the left and right wind guide modes, the negative ions generated by the negative ion generator are in a breeze or even a windproof area. The negative ions cannot correspond to the air duct air flow position in time, which easily leads to the negative ions not being effectively delivered to different areas, or causing the negative ions to accumulate in some positions, resulting in damage to the remaining electrical components or a poor user experience. Utility Model Content
[0003] The technical problem to be solved by the utility model is to provide an air conditioner negative ion generator installation structure, which can effectively send negative ions along with the air supply flow of the air conditioner to the air supply range specified by the user.
[0004] In order to solve the above technical problems, the technical solution adopted by the utility model is: an air conditioner negative ion generator installation structure, including an air conditioner shell and a negative ion generator, the air conditioner shell is provided with an air outlet, and a fan blade swinging assembly is provided at the air outlet, the fan blade swinging assembly includes a swing blade, a swing blade bracket, a swing blade connecting rod and a drive motor, the drive motor and the swing blade bracket are fixedly arranged on the air conditioner shell, and a plurality of swing blades are arranged at intervals along the length direction of the air outlet, each swing blade is respectively connected to the swing blade bracket through a first pivot and is respectively connected to the swing blade connecting rod through a second pivot, the swing blade connecting rod is connected to the output shaft of the drive motor through a transmission mechanism, and can be driven by the drive motor to swing back and forth in the length direction of the air outlet, the negative ion generator is fixedly mounted on the swing blade connecting rod and is located in the interval area between the two swing blades.
[0005] It is further preferred that the swing blade bracket includes a first bracket and a second bracket arranged at intervals along the length direction of the air outlet, the first bracket and the second bracket are respectively provided with a plurality of swing blades, the interval area between two adjacent swing blades on the first bracket is respectively provided with a negative ion generator, and the interval area between two adjacent swing blades on the second bracket is respectively provided with a negative ion generator.
[0006] It is further preferred that the swing-leaf connecting rod and the housing of the negative ion generator are an integrated structure, the swing-leaf connecting rod has a hollow inner cavity, and the electric control line of the negative ion generator passes through the inner cavity of the swing-leaf connecting rod.
[0007] The beneficial effects of this utility model are as follows: the negative ion generator is fixedly mounted on the swing-blade connecting rod and located in the gap between the two swing blades. This means that the negative ion generator moves synchronously with the swing-blade connecting rod, maintaining a relatively stable relative position with the swing blades. This ensures that the generated negative ions are always at a high air volume point, effectively delivering the negative ions along with the air supply flow of the air conditioner to the user's specified air supply range, thereby improving the user experience. The swing-blade connecting rod and the negative ion generator housing are integrated into a single structure, combined with the left and right air guide module structure, reducing the independent assembly time of the structural components, improving product production efficiency, optimizing the production process assembly, and effectively reducing the number of assembly workers and product costs. BRIEF DESCRIPTION OF THE DRAWINGS
[0008] Figure 1 It is a schematic diagram of the overall structure of the utility model.
[0009] Figure 2 It is a three-dimensional structural diagram of the wind blade swing assembly of the utility model (the driving motor is not shown).
[0010] Figure 3 It is a structural diagram of the utility model after the wind blade swing assembly is installed.
[0011] Components marked in the figure: air conditioner housing 10 , negative ion generator 20 , swing blade 31 , swing blade bracket 32 , swing blade connecting rod 33 , drive motor 34 . DETAILED DESCRIPTION
[0012] The present invention will be further described below with reference to the accompanying drawings and embodiments.
[0013] like Figures 1 to 3As shown, the utility model air conditioner negative ion generator installation structure includes an air conditioner housing 10 and a negative ion generator 20. The air conditioner housing 10 is provided with an air outlet, and a fan blade swing assembly is provided at the air outlet. The fan blade swing assembly includes a swing blade 31, a swing blade bracket 32, a swing blade connecting rod 33 and a drive motor 34. The drive motor 34 and the swing blade bracket 32 are fixedly arranged on the air conditioner housing 10. A plurality of swing blades 31 are arranged at intervals along the length direction of the air outlet. Each swing blade 31 is respectively connected to the swing blade bracket 32 through a first pivot and is respectively connected to the swing blade connecting rod 33 through a second pivot. The connecting rod 33 is connected to the output shaft of the drive motor 34 through a transmission mechanism, and the drive motor 34 can drive the pendulum 31 to swing back and forth in the length direction of the air outlet. The negative ion generator 20 is fixedly mounted on the pendulum connecting rod 33 and is located in the interval area between the two pendulums 31. In this way, the negative ion generator 20 will move synchronously with the pendulum connecting rod 33, maintaining the relative position with the pendulum 31 and basically not changing too much, thereby making the generated negative ions always at a larger air volume point, so that the negative ions are effectively delivered to the user-specified air supply range along with the air conditioner air flow, thereby improving the user experience. The negative ion generator 20 is located in the interval area between the two pendulums 31, as long as its negative ion emission window is located in the interval area between the two pendulums 31. The negative ion generator 20 can generally be arranged in multiple according to actual conditions, and the corresponding part of the pendulum interval area can be selected according to the distribution position of the pendulum 31 for layout design. It is understandable that the transmission structure involved in “the driving motor 34 can drive the swing blade 31 to swing back and forth in the length direction of the air outlet” is common knowledge in the field and will not be further described in detail in the present utility model.
[0014] To facilitate assembly, the swing blade bracket 32 includes a first bracket and a second bracket spaced apart along the length of the air outlet. The first bracket and the second bracket are each provided with a plurality of swing blades 31. Accordingly, to enhance the effectiveness of negative ion air delivery, the negative ion generators 20 are preferably arranged such that the space between two adjacent swing blades 31 on the first bracket is provided with a corresponding negative ion generator 20, and the space between two adjacent swing blades 31 on the second bracket is provided with a corresponding negative ion generator 20. The swing blade brackets 32 are typically secured using snap-fit connections, screw connections, or a combination of the two.
[0015] To further facilitate assembly, the swing link 33 and the housing of the negative ion generator 20 are integrated. The swing link 33 has a hollow interior, through which the electrical wiring of the negative ion generator 20 passes. This is equivalent to the electrical wiring of the negative ion generator 20 exiting at a suitable location on the end of the swing link 33 and connecting to the corresponding electrical control box of the air conditioner. This design reduces the number of hours required to assemble the individual components, improves product production efficiency, optimizes the production process, and effectively reduces assembly labor and product costs.
Claims
1. An air conditioner negative ion generator installation structure, comprising an air conditioner housing (10) and a negative ion generator (20), wherein the air conditioner housing (10) is provided with an air outlet, and a fan blade swing assembly is provided at the air outlet, wherein the fan blade swing assembly comprises a swing blade (31), a swing blade bracket (32), a swing blade connecting rod (33) and a drive motor (34), wherein the drive motor (34) and the swing blade bracket (32) are fixedly arranged on the air conditioner housing (10), wherein a plurality of swing blades (31) are arranged at intervals along the length direction of the air outlet, wherein each swing blade (31) is respectively connected to the swing blade bracket (32) through a first pivot and is respectively connected to the swing blade connecting rod (33) through a second pivot, wherein the swing blade connecting rod (33) is connected to the output shaft of the drive motor (34) through a transmission mechanism, and the drive motor (34) can drive the swing blade (31) to swing back and forth in the length direction of the air outlet, wherein the fan blade (31) is driven by the drive motor (34) to swing back and forth in the length direction of the air outlet, and ... The negative ion generator (20) is fixedly mounted on the swing blade connecting rod (33) and is located in the interval area between the two swing blades (31).
2. The air conditioner negative ion generator mounting structure according to claim 1, characterized in that: The swing blade bracket (32) comprises a first bracket and a second bracket arranged at intervals along the length direction of the air outlet, the first bracket and the second bracket are respectively provided with a plurality of swing blades (31), the interval area between two adjacent swing blades (31) on the first bracket is respectively provided with a negative ion generator (20), and the interval area between two adjacent swing blades (31) on the second bracket is respectively provided with a negative ion generator (20).
3. The air conditioner negative ion generator mounting structure according to claim 1 or 2, characterized in that: The swing leaf connecting rod (33) and the shell of the negative ion generator (20) are an integrated structure. The swing leaf connecting rod (33) has a hollow inner cavity, and the electric control line of the negative ion generator (20) passes through the inner cavity of the swing leaf connecting rod (33).
Citation Information
Patent Citations
Negative ion air outlet structure and air conditioner
CN210980085U