Filter assembling device
By designing an automated filter assembly device, which utilizes lifting and rotating drive components to automatically fix the lens to the frame, the problems of low efficiency and poor consistency in manual assembly are solved, thereby improving production efficiency and quality.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- HUIZHOU XINNUO PRECISION OPTICS CO LTD
- Filing Date
- 2025-08-11
- Publication Date
- 2026-05-19
AI Technical Summary
The current filter assembly method relies on manual knob operation, resulting in low production efficiency, poor product consistency, and easy damage to the lenses, which cannot meet the efficiency and quality requirements of large-scale production.
Design a filter assembly device, including a support component, a positioning component, a rotary component, and a control component, to automatically fix the lens to the frame through automated lifting drive, rotation drive, and rotary component, eliminating manual operation.
It improves the efficiency and quality of filter assembly, reduces labor costs, ensures a stable connection between the lens and the frame, and enhances production efficiency and product consistency.
Smart Images

Figure CN224254698U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of manufacturing equipment technology, specifically to a filter assembly device. Background Technology
[0002] As a commonly used optical device, filters are typically assembled from a frame and lenses, and their structural stability directly affects their optical performance. In existing technologies, some filters use screw connections to fix the lenses to the frame, which is simple in structure and easy to assemble and disassemble.
[0003] However, the current assembly of the aforementioned screw-in structure mainly relies on manual operation of the knobs. Operators hold the frame and lens and manually rotate them to screw them in place. This manual assembly method has significant drawbacks: firstly, the speed of manual operation is limited by the operator's skill level and physical strength, making efficient continuous production difficult; secondly, the force applied to the manual knobs is difficult to control precisely, easily resulting in screws that are too loose or too tight. This not only affects product consistency but may also damage the lens due to improper operation, further reducing production efficiency. Therefore, the existing filter assembly method relying on manual knob operation can no longer meet the efficiency and quality requirements of large-scale production, and an improved solution that can enhance assembly efficiency is urgently needed. Utility Model Content
[0004] To address the shortcomings of existing technologies, this utility model provides a filter assembly device.
[0005] This utility model discloses a filter assembly device, comprising:
[0006] Carrier component;
[0007] The positioning component includes a first positioning member and a second positioning member disposed opposite to the bearing component, the first positioning member and the second positioning member together forming a receiving area;
[0008] A rotary assembly includes a slider, a lifting drive, a rotating drive, and a rotary element. The slider is disposed on a supporting assembly, the lifting drive is disposed on the slider, the rotating drive is disposed at the output end of the lifting drive, and the rotary element is connected to the output end of the rotating drive. The rotary element is located in the upper part of the receiving area.
[0009] A control component includes a first switch element disposed on a carrier component, the first switch element being electrically connected to a lifting drive element and / or a rotating drive element.
[0010] According to one embodiment of the present invention, the supporting component includes a base plate and an upright plate. The upright plate is disposed on the base plate, and the first positioning member, the second positioning member, and the first switching member are all disposed on the base plate, while the sliding member is disposed on the upright plate.
[0011] According to one embodiment of the present invention, the bearing component has an adjustment groove, a first positioning member is disposed at the upper part of the adjustment groove, and the positioning component also includes a fixing member, which passes through the first positioning member and the adjustment groove.
[0012] According to one embodiment of the present invention, the side of the first positioning member facing the second positioning member has two limiting inclined surfaces distributed in a figure-eight shape.
[0013] According to one embodiment of the present invention, the positioning component further includes a positioning drive and a transmission component. The positioning drive is disposed on the bearing component, and the transmission component is connected to the output end of the positioning drive and the second positioning component.
[0014] According to one embodiment of the present invention, the control component further includes a second switch element, which is electrically connected to the positioning drive element.
[0015] According to one embodiment of the present invention, the transmission member has a transmission inclined block, and the second positioning member has a transmission inclined groove on the side away from the first positioning member, and the transmission inclined block is slidably disposed in the transmission inclined groove.
[0016] According to one embodiment of the present invention, the positioning component further includes at least two limiting members, which are respectively disposed on both sides of the transmission member.
[0017] According to one embodiment of the present invention, the sliding member includes a slide rail and a slider. The slide rail is disposed on the bearing component, the slider is slidably connected to the slide rail, and the lifting drive component is disposed on the slider.
[0018] According to one embodiment of the present invention, there are two first positioning members and two second positioning members. The two first positioning members are symmetrically distributed on the bearing component, and the two second positioning members are symmetrically distributed on the bearing component.
[0019] The beneficial effect of this utility model is that the pre-assembled filter is placed in the receiving area, and then the first switch is turned to make the lifting drive work. The lifting drive drives the rotation drive and the toggle to move towards the filter. Then, the rotation drive drives the toggle to rotate, and the toggle drives the lens on the filter to rotate relative to the frame, so as to fix the two. In this way, not only can manual operation be saved and costs reduced, but also production efficiency and quality can be improved. Attached Figure Description
[0020] The accompanying drawings, which are included to provide a further understanding of this application and form part of this application, illustrate exemplary embodiments and are used to explain this application, but do not constitute an undue limitation of this application. In the drawings:
[0021] Figure 1 This is one of the three-dimensional diagrams of a filter assembly device;
[0022] Figure 2 This is the second 3D view of the filter assembly device;
[0023] Figure 3 This is the third 3D view of the filter assembly device;
[0024] Figure 4 This is a partial structural breakdown diagram of the filter assembly device.
[0025] Explanation of reference numerals in the attached figures
[0026] 1. Load-bearing components; 11. Base plate; 12. Vertical plate; 13. Adjustment groove;
[0027] 2. Positioning assembly; 21. First positioning component; 211. Limiting inclined surface; 22. Second positioning component; 221. Transmission inclined groove; 23. Accommodation area; 24. Positioning drive component; 25. Transmission component; 251. Transmission inclined block; 26. Limiting component;
[0028] 3. Torque assembly; 31. Sliding component; 311. Slide rail; 312. Slider; 32. Lifting drive component; 33. Torque drive component; 34. Torque component; 35. Support plate;
[0029] 4. Control components; 41. First switching element; 42. Second switching element; 43. Start / stop element. Detailed Implementation
[0030] The following drawings will disclose several embodiments of this utility model. For clarity, many practical details will be described in the following description. However, it should be understood that these practical details should not be used to limit this utility model. That is, in some embodiments of this utility model, these practical details are not essential. In addition, for the sake of simplicity, some conventional structures and components will be shown in the drawings in a simple schematic manner.
[0031] Furthermore, in this utility model, the use of terms such as "first" and "second" is for descriptive purposes only and does not specifically refer to any order or sequence, nor is it intended to limit the utility model. They are merely used to distinguish components or operations described with the same technical terms and should not be construed as indicating or implying their relative importance or implicitly specifying the number of indicated technical features. Therefore, a feature defined with "first" or "second" may explicitly or implicitly include at least one of those features. Additionally, the technical solutions of various embodiments can be combined with each other, but this must be based on the ability of those skilled in the art to implement them. If the combination of technical solutions is contradictory or impossible to implement, such a combination should be considered non-existent and not within the scope of protection claimed by this utility model.
[0032] like Figures 1-4As shown, Figure 1 This is one of the three-dimensional diagrams of a filter assembly device; Figure 2 This is the second 3D view of the filter assembly device; Figure 3 This is the third 3D view of the filter assembly device; Figure 4 This is a partial structural breakdown diagram of the filter assembly device. The filter assembly device includes a support component 1, a positioning component 2, a knob component 3, and a control component 4. The positioning component 2 is disposed on the support component 1, the knob component 3 is disposed on the support component 1 and located on the upper part of the support component 1, and the control component 4 is disposed on the support component 1.
[0033] In use, the support component 1 is used to support other components; the positioning component 2 is used to fix the pre-installed filter; the rotating component 3 is used to rotate the lens; and the control component 4 is used to control the operation of the positioning component 2 and the rotating component 3.
[0034] The supporting component 1 includes a base plate 11 and an upright plate 12. The upright plate 12 is disposed on the base plate 11. The positioning component 2 and the rotating component 3 are both disposed on the surface of the base plate 11, and the rotating component 3 is disposed on the upright plate 12. Specifically, the base plate 11 and the upright plate 12 are arranged perpendicular to each other.
[0035] The positioning component 2 includes a first positioning element 21 and a second positioning element 22. The first positioning element 21 and the second positioning element 22 are disposed opposite to each other on the surface of the base plate 11, and the second positioning element 22 can slide relative to the base plate 11. There is a receiving area 23 between the first positioning element 21 and the second positioning element 22. The pre-installed filter is placed in the receiving area 23 and clamped and fixed by the first positioning element 21 and the second positioning element 22. Furthermore, the first positioning element 21 has two limiting inclined surfaces 211 on the side facing the second positioning element 22. The two limiting inclined surfaces 211 are inclined to both sides respectively. Specifically, the two limiting inclined surfaces 211 are distributed in a figure-eight shape. In use, since the frame is a circular structure, the frame can be abutted by the two limiting inclined surfaces 211 to improve the fixing effect of the frame. Furthermore, the surface of the base plate 11 is provided with an adjustment groove 13, and the first positioning member 21 is located on the upper part of the adjustment groove 13. The positioning assembly 2 also includes a fixing member (not shown in the figure), which passes through the first positioning member 21 and the adjustment groove 13. The fixing member secures the first positioning member 21 to the base plate 11. The adjustment groove 13 facilitates adjustment of the position of the first positioning member 21, thereby adjusting the size of the receiving area 23 between the first positioning member 21 and the second positioning member 22, which is beneficial for adapting to different sizes of frames. In practical application, the fixing member is a bolt and nut structure. After the first positioning member 21 is placed in the appropriate position on the adjustment groove 13, it is fixed by the fixing member. If the position of the first positioning member 21 needs to be adjusted later, the fixing member can be loosened and removed. In addition, there are two adjustment grooves 13, and correspondingly, there are also two fixing members, which further enhances the stability of the first positioning member 21.
[0036] In this embodiment, the second positioning member 22 also has two limiting inclined surfaces 211 arranged in a figure-eight shape on the side facing the first positioning member 21, which further enhances the fixation of the frame.
[0037] The positioning assembly 2 also includes a positioning drive 24 and a transmission component 25. The positioning drive 24 is located at the bottom of the base plate 11, and the transmission component 25 is located on the surface of the base plate 11 and is connected to the output end of the positioning drive 24. The second limiting component 26 abuts against the transmission component 25. In use, the positioning drive 24 operates and drives the transmission component 25 to move. The transmission component 25 moves relative to the base plate 11. During the movement of the transmission component 25, it pushes the second positioning component 22 to move as well. The second positioning component 22 moves closer to or further away from the first positioning component 21, thereby clamping and releasing the frame. Furthermore, the side of the second positioning component 22 away from the first positioning component 21 has a transmission groove 221, and the side of the transmission component 25 facing the second positioning component 22 has a transmission block 251. The transmission block 251 is slidably disposed in the transmission groove 221. Through the cooperation of the transmission groove 221 and the transmission block 251, the accuracy of the movement of the transmission component 25 and the second positioning component 22 can be ensured. In another embodiment, the transmission sloping groove 221 and the transmission sloping block 251 can be replaced with two matching inclined surfaces. Furthermore, the positioning assembly 2 also includes a limiting member 26, which is disposed on the surface of the base plate 11 and located on one side of the transmission member 25. The limiting member 26 limits the transmission member 25, preventing it from deviating during movement. Specifically, there are two limiting members 26, located on opposite sides of the transmission member 25, further enhancing the limiting effect. Specifically, the positioning drive member 24 is a conventional cylinder.
[0038] Preferably, to improve assembly efficiency, there are two of each of the first positioning member 21 and the second positioning member 22. One first positioning member 21 and one second positioning member 22 form a group, which can fix one pre-assembled filter. Meanwhile, another first positioning member 21 and another second positioning member 22 form another group, which can also fix one pre-assembled filter. It should be noted that in this embodiment, the two second positioning members 22 are slidably connected to the same transmission member 25, which saves costs and reduces the size of the filter assembly device. In this embodiment, the two first positioning members 21 and the two second positioning members 22 are symmetrically distributed. In addition, the number of adjusting slots 13 and fixing members is also increased accordingly; for example, the number of adjusting slots 13 and fixing members are both four.
[0039] The rotary assembly 3 includes a slider 31, a lifting drive 32, a rotary drive 33, and a rotary element 34. The slider 31 is disposed on the upright plate 12, the lifting drive 32 is disposed on the slider 31, the rotary drive 33 is connected to the output end of the lifting drive 32, and the rotary element 34 is connected to the output end of the rotary drive 33. The rotary element 34 is located at the upper part of the receiving area 23. In use, the slider 31 is adjusted to a suitable position, the lifting drive 32 operates and drives the rotary drive 33 and the rotary element 34 to move. After moving to the corresponding position, the rotary drive 33 drives the rotary element 34 to rotate, and finally the rotary element 34 drives the lens to rotate, realizing the assembly of the frame and the lens. In this embodiment, in order to avoid the rotary element 34 causing wear to the lens, the rotary element 34 can be made of a smooth and soft material.
[0040] The sliding member 31 includes a slide rail 311 and a slider 312. The slide rail 311 is disposed on the upright plate 12, and the slider 312 is slidably disposed on the slide rail 311. The lifting drive member 32 is disposed on the slide rail 311. In specific applications, the lifting drive member 32 and the rotary drive member 33 can be connected by a support plate 35 to improve stability during movement. In this embodiment, the lifting drive member 32 is a conventional cylinder, and the rotary drive member 33 is a motor. To prevent the rotary member 34 from rotating too fast and damaging the lens, the output end of the rotary drive member 33 is connected to the rotary member 34 through a reduction gearbox. This allows the rotary member 34 to rotate the lens at a more suitable speed.
[0041] The control component 4 includes a first switch 41, which is electrically connected to the lifting drive component 32. The first switch 41 can trigger the lifting drive component 32 to operate. Alternatively, the first switch 41 can also be electrically connected to a rotary drive component 33 to trigger its operation; or it can simultaneously trigger both the lifting drive component 32 and the rotary drive component 33. Furthermore, the control component 4 also includes a second switch 42, which is electrically connected to the positioning drive component 24. The second switch 42 can trigger the positioning drive component 24 to operate. In addition, the control component 4 includes a start / stop component 43, which is electrically connected to both the first switch 41 and the second switch 42. The inclusion of the start / stop component 43 can improve safety.
[0042] During operation, the pre-assembled filter is first placed in the receiving area 23. Then, the second switch 42 is activated, which sends a signal to the positioning drive 24. The positioning drive 24 pulls the transmission 25 downward, which in turn pushes the second positioning member 22 toward the first positioning member 21, thus clamping the lens frame. Then, the knob 34 is adjusted to the appropriate position using the sliding member 31, and the first switch 41 is activated. The first switch 41 sends a signal to the lifting drive 32, which pushes the support plate 35 toward the lens. At the same time, the knob drive 33 and the knob 34 also move together. The knob drive 33 drives the knob 34 to rotate, and the knob 34 drives the lens to rotate, thus completing the filter assembly.
[0043] In summary, the pre-assembled filter is placed in the receiving area 23, and then the first switch 41 is activated to make the lifting drive 32 work. The lifting drive 32 drives the rotation drive and the toggle 34 to move towards the filter. Then, the rotation drive drives the toggle 34 to rotate, and the toggle 34 drives the lens on the filter to rotate relative to the frame, so as to fix the two. In this way, not only can manual operation be saved and costs reduced, but production efficiency and quality can also be improved.
[0044] The above description is merely an embodiment of this utility model and is not intended to limit the scope of this utility model. Various modifications and variations can be made to this utility model by those skilled in the art. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principle of this utility model should be included within the scope of the claims of this utility model.
Claims
1. A filter assembly device, characterized in that, include: Carrier component (1); The positioning component (2) includes a first positioning element (21) and a second positioning element (22) disposed opposite to the bearing component (1), the first positioning element (21) and the second positioning element (22) together forming the receiving area (23); The rotary assembly (3) includes a slider (31), a lifting drive (32), a rotation drive (33), and a rotary member (34). The slider (31) is disposed on the bearing assembly (1), the lifting drive (32) is disposed on the slider (31), the rotation drive (33) is disposed on the output end of the lifting drive (32), and the rotary member (34) is connected to the output end of the rotation drive (33). The rotary member (34) is located on the upper part of the receiving area (23). as well as The control component (4) includes a first switch (41) disposed on the carrier component (1), the first switch (41) being electrically connected to the lifting drive (32) and / or the rotation drive (33).
2. The filter assembly apparatus according to claim 1, characterized in that, The load-bearing component (1) includes a base plate (11) and an upright plate (12). The upright plate (12) is disposed on the base plate (11). The first positioning member (21), the second positioning member (22) and the first switching member (41) are all disposed on the base plate (11). The sliding member (31) is disposed on the upright plate (12).
3. The filter assembly apparatus according to claim 1, characterized in that, The bearing component (1) has an adjustment groove (13), and a first positioning member (21) is disposed on the upper part of the adjustment groove (13). The positioning component (2) also includes a fixing member, which passes through the first positioning member (21) and the adjustment groove (13).
4. The filter assembly apparatus according to claim 1, characterized in that, The first positioning element (21) has two limiting slopes (211) arranged in a figure-eight shape on the side facing the second positioning element (22).
5. The filter assembly apparatus according to claim 1, characterized in that, The positioning component (2) also includes a positioning drive (24) and a transmission component (25). The positioning drive (24) is disposed on the bearing component (1), and the transmission component (25) is connected to the output end of the positioning drive (24) and the second positioning component (22).
6. The filter assembly apparatus according to claim 5, characterized in that, The control component (4) also includes a second switch (42) which is electrically connected to the positioning drive (24).
7. The filter assembly apparatus according to claim 5, characterized in that, The transmission component (25) has a transmission inclined block (251), and the second positioning component (22) has a transmission inclined groove (221) on the side away from the first positioning component (21). The transmission inclined block (251) is slidably disposed in the transmission inclined groove (221).
8. The filter assembly apparatus according to claim 5, characterized in that, The positioning component (2) also includes at least two limiting members (26), which are respectively disposed on both sides of the transmission member (25).
9. The filter assembly apparatus according to any one of claims 1-8, characterized in that, The sliding member (31) includes a slide rail (311) and a slider (312). The slide rail (311) is disposed on the bearing component (1), the slider (312) is slidably connected to the slide rail (311), and the lifting drive member (32) is disposed on the slider (312).
10. The filter assembly apparatus according to any one of claims 1-8, characterized in that, There are two of each of the first positioning element (21) and the second positioning element (22). The two first positioning elements (21) are symmetrically distributed on the bearing component (1), and the two second positioning elements (22) are symmetrically distributed on the bearing component (1).