Electronic component processing and feeding device
By installing a worm motor on the side of the feeding table to drive the worm and gear to rotate, the problem that the existing devices cannot adjust the feeding angle is solved, the angle adaptability and stability of the equipment are achieved, and the service life is extended.
Patent Information
- Application Number
- CN202422405075.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-03
- Publication Date
- 2025-07-25
- Estimated Expiration
- 2034-10-03
AI Technical Summary
The supporting legs of the existing electronic component processing and loading device are fixed angles, and the loading angle cannot be adjusted according to site requirements, which has certain limitations.
By installing a worm motor on the side of the feeding table to drive the worm to rotate, the gears and pressure wheels are driven to rotate, and the angle adjustment of the feeding table is achieved, and the angle is maintained through the self-locking function of the worm and worm gear, and the load of the single motor is reduced by using the joint drive of the dual motors.
It increases the adaptability and stability of the equipment, extends the service life, and reduces the load of a single motor.
Smart Images

Figure CN223149512U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of component processing, in particular to a feeding device for electronic component processing. Background Art
[0002] The existing patent (publication number: CN214454521U) proposes a feeding device for electronic component processing. It includes a feeding rack, in which a driving shaft and a driven shaft are respectively rotatably connected by bearings on the front and rear sides. A conveyor belt is sleeved on the driving shaft and the driven shaft. On the upper end of the feeding rack, side plates are fixedly connected to the left and right sides. A first cylinder is fixedly installed on the outer side of the side plate. The end of the output shaft of the first cylinder is fixedly connected with a limiting plate, and a first opening groove is formed on the inner side surface of the limiting plate. However, for this device, "support legs are fixedly connected to the four corners at the lower end of the rack", and the device relies on the support legs at the lower part of the feeding rack to support the feeding rack. Since the support legs are at a fixed angle, it may not be possible to adjust the feeding angle according to the actual needs of the site equipment, which has certain limitations. Summary of the Invention
[0003] In view of the above deficiencies in the prior art, the utility model provides a feeding device for electronic component processing. After installing the equipment support frame at the component discharge port, the worm motor on the side of the feeding table drives the worm to rotate, so that the worm drives the gear and the pressure wheel to rotate on the side of the rack, thereby adjusting the conveying angle of the feeding table in front of the equipment support frame, so as to increase the adaptability of the equipment.
[0004] The purpose of the utility model is achieved through the following technical solutions:
[0005] A feeding device for electronic component processing includes an equipment support frame, a bolt rack, a guard plate, a worm, a gear, and a lower end worm gear. The rear part of the equipment support frame is fixedly connected to the bolt rack. The rear part of the equipment support frame has a positioning groove. The rear part of the guide seat is fixedly connected to the positioning cylinder. The positioning groove is adapted to the positioning cylinder, and the positioning groove is connected to the positioning cylinder. The positioning cylinder slides inside the positioning groove. The inside of the equipment support frame has a threaded cylinder. The inside of the guide seat is rotatably connected to the bolt base. The front part of the bolt base is fixedly connected to the guide bolt. The threaded cylinder is adapted to the guide bolt, and the threaded cylinder is connected to the guide bolt. The guide bolt is threadedly connected inside the threaded cylinder. The inside of the equipment support frame is fixedly connected to the upper end conveyor belt. The front part of the equipment support frame has a positioning frame. The upper part of the feeding table has a positioning shaft. The positioning frame is adapted to the positioning shaft, and the positioning frame is connected to the positioning shaft. The positioning shaft rotates inside the positioning frame. The inside of the feeding table is fixedly connected to the feeding conveyor belt. The feeding conveyor belt corresponds to the position of the upper end conveyor belt.
[0006] The surface of the loading table is fixedly connected to the guard plate, the side of the loading table is fixedly connected to the equipment table, the front of the equipment table is fixedly connected to the gear table, the gear table has a worm groove inside, the worm groove is adapted to the worm, the worm groove is connected to the worm, the worm rotates inside the worm groove, and the side of the worm groove is fixedly connected to the worm motor.
[0007] The inside of the worm motor is fixedly connected to the worm. The front of the gear table has a gear shaft groove, the gear shaft groove is adapted to the gear shaft, the gear shaft groove is connected to the gear shaft, the gear shaft rotates inside the gear shaft groove, and the inside of the gear shaft is fixedly connected to the upper end worm gear, and the upper end worm gear meshes in front of the worm. Beneficial effects
[0008] 1. During the use of the component processing loading device of the present utility model, after installing the equipment support frame at the component discharge port, the worm motor on the side of the loading table drives the worm to rotate, so that the worm drives the gear and the pressure wheel to rotate on the side of the rack, thereby adjusting the conveying angle of the loading table in front of the equipment support frame by the gear and the pressure wheel, so as to increase the adaptability of the equipment.
[0009] 2. During the use of the component processing loading device of the present utility model, the worm motor drives the internal worm to drive the upper end worm gear and the lower end worm gear to rotate. Because the transmission principle of the worm and the upper end worm gear and the lower end worm gear has a self-locking function, the equipment maintains the adjusted angle during the working process, so as to enhance the stability of the equipment.
[0010] 3. During the use of the component processing loading device of the present utility model, the two groups of worm motors on the side of the loading table jointly drive the internal gears and the pressure wheels to rotate, so that the two motors work together, thereby reducing the load of a single motor, so as to increase the service life of the equipment. Description of the drawings
[0011] Figure 1 It is a schematic structural diagram of an electronic component processing loading device described in the present utility model.
[0012] Figure 2 It is a three-dimensional assembly schematic diagram of the structure of an electronic component processing loading device described in the present utility model.
[0013] Figure 3 It is a three-dimensional assembly schematic diagram of the structure of the equipment support frame of an electronic component processing loading device described in the present utility model.
[0014] Figure 4 It is a partial cross-sectional three-dimensional assembly schematic diagram of the gear table structure of an electronic component processing loading device described in the present utility model. Specific embodiments
[0015] The following further describes the present utility model in detail according to the drawings and embodiments:
[0016] Example 1:
[0017] An electronic component processing feeding device, comprising an equipment support frame 01, a bolt frame 02, a guard plate 14, a worm 18, a gear 23, and a lower end worm gear 26. The rear part of the equipment support frame 01 is fixedly connected to the bolt frame 02. The rear part of the equipment support frame 01 has a positioning groove 03. The rear part of the guide seat 04 is fixedly connected to the positioning cylinder 05. The positioning groove 03 is adapted to the positioning cylinder 05. The positioning groove 03 is connected to the positioning cylinder 05, and the positioning cylinder 05 slides inside the positioning groove 03. The inside of the equipment support frame 01 has a threaded cylinder 06. The inside of the guide seat 04 is rotatably connected to the bolt base 07. The front part of the bolt base 07 is fixedly connected to the guide bolt 08. The threaded cylinder 06 is adapted to the guide bolt 08. The threaded cylinder 06 is connected to the guide bolt 08, and the guide bolt 08 is threadedly connected inside the threaded cylinder 06. The inside of the equipment support frame 01 is fixedly connected to the upper conveyor belt 09. The front part of the equipment support frame 01 has a positioning frame 10. The upper part of the feeding table 11 has a positioning shaft 12. The positioning frame 10 is adapted to the positioning shaft 12. The positioning frame 10 is connected to the positioning shaft 12, and the positioning shaft 12 rotates inside the positioning frame 10. The inside of the feeding table 11 is fixedly connected to the feeding conveyor belt 13. The feeding conveyor belt 13 corresponds to the position of the upper conveyor belt 09.
[0018] Example 2:
[0019] The surface of the feeding table 11 of the present utility model is fixedly connected to the guard plate 14. The side part of the feeding table 11 is fixedly connected to the equipment table 15. The front part of the equipment table 15 is fixedly connected to the gear table 16. The inside of the gear table 16 has a worm groove 17. The worm groove 17 is adapted to the worm 18. During the use of the electronic component processing feeding device, after the equipment support frame 01 is installed at the component outlet, the worm 18 is driven to rotate by the worm motor 19 on the side of the feeding table 11, so that the worm 18 drives the gear 23 and the pressure wheel 27 to rotate on the side of the rack frame 29, thereby adjusting the conveying angle of the feeding table 11 in front of the equipment support frame 01 by the gear 23 and the pressure wheel 27, so as to increase the adaptability of the equipment. The worm groove 17 is connected to the worm 18, and the worm 18 rotates inside the worm groove 17. The side part of the worm groove 17 is fixedly connected to the worm motor 19.
[0020] Example 3:
[0021] Inside the worm gear motor 19 of the present utility model, it is fixedly connected to the worm 18. During the use of the component processing and feeding device, two worm gear motors 19 on the side of the feeding table 11 jointly drive the internal gear 23 and the pressing wheel 27 to rotate, achieving the combined force of the two motors, thereby reducing the load of a single motor and increasing the service life of the equipment. In the front of the gear table 16, there is a gear shaft groove 20, which is adapted to the gear shaft 21. The gear shaft groove 20 is connected to the gear shaft 21, and the gear shaft 21 rotates inside the gear shaft groove 20. Inside the gear shaft 21, it is fixedly connected to the upper end worm gear 22, and the upper end worm gear 22 meshes with the front of the worm 18.
[0022] Embodiment 4:
[0023] On the side of the upper end worm gear 22 of the present utility model, it is fixedly connected to the gear 23. During the use of the component processing and feeding device, the worm 18 inside is driven by the worm gear motor 19 to drive the upper end worm gear 22 and the lower end worm gear 26 to rotate. Due to the transmission principle between the worm 18 and the upper end worm gear 22 and the lower end worm gear 26 having a self-locking function, the equipment can maintain the adjusted angle during operation, thereby enhancing the stability of the equipment. In the rear of the gear table 16, there is a pressing wheel shaft groove 24, which is adapted to the pressing wheel shaft 25. The pressing wheel shaft groove 24 is connected to the pressing wheel shaft 25, and the pressing wheel shaft 25 rotates inside the pressing wheel shaft groove 24. Inside the pressing wheel shaft 25, it is fixedly connected to the lower end worm gear 26.
[0024] Embodiment 5:
[0025] The lower end worm gear 26 of the present utility model meshes with the lower part of the worm 18. On the side of the pressing wheel shaft 25, it is fixedly connected to the pressing wheel 27. The front of the equipment support frame 01 is fixedly connected to the rack seat 28, and the front of the rack seat 28 is fixedly connected to the rack frame 29. The gear 23 meshes inside the rack frame 29, and the pressing wheel 27 rotates outside the rack frame 29.
[0026] Embodiment 6:
[0027] Installation steps of the utility model: fixedly connect the rear part of the equipment support frame 01 with the bolt frame 02, fixedly connect the rear part of the guide seat 04 with the positioning cylinder 05, slide the positioning cylinder 05 inside the positioning groove 03, rotatably connect the inside of the guide seat 04 with the bolt base 07, fixedly connect the front part of the bolt base 07 with the guide bolt 08, thread-connect the guide bolt 08 inside the threaded cylinder 06, fixedly connect the inside of the equipment support frame 01 with the upper conveyor belt 09, rotate the positioning shaft 12 inside the positioning frame 10, fixedly connect the inside of the feeding table 11 with the feeding conveyor belt 13, align the feeding conveyor belt 13 with the upper conveyor belt 09, fixedly connect the surface of the feeding table 11 with the guard plate 14, fixedly connect the side part of the feeding table 11 with the equipment table 15, fixedly connect the front part of the equipment table 15 with the gear table 16, rotate the worm 18 inside the worm groove 17, fixedly connect the side part of the worm groove 17 with the worm motor 19, fixedly connect the inside of the worm motor 19 with the worm 18, rotate the gear shaft 21 inside the gear shaft groove 20, fixedly connect the inside of the gear shaft 21 with the upper end worm gear 22, engage the upper end worm gear 22 in front of the worm 18, fixedly connect the side part of the upper end worm gear 22 with the gear 23, rotate the pressure wheel shaft 25 inside the pressure wheel shaft groove 24, fixedly connect the inside of the pressure wheel shaft 25 with the lower end worm gear 26, engage the lower end worm gear 26 below the worm 18, fixedly connect the side part of the pressure wheel shaft 25 with the pressure wheel 27, fixedly connect the front part of the equipment support frame 01 with the rack seat 28, fixedly connect the front part of the rack seat 28 with the rack frame 29, engage the gear 23 inside the rack frame 29, and rotate the pressure wheel 27 outside the rack frame 29.
[0028] The above is only the preferred embodiment of the utility model and is not used to limit the utility model. It should be noted that for those of ordinary skill in the art of this technology, without departing from the technical principle of the utility model, several improvements and modifications can still be made, and these improvements and modifications should also be regarded as the protection scope of the utility model.
Claims
1. An electronic component processing feeding device, characterized in that : It includes an equipment support frame (01), a bolt frame (02), a guard plate (14), a worm (18), a gear (23), and a lower-end worm gear (26). The rear part of the equipment support frame (01) is fixedly connected to the bolt frame (02). The rear part of the equipment support frame (01) has a positioning groove (03). The rear part of the guide seat (04) is fixedly connected to the positioning cylinder (05). The positioning groove (03) is adapted to the positioning cylinder (05). The positioning groove (03) is connected to the positioning cylinder (05). The positioning cylinder (05) slides inside the positioning groove (03). Inside the equipment support frame (01), there is a threaded cylinder (06). The inside of the guide seat (04) is rotatably connected to the bolt base (07). The front part of the bolt base (07) is fixedly connected to the guide bolt (08). The threaded cylinder (06) is adapted to the guide bolt (08). The threaded cylinder (06) is connected to the guide bolt (08). The guide bolt (08) is threadedly connected inside the threaded cylinder (06). Inside the equipment support frame (01), it is fixedly connected to the upper-end conveyor belt (09). The front part of the equipment support frame (01) has a positioning frame (10). The upper part of the loading table (11) has a positioning shaft (12). The positioning frame (10) is adapted to the positioning shaft (12). The positioning frame (10) is connected to the positioning shaft (12). The positioning shaft (12) rotates inside the positioning frame (10). Inside the loading table (11), it is fixedly connected to the loading conveyor belt (13). The loading conveyor belt (13) corresponds to the position of the upper-end conveyor belt (09).
2. The feeding device for processing electronic components according to claim 1, characterized in that : The surface of the loading table (11) is fixedly connected to the guard plate (14). The side part of the loading table (11) is fixedly connected to the equipment table (15). The front part of the equipment table (15) is fixedly connected to the gear table (16). Inside the gear table (16), there is a worm groove (17). The worm groove (17) is adapted to the worm (18). The worm groove (17) is connected to the worm (18). The worm (18) rotates inside the worm groove (17). The side part of the worm groove (17) is fixedly connected to the worm motor (19).
3. The feeding device for processing electronic components according to claim 2, wherein : Inside the worm motor (19), it is fixedly connected to the worm (18). The front part of the gear table (16) has a gear shaft groove (20). The gear shaft groove (20) is adapted to the gear shaft (21). The gear shaft groove (20) is connected to the gear shaft (21). The gear shaft (21) rotates inside the gear shaft groove (20). Inside the gear shaft (21), it is fixedly connected to the upper-end worm gear (22). The upper-end worm gear (22) meshes with the front part of the worm (18).
4. The feeding device for processing electronic components according to claim 3, characterized in that : The side part of the upper-end worm gear (22) is fixedly connected to the gear (23). The rear part of the gear table (16) has a pressure wheel shaft groove (24). The pressure wheel shaft groove (24) is adapted to the pressure wheel shaft (25). The pressure wheel shaft groove (24) is connected to the pressure wheel shaft (25). The pressure wheel shaft (25) rotates inside the pressure wheel shaft groove (24). Inside the pressure wheel shaft (25), it is fixedly connected to the lower-end worm gear (26).
5. The feeding device for processing electronic components according to claim 4, characterized in that : The lower end worm gear (26) meshes with the lower part of the worm (18). The side part of the pressure wheel shaft (25) is fixedly connected to the pressure wheel (27). The front part of the equipment support frame (01) is fixedly connected to the rack seat (28). The front part of the rack seat (28) is fixedly connected to the rack frame (29). The gear (23) meshes inside the rack frame (29), and the pressure wheel (27) rotates outside the rack frame (29).
Citation Information
Patent Citations
Electronic component processing and feeding device
CN214454521U