Synchronous alternate feeding device

By using a synchronous alternating feeding device, the feeding plate moves alternately on tracks at different heights using a drive component and a lifting component. This solves the problem of low efficiency in the feeding plate's back-and-forth feeding in the existing technology and achieves efficient material conveying.

CN223721898UActive Publication Date: 2025-12-26KUNSHAN HAOTAIFU INTELLIGENT TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202520272119.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-20
Publication Date
2025-12-26
Estimated Expiration
2035-02-20

AI Technical Summary

Technical Problem

In the current product feeding process, the use of a single feeding plate for back-and-forth loading and unloading results in low overall conveying efficiency.

Method used

A synchronous alternating feeding device is adopted, in which the first and second feeding plates are driven by the drive component to alternately move to the inlet and outlet. Combined with the use of the lifting component and the timing belt, it is ensured that the feeding plates move alternately on the track at different heights to avoid interference.

Benefits of technology

It improves overall conveying efficiency, reduces interference between feeding plates, and shortens feeding time.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a synchronous alternate feeding device which comprises a conveying platform, the conveying platform is provided with a feeding port and a discharging port, and a first feeding plate and a second feeding plate are movably arranged in the length direction of the conveying platform through a driving assembly. The conveying platform is provided with a first conveying rail matched with the first feeding plate and a second conveying rail matched with the second feeding plate. The first feeding plate and the second feeding plate alternately move to the feeding port or the discharging port through a driving assembly. The driving assembly drives the first feeding plate and the second feeding plate to alternately move to the feeding port and the discharging port, and the overall conveying efficiency is improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to product feeding field, more specifically, the utility model further relates to synchronous alternate feeding device. BACKGROUND

[0002] The existing product feeding is often material conveying by single feeding plate, and the driving device needs the feeding plate to realize feeding and discharging by going and returning, thereby leading to low overall conveying efficiency. INNOVATION CONTENT

[0003] In order to realize the utility model's purpose, the utility model adopts the technical scheme that a synchronous alternate feeding device, comprising: conveying platform, the conveying platform is equipped with inlet and outlet, the conveying platform length direction is moved by drive assembly and is equipped with first feeding plate and second feeding plate, the conveying platform is equipped with first conveying track matched with first feeding plate and second conveying track matched with second feeding plate;First feeding plate and second feeding plate are alternately moved to inlet or outlet by drive assembly.

[0004] Preferably, the first conveying track and the second conveying track each include two parallel sliding rails, and the second conveying track is located between the two sliding rails of the first conveying track.

[0005] Preferably, the height of the first conveying track is higher than the height of the second conveying track.

[0006] Preferably, the drive assembly includes a motor fixedly connected to the conveying platform, an output shaft of the motor extending between the first conveying track and the second conveying track is provided with a drive wheel, the conveying platform is rotatably provided with a driven wheel, the drive wheel and the driven wheel are sleeved with a synchronous belt, the synchronous belt is provided with two parallel conveying belts, the first feeding plate is fixedly connected to one of the conveying belts through a first positioning plate, and the second feeding plate is fixedly connected to the other conveying belt through a second positioning plate.

[0007] Preferably, the second feeding plate is matched with a lifting plate through a lifting assembly.

[0008] Preferably, the lifting plate is fixedly connected with a plurality of guide columns on the lower surface, and the second feeding plate is provided with a guide shaft sleeve matched with the guide columns.

[0009] Preferably, the lifting assembly includes a drive plate arranged between the two sliding rails of the second conveying track, the lifting plate is fixedly connected with a drive column extending from the lower surface of the second feeding plate, the drive column is provided with a drive portion, and the drive plate is provided with a lifting portion matched with the drive portion.

[0010] Preferably, the drive portion is fixedly connected with a drive wheel, and the lifting portion adopts a drive groove matched with the drive wheel.

[0011] Preferably, the driving groove is located at the feeding port and the discharging port of the conveying platform, and lifting zones are arranged between the two lifting zones.

[0012] Preferably, the conveying platform is provided with sensors at the feeding port and the discharging port.

[0013] Compared with the prior art, the utility model has the beneficial effects that:

[0014] 1. The first feeding plate and the second feeding plate are driven by the driving assembly to alternately move to the feeding port and the discharging port, thereby improving the overall conveying efficiency.

[0015] 2. The height of the first conveying track is higher than that of the second conveying track, so that the interference phenomenon of the first feeding plate and the second feeding plate in the alternating conveying process is reduced.

[0016] 3. The motor drives the driving wheel to rotate, and the synchronous belt drives the driven wheel to rotate, and the synchronous belt simultaneously drives the first feeding plate and the second feeding plate to alternately displace, thereby improving the overall conveying efficiency.

[0017] 4. The lifting plate is arranged on the second feeding plate, and the lifting assembly is used to realize lifting, thereby reducing the interference phenomenon in the alternating feeding process. BRIEF DESCRIPTION OF DRAWINGS

[0018] Figure 1 The utility model discloses a whole structure schematic diagram of synchronous alternating feeding device Figure One ;

[0019] Figure 2 The utility model discloses a whole structure schematic diagram of synchronous alternating feeding device Figure Two .

[0020] In the drawing: 1. conveying platform;101, feeding port;102, discharging port;103, first conveying track;104, second conveying track;2, first feeding plate;3, second feeding plate;4, motor;5, synchronous belt;6, lifting plate;7, guide column;8, guide shaft sleeve;9, driving plate;901, lifting zone;902, descending zone;10, driving column;11, sensor. DETAILED DESCRIPTION

[0021] The technical scheme in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, not all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the utility model.

[0022] The technical scheme in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, not all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the utility model.

[0023] Embodiment:

[0024] Figures 1 to 2 As shown, the utility model provides a technical scheme: a synchronous alternate feeding device, include: conveying platform 1, conveying platform 1 is equipped with inlet 101 and discharge port 102, and conveying platform 1 length direction moves and is equipped with first feeding plate 2 and second feeding plate 3 through drive assembly, and first feeding plate 2 and second feeding plate 3 can move material from inlet 101 to discharge port 102.

[0025] Conveying platform 1 is equipped with first conveying track 103 that cooperates with first feeding plate 2 and second conveying track 104 that cooperates with second feeding plate 3, and first feeding plate 2 and second feeding plate 3 move to inlet 101 or discharge port 102 alternately through drive assembly.

[0026] First conveying track 103 and second conveying track 104 all include two parallelly arranged slide rails, and second conveying track 104 is located between the two slide rails of first conveying track 103.

[0027] The height of first conveying track 103 is higher than the height of second conveying track 104. It is guaranteed that first feeding plate 2 and second feeding plate 3 do not work at the same horizontal plane, and the phenomenon of interference in the conveying process is reduced.

[0028] Drive assembly includes: motor 4 fixedly connected on conveying platform 1, and the output shaft of motor 4 extends to drive wheel between first conveying track 103 and second conveying track 104, and conveying platform 1 is rotationally provided with driven wheel, and drive wheel and driven wheel are sheathed with synchronous belt 5, and synchronous belt 5 is provided with two parallel conveying belts, and first feeding plate 2 is fixedly connected with one conveying belt through first positioning plate, and second feeding plate 3 is fixedly connected with another conveying belt through second positioning plate.

[0029] Drive wheel rotates through synchronous belt 5 driven by motor 4 rotation, so as to drive first feeding plate 2 and second feeding plate 3 reciprocating motion along conveying track.

[0030] Since the height of second feeding plate 3 is lower than the height of first feeding plate 2, second feeding plate 3 is matched with lifting plate 6 through lifting assembly, and the height of first feeding plate 2 at inlet 101 and discharge port 102 is compensated through the cooperation of lifting assembly and lifting plate 6.

[0031] Lifting plate 6 is fixedly connected with a plurality of guide columns 7 on the lower surface, and second feeding plate 3 is provided with guide shaft sleeve 8 matched with guide column 7. Through the cooperation of guide column 7 and guide shaft sleeve 8, the stability of lifting plate 6 in the lifting process is improved.

[0032] The lifting assembly comprises a driving plate 9 arranged between the two sliding rails of the second conveying track 104, a driving column 10 extending the lower surface of the second feeding plate 3 is fixedly connected to the lifting plate 6, the driving column 10 is provided with a driving part, and the driving plate 9 is provided with a lifting part matched with the driving part.

[0033] The driving part is fixedly connected with a driving wheel, the lifting part adopts a driving groove matched with the driving wheel, the driving groove is provided with a lifting area 901 at the feeding inlet 101 and the discharging outlet 102 of the conveying platform 1, and a descending area 902 is arranged between the two lifting areas 901. Through the cooperation of the driving wheel and the driving groove, the lifting plate 6 is lifted in the lifting area 901 and is lowered in the descending area 902 when the second feeding plate 3 moves along the length direction of the second conveying track 104, so that the interference with the first feeding plate 2 can be avoided, and the lifting plate 6 can be lifted at the feeding inlet 101 and the discharging outlet 102 and be consistent with the height of the first feeding plate 2.

[0034] The conveying platform 1 is provided with a sensor 11 at the feeding inlet 101 and the discharging outlet 102, the sensor 11 obtains the positions of the first feeding plate 2 and the second feeding plate 3 in real time, and the motor 4 is driven to rotate forward or reversely through the sensor 11.

[0035] As shown in the figure, Figures 1 to 2 In the initial state, the first feeding plate 2 is located at the feeding inlet 101, the second feeding plate 3 is located at the discharging outlet 102, the materials are fed into the first feeding plate 2, the motor 4 drives the driving wheel to rotate, the driving wheel drives the driven wheel to rotate through the synchronous belt 5, and the first feeding plate 2 and the second feeding plate 3 move along the conveying track.

[0036] The first feeding plate 2 moves from the feeding inlet 101 to the discharging outlet 102, and the second feeding plate 3 moves from the discharging outlet 102 to the feeding inlet 101, in the moving process, the lifting plate 6 is lifted in the lifting area 901 and is lowered in the descending area 902 when the second feeding plate 3 moves along the length direction of the second conveying track 104, so that the interference with the first feeding plate 2 can be avoided, and the lifting plate 6 can be lifted at the feeding inlet 101 and the discharging outlet 102 and be consistent with the height of the first feeding plate 2, and the above process is repeated, so that the first feeding plate 2 and the second feeding plate 3 are alternately fed, and the feeding time is shortened.

[0037] The embodiments of the utility model discloses the preferable embodiment, but is not limited to this, the ordinary skill in the art, the spirit of the utility model is appreciated to the above-mentioned embodiment, and different extension and change are made, but as long as not departing from the spirit of the utility model, all are within the protection scope of the utility model.

Claims

1. A synchronous alternate feeding device, characterized in that, Including: The conveying platform is provided with an inlet and an outlet, and the conveying platform is provided with a first feeding plate and a second feeding plate through a driving assembly moving in the length direction, and the conveying platform is provided with a first conveying track matched with the first feeding plate and a second conveying track matched with the second feeding plate; the first feeding plate and the second feeding plate are alternately moved to the inlet or the outlet through the driving assembly.

2. The synchronous alternate loading device according to claim 1, characterized in that, The first conveying track and the second conveying track each include two parallel sliding rails, and the second conveying track is located between the two sliding rails of the first conveying track.

3. The synchronous alternate loading device according to claim 2, wherein, The height of the first conveying track is higher than the height of the second conveying track.

4. The synchronous alternate loading device according to claim 3, wherein, The driving assembly includes a motor fixedly connected to the conveying platform, an output shaft of the motor extending between the first conveying track and the second conveying track and provided with a driving wheel, the conveying platform being rotatably provided with a driven wheel, the driving wheel and the driven wheel being provided with a synchronous belt, the synchronous belt being provided with two parallel conveying belts, the first feeding plate being fixedly connected to one of the conveying belts through a first positioning plate, and the second feeding plate being fixedly connected to the other conveying belt through a second positioning plate.

5. The synchronous alternating feeding device according to claim 4, characterized in that The second feeding plate is matched with a lifting plate through a lifting assembly.

6. The synchronous alternating feeding device according to claim 5, characterized in that The lifting plate is fixedly connected with a plurality of guide columns on the lower surface, and the second feeding plate is provided with a guide shaft sleeve matched with the guide columns.

7. The synchronous alternating feeding device according to claim 6, characterized in that The lifting assembly includes a driving plate arranged between the two sliding rails of the second conveying track, the lifting plate being fixedly connected with a driving column extending from the lower surface of the second feeding plate, the driving column being provided with a driving portion, and the driving plate being provided with a lifting portion matched with the driving portion.

8. The synchronous alternating feeding device according to claim 7, characterized in that The driving portion is fixedly connected with a driving wheel, and the lifting portion is provided with a driving groove matched with the driving wheel.

9. The synchronous alternating feeding device according to claim 8, characterized in that The driving groove is provided with a lifting area at the inlet and the outlet of the conveying platform, and a descending area is arranged between the two lifting areas.

10. The synchronous alternating feeding device according to claim 1, characterized in that, The conveying platform is provided with a sensor at the inlet and the outlet.