Collecting and distributing device for electric quantity storage medium processing

By designing an automated collection subsystem for the processing of electrical storage media, the problem of manual packing in the processing of electrical storage media in the existing technology has been solved, realizing automated collection and sorting, reducing labor intensity and improving production efficiency.

CN223673538UActive Publication Date: 2025-12-16IDRA (HEBEI) INTELLIGENT TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202423198963.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-24
Publication Date
2025-12-16
Estimated Expiration
2034-12-24

AI Technical Summary

Technical Problem

During the processing of electrical storage media, operators need to manually load the cut electrical storage media into the distribution box, which is labor-intensive and inefficient.

Method used

A collection and distribution device for processing electrical storage media was designed, including components such as a frame, a support platform, a distribution hopper, a conveyor belt, guide strips, support columns, a lifting seat, and a push-pull mechanism. Through automated conveying and support structures, the cut electrical storage media are automatically collected into the distribution box, reducing manual operation.

Benefits of technology

It enables automatic sorting and collection of electrical storage media, significantly reducing the labor intensity of operators, improving production efficiency, and enhancing the stability and flexibility of the sorting process.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of electric quantity storage medium processing equipment, and provides a collecting and distributing device for electric quantity storage medium processing, which comprises a rack, a bearing platform, a distributing hopper, a conveying belt and a guide raised line, and the bearing platform is arranged on the rack and is used for bearing a distributing box; the material distributing hopper is arranged on the rack and is positioned above the material distributing box; the conveying belt is located on the outer side of the upper end of the distributing hopper and used for conveying the electric quantity storage medium into the distributing hopper. The guide protruding strips are arranged on the inner wall of the material distributing hopper, the guide protruding strips are arranged on the two sides of the conveying belt, and the upper end faces of the guide protruding strips are flush with the upper end face of the material distributing hopper and used for being connected with notches in the electric quantity storage media in an inserted mode. By means of the technical scheme, the problem that in the related technology, the labor intensity is large due to the fact that an operator manually loads a storage medium into the material distribution box is solved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of electric quantity storage medium processing equipment, specifically relates to a kind of collecting and distributing device for electric quantity storage medium processing. BACKGROUND

[0002] Electric quantity storage medium can realize the storage and release of electric quantity, with the advantages of fast charge and discharge, long service life, high output power, safety and environmental protection. In the processing of electric quantity storage medium, a notch is cut on both sides of the strip-shaped electric quantity storage medium using a laser cutting device, and then the electric quantity storage medium is collected and packed for subsequent processing. Currently, the storage medium is manually packed into a distributing box by an operator, which is labor-intensive. SUMMARY

[0003] The utility model provides a kind of collecting and distributing device for electric quantity storage medium processing, solve the problem of labor-intensive in related art by manually packing storage medium into distributing box by operator.

[0004] The technical scheme of the utility model is as follows: a kind of collecting and distributing device for electric quantity storage medium processing is used to collect electric quantity storage medium into distributing box, both sides of the electric quantity storage medium have notch, and the key is: including,

[0005] frame,

[0006] carrying platform, the carrying platform is arranged on the frame, for carrying the distributing box;

[0007] distributing hopper, the distributing hopper is arranged on the frame, and located above the distributing box;

[0008] conveying belt, the conveying belt is located on the outer side of the upper end of the distributing hopper, for conveying electric quantity storage medium into the distributing hopper;

[0009] guide convex strip, the guide convex strip is arranged on the inner wall of the distributing hopper, both sides of the conveying belt have the guide convex strip, the upper end surface of the guide convex strip is flush with the upper end surface of the distributing hopper, for inserting with the notch on the electric quantity storage medium.

[0010] Further comprising,

[0011] support column, the support column is arranged on the frame, and located on one side of the carrying platform;

[0012] lifting seat, one end of the lifting seat is arranged on the support column in lifting mode, and the carrying platform is arranged on the other end of the lifting seat.

[0013] Both sides of the distributing hopper arranged along the length direction of the conveying belt have lower mounting port, further comprising,

[0014] a lower support seat inserted at the lower mounting port;

[0015] a lower push-pull mechanism, one end of which is arranged on the frame, the other end of which is connected with the outer end of the lower support seat, and after the elongation of the lower push-pull mechanism, the inner end of the lower support seat slides into the interior of the distribution hopper for supporting the electric quantity storage medium.

[0016] both of the two side walls of the distribution hopper arranged along the length direction of the conveying belt are provided with an upper mounting port above the lower mounting port, and further comprising,

[0017] an upper support seat inserted at the upper mounting port;

[0018] an upper push-pull mechanism, one end of which is arranged on the frame, the other end of which is connected with the outer end of the upper support seat, and after the elongation of the upper push-pull mechanism, the inner end of the upper support seat slides into the interior of the distribution hopper for supporting the electric quantity storage medium.

[0019] further comprising a rotating platform, the rotating platform having a fixed part and a rotating part, the fixed part of the rotating platform being arranged on the lifting seat, and the carrying platform being rotatably arranged on the lifting seat by means of the rotating part of the rotating platform.

[0020] further comprising a side guide plate, the lower end of the side guide plate being connected with the upper end of the distribution hopper and located above the guide convex strip, and the upper end of the side guide plate being inclined to the outside of the distribution hopper.

[0021] further comprising a baffle, the lower end of the baffle being connected with the upper end of the distribution hopper and located on the side of the distribution hopper away from the conveying belt.

[0022] the upper end surface of the frame is provided with an in-box sliding groove and an in-box sliding channel, the length direction of the in-box sliding groove is the same as the width direction of the conveying belt, and the in-box sliding groove is located on one side of the carrying platform, the in-box sliding channel is located in the in-box sliding groove, the length direction of the in-box sliding channel is the same as the length direction of the in-box sliding groove, and further comprising,

[0023] an in-box push plate placed in the in-box sliding groove;

[0024] a guide rod, the upper end of the guide rod being connected with the in-box push plate, and the lower end of the guide rod extending to below the frame through the in-box sliding channel;

[0025] The in-box telescopic mechanism is located below the rack, one end of the in-box telescopic mechanism is connected with the rack, the other end of the in-box telescopic mechanism is connected with the lower end of the guide rod, and the guide rod drives the in-box push plate to move close to or away from the bearing platform after the in-box telescopic mechanism is telescoped.

[0026] The upper end surface of the rack is provided with an out-box chute, the length direction of the out-box chute is the same as the length direction of the conveying belt, the out-box chute is arranged on both sides of the bearing platform, and the out-box chute comprises,

[0027] An out-box push plate is arranged in the out-box chute.

[0028] The out-box telescopic mechanism is located below the conveying belt, one end of the out-box telescopic mechanism is connected with the rack, the other end of the out-box telescopic mechanism is connected with the out-box push plate, and the out-box push plate is used for pushing the distribution box between the bearing platform and the distribution hopper to the outside of the bearing platform after the out-box telescopic mechanism is elongated.

[0029] A counting sensor is further arranged on the distribution hopper.

[0030] The working principle and beneficial effects of the utility model are as follows: the bearing platform is arranged on the rack and used for bearing the distribution box; the distribution hopper is arranged on the rack and located above the distribution box; the conveying belt is located on the upper end outside of the distribution hopper and used for conveying the electric quantity storage medium into the distribution hopper; the guide convex strips are arranged on the inner wall of the distribution hopper, the guide convex strips are arranged on both sides of the conveying belt, the upper end surface of the guide convex strip is flush with the upper end surface of the distribution hopper and used for being inserted with the aperture on the electric quantity storage medium. The conveying belt is responsible for conveying the strip-shaped electric quantity storage medium with the aperture cut by the laser cutting device into the distribution hopper, when a part of the electric quantity storage medium is separated from the conveying belt and enters the distribution hopper, the guide convex strip can support the part of the electric quantity storage medium, so that the electric quantity storage medium can enter the distribution hopper stably, when the whole electric quantity storage medium enters the distribution hopper, the apertures on both sides of the electric quantity storage medium are just located below the guide convex strips, the electric quantity storage medium loses the support and falls under the action of gravity, the guide convex strip is inserted with the aperture on the electric quantity storage medium, so as to play a guiding and limiting role, and the electric quantity storage medium can fall into the distribution box located below the distribution hopper after leaving the distribution hopper. The automatic distribution and collection can be realized, the workload of manual operation is greatly reduced, so that the labor intensity of the operator is significantly reduced and the production efficiency is improved. BRIEF DESCRIPTION OF DRAWINGS

[0031] The above-mentioned characteristics, technical features, advantages and implementation modes of the utility model will be further described in the following preferred embodiments combined with the drawings.

[0032] Figure 1 It is the structural schematic view of the utility model.

[0033] Figure 2 It is the structural schematic view of the utility model in the first direction of the distribution hopper and the rack.

[0034] Figure 3 It is the structural schematic view of the utility model in the second direction of the distribution hopper and the rack.

[0035] Figure 4 It is the structural schematic view of the utility model in the third direction of the distribution hopper and the rack.

[0036] Figure 5 It is the structural schematic view of the utility model in the fourth direction of the distribution hopper and the rack.

[0037] Figure 6 It is the structural schematic view of the utility model in the fifth direction of the distribution hopper and the rack.

[0038] In the drawing: 1, rack, 2, bearing platform, 3, distribution hopper, 4, conveying belt, 5, guide convex strip, 6, support column, 7, lifting seat, 8, lower mounting port, 9, lower support seat, 10, lower push-pull mechanism, 11, upper mounting port, 12, upper support seat, 13, upper push-pull mechanism, 14, rotating platform, 15, side guide plate, 16, baffle, 17, box inlet sliding groove, 18, box inlet sliding way, 19, box inlet push plate, 20, guide rod, 21, box inlet telescopic mechanism, 22, box outlet sliding groove, 23, box outlet push plate, 24, box outlet telescopic mechanism, 25, counting sensor, 26, box inlet proximity switch, 27, box outlet proximity switch. DETAILED DESCRIPTION

[0039] In order to more clearly illustrate the technical scheme in the embodiments of the utility model or the prior art, the specific implementation manner of the utility model will be described below with reference to the drawings. Obviously, the drawings in the following description only some embodiments of the utility model, and for those skilled in the art, without creating labor, other drawings can also be obtained according to these drawings, and other implementation manners can also be obtained.

[0040] In order to make the drawing simple, only the part related to the utility model is shown in each drawing, which does not represent the actual structure of the product. In addition, in order to make the drawing simple and easy to understand, in some drawings, only one of the components with the same structure or function is shown, or only one of them is marked. In this paper, "one" not only means "only one", but also means "more than one", and "several" includes "two" and "more than two".

[0041] In this article, it is necessary to explain that unless otherwise expressly provided and limited, the terms "mount", "connect", "connect" should be understood broadly, for example, it can be fixedly connected, or it can be detachably connected, or integrally connected; it can be mechanically connected, or it can be electrically connected; it can be directly connected, or it can be indirectly connected through an intermediate medium, or it can be connected inside two elements. For those skilled in the art, the specific meaning of the above terms in the utility model can be understood according to the specific circumstances.

[0042] In addition, in the description of the present application, the terms "first", "second" and the like are only used to distinguish the description, and cannot be understood as indicating or implying relative importance.

[0043] Embodiment, refer to Figures 1-6 , an embodiment of the utility model provides a kind of collecting and distributing device for electric quantity storage medium processing, for collecting electric quantity storage medium into distributing box, both sides of electric quantity storage medium have aperture, including rack 1, bearing platform 2, distributing hopper 3, conveying belt 4, guide convex strip 5, bearing platform 2 is arranged on rack 1, for bearing distributing box;Distributing hopper 3 is arranged on rack 1, and is located above distributing box;Conveying belt 4 is located in the upper end outside of distributing hopper 3, for conveying electric quantity storage medium into distributing hopper 3;Guide convex strip 5 is arranged on the inner wall of distributing hopper 3, there are guide convex strip 5 on both sides of conveying belt 4, the upper end surface of guide convex strip 5 is flush with or below the upper end surface of distributing hopper 3, for being inserted with the aperture on electric quantity storage medium.

[0044] In the embodiment, taking that conveying belt 4 is located behind distributing hopper 3 and forwards as an example, both sides of electric quantity storage medium are simultaneously provided with front and rear apertures, and correspondingly, both sides in distributing hopper 3 are simultaneously provided with front and rear guide convex strips 5.Conveying belt 4 is responsible for conveying strip-shaped electric quantity storage medium, which is cut by laser cutting device, into distributing hopper 3, after a part of electric quantity storage medium is separated from conveying belt 4 and enters distributing hopper 3, guide convex strip 5 can support the part of electric quantity storage medium, to ensure that electric quantity storage medium can enter distributing hopper 3 smoothly, when the whole electric quantity storage medium enters distributing hopper 3, the apertures on both sides of electric quantity storage medium are just below guide convex strip 5, electric quantity storage medium loses support and falls under the action of its own gravity, guide convex strip 5 is inserted with the aperture on electric quantity storage medium, to play a guiding and limiting role, and electric quantity storage medium can fall into distributing box located below distributing hopper 3 after leaving distributing hopper 3.It can realize automatic distributing and collecting, greatly reduce the workload of manual operation, thereby significantly reduce the labor intensity of operator, and improve production efficiency.

[0045] Further, as Figure 1 , Figure 3 and Figure 5As shown, it also includes a support column 6 and a lifting seat 7, the support column 6 is arranged on the rack 1 and located on one side of the carrying platform 2; one end of the lifting seat 7 is arranged on the support column 6 in a lifting manner, and the carrying platform 2 is arranged at the other end of the lifting seat 7. Taking the case that the support column 6 is located at the left end of the rack 1 as an example, the support column 6 is located at the left side of the carrying platform 2, the carrying platform 2 is arranged at the right end of the lifting seat 7, and the left end of the lifting seat 7 is in sliding connection with the support column 6. By adjusting the up-down position of the lifting seat 7, the height of the carrying platform 2 can be adjusted to adapt to the material distribution boxes of different sizes, and the flexibility and versatility of the device can be improved, and the material distribution and collection requirements in different scenes can be met.

[0046] Further, as shown in Figure 1 、 Figure 2 、 Figure 3 、 Figure 4 、 Figure 5 and Figure 6 , the two side walls of the material distribution hopper 3 arranged along the length direction of the conveying belt 4 are provided with lower mounting ports 8, and further include a lower support seat 9 and a lower push-pull mechanism 10, the lower support seat 9 is inserted into the lower mounting port 8; one end of the lower push-pull mechanism 10 is arranged on the rack 1, and the other end of the lower push-pull mechanism 10 is connected with the outer end of the lower support seat 9, after the lower push-pull mechanism 10 is elongated, the inner end of the lower support seat 9 slides into the inside of the material distribution hopper 3, and is used for supporting the power storage medium.

[0047] For example, when the conveying belt 4 is located behind the distribution hopper 3 and conveying forward, there are two left and right lower installation openings 8 on the front and rear sidewalls of the distribution hopper 3, a lower supporting seat 9 is inserted at each lower installation opening 8, and a lower push-pull mechanism 10 is connected between each lower supporting seat 9 and the rack 1. Initially, the lower push-pull mechanism 10 is in a retracted state, when it is needed to collect distribution, the lower push-pull mechanism 10 is extended, the inner ends of the four lower supporting seats 9 are all slid into the distribution hopper 3, the empty distribution box is placed on the carrying platform 2, the conveying belt 4 sends the power storage medium in the distribution hopper 3 to fall above the lower supporting seat 9, when the power storage medium in the distribution hopper 3 reaches the set amount, the conveying belt 4 stops working, the lifting seat 7 drives the carrying platform 2 to rise, the carrying platform 2 drives the distribution box above it to rise synchronously, reaches the specified height, and then the lifting seat 7 stops rising, the lower push-pull mechanism 10 is retracted to the initial position, so that the lower supporting seat 9 moves outward and separates from the power storage medium, the power storage medium falls into the distribution box, and then the lifting seat 7 moves downward to the initial position, so that the carrying platform 2 and the distribution box fall to the initial position, at the same time, the lower push-pull mechanism 10 is extended again, so that the inner ends of the four lower supporting seats 9 are slid into the distribution hopper 3 again, ready to hold the next batch of power storage medium, then the distribution box containing the power storage medium is removed, the empty distribution box is placed on the carrying platform 2, and the conveying belt 4 starts working again. Temporary support can be provided during the process of the power storage medium entering the distribution hopper 3, to ensure that the power storage medium can enter the distribution hopper 3 smoothly and prevent instability or damage caused by rapid falling due to gravity, and the stability of the distribution process can be improved.

[0048] Further, as shown in Figure 1 、 Figure 2 、 Figure 3 、 Figure 4 、 Figure 5 and Figure 6 , the distribution hopper 3 has two sidewalls arranged along the length direction of the conveying belt 4, and each sidewall has an upper installation opening 11 above the lower installation opening 8, and further includes an upper supporting seat 12, an upper push-pull mechanism 13, and the upper supporting seat 12 is inserted at the upper installation opening 11; one end of the upper push-pull mechanism 13 is arranged on the rack 1, and the other end of the upper push-pull mechanism 13 is connected with the outer end of the upper supporting seat 12; after the upper push-pull mechanism 13 is extended, the inner end of the upper supporting seat 12 slides into the distribution hopper 3, and is used to hold the power storage medium.

[0049] With the example that the conveying belt 4 is located behind the distribution hopper 3 and forwards conveying, there are two left and right upper installation ports 11 on the front and back sidewalls of the distribution hopper 3, the upper installation ports 11 are arranged one by one with the lower installation ports 8, the upper support seat 12 is inserted at each upper installation port 11, and the upper push-pull mechanism 13 is connected between each upper support seat 12 and the rack 1. Initially, the lower push-pull mechanism 10 and the upper push-pull mechanism 13 are in the retracted state, when the distribution is needed, the lower push-pull mechanism 10 is elongated, the inner ends of the four lower support seats 9 are slid to the inside of the distribution hopper 3, the empty distribution box is placed on the carrying platform 2, the power storage medium in the distribution hopper 3 falls above the lower support seat 9 when the conveying belt 4 is sent to the distribution hopper 3, when the power storage medium in the distribution hopper 3 reaches the set quantity, all the power storage medium in the distribution hopper 3 is below the upper support seat 12, the upper push-pull mechanism 13 is elongated, the inner ends of the four upper support seats 12 are slid to the inside of the distribution hopper 3 for supporting the power storage medium conveyed by the conveying belt 4, the lifting seat 7 drives the carrying platform 2 to rise, the carrying platform 2 drives the distribution box above it to rise synchronously, reaches the specified height, the lifting seat 7 stops rising, the lower push-pull mechanism 10 is retracted to the initial position, so that the lower support seat 9 moves outward and separates from the power storage medium, the power storage medium below the upper support seat 12 falls into the distribution box, then the lifting seat 7 moves downward to the initial position, so that the carrying platform 2 and the distribution box fall to the initial position, at the same time, the lower push-pull mechanism 10 is elongated again, so that the inner ends of the four lower support seats 9 are slid to the inside of the distribution hopper 3 again, the upper push-pull mechanism 13 is retracted to the initial position, so that the upper support seat 12 moves outward and separates from the power storage medium, the power storage medium above the upper support seat 12 falls on the lower support seat 9, the lower support seat 9 continues to support the next batch of power storage medium, then the distribution box containing the power storage medium is removed, and the empty distribution box is placed on the carrying platform 2. The conveying belt 4 does not need to stop working, the power storage medium in the distribution hopper 3 can be transferred into the distribution box, which can improve the production efficiency.

[0050] Further, as shown in Figure 1 and Figure 6 , further comprising a rotating platform 14, the rotating platform 14 has a fixed part and a rotating part, the fixed part of the rotating platform 14 is arranged on the lifting seat 7, and the carrying platform 2 is rotatably arranged on the lifting seat 7 by means of the rotating part of the rotating platform 14. With the example that the length direction of the power storage medium on the conveying belt 4 is arranged along the width direction of the conveying belt 4 (i.e. left and right direction), initially, the length direction of the distribution box on the carrying platform 2 is also arranged along the left and right direction, when the distribution box is filled with power storage medium and falls back to the initial position with the carrying platform 2, the rotating platform 14 can drive the carrying platform 2 and the distribution box on the carrying platform 2 to rotate 90°, so that the length direction of the distribution box is arranged along the front and back direction, which is convenient for the distribution box to enter the subsequent process.

[0051] Further, as shown inFigure 1 , Figure 2 , Figure 3 , Figure 4 , Figure 5 and Figure 6 As shown, it also includes a side guide plate 15, the lower end of which is connected to the upper end of the dispensing hopper 3 and is located above the guide protrusion 5. The upper end of the side guide plate 15 is inclined outward from the dispensing hopper 3. The side guide plate 15 can guide the energy storage medium to accurately enter the dispensing hopper 3, reduce dispensing failures caused by deviation of the energy storage medium, and ensure the smooth progress of the dispensing process.

[0052] Furthermore, such as Figure 1 , Figure 2 , Figure 3 , Figure 4 , Figure 5 and Figure 6 As shown, it also includes a baffle 16, the lower end of which is connected to the upper end of the distribution hopper 3 and is located on the side of the distribution hopper 3 away from the conveyor belt 4. The baffle 16 can prevent the energy storage medium from flying out of the distribution hopper 3 due to inertia when it enters the distribution hopper 3, thus better ensuring the safety of the distribution process and reducing the loss caused by the accidental flying out of the energy storage medium.

[0053] Furthermore, such as Figure 1 , Figure 2 , Figure 3 , Figure 4 , Figure 5 and Figure 6 As shown, the upper surface of the frame 1 has a box inlet chute 17 and a box inlet slide 18. The length direction of the box inlet chute 17 is the same as the width direction of the conveyor belt 4 and is located on one side of the carrying platform 2. The box inlet slide 18 is located inside the box inlet chute 17, and the length direction of the box inlet slide 18 is the same as the length direction of the box inlet chute 17. It also includes a box inlet push plate 19, a guide rod 20, and a box inlet telescopic mechanism 21. The box inlet push plate 19 is placed inside the box inlet chute 17. The upper end of the guide rod 20 is connected to the box inlet push plate 19, and the lower end of the guide rod 20 extends through the box inlet slide 18 to the bottom of the frame 1. The box inlet telescopic mechanism 21 is located below the frame 1. One end of the box inlet telescopic mechanism 21 is connected to the frame 1, and the other end of the box inlet telescopic mechanism 21 is connected to the lower end of the guide rod 20. After the box inlet telescopic mechanism 21 extends or retracts, the guide rod 20 drives the box inlet push plate 19 to move closer to or away from the carrying platform 2.

[0054] The in-box chute 17 is located on the right side of the bearing platform 2, and the length direction is arranged along the left-right direction. The left end of the in-box telescopic mechanism 21 is connected with the rack 1, and the right end of the in-box telescopic mechanism 21 is connected with the in-box push plate 19. Initially, the in-box telescopic mechanism 21 is in the contracted state, and the in-box push plate 19 is close to the bearing platform 2. When the collection of the distribution material is needed, the in-box telescopic mechanism 21 is first elongated, the in-box push plate 19 is moved to the right end of the in-box chute 17, then the next empty distribution box is placed into the in-box chute 17, and the distribution box is located on the left side of the in-box push plate 19. Then the in-box telescopic mechanism 21 is contracted to return to the initial position, and the in-box push plate 19 can push the distribution box to the bearing platform 2. The automatic pushing of the distribution box can reduce the workload of manual carrying of the distribution box and improve the production efficiency. At the same time, the distribution box can be accurately pushed to the appropriate position on the bearing platform 2, and the smooth progress of the distribution process is ensured.

[0055] Further, as shown in Figure 1 、 Figure 2 、 Figure 3 、 Figure 4 and Figure 5 Figure 6 Figure 1 Figure 2 Figure 3 Figure 4 Figure 5 , the upper end surface of the rack 1 has an out-box chute 22, the length direction of the out-box chute 22 is the same as the length direction of the conveying belt 4, and there are out-box chutes 22 on both sides of the bearing platform 2. It also includes an out-box push plate 23 and an out-box telescopic mechanism 24. The out-box push plate 23 is placed in the out-box chute 22. The out-box telescopic mechanism 24 is located below the conveying belt 4. One end of the out-box telescopic mechanism 24 is connected with the rack 1, and the other end of the out-box telescopic mechanism 24 is connected with the out-box push plate 23. After the out-box telescopic mechanism 24 is elongated, the out-box push plate 23 is used to push the distribution box between the bearing platform 2 and the distribution hopper 3 to the outside of the bearing platform 2.

[0056] Taking the length direction of the out-box chute 22 as an example, the out-box chute 22 is arranged on both sides of the bearing platform 2 in the front-back direction. The rear end of the out-box telescopic mechanism 24 is connected with the rack 1, and the front end of the out-box telescopic mechanism 24 is connected with the out-box push plate 23. Initially, the out-box telescopic mechanism 24 is in the contracted state, and the out-box push plate 23 is located behind the bearing platform 2. When the distribution box on the bearing platform 2 is full of power storage medium, the out-box telescopic mechanism 24 is elongated, the out-box push plate 23 pushes the distribution box forward, until the distribution box is pushed into the out-box chute 22 in front of the bearing platform 2, then the out-box telescopic mechanism 24 is contracted to return to the initial position, and the out-box push plate 23 is moved backward to return to the initial position, then the next empty distribution box is placed on the bearing platform 2. When there is an in-box push plate 19, a guide rod 20 and an in-box telescopic mechanism 21, the next empty distribution box can be pushed onto the bearing platform 2 by the in-box push plate 19. After the distribution box is full, the distribution box can be automatically pushed out, which is convenient for subsequent processing, can improve the production efficiency, and further reduce the labor intensity of manual operation.

[0057] Further, the counting sensor 25 is arranged on the distribution hopper 3. The power storage medium entering the distribution hopper 3 can be counted, so that the operator can master the distribution quantity, realize accurate control of the production process, and improve the efficiency and accuracy of production management. The output end of the counting sensor 25 is connected with the control module, and the controlled end of the push-pull mechanism 10, the push-pull mechanism 13, the rotating platform 14, the in-box telescopic mechanism 21 and the out-box telescopic mechanism 24 are connected with the control module, so that automatic control can be realized, and time and labor can be saved. The in-box proximity switch 26 and the out-box proximity switch 27 are arranged on the rack 1, and the in-box proximity switch 26 and the out-box proximity switch 27 are electrically connected with the control module. The in-box proximity switch 26 is located on the side of the bearing platform 2 away from the in-box sliding groove 17, and the out-box proximity switch 27 is located on the side of the bearing platform 2 away from the out-box telescopic mechanism 24, so that the empty distribution box can be accurately pushed onto the bearing platform 2, and the distribution box containing the power storage medium can be accurately pushed away from the bearing platform 2 and stopped at the set position of the rack 1.

[0058] It should be noted that the above embodiments are only used to illustrate the technical solutions of the present application, not to limit it. Although the present application has been described in detail with reference to the preferred embodiments, those skilled in the art should understand that the technical solutions of the present application can be modified or replaced by equivalent, without departing from the spirit and scope of the technical solutions of the present application, which should be covered in the scope of the claims of the present application.

Claims

1. A collection and dispensing device for processing electrical storage media, used to collect electrical storage media into a dispensing box, wherein the electrical storage media has openings on both sides, characterized in that: The utility model relates to a kind of electric quantity storage medium distribution device, including, Rack (1), Carrying platform (2), the carrying platform (2) is arranged on the rack (1), for carrying the distribution box; Distribution hopper (3), the distribution hopper (3) is arranged on the rack (1), and located above the distribution box; Conveying belt (4), the conveying belt (4) is located in the upper end outside of the distribution hopper (3), for conveying electric quantity storage medium into the distribution hopper (3); Guide convex strip (5), the guide convex strip (5) is arranged on the inner wall of the distribution hopper (3), and the guide convex strip (5) is arranged on both sides of the conveying belt (4), the upper end surface of the guide convex strip (5) is flush with the upper end surface of the distribution hopper (3), for being inserted with the aperture on the electric quantity storage medium.

2. The collecting and distributing device for processing of electrical energy storage media according to claim 1, characterized in that Further including, Support column (6), the support column (6) is arranged on the rack (1), and located in one side of the carrying platform (2); Lifting seat (7), one end of the lifting seat (7) is arranged on the support column (6) in lifting mode, and the carrying platform (2) is arranged on the other end of the lifting seat (7).

3. The collecting and distributing device for processing of electrical energy storage media according to claim 2, characterized in that Lower mounting port (8) is arranged on both sides of the distribution hopper (3) along the length direction of the conveying belt (4), further including, Lower support seat (9), the lower support seat (9) is inserted at the lower mounting port (8); Lower push-pull mechanism (10), one end of the lower push-pull mechanism (10) is arranged on the rack (1), and the other end of the lower push-pull mechanism (10) is connected with the outer end of the lower support seat (9), after the lower push-pull mechanism (10) is elongated, the inner end of the lower support seat (9) slides into the distribution hopper (3), for supporting the electric quantity storage medium.

4. The collecting and distributing device for processing of electrical energy storage media according to claim 3, characterized in that Upper mounting port (11) is arranged on both sides of the distribution hopper (3) along the length direction of the conveying belt (4), and the upper mounting port (11) is located above the lower mounting port (8), further including, Upper support seat (12), the upper support seat (12) is inserted at the upper mounting port (11); Upper push-pull mechanism (13), one end of the upper push-pull mechanism (13) is arranged on the rack (1), and the other end of the upper push-pull mechanism (13) is connected with the outer end of the upper support seat (12), after the upper push-pull mechanism (13) is elongated, the inner end of the upper support seat (12) slides into the distribution hopper (3), for supporting the electric quantity storage medium.

5. The collecting and distributing device for processing an electric charge storage medium according to claim 2, wherein: Further including rotating platform (14), the rotating platform (14) has fixed part and rotating part, the fixed part of the rotating platform (14) is arranged on the lifting seat (7), and the carrying platform (2) is arranged on the lifting seat (7) by the rotating part of the rotating platform (14) rotation.

6. The collecting and distributing device for processing of electrical energy storage media according to claim 1, characterized in that: Further including side guide plate (15), the lower end of the side guide plate (15) is connected with the upper end of the distribution hopper (3), and located above the guide convex strip (5), and the upper end of the side guide plate (15) is inclined to the outside of the distribution hopper (3).

7. The collecting and distributing device for processing of electrical energy storage media according to claim 1, characterized in that: Further comprising a baffle (16), the lower end of the baffle (16) is connected with the upper end of the distribution hopper (3), and is located on the side of the distribution hopper (3) away from the conveying belt (4).

8. The collecting and distributing device for processing of electrical energy storage media according to claim 1, characterized in that: The upper end surface of the rack (1) has an inlet chute (17) and an inlet slide (18), the length direction of the inlet chute (17) is the same as the width direction of the conveying belt (4), and the inlet chute (17) is located on one side of the bearing platform (2), the inlet slide (18) is located in the inlet chute (17), the length direction of the inlet slide (18) is the same as the length direction of the inlet chute (17), further comprising, An inlet push plate (19) is placed in the inlet chute (17); A guide rod (20), the upper end of the guide rod (20) is connected with the inlet push plate (19), and the lower end of the guide rod (20) extends through the inlet slide (18) to below the rack (1); An inlet telescopic mechanism (21) is located below the rack (1), one end of the inlet telescopic mechanism (21) is connected with the rack (1), and the other end of the inlet telescopic mechanism (21) is connected with the lower end of the guide rod (20), after the inlet telescopic mechanism (21) is telescoped, the guide rod (20) drives the inlet push plate (19) to approach or move away from the bearing platform (2).

9. The collecting and distributing device for processing an electric charge storage medium according to claim 1, wherein: The upper end surface of the rack (1) has an outlet chute (22), the length direction of the outlet chute (22) is the same as the length direction of the conveying belt (4), and the outlet chute (22) is located on both sides of the bearing platform (2), further comprising, An outlet push plate (23) is placed in the outlet chute (22); An outlet telescopic mechanism (24) is located below the conveying belt (4), one end of the outlet telescopic mechanism (24) is connected with the rack (1), and the other end of the outlet telescopic mechanism (24) is connected with the outlet push plate (23), after the outlet telescopic mechanism (24) is extended, the outlet push plate (23) is used to push the distribution box located between the bearing platform (2) and the distribution hopper (3) to the outside of the bearing platform (2).

10. The collecting and distributing device for processing an electric charge storage medium according to claim 1, wherein: Further comprising a counting sensor (25), the counting sensor (25) is arranged on the distribution hopper (3).