Polar plate arranging machine capable of preventing plates from being left easily

By using baffle and guide components in the electrode plate stacking machine, the problem of electrode plate retention when sliding down the circular conveyor belt was solved, thereby reducing the failure rate and ensuring stable operation of the equipment.

CN223509172UActive Publication Date: 2025-11-04江苏丹源环保科技有限公司
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Patent Information

Application Number
CN202422184275.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-06
Publication Date
2025-11-04
Estimated Expiration
2034-09-06

AI Technical Summary

Technical Problem

Existing plate stacking machines are prone to plate retention when the moving frame avoids obstacles due to the influence of sprockets, resulting in a high failure rate.

Method used

The system uses baffles at the arc of the conveyor belt as it slides down. Once in position, the conveyor belt falls freely under gravity. Combined with the support of the guide components and the design of the raised section, the amount of baffle residue is reduced.

Benefits of technology

This reduced the failure rate of the electrode plate stacking machine and improved the stability and efficiency of equipment operation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The polar plate arranging machine comprises a machine frame, a conveying track is arranged on the machine frame, the conveying track comprises two annular conveying belts arranged in parallel and a driving assembly driving the annular conveying belts to rotate, and a baffle piece is arranged on the machine frame and located at the downward sliding arc position of the annular conveying belts. The rack is provided with a driving mechanism for driving the baffle plate piece to stretch out or retract to block the polar plate; a first inductive switch used for inducting the polar plate is arranged on the baffle piece. The utility model has the innovation points that the baffle is used for blocking, the baffle is released and freely falls by gravity after being in place, and the baffle is positioned at the gliding arc of the annular conveying belt, so that the plate is not easy to remain, and the failure rate is reduced.
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Description

Technical Field

[0001] This utility model relates to the field of electrolysis, and in particular to an electrode plate stacking machine that is not prone to plate retention. Background Technology

[0002] The patent with patent number "CN117184819A" discloses "a plate stacking machine with faster transmission". This patent uses a receiving strip to receive the plate. Due to the influence of the sprocket, the moving frame has to make way. The support section is located at one end of the sliding section and slightly exceeds the upper long side of the ring conveyor belt, which makes it easy for plates to be stuck at this excess section, resulting in a high failure rate. Utility Model Content

[0003] The purpose of this invention is to provide a plate stacking machine that is less prone to plate retention.

[0004] The innovation of this utility model lies in the use of a baffle to block the conveyor belt. Once the baffle is in place, it is released and falls freely under gravity. The baffle is located at the arc of the conveyor belt's downward movement, making it less likely for the baffle to get stuck and reducing the failure rate.

[0005] To achieve the aforementioned objectives, the technical solution of this utility model is as follows:

[0006] A plate stacking machine that prevents plate retention includes a frame with a conveyor track. The conveyor track includes two parallel annular conveyor belts and a drive assembly that rotates the annular conveyor belts. A baffle is provided on the frame at the downward arc of the annular conveyor belts. A drive mechanism is provided on the frame to extend or retract the baffle to block the plates. A first inductive switch for sensing the plates is provided on the baffle or the frame. A second inductive switch for sensing the extension of the baffle is also provided on the frame.

[0007] Furthermore, both of the aforementioned annular conveyor belts are equipped with guide members. The top of the guide member is divided into a support section and a sliding section. The top surface of the support section is slightly lower than the upper long side of the annular conveyor belt, and the annular conveyor belt extends to the sliding section.

[0008] Furthermore, the drive mechanism is located above the annular conveyor belt for easy operation.

[0009] Furthermore, the drive mechanism drives the baffle to move up and down.

[0010] Furthermore, the driving mechanism is an eccentric wheel rocker mechanism; the frame is provided with a vertically arranged slide groove, and the eccentric wheel rocker mechanism drives the baffle to move within the slide groove; the second inductive switch is located at the drive motor of the eccentric wheel rocker mechanism.

[0011] Furthermore, the guide member has a slightly upward-curved portion located away from the sliding section; the support section is parallel to the upper long side of the annular conveyor belt. The support section provides support, while the raised portion serves a supporting function.

[0012] Furthermore, the guide component is a guide plate, which is part of the frame; the drive assembly is a motor; and the two drive assemblies are controlled independently.

[0013] Furthermore, the annular conveyor belt is an annular conveyor chain.

[0014] Furthermore, the chute is provided with oblong holes arranged along the conveying direction of the annular conveyor belt, and the chute is connected to the frame through the oblong holes. It has a certain amount of adjustment space.

[0015] Furthermore, the guide member has a cylindrical guide rod at its top. The cylindrical structure allows for smoother downward movement.

[0016] The beneficial effects of this utility model are:

[0017] 1. The innovation of this utility model lies in the use of a baffle to block the conveyor belt. Once the baffle is in place, it is released and falls freely under gravity. The baffle is located at the arc of the conveyor belt, which makes it less likely for the conveyor belt to be stuck, thus reducing the failure rate.

[0018] 2. In this utility model, the guide component can play a supporting role, the sliding section can easily slide to the next area, and the raised part can easily receive.

[0019] 3. The arrangement of the waist-shaped holes in this utility model allows the baffle to have a certain area of ​​positional adjustment space. Attached Figure Description

[0020] Figure 1 This is a schematic diagram of the structure of this utility model.

[0021] Figure 2 This is a schematic diagram of a structure with electrode plates on the conveyor track.

[0022] Figure 3 This is a schematic diagram of the structure at the No. 2 induction switch. Detailed Implementation

[0023] The technical solutions in the embodiments of this utility model will now be clearly and completely described with reference to the accompanying drawings.

[0024] Example 1: As Figure 1 , 2As shown in Figure 3, a plate stacking machine that is not prone to plate retention includes a frame 1. The frame 1 is equipped with a conveyor track 2, which includes two parallel annular conveyor belts 2.1 and a drive assembly 2.2 that drives the annular conveyor belts 2.1 to rotate. The drive assembly 2.2 is a motor, and the two drive assemblies are independently controlled. The annular conveyor belts 2.1 are annular conveyor chains. Guide members 3 are provided at both annular conveyor belts. The guide members 3 are guide plates, which are part of the frame 1. The top of the guide members 3 is divided into a support section 3.1 and a sliding section 3.2. The top surface of the support section 3.1 is slightly lower than the upper long side of the annular conveyor belts 2.1. The support section 3.1 is parallel to the upper long side of the annular conveyor belts 2.1. The guide member 3 has a slightly upturned part 3.3 at the section away from the sliding section 3.2. The top of the guide member 3 is equipped with a cylindrical guide rod 7. The circular conveyor belt 2.1 extends to the lower section 3.2. A baffle 4 is provided on the frame at the lower arc of the circular conveyor belt. A drive mechanism 5 is provided on the frame 1 to extend or retract the baffle 4 to block the electrode plate. A first inductive switch 6 for sensing the electrode plate is provided on the baffle 4 or the frame 1. A second inductive switch 8 for sensing the extension of the baffle 4 is also provided on the frame 1. The second inductive switch 8 is located at the drive motor of the eccentric wheel rocker mechanism. The second inductive switch 8 senses once for each revolution of the motor.

[0025] The drive mechanism 5 is located above the annular conveyor belt 2.1. The drive mechanism 5 drives the baffle 4 to move up and down. The drive mechanism 5 is an eccentric wheel rocker mechanism. The frame 1 is provided with a vertically arranged chute 1.1. The eccentric wheel rocker mechanism drives the baffle 4 to move in the chute 1.1. The chute 1.1 is provided with a waist-shaped hole 1.11 arranged along the conveying direction of the annular conveyor belt 2.1. The chute 1.1 is connected to the frame 1 through the waist-shaped hole.

[0026] During operation, the baffle 4 is in the extended state. When the electrode plate is conveyed to the downward arc of the circular conveyor belt 2.1 (located at the downward section 3.2 of the guide 3), one of the first induction switches 6 senses it, and the corresponding circular conveyor belt 2.1 stops. When the other first induction switch 6 senses it, the corresponding circular conveyor belt 2.1 also stops. After both stops, the drive mechanism 5 drives the baffle 4 to retract. The electrode plate at the downward arc of the circular conveyor belt 2.1 (located at the downward section 3.2 of the guide 3) falls freely under the action of gravity. The baffle 4 moves in a cycle. When the baffle 4 extends again, the second induction switch 8 senses it, and the two circular conveyor belts 2.1 start working again, entering the next cycle.

[0027] The described embodiments are merely some, not all, of the embodiments of this utility model. All other embodiments obtained by those skilled in the art based on the embodiments of this utility model without inventive effort are within the scope of protection of this utility model.

Claims

1. A plate stacking machine that is not prone to plate retention, comprising a frame, wherein a conveying track is provided on the frame, the conveying track comprising two parallel annular conveyor belts and a drive assembly for rotating the annular conveyor belts, characterized in that, A baffle is provided on the frame at the downward arc of the annular conveyor belt. The frame is provided with a drive mechanism to extend or retract the baffle to block the electrode plate. A first inductive switch for sensing the electrode plate is provided on the baffle or the frame. A second inductive switch for sensing the extension of the baffle is also provided on the frame.

2. The electrode plate stacking machine that is not prone to plate retention according to claim 1, characterized in that, Both of the aforementioned annular conveyor belts are equipped with guide members. The top of the guide member is divided into a support section and a sliding section. The top surface of the support section is slightly lower than the upper long side of the annular conveyor belt, and the annular conveyor belt extends to the sliding section.

3. The electrode plate stacking machine that is not prone to plate retention according to claim 1, characterized in that, The drive mechanism is located above the annular conveyor belt.

4. The electrode plate stacking machine that is not prone to plate retention according to claim 3, characterized in that, The drive mechanism drives the baffle to move up and down.

5. The electrode plate stacking machine that is not prone to plate retention according to claim 4, characterized in that, The driving mechanism is an eccentric wheel rocker mechanism; the frame is provided with a vertically arranged slide groove, and the eccentric wheel rocker mechanism drives the baffle to move within the slide groove; the second inductive switch is located at the drive motor of the eccentric wheel rocker mechanism.

6. The electrode plate stacking machine that is not prone to plate retention according to claim 2, characterized in that, The guide member has a slightly upward-curved portion at a distance from the sliding section; the support section is parallel to the upper long side of the annular conveyor belt.

7. The electrode plate stacking machine that is not prone to plate retention according to claim 2, characterized in that, The guide component is a guide plate, which is part of the frame; the drive assembly is a motor; the two drive assemblies are controlled independently.

8. The electrode plate stacking machine that is not prone to plate retention according to claim 1, characterized in that, The annular conveyor belt is an annular conveyor chain.

9. The electrode plate stacking machine that is not prone to plate retention according to claim 5, characterized in that, The chute is provided with waist-shaped holes arranged along the conveying direction of the annular conveyor belt, and the chute is connected to the frame through the waist-shaped holes.

10. The electrode plate stacking machine that is not prone to plate retention according to claim 2, characterized in that, The top of the guide component is provided with a cylindrical guide rod.