Formation hot-pressing thickness adjusting mechanism

By designing a thermoforming thickness adjustment mechanism, the problem of traditional thermoforming mechanisms being unable to adjust the thickness has been solved, enabling flexible and adaptive adjustment of battery thickness and expanding the application range.

CN223828471UActive Publication Date: 2026-01-23GUANGDONG HUAXIA TECH CO LTD
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Patent Information

Application Number
CN202520264277.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-18
Publication Date
2026-01-23
Estimated Expiration
2035-02-18

AI Technical Summary

Technical Problem

The hot pressing mechanism of traditional formation machines is a fixed structure, which cannot be adjusted according to the thickness of the battery, thus limiting its application range.

Method used

A hot-pressing thickness adjustment mechanism for chemical formation is designed, including components such as a first bearing plate, a second bearing plate, a connecting plate, an extrusion structure, a lifting guide rail, and a pressure plate seat. The thickness is adjusted and locked through a locking structure and a sliding inclined plane to adapt to batteries of different thicknesses.

Benefits of technology

It enables flexible adjustment based on battery thickness, expands the application range of the hot pressing mechanism, and improves adaptability and efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a formation hot-pressing thickness adjusting mechanism which is characterized in that a connecting plate is connected between a first bearing plate and a second bearing plate, a plurality of extrusion structures are oppositely mounted on the connecting plate, and a first lifting guide rail and a second lifting guide rail are vertically mounted below the first bearing plate and the second bearing plate respectively; the first lifting base and the second lifting base are movably installed on the first lifting guide rail and the second lifting guide rail respectively, locking structures are installed on the first lifting base and the second lifting base, and left-right moving sliding grooves are formed in the first lifting base and the second lifting base. The first pressing plate seat and the second pressing plate seat are movably installed on the left-right moving sliding groove respectively, first sliding slopes are arranged on the first pressing plate seat and the second pressing plate seat, the connecting plate is provided with second sliding slopes movably abutting against the first sliding slopes, and a pressing plate located on one side of the connecting plate is installed on one side of the first pressing plate seat and one side of the second pressing plate seat. The device can be adaptively adjusted according to the thickness of the storage battery, and is wide in application range.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of formation machine, concretely relates to a formation hot-pressing thickness adjusting mechanism. BACKGROUND

[0002] The formation machine is suitable for the formation charge-discharge of electric vehicle and automobile battery, and the formation machine of electric vehicle battery needs to be used with the storage battery inspection and matching instrument, has the function of activating and improving the capacity of the storage battery plate.

[0003] When the formation machine detects the storage battery, it needs to clamp it, and the prior art usually uses a hot-pressing jig to implement it, the hot-pressing jig is realized by a plurality of hot-pressing mechanisms arranged side by side to extrude the storage battery, and the traditional hot-pressing mechanism is a fixed structure and cannot be adjusted according to the thickness of the storage battery. UTILITY MODEL CONTENTS

[0004] The utility model aims at overcoming the defects of the prior art, providing a formation hot-pressing thickness adjusting mechanism, which has a thickness adjusting function, can be adjusted according to the thickness of the storage battery, and improves the application range of the hot-pressing mechanism.

[0005] The technical scheme of the utility model is as follows:

[0006] A formation hot-pressing thickness adjusting mechanism, comprising a first bearing plate, a second bearing plate, a connecting plate, a plurality of extrusion structures, a first lifting guide rail, a second lifting guide rail, a first lifting base, a second lifting base, a first pressing plate seat and a second pressing plate seat, the connecting plate is connected between the first bearing plate and the second bearing plate, the plurality of extrusion structures are oppositely installed on the connecting plate, an upwardly-opened triangular battery extrusion placing groove is installed between the connecting plates of two adjacent formation hot-pressing thickness adjusting mechanisms, the first lifting guide rail and the second lifting guide rail are respectively installed vertically below the first bearing plate and the second bearing plate, the first lifting base and the second lifting base are respectively movably installed on the first lifting guide rail and the second lifting guide rail, the first lifting base and the second lifting base are respectively provided with locking structures corresponding to the first lifting guide rail and the second lifting guide rail, left-right moving sliding grooves are formed in the first lifting base and the second lifting base, the first pressing plate seat and the second pressing plate seat are movably installed in the left-right moving sliding grooves of the first lifting base and the second lifting base, the first pressing plate seat and the second pressing plate seat are provided with first sliding inclined surfaces, the front and back sides of the connecting plate are provided with second sliding inclined surfaces movably abutting against the first sliding inclined surfaces of the first pressing plate seat and the second pressing plate seat, a pressing plate located on one side of the connecting plate is installed on one side of the first pressing plate seat and the second pressing plate seat, and the triangular battery extrusion placing groove is located between the two pressing plates.

[0007] Further, the extrusion structure comprises an extrusion seat, a first extrusion block, a second extrusion block and two tension springs, the extrusion seat is detachably installed on the connecting plate, the first extrusion block and the second extrusion block are movably arranged on the left and right sides of the extrusion seat respectively, the upper parts of the first extrusion block and the second extrusion block are rotatably connected with the extrusion seat respectively, the middle parts of the first extrusion block and the second extrusion block are respectively protruded to the two sides, and the tension springs are arranged between the middle parts of the first extrusion block and the second extrusion block and the extrusion seat respectively.

[0008] Further, a plurality of first mounting holes are arranged on the connecting plate in the same row, and the extrusion seat of the extrusion structure is detachably installed on the first mounting hole through the connecting column at the bottom.

[0009] Further, the left and right sides of the opening of the triangular battery extrusion placing groove are respectively bent and formed with mounting blocks, a plurality of second mounting holes are formed in the mounting blocks and correspond to the first mounting holes on the connecting plate, and the connecting column of the extrusion seat is connected with the first mounting hole through the second mounting hole.

[0010] Compared with the prior art, the utility model has the advantages that the utility model has thickness adjusting function, before the storage battery is placed in the triangular battery extrusion placing groove, the thickness of the storage battery can be adjusted, when the thickness is adjusted, the locking structure on the two sides is unlocked, the first lifting base and the second lifting base are driven to move up and down to drive the first pressing plate seat and the second pressing plate seat to move up and down, the pressing plates in the first pressing plate seat and the second pressing plate seat are telescopic under the action of the first sliding slope and the second sliding slope of the connecting plate, and the locking structure is locked after the thickness is adjusted to the appropriate thickness. BRIEF DESCRIPTION OF DRAWINGS

[0011] In order to make the technical scheme in the embodiments of the utility model clearer, the following will briefly introduce the drawings needed to be used in the embodiments or prior art description, obviously, the drawings in the following description are only some embodiments of the utility model, and other drawings can be obtained by those skilled in the art without creating labor.

[0012] Figure 1 The structure diagram of the heat pressing thickness adjusting mechanism is provided. DETAILED DESCRIPTION

[0013] In order to make the technical scheme in the embodiments of the utility model clearer, the following will briefly introduce the drawings needed to be used in the embodiments or prior art description, obviously, the drawings in the following description are only some embodiments of the utility model, and other drawings can be obtained by those skilled in the art without creating labor.

[0014] In order to illustrate the technical scheme of the utility model, the following specific embodiments are used for illustration.

[0015] Embodiment

[0016] Please refer to Figure 1 , the embodiment provides a kind of formation hot-pressing thickness adjusting mechanism, including first bearing plate 1, second bearing plate 2, connecting plate 3, several extrusion structures 4, first lifting guide rail 5, second lifting guide rail 6, first lifting base 7, second lifting base 8, first pressing plate seat 9 and second pressing plate seat 10.Connecting plate 3 is connected between first bearing plate 1 and second bearing plate 2, several extrusion structures 4 are oppositely installed on connecting plate 3, the connecting plate 3 between adjacent two formation hot-pressing thickness adjusting mechanisms is installed with the triangular battery extrusion placement groove 11 of opening upward, when extruding on storage battery, storage battery is placed on the triangular battery extrusion placement groove 11 of adjacent two formation hot-pressing thickness adjusting mechanisms;First lifting guide rail 5, second lifting guide rail 6 are vertically installed below first bearing plate 1 and second bearing plate 2 respectively, first lifting base 7, second lifting base 8 are movably installed on first lifting guide rail 5 and second lifting guide rail 6 respectively, locking structure 12 corresponding to first lifting guide rail 5 and second lifting guide rail 6 is installed on first lifting base 7 and second lifting base 8, left and right movement sliding slot 13 is provided on first lifting base 7 and second lifting base 8, first pressing plate seat 9 and second pressing plate seat 10 are movably installed on the left and right movement sliding slot 13 of first lifting base 7 and second lifting base 8 respectively, first sliding inclined plane 14 is provided on first pressing plate seat 9 and second pressing plate seat 10, the front and back sides of connecting plate 3 are provided with second sliding inclined plane, which is movably contacted with first sliding inclined plane 14 of first pressing plate seat 9 and second pressing plate seat 10, pressing plate 15 located on one side of connecting plate 3 is installed on one side of first pressing plate seat 9 and second pressing plate seat 10, triangular battery extrusion placement groove 11 is located between two pressing plates 15, the structure design makes the mechanism have thickness adjusting function, before placing storage battery on triangular battery extrusion placement groove 11, the thickness of storage battery can be adjusted, when thickness is adjusted, after unlocking the locking structure 12 on both sides, drive first lifting base 7 and second lifting base 8 to move up and down to drive first pressing plate seat 9 and second pressing plate seat 10 to move up and down, first pressing plate seat 9 and second pressing plate seat 10 move up and down, under the action of the movable contact of first sliding inclined plane 14 and the second sliding inclined plane of connecting plate 3, the pressing plate 15 of first pressing plate seat 9 and second pressing plate seat 10 is telescopic, after adjusting to appropriate thickness, locking is carried out by locking structure 12.

[0017] The extrusion structure 4 comprises an extrusion seat 41, a first extrusion block 42, a second extrusion block 43 and two tension springs 44. A plurality of first mounting holes are arranged on the same row of the connecting plate 3. The extrusion seat 41 of the extrusion structure 4 is detachably mounted on the first mounting hole through a connecting column at the bottom. The extrusion structure can be installed according to the length of the storage battery. The first extrusion block 42 and the second extrusion block 43 are movably arranged on the left and right sides of the extrusion seat 41 respectively. The upper parts of the first extrusion block 42 and the second extrusion block 43 are rotatably connected with the extrusion seat 41 respectively. The middle parts of the first extrusion block 42 and the second extrusion block 43 are protruded to the two sides respectively, and the tension springs 44 are arranged between the middle parts and the extrusion seat 41 respectively. When the storage battery is extruded, the adjacent two storage batteries will touch the first extrusion block 42 and the second extrusion block 43 respectively. The first extrusion block 42 and the second extrusion block 43 are compressed inward under the action of the tension springs 44. After extrusion, the first extrusion block 42 and the second extrusion block 43 are reset under the action of the tension springs 44.

[0018] The opening left and right sides of the triangular battery extrusion placing groove 11 are respectively bent and formed with mounting blocks 111. A plurality of second mounting holes 112 are formed on the mounting blocks 111 corresponding to the first mounting holes on the connecting plate 3. The connecting column of the extrusion seat 41 passes through the second mounting holes 112 and is connected with the first mounting holes. In this way, the installation and fixation of the extrusion structure 4 and the triangular battery extrusion placing groove 11 are completed.

[0019] The above is only a preferred embodiment of the present application and is not used to limit the present application. Any modification, equivalent replacement and improvement within the spirit and principle of the present application shall be included in the protection scope of the present application.

Claims

1. A hot-pressing thickness adjustment mechanism, characterized in that: The system includes a first bearing plate, a second bearing plate, a connecting plate, several extrusion structures, a first lifting guide rail, a second lifting guide rail, a first lifting base, a second lifting base, a first pressure plate seat, and a second pressure plate seat. The connecting plate connects the first bearing plate and the second bearing plate. The several extrusion structures are mounted opposite each other on the connecting plate. An upward-opening triangular battery extrusion placement groove is installed between adjacent connecting plates forming a hot-pressing thickness adjustment mechanism. The first and second lifting guide rails are respectively vertically installed below the first and second bearing plates. The first and second lifting bases are respectively movably mounted on the first and second lifting guide rails. The first and second lifting bases are equipped with locking structures corresponding to the first and second lifting guide rails, respectively. The first and second lifting bases are provided with left and right sliding grooves. The first and second pressure plates are movably installed on the left and right sliding grooves of the first and second lifting bases, respectively. The first and second pressure plates are provided with first sliding inclined surfaces. The front and rear sides of the connecting plate are provided with second sliding inclined surfaces that movably abut against the first sliding inclined surfaces of the first and second pressure plates, respectively. A pressure plate located on one side of the connecting plate is installed on one side of the first and second pressure plates. The triangular battery compression placement groove is located between the two pressure plates.

2. The hot-pressing thickness adjustment mechanism according to claim 1, characterized in that: The extrusion structure includes an extrusion seat, a first extrusion block, a second extrusion block, and two tension springs. The extrusion seat is detachably mounted on a connecting plate. The first extrusion block and the second extrusion block are movably disposed on the left and right sides of the extrusion seat, respectively. The upper parts of the first extrusion block and the second extrusion block are rotatably connected to the extrusion seat. The middle parts of the first extrusion block and the second extrusion block protrude to both sides, and tension springs are respectively provided between them and the extrusion seat.

3. The hot-pressing thickness adjustment mechanism according to claim 2, characterized in that: The connecting plate has several first mounting holes in the same row, and the extrusion seat of the extrusion structure can be detachably installed on the first mounting holes through the connecting column at the bottom.

4. The hot-pressing thickness adjustment mechanism according to claim 3, characterized in that: The opening of the triangular battery extrusion placement groove has mounting blocks bent into shape on the left and right sides respectively. Several second mounting holes are opened on the mounting blocks corresponding to the first mounting holes on the connecting plate. The connecting column of the extrusion seat passes through the second mounting holes and connects to the first mounting holes.