CN221631470U - Battery connection piece test equipment - Google Patents

Battery connection piece test equipment Download PDF

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Publication number
CN221631470U
CN221631470U CN202323099364.3U CN202323099364U CN221631470U CN 221631470 U CN221631470 U CN 221631470U CN 202323099364 U CN202323099364 U CN 202323099364U CN 221631470 U CN221631470 U CN 221631470U
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China
Prior art keywords
assembly
driving assembly
clamping
battery
output end
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CN202323099364.3U
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Chinese (zh)
Inventor
彭及衍
彭启伦
温景欢
梁仕添
陈星平
彭琼芳
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Shenzhen Fujiada Hardware And Plastic Products Co ltd
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Shenzhen Fujiada Hardware And Plastic Products Co ltd
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Abstract

The utility model discloses battery connecting piece testing equipment, which relates to the technical field of battery connecting pieces, and comprises a mounting frame, a transverse moving driving assembly, a longitudinal moving driving assembly, a vertical moving driving assembly, a rotary driving assembly, a clamping assembly and a testing assembly, wherein the longitudinal moving driving assembly is arranged at the output end of the transverse moving driving assembly, the vertical moving driving assembly is arranged at the output end of the transverse moving driving assembly, the rotary driving assembly is arranged at the output end of the vertical moving driving assembly, the clamping assembly is arranged at the output end of the rotary driving assembly, the testing assembly is arranged on the mounting frame, and the clamping assembly can movably face the testing assembly; the test assembly is provided with a limiting device for limiting the battery connecting sheet; through adopting stop device to realize the spacing to the battery connection piece, prevent battery connection piece position deviation in the testing process, improved the test accuracy.

Description

Battery connection piece test equipment
Technical Field
The utility model relates to the technical field of battery connecting pieces, in particular to battery connecting piece testing equipment.
Background
The battery is widely applied to the technical field of industry, and the battery connecting piece plays an important role as a conductive connecting piece; the invention of application number 202211038950.4 relates to the technical field of battery pack performance test, in particular to a battery pack conductivity test device; in the prior art, when the conductivity of the battery connecting sheet is tested, the automatic realization of the transverse movement, the longitudinal movement, the vertical movement, the rotation, the clamping and the test of the battery connecting sheet is realized without adopting a transverse movement driving assembly, a longitudinal movement driving assembly, a vertical movement driving assembly, a rotation driving assembly, a clamping assembly and a test assembly, and the test efficiency is low; the limiting device is not adopted to limit the battery connecting sheet, the position of the battery connecting sheet is easy to deviate in the testing process, and the testing accuracy is poor; therefore, in view of this current situation, there is an urgent need to develop a battery tab testing apparatus to meet the demands of practical use.
Disclosure of utility model
In view of the above, the present utility model aims at overcoming the drawbacks of the prior art, and it is a primary object of the present utility model to provide a testing device for a battery connecting piece, which automatically implements the lateral movement, longitudinal movement, vertical movement, rotation, clamping and testing of the battery connecting piece by using a lateral movement driving assembly, a longitudinal movement driving assembly, a vertical movement driving assembly, a rotation driving assembly, a clamping assembly and a testing assembly, thereby improving the testing efficiency and the testing precision; through adopting stop device to realize the spacing to the battery connection piece, prevent battery connection piece position deviation in the testing process, improved the test accuracy.
In order to achieve the above purpose, the present utility model adopts the following technical scheme:
The battery connecting piece testing equipment comprises a mounting frame, a transverse moving driving assembly, a longitudinal moving driving assembly, a vertical moving driving assembly, a rotary driving assembly, a clamping assembly and a testing assembly, wherein the longitudinal moving driving assembly is arranged at the output end of the transverse moving driving assembly, the vertical moving driving assembly is arranged at the output end of the transverse moving driving assembly, the rotary driving assembly is arranged at the output end of the vertical moving driving assembly, the clamping assembly is arranged at the output end of the rotary driving assembly, the testing assembly is arranged on the mounting frame, and the clamping assembly is movable towards the testing assembly; the test assembly has a stop device for limiting the battery tab.
As a preferred embodiment: the limiting device comprises a connecting block and a propping column, the propping column is fixedly arranged on the front side of the connecting block, and the propping column is movably propped against the battery connecting sheet.
As a preferred embodiment: the test assembly further comprises a telescopic driving cylinder, an installation sliding block and a test probe for detecting conductivity of the battery connecting sheet, wherein the telescopic driving cylinder is arranged on the installation frame, the installation sliding block is arranged at the shaft end of the telescopic driving cylinder, and the test probe is arranged on the installation sliding block.
As a preferred embodiment: the two test probes are respectively arranged on two sides of the installation sliding block, the connecting block is arranged at the middle position of the installation sliding block, and the abutting column is positioned between the two test probes.
As a preferred embodiment: the rotary driving assembly comprises a rotary driving cylinder and a rotary seat, the rotary driving cylinder is arranged at the output end of the vertical movement driving assembly, the rotary seat is arranged at the output end of the rotary driving cylinder, and the clamping assembly is fixedly arranged on the rotary seat.
As a preferred embodiment: the clamping assembly comprises a clamping cylinder, and the output end of the vertical movement driving assembly is provided with a material sensor for sensing whether a battery connecting piece exists on the clamping cylinder or not, and the material sensor faces the clamping cylinder.
As a preferred embodiment: the transverse moving driving assembly, the longitudinal moving driving assembly and the vertical moving driving assembly comprise a transferring driving cylinder and a moving sliding seat, and the moving sliding seat is arranged at the shaft end of the transferring driving cylinder.
Compared with the prior art, the utility model has obvious advantages and beneficial effects, in particular, according to the technical scheme, the transverse movement, the longitudinal movement, the vertical movement, the rotation, the clamping and the testing of the battery connecting sheet are realized automatically by adopting the transverse movement driving assembly, the longitudinal movement driving assembly, the vertical movement driving assembly, the rotation driving assembly, the clamping assembly and the testing assembly, so that the testing efficiency and the testing precision are improved; the rotation of the battery connecting piece is realized by adopting the rotary driving assembly, so that the position of the battery connecting piece is conveniently corresponding to the position of the testing assembly, the requirement of the battery connecting piece on position movement is met, and the operation is convenient; through adopting stop device to realize the spacing to the battery connection piece, prevent battery connection piece position deviation in the testing process, improved the test accuracy.
In order to more clearly illustrate the structural features and efficacy of the present utility model, a detailed description thereof will be given below with reference to the accompanying drawings and examples.
Drawings
FIG. 1 is a schematic perspective view of a battery tab testing apparatus according to the present utility model at a first viewing angle;
FIG. 2 is a schematic view of a second perspective of the battery tab testing apparatus of the present utility model;
FIG. 3 is a schematic perspective view of a rotary driving assembly and a clamping assembly according to the present utility model;
FIG. 4 is a schematic perspective view of the testing device of the present utility model.
The attached drawings are used for identifying and describing:
In the figure: 10. a mounting frame; 20. a traversing drive assembly; 30. a longitudinally moving drive assembly; 40. a vertical movement driving assembly; 50. a rotary drive assembly; 51. a rotary driving cylinder; 52. a rotating seat; 60. a clamping assembly; 61. a material sensor; 70. a testing component; 71. a telescopic driving cylinder; 72. installing a sliding block; 73. a test probe; 74. a limiting device; 741. a connecting block; 742. and (5) abutting the column.
Detailed Description
The utility model is as shown in fig. 1 to 4, a battery connecting piece testing device, comprising a mounting frame 10, a traversing driving component 20, a longitudinal moving driving component 30, a longitudinal moving driving component 40, a rotating driving component 50, a clamping component 60 and a testing component 70, wherein:
The vertical movement driving assembly 30 is installed at the output end of the horizontal movement driving assembly 20, the vertical movement driving assembly 40 is installed at the output end of the horizontal movement driving assembly 20, the rotation driving assembly 50 is installed at the output end of the vertical movement driving assembly 40, the material clamping assembly 60 is installed at the output end of the rotation driving assembly 50, the test assembly 70 is arranged on the mounting frame 10, and the material clamping assembly 60 is movably oriented to the test assembly 70; the test assembly 70 has a stop 74 for limiting the battery tab.
The clamping assembly 60 clamps the battery connecting sheet, and the transverse moving driving assembly 20, the longitudinal moving driving assembly 30, the vertical moving driving assembly 40 and the rotary driving assembly 50 respectively drive the clamping assembly 60 to move transversely, longitudinally, vertically and rotationally, and the clamping assembly 60 drives the battery connecting sheet to move and rotate so as to move the battery connecting sheet to a position corresponding to the testing assembly 70; the limiting device 74 of the test assembly 70 limits the battery connection piece, and the test assembly 70 tests the conductivity of the battery connection piece.
By adopting the transverse moving driving assembly 20, the longitudinal moving driving assembly 30, the vertical moving driving assembly 40, the rotary driving assembly 50, the clamping assembly 60 and the testing assembly 70, the transverse moving, the longitudinal moving, the vertical moving, the rotation, the clamping and the testing of the battery connecting sheet are automatically realized, and the testing efficiency and the testing precision are improved; the rotation of the battery connecting piece is realized by adopting the rotary driving assembly 50, so that the position of the battery connecting piece is conveniently corresponding to the position of the testing assembly 70, the requirement of the position movement of the battery connecting piece is met, and the operation is convenient; by adopting the limiting device 74 to limit the battery connecting piece, the position deviation of the battery connecting piece in the testing process is prevented, and the testing accuracy is improved.
The traverse drive assembly 20, the longitudinal drive assembly 30 and the vertical drive assembly 40 each include a transfer drive cylinder and a transfer carriage mounted to the axial end of the transfer drive cylinder.
The transfer driving cylinder drives the movable sliding seat to move; the position movement requirements of the nip assembly 60 are met by employing the traversing drive assembly 20, the longitudinal movement drive assembly 30, and the vertical movement drive assembly 40.
The rotary driving assembly 50 includes a rotary driving cylinder 51 and a rotary seat 52, the rotary driving cylinder 51 is mounted at an output end of the vertical movement driving assembly 40, the rotary seat 52 is mounted at an output end of the rotary driving cylinder 51, and the clamping assembly 60 is fixedly mounted on the rotary seat 52.
The rotary driving cylinder 51 drives the rotary seat 52 to rotate, and the rotary seat 52 rotates to drive the clamping assembly 60 and the battery connecting piece to rotate; the angular rotation requirements of the nip assembly 60 are met by employing a rotary drive assembly 50.
The clamping assembly 60 includes a clamping cylinder, and the output end of the vertical movement driving assembly 40 is provided with a material sensor 61 for sensing whether a battery connecting piece exists on the clamping cylinder, wherein the material sensor 61 faces the clamping cylinder.
The clamping cylinder clamps the battery connecting piece, and the material sensor 61 senses whether the battery connecting piece exists on the clamping cylinder, so that the dry running is prevented, and the cost is saved.
The limiting device 74 includes a connection block 741 and a tightening post 742, the tightening post 742 is fastened to the front side of the connection block 741, and the tightening post 742 is movably abutted against the battery connection piece.
The test assembly 70 further comprises a telescopic driving cylinder 71, a mounting slider 72 and a test probe 73 for detecting conductivity of the battery connecting sheet, wherein the telescopic driving cylinder 71 is arranged on the mounting frame 10, the mounting slider 72 is arranged at the shaft end of the telescopic driving cylinder 71, and the test probe 73 is arranged on the mounting slider 72.
The number of the test probes 73 is two, the two test probes 73 are respectively arranged at two sides of the mounting slide block 72, the connecting block 741 is arranged at the middle position of the mounting slide block 72, and the abutting column 742 is positioned between the two test probes 73.
When the telescopic driving cylinder 71 drives the connecting block 741 and the propping column 742 to extend forwards, the propping column 742 props the battery connecting piece on the clamping cylinder tightly, so that the propping limit of the battery connecting piece is realized, and the position deviation of the battery connecting piece in the test process is prevented; the test probe 73 arranged on the mounting slider 72 extends forwards to be in contact with the battery connecting sheet, the test probe 73 is connected with a tester, and the test probe 73 is used for testing the conductivity of the battery connecting sheet.
The application method and principle of the battery connecting piece testing equipment are as follows:
The clamping assembly clamps the battery connecting sheet, and the transverse moving driving assembly, the longitudinal moving driving assembly, the vertical moving driving assembly and the rotary driving assembly respectively drive the clamping assembly to transversely move, longitudinally move, vertically move and rotationally move, and the clamping assembly drives the battery connecting sheet to move and rotate so as to move the battery connecting sheet to the corresponding position of the testing assembly; the limiting device of the testing assembly limits the battery connecting sheet, and the testing assembly tests the conductivity of the battery connecting sheet.
The utility model has the design key points that the transverse movement, the longitudinal movement, the vertical movement, the rotation, the clamping and the test of the battery connecting sheet are automatically realized by adopting the transverse movement driving assembly, the longitudinal movement driving assembly, the vertical movement driving assembly, the rotation driving assembly, the clamping assembly and the test assembly, so that the test efficiency and the test precision are improved; the rotation of the battery connecting piece is realized by adopting the rotary driving assembly, so that the position of the battery connecting piece is conveniently corresponding to the position of the testing assembly, the requirement of the battery connecting piece on position movement is met, and the operation is convenient; through adopting stop device to realize the spacing to the battery connection piece, prevent battery connection piece position deviation in the testing process, improved the test accuracy.
The foregoing description is only a preferred embodiment of the present utility model, and is not intended to limit the technical scope of the present utility model, so any minor modifications, equivalent changes and modifications made to the above embodiments according to the technical principles of the present utility model still fall within the scope of the technical solutions of the present utility model.

Claims (7)

1. A battery connection piece test equipment, its characterized in that: the device comprises a mounting frame, a transverse moving driving assembly, a longitudinal moving driving assembly, a vertical moving driving assembly, a rotary driving assembly, a clamping assembly and a testing assembly, wherein the longitudinal moving driving assembly is arranged at the output end of the transverse moving driving assembly, the vertical moving driving assembly is arranged at the output end of the transverse moving driving assembly, the rotary driving assembly is arranged at the output end of the vertical moving driving assembly, the clamping assembly is arranged at the output end of the rotary driving assembly, the testing assembly is arranged on the mounting frame, and the clamping assembly is movable towards the testing assembly; the test assembly has a stop device for limiting the battery tab.
2. The battery tab testing apparatus of claim 1, wherein: the limiting device comprises a connecting block and a propping column, the propping column is fixedly arranged on the front side of the connecting block, and the propping column is movably propped against the battery connecting sheet.
3. The battery tab testing apparatus of claim 2, wherein: the test assembly further comprises a telescopic driving cylinder, an installation sliding block and a test probe for detecting conductivity of the battery connecting sheet, wherein the telescopic driving cylinder is arranged on the installation frame, the installation sliding block is arranged at the shaft end of the telescopic driving cylinder, and the test probe is arranged on the installation sliding block.
4. A battery tab testing apparatus according to claim 3, wherein: the two test probes are respectively arranged on two sides of the installation sliding block, the connecting block is arranged at the middle position of the installation sliding block, and the abutting column is positioned between the two test probes.
5. The battery tab testing apparatus of claim 1, wherein: the rotary driving assembly comprises a rotary driving cylinder and a rotary seat, the rotary driving cylinder is arranged at the output end of the vertical movement driving assembly, the rotary seat is arranged at the output end of the rotary driving cylinder, and the clamping assembly is fixedly arranged on the rotary seat.
6. The battery tab testing apparatus of claim 1, wherein: the clamping assembly comprises a clamping cylinder, and the output end of the vertical movement driving assembly is provided with a material sensor for sensing whether a battery connecting piece exists on the clamping cylinder or not, and the material sensor faces the clamping cylinder.
7. The battery tab testing apparatus of claim 1, wherein: the transverse moving driving assembly, the longitudinal moving driving assembly and the vertical moving driving assembly comprise a transferring driving cylinder and a moving sliding seat, and the moving sliding seat is arranged at the shaft end of the transferring driving cylinder.
CN202323099364.3U 2023-11-16 2023-11-16 Battery connection piece test equipment Active CN221631470U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202323099364.3U CN221631470U (en) 2023-11-16 2023-11-16 Battery connection piece test equipment

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202323099364.3U CN221631470U (en) 2023-11-16 2023-11-16 Battery connection piece test equipment

Publications (1)

Publication Number Publication Date
CN221631470U true CN221631470U (en) 2024-08-30

Family

ID=92489654

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202323099364.3U Active CN221631470U (en) 2023-11-16 2023-11-16 Battery connection piece test equipment

Country Status (1)

Country Link
CN (1) CN221631470U (en)

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