CN220509558U - Battery detection training platform - Google Patents

Battery detection training platform Download PDF

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Publication number
CN220509558U
CN220509558U CN202321961502.1U CN202321961502U CN220509558U CN 220509558 U CN220509558 U CN 220509558U CN 202321961502 U CN202321961502 U CN 202321961502U CN 220509558 U CN220509558 U CN 220509558U
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China
Prior art keywords
plug
battery
shell
semicircular
plugging
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CN202321961502.1U
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Chinese (zh)
Inventor
王健
马庆来
张可
张建潭
舒畅
李雪涛
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Crrc Yunshang Beijing Information Technology Co ltd
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Crrc Yunshang Beijing Information Technology Co ltd
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Abstract

The utility model discloses a battery detection training platform, which comprises a frame body, wherein a teaching board is arranged on the frame body, a battery body and a battery shell wrapping the battery body are arranged on the teaching board, two first plug mechanisms are symmetrically arranged on the battery shell, two second plug mechanisms are symmetrically arranged on the teaching board in a sliding fit mode, a first plug member is arranged on each first plug mechanism, a second plug member is arranged on each second plug mechanism, the first plug members are electrically connected with the anode and the cathode of the battery shell, a wire body is connected on each second plug member, and the first plug members and the second plug members are mutually plug-in matched through the mutual plug-in matched of the first plug members and the second plug members, so that stable circuit connection is carried out between a battery pack and detection equipment, the phenomenon that the connection position is separated does not occur, and the stability of battery detection is improved.

Description

Battery detection training platform
Technical Field
The utility model relates to the technical field of battery detection practical training platforms, in particular to a battery detection practical training platform.
Background
As is known, a battery test training platform is a virtual platform for training and practicing battery test techniques. The battery is required to pass through detection and test layer by layer when put into use, all processes are required to be detected when the detection and test are carried out, the battery is safe when in use, the battery detection training platform is an important learning tool for culturing battery detection related personnel, the students can carry out practical operation of battery detection in a virtual environment through the battery detection training platform, the skills and experience of the students are improved, the preparation is made for actual work, and when the battery detection is carried out on the battery detection training platform, the detection tool is required to be used for connecting with the anode and the cathode of the battery for a plurality of times so as to carry out detection operation on the battery.
The utility model provides a new energy automobile power battery management training platform, which comprises a power battery pack and a management platform for setting battery faults, wherein the management platform is electrically connected with the power battery pack, the power battery pack further comprises a rack, a tray is arranged on the rack, the tray is fixedly arranged on the rack, the power battery pack is arranged on the tray, a rack is arranged on one side of the rack, the management platform is arranged on the rack, the original battery pack and the management platform of the new energy automobile are arranged on the rack, and the original battery pack and the management platform are arranged in an open environment, so that the purpose of facilitating one-to-many teaching of a teacher is achieved, a function of improving teaching efficiency is achieved through a display screen of an external microcomputer, detection terminals which are integrally arranged on the management platform and electrically connected with each power battery pack are used for conveniently detecting universal meter data, and a purpose of conveniently moving trundles is achieved through setting movement of trundles at the bottom of the rack.
When the battery pack and the detection equipment on the battery detection training platform in the prior art are connected, the electric clamp is mostly adopted to be connected with the anode and the cathode of the battery pack, but the detection times of the battery pack are more, so that the clamping force of the electric clamp is insufficient after the electric clamp is used for a plurality of times, the connection position of the electric clamp and the battery pack is caused to fall off, and certain influence is caused to battery detection.
Disclosure of Invention
The utility model aims to provide a battery detection training platform so as to solve the problems in the prior art.
In order to achieve the above object, the present utility model provides the following technical solutions: the utility model provides a real platform of instructing of battery detection, includes the support body, be provided with the demonstrating board on the support body, be provided with battery body and parcel battery body's battery case on the demonstrating board, the symmetry is provided with two first grafting mechanisms on the battery case, installs two second grafting mechanisms with sliding fit's mode symmetry on the demonstrating board, each respectively be provided with a first plug connector on the first grafting mechanism, each respectively be provided with a second plug connector on the second grafting mechanism, and first plug connector is connected with battery case's positive and negative pole electricity, is connected with the line body on the second plug connector, and first plug connector and second plug connector are pegged graft the cooperation each other.
The first plugging mechanism comprises a plugging shell, wherein the plugging shell is arranged on the battery shell, the end part of the plugging shell is provided with a plugging block, one end of the plugging block, which is far away from the plugging shell, is in a sharp angle shape, a groove is formed in the plugging shell, an arc plate is arranged in the groove, the arc plate and the plugging block are combined into a semicircular groove, a semicircular plate is installed in the semicircular groove in a rotating fit manner, one end part of the semicircular plate, which is close to the plugging block, is positioned in the semicircular groove, the other end part of the semicircular plate, which is far away from the plugging block, is positioned outside the semicircular groove, a return rod is arranged on the outer wall of the cambered surface of the semicircular plate, penetrates through the arc plate and the plugging shell, the penetrating end of the return rod is positioned outside the plugging shell, and the return rod is connected with the inner wall of the groove through an elastic piece; the second plug-in mechanism and the first plug-in mechanism are of opposite structures, and the second plug-in mechanism and the first plug-in mechanism are different in that a plug-in shell on the second plug-in mechanism is mounted on the teaching board in a sliding fit mode, and the circular arc plate, the semicircular plate, the plug-in block, the return rod and the elastic piece on the second plug-in mechanism are opposite to the mounting direction on the first plug-in mechanism.
Above-mentioned, be provided with the display screen on the support body.
The utility model has the beneficial effects that: through the mutual grafting cooperation of first plug connector and second plug connector for carry out stable circuit connection between group battery and the check out test set, the phenomenon that the hookup location breaks away from can not take place, improved the stability that the battery detected.
Drawings
In order to more clearly illustrate the embodiments of the present application or the technical solutions in the prior art, the drawings that are needed in the embodiments will be briefly described below, and it is obvious that the drawings in the following description are only some embodiments described in the present utility model, and other drawings may be obtained according to these drawings for a person having ordinary skill in the art.
FIG. 1 is a schematic perspective view of the present utility model;
FIG. 2 is a schematic view of a partial cross-sectional structure of a first plugging mechanism and a second plugging mechanism according to the present utility model;
FIG. 3 is a schematic cross-sectional view of an elastic member in a stretched state according to the present utility model;
FIG. 4 is a schematic cross-sectional view showing the first and second plugging mechanisms of the present utility model in a completed state;
fig. 5 is a partial cut-away view of a first and second plugging mechanism according to the utility model.
Reference numerals illustrate:
1. a frame body; 2. a teaching board; 3. a battery body; 4. a battery case; 5. a first plug member; 6. a second plug member; 7. a wire body; 8. a plug-in shell; 9. a plug block; 10. a groove; 11. an arc plate; 12. a semicircular groove; 13. a semicircular plate; 14. a return rod; 15. an elastic member; 16. and a display screen.
Detailed Description
In order to make the technical scheme of the present utility model better understood by those skilled in the art, the present utility model will be further described in detail with reference to the accompanying drawings.
As shown in fig. 1 to 5, the battery detection training platform provided by the embodiment of the utility model comprises a frame body 1, wherein a teaching board 2 is arranged on the frame body 1, a battery body 3 and a battery shell 4 for wrapping the battery body 3 are arranged on the teaching board 2, two first plug-in mechanisms are symmetrically arranged on the battery shell 4, two second plug-in mechanisms are symmetrically arranged on the teaching board 2 in a sliding fit manner, a first plug-in connector 5 is respectively arranged on each first plug-in mechanism, a second plug-in connector 6 is respectively arranged on each second plug-in connector 5, the first plug-in connector 5 is electrically connected with the anode and the cathode of the battery shell 4, a wire body 7 is connected on the second plug-in connector 6, and the first plug-in connector 5 and the second plug-in connector 6 are mutually plug-in fit.
Specifically, the battery detection training platform is a virtual platform for training and practicing battery detection technology, battery detection is a key step before the battery is put into use, the battery detection training platform can cultivate the skill and experience of battery detection related personnel on the battery, the bottom end of the frame body 1 is provided with a self-locking caster device, flexible movement can be achieved, a colored spray drawing schematic diagram and a circuit diagram are drawn on the teaching board 2, the principle of a battery circuit is convenient for an operator to understand, in the prior art, when a battery pack on the battery detection training platform is connected with detection equipment, the positive pole and the negative pole of the battery pack are mainly connected by adopting an electric clamp, but due to the fact that the detection times of the battery pack are more, the clamping force of the electric clamp is insufficient after the battery pack is used for many times, the connection position of the electric clamp and the battery pack is caused to drop, and certain influence is caused on the battery detection.
Preferably, the first plugging mechanism comprises a plugging shell 8, the plugging shell 8 is arranged on the battery shell 4, a plugging block 9 is arranged at the end part of the plugging shell 8, one end of the plugging block 9, which is far away from the plugging shell 8, is in a sharp angle shape, a groove 10 is formed in the plugging shell 8, an arc plate 11 is arranged in the groove 10, a semicircular groove 12 is formed by combining the arc plate 11 and the plugging block 9, a semicircular plate 13 is arranged in the semicircular groove 12 in a rotating fit manner, one end part of the semicircular plate 13, which is close to the plugging block 9, is positioned in the semicircular groove 12, the other end part of the semicircular plate 13, which is far away from the plugging block 9, is positioned outside the semicircular groove 12, a return rod 14 is arranged on the outer wall of the cambered surface of the semicircular plate 13, the return rod 14 penetrates through the arc plate 11 and the plugging shell 8, the penetrating end of the return rod 14 is positioned outside the plugging shell 8, and the return rod 14 is connected with the inner wall of the groove 10 through an elastic piece 15; the second plugging mechanism and the first plugging mechanism are of opposite structures, and the second plugging mechanism and the first plugging mechanism are different in that a plugging shell 8 on the second plugging mechanism is mounted on the teaching board 2 in a sliding fit mode, and the circular arc plate 11, the semicircular plate 13, the plugging block 9, the return rod 14 and the elastic piece 15 on the second plugging mechanism are opposite to the mounting direction on the first plugging mechanism.
Specifically, when the plugging operation is performed between the first plugging machine and the second plugging member 6, the plugging housing 8 on the second plugging mechanism is pushed to slide towards one end of the plugging housing 8 close to the first plugging mechanism, during the process that the plugging housing 8 moves close to each other, (1) as one end of the semicircular plate 13 is located in the semicircular groove 12 and the other end is located outside the semicircular groove 12, the semicircular plate 13 abuts against a sharp corner portion of one end of the plugging block 9 away from the plugging housing 8, under the abutting action of the plugging block 9, the semicircular plate 13 on the first plugging mechanism and the second plugging mechanism rotates in the semicircular groove 12 until the two semicircular plates 13 are combined into an integral circular plate (that is, the straight line portions of the semicircular plates 13 abut against each other), and during the process that the semicircular plates 13 rotate in the semicircular groove 12, the semicircular plates 13 drive the return rod 14 to rotate, the return rod 14 pulls the elastic member 15 (the elastic member 15 is an element capable of performing telescopic reset, preferably a spring) to move, so that the elastic member 15 is in a stretched state (as shown in fig. 3); (2) When the semicircular plate 13 on the first plugging mechanism moves into the semicircular groove 12 on the second plugging mechanism, and at the same time, the semicircular plate 13 on the second plugging mechanism moves into the semicircular groove 12 on the first plugging mechanism, under the rebound action of the elastic piece 15, the elastic piece 15 drives the return rod 14 to rotate, the return rod 14 drives the semicircular plate 13 to rotate to an initial position in the semicircular groove 12 (namely, the position when the return rod 14 and the semicircular plate 13 do not rotate, namely, one end of the semicircular plate 13 is positioned in the semicircular groove 12 and the other end of the semicircular plate 13 is positioned outside the semicircular groove 12), as shown in fig. 2, so that the two semicircular plates 13 are combined into a whole and the circular plate combined by the two semicircular grooves 12 is positioned in the whole circular groove combined by the two semicircular grooves 12, the semicircular plate 13 and the semicircular groove 12 are connected in a rotating way, so that the plugging housing 8 on the first plugging mechanism and the plugging housing 8 on the second plugging mechanism are connected with each other (as shown in fig. 4), and at the moment, the first plugging piece 5 and the second plugging piece 6 are mutually plugged and matched, and the first plugging piece 5 and the second plugging piece 6 can be further prevented from being separated from the plugging after the plugging by the connection of the two plugging housings 8; (3) When two plug-in housings 8 are required to be separated from each other (namely, when the first plug-in connector 5 and the second plug-in connector 6 are separated from each other), an operator rotates the return rod 14 to drive the semicircular plates 13 to rotate, so that the straight line ends of the two semicircular plates 13 are parallel to the straight line ends of the semicircular grooves 12 (namely, the semicircular plates 13 and the semicircular grooves 12 on the same plug-in mechanism are mutually overlapped), the two ends of the semicircular plates 13 and the two ends of the semicircular grooves 12 are mutually overlapped), and the operator pushes the plug-in housing 8 on the second plug-in mechanism to slide towards one end far away from the plug-in housing 8 on the first plug-in mechanism, so that the plug-in housings 8 are separated from each other, and convenience is provided for next battery detection.
Further, the display screen 16 is disposed on the frame body 1, specifically, the result of the detection device detecting the battery can be displayed through the display screen 16, so that an operator can know the detection result of the battery conveniently.
While certain exemplary embodiments of the present utility model have been described above by way of illustration only, it will be apparent to those of ordinary skill in the art that modifications may be made to the described embodiments in various different ways without departing from the spirit and scope of the utility model. Accordingly, the drawings and description are to be regarded as illustrative in nature and not as restrictive of the scope of the utility model, which is defined by the appended claims.

Claims (3)

1. The utility model provides a real standard platform of battery detection, includes the support body, its characterized in that, be provided with the demonstrating board on the support body, be provided with battery body and parcel battery body's battery case on the demonstrating board, the symmetry is provided with two first grafting mechanisms on the battery case, installs two second grafting mechanisms with sliding fit's mode symmetry on the demonstrating board, each respectively be provided with a first plug connector on the first grafting mechanism, each respectively be provided with a second plug connector on the second grafting mechanism, and first plug connector is connected with battery case's positive negative pole electricity, is connected with the cable body on the second plug connector, and first plug connector and second plug connector are pegged graft the cooperation each other.
2. The battery detection training platform according to claim 1, wherein the first plug-in mechanism comprises a plug-in shell, the plug-in shell is arranged on the battery shell, a plug-in block is arranged at the end part of the plug-in shell, one end of the plug-in block, which is far away from the plug-in shell, is in a sharp angle shape, a groove is formed in the plug-in shell, an arc plate is arranged in the groove, the arc plate and the plug-in block are combined into a semicircular groove, a semicircular plate is arranged in the semicircular groove in a rotating fit manner, one end part of the semicircular plate, which is close to the plug-in block, is positioned in the semicircular groove, the other end part of the semicircular plate, which is far away from the plug-in block, is positioned outside the semicircular groove, a return rod is arranged on the outer arc surface wall of the semicircular plate, the return rod penetrates through the arc plate and the plug-in shell, and the penetrating end is positioned outside the plug-in shell, and the return rod and the inner wall of the groove are connected through an elastic piece; the second plug-in mechanism and the first plug-in mechanism are of opposite structures, and the second plug-in mechanism and the first plug-in mechanism are different in that a plug-in shell on the second plug-in mechanism is mounted on the teaching board in a sliding fit mode, and the circular arc plate, the semicircular plate, the plug-in block, the return rod and the elastic piece on the second plug-in mechanism are opposite to the mounting direction on the first plug-in mechanism.
3. The battery detection training platform of claim 1, wherein the frame is provided with a display screen.
CN202321961502.1U 2023-07-25 2023-07-25 Battery detection training platform Active CN220509558U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202321961502.1U CN220509558U (en) 2023-07-25 2023-07-25 Battery detection training platform

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202321961502.1U CN220509558U (en) 2023-07-25 2023-07-25 Battery detection training platform

Publications (1)

Publication Number Publication Date
CN220509558U true CN220509558U (en) 2024-02-20

Family

ID=89869375

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202321961502.1U Active CN220509558U (en) 2023-07-25 2023-07-25 Battery detection training platform

Country Status (1)

Country Link
CN (1) CN220509558U (en)

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