Battery testing equipment

By using automated wire sorting and positioning components to organize battery leads, the problem of low testing efficiency caused by manual sorting is solved, and efficient and accurate battery testing is achieved.

CN223664659UActive Publication Date: 2025-12-12SHENZHEN HIGHPOWER TECH CO LTD
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Patent Information

Application Number
CN202423214701.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-25
Publication Date
2025-12-12
Estimated Expiration
2034-12-25

AI Technical Summary

Technical Problem

Existing battery testing equipment requires manual untangling of the tangled leads before testing, resulting in low testing efficiency.

Method used

A battery testing device was designed, comprising a wire management table, a wire management component, and a testing component. The automated wire management and positioning components organize the battery leads, arranging and extending them in a preset direction to ensure that the test end is located in a preset position.

Benefits of technology

Lead wire arrangement can be achieved without manual operation, which improves testing efficiency and accuracy and reduces labor costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides battery test equipment, which comprises a workbench, a wire arrangement table, a wire arrangement assembly and a plurality of test assemblies. The wire arranging table is arranged on the workbench and provided with a containing groove with an opening in one side, the containing groove is used for containing a battery, and a lead extends out of the opening; the wire arranging assembly comprises a wire arranging head, a first driving part and a second driving part, and a wire arranging groove is formed in the upper end of the wire arranging head and used for allowing a lead to penetrate through; the first driving piece is connected with the wire arranging head, the second driving piece is connected with the first driving piece, each testing assembly comprises two testing clamping hands, and the two testing clamping hands can be opened and closed in the vertical direction so as to be switched between a testing state of clamping a lead and a to-be-tested state of separating from the lead. Therefore, the battery testing equipment provided by the embodiment of the utility model can be used for automatically carding the lead wires of the battery, so that the testing efficiency can be greatly improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to battery detection technical field especially relates to a battery testing equipment. BACKGROUND

[0002] Lithium ion battery pack has energy density high, small, light, strong adaptability, can charge and discharge times and the use life is relatively long etc. Advantage, make it in daily life is widely applied. However due to the inherent characteristics of lithium ion cell, make it in actual use there is a little unsafe factor, such as excessive charge and discharge makes lithium ion battery pack expansion, heating etc. before the lithium ion battery pack factory, need to utilize battery testing equipment to it carries out testing.

[0003] In order to facilitate downstream enterprise to assemble, the battery usually has the lead, because the lead has certain flexibility, usually will be stirred together in the battery assembly process.

[0004] The test equipment in the prior art needs to arrange the lead stirred together before testing the battery, so that the lead is arranged according to the preset direction and extends according to the preset direction to facilitate the subsequent test equipment to detect the battery.

[0005] But manual arrangement often wastes a lot of time, greatly reduces the test efficiency of the test equipment. UTILITY MODEL CONTENTS

[0006] In order to solve the problem of low test efficiency of the test equipment in the prior art, the utility model provides a battery testing equipment.

[0007] The battery tested by the battery testing equipment of the utility model embodiment has a lead, and the battery testing equipment comprises:

[0008] A workbench,

[0009] A wire arranging table is arranged on the workbench, the wire arranging table has a containing groove with one side opening, the containing groove is used for containing the battery, and the lead extends out of the opening;

[0010] A wire arranging assembly comprises a wire arranging head, a first driving member and a second driving member,

[0011] The upper end of the wire arranging head is provided with a wire arranging groove for the lead to pass through;

[0012] The first driving member is connected with the wire arranging head to drive the wire arranging head to move in the up-down direction;

[0013] The second driving member is connected with the first driving member to drive the first driving member to move in the front-back direction, and in turn drive the wire arranging head to move in the front-back direction.

[0014] a plurality of test assemblies, the test assemblies comprising at least two test clamps, each of the test clamps being openable and closable in a vertical direction to switch between a test state of clamping the lead and a test preparation state of disengaging from the lead.

[0015] The test assembly of the embodiment of the utility model can arrange the lead of the battery before testing, so that the lead of the battery can be arranged and extended according to the preset direction, the test end of the lead of the battery can be located at the preset position, and then the test end of the lead of the battery can be clamped by the test clamp.

[0016] On the one hand, the lead of the battery can be arranged without manual operation, so that the labor cost can be greatly reduced and the test efficiency of the battery can be improved.

[0017] On the other hand, the test end of the lead of the battery can be accurately located at the preset position, so that the test end of the lead of the battery can be clamped by the test clamp, and the test precision can be greatly improved.

[0018] Therefore, the battery test equipment of the embodiment of the utility model can automatically comb the lead of the battery, and then the test efficiency can be greatly improved.

[0019] In some embodiments, the wire arrangement table comprises:

[0020] a carrier,

[0021] a first positioning assembly provided on the carrier, the first positioning assembly comprising a first positioning member, the first positioning member having a first positioning surface;

[0022] a second positioning assembly provided on the carrier, the second positioning assembly comprising a second positioning member, the second positioning member having a second positioning surface;

[0023] a third positioning assembly provided on the carrier, the third positioning assembly comprising a third positioning member, the third positioning member having a third positioning surface;

[0024] The first positioning surface, the second positioning surface and the third positioning surface are sequentially connected to define the accommodating groove provided with an opening on one side.

[0025] In some embodiments,

[0026] The first positioning assembly further comprises a first positioning driving member connected with the first positioning member to drive the first positioning member to move in the left-right direction;

[0027] The second positioning assembly further comprises a second positioning driving member connected with the second positioning member to drive the second positioning member to move in the front-rear direction.

[0028] The third positioning assembly further comprises a third positioning driving member connected with the third positioning member to drive the third positioning member to move in the left-right direction.

[0029] In some embodiments, the battery testing device further comprises a first conveying assembly, a second conveying assembly and a transfer assembly,

[0030] The first conveying assembly is located upstream of the wire arranging table, and is used to convey the battery from the outside to the feeding position.

[0031] The transfer assembly is used to convey the battery from the feeding position to the containing groove and convey the battery from the containing groove to the discharging position.

[0032] The second conveying assembly is located downstream of the wire arranging table, and is used to convey the battery from the discharging position to the outside.

[0033] In some embodiments, the first conveying assembly and the second conveying assembly are both conveying belt assemblies.

[0034] In some embodiments, the transfer assembly comprises:

[0035] A carrier plate, wherein the carrier plate is provided with a first material moving assembly and a second material moving assembly arranged at intervals in the left-right direction,

[0036] A transfer driving member connected with the carrier plate to drive the carrier plate to move between a first position and a second position.

[0037] When the carrier plate is at the first position, the first material moving assembly sucks the battery at the feeding position, and the second material moving assembly sucks the battery at the containing groove.

[0038] When the carrier plate is at the second position, the first material moving assembly places the battery in the containing groove, and the second material moving assembly places the battery in the containing groove.

[0039] In some embodiments, the first material moving assembly comprises a first suction disc assembly and a first suction disc driving member, the first suction disc assembly is connected with the first suction disc driving member, and the first suction disc driving member drives the first suction disc assembly to move in the up-down direction.

[0040] The second material moving assembly comprises a second suction disc assembly and a second suction disc driving element, the second suction disc assembly is connected with the second suction disc driving element, and the second suction disc driving element drives the second suction disc assembly to move in the up-down direction.

[0041] In some embodiments, the first material moving assembly further comprises a first connecting element, the first connecting element comprises a first horizontal segment and a first vertical segment, the first horizontal segment is connected with the moving segment of the first suction disc driving element, the suction disc assembly is connected with the horizontal segment, and the first suction disc driving element is provided with a first sliding groove corresponding to the position of the first vertical segment, and the first vertical segment is slidingly arranged in the first sliding groove.

[0042] The second material moving assembly further comprises a second connecting element, the second connecting element comprises a second horizontal segment and a second vertical segment, the second horizontal segment is connected with the moving segment of the second suction disc driving element, the suction disc assembly is connected with the horizontal segment, the second suction disc driving element is provided with a second sliding groove corresponding to the position of the second vertical segment, and the second vertical segment is slidingly arranged in the second sliding groove.

[0043] In some embodiments, the transfer assembly further comprises a support frame arranged on the workbench, the transfer driving element is arranged on the support frame, and the carrier plate is slidingly connected with the support frame.

[0044] In the left-right direction, the support frame is provided with a first limiting element and a second limiting element at intervals, and the carrier plate is provided with a stop block which can abut against the first limiting element and the second limiting element respectively.

[0045] When the carrier plate is in the first position, the stop block abuts against the first limiting element.

[0046] When the carrier plate is in the second position, the stop block abuts against the second limiting element.

[0047] In some embodiments, the test assembly further comprises a test system, and the test clamping hand is connected with the test system. BRIEF DESCRIPTION OF DRAWINGS

[0048] In order to more clearly illustrate the technical scheme of the embodiments of the present application, the following will briefly introduce the drawings needed to be used in the description of the embodiments of the present application. Obviously, the drawings in the following description are only some embodiments of the present application, and for those skilled in the art, other drawings can also be obtained without creative labor on the basis of these drawings.

[0049] Figure 1 It is a structural schematic diagram of the battery test equipment of the embodiments of the present application.

[0050] Figure 2It is the partial enlarged view of the battery test equipment of the utility model embodiment;

[0051] Figure 3 It is Figure 2 The enlarged view of A part in the middle.

[0052] In the figure,

[0053] 1, workbench;

[0054] 2, wire arrangement table;

[0055] 201, first positioning assembly;2011, first positioning piece;20111, first positioning surface;2012, first positioning driving piece;

[0056] 202, second positioning assembly;2021, second positioning piece;20211, second positioning surface;2022, second positioning driving piece;

[0057] 203, third positioning assembly;2031, third positioning piece;20311, third positioning surface;2032, third positioning driving piece;

[0058] 204, containing groove;

[0059] 3, wire arrangement assembly;301, first driving piece;302, second driving piece;303, wire arrangement head;3031, wire arrangement groove;

[0060] 4, test assembly;401, test clamping hand;402, test system;

[0061] 5, first conveying assembly;501, feeding position;

[0062] 6, second conveying assembly;601, discharging position;

[0063] 7, transfer assembly;701, carrier plate;702, transfer driving piece;

[0064] 8, first material moving assembly;801, first suction disc assembly;802, first suction disc driving piece;803, first connecting piece;8031, first horizontal section;8032, first vertical section;

[0065] 9, second material moving assembly;901, second suction disc assembly;902, second suction disc driving piece;903, second connecting piece;9031, second horizontal section;9032, second vertical section;

[0066] 10, support frame;11, first limiting piece;12, second limiting piece;13, stopper. DETAILED DESCRIPTION

[0067] In order to make the technical problems, technical schemes and beneficial effects solved by the utility model clearer and more apparent, the utility model will be further described in detail below in combination with the drawings and embodiments.

[0068] In the description of the utility model, it is to be understood that the orientation or positional relationship indicated by the terms "longitudinal", "radial", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer" and the like is the orientation or positional relationship shown in the drawings, and is only for the convenience of describing the utility model and simplifying the description, and does not indicate or imply that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation on the utility model. In the description of the utility model, the meaning of "a plurality of" is two or more, unless otherwise specified.

[0069] In the description of the utility model, it should be explained that, unless otherwise specified and limited, the terms "mounting", "connection", "connection" should be understood broadly, for example, it can be fixed connection, or detachable connection, or integrally connected, it can be mechanical connection, or electrical connection, it can be directly connected, or indirectly connected through an intermediate medium, it can be internal glue injection of two elements. For ordinary skilled in the art, the specific meaning of the above terms in the utility model can be understood according to the specific circumstances.

[0070] The utility model is described below in combination with the drawings Figures 1-3 The battery test equipment of the utility model embodiment is described.

[0071] The battery test equipment of the utility model embodiment comprises a workbench 1, a wire arrangement table 2, a wire arrangement assembly 3 and a plurality of test assemblies 4.

[0072] As Figure 1 The wire arrangement table 2 is arranged on the workbench 1, the wire arrangement table 2 has a containing groove 204 with one side opening, the containing groove 204 is used for containing the battery, and the lead wire is stretched out from the opening;

[0073] The wire arrangement assembly 3 comprises a wire arrangement head 303, a first driving member 301 and a second driving member 302,

[0074] The upper end of the wire arrangement head 303 is provided with a wire arrangement groove 3031, and the wire arrangement groove 3031 is used for the lead wire to pass through;

[0075] The first driving member 301 is connected with the wire arrangement head 303, so as to drive the wire arrangement head 303 to move in the up-down direction;

[0076] The second driving member 302 is connected with the first driving member 301, so as to drive the first driving member 301 to move in the front-rear direction, and then drive the wire arranging head 303 to move in the front-rear direction.

[0077] The plurality of test assemblies 4 each include at least two test clamps 401, each of which is openable and closable in the up-down direction to switch between a test state of clamping the lead wire and a test standby state of being separated from the lead wire.

[0078] The test process of the battery test equipment according to the embodiment of the utility model is described below.

[0079] After the battery is placed in the accommodating groove 204, the first driving member 301 drives the wire arranging head 303 to move upward, so that the wire arranging head 303 passes through the lead wire of the battery, that is, the lead wire of the battery passes through the wire slot, and then the second driving member 302 drives the first driving member 301 and the wire arranging head 303 to move forward to comb the lead wire of the battery, so that the lead wire of the battery is arranged in a preset manner and extends in a preset direction, and finally the end part of the lead wire of the battery can be in a test position, the test assembly 4 can be switched to the test state to clamp the test end part of the lead wire of the battery for testing, after the test is completed, the test assembly 4 is switched to the test standby state, and then the second driving member 302 drives the first driving member 301 and the wire arranging head 303 to move backward, and then the first driving member 301 drives the wire arranging head 303 to move downward to complete the test.

[0080] The test assembly 4 according to the embodiment of the utility model can arrange the lead wire of the battery before testing, so that the lead wire of the battery can be arranged in a preset direction and extend in a preset direction, the test end of the lead wire of the battery can be located in a preset position, and then the test clamp 401 can clamp the test end of the lead wire of the battery.

[0081] On the one hand, the lead wire of the battery can be arranged without manual operation, which can greatly reduce the labor cost and improve the test efficiency of the battery;

[0082] On the other hand, the test end of the lead wire of the battery can be accurately located in a preset position, and then the test clamp 401 can clamp the test end of the lead wire of the battery, which can greatly improve the test precision.

[0083] Therefore, the battery test equipment according to the embodiment of the utility model can automatically comb the lead wire of the battery, and then greatly improve the test efficiency.

[0084] In some embodiments, the wire arranging table 2 includes a carrier, a first positioning assembly 201, a second positioning assembly 202, a third positioning assembly 203 and a fourth positioning assembly.

[0085] The first positioning assembly 201 is arranged on the carrier, and the first positioning assembly 201 comprises a first positioning member 2011, and the first positioning member 2011 has a first positioning surface 20111.

[0086] The second positioning assembly 202 is arranged on the carrier, and the second positioning assembly 202 comprises a second positioning member 2021, and the second positioning member 2021 has a second positioning surface 20211.

[0087] The third positioning assembly 203 is arranged on the carrier, and the third positioning assembly 203 comprises a third positioning member 2031, and the third positioning member 2031 has a third positioning surface 20311.

[0088] The first positioning surface 20111, the second positioning surface 20211 and the third positioning surface 20311 are sequentially connected to define a containing groove 204 provided with an opening on one side.

[0089] As shown in the figure, Figure 3 The first positioning surface 20111 is located on the left side of the containing groove 204, the second positioning surface 20211 is located on the rear side of the containing groove 204, the third positioning surface 20311 is located on the right side of the containing groove 204, and the opening is arranged on the front side of the containing groove 204, so as to facilitate the lead of the battery to extend out.

[0090] Further, the first positioning assembly 201 further comprises a first positioning driving member 2012, the first positioning driving member 2012 is connected with the first positioning member 2011 to drive the first positioning member 2011 to move in the left-right direction, and the first positioning driving member 2012 can be a telescopic cylinder to drive the first positioning member 2011 to move in the left-right direction.

[0091] The second positioning assembly 202 further comprises a second positioning driving member 2022, the second positioning driving member 2022 is connected with the second positioning member 2021 to drive the second positioning member 2021 to move in the front-rear direction, and the second positioning driving member 2022 can be a telescopic cylinder to drive the second positioning member 2021 to move in the front-rear direction.

[0092] The third positioning assembly 203 further comprises a third positioning driving member 2032, the third positioning driving member 2032 is connected with the third positioning member 2031 to drive the third positioning member 2031 to move in the left-right direction, and the third positioning driving member 2032 can be a telescopic cylinder to drive the third positioning member 2031 to move in the left-right direction.

[0093] As shown in the figure, Figure 3As shown, when the battery is placed on the carrier, the first positioning drive 2012 drives the first positioning component 2011 to move to the right and abut against the left end face of the battery, the second positioning drive 2022 drives the second positioning component 2021 to move forward and abut against the rear end face of the battery, and the third positioning drive 2032 drives the third positioning component 2031 to move to the left and abut against the right end face of the battery, thereby achieving battery positioning.

[0094] When the test is completed and the battery needs to be removed from the carrier plate 701, the first positioning drive 2012 drives the first positioning component 2011 to move to the left and disengage from the left end face of the battery, the second positioning drive 2022 drives the second positioning component 2021 to move backward and disengage from the rear end face of the battery, and the third positioning drive 2032 drives the third positioning component 2031 to move to the right and disengage from the right end face of the battery. This releases the positioning of the battery and makes it easier to remove the battery from the carrier plate 701.

[0095] The battery testing equipment of this utility model embodiment improves the convenience of positioning the battery during the testing process by setting a first positioning drive 2012, a second positioning drive 2022 and a third positioning drive 2032.

[0096] In some embodiments, the battery testing equipment of this utility model further includes a first conveying component 5, a second conveying component 6, and a transfer component 7.

[0097] The first conveying assembly 5 is located upstream of the cable management table 2. The first conveying assembly 5 is used to transfer batteries from the outside to the feeding position 501, such as... Figure 1 As shown, the first conveying component 5 is a conveyor belt component, and the conveying direction of the conveyor belt is from left to right. The feed position 501 can be located at the end area of ​​the conveying direction of the conveyor belt component.

[0098] The transfer assembly 7 is used to transfer the battery from the feed position 501 to the receiving tank 204, and from the receiving tank 204 to the discharge position 601;

[0099] The second conveying assembly 6 is located downstream of the cable handling table 2. The second conveying assembly 6 is used to transfer batteries from the discharge position 601 to the outside, such as... Figure 1 As shown, the second conveying component 6 is also a conveyor belt component, and the conveying direction of the conveyor belt is from left to right. The discharge position 601 can be set at the beginning area of ​​the conveying direction of the conveyor belt component.

[0100] In some embodiments, the transfer component 7 includes a carrier plate 701 and a transfer drive 702.

[0101] like Figure 2 As shown, the carrier plate 701 is provided with a first material transfer assembly 8 and a second material transfer assembly 9 arranged at intervals in the left-right direction.

[0102] The transfer driving member 702 is connected with the carrier plate 701 to drive the carrier plate 701 to move between the first position and the second position, and the transfer driving member 702 can be a telescopic cylinder to drive the carrier plate 701 to move between the first position and the second position;

[0103] When the carrier plate 701 is at the first position, the first material moving assembly 8 sucks the battery at the feeding position 501, and the second material moving assembly 9 sucks the battery at the containing groove 204;

[0104] When the carrier plate 701 is at the second position, the first material moving assembly 8 places the battery in the containing groove 204, and the second material moving assembly 9 places the battery in the containing groove 204.

[0105] As shown in Figure 2 the first material moving assembly 8 comprises a first suction disc assembly 801 and a first suction disc driving member 802, the first suction disc assembly 801 is connected with the first suction disc driving member 802, and the first suction disc driving member 802 drives the first suction disc assembly to move in the up-down direction;

[0106] As shown in Figure 2 the second material moving assembly 9 comprises a second suction disc assembly 901 and a second suction disc driving member 902, the second suction disc assembly 901 is connected with the second suction disc driving member 902, and the second suction disc driving member 902 drives the second suction disc assembly to move in the up-down direction.

[0107] The conveying process of the battery of the embodiment of the utility model is described below.

[0108] When the battery in the containing groove 204 is tested, the transfer driving member 702 drives the carrier plate 701 to move to the first position, at this time, the first material moving assembly 8 is located above the feeding position 501, the second material moving assembly 9 is located above the containing groove 204, the first suction disc driving member 802 drives the first suction disc assembly 801 to move downward to the feeding position 501 to suck the battery at the feeding position 501, and at the same time, the second suction disc driving member 902 drives the second suction disc assembly 901 to move downward to the containing groove 204 to suck the battery in the containing groove 204.

[0109] The first suction disc driving member 802 drives the first suction disc assembly 801 with the battery to move upward, and the second suction disc driving member 902 drives the second suction disc assembly 901 with the battery to move upward.

[0110] The transfer driver 702 drives the carrier plate 701 to move to the second position, at this time, the first material moving assembly 8 is located above the containing groove 204, the second material moving assembly 9 is located above the discharging position 601, the first suction disc driver 802 drives the first suction disc assembly 801 to move downwards to the containing groove 204 to place the battery into the containing groove 204, at the same time, the second suction disc driver 902 drives the second suction disc assembly 901 to move downwards to the containing groove 204 to place the battery into the discharging position 601.

[0111] When the test groove in the containing groove 204 is tested, the above process is repeated.

[0112] In some embodiments, the first material moving assembly 8 further comprises a first connecting piece 803, the first connecting piece 803 comprises a first horizontal section 8031 and a first vertical section 8032, the first horizontal section 8031 is connected with the moving section of the first suction disc driver 802, the suction disc assembly is connected with the horizontal section, the first suction disc driver 802 is provided with a first sliding groove corresponding to the position of the first vertical section 8032, and the first vertical section 8032 is slidingly arranged in the first sliding groove.

[0113] The second material moving assembly 9 further comprises a second connecting piece 903, the second connecting piece 903 comprises a second horizontal section 9031 and a second vertical section 9032, the second horizontal section 9031 is connected with the moving section of the second suction disc driver 902, the suction disc assembly is connected with the horizontal section, the second suction disc driver 902 is provided with a second sliding groove corresponding to the position of the second vertical section 9032, and the second vertical section 9032 is slidingly arranged in the second sliding groove.

[0114] The battery testing equipment of the utility model can guide the first suction disc assembly 801 to move in the up-down direction when the first suction disc driver 802 drives the first suction disc assembly 801 to move, avoids the first suction disc assembly 801 from deviating in the moving process, simultaneously sets the second connecting piece 903, can guide the second suction disc assembly 901 to move in the up-down direction when the second suction disc driver 902 drives the second suction disc assembly 901 to move, avoids the second suction disc assembly 901 from deviating in the moving process, thereby, the accuracy of the battery testing equipment of the utility model can be greatly improved.

[0115] In some embodiments, the transfer assembly 7 further comprises a support frame 10 arranged on the workbench 1, and the transfer driver 702 is arranged on the support frame 10, and the carrier plate 701 is slidingly connected with the support frame 10.

[0116] In the left-right direction, the first limiting piece 11 and the second limiting piece 12 are arranged on the support frame 10 at intervals, and the stop block 13, which can abut against the first limiting piece 11 and the second limiting piece 12 respectively, is arranged on the carrier plate 701.

[0117] When the carrier plate 701 is in the first position, the stopper 13 abuts against the first limiting piece 11.

[0118] When the carrier plate 701 is in the second position, the stopper 13 abuts against the second limiting piece 12.

[0119] The battery testing device of the embodiment of the utility model can position the carrier plate 701 in the first position and the second position respectively by setting the first limiting piece 11 and the second limiting piece 12, and further improve the precision of the battery testing device of the embodiment of the utility model.

[0120] In some embodiments, the battery testing device of the embodiment of the utility model further comprises a testing system 402, and the testing assembly 4 is connected with the testing system 402.

[0121] It can be understood that the testing system 402 can detect the battery, the testing assembly 4 is connected with the testing system 402, so that the testing system 402 can be connected with the lead of the battery through the testing clamp hand 401, and then the testing system 402 can detect the battery, and the testing system 402 is prior art, which will not be described here.

[0122] The above-described embodiments are only used to illustrate the technical solutions of the utility model, rather than limit them; although the utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that the technical solutions recorded in the foregoing embodiments can still be modified, or some technical features can be replaced equivalently; and these modifications or replacements do not make the essence of the corresponding technical solutions deviate from the spirit and scope of the technical solutions of the embodiments of the utility model, and should be included in the protection scope of the utility model.

Claims

1. A battery testing device, wherein the battery has leads, characterized in that, include: Workbench (1) A cable management table (2) is provided on the workbench (1). The cable management table (2) has a receiving groove (204) with an opening on one side. The receiving groove (204) is used to hold the battery, and the lead wire extends out from the opening. The cable management assembly (3) includes a cable management head (303), a first driving member (301), and a second driving member (302). The upper end of the cable management head (303) is provided with a cable management groove (3031), which is used for the lead wire to pass through; The first driving member (301) is connected to the cable management head (303) to drive the cable management head (303) to move in the vertical direction; The second driving member (302) is connected to the first driving member (301) to drive the first driving member (301) to move in the front-back direction, thereby driving the cable head (303) to move in the front-back direction; Multiple test components (4), each test component (4) including at least two test grippers (401), each test gripper (401) being openable and closed in the vertical direction to switch between a test state holding the lead and a test state detached from the lead.

2. The battery testing equipment according to claim 1, characterized in that, The cable management table (2) includes: carrier A first positioning component (201) is disposed on the carrier. The first positioning component (201) includes a first positioning element (2011) and the first positioning element (2011) has a first positioning surface (20111). The second positioning component (202) is disposed on the carrier and includes a second positioning element (2021) having a second positioning surface (20211). The third positioning component (203) is disposed on the carrier and includes a third positioning element (2031) having a third positioning surface (20311). The first positioning surface (20111), the second positioning surface (20211), and the third positioning surface (20311) are connected in sequence to define the receiving groove (204) with an opening on one side.

3. The battery testing equipment according to claim 2, characterized in that, The first positioning component (201) further includes a first positioning drive (2012), which is connected to the first positioning component (2011) to drive the first positioning component (2011) to move in the left and right directions; The second positioning component (202) further includes a second positioning drive (2022), which is connected to the second positioning component (2021) to drive the second positioning component (2021) to move in the front-back direction; The third positioning component (203) further includes a third positioning drive (2032), which is connected to the third positioning component (2031) to drive the third positioning component (2031) to move in the left and right directions.

4. The battery testing equipment according to claim 1, characterized in that, It also includes a first transmission component (5), a second transmission component (6), and a transfer component (7). The first conveying component (5) is located upstream of the cable management table (2), and the first conveying component (5) is used to transfer the battery from the outside to the feeding position (501). The transfer assembly (7) is used to transfer the battery from the feed position (501) to the receiving tank (204) and to transfer the battery from the receiving tank (204) to the discharge position (601). The second conveying component (6) is located downstream of the cable management table (2) and is used to transfer the battery from the discharge position (601) to the outside.

5. The battery testing equipment according to claim 4, characterized in that, Both the first conveyor component (5) and the second conveyor component (6) are conveyor belt components.

6. The battery testing equipment according to claim 4, characterized in that, The transfer component (7) includes: The carrier plate (701) is provided with a first material transfer component (8) and a second material transfer component (9) that are spaced apart in the left and right directions. A transfer drive (702) is connected to the carrier plate (701) to drive the carrier plate (701) to move between a first position and a second position; When the carrier plate (701) is in the first position, the first transfer component (8) picks up the battery located at the feed position (501), and the second transfer component (9) picks up the battery located at the receiving groove (204); When the carrier plate (701) is in the second position, the first transfer assembly (8) places the battery into the receiving groove (204), and the second transfer assembly (9) places the battery into the receiving groove (204).

7. The battery testing equipment according to claim 6, characterized in that, The first material transfer component (8) includes a first suction cup component (801) and a first suction cup drive component (802). The first suction cup component (801) is connected to the first suction cup drive component (802), and the first suction cup drive component (802) drives the first suction cup component to move in the vertical direction. The second material transfer component (9) includes a second suction cup component (901) and a second suction cup drive component (902). The second suction cup component (901) is connected to the second suction cup drive component (902), and the second suction cup drive component (902) drives the second suction cup component to move in the up and down direction.

8. The battery testing equipment according to claim 7, characterized in that, The first material transfer assembly (8) further includes a first connector (803), the first connector (803) includes a first horizontal section (8031) and a first vertical section (8032), the first horizontal section (8031) is connected to the moving section of the first suction cup drive (802), the suction cup assembly is connected to the horizontal section, the first suction cup drive (802) is provided with a first groove corresponding to the position of the first vertical section (8032), and the first vertical section (8032) is slidably disposed in the first groove; The second material transfer assembly (9) further includes a second connector (903), which includes a second horizontal section (9031) and a second vertical section (9032). The second horizontal section (9031) is connected to the moving section of the second suction cup drive (902). The suction cup assembly is connected to the horizontal section. The second suction cup drive (902) is provided with a second groove corresponding to the position of the second vertical section (9032). The second vertical section (9032) is slidably disposed in the second groove.

9. The battery testing equipment according to claim 8, characterized in that, The transfer assembly (7) further includes a support frame (10) disposed on the worktable (1), the transfer drive (702) is disposed on the support frame (10), and the carrier plate (701) is slidably connected to the support frame (10); In the left-right direction, the support frame (10) is provided with a first limiting member (11) and a second limiting member (12) at intervals, and the carrier plate (701) is provided with a stop block (13) that can abut against the first limiting member (11) and the second limiting member (12) respectively. When the carrier plate (701) is in the first position, the stop (13) abuts against the first limiting member (11); When the carrier plate (701) is in the second position, the stop (13) abuts against the second limiting member (12).

10. The battery testing equipment according to claim 1, characterized in that, The test component (4) also includes a test system (402), and the test gripper (401) is connected to the test system (402).