Battery detection equipment

By designing automated battery testing equipment, the problem that traditional equipment cannot meet high-precision multi-point detection is solved. Automated detection of battery connectors and side points is achieved, which improves detection efficiency and optimizes space utilization.

CN223471132UActive Publication Date: 2025-10-24SUZHOU HUAXING YUANCHUANG TECH CO LTD
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Patent Information

Application Number
CN202422850923.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-21
Publication Date
2025-10-24
Estimated Expiration
2034-11-21

AI Technical Summary

Technical Problem

Traditional battery testing equipment cannot meet the high-precision testing requirements for connectors and side points, and its insufficient degree of automation leads to low testing efficiency.

Method used

A battery testing device was designed, which included a carrier, a detection component, a conveying component, a transfer component, and a displacement component. Through a reasonable layout, automatic detection of battery connectors and side points was achieved. Multi-point detection was achieved by connecting the transfer probe to the detection pressure head. The coordinated work of the conveying and displacement components was combined to improve the detection efficiency.

Benefits of technology

It realizes the automatic detection of battery connectors and side points, improves the detection efficiency, rationalizes the flow of carriers, avoids the inefficiency caused by untimely investment, has high space utilization and small footprint.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a battery detection device, which comprises a carrying disc for carrying products to be detected and comprises a carrying disc body and a plurality of detection areas, and each detection area carries one product to be detected; the detection assembly is used for detecting the product and comprises a detection pressure head, and during detection, the detection pressure head is conducted with a first to-be-detected point position and a second to-be-detected point position of the to-be-detected product respectively for detection; the conveying assembly is used for conveying the carrying disc carrying the to-be-detected product to the detection assembly; the switching assembly is used for communicating the detection pressure head and a second to-be-detected point location, the switching assembly comprises a switching piece arranged corresponding to the detection area, and the switching piece comprises a switching probe used for communicating with the second to-be-detected point location and a switching point location used for being in contact conduction with the detection pressure head; and the displacement assembly is used for driving the switching assembly to move along a second direction and a third direction so as to realize communication between the switching probe and the second to-be-tested point and communication between the first to-be-tested point and the testing pressure head and between the switching point and the testing pressure head.
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Description

TECHNICAL FIELD

[0001] The utility model relates to battery manufacturing technical field, more specifically, relate to a battery detection equipment. BACKGROUND

[0002] The traditional watch battery in the detection process, only need to carry out contact detection to the connector, no point position test demand, therefore, only need to complete the connector cooperation on the carrier disc when carrying out the detection, carry out simple location to the product, carry out contact detection to the connector, but along with the increase of test requirement, the new product joins the demand of the side point position test, and the requirement of detection precision is also higher, the past semi-automatic detection equipment cannot satisfy the use demand. UTILITY MODEL CONTENTS

[0003] In view of above problem, the utility model discloses a battery detection equipment.

[0004] To achieve the above object, the utility model adopts the following technical scheme:

[0005] A battery detection equipment, comprising:

[0006] The carrier disc is used to carry the product to be detected, and comprises a carrier disc body and a plurality of detection zones arranged in a matrix on the carrier disc body, each detection zone carrying one product to be detected;

[0007] The detection assembly is used for detecting the product to be detected, and comprises a plurality of detection pressure heads corresponding to the detection zones, and the detection pressure heads are respectively connected to the first detection point and the second detection point of the product to be detected in the corresponding detection zone for detection;

[0008] The conveying assembly is used for conveying the carrier disc carrying the product to be detected to the detection assembly;

[0009] The switching assembly is used for connecting the detection pressure head and the second detection point on the side of the product to be detected, and comprises a plurality of switching members corresponding to the detection zones, the switching member comprises a switching probe for connecting the second detection point, and a switching point for connecting the detection pressure head; and

[0010] The displacement assembly is used for driving the switching assembly to move along the second direction and the third direction, so as to realize the connection between the switching probe and the second detection point, and the connection between the first detection point and the switching point and the detection pressure head.

[0011] In addition, the detection zone comprises a detection jig and a slot corresponding to one side of the detection jig, and the slot penetrates through the upper and lower surfaces of the carrier disc body.

[0012] The product under test is installed on the detection jig, and a first test point of the product under test is exposed on the upper surface of the detection jig, and a second test point of the product under test is exposed on the side surface of the detection jig close to the slot.

[0013] In addition, the optional scheme is that the adapter assembly is located below the detection assembly, and the carrier disc of the detection station is located between the detection assembly and the adapter assembly.

[0014] The adapter assembly is driven by the displacement assembly to move in the second direction, so that the adapter is correspondingly arranged in each slot, and the adapter assembly is driven by the displacement assembly to move in the third direction, so that the adapter probe is connected and conducted with the second test point of the product under test installed on the detection jig.

[0015] In addition, the optional scheme is that the conveying assembly comprises a first transmission belt and a second transmission belt arranged in the first direction, and a blocking cylinder.

[0016] The first transmission belt and the second transmission belt both convey the carrier disc in the first direction, and the carrier disc can be transferred between the first transmission belt and the second transmission belt.

[0017] The first transmission belt is provided with an avoidance station, the second transmission belt is provided with a detection station, and the detection assembly is located above the detection station.

[0018] The blocking cylinder is located between the first transmission belt and the second transmission belt, and the blocking cylinder can block the transfer of the carrier disc between the first transmission belt and the second transmission belt.

[0019] In addition, the optional scheme is that the conveying assembly further comprises a lifting cylinder, the lifting cylinder is correspondingly arranged in the avoidance station, and is located on two opposite sides of the first transmission belt in the conveying direction, and is used to lift the carrier disc in the avoidance station.

[0020] In addition, the optional scheme is that the displacement assembly comprises a lifting drive and a side pushing drive,

[0021] The side pushing drive is installed on the adapter assembly and can drive the adapter to move in the third direction.

[0022] The side pushing drive and the adapter assembly are combined and fixed to the output end of the lifting drive, and can move in the second direction under the action of the lifting drive.

[0023] In addition, the optional scheme is that the adapter assembly further comprises a frame structure and an adapter plate, and the adapter is arranged in a matrix on the adapter plate.

[0024] The adapter plate is installed on the frame structure by side push driving, the side push driving is combined and fixed to the frame structure, the adapter plate is combined and fixed to the output end of the side push driving, and can move along the third direction under the action of the side push driving to make the adapter and the second to-be-measured point contact and conduct;

[0025] The top of the frame structure is provided with a first positioning pin, the carrier disc body is provided with a first positioning hole corresponding to the first positioning pin, and the alignment connection of the carrier disc and the adapter assembly is realized through the cooperation of the first positioning pin and the first positioning hole.

[0026] The side surface of the adapter probe of the adapter is provided with a second positioning pin, and the detection area of the carrier disc is provided with a second positioning hole corresponding to the second positioning pin and matched with the second positioning pin, and the alignment connection of the to-be-measured product and the adapter is realized through the cooperation of the second positioning pin and the second positioning hole.

[0027] In addition, the detection assembly further comprises a detection top plate and a downward pressing cylinder arranged on the detection top plate.

[0028] The detection pressure head is arranged on one side of the detection top plate close to the adapter assembly in a matrix arrangement, and the end surface of the detection pressure head away from the detection top plate comprises a first detection probe and a second detection probe respectively used for contacting and conducting with the first to-be-measured point and the adapter point.

[0029] The output end of the downward pressing cylinder passes through the detection top plate downward, can be telescopic relative to the detection top plate along the second direction, and separates the detection pressure head and the to-be-measured product.

[0030] In addition, the side of the detection top plate close to the adapter assembly is provided with a third positioning pin, the carrier disc body is provided with a third positioning hole corresponding to the third positioning pin, and the alignment connection of the carrier disc and the detection assembly is realized through the cooperation of the third positioning pin and the third positioning hole.

[0031] The end surface of the detection pressure head away from the detection top plate comprises a fourth positioning pin protruding downward, and the detection area of the carrier disc is provided with a fourth positioning hole corresponding to the fourth positioning pin and matched with the fourth positioning pin, and the alignment connection of the to-be-measured product and the detection pressure head is realized through the cooperation of the fourth positioning pin and the fourth positioning hole.

[0032] In addition, the battery detection equipment further comprises a frame body, a test box module, an adapter box module and a power module.

[0033] The test box module, the adapter box module, the power module, the detection assembly, the conveying assembly, the adapter assembly and the displacement assembly are all installed on the frame body, the rear end surface of the frame body is provided with a feeding port communicated with the conveying assembly, the to-be-measured product is installed on the carrier disc, and the battery detection equipment is fed in and out through the feeding port.

[0034] The adapter box module connects the detection assembly and the test box module to transmit test signals.

[0035] The utility model has the advantages that:

[0036] In view of the technical problems in the prior art, the utility model provides a battery detection equipment, through the reasonable layout of various structural components, automation detection of battery connectors and side point positions is realized, and the automation degree is high. BRIEF DESCRIPTION OF DRAWINGS

[0037] The specific embodiments of the utility model will be further described in detail below with reference to the drawings.

[0038] Figure 1 An appearance schematic view of the battery detection equipment is shown.

[0039] Figure 2 A rear view of the battery detection equipment is shown.

[0040] Figure 3 A structure schematic view of the battery detection equipment is shown.

[0041] Figure 4 A schematic view of the product to be measured is shown.

[0042] Figure 5 A structure schematic view of the test fixture is shown.

[0043] Figure 6 A structure schematic view of the carrier disc is shown.

[0044] Figure 7 A structure schematic view of the test box module is shown.

[0045] Figure 8 A structure schematic view of the adapter box module is shown.

[0046] Figure 9 A structure schematic view of the power module is shown.

[0047] Figure 10A structure schematic view of the first transmission belt is shown.

[0048] Figure 11 A structure schematic view of the conveying assembly detection station is shown.

[0049] Figure 12 A structure schematic view of the detection assembly is shown.

[0050] Figure 13 A structure schematic view of the detection pressure head is shown.

[0051] Figure 14 A structure schematic view of the adapter assembly is shown.

[0052] Figure 15 A structure schematic view of the adapter is shown. DETAILED DESCRIPTION

[0053] The utility model will be further described in detail below in combination with the drawings and embodiments. It can be understood that the specific embodiments described herein are only used to explain the utility model, and not to limit the utility model. In addition, it should be noted that, in order to facilitate the description, only the part related to the utility model is shown in the drawings, not all structures.

[0054] In the description of the utility model, unless otherwise explicitly specified and limited, the terms "connected", "connected", "fixed" should be understood broadly, for example, it can be fixedly connected, or it can be detachably connected, or it can be integrated, it can be directly connected, or it can be indirectly connected through an intermediate medium, it can be the internal communication of two elements or the interaction relationship 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.

[0055] In the utility model, unless otherwise explicitly specified and limited, the first feature is "on" or "below" the second feature, which can include direct contact between the first and second features, or indirect contact between the first and second features through another feature between them.

[0056] In the description of the embodiment, the terms "upper", "lower", "left", "right" and other orientation or position relationship are based on the orientation or position relationship shown in the drawings, which is only for the convenience of description and simplification of operation, and does not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, therefore it cannot be understood as a limitation on the utility model. In addition, the terms "first", "second" are only used to distinguish in the description, and have no special meaning.

[0057] Aiming at the defects of the prior art, the present invention provides a battery testing device. Figures 1-15 As shown, the battery testing equipment includes a carrier plate 1, a testing assembly 2, a conveying assembly 3, an adapter assembly, and a displacement assembly. The carrier plate 1 is used to carry the product 100 to be tested and includes a carrier plate body 11 and a plurality of testing zones 12 arranged in a matrix on the carrier plate body, each testing zone 12 carrying a product 100 to be tested.

[0058] The detection component 2 is used to detect the product to be tested 100, and includes multiple detection pressure heads 21 arranged in one-to-one correspondence with the detection area 12. During detection, the detection pressure head 21 is respectively connected to the first to-be-tested point 101 and the second to-be-tested point 102 of the product to be tested 100 located in the corresponding detection area 12 for detection.

[0059] The conveying assembly 3 is used to convey the carrier plate carrying the product 100 to be tested to the detection assembly 2 .

[0060] The adapter assembly is used to connect the detection pressure head 21 and the second test point 102 located on the side of the product to be tested 100. The adapter assembly includes multiple adapters 41 corresponding to the detection areas 12. Figure 15 As shown, the adapter 41 includes a transfer probe 411 for communicating with the second point to be tested, and a transfer point 412 for contacting and conducting with the detection pressure head 21 .

[0061] The displacement assembly is used to drive the adapter assembly to move along the second direction and the third direction to achieve communication between the adapter probe 411 and the second test point 102 , and communication between the first test point 101 and the adapter point 412 and the test pressure head 21 .

[0062] It can be understood that the first direction in this embodiment is Figure 11 The Y direction in the second direction is Figure 1 The Z direction in the third direction is Figure 1 The X direction in .

[0063] In a specific embodiment, Figure 4 As shown, the product under test 100 includes a first test point 101 and a second test point 102. The first test point 101 is located on the top surface of the product under test 100 and is a connector. The second test point 102 is located on the side of the product under test 100 and is a side point.

[0064] like Figure 6As shown, the detection area 12 comprises a detection jig 13 and a corresponding slot 14 arranged on one side of the detection jig 13, the slot 14 penetrating through the upper and lower surfaces of the tray body 11. The product 100 to be tested is installed on the detection jig 13, the first test point 101 of the product 100 to be tested is exposed to the upper surface of the detection jig 13, and the second test point 102 is exposed to the side surface of the detection jig 14 close to the corresponding slot 14. The slot 14 is used for the adapter 41 to pass through and connect the second test point 102 in conduction.

[0065] In one specific example, 16 test areas 12 are arranged on the tray 1 in the form of 4x4 arrangement on the tray body 11.

[0066] In one embodiment, the adapter assembly is located below the detection assembly 2. When the tray 1 is driven by the conveying assembly 3 to move between the adapter assembly and the detection assembly 2, the displacement assembly drives the adapter assembly to realize the conduction between the adapter 41 and the product to be tested on the tray 1. Specifically, the adapter assembly is driven by the displacement assembly to move in the second direction, so that the adapter 41 is correspondingly arranged in each slot 14; the adapter assembly is driven by the displacement assembly to move in the third direction, so that the adapter probe 411 and the second test point 102 of the product 100 to be tested installed on the detection jig 13 are connected in conduction.

[0067] In one specific embodiment, as shown in the figure, Figure 10 The conveying assembly 3 comprises a first transmission belt 31 and a second transmission belt 32 arranged in the first direction, and a blocking cylinder 33. The first transmission belt 31 and the second transmission belt 32 both convey the tray 1 in the first direction, and the tray 1 can pass between the first transmission belt 31 and the second transmission belt 32. The blocking cylinder 33 is located between the first transmission belt 31 and the second transmission belt 32, and the blocking cylinder 33 is arranged in the second direction. The blocking cylinder 33 extends out to block the tray 1 from passing between the first transmission belt 31 and the second transmission belt 32.

[0068] The first transmission belt 31 is provided with an avoidance station, and the second transmission belt 32 is provided with a detection station, and the second transmission belt 32 is located below the detection assembly 2. During detection, the tray 1 enters from the first transmission belt 31, passes through the second transmission belt 32 to the detection station for detection. If there is already a tray 1 in the detection assembly 2 for detection, the blocking cylinder 33 extends out to block the tray 1 from passing from the first transmission belt 31 to the second transmission belt 32, so that the tray 1 temporarily stays at the avoidance station.

[0069] In one specific embodiment, as shown in the figure, Figure 10As shown, the conveying assembly 3 further comprises lifting cylinders 34 arranged at two opposite sides of the avoidance station in the conveying direction of the first transmission belt 31, for lifting the carrier disc 1 at the avoidance station. After the carrier disc 1 being detected is detected, the lifting cylinders 34 lift the carrier disc 1 carrying the product to be detected at the avoidance station, the second transmission belt 32 changes the conveying direction to send the detected carrier disc back to the first transmission belt 31, at this time, the blocking cylinders 33 are in the retracted state, after the detected carrier disc reaches the first transmission belt 31, the first transmission belt 31 changes the conveying direction to output the detected carrier disc first, and then returns to the normal state, and at the same time, the lifting cylinders 34 retract to place the lifted carrier disc on the first transmission belt 31, which is transmitted to the second transmission belt 32 for detection at the detection station. Compared with the situation that the carrier disc can only wait for the unloading of the previous carrier disc before being loaded into the detection equipment in the traditional detection equipment, the application uses the time when the carrier disc is detected to load the next carrier disc into the detection equipment through the cooperation of the lifting cylinders 34 and the first transmission belt 31, the second transmission belt 32 and the blocking cylinders 33, thereby saving the waiting time of loading and unloading and improving the detection efficiency.

[0070] In one embodiment, as shown in Figure 11 and Figure 14 The displacement assembly comprises a jacking drive 51 and a side pushing drive. The side pushing drive is mounted on the adapter assembly and can drive all the adapters 41 to move together along a third direction to be in conduction with the second to-be-detected point 102 of the product 100. The side pushing drive and the adapter assembly are combined and fixed to the output end of the jacking drive 51 and can move along the second direction under the action of the jacking drive 51.

[0071] In one specific embodiment, as shown in Figure 14 The adapter assembly further comprises a frame structure 42 and an adapter plate 43, and the adapters 41 are arranged in a matrix on the adapter plate 43. The adapter plate 43 is mounted on the frame structure 42 through the side pushing drive, the side pushing drive is combined and fixed to the frame structure 42, the adapter plate 43 is combined and fixed to the output end of the side pushing drive, and the adapter plate 43 can move along the third direction under the action of the side pushing drive to make the adapters 41 and the second to-be-detected point 102 in conduction.

[0072] For example, the side pushing drive comprises a side pushing cylinder 521 and a guide rail 522. The side pushing cylinder 521 is combined and fixed to the frame structure 42, the bottom of the adapter plate 43 is combined and fixed to the output end of the side pushing cylinder 521, and the adapters 41 are mounted on the top of the adapter plate 43. The guide rail 522 is mounted on the frame structure 42, and the bottom of the adapter plate 43 is slidingly connected to the guide rail 522 to ensure the stability of the movement of the adapter plate 43 along the third direction.

[0073] In one specific embodiment, the top of the frame structure 42 is provided with a first positioning pin 421, the carrier disc body 11 is provided with a first positioning hole 111 corresponding to the first positioning pin 421, the adapter assembly is driven to rise by the jacking drive 51, the first positioning pin 421 is inserted into the first positioning hole 111, the alignment connection of the adapter assembly and the carrier disc 1 is realized, and the subsequent carrier disc 1 can continue to rise to the detection assembly 2 for detection under the driving of the jacking drive 51.

[0074] As shown in Figure 15 , one side surface of the adapter probe 411 of the adapter 41 is provided with a second positioning pin 413, as shown in Figure 5 , the detection area 12 of the carrier disc 1 is provided with a second positioning hole 131 corresponding to the second positioning pin 413, the second positioning hole 131 is located on the side surface of the detection jig 13, and the alignment connection of the product to be detected 100 and the adapter 41 is realized through the cooperation of the second positioning pin 413 and the second positioning hole 131.

[0075] In one embodiment, as shown in Figure 12 , the detection assembly 2 further comprises a detection top plate 22 and a downward pressing cylinder 23 arranged on the detection top plate 22. The detection pressure head 21 is arranged in a matrix on the side of the detection top plate 22 close to the adapter assembly, as shown in Figure 13 , the end surface of the detection pressure head 21 away from the detection top plate 22 comprises a first detection probe 211 and a second detection probe 212 respectively used for contacting and conducting with the first detection point 101 and the adapter detection point 412.

[0076] The output end of the downward pressing cylinder 23 penetrates through the detection top plate 22 downward, and can be telescopic relative to the detection top plate 22 along the second direction, so as to separate the detection pressure head 21 and the product to be detected 100.

[0077] In one specific embodiment, as shown in Figure 12 , the side of the detection top plate 22 close to the adapter assembly is provided with a third positioning pin 221, as shown in Figure 6 , the carrier disc body 11 is provided with a third positioning hole 112 corresponding to the third positioning pin 221, the carrier disc 1 continues to rise to the detection assembly 2 under the driving of the jacking drive 51, and the third positioning pin 221 is correspondingly inserted into the third positioning hole 112, so as to realize the alignment connection of the carrier disc 1 and the detection assembly 2.

[0078] As shown in Figure 13 , the end surface of the detection pressure head 21 away from the detection top plate 22 comprises a fourth positioning pin 213 protruding downward, as shown in Figure 5As shown, the detection area 12 of the carrier disc 1 is provided with a fourth positioning hole 132 corresponding to the fourth positioning pin 213, and the fourth positioning hole 132 is specifically located on the top surface of the detection jig 13. The alignment connection between the product to be tested 100 and the detection pressure head 21 is realized through the cooperation of the fourth positioning pin 213 and the fourth positioning hole 132.

[0079] In a specific embodiment, the battery detection device further comprises a rack body 6, a test box module 7, an adapter box module 8, and a power module 9. The adapter box module 8 connects the detection assembly 2 and the test box module 7 to transmit the test signal and ensure the normal transmission of the test signal. The test box module 7, the adapter box module 8, the power module 9, the detection assembly 2, the conveying assembly 3, the adapter assembly, and the displacement assembly are all installed on the rack body 6. The rack body 6 is a profile frame, and the outside is provided with a sheet metal door, which can ensure the safety protection and normal maintenance of the device. The rack body 6 is also provided with a fan 61, a heat dissipation hole 62, an observation window 63, a three-color lamp 64, a display screen 65, a manual operation panel 66, a keyboard 67, and a feeding port 68. The feeding port 68 is located on the rear end surface of the rack body 6, the product to be tested 100 is installed on the carrier disc 1, and the battery detection device is fed in and out through the feeding port 68.

[0080] When testing, the carrier plate 1 carrying the product 100 to be tested is put into the battery detection device from the feeding port 68, placed on the first transmission belt 31, and transferred to the detection station through the second transmission belt 32. After reaching the detection station, the adapter assembly moves upward under the driving of the jacking drive 51, the first positioning pin 421 is inserted into the first positioning hole 111, the adapter assembly and the carrier plate 1 are connected in position, the carrier plate 1 is preliminarily positioned, and then the carrier plate 1 is jacked upward to be separated from the second transmission belt 32. Then, under the action of the side pushing drive, the carrier plate 1 moves in the second direction, the second positioning pin 413 and the second positioning hole 131 are matched to realize the alignment connection between the product 100 to be tested and the adapter 41, the carrier plate 1 and the adapter assembly are precisely positioned, the second test point 102 of the product 100 to be tested is connected with the adapter probe 411, the jacking drive 51 continues to jack the carrier plate 1 and the adapter assembly upward, the third positioning pin 221 is inserted into the third positioning hole 112 to realize the alignment connection between the carrier plate 1 and the detection assembly 2, and the carrier plate 1 and the detection assembly 2 are coarsely positioned. The fourth positioning pin 213 and the fourth positioning hole 132 are matched to realize the alignment connection between the product 100 to be tested and the detection head 21, the carrier plate 1 and the detection assembly 2 are precisely positioned, the upward movement is stopped, the detection head 21 is connected with the first test point 101 through the first detection probe 211, and the second test point 102 is connected with the adapter point 412 of the adapter 41 through the second detection probe 212, the signal transmission of the product test is completed, and the test is started. After the test is completed, the lower pressure cylinder 23 extends to separate the detection head 21 and the product 100 to be tested, the carrier plate 1 moves downward under the action of the jacking drive 51, the side pushing drive moves in the opposite direction to separate the product and the adapter 41, the carrier plate 1 and the adapter assembly are separated, and finally fall on the second transmission belt 32, are transferred to the first transmission belt 31 by the second transmission belt 32, and flow out of the test device through the feeding port 68.

[0081] The battery detection device provided by the embodiment of the utility model realizes the automatic detection of the battery connector and the side point, has high automation degree, the carrier plate flows in and out reasonably and does not interfere with each other, avoids the problem of low efficiency caused by the untimely input of the carrier plate in the test process, can test multiple products at the same time, can effectively improve the test efficiency, has reasonable space layout, high space utilization rate, small occupation area, and small limitation of site.

[0082] Obviously, the above embodiments of the utility model are only examples for clearly illustrating the utility model, and are not the limitation of the embodiments of the utility model. For ordinary skilled in the art, other different forms of changes or changes can be made on the basis of the above description, all the embodiments cannot be exhausted here, and all the obvious changes or changes derived from the technical scheme of the utility model still belong to the protection scope of the utility model.

Claims

1. A battery detection device, characterized by, The utility model relates to a kind of test device, including: Carrying tray, for carrying product to be tested, including carrying tray body and multiple detection zones arranged in matrix on the carrying tray body, each detection zone carries a product to be tested; Detection assembly, for detecting product to be tested, including multiple detection probes corresponding to detection zones, detection probes and first test points and second test points of product to be tested in corresponding detection zones are respectively connected for detection when detecting; Conveying assembly, for conveying carrying tray carrying product to be tested to detection assembly; Adapter assembly, for connecting detection probes and second test points on the side of product to be tested, the adapter assembly includes multiple adapters corresponding to detection zones, adapter includes adapter probe for connecting with second test points, and adapter point for contacting with detection probes; And Displacement assembly, for driving adapter assembly to move along second direction and third direction, to realize the connection of adapter probe and second test points and the connection of first test points and adapter point and detection probes.

2. The battery detection apparatus according to claim 1, characterized by The detection zone includes detection jig and slot corresponding to one side of the detection jig, the slot penetrates the upper and lower surfaces of the carrying tray body; Product to be tested is installed on the detection jig, first test points of product to be tested are exposed to the upper surface of the detection jig, and second test points are exposed to the side surface of the detection jig close to the slot.

3. The battery detection apparatus according to claim 2, characterized by The adapter assembly is located below the detection assembly, and the carrying tray in detection station is located between the detection assembly and the adapter assembly; The adapter assembly moves along the second direction under the driving of the displacement assembly, so that the adapter is arranged in each slot, and the adapter assembly moves along the third direction under the driving of the displacement assembly, so that the adapter probe is connected with second test points of product to be tested installed on the detection jig.

4. The battery detection apparatus according to claim 1, characterized by The conveying assembly includes first transmission belt and second transmission belt arranged along first direction, and blocking cylinder; The first transmission belt and the second transmission belt both convey carrying tray along the first direction, and the carrying tray can be transferred between the first transmission belt and the second transmission belt; The first transmission belt is provided with avoiding station, the second transmission belt is provided with detection station, and the detection assembly is located above the detection station; The blocking cylinder is located between the first transmission belt and the second transmission belt, and the blocking cylinder can block the transfer of the carrying tray between the first transmission belt and the second transmission belt.

5. The battery detection apparatus according to claim 4, characterized by The conveying assembly further includes lifting cylinder, the lifting cylinder is correspondingly arranged in the avoiding station, and is located on two opposite sides in the conveying direction of the first transmission belt, for lifting the carrying tray in the avoiding station.

6. The battery testing device according to claim 1, characterized in that: The displacement assembly includes lifting drive and side pushing drive, The side pushing drive is installed on the adapter assembly, and can drive the adapter to move along the third direction; The side pushing drive and the adapter assembly are combined and fixed to the output end of the lifting drive, and can move along the second direction under the action of the lifting drive.

7. The battery detection apparatus according to claim 6, characterized by The adapter assembly further includes frame structure and adapter plate, and the adapter is arranged in matrix on the adapter plate. The adapter plate is installed on the frame structure by side push driving, the side push driving is combined with the frame structure, the adapter plate is combined with the output end of the side push driving, and can move along the third direction under the action of the side push driving to make the adapter and the second to-be-measured point contact and conduct; The top of the frame structure is provided with a first positioning pin, and the carrier disc body is provided with a first positioning hole corresponding to the first positioning pin, and the alignment connection of the carrier disc and the adapter assembly is realized through the cooperation of the first positioning pin and the first positioning hole. The side surface of the adapter probe is provided with a second positioning pin, and the detection area of the carrier disc is provided with a second positioning hole corresponding to the second positioning pin, and the alignment connection of the to-be-measured product and the adapter is realized through the cooperation of the second positioning pin and the second positioning hole.

8. The battery testing apparatus of claim 1, wherein, The detection assembly further comprises a detection top plate and a pressing cylinder arranged on the detection top plate; The detection pressure head is arranged on one side of the detection top plate close to the adapter assembly in a matrix arrangement, and the end surface of the detection pressure head away from the detection top plate comprises a first detection probe and a second detection probe for contacting and conducting with the first to-be-measured point and the adapter point, respectively. The output end of the pressing cylinder passes through the detection top plate downward, and can stretch and contract relative to the detection top plate along the second direction to separate the detection pressure head and the to-be-measured product.

9. The battery testing apparatus of claim 8, wherein, The detection top plate is provided with a third positioning pin on one side close to the adapter assembly, and the carrier disc body is provided with a third positioning hole corresponding to the third positioning pin, and the alignment connection of the carrier disc and the detection assembly is realized through the cooperation of the third positioning pin and the third positioning hole. The end surface of the detection pressure head away from the detection top plate comprises a fourth positioning pin protruding downward, and the detection area of the carrier disc is provided with a fourth positioning hole corresponding to the fourth positioning pin, and the alignment connection of the to-be-measured product and the detection pressure head is realized through the cooperation of the fourth positioning pin and the fourth positioning hole.

10. The battery testing apparatus of claim 1, wherein, The battery detection equipment further comprises a frame body, a test box module, an adapter box module and a power supply module; The test box module, the adapter box module, the power supply module, the detection assembly, the conveying assembly, the adapter assembly and the displacement assembly are all installed on the frame body, the rear end surface of the frame body is provided with a feeding port communicated with the conveying assembly, the to-be-measured product is installed on the carrier disc, and the battery detection equipment is fed in and out through the feeding port; The adapter box module connects the detection assembly and the test box module to transmit test signals.