CN223691973U - Battery processing is with detecting frock - Google Patents
Battery processing is with detecting frockInfo
- Publication number
- CN223691973U CN223691973U CN202520058203.XU CN202520058203U CN223691973U CN 223691973 U CN223691973 U CN 223691973U CN 202520058203 U CN202520058203 U CN 202520058203U CN 223691973 U CN223691973 U CN 223691973U
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- Prior art keywords
- locking
- cavity
- tool table
- clamping seat
- positioning
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Abstract
The utility model relates to the technical field of detection tools and discloses a detection tool for battery processing, which comprises an operation machine, wherein one side of the operation machine is provided with a tool table, a fixing mechanism and a gas transmission mechanism are arranged on the tool table, the upper side surface of the tool table is provided with a tool table surface, the fixing mechanism comprises a clamping seat arranged on the tool table surface and a lifting abutting block arranged on the tool table, the clamping seat is detachably arranged on the tool table surface through an installation component, the installation component comprises a square block arranged on the tool table surface, square grooves are formed in the lower side surface of the clamping seat and correspond to the square block, locking holes are formed in opposite side walls of the square block, locking components are arranged in the clamping seat, and the locking components are inserted into the corresponding locking holes and used for realizing locking and fixing of the square block by the locking components. Through the setting of locking subassembly for the grip slipper can detachably install on frock mesa, and then makes the grip slipper change corresponding square battery or circular battery, thereby can improve its suitability.
Description
Technical Field
The utility model relates to the technical field of detection tools, in particular to a detection tool for battery processing.
Background
The detection tool for battery processing is a series of devices for detecting the quality of a battery assembly or a finished product in the battery production process, and comprises an air tightness detection device. The air tightness detection device plays a vital role in the battery processing process, and is mainly used for detecting the air tightness of the battery module and ensuring that no abnormal leakage exists between the inside of the battery module or the battery pack and the external environment.
For example, in the patent of publication number CN214096498U, although the air tightness detection device for a new energy automobile battery is provided with four groups of limiting blocks, the four groups of limiting blocks are of threaded structures, and the limiting rods vertically penetrate through the inside of the limiting blocks and form threaded connection with the limiting blocks, and through stirring the clamping plates, the clamping plates stretch the connecting springs to clamp the storage battery, then the limiting rods are rotated to clamp the storage battery, so that the storage battery can be prevented from loosening, and the storage battery is convenient to fix.
Disclosure of Invention
The utility model aims to provide a detection tool for battery processing, which aims to solve the problems in the background technology.
In order to achieve the above purpose, the present utility model provides the following technical solutions:
The detection tool for battery processing comprises an operation machine, wherein one side of the operation machine is provided with a tool table, a fixing mechanism and a gas transmission mechanism are arranged on the tool table, the upper side face of the tool table is provided with a tool table surface, the fixing mechanism comprises a clamping seat arranged on the tool table surface and a supporting block which is arranged on the tool table surface and can be lifted, the clamping seat is detachably arranged on the tool table surface through an installation component, the installation component comprises a square block arranged on the tool table surface, a square groove is arranged on the lower side face of the clamping seat and corresponds to the square block, locking holes are formed in the opposite side walls of the square block, and a locking component is arranged in the clamping seat and inserted into the corresponding locking holes to realize locking and fixing of the square block by the locking component.
Further, a first cavity communicated with the square groove is relatively arranged in the clamping seat, the locking assembly comprises a locking bar which is arranged in the first cavity and can slide, a lock rod is arranged at one end of the locking bar, one end of the lock rod extends out of the first cavity, a first spring is sleeved on the lock rod in the first cavity and used for pushing the corresponding locking bar to extend into the corresponding lock hole, and a positioning piece used for positioning the locking bar is further arranged on the clamping seat.
Further, a second cavity is arranged in the clamping seat and perpendicular to the first cavity, the second cavity is communicated with the first cavity, a positioning hole is formed in the locking strip, the positioning piece comprises a positioning strip which is arranged in the second cavity and can slide to stretch into the lock hole, a positioning rod is arranged at one end of the positioning strip, a second spring is sleeved on the positioning rod which is arranged in the second cavity, and the second spring is used for pushing the corresponding positioning strip to stretch into the corresponding positioning hole.
Further, one end of the positioning rod extends out of the second cavity to be arranged, and the extending ends of the opposite positioning rods are connected through the connecting plates.
Further, the four corners of the tool table top are provided with the support posts, the support posts are provided with the mounting plates, the upper side surfaces of the mounting plates are provided with the air cylinders, the abutting blocks are fixedly mounted on the output ends of the air cylinders, the lower side surfaces of the abutting blocks are vertically provided with the abutting plates, and the abutting plates are slidably mounted on the lower side surfaces of the abutting blocks through the fixing pieces.
Further, a sliding groove is formed in the side wall of the abutting block along the length direction of the side wall of the abutting block, the sliding groove penetrates through the abutting block, the fixing piece comprises fixing plates which are oppositely arranged on the upper side wall of the abutting plate, the fixing piece further comprises a locking bolt which is arranged in the sliding groove, two ends of the locking bolt penetrate through the two fixing plates, and locking nuts are arranged at penetrating end threads of the locking bolt.
Further, limiting grooves are formed in the opposite side walls of the abutting blocks along the length direction of the abutting blocks, and limiting blocks extending out of the corresponding limiting grooves to slide are arranged on the side walls corresponding to the fixing plates.
Compared with the prior art, the utility model has the beneficial effects that:
1. According to the utility model, through the arrangement of the locking component, the clamping seat can be detachably arranged on the tool table surface, and further the clamping seat can be replaced corresponding to the square battery or the round battery, so that the applicability of the clamping seat can be improved, and the clamping seat is convenient for practical use.
According to the utility model, the locating piece is arranged, so that the locating piece can locate the locking bar, the locking bar cannot move, and the locking bar can keep a state of being separated from the lock hole, so that the clamping seat can be replaced conveniently.
Drawings
Fig. 1 is a schematic structural diagram of a detection tool for battery processing in the present utility model.
Fig. 2 is a schematic structural diagram of the tooling table in the present utility model.
Fig. 3 is a schematic structural diagram of a clamping seat on a tooling table in the utility model.
Fig. 4 is a schematic structural view of a clamping seat in the present utility model.
Fig. 5 is a schematic structural view of a locking assembly according to the present utility model.
Fig. 6 is a schematic structural view of an abutment block according to the present utility model.
Fig. 7 is a schematic structural view of the abutment plate and the fixing member in the present utility model.
The meaning of each reference sign in the figure is 100, an operating machine, 101, a tool table, 102, a gas transmission mechanism, 103, a clamping seat, 104, an abutting block, 105, a cylinder, 106, a guide rod, 107, a tool table top, 108, a support column, 109, a mounting plate, 110 and a power cylinder;
200. square block 201, lockhole;
300. 301, connecting plate;
400. 401, the first cavity;
500. The second cavity, 501, lock bar, 502, locating hole, 503, first spring, 504, second spring, 505, locating bar, 506, locating rod, 507, lock bar;
600. runner 601, limit groove 602, fixing plate 603, locking nut;
700. locking bolt 701 and limiting block.
Detailed Description
For a further understanding of the present utility model, the present utility model will be described in detail with reference to the drawings and examples. It is to be understood that the examples are illustrative of the present utility model and are not intended to be limiting.
This embodiment is described in further detail below in conjunction with fig. 1-7.
Referring to fig. 1 to 7, a detection tool for battery processing in this embodiment includes an operation machine 100, wherein a tool table 101 is provided on one side of the operation machine 100, and a fixing mechanism and a gas transmission mechanism 102 are provided on the tool table 101;
The upper side of the tooling table 101 forms a tooling table surface 107, the fixing mechanism comprises a clamping seat 103 arranged on the tooling table surface 107 and a lifting abutting block 104 arranged on the tooling table 101, the clamping seat 103 is arranged on the tooling table surface 107 through a mounting component, the mounting component comprises square blocks 200 arranged on the tooling table surface 107, square grooves 400 are formed in the lower side of the clamping seat 103 corresponding to the square blocks 200, lock holes 201 are formed in the opposite side walls of the square blocks 200, locking components are arranged in the clamping seat 103, and the locking components are inserted into the corresponding lock holes 201 and used for fixing the square blocks 200.
In practical use, the manipulator 100, the tooling table 101 and the gas transmission mechanism 102 are of a structure disclosed in patent number CN214096498U, specifically, a clamping groove for placing a square battery or a round battery is formed in the upper side surface of the clamping seat 103, the clamping groove is square or U-shaped, the square battery or the round battery is placed on the clamping groove and is abutted against the upper side surface of the clamping seat 103 by driving the abutting block 104 to move downwards, namely, the square battery or the round battery can be limited in the clamping groove at the upper side of the clamping groove;
specifically, the assembled battery case is a closed case structure, and a through hole is formed in an end portion of the battery case, which faces the gas transmission mechanism 102, so that when the battery case is placed in the clamping groove, the gas transmission mechanism 102 can be abutted against the through hole, and the gas transmission mechanism 102 can transmit gas pressure into the battery case.
When the airtight detection of the square battery or the round battery is required, the clamping seat 103 can be disassembled and assembled on the tooling table surface 107 through the arrangement of the locking component, and then the clamping seat 103 can be replaced corresponding to the square battery or the round battery, so that the applicability of the clamping seat 103 can be improved, and the practical use is facilitated;
Wherein, square piece 200 and square groove 400 looks adaptation for square piece 200's lateral wall can slide the laminating on square groove 400 corresponds the lateral wall, and then makes square piece 200 can not produce in square groove 400 and rock, makes grip slipper 103 can not produce on square piece 200 and rocks, thereby grip slipper 103 can be more stable on the installation of frock mesa 107.
Referring to fig. 5, in this embodiment, a first cavity 401 communicating with a square groove 400 is relatively disposed in a clamping seat 103, a locking assembly includes a locking bar 501 disposed in the first cavity 401 and capable of sliding, a locking bar 507 is disposed at one end of the locking bar 501, one end of the locking bar 507 extends out of the first cavity 401, a first spring 503 is sleeved on the locking bar 507 disposed in the first cavity 401, the first spring 503 is used for pushing the corresponding locking bar 501 to extend into the corresponding locking hole 201, and a positioning member for positioning the locking bar 501 is further disposed on the clamping seat 103.
In practical use, since the first cavity 401 is communicated with the square groove 400, the square block 200 is inserted into the square groove 400, so that the lock hole 201 on the square block 200 can be aligned with the first cavity 401, i.e. the first cavity 401 can be communicated with the lock hole 201;
When the locking device is actually used, one end of the first spring 503 is abutted against the side wall of the first cavity 401, the other end of the first spring 503 is abutted against the side wall of the locking strip 501, so that the first spring 503 can push the locking strip 501 to enter the square groove 400 and extend into the locking hole 201 under the action of the first spring 503, the clamping seat 103 is installed, when the locking rod 507 is pulled outwards, the locking rod 507 can drive the locking strip 501 to slide along the first cavity 401 and compress the first spring 503, so that the locking strip 501 can be separated from the locking hole 201, at the moment, the positioning piece can position the locking strip 501, so that the locking strip 501 cannot move, the locking strip 501 can keep a state separated from the locking hole 201, so that the clamping seat 103 can be replaced, and when the replacement of the clamping seat 103 is completed, the positioning piece cancels the positioning of the locking strip 501, so that the two first springs 503 can push the corresponding locking strips 501 to extend into the corresponding locking holes 201 under the action of the first spring 503, so that the locking strips 200 are fixed in pairs;
wherein, locking bar 501, first cavity 401 and lockhole 201 all are square and three looks adaptation for the lateral wall of locking bar 501 can slide the laminating on the lateral wall that first cavity 401 and lockhole 201 correspond, and then makes locking bar 501 can not produce in first cavity 401 and lockhole 201 and rocks, thereby makes square piece 200 can obtain the preferred locking fixed.
Referring to fig. 5, in this embodiment, a second cavity 500 is disposed in the holder 103 perpendicular to the first cavity 401, the second cavity 500 is communicated with the first cavity 401, a positioning hole 502 is disposed on a locking bar 501, a positioning member includes a positioning bar 505 disposed in the second cavity 500 and slidably extending into the locking hole 201, a positioning rod 506 is disposed at one end of the positioning bar 505, a second spring 504 is sleeved on the positioning bar 506 disposed in the second cavity 500, and the second spring 504 is used for pushing the corresponding positioning bar 505 to extend into the corresponding positioning hole 502.
In practical use, the upper end of the second spring 504 abuts against the upper side wall of the second cavity 500, and the lower end abuts against the positioning bar 505, so that the second spring 504 can push the positioning bar 505 to move downwards, so that the positioning bar 505 can abut against the upper side wall of the locking bar 501, when the clamping seat 103 needs to be disassembled, the locking bar 507 is pulled to enable the locking bar 501 to move along the first cavity 401 to be separated from the locking hole 201, so that in the moving process of the locking bar 501, when the positioning hole 502 is aligned with the second cavity 500, at this time, under the action of the second spring 504, the two second springs 504 can push the corresponding positioning bar 505 to be inserted into the corresponding positioning hole 502, and then the positioning bar 505 can position the locking bar 501, so that the locking bar 501 cannot move, and the locking bar 501 can keep a state separated from the locking hole 201, so that the clamping seat 103 can be replaced;
When the lock bar is actually used, the positioning bar 506 is pulled, so that the positioning bar 506 can drive the positioning bar 505 to move along the second cavity 500 and compress the second spring 504, the positioning bar 505 can be separated from the lock hole 201, and the positioning of the lock bar 501 is further released, at this time, under the action of the first spring 503, the lock bar 501 can extend into the corresponding lock hole 201, and the square block 200 is fixed;
Wherein, location strip 505, second cavity 500 and locating hole 502 all are square and with location strip 505 looks adaptation for the lateral wall of location strip 505 can slide the laminating on the lateral wall that second cavity 500 and locating hole 502 correspond, and then make location strip 505 can not produce in second cavity 500 and locating hole 502 and rock, thereby make location strip 505 can carry out the location to locking strip 501 preferably.
In order to enable the positioning member to be installed in the second cavity 500, in this embodiment, an opening at one end of the second cavity 500 is provided, and a blocking member is disposed at an opening position of the opening, so that the positioning member can be installed in the second cavity 500.
In this embodiment, one end of the positioning rod 506 extends out of the second cavity 500, and the extending ends of the opposite positioning rod 506 are connected by the connecting plate 301.
In practical use, the two lock bars 507 are synchronously pulled through the connection plate 301, the two lock bars 507 can drive the corresponding lock bars 501 to move along the first cavity 401 to be separated from the lock hole 201, at the moment, the two second springs 504 can push the corresponding positioning bars 505 to be inserted into the corresponding positioning holes 502, so that the positioning bars 505 can position the lock bars 501, and when the positioning of the lock bars 501 is required to be released, the connection plate 301 can synchronously drive the two positioning bars 506 to drive the corresponding positioning bars 505 to move along the second cavity 500 and compress the second springs 504, so that the positioning bars 505 can be separated from the lock hole 201, and the positioning of the lock bars 501 is further released.
Referring to fig. 6-7, in this embodiment, the four corners of the tooling table 107 are provided with posts 108, the posts 108 are provided with mounting plates 109, the upper side of the mounting plates 109 is provided with a cylinder 105, the abutment block 104 is fixedly mounted on the output end of the cylinder 105, the lower side of the abutment block 104 is vertically provided with an abutment plate 300, and the abutment plate 300 is slidably mounted on the lower side of the abutment block 104 through a fixing member.
Specifically, a power cylinder 110 is arranged at one side of the gas transmission mechanism 102, and the power cylinder 110 is used for pushing the gas transmission mechanism 102 to move, so that the gas transmission end of the gas transmission mechanism 102 can abut against a through hole on the battery case through an opening at one end of the clamping groove, and the tightness during gas transmission is ensured;
When the air tightness detection device is in actual use, the two ends of the clamping groove are provided with openings, a square battery or a round battery is placed in the clamping groove, the abutting block 104 is driven to move downwards through the air cylinder 105, so that the abutting block 104 can abut against the opening at the upper end of the clamping groove, the abutting plate 300 can slide along the side wall of the abutting block 104 through the arrangement of the abutting plate 300, the abutting plate 300 can abut against the end part of the extending end of the square battery or the round battery, and the abutting plate 300 is fixed through the fixing piece, at the moment, the power air cylinder 110 pushes the air conveying mechanism 102 to move, the air conveying end of the air conveying mechanism 102 abuts against the through hole in the battery shell, the square battery or the round battery moves in the clamping groove to abut against the abutting plate 300, and the square battery or the round battery is preferably fixed, so that the air tightness detection of the square battery or the round battery can be preferably carried out by the air conveying mechanism 102;
When the lengths of the square battery or the round battery extending out of the opening at one end of the clamping groove are different, the abutting plate 300 can be in sliding abutting connection with the end part of the extending end of the square battery or the round battery through the sliding arrangement of the abutting plate 300, so that the applicability of the square battery or the round battery is improved;
Wherein, be equipped with guide bar 106 relatively on the mounting panel 109, relative guide bar 106 runs through mounting panel 109 and connects on the upside of butt piece 104 for two guide bars 106 can go up and down along with butt piece 104, through the guide effect of two guide bars 106, thereby make butt piece 104 can obtain comparatively stable lift.
In this embodiment, a sliding groove 600 is disposed on a side wall of the abutting block 104 along a length direction thereof, the sliding groove 600 penetrates through the abutting block 104, the fixing member comprises a fixing plate 602 disposed on an upper side wall of the abutting plate 300, the fixing member further comprises a locking bolt 700 disposed in the sliding groove 600, two ends of the locking bolt 700 penetrate through the two fixing plates 602, and locking nuts 603 are disposed at penetrating ends of the locking bolt 700 in a threaded manner.
In practical use, the locking bolt 700 is slidably disposed in the chute 600, and meanwhile, two ends of the locking bolt 700 penetrate through the corresponding fixing plates 602, so that the abutting plate 300 can be slidably mounted on the abutting block 104, and when the abutting plate 300 needs to be fixed, the fixing plates 602 can abut against opposite side walls of the abutting block 104 by tightening the locking nut 603, so that the abutting plate 300 can be fixed.
In order to enable the abutting plate 300 to slide more stably during practical use, in this embodiment, the opposite side walls of the abutting block 104 are provided with limiting grooves 601 along the length direction thereof, and the side walls corresponding to the fixing plates 602 are provided with limiting blocks 701 extending out of the corresponding limiting grooves 601 to slide.
In summary, the foregoing description is only of the preferred embodiments of the present utility model, and all equivalent changes and modifications made in accordance with the claims should be construed to fall within the scope of the utility model.
Claims (7)
1. The detection tool for battery processing comprises an operation machine (100), wherein one side of the operation machine (100) is provided with a tool table (101), the tool table (101) is provided with a fixing mechanism and a gas transmission mechanism (102), and is characterized in that the upper side face of the tool table (101) is provided with a tool table surface (107), the fixing mechanism comprises a clamping seat (103) arranged on the tool table surface (107) and a supporting block (104) which is arranged on the tool table surface (101) and can be lifted, the clamping seat (103) is detachably arranged on the tool table surface (107) through an installation component, the installation component comprises square blocks (200) arranged on the tool table surface (107), square grooves (400) are formed in the lower side face of the clamping seat (103) corresponding to the square blocks (200), locking holes (201) are formed in opposite side walls of the square blocks (200), locking components are arranged in the clamping seat (103), and the locking components are inserted into the corresponding locking holes (201) to achieve locking and fixing of the square blocks (200).
2. The detection tool for battery processing according to claim 1, wherein a first cavity (401) communicated with the square groove (400) is relatively arranged in the clamping seat (103), the locking assembly comprises a locking bar (501) which is arranged in the first cavity (401) and can slide, a locking bar (507) is arranged at one end of the locking bar (501), one end of the locking bar (507) extends out of the first cavity (401), a first spring (503) is sleeved on the locking bar (507) which is arranged in the first cavity (401), the first spring (503) is used for pushing the corresponding locking bar (501) to extend into the corresponding lock hole (201), and a positioning piece for positioning the locking bar (501) is further arranged on the clamping seat (103).
3. The detection tool for battery processing according to claim 2, wherein the clamping seat (103) is internally provided with a second cavity (500) perpendicular to the first cavity (401), the second cavity (500) is communicated with the first cavity (401), the locking bar (501) is provided with a positioning hole (502), the positioning piece comprises a positioning bar (505) which is arranged in the second cavity (500) and can slidably extend into the locking hole (201), one end part of the positioning bar (505) is provided with a positioning rod (506), the positioning rod (506) positioned in the second cavity (500) is sleeved with a second spring (504), and the second spring (504) is used for pushing the corresponding positioning bar (505) to extend into the corresponding positioning hole (502).
4. The detecting tool for battery processing according to claim 3, wherein one end of the locating rod (506) extends out of the second cavity (500), and the extending ends of the locating rod (506) are connected through the connecting plate (301).
5. The battery processing detection tool according to claim 1, wherein the four corners of the tool table top (107) are provided with the support posts (108), the support posts (108) are provided with the mounting plates (109), the upper side surfaces of the mounting plates (109) are provided with the air cylinders (105), the abutting blocks (104) are fixedly arranged on the output ends of the air cylinders (105), the lower side surfaces of the abutting blocks (104) are vertically provided with the abutting plates (300), and the abutting plates (300) are slidably arranged on the lower side surfaces of the abutting blocks (104) through fixing pieces.
6. The detection tool for battery processing according to claim 5, wherein the side wall of the abutting block (104) is provided with a sliding groove (600) along the length direction of the sliding groove (600), the sliding groove (600) penetrates through the abutting block (104), the fixing piece comprises fixing plates (602) which are oppositely arranged on the upper side wall of the abutting plate (300), the fixing piece further comprises locking bolts (700) which are arranged in the sliding groove (600), two ends of each locking bolt (700) penetrate through the two fixing plates (602), and locking nuts (603) are arranged at penetrating ends of each locking bolt (700) in a threaded mode.
7. The detecting tool for battery processing according to claim 6, wherein limiting grooves (601) are formed in the opposite side walls of the abutting block (104) along the length direction of the abutting block, and limiting blocks (701) extending into the corresponding limiting grooves (601) to slide are arranged on the corresponding side walls of the fixing plate (602).
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202520058203.XU CN223691973U (en) | 2025-01-10 | 2025-01-10 | Battery processing is with detecting frock |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202520058203.XU CN223691973U (en) | 2025-01-10 | 2025-01-10 | Battery processing is with detecting frock |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| CN223691973U true CN223691973U (en) | 2025-12-19 |
Family
ID=98023216
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| CN202520058203.XU Active CN223691973U (en) | 2025-01-10 | 2025-01-10 | Battery processing is with detecting frock |
Country Status (1)
| Country | Link |
|---|---|
| CN (1) | CN223691973U (en) |
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2025
- 2025-01-10 CN CN202520058203.XU patent/CN223691973U/en active Active
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