CN215142346U - Automatic testing and sorting machine for carbon sheet resistance - Google Patents
Automatic testing and sorting machine for carbon sheet resistance Download PDFInfo
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- CN215142346U CN215142346U CN202121422306.8U CN202121422306U CN215142346U CN 215142346 U CN215142346 U CN 215142346U CN 202121422306 U CN202121422306 U CN 202121422306U CN 215142346 U CN215142346 U CN 215142346U
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- carbon sheet
- arm lock
- detection
- sorting machine
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Abstract
The utility model relates to the technical field of carbon sheet production equipment, in particular to an automatic testing and sorting machine for carbon sheet resistance; the utility model comprises a table top and a test clamp arm, wherein the table top is provided with a test seat, the test clamp arm is movably arranged above the test seat, a detection compression leg for detection is arranged at the clamping part of the test clamp arm, and the detection compression leg is connected to a detection controller; send into the carbon piece and detect the seat, the resistance detects when the carbon piece is got to the test arm lock clamp, and is very convenient, can carry out the resistance to the carbon piece fast and detect to classify the carbon piece, realize quick automated production, production efficiency is high.
Description
Technical Field
The utility model relates to a carbon piece production facility technical field refers in particular to a carbon piece resistance automatic test sorter.
Background
The existing carbon film resistor disc (hereinafter referred to as "carbon disc") for sensors, especially the round carbon disc, needs to detect the resistance of the product during production to judge whether the product is qualified. At present, the resistance value of the carbon sheet is generally tested manually by an operator, the working intensity of the operator is high, and the testing efficiency is low.
Therefore, based on the above-mentioned defects of the existing carbon sheet resistance value detection production, the existing carbon sheet resistance value detection production needs to be improved.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a carbon piece resistance automatic test sorter to prior art not enough, this carbon piece resistance automatic test sorter has solved current carbon piece resistance and has detected that production exists: low detection efficiency and the like.
In order to achieve the purpose, the utility model is realized by the following technical scheme: the automatic carbon sheet resistance testing and sorting machine comprises a table board and a testing clamping arm, wherein a detecting seat is installed on the table board, the testing clamping arm is movably located above the detecting seat, a detecting pressing column for detecting is installed at the clamping part of the testing clamping arm, and the detecting pressing column is connected to a detecting controller.
Specifically, the side surface of the detection seat is correspondingly provided with a feeding track, the feeding track is connected to a vibration disc, and the vibration disc is positioned beside the table board.
More specifically, a bracket is arranged above the table top, a transverse mounting plate is transversely arranged on the bracket, a moving plate is transversely arranged on the transverse mounting plate in a sliding manner, a clamping arm mounting plate is longitudinally arranged on the moving plate in a sliding manner, a lifting cylinder is connected above the clamping arm mounting plate, and a test clamping arm is arranged on the clamping arm mounting plate; the bracket is provided with a horizontal cylinder which is connected with a moving plate.
Furthermore, the upper end of the detection seat is provided with a sliding groove, a transfer sliding block is arranged in the sliding groove in a sliding mode, and the front portion of the transfer sliding block is provided with a carbon sheet placing groove.
Furthermore, the front end of the transfer sliding block is provided with a hole along the central axis, and the hole penetrates through the carbon sheet placing groove.
Furthermore, the front end of the detection seat is provided with a penetrating rod moving cylinder, the penetrating rod moving cylinder drives a penetrating rod, and the penetrating rod movably penetrates into a sliding groove of the detection seat.
Furthermore, the rear end of the detection seat is provided with a material pushing cylinder, the material pushing cylinder drives the movable sliding block, and the movable sliding block can be pushed forwards or pulled backwards to reset by the material pushing cylinder.
Further, the arm lock mounting panel on install and remove the arm lock, test the arm lock, remove the arm lock and set up side by side, install the transfer arm lock on the mesa, transfer arm lock opening up, test the arm lock, remove the arm lock activity and be located the top of transfer arm lock.
Furthermore, the lower part of the transfer sliding block protrudes to two sides, and a sliding groove of the detection seat is correspondingly provided with a groove for limiting the transfer sliding block.
Furthermore, the table board is provided with a sub-packaging barrel, the bottom surface of the sub-packaging barrel is provided with a motor, and the sub-packaging barrel is used for placing the carbon sheets after detection.
The beneficial effects of the utility model reside in that: send into the carbon piece and detect the seat, the resistance detects when the carbon piece is got to the test arm lock clamp, and is very convenient, can carry out the resistance to the carbon piece fast and detect to classify the carbon piece, realize quick automated production, production efficiency is high.
Drawings
Fig. 1 is a schematic structural diagram of the present invention.
Fig. 2 is a schematic view of a partial structure of the present invention.
Fig. 3 is a schematic view of a partial structure of the present invention.
Fig. 4 is a partial structural schematic diagram of fig. 3.
Fig. 5 is a partially enlarged schematic view of fig. 4.
Fig. 6 is a schematic view of a local structure of the present invention.
Fig. 7 is a schematic view of the structure of the transfer slide block of the present invention.
Fig. 8 is a schematic view of the structure of the split charging barrel of the present invention.
Reference numbers and descriptions:
Detailed Description
The present invention will be further described with reference to the accompanying drawings.
See fig. 1-8, the utility model discloses carbon piece resistance automatic testing sorter, which comprises a table top, transversely install feeding track 2 on the mesa, detect seat 3, partial shipment bucket 7, feeding track 2 is located the side of detecting seat 3, detect the top of seat 3 and install the test arm lock 4 that can follow X, Y, Z axle removals, the detection compression leg 14 that is used for detecting is installed at the clamp position of test arm lock 4, it is connected to the detection control ware to detect compression leg 14, the detection control ware has the display screen, feeding track 2 is connected to vibrations dish 1, vibrations dish 1 is located the next door of mesa, feeding track 2 is vertical to be installed, carbon piece 23 is by vertical pay-off.
The utility model discloses an install transfer arm lock 5 on the mesa, 5 openings in transfer arm lock up, transfer arm lock 5 is located and detects between seat 3, the partial shipment bucket 7. The test clamping arm 4 and the movable clamping arm 6 are movably arranged above the transfer clamping arm 5.
See fig. 3, the utility model discloses a support is installed to the mesa top, and transverse mounting has horizontal mounting panel 11 on the support, and the horizontal cunning is equipped with movable plate 10 on the horizontal mounting panel 11, and movable plate 10 vertically slides and is equipped with arm lock mounting panel 8, and lift cylinder 9 is connected to arm lock mounting panel 8's top, and lift cylinder 9 drives arm lock mounting panel 8 elevating movement.
The utility model discloses a install horizontal cylinder 12 on the support, horizontal cylinder 12 connects the movable plate, and horizontal cylinder 12 drives the horizontal lateral shifting of 10 of movable plate.
The utility model discloses a buffer 13 that restriction movable plate 10 removed is installed at the both ends of horizontal mounting panel 11.
See fig. 4, the utility model discloses an install test arm lock 4, remove arm lock 6 on the arm lock mounting panel 8 respectively, test arm lock 4, remove arm lock 6 highly the same. The finger cylinder can be directly adopted for the test clamping arm 4 and the movable clamping arm 6. Of course, it is also possible to install only the test clamp arm 4 and directly transfer the carbon sheet 23 into the sub-packaging barrel 7 after the test is completed.
See fig. 5, the utility model discloses a two sets of detection compression leg 14 are installed to test arm lock 4's lower extreme, detect compression leg 14 and be connected with the detection controller, and when carbon piece 23 was cliied to test arm lock 4, can be detected carbon piece 23 by the detection controller is automatic to show the testing result through the display. The detection compression leg 14 is horizontally arranged, and when the carbon sheet 23 is clamped by the test clamping arm 4, the carbon sheet 23 can be vertically clamped by the detection compression leg 14, so that the detection accuracy is ensured.
The utility model discloses a test arm lock 4 can carry out the resistance to carbon piece 23 and detect when cliping carbon piece 23, and simultaneously, test arm lock 4 tests and accomplishes the back, moves carbon piece 23 to transfer arm lock 5, and transfer arm lock 5 can open, receive and close. The movable clamping arm 6 is responsible for transferring the carbon sheet 23 on the transfer clamping arm 5 into the subpackaging barrel 7, so that only the test clamping arm 4 is provided with the detection pressing column 14.
See fig. 6, the utility model discloses a side butt joint that detects seat 3 and the feeding track 2 of vibrations dish 1 connection, the upper end that detects seat 3 has the spout, the perpendicular feeding track 2 of spout, the spout internal slip is equipped with and transfers slider 16.
The front end of the detection seat 3 is provided with a penetrating rod moving cylinder 17, the penetrating rod moving cylinder 17 drives a penetrating rod 18, and the penetrating rod 18 movably penetrates into a sliding groove of the detection seat 3.
The rear end of the detection seat 3 is provided with a material pushing cylinder 15, and the material pushing cylinder 15 drives a movable sliding block 16.
See fig. 7, the utility model discloses a transfer the anterior carbon piece standing groove 19 of having seted up of slider 16, the axis of slider 16 is transferred perpendicularly to carbon piece standing groove 19, and carbon piece 23 can push into in the carbon piece standing groove 19 from the side. The rear end of the movable sliding block 16 is provided with a clamping part which is used for connecting the material pushing cylinder 15. The front end of the transfer sliding block 16 is provided with a hole along the central axis, the hole penetrates through the carbon sheet placing groove 19 and is used for penetrating a penetrating rod 18 driven by a penetrating rod moving cylinder 17 to penetrate through the through hole of the carbon sheet 23, after the carbon sheet 23 is pushed into the carbon sheet placing groove 19, the penetrating rod moving cylinder 17 drives the penetrating rod 18 to penetrate through the through hole of the carbon sheet 23, so that the carbon sheet 23 is guaranteed to be correct in position, and the carbon sheet 23 can be accurately tested by the test clamping arm 4.
The lower part of transferring the slider 16 is to both sides protrusion to it is spacing with the spout that detects seat 3 to be used for, transfer the lower part of slider 16 and seted up spacing hole 20, detect seat 3 and be furnished with the gag lever post, the gag lever post penetrates spacing hole 20, ensures to transfer the displacement distance of slider 16.
See fig. 8, the utility model discloses a partial shipment bucket 7 has a plurality ofly, places in rotatory bucket 22, and motor 21 is installed to the bottom surface of rotatory bucket 22, and motor 21 drive rotatory bucket 22 is rotatory to the partial shipment bucket 7 dress carbon piece 23 of difference.
The utility model discloses a theory of operation is:
the vibration disc 1 sends out the carbon sheet 23, the carbon sheet 23 is sent into a carbon sheet placing groove 19 of a transfer sliding block 16 along a feeding track 2, a material pushing cylinder 15 pushes the transfer sliding block 16 forwards, a penetrating rod moving cylinder 17 drives a penetrating rod 18, the penetrating rod 18 penetrates the transfer sliding block 16, the penetrating rod 18 enables the carbon sheet 23 to be positioned, a lifting cylinder 9 drives a clamping arm mounting plate 8 to descend, a test clamping arm 4 clamps the carbon sheet 23, and the carbon sheet 23 is tested through a detection controller;
after the test is finished, the penetrating rod moving cylinder 17 drives the penetrating rod 18 to reset, the lifting cylinder 9 drives the clamping arm mounting plate 8 to ascend, the test clamping arm 4 clamps the carbon sheet 23 to ascend, and the material pushing cylinder 15 pulls the transfer sliding block 16 backwards to reset to wait for the next carbon sheet 23;
the horizontal cylinder 12 drives the moving plate 10 to move transversely, the test clamping arm 4 is positioned above the transfer clamping arm 5, the lifting cylinder 9 drives the clamping arm mounting plate 8 to descend, the test clamping arm 4 puts the carbon sheet 23 into the transfer clamping arm 5, the lifting cylinder 9 drives the clamping arm mounting plate 8 to ascend and reset, and the horizontal cylinder 12 drives the moving plate 10 to move transversely and reset;
the lift cylinder 9 drive arm lock mounting panel 8 descends, and test arm lock 4 clamp is got next carbon piece 23, simultaneously, moves arm lock 6 and moves down to press from both sides and get carbon piece 23 on the transfer arm lock 5, treats that arm lock mounting panel 8 moves, when test arm lock 4 clamp is got next carbon piece 23 and moves transfer arm lock 5 top, moves arm lock 6 and presss from both sides last carbon piece 23 and moves the top of partial shipment bucket 7 to put into partial shipment bucket 7 with carbon piece 23.
The utility model discloses can carry out the resistance to carbon piece 23 fast and detect to classify carbon piece 23, realize quick automated production, production efficiency is high.
Of course, the above-mentioned embodiments are only preferred examples of the present invention, and not intended to limit the scope of the present invention, so that all equivalent changes or modifications made by the structure, features and principles described in the claims of the present invention should be included in the claims of the present invention.
Claims (10)
1. Automatic test sorter of carbon piece resistance, its characterized in that: the test clamp comprises a table top and a test clamp arm, wherein a test seat is mounted on the table top, the test clamp arm is movably located above the test seat, a detection pressure column for detection is mounted at the clamping part of the test clamp arm, and the detection pressure column is connected to a detection controller.
2. The automatic carbon sheet resistance testing and sorting machine of claim 1, wherein: the side of the detection seat is correspondingly provided with a feeding track, the feeding track is connected to a vibration disc, and the vibration disc is positioned beside the table board.
3. The automatic carbon sheet resistance testing and sorting machine of claim 1, wherein: a bracket is arranged above the table top, a transverse mounting plate is transversely arranged on the bracket, a moving plate is transversely arranged on the transverse mounting plate in a sliding manner, a clamping arm mounting plate is longitudinally arranged on the moving plate in a sliding manner, a lifting cylinder is connected above the clamping arm mounting plate, and a test clamping arm is arranged on the clamping arm mounting plate; the bracket is provided with a horizontal cylinder which is connected with a moving plate.
4. The automatic carbon sheet resistance testing and sorting machine of claim 1, wherein: the upper end of the detection seat is provided with a sliding groove, a transfer sliding block is arranged in the sliding groove in a sliding mode, and the front portion of the transfer sliding block is provided with a carbon sheet placing groove.
5. The automatic carbon sheet resistance testing and sorting machine of claim 4, wherein: the front end of the transfer sliding block is provided with a hole along the central axis, and the hole penetrates through the carbon sheet placing groove.
6. The automatic carbon sheet resistance testing and sorting machine of claim 5, wherein: the front end of the detection seat is provided with a penetrating rod moving cylinder, the penetrating rod moving cylinder drives a penetrating rod, and the penetrating rod movably penetrates into a sliding groove of the detection seat.
7. The automatic carbon sheet resistance testing and sorting machine of claim 4, wherein: the rear end of the detection seat is provided with a material pushing cylinder which drives the movable sliding block.
8. The automatic carbon sheet resistance testing and sorting machine of claim 3, wherein: the arm lock mounting panel on install and remove the arm lock, test the arm lock, remove the arm lock and set up side by side, install the transfer arm lock on the mesa, transfer arm lock opening up, test the arm lock, remove the arm lock activity and be located the top of transfer arm lock.
9. The automatic carbon sheet resistance testing and sorting machine of claim 4, wherein: the lower part of the transfer sliding block protrudes to two sides, and the sliding groove of the detection seat is correspondingly provided with a groove.
10. The automatic carbon sheet resistance testing and sorting machine of claim 1, wherein: the table board is provided with a sub-packaging barrel, and the bottom surface of the sub-packaging barrel is provided with a motor.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202121422306.8U CN215142346U (en) | 2021-06-24 | 2021-06-24 | Automatic testing and sorting machine for carbon sheet resistance |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202121422306.8U CN215142346U (en) | 2021-06-24 | 2021-06-24 | Automatic testing and sorting machine for carbon sheet resistance |
Publications (1)
Publication Number | Publication Date |
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CN215142346U true CN215142346U (en) | 2021-12-14 |
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Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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CN202121422306.8U Active CN215142346U (en) | 2021-06-24 | 2021-06-24 | Automatic testing and sorting machine for carbon sheet resistance |
Country Status (1)
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CN (1) | CN215142346U (en) |
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2021
- 2021-06-24 CN CN202121422306.8U patent/CN215142346U/en active Active
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