CN210655016U - Card unloading device - Google Patents

Card unloading device Download PDF

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Publication number
CN210655016U
CN210655016U CN201921159684.4U CN201921159684U CN210655016U CN 210655016 U CN210655016 U CN 210655016U CN 201921159684 U CN201921159684 U CN 201921159684U CN 210655016 U CN210655016 U CN 210655016U
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China
Prior art keywords
card
groove
draw
card slot
guide structure
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Active
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CN201921159684.4U
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Chinese (zh)
Inventor
何思博
李梅芬
程治国
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Eastcompeace Technology Co Ltd
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Eastcompeace Technology Co Ltd
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Priority to CN201921159684.4U priority Critical patent/CN210655016U/en
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Abstract

The utility model discloses a lower clamping device, including the first draw-in groove of horizontal setting and the second draw-in groove of vertical setting, the output tip and the second draw-in groove erection joint of first draw-in groove install conveyer on the first draw-in groove, and conveyer is used for transporting the card to the second draw-in groove, is equipped with guide structure on the first draw-in groove, and guide structure sets up the output tip at first draw-in groove, and guide structure can be with the card of first draw-in groove transportation to the second draw-in groove in. The card slots which are transversely arranged are added, so that the number of cards can be increased, and in the longitudinal card-placing process, the first card of the longitudinal card slot cannot be subjected to more gravity from the card above, and the card can be better transferred to the longitudinal card slot from the transverse card slot by the guide structure.

Description

Card unloading device
Technical Field
The utility model relates to a carry the field, especially relate to a lower device that clamps.
Background
The intelligent chip card production equipment is provided with a lower card station, the lower card station is mainly used for placing a certain amount of cards once, the production equipment can continuously obtain card bodies in the lower card station to carry out production and processing of each procedure, but the lower card device in the prior art is directly of a longitudinal structure, if too many cards are placed, the pressure on one card at the bottom is too heavy, the card pulling fault can occur to the card pulling sucker positioned below the lower card station, so that the number of the card sides is not large, and the working efficiency is low.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to solve one of the technical problem that exists among the prior art at least, provide a clamp device down, make vertical conveying card be difficult for breaking down through the device that is equipped with horizontal conveying card.
The utility model discloses a realize through following technical scheme:
the utility model provides a lower device that clamps, includes the first draw-in groove that transversely sets up and vertically sets up the second draw-in groove, the output tip and the second draw-in groove erection joint of first draw-in groove, install conveyer on the first draw-in groove, conveyer is used for transporting the card to the second draw-in groove, is equipped with guide structure on the first draw-in groove, and guide structure sets up the output tip at first draw-in groove, and guide structure can transport the card of first draw-in groove transportation to the second draw-in groove in.
The card slots which are transversely arranged are added, so that the number of cards can be increased, and in the longitudinal card-placing process, the first card of the longitudinal card slot cannot be subjected to more gravity from the card above, and the card can be better transferred to the longitudinal card slot from the transverse card slot by the guide structure.
Preferably, the conveying device comprises a conveyor belt and a motor for driving the conveyor belt to operate. The conveyer belt conveying card can be fine with the steady transportation of card.
Preferably, the transport device is provided with a stop block, and the stop block can abut against the card at the rear end of the card conveying direction. The stopper prevents the card from being rubbed during the transfer process so that the card does not advance at a certain position.
Preferably, the guide structure comprises a guide block, and the height of the guide block relative to the first clamping groove is adjustable. The height of the guide block can be adjusted, and when the card is conveyed, the card can conveniently enter the second clamping groove by adjusting the proper height.
Preferably, the guide structure further comprises a vertical waist-round hole formed in the side wall of the first clamping groove, and the height of the guide block relative to the first clamping groove is adjusted in a mode that the vertical waist-round hole is penetrated through by the bolt and the nut. The up-down height of the guide block can be adjusted.
Preferably, the guide structure further comprises position adjusting threaded holes formed in the side wall of the first clamping groove, at least two position adjusting threaded holes are vertically formed in the guide structure, and the height of the guide block relative to the first clamping groove is adjusted in a mode that the position adjusting threaded holes are penetrated through by screws. The up-down height of the guide block can be adjusted.
Preferably, the guide structure comprises an elastic sheet arranged on the side wall of the first clamping groove, and the elastic sheet can be pressed and clamped on the side or above the side. To secure the position of the card and to facilitate the turning of the card.
Preferably, the device further comprises a controller and an optical fiber sensor arranged on the second clamping groove, the optical fiber sensor is used for detecting the card in the second clamping groove, and the controller is used for receiving signals of the optical fiber sensor and controlling the opening and closing of the transportation device. The light sensor is used for detecting whether the number of the second card slot cards is sufficient or not, and then signals are transmitted to the controller, and the controller is used for controlling whether the cards are transported to the second card slot or not.
Preferably, the optical fiber sensor is installed at a position where the second card slot is connected with the first card slot. The number of cards in the second card slot is always in a saturated state.
Preferably, the device further comprises a support frame, and the support frame is used for supporting the first clamping groove. The support frame can fix and support the first clamping groove.
Drawings
The following detailed description of embodiments of the invention is provided in conjunction with the accompanying drawings, in which:
fig. 1 is a schematic overall structure diagram of one embodiment of the present invention;
fig. 2 is a schematic structural diagram of a first card slot according to an embodiment of the present invention;
fig. 3 is a schematic structural diagram of a second card slot according to an embodiment of the present invention.
Detailed Description
As shown in fig. 1 to 3, a card dropping device includes a first card slot 1 transversely disposed and a second card slot 2 longitudinally disposed, an output end portion of the first card slot 1 is connected to the second card slot 2, the connection manner may be by fixing and mounting a screw nut structure, a transportation device is mounted on the first card slot 1, the transportation device is used for transporting a card to the second card slot 2, a guiding structure is disposed on the first card slot 1, the guiding structure is disposed at an output end portion of the first card slot 1, and the guiding structure can transport the card transported by the first card slot 1 to the second card slot 2. The card slots which are transversely arranged are added, so that the number of cards can be increased, and in the longitudinal card placing process, the first card of the longitudinal card slot cannot be subjected to the gravity of a plurality of cards from the upper side, and the card can be better conveyed to the longitudinal card slot from the transverse card slot by the guide structure.
The transport device comprises a conveyor belt 11 and a motor 12 for driving the conveyor belt 11 to run. The conveyer belt conveying card can be fine with the steady transportation of card. The motor can be arranged on the support frame 3, and the stop block 13 can abut against the card at the rear end of the card conveying direction. The stop 13 prevents the card from being rubbed during transport so that the card does not advance in a certain position. The position of the stop block 13 can be adjusted by hands, and when the card in the first card slot 1 is insufficient, the first card slot 1 can be clamped by manpower or other clamping equipment.
The transport device can also be a scraper conveyor which is dragged by a scraper chain and conveys cards in the groove, the scraper conveyor is the prior art and comprises a machine head, a middle part, a machine tail part and the like, and the machine head comprises a machine head frame, a motor, a hydraulic coupler, a speed reducer, a chain wheel and the like. The middle part consists of a transition groove, a middle groove, a chain, a scraper and the like. The tail part is a device for returning the scraper chain. The scraper conveyor is placed as a transport device in the first card slot 1.
The guide structure comprises a guide block 14, and the height of the guide block 14 relative to the first clamping groove 1 is adjustable. The height of the guide block can be adjusted, and when the card is conveyed, the card can conveniently enter the second card slot 2 by adjusting the proper height.
The hole site of being convenient for adjust the 14 height of guide block is still drawn together on the guide structure, and the hole site structure can be the vertical waist round hole that sets up on first draw-in groove 1 lateral wall, and the relative first draw-in groove 1's of mode adjustment height is worn to establish by guide block 14 through bolt and nut. The up-down height of the guide block 14 can be adjusted.
The hole site structure of guide structure can also be the accent screw hole that sets up on first draw-in groove 1 lateral wall, and the vertical at least two that are provided with of accent screw hole, and guide block 14 wears to establish the mode adjustment of accent screw hole through the screw and first draw-in groove 1's height relatively. The up-down height of the guide block 14 can be adjusted.
The guide structure comprises an elastic sheet 15 arranged on the side wall of the first clamping groove 1, and the elastic sheet 15 can be pressed and clamped on the side or above the side. To secure the position of the card and to facilitate the turning of the card.
The guide structure can also be that a guide block is installed at the output end part of the first clamping groove 1, the other end of the guide block is installed at the card inlet end of the second clamping groove 2, the guide block is obliquely connected with the output end of the first clamping groove 1 and the card inlet end of the second clamping groove 2, the card slides into the second clamping groove 2 through the thrust of the conveying belt 11 and the inclined surface of the guide block, and the inclined surface of the guide block is set smoothly.
The device further comprises a controller and an optical fiber sensor 21 arranged on the second clamping groove, wherein the optical fiber sensor 21 is used for detecting the card in the second clamping groove 2, and the controller is used for receiving signals of the optical fiber sensor 21 and controlling the on-off of the transporting device. The light sensor 21 is used to detect whether the number of cards in the second card slot 2 is sufficient, and then transmits a signal to the controller, which controls whether to transport the cards to the second card slot 2.
The fiber-out sensor 21 is installed at a position where the second card slot 2 is connected to the first card slot 1. The number of cards in the second card slot 2 is guaranteed to be always in a saturated state.
The device further comprises a support frame 3, and the support frame 3 is used for supporting the first clamping groove 1. The support frame 3 can fix and support the first card slot 1.
As shown in fig. 1, in the use of the device, when the card on the second card slot 2 is not enough, the optical fiber sensor 21 detects that the card is not enough, a signal is transmitted to the controller, the controller controls the motor 12 of the conveyor belt 11 to work, the conveyor belt 11 pushes the card forward, the last card is pressed by the pressing block 13, when the card is pushed to the joint of the first card slot 1 and the second card slot 2, the card which is about to enter the second card slot 2 is clamped by the elastic piece 15, the pushing and rotating effects of the conveyor belt 11 also have the gravity effect of the card, the card is turned over through the connecting block 14 and enters the second card slot 2, and the operation is performed sequentially until the card in the second card slot 2 reaches the height of the optical fiber sensor 21.
The device further comprises a support frame 3, and the support frame 3 is used for supporting the first clamping groove 1.
The above embodiments are not limited to the technical solutions of the embodiments themselves, and the embodiments may be combined with each other into a new embodiment. The above embodiments are only used for illustrating the technical solutions of the present invention and are not limited thereto, and any modification or equivalent replacement that does not depart from the spirit and scope of the present invention should be covered by the scope of the technical solutions of the present invention.

Claims (10)

1. The utility model provides a lower device that clamps, a serial communication port, including first draw-in groove (1) that transversely sets up and second draw-in groove (2) of vertical setting, the output tip and second draw-in groove (2) erection joint of first draw-in groove (1), install conveyer on first draw-in groove (1), conveyer is used for carrying the card to second draw-in groove (2), be equipped with guide structure on first draw-in groove (1), guide structure sets up the output tip in first draw-in groove (1), guide structure can be with the card of first draw-in groove (1) transportation in second draw-in groove (2) of transporting.
2. A clip releasing device according to claim 1, wherein the transport means comprises a conveyor belt (11) and a motor (12) for operating the conveyor belt (11).
3. A clip spreading device according to claim 1 or 2, wherein the transport device is provided with a stop (13), the stop (13) being adapted to abut the clip at a rear end in the direction of transportation of the clip.
4. A card discharge device according to claim 1, wherein the guide structure comprises a guide block (14), and the height of the guide block (14) relative to the first card slot (1) is adjustable.
5. A card descending device according to claim 4, wherein the guiding structure further comprises a vertical waist circular hole arranged on the side wall of the first card slot (1), and the height of the guiding block (14) relative to the first card slot (1) is adjusted by means of a bolt and a nut penetrating through the vertical waist circular hole.
6. The card descending device according to claim 4, wherein the guiding structure further comprises at least two position adjusting threaded holes arranged on the side wall of the first card slot (1), and the height of the guiding block (14) relative to the first card slot (1) is adjusted in a mode that a screw penetrates through the position adjusting threaded holes.
7. A card-releasing device according to claim 1, characterized in that the guide structure comprises a spring (15) arranged on the side wall of the first card slot (1), the spring (15) being able to press the card laterally or laterally upwards.
8. A card dropping device according to claim 7, further comprising a controller and an optical fiber sensor (21) arranged on the second card slot, wherein the optical fiber sensor (21) is used for detecting the card in the second card slot (2), and the controller is used for receiving the signal of the optical fiber sensor and controlling the opening and closing of the transportation device.
9. A card-removal device according to claim 8, wherein the optical fibre sensor (21) is mounted at the location where the second card slot (2) is connected to the first card slot (1).
10. A card discharge device according to claim 1, further comprising a support frame (3), wherein the support frame (3) is used for supporting the first card slot (1).
CN201921159684.4U 2019-07-22 2019-07-22 Card unloading device Active CN210655016U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201921159684.4U CN210655016U (en) 2019-07-22 2019-07-22 Card unloading device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201921159684.4U CN210655016U (en) 2019-07-22 2019-07-22 Card unloading device

Publications (1)

Publication Number Publication Date
CN210655016U true CN210655016U (en) 2020-06-02

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ID=70840664

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201921159684.4U Active CN210655016U (en) 2019-07-22 2019-07-22 Card unloading device

Country Status (1)

Country Link
CN (1) CN210655016U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114194905A (en) * 2021-12-14 2022-03-18 常州市哈德胜精密科技有限公司 RFID card production line card issuing device

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114194905A (en) * 2021-12-14 2022-03-18 常州市哈德胜精密科技有限公司 RFID card production line card issuing device

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