CN217516241U - Magnetic stripe shifts with piling up platform - Google Patents
Magnetic stripe shifts with piling up platform Download PDFInfo
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- CN217516241U CN217516241U CN202221824650.4U CN202221824650U CN217516241U CN 217516241 U CN217516241 U CN 217516241U CN 202221824650 U CN202221824650 U CN 202221824650U CN 217516241 U CN217516241 U CN 217516241U
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- magnetic stripe
- sponge
- air
- dehumidification
- platform
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Abstract
The utility model provides a magnetic stripe shifts with piling up platform. The magnetic stripe shifts with piling up the platform including piling up the platform, transfer device, pressing from both sides and getting the device and expect full detection sensor, transfer device sets up pile up the bench, press from both sides and get the device setting and be in transfer device is last, expect full detection sensor setting and be in pile up the bench. The utility model provides a magnetic stripe shifts with piling up platform has the advantage that piles up efficiency higher, can in time report to the police, and can reduce dust impurity and fall into the magnetic stripe when piling up the overflow.
Description
Technical Field
The utility model relates to a coiler technical field especially relates to a magnetic stripe shifts with piling up platform.
Background
The winder axle is for leading to the axle, lead to an axle left side, the bearing is installed on the right side, the bearing frame, the right side board of reel is fixed and is being led to epaxially, the right side board is circularly, the periphery is equipped with the through-hole, the reel extension rod inserts in the through-hole, the reel pull rod passes through round pin axle swing joint in the through-hole of right side board, the left side of reel pull rod is equipped with reel left side frame branch that corresponds with the reel pull rod, reel pull rod and reel left side frame branch hinged joint, the lower extreme of reel frame branch is fixed in adjusting nut's the outside by hinged joint, adjusting nut's inboard screw in lead screw adjusts the reel.
At present in the coiler of magnetic stripe production, its pile up the platform and have to pile up the problem that the inefficiency, be difficult to detect the overflow state after piling up, simultaneously because the magnetic stripe is comparatively sensitive, a large amount of dusts in the top are infected with easily in the magnetic stripe in production, influence the quality of magnetic stripe.
Therefore, there is a need to provide a new stacking platform for transferring magnetic strips to solve the above technical problems.
SUMMERY OF THE UTILITY MODEL
The utility model provides a technical problem provide a magnetic stripe transfer with piling up platform that has that pile up efficiency is higher, can in time report to the police, and can reduce dust impurity and fall into the magnetic stripe when piling up the overflow.
For solving the technical problem, the utility model provides a magnetic stripe shifts with piling up platform includes: pile up platform, transfer device, press from both sides and get device and full detection sensor of material, the transfer device sets up pile up the bench, press from both sides and get the device setting and be in on the transfer device, full detection sensor of material sets up pile up the bench.
Preferably, the clamping device is driven by a clamping cylinder, and the transfer device is driven by a moving cylinder.
Preferably, it is located to pile up the platform one side that the full detection sensor of material is provided with dust removal mechanism, dust removal mechanism includes two supports, cloth tuber pipe, filter vat, goes out tuber pipe, drainage fan and air-supply line, two the equal fixed mounting of support is in it is located to pile up the platform one side that the full detection sensor of material is expected, cloth tuber pipe fixed mounting is two on the support, the cloth tuber pipe is located the oblique top that the full detection sensor of material is expected, the filter vat sets up one side of piling up the platform, it is in to go out tuber pipe fixed mounting cloth tuber pipe with on the filter vat, drainage fan sets up one side of filter vat, air-supply line fixed mounting be in the filter vat with on the drainage fan.
Preferably, water storage chamber and dehumidification chamber have been seted up on the filter vat, the dehumidification chamber is located the top in water storage chamber is linked together, the air-out end of air-supply line extends to the bottom in water storage chamber, the dehumidification chamber with it is linked together to go out the tuber pipe, the top in dehumidification chamber is the opening, the closing cap is installed to the top flange of filter vat, the closing cap with the open-top looks adaptation in dehumidification chamber, the dehumidification intracavity is provided with the dehumidification box, the top of dehumidification box is the opening, the top of dehumidification box with the bottom of closing cap closely laminates.
Preferably, the dehumidification box divide into dry groove and sponge groove, dry groove is located the dehumidification box is close to one side of air-out pipe, it has the separation net all to fix on the both sides inner wall in dry groove to inlay, the sponge groove is kept away from the air inlet has been seted up to one side in dry groove, slidable mounting has the pressure net in the sponge groove.
Preferably, except that the wet chamber is kept away from slidable mounting has the transfer line on one side inner wall of air-out pipe, the one end of transfer line is run through the air inlet extends to the sponge inslot with press the net to contact, the other end of transfer line extends to the filter vat is outer and fixed mounting has the guide pulley, slidable mounting is equipped with the spring on the transfer line, the spring is located outside the filter vat, the filter vat is located one side fixed mounting of transfer line has two backup pads, two the backup pad is located respectively the both sides of transfer line, two it installs same cam to rotate in the backup pad, the cam with the guide pulley contacts, one of them one side fixed mounting of backup pad has the motor, the output shaft of motor with the transmission shaft fixed connection of cam.
Preferably, a drying agent is arranged in the drying groove, a dehumidifying sponge is placed in the sponge groove, a water outlet is formed in the inner wall of the bottom of the sponge groove, and the water outlet is communicated with the water storage cavity.
Compared with the prior art, the utility model provides a magnetic stripe shifts with piling up platform has following beneficial effect:
the utility model provides a magnetic stripe shifts with piling up platform:
1. the stacking efficiency is improved through automatic stacking, manpower is greatly liberated, and meanwhile, people can find the overflow alarm in time, so that the operation is convenient;
2. the dust removal mechanism can remove dust from air and then discharge the air to the upper part of the stacking table, so that the upper part of the stacking table is blown, dirty air is discharged, impurities in the air are adsorbed by water in the water storage cavity, water vapor is adsorbed by the dehumidification cavity, the influence on the magnetic stripe is reduced, and the sealing cover is convenient for replacing a dehumidification piece in the dehumidification box;
3. can carry out once main dehumidification through the sponge in the sponge inslot, the desiccant in the dry tank can carry out the secondary dehumidification, ensures dehumidification effect, presses the net and can extrude the sponge when necessary, guarantees sponge dehumidification and air trafficability characteristic, carries out reciprocating motion through a plurality of subassemblies by cam drive's mode and can compress pressing the net, makes it extrude water to the sponge.
Drawings
Fig. 1 is a schematic three-dimensional structure diagram of a first embodiment of a stacking platform for transferring a magnetic stripe according to the present invention;
fig. 2 is a schematic diagram of a three-dimensional structure of a second embodiment of a stacking platform for magnetic stripe transfer according to the present invention;
FIG. 3 is an enlarged view of the portion A shown in FIG. 2;
FIG. 4 is a schematic sectional view of the filtering barrel of the present invention;
FIG. 5 is an enlarged schematic view of a portion B shown in FIG. 4;
fig. 6 is an enlarged structural view of a portion C shown in fig. 4.
The reference numbers in the figures: 1. a stacking table; 2. a transfer device; 3. a gripping device; 4. a full charge detection sensor; 5. a support; 6. distributing an air pipe; 7. a filter vat; 8. a water storage cavity; 9. a dehumidification chamber; 10. an air outlet pipe; 11. a drainage fan; 12. an air inlet pipe; 13. sealing the cover; 14. a dehumidification box; 15. a drying tank; 16. a sponge groove; 17. an isolation net; 18. an air inlet; 19. pressing the net; 20. a transmission rod; 21. a guide wheel; 22. a spring; 23. a support plate; 24. a cam; 25. a motor.
Detailed Description
The present invention will be further described with reference to the accompanying drawings and embodiments.
The first embodiment:
please refer to fig. 1. The stacking platform for magnetic stripe transfer comprises: pile up platform 1, transfer device 2, press from both sides and get device 3 and full detection sensor 4 of material, transfer device 2 sets up pile up on the platform 1, press from both sides and get device 3 and set up on transfer device 2, full detection sensor 4 of material sets up pile up on the platform 1.
The clamping device 3 is driven by a clamping cylinder, and the transfer device 2 is driven by a moving cylinder.
In this embodiment:
during the use, transfer device 2 mainly shifts the magnetic stripe that accomplishes the spiral and arrange the operation on the magnetic stripe conveyer belt to the magnetic stripe and piles up 1 enterprising deposit, and arrange the magnetic stripe neatly, press from both sides and get device 3 and be when the magnetic stripe reachs the assigned position on the magnetic stripe conveyer belt, it gets away the conveyer belt to arrange the coiling product clamp well, and cooperate through magnetic stripe transfer device 2, place the magnetic stripe and pile up 1, the magnetic stripe piles up 1 and can place a plurality of magnetic stripes of accomplishing the spiral and arranging, the arrangement of a plurality of magnetic stripes slows down the time for operating personnel's operation, the full detection sensor 4 in use of material is as safety device, when the magnetic stripe piles up the magnetic stripe on 1, this device stops the operation and sends out the alarm and notifies the operating personnel to come the operation.
Compared with the prior art, the utility model provides a magnetic stripe shifts with piling up platform has following beneficial effect:
the utility model provides a magnetic stripe shifts with piling up platform has improved through automatic piling up and has piled up efficiency, has liberated the manpower greatly, carries out the police dispatch simultaneously and can make people in time discover, the operation of being convenient for when the overflow.
Second embodiment:
based on the stacking platform for magnetic stripe transfer provided by the first embodiment of the application, the second embodiment of the application provides another stacking platform for magnetic stripe transfer. The second embodiment is merely a preferred way of the first embodiment, and the implementation of the second embodiment does not affect the implementation of the first embodiment alone.
The second embodiment of the present invention will be further explained with reference to the drawings and the embodiments.
Referring to fig. 2-6 in combination, the stacking platform for transferring magnetic stripes further comprises a dust removing mechanism, the dust removing mechanism is disposed on one side of the stacking platform 1 located on the material full detection sensor 4, the dust removing mechanism comprises two supports 5, an air distribution pipe 6, a filter vat 7, an air outlet pipe 10, a drainage fan 11 and an air inlet pipe 12, the two supports 5 are both fixedly mounted on one side of the stacking platform 1 located on the material full detection sensor 4, the air distribution pipe 6 is fixedly mounted on the two supports 5, the air distribution pipe 6 is located obliquely above the material full detection sensor 4, the filter vat 7 is disposed on one side of the stacking platform 1, the air outlet pipe 10 is fixedly mounted on the air distribution pipe 6 and the filter vat 7, the drainage fan 11 is disposed on one side of the filter vat 7, and the air inlet pipe 12 is fixedly mounted on the filter vat 7 and the drainage fan 11, the dust removal mechanism can remove dust from air and then discharge the dust to the upper part of the stacking table 1, so that the upper part of the stacking table 1 is blown, and dirty air is discharged.
The last water storage chamber 8 and the dehumidification chamber 9 of having seted up of filter vat 7, the dehumidification chamber 9 is located the top in water storage chamber 8 is linked together, the air-out end of air-supply line 12 extends to the bottom in water storage chamber 8, the dehumidification chamber 9 with it is linked together to go out tuber pipe 10, the top in dehumidification chamber 9 is the opening, the top flange mounting of filter vat 7 has closing cap 13, closing cap 13 with the open-top looks adaptation of dehumidification chamber 9, be provided with dehumidification box 14 in the dehumidification chamber 9, the top of dehumidification box 14 is the opening, the top of dehumidification box 14 with the bottom of closing cap 13 closely laminates, and through the water in the water storage chamber 8 with impurity absorption in the air, dehumidification chamber dehumidification 9 adsorbs steam, reduces the influence to the magnetic stripe, and the dehumidification piece in the dehumidification box 14 is convenient for changing to the closing cap 13.
The dehumidifying cavity 9 is far away from a transmission rod 20 is slidably mounted on the inner wall of one side of the air outlet pipe 10, one end of the transmission rod 20 penetrates through the air inlet 18 and extends to the interior of the sponge groove 16 and the pressure net 19 is contacted, the other end of the transmission rod 20 extends to the exterior of the filter barrel 7 and is fixedly mounted with a guide wheel 21, a spring 22 is slidably sleeved on the transmission rod 20, the spring 22 is positioned outside the filter barrel 7, the filter barrel 7 is positioned on one side of the transmission rod 20 and is fixedly mounted with two support plates 23, the two support plates 23 are respectively positioned on two sides of the transmission rod 20, two same cam 24 is rotatably mounted on the support plates 23, the cam 24 is contacted with the guide wheel 21, one of the two support plates 23 is fixedly mounted with a motor 25 on one side, and an output shaft of the motor 25 is fixedly connected with a transmission shaft of the cam 24, the pressing net 19 can be compressed by the reciprocating motion of the components driven by the cam 24, so that the sponge is pressed out of water.
A drying agent is arranged in the drying groove 15, a dehumidifying sponge is arranged in the sponge groove 16, a water outlet is formed in the inner wall of the bottom of the sponge groove 16, and the water outlet is communicated with the water storage cavity 8.
In this embodiment:
before use, firstly, the cover 13 is opened, the drying agent in the drying groove 15 in the dehumidifying box 14 is confirmed to be usable, the sponge in the sponge groove 16 is normal, and meanwhile, the water in the water storage cavity 8 is confirmed to be enough to be used;
when the dehumidifying device is used, the drainage fan 11 is started, the drainage fan 11 guides wind into the water storage cavity 8 through the air inlet pipe 12, so that air is aerated in water, impurities in the air are removed through water, cleaner air is guided into the dehumidifying cavity 9 and is guided into the dehumidifying box 14 through the air inlet 18 on one side, the sponge in the sponge groove 16 adsorbs water vapor for the first time, then the sponge enters the drying groove 15 and is adsorbed again through a dehumidifying agent, and the dehumidified air is guided into the air distribution pipe 6 through the air outlet pipe 10 and then is discharged, so that the upper part of the stacking table 1 is blown, and dirty air is discharged;
because the sponge adsorbs a large amount of steam and can reduce the air flow in long-term use, starting motor 25 this moment, motor 25's output shaft drives cam 24 and rotates, cam 24 promotes transfer line 20 by guide pulley 21 and slides and makes it carry out the top to pressing net 19 when rotating, compress spring 22 simultaneously, press net 19 to compress the sponge this moment, make it extrude moisture content, extruded moisture content flows into in water storage chamber 8 once more, with this life cycle of extension sponge, reduce people and change the frequency, the sponge is because self has the ductility after pressing net 19 to reset, can carry out self-reset.
Compared with the prior art, the utility model provides a magnetic stripe shifts with piling up platform has following beneficial effect:
the utility model provides a magnetic stripe shifts and uses stacking platform, can remove dust the back with the air through dust removal mechanism and go into to stacking table 1's top, thereby blow to stacking table 1 top, the air that will be dirty is arranged away, water through in the water storage chamber 8 adsorbs impurity in with the air, dehumidification chamber 9 adsorbs steam, reduce the influence to the magnetic stripe, closing cap 13 is convenient for change the dehumidification piece in dehumidification box 14, sponge through in the sponge groove 16 can carry out once main dehumidification, desiccant in the dry trough 15 can carry out the secondary dehumidification, ensure the dehumidification effect, press net 19 can extrude the sponge when necessary, guarantee sponge dehumidification and air trafficability characteristic, carry out reciprocating motion by cam 24 driven mode through a plurality of subassemblies and can compress pressing net 19, make it extrude out water to the sponge.
It should be noted that the device structure and the accompanying drawings of the present invention mainly describe the principle of the present invention, and in the technology of this design principle, the settings of the power mechanism, the power supply system, the control system, etc. of the device are not completely described, and the details of the power mechanism, the power supply system, and the control system can be clearly known on the premise that those skilled in the art understand the principle of the present invention.
The above only is the embodiment of the present invention, not limiting the scope of the present invention, all the equivalent structures or equivalent processes of the present invention are used in the specification and the attached drawings, or directly or indirectly applied to other related technical fields, and the same principle is included in the protection scope of the present invention.
Claims (7)
1. A stacking platform for magnetic stripe transfer, comprising:
pile up platform, transfer device, press from both sides and get device and full detection sensor of material, the transfer device sets up pile up the bench, press from both sides and get the device setting and be in on the transfer device, full detection sensor of material sets up pile up the bench.
2. The stacking platform for magnetic stripe transfer of claim 1, wherein the gripping device is driven by a gripping cylinder, and the transfer device is driven by a moving cylinder.
3. The stacking platform for magnetic stripe transfer according to claim 1, wherein a dust removing mechanism is disposed on one side of the stacking platform located on the material full detection sensor, the dust removing mechanism comprises two supports, an air distribution pipe, a filter vat, an air outlet pipe, a drainage fan and an air inlet pipe, the two supports are both fixedly mounted on one side of the stacking platform located on the material full detection sensor, the air distribution pipe is fixedly mounted on the two supports, the air distribution pipe is located obliquely above the material full detection sensor, the filter vat is disposed on one side of the stacking platform, the air outlet pipe is fixedly mounted on the air distribution pipe and the filter vat, the drainage fan is disposed on one side of the filter vat, and the air inlet pipe is fixedly mounted on the filter vat and the drainage fan.
4. The magnetic stripe shifts and uses stack platform of claim 3, characterized in that, the filter vat has seted up water storage chamber and dehumidification chamber, the dehumidification chamber is located the top in water storage chamber and is linked together, the air-out end of air-supply line extends to the bottom in water storage chamber, the dehumidification chamber with go out the tuber pipe and be linked together, the top in dehumidification chamber is the opening, the closing cap is installed to the top flange of filter vat, the closing cap with the open-top looks adaptation in dehumidification chamber, be provided with the dehumidification box in the dehumidification chamber, the top of dehumidification box is the opening, the top of dehumidification box with the bottom of closing cap closely laminates.
5. The stacking platform for transferring the magnetic stripes according to claim 4, wherein the dehumidifying boxes are divided into drying grooves and sponge grooves, the drying grooves are located on one sides, close to the air outlet pipes, of the dehumidifying boxes, isolating nets are fixedly embedded on the inner walls of the two sides of the drying grooves, air inlets are formed in one sides, far away from the drying grooves, of the sponge grooves, and the sponge grooves are internally and slidably provided with pressing nets.
6. The stacking platform for transferring magnetic stripes according to claim 5, wherein a transmission rod is slidably mounted on the inner wall of the dehumidification chamber on the side away from the air outlet pipe, one end of the transmission rod penetrates through the air inlet and extends into the sponge groove to be contacted with the pressing net, the other end of the transmission rod extends to the outside of the filter barrel and is fixedly provided with a guide wheel, a spring is sleeved on the transmission rod in a sliding way, the spring is positioned outside the filter barrel, two support plates are fixedly arranged on one side of the filter barrel, which is positioned on the transmission rod, the two support plates are respectively positioned on two sides of the transmission rod, the two support plates are rotatably provided with the same cam, the cam is contacted with the guide wheel, and a motor is fixedly mounted on one side of one of the supporting plates, and an output shaft of the motor is fixedly connected with a transmission shaft of the cam.
7. The stacking platform for magnetic stripe transfer of claim 5, wherein a drying agent is disposed in the drying tank, a dehumidifying sponge is disposed in the sponge tank, and a water outlet is disposed on the inner wall of the bottom of the sponge tank and communicated with the water storage cavity.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202221824650.4U CN217516241U (en) | 2022-07-14 | 2022-07-14 | Magnetic stripe shifts with piling up platform |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202221824650.4U CN217516241U (en) | 2022-07-14 | 2022-07-14 | Magnetic stripe shifts with piling up platform |
Publications (1)
Publication Number | Publication Date |
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CN217516241U true CN217516241U (en) | 2022-09-30 |
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CN202221824650.4U Active CN217516241U (en) | 2022-07-14 | 2022-07-14 | Magnetic stripe shifts with piling up platform |
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CN (1) | CN217516241U (en) |
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2022
- 2022-07-14 CN CN202221824650.4U patent/CN217516241U/en active Active
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