CN111161463A - Pop can recovery device - Google Patents

Pop can recovery device Download PDF

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Publication number
CN111161463A
CN111161463A CN202010068130.4A CN202010068130A CN111161463A CN 111161463 A CN111161463 A CN 111161463A CN 202010068130 A CN202010068130 A CN 202010068130A CN 111161463 A CN111161463 A CN 111161463A
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CN
China
Prior art keywords
block
pop
flattening
assembly
coin
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Granted
Application number
CN202010068130.4A
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Chinese (zh)
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CN111161463B (en
Inventor
刘羽祚
刘积桢
万志华
翟彤
李彬
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Wuhan Polytechnic University
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Wuhan Polytechnic University
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Priority to CN202010068130.4A priority Critical patent/CN111161463B/en
Publication of CN111161463A publication Critical patent/CN111161463A/en
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Publication of CN111161463B publication Critical patent/CN111161463B/en
Expired - Fee Related legal-status Critical Current
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    • GPHYSICS
    • G07CHECKING-DEVICES
    • G07FCOIN-FREED OR LIKE APPARATUS
    • G07F7/00Mechanisms actuated by objects other than coins to free or to actuate vending, hiring, coin or paper currency dispensing or refunding apparatus
    • G07F7/06Mechanisms actuated by objects other than coins to free or to actuate vending, hiring, coin or paper currency dispensing or refunding apparatus by returnable containers, i.e. reverse vending systems in which a user is rewarded for returning a container that serves as a token of value, e.g. bottles
    • G07F7/0609Mechanisms actuated by objects other than coins to free or to actuate vending, hiring, coin or paper currency dispensing or refunding apparatus by returnable containers, i.e. reverse vending systems in which a user is rewarded for returning a container that serves as a token of value, e.g. bottles by fluid containers, e.g. bottles, cups, gas containers
    • GPHYSICS
    • G07CHECKING-DEVICES
    • G07FCOIN-FREED OR LIKE APPARATUS
    • G07F7/00Mechanisms actuated by objects other than coins to free or to actuate vending, hiring, coin or paper currency dispensing or refunding apparatus
    • G07F7/005Details or accessories

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  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Control Of Vending Devices And Auxiliary Devices For Vending Devices (AREA)

Abstract

The application discloses easy open can recovery unit, including flattening mechanism, spit coin mechanism and collection portion. The flattening mechanism is used for flattening the pop can. The collecting part is used for receiving the crushed pop can. The coin ejecting mechanism has two lead wires in an open circuit state. The flattening mechanism is used for flattening the pop can, and two conducting wires are conducted when the flattened pop can moves to the collecting part, so that the coin ejecting mechanism is electrified and ejects coins. The technical scheme that this application provided is used for retrieving the easy open can, and at the in-process of retrieving the easy open can, and automatic coin of spitting improves people's recovery enthusiasm to improve the rate of recovery of easy open can.

Description

Pop can recovery device
Technical Field
The application relates to the technical field of recovery, in particular to a recovery device for pop cans.
Background
With the development of economy and the progress of society, the recovery of garbage becomes necessary and socially public.
The pop can is formed by stretching light aluminum and is a recyclable article. At present, the recovery rate of the pop cans is low.
Disclosure of Invention
The application provides a ring-pull can recovery unit, ring-pull can recovery unit is used for retrieving the ring-pull can, and at the in-process of retrieving the ring-pull can, spits out the coin automatically, improves people's recovery enthusiasm to improve the rate of recovery of ring-pull can.
The application provides a ring-pull can recovery unit, including flattening mechanism, spit coin mechanism and collection portion. The flattening mechanism is used for flattening the pop can. The collecting part is used for receiving the crushed pop can. The coin ejecting mechanism has two lead wires in an open circuit state. The flattening mechanism is used for flattening the pop can, and two conducting wires are conducted when the flattened pop can moves to the collecting part, so that the coin ejecting mechanism is electrified and ejects coins.
In the above scheme, a zip-top can recovery device is provided, and zip-top can recovery device can flatten and collect the zip-top can, simultaneously, flatten and collect the in-process of zip-top can, spit out coin mechanism and can also spit out the coin to improve the enthusiasm that people retrieved the zip-top can. It should be noted that, after the pop can is flattened by the flattening mechanism, the flattened pop can contacts two conducting wires in the process of moving to the collecting part, so that the conducting wires are connected, the coin ejecting mechanism is powered on to start running, coins are ejected, after the flattened pop can is separated from the conducting wires, the coin ejecting mechanism returns to the power-off state, and the flattened pop can is collected in the collecting part.
In one possible implementation, the flattening mechanism comprises a feed conduit, a flattening assembly, and a discharge conduit;
the flattening assembly is positioned between the feeding pipeline and the discharging pipeline, the flattening assembly is used for flattening the pop-top cans conveyed by the feeding pipeline, and the flattened pop-top cans are discharged to the collecting part by the discharging pipeline;
two wires are positioned at the outlet of the discharge pipeline.
Optionally, in one possible implementation, the collapsing assembly comprises a vertical shifting assembly and a transverse pushing assembly;
the vertical shifting assembly is provided with a shifting block which slides along the vertical direction;
the transverse pushing assembly is provided with a pressing block which slides along the horizontal direction, and an opening communicated with the discharging pipeline is formed in the transverse pushing assembly;
the shifting block is in transmission connection with the pressing block, so that the shifting block is shifted in the vertical direction to drive the pressing block to move horizontally to flatten the pop can, and the flattened pop can enters the discharging pipeline from the opening.
Optionally, in a possible implementation manner, the vertical toggle assembly further includes a vertical slide, and the toggle block is slidably disposed in the vertical slide;
the transverse pushing assembly further comprises a first horizontal slideway, a driving block, a transmission assembly and a second horizontal slideway, the driving block is slidably arranged in the first horizontal slideway along the horizontal direction, the pressing block is slidably arranged in the second horizontal slideway, and the second horizontal slideway forms an opening;
the shifting block is hinged to the driving block through a connecting rod, and the driving block is in transmission connection with the pressing block through a transmission assembly.
Optionally, in a possible implementation, the transmission assembly includes a driving gear and a driven gear, the driving gear is hinged to the driving block through a connecting rod, the driven gear is hinged to the pressing block through a connecting rod, and the driving gear is engaged with the driven gear.
Optionally, in one possible implementation, the coin ejecting mechanism includes a chassis, a slide, an elastic push block, a stopper, and an electromagnet;
the elastic push block is arranged on the slide way, the stop block is arranged on the slide way, and the electromagnet is arranged above the stop block and is connected with two wires;
the chassis is used for placing coins and is provided with a round hole communicated with the slideway;
the coin falls into the slide way through the round hole and is clamped by the elastic push block and the stop block, when the two wires are switched on, the electromagnet adsorbs the stop block, and the coin is pushed out by the elastic push block.
Optionally, in a possible implementation manner, the coin spitting mechanism further includes a first pull wire, and the first pull wire connects the elastic push block and the shifting block.
Optionally, in a possible implementation, the coin ejecting mechanism further comprises a rotating disc and a rotating mechanism;
the rotary disc is rotatably arranged on the base disc, a plurality of placing holes are formed in the rotary disc, and the placing holes are used for placing coins;
the rotating mechanism drives the turntable to rotate so that one of the placing holes corresponds to the round hole.
Optionally, in one possible implementation, the rotating mechanism includes an upper toothed column, a lower toothed column, a housing, a spring, and a second pull wire;
a plurality of guide grooves are formed in the inner wall of the shell, the shell is sleeved between the upper tooth column and the lower tooth column and can slide in the vertical direction relative to the upper tooth column and the lower tooth column, and the shell is connected with the shifting block through a second pull wire;
the upper tooth column is provided with a plurality of upper tooth tips, the lower tooth column is provided with a plurality of lower tooth tips corresponding to the upper tooth tips, and the upper tooth tips and the lower tooth tips are not completely meshed in the guide grooves;
the top end of the upper tooth column is connected with the spring, when the shell slides, the lower tooth tip is separated from the guide groove, and the upper tooth tip pushes the lower tooth tip to rotate, so that the rotary table rotates.
Optionally, in a possible implementation manner, the pop can recycling device further comprises an outer frame;
the flattening mechanism and the coin discharging mechanism are arranged in the outer frame;
the collecting part is a collecting box which can be arranged on the outer frame in a drawing way.
Drawings
In order to more clearly illustrate the technical solutions of the embodiments of the present application, the drawings that are required to be used in the embodiments will be briefly described below, it should be understood that the following drawings only illustrate some embodiments of the present application and therefore should not be considered as limiting the scope, and for those skilled in the art, other related drawings can be obtained from the drawings without inventive effort.
Fig. 1 is a perspective view of the pop can recycling device in this embodiment at a first viewing angle;
fig. 2 is a perspective view of the recovery device of the pop can in the embodiment at a second viewing angle;
FIG. 3 is a perspective view of the collapsing assembly according to the present embodiment;
FIG. 4 is a perspective view of the coin ejecting mechanism according to the present embodiment;
FIG. 5 is a perspective view of the elastic pushing block, the slide way and the electromagnet in the present embodiment;
FIG. 6 is a perspective view of the turntable and the rotating mechanism in the present embodiment;
FIG. 7 is a perspective view of the upper and lower tooth posts in this embodiment;
FIG. 8 is a perspective view of the housing in the present embodiment;
fig. 9 is a perspective view of the collecting part in this embodiment.
Icon: 10-pop can recovery device; 10 a-an outer frame; 10 b-a wire; 10 c-a battery; 10 d-buckling; 11-a flattening mechanism; 12-a coin ejecting mechanism; 12 a-a coin collection box; 13-a collecting section; 20-a vertical toggle assembly; 21-shifting blocks; 22-a vertical slide; 23-a spring; 30-a lateral pushing assembly; 31-briquetting; 32-a first horizontal ramp; 33-a drive block; 34-a transmission assembly; 35-a second horizontal ramp; 40-a turntable; 41-a rotation mechanism; 80-upper tooth tip; 81-lower tooth tip; 90-round hole; 91-placing holes; 110-a feed pipe; 111-a collapsing assembly; 112-a discharge pipe; 120-a chassis; 121-a slide; 122-an elastic push block; 123-a stop block; 124-an electromagnet; 130-road wheels; 340-a drive gear; 341-driven gear; 410-upper tooth column; 411-lower tooth column; 412-a housing; 413-a spring; 4120-guide groove.
Detailed Description
In order to make the objects, technical solutions and advantages of the embodiments of the present application clearer, the technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application, and it is obvious that the described embodiments are some embodiments of the present application, but not all embodiments. The components of the embodiments of the present application, generally described and illustrated in the figures herein, can be arranged and designed in a wide variety of different configurations.
Thus, the following detailed description of the embodiments of the present application, presented in the accompanying drawings, is not intended to limit the scope of the claimed application, but is merely representative of selected embodiments of the application. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present application.
It should be noted that: like reference numbers and letters refer to like items in the following figures, and thus, once an item is defined in one figure, it need not be further defined and explained in subsequent figures.
In the description of the embodiments of the present application, it is to be understood that the terms "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer", and the like, refer to the orientation or positional relationship as shown in the drawings, or as conventionally placed in use of the product of the application, or as conventionally understood by those skilled in the art, and are used merely for convenience of description and for simplicity of description, and do not indicate or imply that the referenced device or element must have a particular orientation, be constructed in a particular orientation, and be operated, and therefore should not be considered as limiting the present application.
In the description of the embodiments of the present application, it should also be noted that, unless otherwise explicitly stated or limited, the terms "disposed," "mounted," "connected," and "connected" are to be construed broadly and may, for example, be fixedly connected, detachably connected, or integrally connected; they may be connected directly or indirectly through intervening media, or they may be interconnected between two elements. The specific meaning of the above terms in the present application can be understood in a specific case by those of ordinary skill in the art.
It should be noted that the embodiments and features of the embodiments in the present application may be combined with each other without conflict.
The technical solution in the present application will be described below with reference to the accompanying drawings.
This embodiment provides a zip-top can recovery unit 10, and zip-top can recovery unit 10 is used for retrieving the zip-top can, and at the in-process of retrieving the zip-top can, and automatic coin of spitting improves people's recovery enthusiasm to improve the rate of recovery of zip-top can.
Referring to fig. 1 and 2, fig. 1 shows a specific structure of a pop can recycling device 10 in a first viewing angle according to the present embodiment. Fig. 2 shows a detailed structure of the can recycling device 10 in a second viewing angle.
The can recovery apparatus 10 includes a crushing mechanism 11, a coin discharge mechanism 12, and a collecting unit 13.
As shown in fig. 1, the collapsing mechanism 11, the coin ejecting mechanism 12, and the collecting box 13 are disposed in the outer frame 10a, and the collecting box is drawably engaged with the outer frame 10a so as to be easily taken out and cleaned.
Wherein, the flattening mechanism 11 is used for flattening the pop-top can. The collecting portion 13 serves to receive the crushed cans. The coin discharge mechanism 12 has two lead wires 10b in an open circuit state. The collapsing mechanism 11 is used to collapse the can, and the collapsed can is moved to the collecting part 13 while the two lead wires 10b are conducted, and the coin discharge mechanism 12 is energized to discharge the coin.
The pop can recovery device 10 can flatten and collect pop cans, and meanwhile, the coin discharge mechanism 12 can discharge coins during the process of flattening and collecting pop cans, so that the enthusiasm of people for recovering pop cans is improved. It should be noted that, after the pop can is crushed by the crushing mechanism 11, the crushed pop can directly or indirectly contacts the two lead wires 10b in the process of moving to the collecting portion 13, so that the two lead wires 10b are connected, the coin ejecting mechanism 12 is powered on to start operating, so as to eject coins, and after the crushed pop can is separated from the lead wires 10b, the coin ejecting mechanism 12 returns to the power-off state, so that the crushed pop can is collected in the collecting portion 13.
The collapsing mechanism 11 comprises an inlet duct 110, a collapsing assembly 111 and an outlet duct 112.
The flattening assembly 111 is positioned between the feeding pipeline 110 and the discharging pipeline 112, the flattening assembly 111 is used for flattening the pop cans conveyed by the feeding pipeline 110, and the flattened pop cans are discharged to the collecting part 13 through the discharging pipeline 112. Two wires 10b are located at the outlet of the discharge duct 112.
As shown in fig. 1, an opening at one end of the feeding duct 110 is located on an outer wall of the outer frame 10a, so that a user can place a can into the feeding duct 110 from the outer frame 10a, an outlet matched with the length of the can is formed at the other end of the feeding duct 110, the can is horizontally dropped into the flattening assembly 111, the flattening assembly 111 is flattened, the flattened can is reduced in length, can enter the discharging duct 112 and finally drops into the collecting portion 13, and the flattened can is in contact with two conducting wires 10b at the outlet of the discharging duct 112, so that the coin ejecting mechanism 12 is powered on.
Referring to fig. 3, fig. 3 shows a specific structure of the collapsing assembly 111.
The collapsing assembly 111 comprises a vertical toggle assembly 20 and a lateral pushing assembly 30.
The vertical dial assembly 20 has a dial block 21 that slides in a vertical direction.
The lateral pushing assembly 30 has a pressing block 31 sliding in a horizontal direction, and the lateral pushing assembly 30 is formed with an opening communicating with the discharging duct 112.
The shifting block 21 is in transmission connection with the pressing block 31, so that the pressing block 31 is driven to move horizontally to crush the pop cans by shifting the shifting block 21 in the vertical direction, and the crushed pop cans enter the discharge pipeline 112 from the opening.
Wherein, the lateral wall of outer frame 10a has seted up the bar hole, and shifting block 21 exposes in the bar hole to can be stirred by the people, thereby make shifting block 21 down vertical direction remove, flatten the easy open can with drive briquetting 31.
The vertical shifting assembly 20 further includes a vertical slide 22, the vertical slide 22 is fixed on the inner wall of the outer frame 10a, and the shifting block 21 is slidably disposed in the vertical slide 22.
The transverse pushing assembly 30 further comprises a first horizontal slide way 32, a driving block 33, a transmission assembly 34 and a second horizontal slide way 35, wherein the driving block 33 is slidably arranged on the first horizontal slide way 32 along the horizontal direction, the pressing block 31 is slidably arranged in the second horizontal slide way 35, and the second horizontal slide way 35 forms an opening through which the collapsed pop-top can falls into the discharge duct 112.
The shifting block 21 is hinged to the driving block 33 through a connecting rod, and the driving block 33 is in transmission connection with the pressing block 31 through the transmission assembly 34, so that the second horizontal slide way 35 of the pressing block 31 slides in the second horizontal slide way 35 to crush the pop can.
Wherein, the first horizontal slideway 32 is located at the lower end of the vertical slideway 22, the second horizontal slideway 35 is fixed on the inner wall of the outer frame 10a, the shifting block 21 is shifted downwards, so that the driving block 33 moves forwards (away from the first horizontal slideway 32) in the transverse direction, and the pressing block 31 moves forwards to crush the pop-top can falling into the second horizontal slideway 35 from the feeding pipeline 110.
Wherein, be equipped with spring 23 between shifting block 21 and the vertical slide 22, shifting block 21 has the trend of upward movement under the elastic force effect of spring 23, when stirring shifting block 21 and removing downwards, need overcome the elastic force of spring 23, when shifting block 21 is not acted on by external force, shifting block 21 can remove upwards under the effect of spring 23, simultaneously, drive block 33 and briquetting 31 move backward.
The transmission assembly 34 comprises a driving gear 340 and a driven gear 341, the driving gear 340 is hinged to the driving block 33 through a connecting rod, the driven gear 341 is hinged to the pressing block 31 through a connecting rod, and the driving gear 340 is meshed with the driven gear 341.
The driving gear 340 and the driving block 33 are hinged by two connecting rods to ensure the stability of the driving gear 340, and the driven gear 341 and the pressing block 31 are also hinged by two connecting rods to ensure the stability of the driven gear 341.
Referring to fig. 4 and 5, fig. 4 shows a specific structure of the coin ejecting mechanism 12, and fig. 5 shows a specific structure of the elastic pushing block 122, the slide 121, and the electromagnet 124 in this embodiment.
The coin eject mechanism 12 includes a chassis 120, a chute 121, a resilient pusher 122, a stop 123, and an electromagnet 124.
The elastic pushing block 122 is disposed on the slide rail 121, the stopper 123 is disposed on the slide rail 121, and the electromagnet 124 is disposed above the stopper 123 and connected to the two wires 10 b.
The base plate 120 is used for holding coins and the base plate 120 has a circular aperture 90 in communication with a chute 121.
The coins fall into the chute 121 through the circular holes 90 and are clamped by the elastic pushing block 122 and the stopper 123, when the two wires 10b are switched on, the electromagnet 124 adsorbs the stopper 123, and the coins are pushed out by the elastic pushing block 122.
In this embodiment, the slide rail 121 is fixed to the inner wall of the outer frame 10a, and the outer wall of the outer frame 10a is provided with a coin collecting box 12a, so that when coins are pushed out, the coins slide along the slide and fall into the coin collecting box 12a through the coin opening of the outer frame 10 a.
It should be noted that, a battery 10c is further provided, in this embodiment, the battery is provided on the wall surface of the outer frame 10a (as shown in fig. 1), the battery 10c is connected to the electromagnet 124 through the two wires 10b, when the can contacts the two wires 10b, the battery is conducted with the electromagnet 124, so that the electromagnet 124 generates magnetism to attract the stopper 123, and when the can is separated from the wires 10b, the electromagnet 124 does not generate magnetism, and the stopper 123 falls.
The coin ejecting mechanism 12 further includes a first pull wire (not shown) connecting the elastic pushing block 122 and the shifting block 21.
When the shifting block 21 moves upwards under the action of the spring 23, the first pull wire pulls the elastic pushing block 122 to return, so that the next coin can smoothly fall between the elastic pushing block 122 and the stop 123.
Optionally, in one possible implementation, the coin spitting mechanism 12 further includes a turntable 40 and a rotation mechanism 41. Referring to fig. 6, fig. 6 shows a specific structure of the turntable 40 and the rotating mechanism 41 in the present embodiment.
The turntable 40 is rotatably provided on the base plate 120, and a plurality of placing holes 91 are formed in the turntable 40, and the placing holes 91 are used for placing coins.
The rotating mechanism 41 drives the turntable 40 to rotate so that one of the placing holes 91 corresponds to the circular hole 90.
Wherein, the multiple sets of coins (a plurality of coins are stacked and stable through the buckle 10d, the specific structure of the buckle 10d can be seen in fig. 6) are arranged on the turntable 40, and each time the pop can is recovered, the turntable 40 can be driven to rotate through the rotating mechanism 41, so that one set of coins rotates to a specified position (corresponding to the position of the circular hole 90 of the chassis 120), and one or more coins are pushed out through the action of the electromagnet 124 and the elastic push block 122.
Alternatively, the rotating mechanism 41 includes an upper tooth column 410, a lower tooth column 411, a housing 412, a spring 413, and a second wire (not shown).
Referring to fig. 7 and 8, fig. 7 shows a specific structure of the upper tooth post 410 and the lower tooth post 411, and fig. 8 shows a specific structure of the housing 412.
A plurality of guide grooves 4120 are formed on the inner wall of the housing 412, the housing 412 is sleeved between the upper tooth column 410 and the lower tooth column 411 and can slide in the vertical direction relative to the upper tooth column 410 and the lower tooth column 411, and the housing 412 is connected with the dial block 21 through a second pull wire.
The upper column 410 is formed with a plurality of upper teeth 80, and the lower column 411 is formed with a plurality of lower teeth 81 corresponding to the upper teeth 80, and the upper teeth 80 and the lower teeth 81 are not completely engaged in the guide groove 4120.
The top end of the upper tooth post 410 is connected to a spring 413, and one end of the spring 413 is fixed to the outer frame 10 a.
When the housing 412 slides, the lower tooth tip 81 is separated from the guide groove 4120 against the elastic force of the spring 413, and the upper tooth tip 80 moves downward under the urging of the guide groove 4120, and the inclined surface of the tooth tip 80 is engaged with the inclined surface of the lower tooth tip 81, thereby urging the lower tooth tip 81 to rotate, so that the turntable 40 rotates.
Wherein, when the dial 21 is dialed, the second pull wire pulls the housing 412 to slide the housing 412. When the second wire is not under load, the housing 412 returns to its original position and acts on the upper tooth column 410 and the lower tooth column 411 again.
Referring to fig. 9, fig. 9 shows a specific structure of the collecting portion 13 in the present embodiment.
The collecting part 13 is a collecting box, and the bottom end thereof is provided with traveling wheels 130 so that the worker can draw out the collecting box from the outer frame 10a to take out the collapsed can. Meanwhile, the inner wall of the collecting box is designed to be of an inclined plane structure, so that the pop can conveniently slide to the central position of the collecting box along the inclined plane structure after falling out of the discharging pipeline 112, and the pop can is prevented from being unevenly accumulated in the collecting box.
The above description is only a preferred embodiment of the present application and is not intended to limit the present application, and various modifications and changes may be made by those skilled in the art. Any modification, equivalent replacement, improvement and the like made within the spirit and principle of the present application shall be included in the protection scope of the present application.

Claims (10)

1. A recovery device for pop cans, comprising:
the flattening mechanism is used for flattening the pop can;
a coin ejecting mechanism having two lead wires in an open circuit state; and
a collecting part for receiving the crushed cans;
wherein the two lead wires are conducted in the process that the crushed pop can moves to the collecting part, so that the coin ejecting mechanism is electrified to eject coins.
2. The can recycling device of claim 1,
the flattening mechanism comprises a feeding pipeline, a flattening assembly and a discharging pipeline;
the flattening assembly is positioned between the feeding pipeline and the discharging pipeline, the flattening assembly is used for flattening the pop cans conveyed by the feeding pipeline, and the flattened pop cans are discharged to the collecting part through the discharging pipeline;
the two conducting wires are positioned at the outlet of the discharging pipeline.
3. The can recycling apparatus of claim 2,
the flattening assembly comprises a vertical shifting assembly and a transverse pushing assembly;
the vertical shifting assembly is provided with a shifting block which slides along the vertical direction;
the transverse pushing assembly is provided with a pressing block which slides along the horizontal direction, and an opening communicated with the discharging pipeline is formed in the transverse pushing assembly;
the shifting block is in transmission connection with the pressing block, so that the shifting block is shifted in the vertical direction to drive the pressing block to move horizontally to flatten the pop cans, and the flattened pop cans enter the discharge pipeline from the opening.
4. The can recycling apparatus of claim 3,
the vertical shifting assembly further comprises a vertical slideway, and the shifting block is slidably arranged in the vertical slideway;
the transverse pushing assembly further comprises a first horizontal slideway, a driving block, a transmission assembly and a second horizontal slideway, the driving block is slidably arranged on the first horizontal slideway along the horizontal direction, the pressing block is slidably arranged in the second horizontal slideway, and the second horizontal slideway forms the opening;
the shifting block is hinged to the driving block through a connecting rod, and the driving block is in transmission connection with the pressing block through a transmission assembly.
5. The can recycling apparatus of claim 4,
the transmission assembly comprises a driving gear and a driven gear, the driving gear is hinged to the driving block through a connecting rod, the driven gear is hinged to the pressing block through a connecting rod, and the driving gear is meshed with the driven gear.
6. The can recycling apparatus of claim 3,
the coin ejecting mechanism comprises a chassis, a slideway, an elastic push block, a stop block and an electromagnet;
the elastic push block is arranged on the slide way, the stop block is placed on the slide way, and the electromagnet is arranged above the stop block and is connected with the two leads;
the chassis is used for placing coins and provided with a round hole communicated with the slideway;
the coin falls into the slide by the round hole and is clamped by the elastic push block and the stop block, when the two wires are switched on, the electromagnet adsorbs the stop block, and the coin is pushed out by the elastic push block.
7. The can recycling device of claim 6,
the coin spitting mechanism further comprises a first pull wire, and the first pull wire is connected with the elastic push block and the shifting block.
8. The can recycling device of claim 6,
the coin ejecting mechanism also comprises a rotary disc and a rotating mechanism;
the rotary disc is rotatably arranged on the base disc, a plurality of placing holes are formed in the rotary disc, and the placing holes are used for placing coins;
the rotating mechanism drives the turntable to rotate so that one of the placing holes corresponds to the round hole.
9. The can recycling apparatus of claim 8,
the rotating mechanism comprises an upper toothed column, a lower toothed column, a shell, a spring and a second pull wire;
a plurality of guide grooves are formed in the inner wall of the shell, the shell is sleeved between the upper tooth column and the lower tooth column and can slide in the vertical direction relative to the upper tooth column and the lower tooth column, and the shell is connected with the shifting block through the second pull wire;
the upper tooth column is provided with a plurality of upper tooth tips, the lower tooth column is provided with a plurality of lower tooth tips corresponding to the upper tooth tips, and the upper tooth tips and the lower tooth tips are not completely meshed in the guide grooves;
the top end of the upper tooth post is connected with the spring, when the shell slides, the lower tooth tip is separated from the guide groove, and the upper tooth tip pushes the lower tooth tip to rotate, so that the rotary disc rotates.
10. The can recycling device of claim 1,
the pop can recovery device also comprises an outer frame;
the flattening mechanism and the coin discharging mechanism are arranged in the outer frame;
the collecting part is a collecting box which is arranged on the outer frame in a drawable manner.
CN202010068130.4A 2020-01-21 2020-01-21 Pop can recovery device Expired - Fee Related CN111161463B (en)

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Application Number Priority Date Filing Date Title
CN202010068130.4A CN111161463B (en) 2020-01-21 2020-01-21 Pop can recovery device

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Application Number Priority Date Filing Date Title
CN202010068130.4A CN111161463B (en) 2020-01-21 2020-01-21 Pop can recovery device

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CN111161463A true CN111161463A (en) 2020-05-15
CN111161463B CN111161463B (en) 2021-05-04

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