CN111009069B - Coin circulating conveying loop system applied to full-automatic coin sorting and packaging machine - Google Patents

Coin circulating conveying loop system applied to full-automatic coin sorting and packaging machine Download PDF

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Publication number
CN111009069B
CN111009069B CN201911330874.2A CN201911330874A CN111009069B CN 111009069 B CN111009069 B CN 111009069B CN 201911330874 A CN201911330874 A CN 201911330874A CN 111009069 B CN111009069 B CN 111009069B
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coin
coins
circulating
conveying
packaging
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CN111009069A (en
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黄赛勤
李建强
李峰武
吴敬福
袁细林
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Hunan Chentai Information Technology Co ltd
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Hunan Chentai Information Technology Co ltd
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    • GPHYSICS
    • G07CHECKING-DEVICES
    • G07DHANDLING OF COINS OR VALUABLE PAPERS, e.g. TESTING, SORTING BY DENOMINATIONS, COUNTING, DISPENSING, CHANGING OR DEPOSITING
    • G07D3/00Sorting a mixed bulk of coins into denominations
    • G07D3/16Sorting a mixed bulk of coins into denominations in combination with coin-counting
    • GPHYSICS
    • G07CHECKING-DEVICES
    • G07DHANDLING OF COINS OR VALUABLE PAPERS, e.g. TESTING, SORTING BY DENOMINATIONS, COUNTING, DISPENSING, CHANGING OR DEPOSITING
    • G07D3/00Sorting a mixed bulk of coins into denominations
    • G07D3/02Sorting coins by means of graded apertures

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  • General Physics & Mathematics (AREA)
  • Basic Packing Technique (AREA)

Abstract

The utility model discloses be applied to coin circulation transport loop system among full-automatic coin counting and packaging machine compares with prior art, includes: a coin transport mechanism; the coin transmission mechanism can be communicated with a commemorative coin and suspicious coin storage box and a coin packing and winding storage box; the coin buffer mechanism is used for buffering coins and sending the coins to the subsequent coin transmission mechanism; the coin buffer mechanism is provided with buffer electromagnetic valves used for sorting different types of coins to the coin buffer mechanism or the coin input mechanism; the upstream of the coin transmission mechanism is provided with a coin identification mechanism; the coin conveying mechanism is provided with a circulating electromagnetic valve group, the circulating electromagnetic valve group comprises a first circulating electromagnetic valve, and the first circulating electromagnetic valve is communicated with the commemorative coin and suspicious coin storage box; the second circulating electromagnetic valve is communicated with the packaging channel; and the third circulating electromagnetic valve is communicated with the coin packing and winding storage box. Compared with the prior art, the coin wrapping machine can be applied to the coin wrapping machine to improve the wrapping efficiency and the automation degree of the coin wrapping machine.

Description

Coin circulating conveying loop system applied to full-automatic coin sorting and packaging machine
Technical Field
The application relates to the technical field of coin packaging, more specifically says, especially relates to a coin circular conveying return circuit system who is applied to in full-automatic coin divides packagine machine clearly.
Background
At present, coins occupy the small currency market in the world with the advantages of low cost, high circulation frequency, wear resistance, easy recovery and the like, and the separation and packaging of coins become social concerns with the increasing use frequency of coins.
In the prior art, only one width-adjustable main channel and one rejected coin channel are arranged, and during operation, the width of the main channel can be adjusted only from wide to narrow, so that coin transmission is realized.
In addition, if the small-diameter coins in the rejected coin storage box need to be packaged, an operator needs to select out the large-diameter suspicious coins firstly, then put the rest coins into the coin slot of the packaging machine, and start the packaging machine again for packaging; if in the mixed coin that has the diameter coin of variation in size to exist, select earlier to pack minor diameter coin, then can cause packagine machine trouble, coin packagine machine efficiency among the prior art remains to be improved.
Therefore, how to provide a coin circulation and transportation loop system applied to a full-automatic coin sorting and packaging machine, which can be applied to a coin packaging machine to improve the packaging efficiency and the automation degree of the coin packaging machine, has become a technical problem to be solved by those skilled in the art.
Disclosure of Invention
For solving above-mentioned technical problem, the application provides a be applied to coin circulation transport loop system among full-automatic coin counting and packaging machine, can be with commemorative coin, suspicious coin is selected commemorative coin and suspicious coin receiver alone, the coin of selected denomination passes through the packing process that the packing passageway got into the epilogue, the coin of non-selected denomination passes through circulation passageway and gets into coin buffer memory mechanism, after the coin of selected denomination finishes packing, coin automatic the throwing in coin packaging machine's coin slot among the coin buffer memory mechanism, carry out the packing work of the coin of another denomination, it can be applied to in coin packaging machine with improvement coin packaging machine's packing efficiency and degree of automation.
The technical scheme provided by the application is as follows:
the application provides a coin circulation transport loop system who is applied to in full-automatic coin divides packagine machine clearly includes: a coin transport mechanism for transporting coins one by one; the coin transmission mechanism can be communicated with a commemorative coin and suspicious coin storage box and a coin packaging and winding storage box;
the coin buffer mechanism is connected with the coin input mechanism and is used for buffering coins and feeding the coins to the subsequent coin conveying mechanism;
the coin buffer mechanism is provided with buffer electromagnetic valves for sorting different types of coins to the coin buffer mechanism or the coin input mechanism;
the upstream of the coin transmission mechanism is provided with a coin identification module which is used for identifying and counting the types of the coins entering the coin transmission mechanism; the coin transmission mechanism is provided with a circulation channel for conveying coins to the coin buffer mechanism and a packaging channel for conveying the coins to a subsequent packaging process;
the coin conveying mechanism is provided with a circulating electromagnetic valve group, the circulating electromagnetic valve group comprises a first circulating electromagnetic valve, and the first circulating electromagnetic valve is communicated with a commemorative coin storage box and a suspicious coin storage box; the second circulating electromagnetic valve is communicated with the packaging channel; and the third circulating electromagnetic valve is communicated with the coin packing and winding storage box.
Further, in a preferred aspect of the present invention, the method further includes: the photoelectric sensor group is arranged on the coin transmission mechanism, and the photoelectric sensor group is matched with the coin identification module and is used for sorting different types of coins into a commemorative coin and suspicious coin storage box, a coin packaging roll storage box and a packaging channel.
Further, in a preferred aspect of the present invention, the method further includes: a coin delivery mechanism connected with the coin transmission mechanism; and a coin input mechanism connected to the coin delivery mechanism.
Further, in a preferred aspect of the present invention, the coin inserting mechanism includes: a hopper structure; the coin input conveyor belt is arranged at the bottom of the input hopper structure and is used for conveying coins to the coin sending-out mechanism;
furthermore, the input hopper structure is formed by a left side plate, a connecting plate and a right side plate.
Further, in a preferred aspect of the present invention, the coin dispensing mechanism includes: a center turntable which is arranged along a horizontal plane and rotates around a shaft extending along a vertical direction; a peripheral wall structure fixed around the central turntable; the notch structure is arranged on the peripheral wall structure;
the coins thrown into the inner side of the peripheral wall structure from the coin throwing mechanism are received by the central turntable, and are rolled out one by one along the notch structure on the peripheral wall structure to the circulating channel of the coin conveying mechanism through the rotation of the central turntable.
Further, in a preferred mode of the invention, a height adjusting block is arranged at the notch structure and used for ensuring that the coins are fed one by one in each rolling-out process; the peripheral wall structure is provided with a photoelectric sensor for detecting whether a coin is on the central turntable or not; the bottom of the peripheral wall structure is provided with a turntable driving motor for driving the central turntable to rotate.
Furthermore, the height adjusting block is made of metal.
Further, in a preferred aspect of the present invention, the coin buffer mechanism includes: a cache housing structure; the buffer coin conveying belt is arranged on the buffer shell structure; the electromagnetic valve is arranged on the buffer shell structure and is used for sorting different types of coins to the coin buffer mechanism or the coin input mechanism; wherein buffer memory shell structure, back connecting plate and buffer memory coin transmission band 5 connect left side board and right side board between two parties.
Further, in a preferred aspect of the present invention, the coin buffer mechanism further includes: install the back connecting plate that buffer memory shell structure was last and can vertical switching adjustable fender who resets.
Further, in a preferred mode of the present invention, the coin transporting mechanism includes: a circulation channel and a packaging channel; the first circulating conveying mechanism and the second circulating conveying mechanism are arranged along the circulating channel and the packaging channel and are used for conveying the coins rolled out from the coin sending-out mechanism one by one; a passage floor member provided on the circulation passage, along the upper surface of which the coins are transported.
Further, in a preferred mode of the present invention, the first endless conveying mechanism includes: the first pulley block is arranged at the upstream of the circulating channel, and the first circulating conveying belt is matched with the first pulley block; is erected along the circulating channel; the second circulating transport mechanism includes: a second pulley block disposed on the downstream side of the packaging passage and erected along the packaging passage; and the second circulating conveyer belt is arranged on the second pulley block in a matching way.
Further, in a preferred mode of the present invention, the first endless transport conveyor and the second endless transport conveyor receive and transport coins at a speed higher than the speed of the coins being fed out from the center turntable of the coin feeding mechanism, thereby widening the transport distance between the coins and facilitating the sorting of different types of coins.
Compared with the prior art, the coin circulating conveying loop system applied to the full-automatic coin sorting and packaging machine provided by the invention comprises the following components: a coin transport mechanism for transporting coins one by one; the coin transmission mechanism can be communicated with a commemorative coin and suspicious coin storage box and a coin packing and winding storage box; the coin buffer mechanism is connected with the coin input mechanism and is used for buffering coins and feeding the coins to the subsequent coin transmission mechanism; the coin buffer mechanism is provided with buffer electromagnetic valves used for sorting different types of coins to the coin buffer mechanism or the coin input mechanism; the upstream of the coin transmission mechanism is provided with a coin identification module which is used for identifying and counting the types of the coins entering the coin transmission mechanism; the coin transmission mechanism is provided with a circulating channel for conveying coins to the coin buffer mechanism and a packaging channel for conveying the coins to a subsequent packaging process; the coin conveying mechanism is provided with a circulating electromagnetic valve group, the circulating electromagnetic valve group comprises a first circulating electromagnetic valve, and the first circulating electromagnetic valve is communicated with the commemorative coin and suspicious coin storage box; the second circulating electromagnetic valve is communicated with the packaging channel; and the third circulating electromagnetic valve is communicated with the coin packing and winding storage box. Compared with the prior art, commemorative coins and suspicious coins can be independently sorted into a commemorative coin storage box and a suspicious coin storage box, coins of a selected denomination enter a subsequent packaging process through a packaging channel, coins of a non-selected denomination enter a coin caching mechanism through a circulating channel, and after the coins of the selected denomination are packaged, the coins in the coin caching mechanism are automatically thrown into a coin slot of a coin packaging machine to perform packaging work of the coins of another denomination.
Drawings
In order to more clearly illustrate the embodiments of the present application or the technical solutions in the prior art, the drawings used in the description of the embodiments or the prior art will be briefly described below, it is obvious that the drawings in the following description are only some embodiments of the present application, and for those skilled in the art, other drawings can be obtained according to the drawings without creative efforts.
Fig. 1 is a schematic structural diagram of a coin circulating conveying loop system applied to a full-automatic coin sorting and packaging machine according to an embodiment of the present invention;
fig. 2 is a top view of a coin circulating and conveying loop system applied to a full-automatic coin sorting and packaging machine according to an embodiment of the invention;
fig. 3 is a schematic working diagram of the electromagnetic valve of the coin conveying mechanism of the coin circulating conveying loop system applied to the full-automatic coin sorting and packaging machine according to the embodiment of the present invention;
FIG. 4 is a perspective view of a coin screening and packaging system according to an embodiment of the present invention;
FIG. 5 is a schematic diagram of the internal structure of a coin screening and packaging system according to an embodiment of the present invention;
FIG. 6 is a schematic structural diagram of a coin inserting mechanism and a coin buffering mechanism in the coin screening and packaging system according to the embodiment of the present invention;
FIG. 7 is a schematic structural view of a coin dispensing mechanism in a coin sorting and packaging system according to an embodiment of the present invention;
FIG. 8 is a side view of a coin stacking mechanism in a stacked position for a coin screening and packaging system according to an embodiment of the present invention;
FIG. 9 is a diagram of a state in which coins stacked by the coin stacking mechanism are transported to the coin wrapping mechanism by a push rod in the coin stacking mechanism according to an embodiment of the present invention;
fig. 10 is a perspective view showing the structure of a coin wrapping mechanism, a wrapping medium feeding mechanism, a wrapping hemming mechanism, a wrapping medium mounting mechanism, and the like provided inside the coin sorting and wrapping system according to the present embodiment;
fig. 11 is a plan view of the coin wrapping mechanism, the wrapping medium feeding mechanism, the wrapping hemming mechanism, the wrapping medium mounting mechanism, and the like shown in fig. 10, viewed from above;
FIG. 12 is a perspective view of the coin sorting and packaging system of the present embodiment;
FIG. 13 is a top view of the coin screening and packaging system configuration of FIG. 12;
FIG. 14 is a perspective view of a package curling mechanism of the coin sorting and packaging system of the present embodiment;
FIG. 15 is a perspective view of the package crimping mechanism shown in FIG. 14 viewed from another direction;
FIG. 16 is a side view of a packaging medium mounting mechanism disposed within the coin screening and packaging system;
fig. 17 is a schematic diagram of a control system in the coin sorting and packaging system according to the present embodiment.
Description of reference numerals:
a master control system 1; a coin insertion mechanism 2; a coin feeding mechanism 3; a coin conveying mechanism 4;
a coin buffer mechanism 5; a coin stacking mechanism 6; a coin wrapping mechanism 7; a packaging medium conveyor 8; a packaging crimping mechanism 9; a packaging medium mounting mechanism 10; a main frame body 11; an upper cover 12; a front cover 13; a touch display screen 14; a commemorative coin and suspect coin storage box 15; a coin packing roll receiving box 16; coins to be packaged 17; a left side plate 21; a connecting plate 22; a right side plate 23; a coin feeding belt 24; a motor 25 is thrown in; a center turntable 31; a peripheral wall structure 32; a height adjusting block 33; a feed-out photosensor 34, a turntable drive motor 35; a circulating coin discriminating module 41; the circulation passage 42; a first endless conveying belt 43; a channel floor member 44; a circulating solenoid valve group 45; a packaging passage 46; a second endless conveying belt 47; the first-cycle solenoid valve 451; the second-cycle solenoid valve 452; a third-cycle solenoid valve 453; a channel photosensor 49; a cache housing structure 51; a cache solenoid valve 52; a rear connecting plate 53; a flapper 54; a buffer coin conveyer belt 55; the stacking bottom face member 61; a restricting guide block 62; a stack region 63; a star wheel 64; a top rod 65; a gravity strut 66; a bottom plate 71; a top plate 72; a first packaging roller 731, a second packaging roller 732, and a third packaging roller 733; a packaging area 74; a packing stepping motor 75; gear set 76; the adjustment cam 77; a package photosensor 78; an S-shaped guide plate 81; a guide roller 82; a pressure roller 83; a U-shaped guide plate 85; a cutter 86; a drive motor 87; a photoelectric decoder 88; a photo-interrupter 89; a toothed detection plate 891; a drive photosensor 892; a packaging crimping mechanism 9; a swing shaft 91; a swing 92 mounted on the base plate; a swing base frame 93, a curling device 94; a guide rod group 941; a first slider 942; a first hem-forming hook 943; a tension spring 944; a crimping motor 945; an eccentric wheel 946; a hemming photosensor 947; the motor base 921 swings the motor 922; a hemming cam 923; a first swing photosensor 924 and a second swing photosensor 925; a connecting plate 926; a packaging medium mounting mechanism 10; a fixed seat 101; a fixed shaft 102; a rotating tray 103; a support post 104; a medium mount photointerrupter 105; an output module 201; a storage module 202.
Detailed Description
In order to make those skilled in the art better understand the technical solutions in the present application, 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 only a part of the embodiments of the present application, and not all embodiments. 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 will be understood that when an element is referred to as being "fixed" or "disposed" on another element, it can be directly on the other element or be indirectly disposed on the other element; when an element is referred to as being "connected to" another element, it can be directly connected to the other element or be indirectly connected to the other element.
It will be understood that the terms "length," "width," "upper," "lower," "front," "rear," "first," "second," "vertical," "horizontal," "top," "bottom," "inner," "outer," and the like, as used herein, refer to an orientation or positional relationship indicated in the drawings that is solely for the purpose of facilitating the description and simplifying the description, and do not indicate or imply that the referenced device or element must have a particular orientation, be constructed and operated in a particular orientation, and thus should not be considered as limiting the present application.
Furthermore, the terms "first", "second" and "first" are used for descriptive purposes only and are not to be construed as indicating or implying relative importance or implicitly indicating the number of technical features indicated. Thus, a feature defined as "first" or "second" may explicitly or implicitly include one or more of that feature. In the description of the present application, "plurality" or "a plurality" means two or more unless specifically limited otherwise.
It should be understood that the structures, ratios, sizes, and the like shown in the drawings are only used for matching the disclosure of the specification, so as to be understood and read by those skilled in the art, and are not used to limit the practical limit conditions of the present application, so that the modifications of the structures, the changes of the ratio relationships, or the adjustment of the sizes, do not have the technical essence, and the modifications, the changes of the ratio relationships, or the adjustment of the sizes, are all within the scope of the technical contents disclosed in the present application without affecting the efficacy and the achievable purpose of the present application.
Referring to fig. 1 to 3, a coin recycling loop system applied to a full-automatic coin sorting and packaging machine according to an embodiment of the present application includes: a coin transport mechanism 4 for transporting coins one by one; the coin transmission mechanism 4 can be communicated with a commemorative coin and suspicious coin storage box 15 and a coin packing and winding storage box 16; a coin buffer mechanism 5 connected with the coin input mechanism 2, wherein the coin buffer mechanism 5 is used for buffering coins and feeding the coins to a subsequent coin transmission mechanism; the coin buffer mechanism 5 is provided with a buffer electromagnetic valve used for sorting different types of coins to the coin buffer mechanism 5 or the coin input mechanism 2; a coin discriminating module is arranged at the upstream of the coin conveying mechanism 44 and is used for performing type recognition and counting on the coins entering the coin conveying mechanism 4; the coin transport mechanism 4 has a circulation path 42 for transporting coins to the coin buffer mechanism 5 and a packing path 46 for transporting coins to a subsequent packing process; the coin transmission mechanism 4 is provided with a circulating electromagnetic valve group 45, the circulating electromagnetic valve group 45 comprises a first circulating electromagnetic valve 451, and the first circulating electromagnetic valve 451 is communicated with a commemorative coin storage box and a suspicious coin storage box; a second-cycle solenoid valve 452, the second-cycle solenoid valve 452 being in communication with the package passage 46; the third circulation solenoid valve 453 and the third circulation solenoid valve 453 are connected to the coin packing/winding storage case.
The embodiment of the invention provides a coin circulating conveying loop system applied to a full-automatic coin sorting and packaging machine, which specifically comprises the following steps: a coin transport mechanism 4 for transporting coins one by one; the coin transmission mechanism 4 can be communicated with a commemorative coin and suspicious coin storage box and a coin packing and winding storage box; a coin buffer mechanism 5 connected with the coin input mechanism, wherein the coin buffer mechanism 5 is used for buffering coins and feeding the coins to the subsequent coin transmission mechanism 4; the coin buffer mechanism 5 is provided with a buffer electromagnetic valve 52 used for sorting different types of coins to the coin buffer mechanism 5 or the coin input mechanism; the upstream of the coin transmission mechanism 4 is provided with a coin identification module which is used for identifying and counting the types of the coins entering the coin transmission mechanism 4; the coin transport mechanism 4 has a circulation path 42 for transporting coins to the coin buffer mechanism 5 and a packing path 46 for transporting coins to a subsequent packing process; the coin transmission mechanism 4 is provided with a circulating electromagnetic valve group 45, the circulating electromagnetic valve group 45 comprises a first circulating electromagnetic valve 451, and the first circulating electromagnetic valve 451 is communicated with a commemorative coin storage box and a suspicious coin storage box; a second-cycle solenoid valve 452, the second-cycle solenoid valve 452 being in communication with the package passage 46; the third circulation solenoid valve 453 and the third circulation solenoid valve 453 are connected to the coin packing/winding storage case. Compared with the prior art, commemorative coins and suspicious coins can be separately sorted into commemorative coins and suspicious coin storage boxes, the coins with the selected denomination enter a subsequent packaging process through the packaging channel 46, the coins with the unselected denominations enter the coin caching mechanism 5 through the circulating channel 42, and after the coins with the selected denomination are packaged, the coins in the coin caching mechanism 5 are automatically thrown into a coin slot of the coin packaging machine to perform the packaging work of the coins with the other denomination.
In addition, the present embodiment further provides a specific implementation of applying the above-mentioned coin recycling conveying mechanism to a coin screening and packaging system, that is, a coin screening and packaging system with a coin recycling conveying mechanism, and the following detailed description of the specific implementation of the coin recycling conveying mechanism will be provided in conjunction with the coin screening and packaging system, please refer to fig. 4 to 17, which includes the following contents:
coin screening and packaging system with coin circulation conveying mechanism includes: a main frame body 11; a coin inserting mechanism 2 provided on the main frame body 11; a coin feeding mechanism 3 communicating with the coin inserting mechanism 2; a coin transfer mechanism 4 communicated with the coin discharge mechanism 3; a coin feeding mechanism 3 for feeding out the inserted coins one by one to a subsequent coin transport mechanism 4; a coin buffer mechanism communicated with the coin input mechanism 2 and the coin transmission mechanism 4 and used for buffering the coins and feeding the coins into the coin input mechanism 2; the coin transport mechanism 4 has a circulation path 42 for transporting coins to the coin buffer mechanism and a packing path 46 for transporting coins to a subsequent packing process; a coin stacking mechanism 6 for stacking coins of a predetermined number to form a columnar coin; and the coin packing mechanism 7 is used for winding the packing medium on the stacked cylindrical coins to form a packing reel.
The coin screening and packaging system can realize that commemorative coins and suspicious coins are separately sorted into commemorative coin and suspicious coin storage boxes, coins with the selected denomination enter a subsequent packaging process through the packaging channel 46, coins with the unselected denomination enter the coin caching mechanism through the circulating channel 42, and after the coins with the selected denomination are packaged, the coins in the coin caching mechanism are automatically thrown into a coin slot of a coin packaging machine to perform the packaging work of the coins with the other denomination.
Specifically, in the present embodiment, the main frame body 11; a coin insertion mechanism 2 provided on the main frame 11; a packaging medium mounting mechanism 10 for mounting a packaging medium winding drum is arranged at the left rear part of the main frame body 11; a coin sending-out mechanism 3 is arranged in the main frame body 11 and is used for transferring the input coins one by one to a subsequent coin transmission mechanism 4; a coin transport mechanism 4 for transporting the coins fed out from the coin feeding mechanism 3 along a transport path one by one; the coin buffer mechanism is used for buffering coins which are not stacked and packaged currently; a coin stacking mechanism 6 for stacking coins of a predetermined number to form a columnar coin; a coin wrapping mechanism 7 for winding a wrapping medium around the stacked cylindrical coins to form a wrapping roll; a packaging medium feed mechanism 8 for cutting a precise length of packaging medium and directing the packaging medium to a packaging area 74; the packaging curling mechanism 9 is used for curling two ends of the packaging winding drum to form a packaged coin roll; the touch display 14 is used for executing various command operations and displaying various information such as the formation of a coin roll. A first coin receiving box and a second coin receiving box which are arranged below the main frame body 11 and are drawn out forwards; at the front end of the coin transport mechanism 4, there is a coin discriminating module for discriminating and counting the kind of coins entering the transport path.
Specifically, in the embodiment of the present invention, the coin inserting mechanism 2 is provided with an upper cover 12 that can be opened and closed vertically.
Specifically, in the embodiment of the present invention, the coin inserting mechanism 2 includes: a hopper structure; an input coin conveyer belt 24 provided at the bottom of the input hopper structure, the input coin conveyer belt 24 being used for conveying coins to the coin sending-out mechanism 3; the coin-feeding conveyor 24 is driven by a feeding motor 25.
Further, the hopper structure is formed by a left side plate 21, a connecting plate 926, and a right side plate 23.
Specifically, in the embodiment of the present invention, the coin feeding mechanism 3 includes: a center turntable 31 which is provided along a horizontal plane and rotates around an axis extending in a vertical direction; a peripheral wall structure 32 fixed around the center turntable 31; a notch structure provided on the peripheral wall structure 32;
coins that have been inserted from the coin insertion mechanism 2 into the inside of the peripheral wall structure 32 are received by the center turntable 31, and are fed out one by one along the notch structure of the peripheral wall structure 32 to the circulation path 42 of the coin transport mechanism 4 by the rotation of the center turntable 31.
Specifically, in the embodiment of the present invention, the gap structure is provided with a height adjusting block 33 for ensuring that the coins are fed one by one each time when the coins are fed out; a sending photoelectric sensor 34 is arranged on the peripheral wall structure 32 and is used for detecting whether coins exist on the central turntable 31 or not; the bottom of the peripheral wall structure 32 is provided with a turntable drive motor 35 that drives the central turntable 31 to rotate.
Further, the height adjusting block 33 is made of metal.
Specifically, in the embodiment of the present invention, the coin buffering mechanism 5 includes: a cache housing structure 51; a buffer coin conveyer belt 55 arranged on the buffer shell structure 51; a buffer electromagnetic valve 52 mounted on the buffer housing structure 51 for sorting different types of coins into the coin buffer mechanism 5 or the coin inserting mechanism 2; wherein the buffer shell structure, the rear connecting plate 53 and the buffer coin conveying belt are centrally connected with the left side plate 21 and the right side plate 23.
Specifically, in the embodiment of the present invention, the coin buffer mechanism further includes: a rear connecting plate 53 mounted on the buffer housing structure 51 and a movable baffle 54 capable of being opened and closed and reset vertically.
Specifically, in the embodiment of the present invention, the coin transporting mechanism 4 includes: a circulation path 42 and a packing path 46; a first circulation conveying mechanism and a second circulation conveying mechanism which are arranged along the circulation passage 42 and the packaging passage 46 and are used for conveying the coins rolled out from the coin sending-out mechanism 3 one by one; a passage floor member 44 is provided on the circulation passage 42, and coins are transported along an upper surface of the passage floor member 44.
Specifically, in an embodiment of the present invention, the first endless conveying and conveying mechanism includes: a first pulley block arranged upstream of the circulation path 42, a first circulation conveyor belt 43 cooperating with said first pulley block; mounted along the circulation path 42; the second circulating transport mechanism includes: a second pulley block disposed downstream of the packing passage 46 and bridged along the packing passage 46; and the second circulating conveyer belt is arranged on the second pulley block in a matching way.
Specifically, in the embodiment of the present invention, the first endless conveying belt 43 and the second endless conveying belt 47 catch and convey coins at a speed higher than the speed of the coins being fed out from the central turntable 31 of the coin feeding mechanism 3, thereby widening the conveying pitch of the coins and facilitating the sorting of different types of coins.
Specifically, in the embodiment of the present invention, the passage bottom surface member 44 is provided with the circulation solenoid valve group 45, and the circulation solenoid valve group 45 includes the first circulation solenoid valve 451, and the first circulation solenoid valve 451 is communicated with the commemorative coin storage box 15; a second-cycle solenoid valve 452, the second-cycle solenoid valve 452 being in communication with the package passage 46; the third-cycle solenoid valve 453 and the third-cycle solenoid valve 453 are in communication with the suspect note storage cassette 16.
Wherein, set up circulation solenoid valve group 45 on the component 44 of passageway bottom surface, communicate commemorative coin receiver 15 in proper order, packing passageway 46, suspicious coin receiver 16 sets up the front end at transport mechanism, and circulation coin identification module 41 carries out kind discernment and counting result to the coin that gets into transport channel, and passageway photoelectric sensor 49 on the cooperation passageway is with different kinds of coin sorting commemorative coin receiver 15, packing passageway 46, suspicious coin receiver 16.
Specifically, in the present embodiment, the coin stacking mechanism 6 is provided below the coin wrapping mechanism 7, and the coin stacking mechanism 6 includes: a stacking bottom surface member 61 for supporting the coins in a stacked state, the bottom surface member being disposed on the same level as the top surface of the transport belt in the coin transport mechanism 4; 3 packing rollers in the coin packing mechanism 7 above the stacked bottom surface member 61; the restricting guide blocks 62 are configured to move integrally with the packing rollers, respectively; the restricting guide 62 is for positioning the leading end position of the coins transferred from the transfer belt of the coin transfer mechanism 4 to the coin stacking mechanism 6 to the stacking position of the coin stacking mechanism 6; in addition, the restricting guide block 62 and the bottom surface member form a region whose size can be adjusted, i.e., a stacking region 63;
specifically, in the embodiment of the present invention, in the lower portion of the coin stacking mechanism 6, there is provided a star wheel 64 capable of rotating in the conveying direction of coins conveyed from the conveying belt of the coin conveying mechanism 4, the star wheel 64 being adapted to adjust the posture of the coins conveyed to the stacking zone 63 to an inclined state so that the next coin conveyed to the stacking zone 63 enters the lower side of the lowermost coin among the plurality of coins already stacked in the stacking zone 63 in a stacked state, thereby causing scattered coins to be stacked in order from the lower side upward; the coins stacked in the coin stacking mechanism 6 are stacked in an inclined state.
Specifically, in the present embodiment, in the lower portion of the coin stacking mechanism 6, on both sides of the star wheel 64, ejector pins 65 are provided; the ejector 65 is for transporting the stacked coins formed by the coin stacking mechanism 6 to the coin wrapping mechanism 7; the lift rod 65 is driven by a stepping motor to move up and down, descends when coins are stacked, retreats further downward than the upper surface of the bottom member, ascends after stacking is completed, supports the coin at the bottommost layer among the stacked coins formed by the coin stacking mechanism 6 from below, and ascends; at the same time, the horizontal top end of the ejector 65 bears the stacked coins and rises into the packing region 74 of the coin packing mechanism 7 above, so that the coins in the inclined state become horizontal at the coin packing mechanism 7 by bearing the stacked coins at the horizontal top end of the ejector 65; between the three packing rollers of the coin packing mechanism 7, there is provided a gravity lever 66 that presses the coin positioned at the topmost layer among the stacked coins from above; during stacking, the gravity press rod 66 always presses the upper surface of the topmost coin in the stacked coins, so that the stacked coins are prevented from being damaged by a disordered person. The coin stacking mechanism 6 sequentially stacks scattered coins from the lower side to the upper side by putting the coins transported to the stacking zone 63 in the coin stacking mechanism 6 on the lower side of the lowermost coin among the plurality of coins stacked in a stacked state in the stacking zone 63;
specifically, in the present embodiment, the coin wrapping mechanism 7 is provided directly above the stacked coin lifting mechanism, and includes: a packaging frame; a bottom plate 71 and a top plate 72 arranged on the packaging frame; a first packing roller 731, a second packing roller 732, and a third packing roller 733 vertically installed between the bottom plate 71 and the top plate 72; a packaging region 74 for packaging the stacked coins with a packaging medium is formed between the first packaging roller 731, the second packaging roller 732, and the third packaging roller 733; the first packaging roller 731, the second packaging roller 732, and the third packaging roller 733 are movable in a direction approaching and a direction separating from the center of the packaging section 74, respectively; a packing medium feeding mechanism 8 for introducing the fed packing medium wound around the peripheral surface of the stacked coins and cutting the packing medium; and a packing and curling mechanism 9 for winding the upper and lower ends of the packing medium wound around the circumferential surface of the stacked coins into both end surfaces of the stacked coins and fixing the same to form a roll of the packed coins.
Specifically, in the present embodiment, the adjustment cams 77 are provided above the first, second, and third packing rollers 731, 732, 733; the adjusting cam 77 is connected with a gear set 76 in a matching way; the gear set 76 is connected with a packaging stepping motor 75; the wrapping stepping motor 75 is used to drive the adjustment cam 77 via the gear train 76 to simultaneously drive the first wrapping roller 731, the second wrapping roller 732, and the third wrapping roller 733.
Wherein, the adjustment cam 77 rotates counterclockwise, and the first packing roller 731, the second packing roller 732, and the third packing roller 733 move in a direction approaching the center of the packing section 74; a circumferential surface that can hold stacked coins in the packing region 74; when the adjustment cam 77 rotates clockwise, the first wrapping roller 731, the second wrapping roller 732, and the third wrapping roller 733 move in a direction away from the center of the wrapping area 74, and the grip on the circumferential surface of the stacked coins in the wrapping area 74 is released.
Specifically, in the embodiment of the present invention, the method further includes: and a packaging photoelectric sensor 78 connected with the packaging stepping motor 75 through signals and used for detecting the position of the adjusting cam 77.
Specifically, in the present embodiment, the packing medium feed mechanism 8 includes: an S-shaped guide plate 81 vertically installed between the bottom plate 71 and the top plate 72; a guide roller 82; a pressure roller 83; a cutter 86; a U-shaped guide plate 85 mounted on the guide roller 82; a carrying motor 87 mounted on the top plate 72, and a photo-decoder 88 mounted on the carrying motor 87 for measuring the number of rotations of the guide roller 82.
Further, a guide roller 82 and a pressure roller 83 are provided at the tail of the S-shaped guide plate 81;
further, the gap between the guide roller 82 and the S-shaped guide plate is about 1 mm;
further, the guide roller 82 is in elastic contact with the pressure roller 83.
Specifically, in the present embodiment, the packing medium feed mechanism 8 further includes: a transmission tooth-shaped detection plate 891 mounted on the transmission motor; a transmission photosensor 892 mounted on the base plate 71.
Specifically, in the present embodiment, the package crimping mechanism 9 includes: a swing shaft 91 vertically installed between the bottom plate 71 and the top plate 72; a swing device 92 mounted on the base plate 71; a swing base frame 93 mounted on the swing shaft 91, a curling device mounted on the base frame and a return tension spring 944.
Specifically, in the present embodiment, the hemming device 94 includes: a guide rod set 941 vertically installed on the base frame, the guide rod set 941 including a first guide rod and a second guide rod; a first slider 942 mounted on the first guide bar; a second slider mounted on the second guide bar; a first crimping hook 943 mounted on the first slider 942; a second hemming-forming hook mounted on the second slider; a tension spring 944 installed on the base frame for driving the first slider 942 and the second slider to move in opposite directions; a hemming motor 945 horizontally installed on the base frame; an eccentric wheel 946 which is arranged on the hemming motor 945 and used for overcoming the tension of the tension spring 944 and driving the first slide block and the second slide block to move reversely; a crimp photosensor 947 mounted on the base frame.
Specifically, in an embodiment of the present invention, a hemming device includes: a first guide rod and a second guide rod vertically installed on the base frame; a first slider mounted on the first guide bar; a second slider mounted on the second guide bar; a first hemming-forming hook mounted on the first slider; a second hemming-forming hook mounted on the second slider; a tension spring 944 installed on the base frame for driving the first slider and the second slider to move in opposite directions; a hemming motor 945 horizontally installed on the base frame; an eccentric wheel 946 which is arranged on the hemming motor 945 and used for overcoming the tension of the tension spring 944 and driving the first slide block and the second slide block to move reversely; a crimp photosensor 947 mounted on the base frame.
Specifically, in the present embodiment, the swinging means 92 includes: a motor mount 921 mounted on the base plate 71; a swing motor 922 installed on the motor base 921; a hemming cam 923 installed on the swing motor 922; a first swing photosensor 924 and a second swing photosensor 925 installed symmetrically around the hemming cam 923; a connecting plate 926 connecting the crimping cam 923 and the base frame.
Specifically, in an embodiment of the present invention, the coin wrapping apparatus further includes: the packing medium mounting mechanism 10, the packing medium mounting mechanism 10 includes: a horizontally disposed fixed base 101; a fixed shaft 102 vertically disposed through the fixed base 101; and a rotating tray 103 and a supporting column 104 mounted on the fixed shaft 102 and rotating around the fixed shaft 102; a web of packaging medium on a tray 103 is placed and rotated through support posts 104.
Specifically, in the embodiment of the present invention, the packaging medium mounting mechanism 10 further includes: a medium mounting tooth-shaped detection plate which is mounted on the fixed shaft 102 and can rotate along with the rotating tray 103 and the supporting column 104; a medium-mounted photosensor mounted on the fixed base 101; the medium mount tooth detector plate and the medium mount photosensor together constitute a medium mount photointerrupter 105.
The previous description of the disclosed embodiments is provided to enable any person skilled in the art to make or use the present invention. Various modifications to these embodiments will be readily apparent to those skilled in the art, and the generic principles defined herein may be applied to other embodiments without departing from the spirit or scope of the invention. Thus, the present invention is not intended to be limited to the embodiments shown herein but is to be accorded the widest scope consistent with the principles and novel features disclosed herein.

Claims (9)

1. The utility model provides a be applied to coin circulation conveying loop system among full-automatic coin counting and packaging machine which characterized in that includes:
a coin transport mechanism for transporting coins one by one; the coin transmission mechanism can be communicated with a commemorative coin and suspicious coin storage box and a coin storage box;
a coin delivery mechanism connected with the coin transmission mechanism; a coin input mechanism connected to the coin delivery mechanism;
the coin buffer mechanism is connected with the coin input mechanism and is used for buffering coins and feeding the coins to the subsequent coin conveying mechanism;
the coin buffer mechanism is provided with buffer electromagnetic valves for sorting different types of coins to the coin buffer mechanism or the coin input mechanism;
the upstream of the coin transmission mechanism is provided with a coin identification module which is used for identifying and counting the types of the coins entering the coin transmission mechanism; the coin transmission mechanism is provided with a circulation channel for conveying coins to the coin buffer mechanism and a packaging channel for conveying the coins to a subsequent packaging process;
the coin conveying mechanism is provided with a circulating electromagnetic valve group, the circulating electromagnetic valve group comprises a first circulating electromagnetic valve, and the first circulating electromagnetic valve is communicated with a commemorative coin storage box and a suspicious coin storage box; the second circulating electromagnetic valve is communicated with the packaging channel; and the third circulating electromagnetic valve is communicated with the coin storage box.
2. The coin recycling and feeding loop system for the automatic coin sorting and packaging machine according to claim 1, further comprising: the photoelectric sensor group is arranged on the coin transmission mechanism, and the photoelectric sensor group is matched with the coin identification module and is used for sorting different types of coins into commemorative coins, suspicious coin storage boxes, coin storage boxes and packaging channels.
3. The coin recycling and conveying loop system applied to the full-automatic coin sorting and packaging machine according to claim 1, wherein the coin inserting mechanism comprises: a hopper structure; and the coin input conveyor belt is arranged at the bottom of the coin input hopper structure and is used for conveying coins to the coin sending-out mechanism.
4. The coin recycling and conveying loop system applied to the full-automatic coin sorting and packaging machine according to claim 3, wherein the coin sending mechanism comprises: a center turntable which is arranged along a horizontal plane and rotates around a shaft extending in a vertical direction; the peripheral wall structure is fixedly arranged around the central turntable; and the notch structure is arranged on the peripheral wall structure.
5. The coin circular conveying loop system applied to the full-automatic coin sorting and packaging machine is characterized in that a height adjusting block is arranged at the notch on the peripheral wall structure and used for restricting coins from being conveyed and rolled out one by one; the peripheral wall structure is provided with a photoelectric sensor for detecting whether the central turntable is provided with coins or not; and a driving motor for driving the central turntable to rotate is arranged at the bottom of the peripheral wall structure.
6. The coin recycling and conveying loop system applied to the full-automatic coin sorting and packaging machine according to claim 5, wherein the coin buffering mechanism comprises: a cache housing structure; the buffer coin conveying belt is arranged on the buffer shell structure; the buffer electromagnetic valve is arranged on the buffer shell structure and is used for sorting coins to the coin input mechanism or remaining in the coin buffer mechanism; the buffer coin conveying belt is communicated with the feeding hopper structure.
7. The coin recycling and conveying loop system applied to the full-automatic coin sorting and packaging machine according to claim 6, wherein the coin buffering mechanism further comprises: install the back connecting plate that buffer memory shell structure was last and can vertical switching adjustable fender who resets.
8. The coin recycling and conveying loop system applied to the full-automatic coin sorting and packaging machine according to claim 7, wherein the coin conveying mechanism comprises: a circulation channel and a packaging channel; the first circulating conveying mechanism is arranged along the circulating channel and used for conveying the coins one by one; the second circulating conveying mechanism is arranged along the packaging channel and is used for conveying the coins one by one; and the channel bottom surface component is arranged on the circulating channel and used for bearing the coin transmission.
9. The coin circulating and conveying loop system applied to the full-automatic coin sorting and packaging machine according to claim 8, wherein the first circulating and conveying mechanism comprises: the first pulley block is arranged at the upstream of the circulating channel; the first circulating conveying belt is matched with the first pulley block; the first circulating conveying belt is erected along the circulating channel; the second circulating transport mechanism includes: the second pulley block is arranged on the downstream side of the packaging channel; the second circulating conveyer belt is arranged on the second pulley block in a matching way; the second circulating conveyor belt is erected along the packaging channel; the first circulating conveying belt has a conveying speed greater than that of the coins rotated out by the central turntable.
CN201911330874.2A 2019-12-20 2019-12-20 Coin circulating conveying loop system applied to full-automatic coin sorting and packaging machine Active CN111009069B (en)

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CN205899661U (en) * 2016-06-17 2017-01-18 浙江工业职业技术学院 Coin automatic sorting , cleanness, packaging all -in -one machine's packing apparatus
CN106530477A (en) * 2016-06-13 2017-03-22 西安交通大学 Multilayer coin sorting packaging machine
CN207503306U (en) * 2017-11-28 2018-06-15 广州畅阳电子科技有限公司 A kind of Coin sorting packing machine

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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE2510661A1 (en) * 1975-03-12 1976-09-23 Pruemm Geb Heuser Margot Electronic unit tester for sorting - has retriggerable time setting device to be available for the next coin
CN201111217Y (en) * 2007-08-21 2008-09-03 北京兆维科技股份有限公司 Coin circulating processor
CN201383177Y (en) * 2009-03-26 2010-01-13 北京兆维科技股份有限公司 Coin circulating processing device
CN201955836U (en) * 2010-12-31 2011-08-31 北京兆维电子(集团)有限责任公司 Coil temporary storage device
CN102730227A (en) * 2012-05-30 2012-10-17 河北汇金机电股份有限公司 Full-automatic paper money clearing and packaging assembly line
CN202748863U (en) * 2012-06-07 2013-02-20 广州新科佳都科技有限公司 Double-type-of-coin adaptive coin circulating processing device
CN205594760U (en) * 2016-04-29 2016-09-21 南昌工程学院 Clear packagine machine that divides of full -automatic coin
CN106530477A (en) * 2016-06-13 2017-03-22 西安交通大学 Multilayer coin sorting packaging machine
CN205899661U (en) * 2016-06-17 2017-01-18 浙江工业职业技术学院 Coin automatic sorting , cleanness, packaging all -in -one machine's packing apparatus
CN207503306U (en) * 2017-11-28 2018-06-15 广州畅阳电子科技有限公司 A kind of Coin sorting packing machine

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