CN220691454U - Shipment structure of wisdom campus automatic vending machine - Google Patents

Shipment structure of wisdom campus automatic vending machine Download PDF

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Publication number
CN220691454U
CN220691454U CN202322341585.0U CN202322341585U CN220691454U CN 220691454 U CN220691454 U CN 220691454U CN 202322341585 U CN202322341585 U CN 202322341585U CN 220691454 U CN220691454 U CN 220691454U
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China
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vending machine
storage rack
shipment
plate
storage
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CN202322341585.0U
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Chinese (zh)
Inventor
徐丹
黄庆添
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Guangzhou Hongtu Digital Technology Co ltd
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Guangzhou Hongtu Digital Technology Co ltd
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Abstract

The utility model belongs to the technical field of vending machines, and particularly provides a shipment structure of an intelligent campus vending machine, which comprises a vending machine body and a shipment structure, wherein the shipment structure comprises a first storage rack, a second storage rack and a pushing assembly respectively installed in the first storage rack and the second storage rack; two opposite faces of the vending machine body are symmetrically provided with cabinet doors, the first storage rack and the second storage rack are symmetrically arranged in the vending machine body, the end, close to the cabinet doors, of the first storage rack and the second storage rack is an inventory end, the end, far away from the cabinet doors is a delivery end, and a delivery channel is formed between the delivery ends of the first storage rack and the second storage rack; a goods taking port is arranged on one side surface of the vending machine body adjacent to the cabinet door, and one end of the goods discharging channel extends to the goods taking port and is communicated with the goods taking port; a buffer component is arranged in the shipment channel. Through being equipped with propelling movement subassembly and being equipped with buffer unit on shipment passageway, by the card owner when preventing commodity shipment and prevent that the commodity that drops from causing great impact.

Description

Shipment structure of wisdom campus automatic vending machine
Technical Field
The utility model belongs to the technical field of vending machines, and particularly relates to a shipment structure of an intelligent campus vending machine.
Background
The vending machine is a machine capable of automatically paying according to the input coins, is not limited by time and place, can save manpower and facilitate transaction, is a brand new commercial retail form, and is also called a micro supermarket for 24-hour business. In the wisdom campus life, often put in and have had a plurality of vending machine to sell the work, greatly facilitated the shopping of campus.
However, in the prior art, most sales counter often causes larger impact force in the process of dropping during shipment, and damages the commodity, for example, when a carbonated beverage is purchased, carbon dioxide in the beverage is easy to emit, and inconvenience is brought to the purchaser in drinking; meanwhile, most of the prior sales counter is easy to cause the goods to be blocked when the goods are delivered after the goods are purchased, so that the goods cannot be delivered normally.
Based on the above, the present utility model provides a shipment structure of an intelligent campus vending machine, so as to solve the above-mentioned problems.
Disclosure of Invention
In order to overcome the defects in the prior art, the utility model provides a shipment structure of an intelligent campus automatic vending machine, which aims to solve the problems in the prior art.
One embodiment of the utility model provides a shipment structure of an intelligent campus automatic vending machine, which comprises a vending machine body and a shipment structure arranged in the vending machine body, wherein:
the shipment structure comprises a first storage rack, a second storage rack and a pushing assembly respectively arranged in the first storage rack and the second storage rack;
the vending machine comprises a vending machine body, wherein two opposite faces of the vending machine body are symmetrically provided with cabinet doors, a first storage rack and a second storage rack are symmetrically arranged in the vending machine body, the end, close to the cabinet doors, of the first storage rack and the second storage rack is an inventory end, the end, far away from the cabinet doors, is a delivery end, and a delivery channel is formed between the delivery ends of the first storage rack and the second storage rack;
a goods taking port is formed in one side surface, adjacent to the cabinet door, of the vending machine body, and one end of the goods discharging channel extends to the goods taking port and is communicated with the goods taking port;
and a buffer assembly is arranged in the shipment channel.
In one embodiment, the inner side wall of the vending machine body is provided with a vertical supporting frame, and the vertical supporting frame is fixedly connected with the inner side wall of the vending machine body through a screw;
the first storage rack and the second storage rack are fixedly connected with the vertical support frame through screws.
In one embodiment, the first storage rack and the second storage rack have the same structure, and each includes: a plurality of frame bodies and a plurality of sliding limiting plates;
the sliding limiting plate is fixedly arranged on the vertical supporting frame through a screw, and the frame body is arranged on the sliding limiting plate and is in sliding connection with the sliding limiting plate;
the frame body is internally and fixedly provided with a first baffle, the frame body is divided into a plurality of storage areas through the first baffle, and a pushing assembly is arranged in each storage area of the frame body.
In one embodiment, two sides of the sliding limiting plate are provided with linear sliding grooves;
linear sliding rails are arranged on two sides of the frame body;
when the frame body is arranged on the sliding limiting plate, the linear sliding rail is embedded in the linear sliding groove, and the frame body is in sliding connection with the linear sliding groove of the sliding limiting plate through the linear sliding rail.
In one embodiment, the pushing assembly comprises a hydraulic push rod, a storage plate and a flexible conveyor belt;
the hydraulic push rod is arranged at the stock ends of the first storage rack and the second storage rack, and the pushing end of the hydraulic push rod is connected with the flexible conveying belt;
the storage plate is fixedly arranged in the storage area;
the two inner sides of the storage plate are provided with limiting grooves, the flexible conveying belt is arranged in the limiting grooves of the storage plate, and the flexible conveying belt is in sliding connection with the storage plate.
In one embodiment, the flexible conveyor belt is fixedly connected with a plurality of second partition boards which are arranged at intervals, one end of each second partition board, which is close to the hydraulic push rod, is vertically arranged, and the other second partition boards are obliquely arranged;
and the second partition plate arranged vertically is fixedly connected with the pushing end of the hydraulic push rod.
In one embodiment, the delivery channel comprises a vertical section and an arc section, and the arc section of the delivery channel is communicated with the delivery port;
the buffer assembly is installed in the arc-shaped section of the shipment channel.
In one embodiment, the cushioning assembly includes a cushioning plate and a plurality of resilient members;
the buffer plate is matched with the arc of the arc section of the shipment channel, and buffer cotton is arranged on the upper surface of the buffer plate;
one end of the elastic piece is fixed on the arc section of the shipment channel, and the other end of the elastic piece is fixedly connected with the bottom surface of the buffer plate to support the buffer plate.
In one embodiment, the vertical section of the shipment channel is provided with an inclined guide plate, and the inclined guide plate is close to the lower ends of the first storage rack and the second storage rack;
the inclined guide plate is fixedly connected with the inner side wall of the vending machine body;
the upper surface of the inclined guide plate is provided with buffer cotton.
In one embodiment, the bottom surface of the vending machine body is provided with a rotating wheel;
the vending machine is characterized in that a touch screen is arranged on the side face of the vending machine body, provided with the goods taking port, and the touch screen is arranged above the goods taking port.
The shipment structure of wisdom campus automatic vending machine that above embodiment provided has following beneficial effect:
the push assembly and the buffer assembly are arranged on the goods delivery channel, so that the goods are prevented from being blocked and the falling goods are prevented from causing larger impact when the goods are delivered; meanwhile, the first storage rack and the second storage rack are arranged, so that the storage quantity of commodities is increased, and staff do not need to frequently supplement the commodities.
Drawings
In order to more clearly illustrate the embodiments of the present utility model or the technical solutions in the prior art, the drawings that are required in the embodiments or the description of the prior art will be briefly described, and it is obvious that the drawings in the following description are only some embodiments of the present utility model, and other drawings may be obtained according to the structures shown in these drawings without inventive effort for a person skilled in the art.
Fig. 1 is a schematic diagram of a vending machine body of a shipment structure of an intelligent campus vending machine according to an embodiment of the present utility model;
FIG. 2 is a schematic cross-sectional view of the internal structure of the shipment structure of the smart campus vending machine of FIG. 1;
FIG. 3 is a schematic cross-sectional view of the internal structure of the shipment structure of the smart campus vending machine of FIG. 1;
fig. 4 is a schematic diagram of a shipment structure of a smart campus vending machine according to an embodiment of the present utility model;
FIG. 5 is a schematic diagram of a shelf structure of the shipment structure of the smart campus automatic vending machine of FIG. 4;
FIG. 6 is a schematic illustration of the connection of a frame of the shipping structure of the smart campus vending machine of FIG. 5 with a sliding limit plate;
fig. 7 is a schematic diagram of a pushing component of a shipment structure of a smart campus vending machine according to an embodiment of the present utility model;
fig. 8 is a schematic diagram of a position of a flexible conveyor belt after being pushed by a hydraulic push rod of a shipment structure of the smart campus automatic vending machine in fig. 7.
Reference numerals:
100. a vending machine body; 110. a shipment channel; 120. a goods taking port; 130. a vertical support; 140. an inclined guide plate; 200. a shipment structure; 210. a first storage rack; 220. a second storage rack; 230. a frame body; 231. a first separator; 232. a linear slide rail; 240. sliding limiting plates; 241. a straight line chute; 300. a pushing assembly; 310. a hydraulic push rod; 320. a storage plate; 321. a limit groove; 330. a flexible conveyor belt; 331. a second separator; 400. a cabinet door; 500. a buffer assembly; 510. a buffer plate; 520. an elastic member; 600. buffering cotton; 700. a rotating wheel; 800. and a touch screen.
Detailed Description
The following description of the embodiments of the present utility model will be made clearly and fully with reference to the accompanying drawings, in which it is evident that the embodiments described are only some, but not all embodiments of the utility model. All other embodiments, which can be made by those skilled in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
It should be noted that, if a directional indication (such as up, down, left, right, front, and rear … …) is involved in the embodiment of the present utility model, the directional indication is merely used to explain the relative positional relationship, movement condition, etc. between the components in a specific posture, and if the specific posture is changed, the directional indication is correspondingly changed.
In addition, if there is a description of "first", "second", etc. in the embodiments of the present utility model, the description of "first", "second", etc. is for descriptive purposes only and is not to be construed as indicating or implying a relative importance or implicitly indicating the number of technical features indicated. Thus, a feature defining "a first" or "a second" may explicitly or implicitly include at least one such feature. In addition, if "and/or" and/or "are used throughout, the meaning includes three parallel schemes, for example," a and/or B "including a scheme, or B scheme, or a scheme where a and B are satisfied simultaneously. In addition, the technical solutions of the embodiments may be combined with each other, but it is necessary to base that the technical solutions can be realized by those skilled in the art, and when the technical solutions are contradictory or cannot be realized, the combination of the technical solutions should be considered to be absent and not within the scope of protection claimed in the present utility model.
Referring to fig. 1-8, one embodiment of the present utility model provides a shipment structure of a smart campus vending machine, including a vending machine body 100 and a shipment structure 200 installed in the vending machine body 100, wherein:
the shipment structure 200 includes a first storage rack 210, a second storage rack 220, and a pushing assembly 300 mounted in the first storage rack 210 and the second storage rack 220, respectively;
the two opposite sides of the vending machine body 100 are symmetrically provided with a cabinet door 400, the first storage rack 210 and the second storage rack 220 are symmetrically installed in the vending machine body 100, the end, close to the cabinet door 400, of the first storage rack 210 and the second storage rack 220 is an inventory end, the end, far away from the cabinet door 400 is a delivery end, and a delivery channel 110 is formed between the delivery ends of the first storage rack 210 and the second storage rack 220;
a goods taking port 120 is arranged on one side surface of the vending machine body 100 adjacent to the cabinet door 400, and one end of the goods discharging channel 110 extends to the goods taking port 120 and is communicated with the goods taking port 120;
a buffer assembly 500 is disposed in the shipment channel 110.
In the present embodiment, by providing the pushing component 300 and providing the buffer component 500 on the shipment channel 110, the product is prevented from being blocked and from being dropped to cause a large impact when the product is shipped; meanwhile, the first storage rack 210 and the second storage rack 220 are arranged, so that the storage amount of commodities is increased, and staff does not need to frequently supplement the commodities.
Specifically, the shipment structure 200 is composed of a first storage rack 210, a second storage rack 220 and a pushing component 300, and both are installed in the vending machine body 100, the first storage rack 210 and the second storage rack 220 are used for placing goods, and the pushing component 300 is used for pushing out the goods after the students purchase the goods; two opposite surfaces of the vending machine body 100 are symmetrically provided with a cabinet door 400, one end, close to the cabinet door 400, of the first storage rack 210 and the second storage rack 220 is an inventory end, and a worker can add goods for the first storage rack 210 and the second storage rack 220 by opening the cabinet door 400, and meanwhile, the vending machine is convenient to maintain; the first storage rack 210 and the second storage rack 220 are provided with a goods outlet end at one end far away from the cabinet door 400, a goods outlet channel 110 is formed between the goods outlet ends of the first storage rack 210 and the second storage rack 220, after a student purchases goods, the goods are pushed out from the goods outlet end and drop into the goods outlet channel 110, a goods taking opening 120 communicated with the goods outlet channel 110 is arranged on one side surface of the vending machine body 100 adjacent to the cabinet door 400, the goods dropping into the goods outlet channel 110 slide to the goods taking opening 120, and the student can take the purchased goods from the goods taking opening 120; the buffer assembly 500 is disposed in the shipment channel 110, which protects the dropped goods from damage caused by a large impact force.
The vending machine body 100 is further provided with a control circuit system (not shown in the figure) for providing power to the whole equipment to ensure the normal operation of the whole equipment, and the control circuit system is a conventional means used by those skilled in the art, and will not be described herein.
In one embodiment, the inner side wall of the vending machine body 100 is provided with a vertical supporting frame 130, and the vertical supporting frame 130 is fixedly connected with the inner side wall of the vending machine body 100 through a screw;
the first storage rack 210 and the second storage rack 220 are fixedly connected with the vertical support rack 130 through screws.
In this embodiment, as shown in fig. 2 and 3, vertical supporting frames 130 are symmetrically arranged on the inner side wall of the vending machine body 100, the vertical supporting frames 130 are fixed on the inner side wall of the vending machine body 100 by screws, and the first storage frame 210 and the second storage frame 220 are both fixed on the vertical supporting frames 130 by screws, as shown in fig. 4; the vertical support frame 130 provides supporting force for the first storage frame 210 and the second storage frame 220, so that the first storage frame and the second storage frame are fixed in the vending machine body 100, and meanwhile, the first storage frame and the second storage frame are convenient to disassemble, assemble and maintain in a fixed mounting mode of screws.
In one embodiment, the first storage rack 210 and the second storage rack 220 have the same structure, and each includes: a plurality of frame bodies 230 and a plurality of sliding limiting plates 240;
the sliding limiting plate 240 is fixedly installed on the vertical supporting frame 130 through a screw, and the frame body 230 is installed on the sliding limiting plate 240 and is in sliding connection with the sliding limiting plate 240;
the first partition 231 is fixedly arranged in the frame 230, the frame 230 is divided into a plurality of storage areas by the first partition 231, and the pushing assembly 300 is installed in each storage area of the frame 230.
In this embodiment, as shown in fig. 4 to 6, the first storage rack 210 and the second storage rack 220 have the same structure, and each of the first storage rack and the second storage rack is composed of a plurality of rack bodies 230 and a plurality of sliding limiting plates 240, the sliding limiting plates 240 are L-shaped, the vertical sections of the sliding limiting plates 240 are fixedly mounted on the vertical support rack 130 by screws, and the rack bodies 230 are slidably mounted on the horizontal sections of the sliding limiting plates 240; the sliding limiting plate 240 is a connecting piece, the frame body 230 is a commodity placing place, the frame body 230 is divided into a plurality of storage areas by the first partition 231 and is used for placing different commodities, and meanwhile, the storage quantity of the commodities is improved; each storage area is provided with a pushing component 300, the placed commodity is positioned on the pushing component 300 of the storage area, and after a student places a bill, the commodity is pushed out by the pushing component 300 in the corresponding storage area; meanwhile, since the frame 230 is installed on the horizontal section of the sliding limiting plate 240 in a sliding manner, a worker can slide out the frame 230 to supplement goods by opening the cabinet door 400, so that convenience of the worker in supplementing the goods is improved.
In one embodiment, two sides of the sliding limiting plate 240 are provided with linear sliding grooves 241;
linear slide rails 232 are arranged on two sides of the frame body 230;
when the frame 230 is mounted on the sliding limiting plate 240, the linear sliding rail 232 is embedded in the linear sliding groove 241, and the frame 230 is slidably connected with the linear sliding groove 241 of the sliding limiting plate 240 through the linear sliding rail 232.
In this embodiment, as shown in fig. 5 and 6, on the inner side surface of the vertical section of the sliding limiting plate 240, linear sliding grooves 241 are symmetrically arranged, one end of each linear sliding groove 241 is open, the other end is closed, and on the outer side surface of the frame 230, linear sliding rails 232 are symmetrically arranged, the length of each linear sliding rail 232 of the frame 230 is equal to the length of each linear sliding groove 241 of the sliding limiting plate 240, and when the frame 230 is mounted on the horizontal section of the sliding limiting plate 240, the linear sliding rails 232 are located in the linear sliding grooves 241 to limit sliding, so as to limit the vertical direction of the frame 230; meanwhile, since one end of the straight chute 241 is opened and the other end is closed, a worker can clearly know whether the frame 230 is put in place.
In one embodiment, the pushing assembly 300 includes a hydraulic ram 310, a storage plate 320, and a flexible conveyor 330;
the hydraulic push rod 310 is arranged at the stock ends of the first storage rack 210 and the second storage rack 220, and the pushing end of the hydraulic push rod 310 is connected with the flexible conveying belt 330;
the storage plate 320 is fixedly installed in the storage area;
two inner sides of the storage plate 320 are provided with limiting grooves 321, the flexible conveyor belt 330 is installed in the limiting grooves 321 of the storage plate 320, and the flexible conveyor belt 330 is slidably connected with the storage plate 320.
In this embodiment, as shown in fig. 7, the pushing assembly is composed of a hydraulic push rod 310, a storage plate 320 and a flexible conveying belt 330, wherein the hydraulic push rod 310 is used for pushing the flexible conveying belt 330 to slide in a limiting groove 321 of the storage plate 320, the storage plate 320 is used for supporting the flexible conveying belt 330, the flexible conveying belt 330 is used for placing goods, after a student purchases the goods, the hydraulic push rod 310 is pushed forward by a certain amount to drive the flexible conveying belt 330 to slide in the limiting groove 321 of the storage plate 320 by a certain amount, and the goods are pushed into the goods outlet channel 110 to drop.
In one embodiment, the flexible conveyor belt 330 is fixedly connected with a plurality of second partition plates 331 disposed at intervals, one end of the second partition plates 331 close to the hydraulic push rod 310 is vertically disposed, and the other second partition plates 331 are obliquely disposed;
the second partition 331 is fixedly connected to the pushing end of the hydraulic push rod 310.
In this embodiment, as shown in fig. 7 and 8, the plurality of second partitions 331 arranged at intervals can increase the storage amount of the commodity in the storage area, one second partition 331 close to the hydraulic push rod 310 is arranged vertically, the other second partitions 331 are arranged obliquely, when the student purchases the commodity, the hydraulic push rod 310 pushes the vertical second partition 331 to push forward a certain amount, so that the second partition 331 arranged obliquely at the front end moves forward a certain amount, and the commodity placed at the front end is easy to drop due to the inclined arrangement of the second partition 331 at the front end, while if the commodity is arranged vertically, the condition that the commodity cannot drop easily occurs; meanwhile, if the front end is vertically arranged, the pushing amount of the hydraulic push rod 310 needs to be increased, and further, the storage amount of the commodity needs to be reduced.
In one embodiment, the delivery channel 110 includes a vertical section and an arcuate section, and the arcuate section of the delivery channel 110 communicates with the access opening 120;
the cushioning assembly 500 is mounted within the arcuate segment of the shipment aisle 110.
In this embodiment, as shown in fig. 2 and 3, the shipment channel 110 formed between the first storage rack 210 and the second storage rack 220 is a vertical section, the shipment channel 110 under the first storage rack 210 and the second storage rack 220 is an arc section, the shipment channel 110 of the arc section is communicated with the goods taking port 120, and the buffer assembly 500 is provided, when a student purchases a commodity, the commodity falls from the shipment channel 110 of the vertical section to the shipment channel 110 of the arc section from the first storage rack 210 or the second storage rack 220, the buffer assembly 500 in the arc section plays a role of buffering the fallen commodity so as to prevent the commodity from being damaged due to a large impact force, the fallen commodity slides from the arc section to the goods taking port 120, and the student can take the purchased commodity from the goods taking port 120.
In one embodiment, the damper assembly 500 includes a damper plate 510 and a plurality of elastic members 520;
the buffer plate 510 is adapted to the arc of the arc section of the shipment channel 110, and the buffer cotton 600 is disposed on the upper surface of the buffer plate 510;
one end of the elastic member 520 is fixed on the arc section of the shipment channel 110, and the other end is fixedly connected with the bottom surface of the buffer plate 510, so as to support the buffer plate 510.
In the present embodiment, the buffer assembly 500 includes a buffer plate 510 and a plurality of elastic members 520, and the elastic members 520 may employ springs; the buffer board 510 is in the same centre of a circle with the arc looks adaptation of the shipment passageway 110 of arc section, simultaneously, buffer board 510 top surface sets up buffer cotton 600, elastic component 520 is located between the top surface of shipment passageway 110 and the bottom surface of buffer board 510, link to each other both through elastic component 520, when commodity drops to the shipment passageway 110 of arc section, reduce the impact force that commodity dropped and bring through buffer cotton 600, simultaneously because buffer board 510 bottom surface has elastic component 520, can further reduce impact force, in order to prevent commodity damage, after commodity drops in the shipment passageway 110 of arc section, slide to getting goods mouth 120 department, the student can get commodity from getting goods mouth 120 department.
In one embodiment, the vertical section of the shipment channel 110 is provided with an inclined guide plate 140, and the inclined guide plate 140 is adjacent to the lower ends of the first storage rack 210 and the second storage rack 220;
the inclined guide plate 140 is fixedly connected with the inner side wall of the vending machine body 100;
the upper surface of the inclined guide plate 140 is provided with a buffer cotton 600.
In this embodiment, as shown in fig. 3, the lower end of the first storage rack 210 and the second storage rack 220 is close to the inclined guide plate 140, and the buffer cotton 600 is disposed above the inclined guide plate 140, when the first storage rack 210 and the second storage rack 220 are close to the goods on one side of the goods taking port 120, the inclined guide plate 140 buffers the dropped goods once, and guides the dropped goods into the goods outlet channel 110 of the arc section for secondary buffering, so that the situation that the first storage rack 210 and the second storage rack 220 drop towards the goods taking port 120 directly when the goods on one side of the first storage rack 210 and the second storage rack 220 are close to the goods taking port 120 drop is avoided, and the goods outlet channel 110 of the arc section does not play a buffering role, so that the damage of the goods is caused. The inclination angle of the inclination guide plate 140 is adjusted according to specific requirements during use, as required.
In one embodiment, the vending machine body 100 is provided with a rotating wheel 700 on the bottom surface;
the side surface of the vending machine body 100 provided with the goods taking port 120 is provided with a touch screen 800, and the touch screen 800 is arranged above the goods taking port 120.
In this embodiment, be provided with the transport and the removal of the convenient whole vending machine of rotation wheel 700, make things convenient for the student to operate through touch-control screen 800 through being provided with touch-control screen 800 and purchase commodity, and touch-control screen 800 and get goods mouth 120 and be located same one side, after the student has purchased commodity, commodity can drop in the one side that the student is located, increases the convenience of use.
The mounting, setting, arranging or connecting modes include, but are not limited to, mounting, setting or connecting by means of screws, riveting, welding or sleeving, fixing and the like according to the needs, and the mounting, setting or connecting modes are selected according to the needs of working situations.
The foregoing description is only of the preferred embodiments of the present utility model and is not intended to limit the scope of the utility model, and all equivalent structural changes made by the description of the present utility model and the accompanying drawings or direct/indirect application in other related technical fields are included in the scope of the utility model.

Claims (10)

1. The utility model provides a shipment structure (200) of wisdom campus automatic vending machine, includes vending machine body (100) and installs shipment structure (200) in vending machine body (100), its characterized in that:
the shipment structure (200) comprises a first storage rack (210), a second storage rack (220) and a pushing assembly (300) respectively arranged in the first storage rack (210) and the second storage rack (220);
two opposite faces of the vending machine body (100) are symmetrically provided with cabinet doors (400), the first storage rack (210) and the second storage rack (220) are symmetrically arranged in the vending machine body (100), the end, close to the cabinet doors (400), of the first storage rack (210) and the second storage rack (220) is an inventory end, the end, far away from the cabinet doors (400), is a delivery end, and a delivery channel (110) is formed between the delivery ends of the first storage rack (210) and the second storage rack (220);
a goods taking port (120) is formed in one side surface, adjacent to the cabinet door (400), of the vending machine body (100), and one end of the goods discharging channel (110) extends to the goods taking port (120) and is communicated with the goods taking port (120);
a buffer assembly (500) is arranged in the shipment channel (110).
2. The shipment structure (200) of a smart campus vending machine of claim 1, wherein:
the vending machine comprises a vending machine body (100), wherein a vertical supporting frame (130) is arranged on the inner side wall of the vending machine body (100), and the vertical supporting frame (130) is fixedly connected with the inner side wall of the vending machine body (100) through screws;
the first storage rack (210) and the second storage rack (220) are fixedly connected with the vertical support frame (130) through screws.
3. The shipment structure (200) of a smart campus vending machine of claim 2, wherein:
the first storage rack (210) and the second storage rack (220) have the same structure, and each comprises: a plurality of frame bodies (230) and a plurality of sliding limiting plates (240);
the sliding limiting plate (240) is fixedly arranged on the vertical supporting frame (130) through a screw, and the frame body (230) is arranged on the sliding limiting plate (240) and is in sliding connection with the sliding limiting plate (240);
the novel multifunctional storage rack is characterized in that a first partition plate (231) is fixedly arranged in the rack body (230), the rack body (230) is divided into a plurality of storage areas through the first partition plate (231), and a pushing assembly (300) is arranged in each storage area of the rack body (230).
4. A shipment structure (200) for a smart campus vending machine as claimed in claim 3, wherein:
the two sides of the sliding limiting plate (240) are provided with linear sliding grooves (241);
two sides of the frame body (230) are provided with linear sliding rails (232);
when the frame body (230) is installed on the sliding limiting plate (240), the linear sliding rail (232) is embedded in the linear sliding groove (241), and the frame body (230) is in sliding connection with the linear sliding groove (241) of the sliding limiting plate (240) through the linear sliding rail (232).
5. The shipment structure (200) of a smart campus vending machine of claim 4, wherein:
the pushing assembly (300) comprises a hydraulic push rod (310), a storage plate (320) and a flexible conveying belt (330);
the hydraulic push rod (310) is arranged at the stock ends of the first storage rack (210) and the second storage rack (220), and the pushing end of the hydraulic push rod (310) is connected with the flexible conveying belt (330);
the storage plate (320) is fixedly arranged in the storage area;
limiting grooves (321) are formed in the two inner sides of the storage plate (320), the flexible conveying belt (330) is installed in the limiting grooves (321) of the storage plate (320), and the flexible conveying belt (330) is in sliding connection with the storage plate (320).
6. The shipment structure (200) of a smart campus vending machine of claim 5, wherein:
the flexible conveyor belt (330) is fixedly connected with a plurality of second partition plates (331) which are arranged at intervals, one end, close to the hydraulic push rod (310), of each second partition plate (331) is driven to be arranged vertically, and the other second partition plates (331) are arranged obliquely;
the second baffle (331) arranged vertically is fixedly connected with the pushing end of the hydraulic push rod (310).
7. The shipment structure (200) of a smart campus vending machine of claim 1, wherein:
the delivery channel (110) comprises a vertical section and an arc section, and the arc section of the delivery channel (110) is communicated with the delivery port (120);
the cushioning assembly (500) is mounted within the arcuate segment of the shipment aisle (110).
8. The shipment structure (200) of a smart campus vending machine of claim 7, wherein:
the cushioning assembly (500) includes a cushioning plate (510) and a plurality of resilient members (520);
the buffer plate (510) is matched with the arc of the arc section of the shipment channel (110), and buffer cotton (600) is arranged on the upper surface of the buffer plate (510);
one end of the elastic piece (520) is fixed on the arc section of the shipment channel (110), and the other end of the elastic piece is fixedly connected with the bottom surface of the buffer plate (510) to support the buffer plate (510).
9. The shipment structure (200) of a smart campus vending machine of claim 7, wherein:
the vertical section of the shipment channel (110) is provided with an inclined guide plate (140), and the inclined guide plate (140) is close to the lower ends of the first storage rack (210) and the second storage rack (220);
the inclined guide plate (140) is fixedly connected with the inner side wall of the vending machine body (100);
the upper surface of the inclined guide plate (140) is provided with a buffer cotton (600).
10. The shipment structure (200) of a smart campus vending machine of claim 1, wherein:
the bottom surface of the vending machine body (100) is provided with a rotating wheel (700);
the vending machine is characterized in that a touch screen (800) is arranged on the side face, provided with the goods taking port (120), of the vending machine body (100), and the touch screen (800) is arranged above the goods taking port (120).
CN202322341585.0U 2023-08-29 2023-08-29 Shipment structure of wisdom campus automatic vending machine Active CN220691454U (en)

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