Full-automatic intelligent renewable resource collection and storage machine and device
By designing a fully automatic intelligent recycling resource collection and storage machine, the problems of low participation in garbage recycling and lax management are solved, automated garbage recycling and reuse are realized, and recycling efficiency and environmental protection of the system are improved.
Patent Information
- Application Number
- CN202421700770.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Priority Date
- 2023-08-28
- Filing Date
- 2024-07-17
- Publication Date
- 2025-05-02
- Estimated Expiration
- 2034-07-17
AI Technical Summary
The existing garbage classification and recycling systems have problems of low participation and lax management, which leads to the easy chaos of classified garbage and the meaning of classified disposal.
Design a fully automatic intelligent recycling resource storage machine, including weighing components, storage bins, control components and power supply components, which can automatically identify and process recycling resources of various materials, realize automatic weighing, calculate recycling amounts and pay to customer accounts.
It has increased people's willingness to participate in garbage recycling and reuse, reduced the workload of garbage stations, and realized closed collection, storage and transportation, which is easy to manage, save manpower, safe use, and environmentally friendly and clean.
Smart Images

Figure CN222820599U_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the technical field of waste recycling, and in particular to a fully automatic intelligent renewable resource collection and storage machine and device. Background Art
[0002] With the improvement of living standards brought about by social development and technological progress, more and more garbage is generated by humans, and it is commonly found in public places such as communities and parks. With the development of society and the continuous increase in population growth, the amount of domestic garbage is also growing rapidly. At the same time, people are paying more and more attention to environmental hygiene. At the same time, garbage is also a part of renewable resources. How to reuse garbage and encourage people to participate in the process of garbage recycling is very important.
[0003] Although garbage classification is a matter of great concern to the whole society, and more and more cities have introduced policies to promote garbage classification and achieve resource recycling, the effect is weak, and most people are still unwilling to participate in garbage recycling. At the same time, in terms of street community management, most communities do not strictly control the classified garbage, allowing some scavengers to select renewable resources in a crude way in exchange for money, causing the classified garbage to be mixed again, losing the meaning of garbage classification. Utility Model Content
[0004] In view of this, it is necessary to provide a fully automatic intelligent renewable resource collection and storage machine and device so that people are willing to participate in the meaningful matter of garbage recycling and reuse.
[0005] In a first aspect, the present invention provides a fully automatic intelligent renewable resource collection and storage machine, comprising:
[0006] A shell having a cavity, at least one opening communicating with the cavity, and at least one door for closing and opening the opening, wherein the door corresponds to the opening one by one and is rotatably connected to the shell;
[0007] A weighing assembly is arranged in the cavity, the weighing assembly comprises a weighing mechanism for weighing the renewable resources and a first driving mechanism, one end of the first driving mechanism is connected to the housing, and the other end is connected to and supports the weighing mechanism to drive the weighing mechanism to flip or tilt, and the weighing mechanism is arranged adjacent to the opening;
[0008] A storage bin, disposed in the cavity and below the weighing mechanism, for storing renewable resources;
[0009] A control component, comprising a control module electrically connected to the weighing component and a code reader electrically connected to the control module, wherein the code reader is disposed on the housing and is used to identify a two-dimensional code, and the control module is used to receive and process information and control the weighing component;
[0010] The power supply component includes a power supply interface for connecting to an external power supply, and the power supply interface is electrically connected to the control component.
[0011] In one embodiment, wheels are provided at the bottom of the shell; the shell is a square shell, the number of the wheels is four and they are provided at the four corners of the bottom of the shell; the bottom of the shell is also provided with bolt interfaces for connection, the number of the bolt interfaces is four and they are provided on the side of the bottom of the shell.
[0012] In one embodiment, the control component also includes a card reader for reading bank cards and a monitor for collecting images and / or sound information of the shell and its surroundings. The card reader is electrically connected to the control module and is disposed on the shell and exposed to the outside. The monitor is electrically connected to the control module and is disposed on the top of the shell.
[0013] In one embodiment, the power supply component also includes a photovoltaic panel disposed on the top of the shell, and a battery electrically connected to the photovoltaic panel, the battery is electrically connected to the control module, the photovoltaic panel is used to convert light energy into electrical energy, and the battery is disposed in the cavity.
[0014] In one embodiment, it also includes a crushing component, which is located in the cavity and connected to the shell, and the crushing component is located on the side of the shell away from the opening, and is used to crush the renewable resources on the weighing mechanism; the fully automatic intelligent renewable resource storage machine also includes a sterilization component electrically connected to the control module, the sterilization component is arranged at the bottom of the weighing mechanism, and the sterilization component includes a sterilization light strip; the sterilization component also includes an ozone generator, which is arranged in the cavity and connected to the shell, and the shell is also provided with a circulation interface for the circulation of the ozone.
[0015] In one embodiment, the fully automatic intelligent renewable resource collection and storage machine also includes a pushing mechanism, which is arranged in the cavity and connected to the shell, and the pushing mechanism is located below the crushing assembly; the pushing mechanism includes a pushing plate and a second driving mechanism, one end of the second driving mechanism is connected to the shell, and the other end is connected to the pushing plate, and the second driving mechanism is used to push the pushing plate to evenly distribute the renewable resources crushed by the crushing assembly in the storage bin.
[0016] In one embodiment, the fully automatic intelligent renewable resource collection and storage machine also includes a water control component, which includes a water control basin, and a water control port is provided on the bottom and / or side wall of the water control basin. The water control basin is arranged in the cavity and connected to the shell, and the water control basin is located above the weighing mechanism; the water control component also includes a guide plate, a first bearing, a flip-up arm, and a third driving mechanism. The guide plate is connected to the shell and is arranged at the bottom of the water control basin; the guide plate is connected to the flip-up arm via the first bearing, and the two ends of the third driving mechanism are respectively connected to the flip-up arm and the guide plate, and the second driving mechanism is used to drive the water control basin to flip or tilt relative to the guide plate; the fully automatic intelligent renewable resource collection and storage machine also includes a wastewater bin, which is arranged at the bottom of the cavity and is detachably connected to the shell, and a guide groove is also provided at one end of the guide plate, and the guide groove is used to flow liquid back to the wastewater bin.
[0017] In a second aspect, in one embodiment, the fully automatic intelligent renewable resource storage machine comprises:
[0018] A shell having a cavity, at least one opening communicating with the cavity, and at least one door for closing and opening the opening, wherein the door corresponds to the opening one by one and is rotatably connected to the shell;
[0019] A sorting assembly is arranged in the cavity and connected to the shell; the sorting assembly comprises a sorting bin with at least two openings, and a rotating door arranged on the sorting bin, wherein the rotating door is provided with a magnetic sensor for sensing metals made of iron or stainless steel; the rotating door is rotatably connected to the sorting bin and can open and close one of the openings, and one opening of the sorting bin faces the bin door to receive the metal;
[0020] A storage bin, disposed in the cavity and below the sorting assembly, for storing the metal;
[0021] A control component, comprising a control module electrically connected to the sorting component and a code reader electrically connected to the control module, wherein the code reader is disposed on the housing and is used to identify a two-dimensional code, and the control module is used to receive and process information and control the sorting component;
[0022] The power supply component includes a power supply interface for connecting to an external power supply, and the power supply interface is electrically connected to the control component.
[0023] In one embodiment, the revolving door is rotatably connected to the sorting bin via a second bearing; the sorting bin has an opening at one end away from the bin door and is provided with a baffle, on which a technical counter is provided, and the baffle is connected to the sorting bin via a third bearing, on which an opening and closing bearing motor is provided; the revolving door is also provided with a counter, and the second bearing is an opening and closing bearing motor.
[0024] Compared with the prior art, the fully automatic intelligent renewable resource collection and storage machine provided by the present application can be used for the recycling of renewable resources of various materials, such as metal, plastic, paper, glass, household kitchen waste and other domestic waste, and can automatically weigh and calculate the corresponding recycling amount, and pay the corresponding amount to the bank card or Internet payment account provided by the customer, such as WeChat payment code, etc. The scope of recyclable renewable resources involves garbage in daily life. When throwing away garbage, you can choose to recycle and reuse it, so that people are willing to participate in this meaningful matter, and it can also reduce the workload of garbage stations; in addition, it can also realize closed collection, storage and transportation, which is easy to manage, saves manpower, is safe to use, and is environmentally friendly and clean.
[0025] In a third aspect, the present application also provides a fully automatic intelligent renewable resource storage device, comprising two or more fully automatic intelligent renewable resource storage machines and fasteners, wherein the fully automatic intelligent renewable resource storage machine adopts the fully automatic intelligent renewable resource storage machine described above, and each two fully automatic intelligent renewable resource storage machines are connected by the fasteners. By adopting the fully automatic intelligent renewable resource storage machine described above, and by simply connecting the two, multiple fully automatic intelligent renewable resource storage machines can be installed together, which can make the production and installation of the fully automatic intelligent renewable resource storage device easier, thereby reducing the cost of the product and facilitating its wide-scale promotion and use. BRIEF DESCRIPTION OF THE DRAWINGS
[0026] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the related technologies, the drawings required for use in the embodiments or the related technical descriptions are briefly introduced below. Obviously, the drawings described below are merely embodiments of the present application. For ordinary technicians in this field, other drawings can be obtained based on the provided drawings without paying any creative work.
[0027] Figure 1 is a three-dimensional diagram of a fully automatic intelligent renewable resource storage device provided in an embodiment of the present application;
[0028] Figure 2 yes Figure 1 The front schematic diagram of the fully automatic intelligent renewable resource collection and storage machine is shown;
[0029] Figure 3 yes Figure 1 A side view of a fully automatic intelligent renewable resource collection and storage machine is shown;
[0030] Figure 4 This is a schematic diagram of the internal structure of a fully automatic intelligent renewable resource collection and storage machine according to an embodiment of the present application;
[0031] Figure 5 This is a schematic diagram of the internal structure of a fully automatic intelligent renewable resource collection and storage machine according to an embodiment of the present application;
[0032] Figure 6 yes Figure 5 A partial structural diagram of a fully automatic intelligent renewable resource collection and storage machine is shown;
[0033] Figure 7 This is a schematic diagram of the internal structure of a fully automatic intelligent renewable resource collection and storage machine according to another embodiment of the present application;
[0034] Figure 8 yes Figure 7 A partial structural diagram of a fully automatic intelligent renewable resource collection and storage machine is shown;
[0035] Fig. 9 It is a three-dimensional diagram of the fully automatic intelligent renewable resource storage device provided in the embodiment of the present application. DETAILED DESCRIPTION
[0036] In order to facilitate the understanding of the present application, the present application will be described more fully below with reference to the relevant drawings. The preferred embodiments of the present application are given in the drawings. However, the present application can be implemented in many different forms and is not limited to the embodiments described herein. On the contrary, the purpose of providing these embodiments is to make the disclosure of the present application more thoroughly and comprehensively understood.
[0037] It should be noted that when an element is referred to as being "fixed to" another element, it may be directly on the other element or there may be a central element. When an element is considered to be "connected to" another element, it may be directly connected to the other element or there may be a central element at the same time. The terms "inside", "outside", "left", "right" and similar expressions used herein are for illustrative purposes only and do not represent the only implementation method.
[0038] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as those commonly understood by those skilled in the art to which this application belongs. The terms used herein in the specification of this application are only for the purpose of describing specific embodiments and are not intended to limit this application. The term "and / or" used herein includes any and all combinations of one or more of the related listed items.
[0039] See also Figure 1 , Figure 2 and Figure 3 The fully automatic intelligent renewable resource storage machine 100 provided by the embodiment of the utility model includes a shell 10, a weighing component 20, a storage bin 30, a control component 40, and a power supply component 50; wherein the shell 10 has a cavity, at least one opening connected to the cavity, and at least one bin door 11 for closing and opening the opening, and the bin door 11 corresponds to the opening one by one and is rotatably connected to the shell 10; specifically, the bin door 11 and the shell 10 are rotatably connected by hinges or the like.
[0040] The weighing assembly 20 is arranged in the cavity, and the weighing assembly 20 includes a weighing mechanism 21 for weighing renewable resources, and a first driving mechanism 22, one end of the first driving mechanism 22 is connected to the housing 10, and the other end is connected to and supports the weighing mechanism 21, so as to drive the weighing mechanism 21 to flip or tilt, and the weighing mechanism 21 is arranged near the opening. Specifically, the first driving mechanism 22 includes a hydraulic push rod, and the hydraulic push rod is used to push the weighing mechanism 21 to flip or tilt.
[0041] The storage bin 30 is provided in the cavity and below the weighing mechanism 21, and is used to store the renewable resources. Specifically, in this embodiment, the storage bin 30 is provided with a turnover bin 31 for storing and circulating the renewable resources. The bottom of the turnover bin 31 is provided with wheels, and the turnover bin 31 can be easily pushed to transfer. Of course, in other embodiments, the storage bin 30 can also be used to directly store the renewable resources.
[0042] The control component 40 includes a control module (not shown in the figure) electrically connected to the weighing component 20, and a code reader 42 electrically connected to the control module, wherein the code reader 42 is arranged on the shell 10 and is used to identify two-dimensional code, wherein the two-dimensional code is a payment QR code of WeChat or Alipay, and the warehouse door 11 is opened by scanning the payment QR code; the control module is used to receive and process information and control the weighing component 20; the power supply component 50 includes a power interface 51 for connecting an external power supply, and the power interface 51 is electrically connected to the control component 40. It can be understood that the control component 40 can also include a display screen, a speaker, etc., through which the relevant information such as the weight, unit price, total price, etc. of the renewable resources placed are displayed, and a sound prompt is given through the speaker; the control module can directly control the various components of the fully automatic intelligent renewable resource storage machine 100 to realize fully automatic intelligent operation, such as after receiving the payment QR code information collected by the code reader 42, controlling the warehouse door 11 to open, and after detecting that an item is placed in the weighing mechanism 21, calculating the corresponding amount according to the weight and preset price value obtained by the weighing mechanism 21, and displaying it to the customer through a display screen or sound, and directly transferring the amount to the payment QR code account displayed by the customer, and after completing the detection that no item is placed in the warehouse door 11, the warehouse door 11 can also be controlled to close, so as to avoid the internal load-bearing and subsequent processing process affecting the environment outside the equipment, and at the same time, the recovery amount can be directly paid to the customer account through this payment QR code when making subsequent payments, which is convenient and safe to operate. Of course, various sensors are provided on the components that need to be automatically controlled in the equipment to realize real-time monitoring of the operation of each component.
[0043] Furthermore, the control component 40 also includes a card reader 43 for reading bank cards, and a monitor 44 for collecting images and / or sound information of the housing 10 and the surroundings. The card reader 43 is electrically connected to the control module, and is disposed on the housing 10 and exposed to the outside. The monitor 44 is electrically connected to the control module, and is disposed on the top of the housing 10. By setting the card reader 43, not only can the corresponding amount of money be directly transferred to the customer's bank card by transfer after the amount is calculated, but also the opening of the warehouse door 11 can be controlled by sensing the card swipe to ensure the safety of recycling; the monitor 44 is set to monitor the equipment to avoid deliberate damage to the equipment, and can also record the recycling scene of renewable resources to achieve traceability of resource recycling.
[0044] Continue reading Figure 2 and Figure 3In this embodiment, wheels are provided at the bottom of the housing 10; the housing 10 is a square housing, and the number of the wheels is four and they are provided at the four corners of the bottom of the housing 10; the bottom of the housing 10 is also provided with bolt interfaces 12 for connection, and the number of the bolt interfaces 12 is four and they are provided at the side of the bottom of the housing 10. The wheels are provided to facilitate the transfer of the equipment and save manpower; the bolt interfaces 12 are provided to facilitate not only the loading and fixing of the equipment, but also the side-by-side connection between the equipment.
[0045] Furthermore, the power supply assembly 50 also includes a photovoltaic panel 52 disposed on the top of the housing 10, and a battery (not shown) electrically connected to the photovoltaic panel 52, the battery being electrically connected to the control module, the photovoltaic panel 52 being used to convert light energy into electrical energy, and the battery being disposed in the cavity. The photovoltaic panel 52 can be provided to generate electricity using solar energy, using clean energy, which is more environmentally friendly, and the battery is provided to store electrical energy, so that the device can operate normally even without an external power supply or at night.
[0046] In the embodiment of the present application, the fully automatic intelligent renewable resource collection and storage machine 100 can be used as a recycling device for recycling resources such as metal, plastic, paper, glass, and kitchen waste, and adopts a unified appearance standard and basic design, making the production and assembly of the product more convenient and quick, thereby reducing the production cost of the product. The following description mainly describes the internal structure of the collection and storage machines of different recycling types, and the structures of the other identical parts are not repeated.
[0047] In one embodiment of the present application, the fully automatic intelligent renewable resource collection and storage machine 100 is used as a recycling device for paper, glass, plastic, etc.
[0048] See also Figure 4 In this embodiment, the fully automatic intelligent renewable resource storage machine 100 further includes a crushing assembly 60, which is located in the cavity and connected to the housing 10, and is located on the side of the housing 10 away from the opening, and is used to crush the renewable resources on the weighing mechanism 21; specifically, the crushing assembly 60 includes a crushing mechanism 61, which is used to crush the renewable resources. In this embodiment, the number of the crushing mechanisms 61 is two. Of course, in other embodiments, the number of the crushing mechanisms 61 can be three or four, or one or more, and this application does not limit it.
[0049] The fully automatic intelligent renewable resource storage machine 100 also includes a sterilization component 70 electrically connected to the control module, the sterilization component 70 is arranged at the bottom of the weighing mechanism 21, and the sterilization component 70 includes a sterilization light belt 71. Specifically, the sterilization light belt 71 is an ultraviolet sterilization light belt; the sterilization component 70 also includes an ozone generator 72, and the ozone generator 72 is arranged in the cavity and connected to the shell 10. The shell 10 is also provided with a circulation interface 13 for the circulation of the ozone.
[0050] The crushing assembly 60 can crush paper, glass, plastic waste, etc., making storage and transportation more convenient and achieving preliminary processing. After being transported to the corresponding recycling plant, the next step of processing can be carried out directly, effectively saving processing time.
[0051] Furthermore, in order to make the distribution of garbage powder in the storage bin 30 more uniform and avoid the stacking and escape of powder, the fully automatic intelligent renewable resource storage machine 100 also includes a pushing mechanism 62, which is arranged in the cavity and connected to the shell 10, and the pushing mechanism 62 is located below the crushing assembly 60, specifically below the crushing mechanism 61; the pushing mechanism 62 includes a pushing plate 63 and a second driving mechanism 64, one end of the second driving mechanism 64 is connected to the shell 10, and the other end is connected to the pushing plate 63, and the second driving mechanism 64 is used to push the pushing plate 63 to evenly distribute the renewable resources crushed by the crushing mechanism 61 in the storage bin 30. The push plate 63 is driven by the second driving mechanism 64 to push the powder located under the crushing mechanism 61 to other empty places in the storage bin 30, or the fallen powder is directly guided to other places in the storage bin 30 when the crushing mechanism 61 is crushing, so as to achieve uniform distribution of the garbage powder in the storage bin 30, so that the amount of garbage powder stored is larger, which is convenient for one-time transfer and transportation, thereby reducing the transfer and transportation costs.
[0052] In one embodiment of the present application, the fully automatic intelligent renewable resource collection and storage machine 100 is used as a kitchen waste recycling device.
[0053] See also Figure 5 and Figure 6When the recycled garbage or renewable resources contain liquids such as sewage or leftovers, the fully automatic intelligent renewable resource collection and storage machine 100 of the embodiment of the present application further includes a water control component 90, the water control component 90 includes a water control basin 91, the bottom and / or side wall of the water control basin 91 is provided with a water control port 92, the water control basin 91 is arranged in the cavity and connected to the housing 10, and the water control basin 91 is located above the weighing mechanism 21. It can be understood that the water control basin 91 is provided, the water in the garbage can be discharged from the water control basin 91 through the water control port 92, and then the weighing measurement is performed, which can avoid the influence of the water on the weighing.
[0054] The water control assembly 90 also includes a guide plate 93, a first bearing 94, a buckle arm 95, and a third drive mechanism 96. The guide plate 93 is connected to the shell 10 and is arranged at the bottom of the water control basin 91; the guide plate 93 is connected to the buckle arm 95 via the first bearing 94, and the two ends of the third drive mechanism 96 are respectively connected to the buckle arm 95 and the guide plate 93, and the second drive mechanism 64 is used to drive the water control basin 91 to flip or tilt relative to the guide plate 93; the fully automatic intelligent renewable resource storage machine 100 also includes a wastewater bin, which is arranged at the bottom of the cavity and is detachably connected to the shell 10. Specifically, the wastewater bin is placed side by side with the turnover bin. A guide groove 97 is also provided at one end of the guide plate 93, and the guide groove 97 is used to flow liquid back to the wastewater bin. The setting of the guide plate 93 and the guide groove 97 allows liquids such as sewage to be directly transferred to the wastewater bin to collect wastewater; the second drive mechanism 64 is set to flip the water control basin 91, so that the garbage can be transferred to the weighing mechanism 21 for weighing after water control, thereby realizing automated operation in a closed space and effectively saving manpower and material resources.
[0055] It can be understood that in this embodiment, the fully automatic intelligent renewable resource collection and storage machine 100 as a kitchen waste recycling device does not include a crushing mechanism 61, and only needs to drain and weigh the garbage and directly import it into the turnover bin 31. Of course, in other embodiments, the fully automatic intelligent renewable resource collection and storage machine 100 as a kitchen waste recycling device may also include a crushing mechanism 61 for crushing kitchen waste bones, etc. This application does not make specific restrictions.
[0056] In one embodiment, when the fully automatic intelligent renewable resource collection and storage machine 100 is used for metal recycling, especially for recycling cans, since some cans contain iron and aluminum, the iron and aluminum in the cans need to be separated and stored.
[0057] See also Figure 7 and Figure 8When the fully automatic intelligent renewable resource collection and storage machine 100 is used for metal recycling, a magnetic can sorting assembly 80 disposed in the cavity and connected to the shell 10 can be provided on the fully automatic intelligent renewable resource collection and storage machine 100; the magnetic can sorting assembly 80 includes a sorting bin 81 with at least two openings, and a rotating door 82 disposed on the sorting bin 81, and the rotating door 82 is provided with a magnetic sensor (not shown in the figure) electrically connected to the control module for sensing iron or stainless steel cans. Specifically, in this embodiment, the sorting bin 81 has three openings, two of which are arranged opposite to each other, and the rotating door 82 covers the opening of the sorting bin 81 facing the turnover bin 31, and the rotating door 82 is rotatably connected to the sorting bin 81 through a second bearing 83, and the second bearing 83 drives the rotating door 82 to rotate and open the rotating door 82, so as to release the iron or stainless steel cans into the turnover bin 31, and one opening of the sorting bin 81 faces the bin door 11. It can be understood that when cans made of ferrous materials or stainless steel materials enter the sorting bin 81, the ferrous materials or stainless steel cans will be sensed by the magnetic sensor, and the rotating door 82 will be controlled to open, so that the ferrous materials or stainless steel cans will fall into the turnover bin 31, and non-ferrous materials such as aluminum cans will be transmitted out through another opening of the sorting bin 81, thereby realizing the separation of ferrous materials.
[0058] Furthermore, a baffle 84 is provided at the opening of the sorting bin 81 away from the bin door, and a counter (not shown in the figure) is provided on the baffle 84 for counting. The baffle 84 is connected to the sorting bin 81 via a third bearing 85, and an opening and closing bearing motor is provided on the third bearing connection 85; a counter (not shown in the figure) is also provided on the rotating door 82, and the second bearing 83 is an opening and closing bearing motor. When the magnetic sensor senses iron or stainless steel cans, the control module controls the revolving door 82 to open, and the iron or stainless steel cans are put into the turnover bin 31, at which time the baffle 84 is in a closed state; when the magnetic sensor does not sense iron or stainless steel cans, the control module controls the baffle 84 to open, at which time the revolving door 82 is in a closed state, and non-iron or stainless steel cans are put into the turnover bin 31 from the opening where the baffle 84 of the sorting bin 81 is located. In this embodiment, the turnover bin 31 has a partition to divide the turnover bin 31 into two parts, which correspond to the openings of the revolving door 82 and baffle 84 of the sorting bin 81, respectively, and receive iron or stainless steel cans and non-iron or stainless steel cans. The third bearing connection 85 can be set to realize the automatic opening and closing of the baffle 84, which is convenient for the collection of different metal materials; the counter can be set to measure the number of cans, which is convenient for statistical calculation and calculation of the recycling amount.
[0059] In order to allow more recyclable resources such as cans to be loaded into the turnover bin 31, the fully automatic intelligent renewable resource storage machine 100 is further provided with a crushing assembly 60, specifically a crushing mechanism 61, which is used to crush cans and the like for storage and transportation. In this embodiment, there are two groups of crushing mechanisms 61, which are respectively arranged below the rotating door 82 and the baffle 84 of the sorting bin 81. After the cans are sorted, they are crushed by the crushing mechanism 61 and then put into the turnover bin 31. In addition, in this embodiment, a pushing mechanism 62 is further provided below the crushing mechanism 61 in the fully automatic intelligent renewable resource storage machine 100. It can be understood that the function of setting the pushing mechanism 62 is the same as that of the aforementioned pushing mechanism 62, which will not be repeated in this embodiment.
[0060] In this embodiment, the fully automatic intelligent renewable resource collection and storage machine 100 is used to recycle cans, etc., and the recycling amount can be calculated by counting. In this embodiment, there is no need to set the weighing component 20. Of course, in other embodiments, when the fully automatic intelligent renewable resource collection and storage machine 100 is used to recycle cans, the weighing component 20 can also be set, and the recycling amount can be calculated by weighing.
[0061] In an embodiment of the present application, the control module can also be connected to an external network to send information to the outside; specifically, a sensor is also provided in the fully automatic intelligent renewable resource storage machine 100 for monitoring whether the renewable resources in the turnover bin 31 are full. The sensor can monitor the height of the renewable resources in the turnover bin 31, or it can be the weight, etc. When it is detected that the turnover bin 31 is full, information is sent to the outside. After the transfer vehicle receives the information, the fully automatic intelligent renewable resource storage machine 100 here will open the bin door 11 to transport the turnover bin 31 to a garbage recycling site or a corresponding processing and recycling plant, and at the same time put an empty turnover bin 31 into the fully automatic intelligent renewable resource storage machine 100.
[0062] In other embodiments, the control module can also be directly connected to an external network system to achieve networking, and automatically calculate the amount of garbage recycling based on the market price of the day, and then the value of the items placed can be paid online in a timely manner on the system based on the two-dimensional payment code or bank card when scanning the warehouse, thereby realizing convenient paid garbage recycling, greatly improving the enthusiasm of citizens to place garbage, and facilitating garbage recycling and reprocessing; in addition, through external networking, it is also possible to mark and trace the garbage of the day, week or within a recycling cycle, monitor and trace the entire process of collection, storage, transportation and sales of renewable resources, so that the materials of renewable resources will no longer become counterfeit and shoddy products, plastic medical consumables And the supply channels of food packaging, so as to achieve accurate and efficient management; for example, in a large recycling cycle, such as within a week, a large transfer vehicle will transfer the garbage in the collection and storage machine to the recycling plant for processing. At this time, the networking device will record the classification information and transfer information of this batch of garbage and link it with the information in the recycling plant, so as to facilitate the traceability and destination monitoring of this batch of recycled garbage, and avoid the situation that this batch of recycled garbage will not be included in counterfeit and shoddy products after further processing or be used to forge medical products, food packaging, etc., and the hazardous recycled garbage can be better monitored and managed. While avoiding the wrong use of recycled garbage, the recycling value of the garbage can be fully utilized.
[0063] Compared with the prior art, the fully automatic intelligent renewable resource collection and storage machine 100 provided by the present application can be used for the recycling of renewable resources of various materials, such as metal, plastic, paper, glass, household kitchen waste and other domestic waste, and can automatically weigh and calculate the corresponding recycling amount, and pay the corresponding amount to the bank card or Internet payment account provided by the customer, such as WeChat payment code, etc. The scope of recyclable renewable resources involves garbage in daily life. When throwing away garbage, you can choose to recycle and reuse it, so that people are willing to participate in this meaningful matter, and it can also reduce the workload of garbage stations; in addition, it can also realize closed collection, storage and transportation, which is easy to manage, saves manpower, is safe to use, and is environmentally friendly and clean.
[0064] See also Fig. 9 On the other hand, the present application also provides a fully automatic intelligent renewable resource storage device 1000, comprising two or more fully automatic intelligent renewable resource storage machines 100 and fasteners 200, wherein each two fully automatic intelligent renewable resource storage machines 100 are connected by the fasteners 200. Specifically, the fasteners 200 are bolts, which are connected to the bolt interfaces 12 on the fully automatic intelligent renewable resource storage machines 100 by bolts to achieve detachable connection, which is convenient for transfer and assembly. When the two fully automatic intelligent renewable resource storage machines 100 are connected together, the two flow interfaces 13 can be connected to each other to achieve ozone flow sterilization.
[0065] By using a fully automatic intelligent renewable resource collection and storage machine 100 and installing multiple fully automatic intelligent renewable resource collection and storage machines 100 together through a simple connection between the two, the production and installation of the fully automatic intelligent renewable resource collection and storage device 1000 can be simplified, thereby reducing the cost of the product and facilitating large-scale promotion and use. In addition, different combinations of fully automatic intelligent renewable resource collection and storage machines 100 can be adjusted according to actual needs to adapt to more different usage environments. For example, more combinations of kitchen waste bins, plastic waste bins and textile waste recycling bins can be set up in living areas to recycle domestic waste in a more targeted manner; while in industrial areas, more combinations of metal waste recycling bins and plastic waste recycling bins can be used to recycle and reuse industrial waste in a targeted manner, thereby improving the waste recycling efficiency and the enthusiasm for waste sorting; further, the waste sorting information of the waste collection area over a period of time can be collected, and then the proportion of each type of fully automatic intelligent renewable resource collection and storage machines 100 in the waste collection area can be adaptively adjusted, and fully automatic intelligent renewable resource collection and storage machines 100 with different proportions can be combined to better adapt to the waste proportion in the area, thereby further improving the waste recycling efficiency.
[0066] The technical features of the above-described embodiments can be combined arbitrarily. In order to make the description concise, all possible combinations of the technical features in the above-described embodiments are not described. However, as long as there is no contradiction in the combination of these technical features, they should be considered to be within the scope of this specification. The above-described embodiments only express several implementation methods of the present application, and the description is relatively specific and detailed, but it cannot be understood as a limitation on the scope of the utility model patent. It should be pointed out that for ordinary technicians in this field, without departing from the concept of the present application, several deformations and improvements can be made, which all belong to the protection scope of the present application. Therefore, the protection scope of the patent of this application shall be based on the attached claims.
Claims
1. A fully automatic intelligent renewable resource collection and storage machine, characterized in that: include: A shell having a cavity, at least one opening communicating with the cavity, and at least one door for closing and opening the opening, wherein the door corresponds to the opening one by one and is rotatably connected to the shell; A weighing assembly is arranged in the cavity, the weighing assembly comprises a weighing mechanism for weighing the renewable resources and a first driving mechanism, one end of the first driving mechanism is connected to the housing, and the other end is connected to and supports the weighing mechanism to drive the weighing mechanism to flip or tilt, and the weighing mechanism is arranged adjacent to the opening; A storage bin, disposed in the cavity and below the weighing mechanism, for storing renewable resources; A control component, comprising a control module electrically connected to the weighing component and a code reader electrically connected to the control module, wherein the code reader is disposed on the housing and is used to identify a two-dimensional code, and the control module is used to receive and process information and control the weighing component; The power supply component includes a power supply interface for connecting to an external power supply, and the power supply interface is electrically connected to the control component.
2. The fully automatic intelligent renewable resource storage machine according to claim 1 is characterized in that: The shell is provided with wheels at the bottom; the shell is a square shell, the number of the wheels is four and they are arranged at the four corners of the bottom of the shell; the bottom of the shell is also provided with bolt interfaces for connection, the number of the bolt interfaces is four and they are arranged on the side of the bottom of the shell.
3. The fully automatic intelligent renewable resource storage machine according to claim 1 or 2, characterized in that: The control component also includes a card reader for reading bank cards and a monitor for collecting images and / or sound information of the shell and its surroundings. The card reader is electrically connected to the control module and is disposed on the shell and exposed to the outside. The monitor is electrically connected to the control module and is disposed on the top of the shell.
4. The fully automatic intelligent renewable resource storage machine according to claim 1 or 2, characterized in that: The power supply component also includes a photovoltaic power generation panel arranged on the top of the shell, and a battery electrically connected to the photovoltaic power generation panel, the battery is electrically connected to the control module, the photovoltaic power generation panel is used to convert light energy into electrical energy, and the battery is arranged in the cavity.
5. The fully automatic intelligent renewable resource storage machine according to claim 1 or 2, characterized in that: It also includes a crushing component, which is located in the cavity and connected to the shell, and the crushing component is located on the side of the shell away from the opening, and is used to crush the renewable resources on the weighing mechanism; the fully automatic intelligent renewable resource storage machine also includes a sterilization component electrically connected to the control module, the sterilization component is arranged at the bottom of the weighing mechanism, and the sterilization component includes a sterilization light strip; the sterilization component also includes an ozone generator, which is arranged in the cavity and connected to the shell, and the shell is also provided with a circulation interface for the circulation of ozone.
6. The fully automatic intelligent renewable resource storage machine according to claim 5, characterized in that: The fully automatic intelligent renewable resource storage machine also includes a pushing mechanism, which is arranged in the cavity and connected to the shell, and the pushing mechanism is located below the crushing assembly; the pushing mechanism includes a pushing plate and a second driving mechanism, one end of the second driving mechanism is connected to the shell, and the other end is connected to the pushing plate, and the second driving mechanism is used to push the pushing plate to evenly distribute the renewable resources crushed by the crushing assembly in the storage bin.
7. The fully automatic intelligent renewable resource storage machine according to claim 5, characterized in that: The fully automatic intelligent renewable resource collection and storage machine also includes a water control component, which includes a water control basin, and a water control port is provided on the bottom and / or side wall of the water control basin. The water control basin is arranged in the cavity and connected to the shell, and the water control basin is located above the weighing mechanism; the water control component also includes a guide plate, a first bearing, a flip-up arm, and a third driving mechanism. The guide plate is connected to the shell and is arranged at the bottom of the water control basin; the guide plate is connected to the flip-up arm via the first bearing, and the two ends of the third driving mechanism are respectively connected to the flip-up arm and the guide plate, and the third driving mechanism is used to drive the water control basin to flip or tilt relative to the guide plate; the fully automatic intelligent renewable resource collection and storage machine also includes a wastewater bin, which is arranged at the bottom of the cavity and detachably connected to the shell, and a guide groove is also provided at one end of the guide plate, and the guide groove is used to flow liquid back to the wastewater bin.
8. A fully automatic intelligent renewable resource collection and storage machine for metal recycling, characterized in that: The invention comprises a shell having a cavity, at least one opening communicating with the cavity, and at least one door for closing and opening the opening, wherein the door corresponds to the opening one by one and is rotatably connected to the shell; A sorting assembly is arranged in the cavity and connected to the shell; the sorting assembly comprises a sorting bin with at least two openings, and a rotating door arranged on the sorting bin, wherein the rotating door is provided with a magnetic sensor for sensing metals made of iron or stainless steel; the rotating door is rotatably connected to the sorting bin and can open and close one of the openings, and one opening of the sorting bin faces the bin door to receive the metal; A storage bin, disposed in the cavity and below the sorting assembly, for storing the metal; A control component, comprising a control module electrically connected to the sorting component and a code reader electrically connected to the control module, wherein the code reader is disposed on the housing and is used to identify a two-dimensional code, and the control module is used to receive and process information and control the sorting component; The power supply component includes a power supply interface for connecting to an external power supply, and the power supply interface is electrically connected to the control component.
9. The fully automatic intelligent renewable resource storage machine according to claim 8, characterized in that: The revolving door is rotatably connected to the sorting bin via a second bearing; the sorting bin has an opening at one end away from the bin door and is provided with a baffle, a technical counter is provided on the baffle, the baffle is connected to the sorting bin via a third bearing, an opening and closing bearing motor is provided on the third bearing; a counter is also provided on the revolving door, and the second bearing is an opening and closing bearing motor.
10. A fully automatic intelligent renewable resource storage device, characterized in that: It comprises two or more fully automatic intelligent renewable resource collection and storage machines and fasteners. The fully automatic intelligent renewable resource collection and storage machine adopts the fully automatic intelligent renewable resource collection and storage machine as described in any one of claims 1 to 9, and every two of the fully automatic intelligent renewable resource collection and storage machines are connected by the fasteners.