Intelligent fabric recycling box and quick sorting method thereof

Through the design of the intelligent fabric recycling box, the classified delivery, drying and point rewards of fabrics are realized, which solves the problem of difficult monitoring of the fabric recycling box status and high operating costs, improves residents' enthusiasm for delivery and optimizes the resource recycling path.

CN112216015BActive Publication Date: 2025-08-26JINAN LI CHONG SUPPLY CHAIN TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202010789030.0
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2020-08-07
Publication Date
2025-08-26
Estimated Expiration
2040-08-07

AI Technical Summary

Technical Problem

The existing fabric recycling bins cannot effectively monitor the recycling status, the fabric is prone to moisture and cannot be redeemable to residents, resulting in low enthusiasm for delivery, high operating costs and unreasonable staffing.

Method used

An intelligent fabric recycling box is designed, equipped with fabric drying device, weight measuring device, recycling control device and mesh bag access mechanism. It can realize fabric classification delivery, point reward and real-time drying through the central processing unit, and combine it with mobile APP and server terminal for data processing and inspection.

Benefits of technology

It has increased residents' enthusiasm for recycling fabrics, optimized recycling paths and staffing, reduced operating costs, ensured that the fabrics were dry and easy to deliver in a classified manner.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention discloses an intelligent fabric recycling box and a classification and quick delivery method thereof, comprising a box body, a delivery door and a storage cavity door, wherein the box body is horizontally installed on a ground foundation through a base, the delivery door and the storage cavity door are rotated and installed on the box body from top to bottom in sequence, and are both locked by an electronic lock, a fabric drying device and a fabric weighing device are provided in the box body, a fabric recovery control device and a net bag taking mechanism are provided on the box body, the fabric drying device, the fabric weighing device, the fabric recovery control device and the net bag taking mechanism are all controlled by a central processing unit, and the fabric recovery method is processed through classification and quick delivery. The intelligent fabric recycling box and the classification and quick delivery method thereof enable the intelligent fabric recycling box to monitor its own recycling situation and interact with residents, thereby greatly improving residents' interest in recycling and classifying fabrics, reducing the workload of staff, optimizing the recycling path and personnel allocation, and reducing operating costs and personnel allocation.
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Description

Technical Field

[0001] The present invention relates to the technical field of resource recovery equipment, and in particular to an intelligent fabric recovery box and a classification and quick-dispensing method thereof. Background Art

[0002] my country is not only a major textile producer, but also a major textile consumer, with thousands of tons of discarded textiles thrown away every year.

[0003] With natural resources dwindling, my country's textile industry currently relies on imports for 60% of its raw materials, and this demand continues to grow. The resulting competition for land and cotton production is becoming increasingly prominent. Due to the large population base, a large amount of waste fabric is discarded daily. Much of this fabric is directly incinerated or landfilled, with very little recycling, resulting in environmental pollution and significant waste of resources.

[0004] To solve the above problems, recycle resources to reduce environmental pollution and waste, we must start from the source and go deep into the community. Currently, community residents generally do not carry out systematic classification when disposing of garbage. Residents are lazy or have no awareness of resource recycling and environmental protection. Some recyclables and other hazardous wastes are mixed together and thrown into the trash can. On the one hand, it increases the difficulty of manual cleaning, classification, and back-end separation and processing, and at the same time it also causes waste of resources. How to improve residents' awareness of recycling resource classification and disposal behavior has become an urgent problem to be solved.

[0005] Nowadays, fabric recycling bins are usually placed in residential areas or near crowded areas, and personnel are regularly assigned to collect and transport them.

[0006] Currently, it is impossible to monitor the distribution of recycling bins and whether they are full, whether the recycling bins are abnormal, or whether the fabrics are damp through the system platform. Recycling can only be done without returning profits to residents, which cannot increase residents' enthusiasm for delivery, and cannot optimize recycling routes and personnel allocation, resulting in many problems such as high operating costs and unreasonable personnel allocation. Summary of the Invention

[0007] The purpose of the present invention is to provide an intelligent fabric recycling box and a classification and quick delivery method thereof, so as to solve the problems of conventional fabric recycling boxes, such as the recycling status is difficult to monitor, the fabric gets damp, can only be recycled but cannot return profits to residents, cannot improve residents' enthusiasm for delivery, cannot optimize the recycling path and personnel allocation, resulting in high operating costs and unreasonable personnel allocation.

[0008] In order to solve the above technical problems, the present invention adopts the following technical solutions:

[0009] An intelligent fabric recycling box comprises a box body, a delivery door and a storage cavity door. The box body is horizontally mounted on a ground foundation via a base. The delivery door and the storage cavity door are rotatably mounted on the box body in sequence from top to bottom and are both locked by electronic locks. A fabric drying device and a fabric weighing device are provided in the box body. A fabric recovery control device and a net bag access mechanism are provided on the box body. The fabric drying device, fabric weighing device, fabric recovery control device and net bag access mechanism are all controlled by a central processing unit.

[0010] A further technical solution is: the fabric recycling control device includes a signal transmission antenna, an RFID reader / writer, a display screen, a barcode scanner, an IC card identifier and a fabric classification and delivery start button; the signal transmission antenna, the RFID reader / writer and the central processing unit are installed on the upper inner wall of the box; the central processing unit is connected to the RFID reader / writer for modulating and processing RFID signals; the central processing unit is connected to the signal transmission antenna for transmitting and receiving external signals; the display screen, barcode scanner, IC card identifier and fabric classification start button are all installed on the upper outer wall of the box and are all connected to the central processing unit.

[0011] A further technical solution is: the fabric drying device includes a humidity sensor, a small fan, a waterproof shutter and a resistance heating wire, a plurality of mounting grooves are provided on the inner wall of one side of the box body, the resistance heating wire is spirally installed on the inner wall of the mounting groove, a fixing rod is vertically installed on the side wall of the mounting groove, the small fan is installed on the outer end of the fixing rod, the waterproof shutter is installed on the inner wall of the other side of the box body, the humidity sensor is installed in the box body, and the central processing unit is connected to and controls the operation of the humidity sensor, small fan and resistance heating wire.

[0012] A further technical solution is: the fabric weighing device includes a load-bearing bolster, a weighing plate, a mesh cargo box with an opening, a weight sensor, a hydraulic cylinder and a baffle, the load-bearing bolster is symmetrically installed at the bottom of the box body, the weighing plate is horizontally placed on the load-bearing bolster, the mesh cargo box is horizontally placed on the weighing plate, the hydraulic cylinder is vertically installed upward in the base, the output end of the hydraulic cylinder extends into the box body and is located between the load-bearing bolsters, the baffle is horizontally installed on the output end of the hydraulic cylinder, the weight sensor is installed on the upper surface of the baffle, and the central processing unit is connected to and controls the operation of the weight sensor and the hydraulic cylinder.

[0013] A further technical solution is: the mesh bag taking mechanism includes a hydraulic telescopic rod, a bag taking cabinet, a mesh bag storage box, a conveyor belt and a length counter; the upper side of the box body is provided with a cabinet slot; the bag taking cabinet is slidably installed in the cabinet slot through the hydraulic telescopic rod; the mesh bag storage box is installed at the inner bottom of the bag taking cabinet; the conveyor belt is symmetrically installed at the inner upper part of the bag taking cabinet; the mesh bag in the mesh bag storage box passes through the middle of the conveyor belt and one end extends out of the bag taking cabinet; the length counter is installed at the bag outlet end of the bag taking cabinet; the central processing unit is connected to and controls the operation of the hydraulic telescopic rod, the conveyor belt and the length counter;

[0014] The conveyor belt is evenly provided with triangular protrusions on its surface;

[0015] A bagging opening is provided on the side of the mesh bag storage box.

[0016] A further technical solution is: an intelligent fabric recycling bin and a classification and quick delivery method thereof, which is specifically processed according to the following steps:

[0017] S1. Residents sort and collect fabrics: Residents preliminarily sort the fabrics to be delivered (e.g., down, etc.) and transport them to the smart fabric recycling bin;

[0018] S2. Information collection and authentication: Residents will scan the code or swipe the IC card at the smart fabric recycling bin, read the personal identity information, and transmit it to the server terminal via the central processor via the network for comparison and authentication, and provide feedback;

[0019] New users need to scan the QR code on the fabric recycling bin with their mobile phone to register and receive an IC card;

[0020] S3. On-site delivery: After passing the certification, residents can take the recycling net bags at the net bag collection agency and use the net bags to pack the sorted fabrics. After packing, select the fabric sorting delivery start button according to the fabric type, and the delivery door will automatically open to start delivery. After the delivery is confirmed, the delivery door will automatically close;

[0021] S4. Intelligent weight counting and points: After the resident completes the delivery, the weight sensor inside the box will receive the weight measurement command and perform the weight measurement. After the measurement, the relevant weight measurement data will be transmitted to the server terminal via the central processor via the network for data collection and analysis. After processing, the server terminal will return the data to the machine end and prompt the resident with relevant parameter information such as pre-points and weight;

[0022] S5. Daily inspection: staff will conduct daily inspections of full fabric recycling bins based on platform data. Inspections include: checking the contents and classification of the bins, and checking whether the machines have any malfunctions.

[0023] S6. System Review: After routine inspections by staff, the data will be queued for review. The server terminal will conduct a comprehensive review of the order data in turn, and pre-score residents for orders that pass the review.

[0024] S7. Resident account points: After the server terminal reviews, the server terminal's scheduled job command will automatically process the reviewed orders in batches, and after processing, the points will be distributed to the resident's personal account;

[0025] S8. Check residents’ points. After the system accumulates points, residents can check the changes in points through the mini program or WeChat official account, including the original points, changed points, reasons for changes, points after changes, and other information.

[0026] A further technical solution is: the S5 also includes inspection processing: after the staff opens the management APP, they enter the inspection processing module and scan the QR code of the fabric recycling box. The APP will automatically locate the machine based on the scanning results, and will list all delivery information under the current machine. The staff can process orders based on the delivery situation, and if there are any abnormalities, the system can mark the order as abnormal.

[0027] A further technical solution is: the specific operation of S3 is as follows: open the resident end applet on the mobile phone, find the location of the QR code of my personal information, and perform identity verification on the code scanner. The code scanner can recognize barcodes, QR codes and other contents. Residents can also take the relevant recycling card (IC card) and identify the information on the IC card identifier;

[0028] Among them, the IC card identifier and the code scanner are both connected to the central processing unit. When the IC card identifier or the code scanner reads the user information, it will transmit the information to the background through the signal transmission antenna via the network for identity authentication and authorization. If it is a legitimate user, the machine will make a sound prompt to indicate that the identity authentication is successful. The machine cabinet door will automatically open according to the system command, and residents can deliver the relevant fabrics into the box in turn.

[0029] A further technical solution is: in S3, the central processing unit issues a drying process command, and the humidity sensor measures the humidity in the box and feeds back the information to the central processing unit. If the humidity exceeds the specified range, the fabric drying device starts working.

[0030] Compared with the prior art, the present invention can achieve at least one of the following beneficial effects:

[0031] 1. The present invention proposes an intelligent fabric recycling bin. When recycling fabrics, it is weighed and counted, and then points are converted according to the fabric type selected by the sender using an algorithm stored in the central processing unit. Recyclable fabric types reward the sender with a certain amount of points, while harmful fabrics have their points deducted from their client account. Residents can use points to redeem them on the mini-program, and staff can also conveniently use a mobile app to scan the QR code on the recycling bin to establish a connection with it, view the basic information of the recycling bin and the number of orders delivered, and then process the recyclables based on the fabric information stored in the recycling bin. This greatly increases residents' interest in recycling and classifying fabrics, reduces staff workload, optimizes recycling routes and staff allocation, and reduces operating costs and staff allocation.

[0032] 2. The smart fabric recycling bin is also equipped with a fabric drying device. If the staff has not come to handle the fabrics in the recycling bin for a long time or the recycling bin is in a relatively humid environment, the central processor will control the fabric drying device to keep the recycling bin in a relatively dry environment to prevent the fabrics in the recycling bin from being affected by moisture and affecting their quality. A mesh bag access mechanism is also provided on the outside of the recycling bin, providing mesh bags of specific specifications for the convenience of residents. The mesh bags are durable and breathable, and the use of such mesh bags facilitates drying in the fabric recycling bin. BRIEF DESCRIPTION OF THE DRAWINGS

[0033] Figure 1 This is a structural schematic diagram of an intelligent fabric recycling box of the present invention.

[0034] Figure 2 For the present invention Figure 1 Schematic diagram of the structure of the fabric drying device.

[0035] Figure 3 For the present invention Figure 1 Schematic diagram of the structure of the fabric weighing device.

[0036] Figure 4 For the present invention Figure 1 Schematic diagram of the structure of the middle mesh bag access mechanism.

[0037] Figure 5 This is a fabric recycling flow chart of the present invention.

[0038] Figure numerals: 1. Box body; 2. Delivery door; 3. Storage chamber door; 4. Base; 5. Fabric drying device; 51. Humidity sensor; 52. Small fan; 53. Waterproof shutter; 54. Resistance heating wire; 6. Fabric weighing device; 61. Load-bearing pillow; 62. Weighing plate; 63. Mesh loading box; 64. Weight sensor; 65. Hydraulic cylinder; 66. Baffle; 7. Fabric recovery control device; 71. Display screen; 72. Barcode scanner 73. IC card identifier; 74. Fabric classification delivery start button; 8. Mesh bag retrieval mechanism; 81. Hydraulic telescopic rod; 82. Bag retrieval cabinet; 83. Mesh bag storage box; 84. Conveyor belt; 841. Triangular protrusion; 85. Length counter; 9. Shielding plate; 10. Installation groove. DETAILED DESCRIPTION

[0039] In order to make the purpose, technical solutions and advantages of the present invention more clearly understood, the present invention will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the present invention and are not intended to limit the present invention.

[0040] Example 1:

[0041] Please refer to Example 1 Figure 1 An embodiment is shown, an intelligent fabric recycling box, comprising a box body 1, a delivery door 2 and a storage chamber door 3, wherein the box body 1 is horizontally mounted on a ground foundation via a base 4, the delivery door 2 and the storage chamber door 3 are rotated and mounted on the box body 1 in sequence from top to bottom, and are both locked by an electronic lock, characterized in that: a fabric drying device 5 and a fabric weighing device 6 are provided in the box body 1, a fabric recovery control device and a net bag taking mechanism 7 are provided on the box body 1, and the fabric drying device 5, the fabric weighing device 6, the fabric recovery control device 7 and the net bag taking mechanism 8 are all controlled by a central processing unit.

[0042] The intelligent fabric recycling box: the box body 1 is horizontally installed on the ground through the base 4, a hollow chamber is set in the box body 1, the delivery door 2 and the storage cavity door 3 are installed from top to bottom on the front of the box body 1, and are locked by an electronic lock. Residents classify and collect fabrics: residents preliminarily classify the fabrics to be delivered (such as down, etc.) and transport them to the intelligent fabric recycling box. When recycling fabrics, residents first scan the code or swipe the IC card with their mobile phones. The recycling box reads the resident's personal identity information and transmits it to the server terminal through the network through the central processor for comparison and authentication, and feedback is given. After the recycling box recognizes the resident's information, it opens the delivery door 2, and the resident starts to deliver the fabric. The fabric weighing device 6 weighs and counts it, and then calculates it according to the weight of the fabric. The type of fabric selected by the sender is converted into points using the algorithm stored in the central processing unit. Recyclable fabrics are rewarded with a certain amount of points, while hazardous fabrics are recycled and points in the client account are deducted. Residents can use points to redeem them on the mini-program, enabling interaction between residents and recyclers. Staff can also easily use the mobile app to scan the QR code on the recycling bin to establish a connection with it, view the basic information of the recycling bin and the number of orders delivered, and then process the recyclables based on the fabric information stored in the recycling bin. This move greatly increases residents' interest in recycling and classifying fabrics, reduces staff workload, optimizes recycling routes and staff allocation, and reduces operating costs and staff allocation.

[0043] The intelligent fabric recycling bin is also equipped with a fabric drying device. If the staff has not come to handle the fabrics in the recycling bin for a long time or the recycling bin is in a relatively humid environment, the central processor will control the fabric drying device to keep the recycling bin in a relatively dry environment to prevent the fabrics in the recycling bin from being affected by moisture and affecting their quality. A mesh bag access mechanism is also provided on the outside of the recycling bin, providing mesh bags of specific specifications for the convenience of residents. The mesh bags are sturdy, durable, and breathable, and the use of such mesh bags facilitates drying in the fabric recycling bin.

[0044] Example 2:

[0045] Based on the above-mentioned embodiment 1, embodiment 2 shows an embodiment, in which the fabric recycling control device 7 includes a signal transmission antenna, an RFID reader / writer, a display screen 71, a barcode scanner 72, an IC card identifier 73 and a fabric classification delivery start button 74. The signal transmission antenna, the RFID reader / writer and the central processing unit are installed on the upper inner wall of the box body 1. The central processing unit is connected to the RFID reader / writer for modulating and processing RFID signals. The central processing unit is connected to the signal transmission antenna for transmitting and receiving external signals. The display screen 71, the barcode scanner 72, the IC card identifier 73 and the fabric classification start button 74 are all installed on the upper outer wall of the box body 1 and are all connected to the central processing unit.

[0046] The fabric recycling control device 7 is mainly used to control the operation of the fabric recycling box, the collection and comparison of residents' information, and the collection, processing and storage of fabric recycling information. Residents open the mini program on their mobile phones, find the QR code location of their personal information, and perform identity verification on the scanner. The scanner can recognize barcodes, QR codes and other content. Residents can also take relevant recycling cards (IC cards) and identify the information in the IC card identifier; the IC card identifier and the scanner are both connected to the central processor. When the IC card identifier or the scanner reads the user information, it will transmit the information to the background through the signal transmission antenna via the network for identity authentication and authorization. If it is a legitimate user, the machine will make a sound prompting that the identity authentication is successful. The machine cabinet door will automatically open according to the system command, and the corresponding fabric classification start button 74 will be selected according to the type of fabric to be classified. Then residents can deliver the relevant fabrics into the box in turn.

[0047] Example 3:

[0048] Based on the above embodiment, please refer to Example 3 Figure 2 In one embodiment shown, the fabric drying device 5 includes a humidity sensor 51, a small fan 52, a waterproof shutter 53 and a resistance heating wire 54. A plurality of mounting grooves 10 are provided on the inner wall of one side of the housing 1. The resistance heating wire 54 is spirally mounted on the inner wall of the mounting groove 10. A fixing rod is vertically mounted on the inner wall of the mounting groove 10. The small fan 52 is mounted on the outer end of the fixing rod. The waterproof shutter 53 is mounted on the inner wall of the other side of the housing 1. The humidity sensor 51 is mounted in the housing 1. The central processing unit is connected to and controls the operation of the humidity sensor 51, the small fan 52 and the resistance heating wire 54.

[0049] The intelligent fabric recycling box is also provided with a fabric drying device 5. When the humidity sensor 51 senses that the air in the box 1 is relatively humid, it feeds back information to the central processing unit. The central processing unit controls the operation of the small fan 52 and the resistance heating wire 54. Hot air begins to flow and flows out from the waterproof shutters 53, taking away the water in the box 1. If the staff does not come to handle the fabrics in the recycling box for a long time or the recycling box is in a relatively humid environment, the central processing unit controls the fabric drying device to keep the recycling box in a relatively dry environment, thereby preventing the fabrics in the recycling box from being affected by moisture and affecting their quality.

[0050] Example 4:

[0051] Based on the above embodiment, please refer to Example 4 Figure 3In one embodiment shown, the fabric weighing device 6 includes a load-bearing bolster 61, a weighing plate 62, a mesh cargo box 63 with an opening, a weight sensor 64, a hydraulic cylinder 65 and a baffle 66. The load-bearing bolster 61 is symmetrically installed at the bottom of the box body 1, the weighing plate 62 is horizontally placed on the load-bearing bolster 61, the mesh cargo box 63 is horizontally placed on the weighing plate 62, the hydraulic cylinder 65 is vertically installed upward in the base 4, the output end of the hydraulic cylinder 65 extends into the box body 1 and is located between the load-bearing bolster 61, the baffle 66 is horizontally installed on the output end of the hydraulic cylinder 65, the weight sensor 64 is installed on the upper surface of the baffle 66, and the central processing unit is connected to and controls the operation of the weight sensor 64 and the hydraulic cylinder 65.

[0052] Example 5:

[0053] Based on the above embodiments, please refer to Example 5. Figure 4 In one embodiment shown, the net bag taking mechanism 8 includes a hydraulic telescopic rod 81, a bag taking cabinet 82, a net bag storage box 83, a conveyor belt 84 and a length counter 85. A cabinet slot is provided on the upper side of the box body 1. The bag taking cabinet 82 is slidably installed in the cabinet slot through the hydraulic telescopic rod 81. The net bag storage box 83 is installed at the inner bottom of the bag taking cabinet 82. The conveyor belt 84 is symmetrically installed at the inner upper part of the bag taking cabinet 82. The net bag in the net bag storage box 83 passes through the middle of the conveyor belt 84 and one end extends out of the bag taking cabinet 82. The length counter 85 is installed at the bag outlet end of the bag taking cabinet 82. The central processing unit is connected to and controls the operation of the hydraulic telescopic rod 81, the conveyor belt 84 and the length counter 85.

[0054] A mesh bag taking mechanism 6 is also provided on the outside of the recycling box. When residents scan the code or swipe the IC card, the central processor controls the conveyor belt 84 to start rotating, and the mesh bags in the mesh bag storage box 83 are sent out for residents to take. The length counter 85 records the number of mesh bags used by the residents and sends the information to the central processor. When the order is processed later, the server terminal will match the number of fabric packages delivered by the resident with the number of mesh bags used. If the two quantities do not match, points will be charged as a penalty. Mesh bags of specific specifications are provided for the convenience of residents' use. They are strong, durable, and breathable. Using this type of mesh bag makes it easy to dry in the fabric recycling box.

[0055] Preferably, triangular protrusions 841 are evenly arranged on the belt surface of the conveyor belt 84.

[0056] The triangular protrusion 841 facilitates the transport of the mesh bag.

[0057] Preferably, a bagging opening is provided on the side of the mesh bag storage box 83 .

[0058] Each roll of mesh bags (similar to a roll of garbage bags) has a certain number and a certain length. When the length counter senses that the mesh bags are all put out, the display screen 71 will prompt that there are no bags or there are few bags. The information will also be sent to the central processor. The central processor will use the signal transmission antenna to send it to the server terminal to notify the staff to replenish it. When replenishing, the hydraulic telescopic rod 81 pops out of the bag cabinet 82, and the staff replenishes it through the bag loading port set on the side of the mesh bag storage box 83.

[0059] Example 6:

[0060] Based on the above embodiments, please refer to Example 6. Figure 5 An embodiment of the invention is a smart fabric recycling box and a classification and quick delivery method thereof, which is specifically processed according to the following steps:

[0061] S1. Residents sort and collect fabrics: Residents preliminarily sort the fabrics to be delivered (e.g., down, etc.) and transport them to the smart fabric recycling bin;

[0062] S2. Information collection and authentication: Residents will scan the code or swipe the IC card at the smart fabric recycling bin, read the personal identity information, and transmit it to the server terminal via the central processor via the network for comparison and authentication, and provide feedback;

[0063] New users need to scan the QR code on the fabric recycling bin with their mobile phone to register and receive an IC card;

[0064] S3. On-site delivery: After passing the certification, residents can take the recycling net bags at the net bag collection agency and use the net bags to pack the sorted fabrics. After packing, select the fabric sorting delivery start button according to the fabric type, and the delivery door will automatically open to start delivery. After the delivery is confirmed, the delivery door will automatically close;

[0065] S4. Intelligent weight counting and points: After the resident completes the delivery, the weight sensor inside the box will receive the weight measurement command and perform the weight measurement. After the measurement, the relevant weight measurement data will be transmitted to the server terminal via the central processor via the network for data collection and analysis. After processing, the server terminal will return the data to the machine end and prompt the resident with relevant parameter information such as pre-points and weight;

[0066] S5. Daily inspection: staff will conduct daily inspections of full fabric recycling bins based on platform data. Inspections include: checking the contents and classification of the bins, and checking whether the machines have any malfunctions.

[0067] S6. System Review: After routine inspections by staff, the data will be queued for review. The server terminal will conduct a comprehensive review of the order data in turn, and pre-score residents for orders that pass the review.

[0068] S7. Resident account points: After the server terminal reviews, the server terminal's scheduled job command will automatically process the reviewed orders in batches, and after processing, the points will be distributed to the resident's personal account;

[0069] S8. Check residents’ points. After the system accumulates points, residents can check the changes in points through the mini program or WeChat official account, including the original points, changed points, reasons for changes, points after changes, and other information.

[0070] Preferably, when the fabrics delivered by residents are of a type that cannot be reused and require costly processing by the recycler, they will be converted into negative points based on their weight and an algorithm and added to their account. The algorithm standard is compiled with reference to staff costs, equipment costs, fabric processing costs, etc.

[0071] Preferably, when the fabrics delivered by residents are of the type that can be reused, they will be converted into positive points based on their weight and algorithm and added to their accounts. After the points are received, staff can use the points to redeem items in the mini program mall.

[0072] Preferably, staff can inspect and verify the fabrics delivered by residents during inspections, enter the management module through the management APP, verify the actual information of the fabrics and the information entered by the staff on the recycling box, and modify the order information to facilitate the subsequent accurate receipt of points.

[0073] Example 7:

[0074] Based on the above embodiments, embodiment 7 shows an embodiment in which S5 further includes inspection processing: after the staff opens the management APP, they enter the inspection processing module and scan the QR code of the fabric recycling box. The APP will automatically locate the machine according to the scanning result and list all delivery information under the current machine. The staff can process the order according to the delivery situation and mark the order as abnormal in the system if there is any abnormality.

[0075] The inspection process is mainly to verify the corresponding information on the order and the recycling bin, to prevent errors or malicious placement of points by residents, and to promptly use background permissions to modify order information to prevent losses.

[0076] Example 8:

[0077] Based on the above embodiment, embodiment 8 shows an embodiment in which the specific operation of S3 is as follows: open the resident end applet on the mobile phone, find the location of the QR code of my personal information, and perform identity verification on the code scanner. The code scanner can recognize barcodes, QR codes, etc. Residents can also take the relevant recycling card (IC card) and identify the information on the IC card identifier;

[0078] Among them, the IC card identifier and the code scanner are both connected to the central processing unit. When the IC card identifier or the code scanner reads the user information, it will transmit the information to the background through the signal transmission antenna via the network for identity authentication and authorization. If it is a legitimate user, the machine will make a sound prompt to indicate that the identity authentication is successful. The machine (recycling box) door will automatically open according to the system command, and residents can deliver the relevant fabrics into the box in turn.

[0079] Example 8:

[0080] Based on the above embodiments, embodiment 8 shows an embodiment in which, in S3, the central processing unit issues a drying process command, and the humidity sensor measures the humidity in the box and feeds back the information to the central processing unit. If the humidity exceeds the specified range, the fabric drying device will start working.

[0081] The intelligent fabric recycling bin is also equipped with a fabric drying device. If the staff has not come to handle the fabrics in the recycling bin for a long time or the recycling bin is in a relatively humid environment, the central processor will control the fabric drying device to keep the recycling bin in a relatively dry environment to prevent the fabrics in the recycling bin from being affected by moisture and affecting their quality. A mesh bag access mechanism is also provided on the outside of the recycling bin, providing mesh bags of specific specifications for the convenience of residents. The mesh bags are sturdy, durable, and breathable, and the use of such mesh bags facilitates drying in the fabric recycling bin.

[0082] The appearance of the same expression in multiple places in the specification does not necessarily refer to the same embodiment. Furthermore, when a specific feature, structure or characteristic is described in conjunction with any embodiment, it is intended that the same feature, structure or characteristic can be implemented in conjunction with other embodiments and also fall within the scope of the present invention.

[0083] Although the present invention has been described herein with reference to a number of illustrative embodiments thereof, it will be understood that numerous other modifications and implementations may be devised by those skilled in the art that fall within the scope and spirit of the principles disclosed herein. More specifically, within the scope of the present disclosure, the drawings, and the claims, numerous variations and modifications may be made to the components and / or layout of the subject combination arrangement. In addition to variations and modifications to the components and / or layout, other uses will also be apparent to those skilled in the art.

Claims

1. A classification and quick delivery method for an intelligent fabric recycling box, the intelligent fabric recycling box comprising a box body (1), a delivery door (2) and a storage chamber door (3), wherein the box body (1) is horizontally mounted on a ground foundation via a base (4), the delivery door (2) and the storage chamber door (3) are rotatably mounted on the box body (1) in sequence from top to bottom, and are both locked by an electronic lock, characterized in that: A fabric drying device (5) and a fabric weighing device (6) are provided in the box (1), and a fabric recovery control device (7) and a net bag taking mechanism (8) are provided on the box (1). The fabric drying device (5), the fabric weighing device (6), the fabric recovery control device (7) and the net bag taking mechanism (8) are all controlled by a central processing unit. The mesh bag taking mechanism (8) comprises a hydraulic telescopic rod (81), a bag taking cabinet (82), a mesh bag storage box (83), a conveyor belt (84) and a length counter (85); a cabinet slot is provided on the upper side of the box body (1); the bag taking cabinet (82) is slidably installed in the cabinet slot through the hydraulic telescopic rod (81); the mesh bag storage box (83) is installed at the inner bottom of the bag taking cabinet (82); the conveyor belt (84) is symmetrically installed at the inner upper part of the bag taking cabinet (82); the mesh bag in the mesh bag storage box (83) passes through the middle of the conveyor belt (84) and one end extends out of the bag taking cabinet (82); the length counter (85) is installed at the bag outlet end of the bag taking cabinet (82); the central processing unit is connected to and controls the operation of the hydraulic telescopic rod (81), the conveyor belt (84) and the length counter (85); Triangular protrusions (841) are evenly arranged on the belt surface of the conveyor belt (84); The side of the mesh bag storage box (83) is provided with a bagging opening; The classification quick throw method is processed according to the following steps: S1. Residents sort and collect fabrics: Residents preliminarily sort the fabrics to be delivered and transport them to the smart fabric recycling bin; S2. Information collection and authentication: Residents will scan the code or swipe the IC card at the smart fabric recycling bin, read the personal identity information, and transmit it to the server terminal via the central processor via the network for comparison and authentication, and provide feedback; New users need to scan the QR code on the fabric recycling bin with their mobile phone to register and receive an IC card; S3. On-site delivery: After passing the certification, residents can take the recycling net bags at the net bag collection agency and use the net bags to pack the sorted fabrics. After packing, select the fabric sorting delivery start button according to the fabric type, and the delivery door will automatically open to start delivery. After the delivery is confirmed, the delivery door will automatically close; The length counter (85) records the number of net bags used by the resident and sends the information to the central processor. When the order is processed later, the server terminal will match the number of fabric packages delivered by the resident with the number of net bags used. If the two numbers do not match, points will be deducted as a penalty. S4. Intelligent weight counting and points: After the resident completes the delivery, the weight sensor inside the box will receive the weight measurement command and perform the weight measurement. After the measurement, the relevant weight measurement data will be transmitted to the server terminal via the central processor via the network for data collection and analysis. After processing, the server terminal will return the data to the machine end and prompt the resident with the pre-points and weight parameter information; S5. Daily inspection: staff will conduct daily inspections of full fabric recycling bins based on platform data. Inspections include: checking the contents and classification of the bins, and checking whether the machines have any malfunctions. S5 also includes inspection processing: after the staff opens the management APP and enters the inspection processing module, they scan the QR code of the fabric recycling box. The APP will automatically locate the machine based on the scan result and list all the delivery information of the current machine. The staff can process the order according to the delivery status. If there is any abnormality, the system can mark the order as abnormal. S6. System Review: After routine inspections by staff, the data will be queued for review. The server terminal will conduct a comprehensive review of the order data in turn, and pre-score residents for orders that pass the review. S7. Resident account points: After the server terminal reviews, the server terminal's scheduled job command will automatically process the reviewed orders in batches, and after processing, the points will be distributed to the resident's personal account; S8. Check residents’ points. After the system accumulates points, residents can check the changes in points through the mini program or WeChat official account, including the original points, changed points, reasons for changes, and points information after changes.

2. The classification and quick delivery method of a smart fabric recycling bin according to claim 1, characterized in that: The fabric recycling control device (7) includes a signal transmission antenna, an RFID reader / writer, a display screen (71), a code scanner (72), an IC card identifier (73) and a fabric classification delivery start button (74). The signal transmission antenna, the RFID reader / writer and the central processing unit are installed on the upper inner wall of the box (1). The central processing unit is connected to the RFID reader / writer for modulating and processing RFID signals. The central processing unit is connected to the signal transmission antenna for transmitting and receiving external signals. The display screen (71), the code scanner (72), the IC card identifier (73) and the fabric classification delivery start button (74) are all installed on the upper outer wall of the box (1) and are all connected to the central processing unit.

3. The classification and quick delivery method of a smart fabric recycling bin according to claim 2, characterized in that: The fabric drying device (5) comprises a humidity sensor (51), a small fan (52), a waterproof shutter (53) and a resistance heating wire (54); a plurality of mounting grooves (10) are provided on the inner wall of one side of the housing (1); the resistance heating wire (54) is spirally mounted on the inner wall of the mounting groove (10); a fixing rod is vertically mounted on the inner wall of the mounting groove (10); the small fan (52) is mounted on the outer end of the fixing rod; the waterproof shutter (53) is mounted on the inner wall of the other side of the housing (1); the humidity sensor (51) is mounted in the housing (1); and the central processing unit is connected to and controls the operation of the humidity sensor (51), the small fan (52) and the resistance heating wire (54).

4. The classification and quick delivery method of a smart fabric recycling bin according to claim 2, characterized in that: The fabric weighing device (6) comprises a load-bearing bolster (61), a weighing plate (62), a mesh cargo box (63) with an opening, a weight sensor (64), a hydraulic cylinder (65) and a baffle (66), wherein the load-bearing bolster (61) is symmetrically mounted on the bottom of the box body (1), the weighing plate (62) is horizontally mounted on the load-bearing bolster (61), the mesh cargo box (63) is horizontally mounted on the weighing plate (62), the hydraulic cylinder (65) is vertically mounted upward in the base (4), the output end of the hydraulic cylinder (65) extends into the box body (1) and is located between the load-bearing bolster (61), the baffle (66) is horizontally mounted on the output end of the hydraulic cylinder (65), the weight sensor (64) is mounted on the upper surface of the baffle (66), and the central processing unit is connected to and controls the operation of the weight sensor (64) and the hydraulic cylinder (65).

5. The classification and quick delivery method of a smart fabric recycling bin according to claim 1, characterized in that: The specific operation of S3 is as follows: open the resident-side applet on the mobile phone, find the QR code location of my personal information, and perform identity verification on the code scanner. The code scanner can recognize barcodes and QR code contents. Residents can also take the relevant recycling card and use the IC card identifier to identify the information; Among them, the IC card identifier and the code scanner are both connected to the central processing unit. When the IC card identifier or the code scanner reads the user information, it will transmit the information to the background through the signal transmission antenna via the network for identity authentication and authorization. If it is a legitimate user, the machine will make a sound prompt to indicate that the identity authentication is successful. The machine cabinet door will automatically open according to the system command, and residents can deliver the relevant fabrics into the box in turn.

6. The classification and quick delivery method of a smart fabric recycling bin according to claim 1, characterized in that: In S3, the central processing unit issues a drying process command, and the humidity sensor measures the humidity in the box and feeds back the information to the central processing unit. If the humidity exceeds the specified range, the fabric drying device starts working.

Citation Information

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