Storage barrel with built-in NFC and traceability management system
Through the built-in NFC storage bucket and traceability management system, the problem of inaccurate recording of material sources and storage conditions in the existing technology is solved, real-time monitoring of material traceability and storage environment is realized, and the collection value and financial attributes of materials are enhanced.
Patent Information
- Application Number
- CN202421283608.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-06-05
- Publication Date
- 2025-07-25
- Estimated Expiration
- 2034-06-05
AI Technical Summary
The prior art cannot accurately record the sources of materials such as tangerine peel with certain financial attributes, and cannot output the storage status of materials.
It adopts a storage bucket with built-in NFC, including a bucket body and a bucket lid, and an NFC traceability chip and an NFC humidity thermometer are embedded on the bucket body. The NFC chip and temperature and humidity sensor are used to collect and transmit temperature and humidity data. Combined with the NFC intelligent lock and traceability management system, it realizes material source traceability and real-time monitoring of the storage environment.
It realizes accurate recording of material sources and rapid output of storage status, improves the collection value and financial attributes of materials, and further improves the traceability credibility through blockchain technology.
Smart Images

Figure CN223149134U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of material storage, and particularly relates to the storage technology of tangerine peel. Background Art
[0002] The material storage technology has been developing. From the initial storage of materials in gunny bags and wooden boxes to the storage in boxes, jars, etc. made of glass, iron, and stainless steel, the storage effect of the stored materials is getting better and better. For stored materials with certain financial attributes such as tangerine peel, in addition to ensuring that the temperature and humidity inside the material storage structure are within the optimal preservation range, new requirements for tracing the stored materials are also put forward. Whether the source of the material can be accurately recorded and the storage situation of the material can be clearly output directly determines whether the stored material can be given financial attributes. In the existing material storage technology field, especially in the tangerine peel storage technology field, there is no corresponding technology to solve the above problems.
[0003] In response to the above problems, people have also made explorations in the long-term production activities practice. For example, a Chinese utility model patent discloses a tangerine peel storage device with a multi-layer design [Publication No.: CN214452967U]. The utility model patent includes an outer storage box, which is characterized in that a weighing sensor and an RFID reader are installed. This multi-layer designed tangerine peel storage device adopts a multi-layer design, is not easily affected, has a good sealing and isolation effect, high preservation accuracy, more rigorous monitoring, a clever installation position, and a reasonable layout.
[0004] The above solution improves some problems of the existing technology to a certain extent. However, this solution still has at least the following defects: it cannot accurately record the source of the material and cannot output the storage situation of the material. Summary of the Utility Model
[0005] The purpose of the utility model is to provide a storage bucket with built-in NFC and a traceability management system for storing materials in a sealed manner, recording the temperature and humidity conditions inside the bucket, and recording the switch conditions in response to the above problems.
[0006] To achieve the above purpose, the utility model adopts the following technical solutions: This storage bucket with built-in NFC includes a bucket body and a bucket lid, which are fitted and connected. An NFC traceability chip is embedded on the bucket body for storing information related to the stored material; an NFC humidity and temperature meter is also arranged on the bucket body, and the NFC humidity and temperature meter includes an NFC chip and a temperature and humidity sensor that are electrically connected to each other for collecting the temperature and humidity data inside the bucket and transmitting it out through the NFC chip.
[0007] In the above-mentioned storage bucket with built-in NFC, the NFC humidity thermometer is a passive NFC humidity thermometer. When the NFC reader approaches, it obtains energy from the NFC reader to collect temperature and humidity data in real time and transmits it to the NFC reader through the NFC chip.
[0008] In the above-mentioned storage bucket with built-in NFC, the NFC humidity thermometer is an active NFC humidity thermometer with a power supply battery, and the power supply battery is connected to the temperature and humidity sensor and the NFC chip; the temperature and humidity sensor is used to continuously collect temperature and humidity data and transmit it to the NFC chip for storage; the NFC chip is used to transmit the temperature and humidity data to the NFC reader when the NFC reader is close.
[0009] In the above-mentioned storage barrel with built-in NFC, a movable buckle is arranged on the outer side of the top of the barrel body, which is used to seal and buckle the barrel body and the barrel cover; the movable buckle includes a buckling rib, a rotating part and a prying part, and the three cooperate to achieve a sealed buckle.
[0010] In the above-mentioned storage barrel with built-in NFC, an NFC smart lock for locking the barrel body and the barrel cover is provided between the barrel body and the barrel cover; when the NFC reader approaches, the energy required for unlocking and / or locking is obtained from the NFC reader.
[0011] In the above-mentioned storage barrel with built-in NFC, a protruding plane matching the shape of the barrel body is arranged inside the upper end of the barrel body, and the protruding plane supports the barrel cover; a through hole is opened on the barrel cover, and the NFC smart lock is arranged in the through hole; the bottom of the NFC smart lock has an inlay, and the inlay can be adjusted in angle, and is rotated and placed or left under the protruding plane to achieve locking or unlocking of the barrel body and the barrel cover.
[0012] In the above-mentioned storage bucket with built-in NFC, the NFC traceability chip communicates with the NFC smart lock and the NFC humidity thermometer, so that the NFC traceability chip can fully record the switch status of the NFC smart lock and the temperature and humidity conditions in the storage bucket.
[0013] In the above-mentioned storage barrel with built-in NFC, the barrel body is made of stainless steel; a fixing buckle is provided between the barrel body and the barrel cover, and the fixing buckle is used to fix the position of the barrel body and the barrel cover so that the two cannot move.
[0014] The invention contains a traceability management system, comprising any one of the storage barrels
[0006] -
[0013] , and a terminal device with an NFC reader, wherein the terminal device is used to receive the reading information of the NFC traceability chip and the reading information of the NFC humidity thermometer by the NFC reader and store and display the reading information.
[0015] In the above traceability management system, an NFC smart lock is further included. The terminal device is further configured to transmit an unlocking instruction to the NFC smart lock through an NFC reader and receive unlocking information. The NFC traceability chip has a corresponding relationship recorded with the corresponding NFC humidity thermometer and NFC smart lock.
[0016] Compared with the existing technology, the advantages of the present utility model are as follows:
[0017] 1. Accurately record the source of materials. A series of built-in NFC intelligent devices cooperate with NFC reading terminal devices to form a complete information storage system. The NFC traceability chip can introduce the product or company profile in detail, and the built-in NFC intelligent devices are used for recording to ensure the traceability of the product source, enhance the collection value of the stored materials, endow the stored materials with financial attributes, and various data can be saved by cooperating with blockchain technology to further improve the credibility of traceability.
[0018] 2. Quickly output the storage status of materials. By touching the NFC humidity thermometer with the NFC reading terminal device or displaying through the display screen, the humidity and temperature conditions of the internal storage environment of the materials can be quickly read. By touching the traceability chip with the NFC reading terminal device, the starting time of the internal material storage, and the humidity and temperature changes in the barrel from the start of storage to the output time can be fully known.
[0019] 3. Connect each NFC device to each other. The switching situation of the passive NFC smart lock and the long-term temperature and humidity conditions recorded by the NFC humidity thermometer directly determine the value of the internal stored materials. The NFC built-in devices record the switching situation and long-term temperature and humidity conditions completely to the NFC traceability chip through the NFC reading terminal device. BRIEF DESCRIPTION OF THE DRAWINGS
[0020] Figure 1 is a schematic structural diagram of a storage barrel with built-in NFC of the present utility model
[0021] Figure 2 is a schematic structural diagram of the movable buckle in the present utility model
[0022] Figure 3 is a schematic structural diagram of the convex plane in the present utility model
[0023] Figure 4 is a schematic structural diagram of the NFC smart lock in the present utility model
[0024] Figure 5 is a circuit structure block diagram of a storage barrel with built-in NFC of the present utility model
[0025] In the figure, 1-barrel body, 2-barrel cover, 3-NFC traceability chip, 4-NFC humidity thermometer, 5-movable buckle, 6-buckle rib, 7-rotating part, 8-opening part, 9-protruding plane, 10-NFC smart lock, 11-inlay, 12-fixed buckle DETAILED DESCRIPTION
[0026] The present invention will be further described in detail below in conjunction with the accompanying drawings and specific implementation methods.
[0027] Embodiment 1:
[0028] like Figures 1-5 As shown, the storage barrel with built-in NFC includes a barrel body and a barrel cover. An NFC traceability chip is embedded in the barrel body. An NFC humidity thermometer is also arranged on the barrel body, and the NFC humidity thermometer includes an NFC chip and a temperature and humidity sensor electrically connected to each other.
[0029] In this embodiment, the NFC traceability chip and the NFC humidity thermometer are both set inside the barrel and are tightly connected to the barrel. The NFC humidity thermometer will fully record the humidity and temperature conditions in the barrel, and the NFC traceability chip will fully record all information of the stored materials. The relevant information directly determines the value of the stored materials, so it is necessary to ensure the integrity of the above equipment and the barrel. The NFC humidity thermometer contains an NFC chip and a temperature and humidity sensor to ensure its function of recording temperature and humidity and outputting temperature and humidity data to the outside.
[0030] Specifically, Figures 1-5 As shown, the above-mentioned NFC humidity thermometer is a passive NFC humidity thermometer. When the NFC reader approaches, it obtains energy from the NFC reader to collect temperature and humidity data in real time and transmits it to the NFC reader through the NFC chip.
[0031] In this embodiment, the NFC humidity thermometer is a meter without power supply. When an external NFC reader approaches, it obtains energy and captures the humidity and temperature conditions inside the storage barrel in real time through the temperature and humidity sensor, and quickly feeds back the collected data to the internal NFC chip, which is then transmitted to the NFC reader by the NFC chip.
[0032] Preferably, a movable buckle is arranged on the outer side of the top of the barrel body, and the movable buckle comprises a buckling rib, a rotating part and a breaking part, and the three cooperate to achieve a sealed buckle. More than three movable buckles are arranged in the storage barrel to achieve a tight buckle between the barrel body and the barrel cover, and promote the stability of the environment inside the barrel.
[0033] Preferably, an NFC smart lock for locking the barrel body and the barrel cover is provided between the barrel body and the barrel cover; when the NFC reader approaches, the energy required for unlocking and / or locking is obtained from the NFC reader. This NFC smart lock is a non-powered version, and the storage barrel users do not have charging anxiety. To operate the smart lock, an external NFC reader is required for cooperation, and the NFC reader will also record the opening and closing status of the smart lock in real time.
[0034] Preferably, a convex plane matching the shape of the barrel body is provided inside the upper end of the barrel body. It is an integral part of the barrel body. The convex plane is perpendicular to the barrel wall of the barrel body and extends a certain length into the barrel body. The convex plane is used to support the barrel cover. The barrel cover is provided with a through hole for the NFC smart lock to pass through. The bottom of the NFC smart lock has an inlay, and the inlay can be adjusted in angle. When it is rotated and placed below the convex plane, the barrel body and the barrel cover are locked, and when it is rotated away from below the convex plane, the barrel body and the barrel cover are unlocked.
[0035] Preferably, the NFC traceability chip, NFC smart lock, and NFC humidity thermometer in the built-in NFC storage barrel communicate with each other to enable the NFC traceability chip to completely record the opening and closing status of the NFC smart lock and the temperature and humidity conditions inside the storage barrel.
[0036] Preferably, the barrel body is made of stainless steel, and a fixed buckle is provided between the barrel body and the barrel cover. The fixed buckle is fixed to the barrel body and the barrel cover, making them unable to rotate or move. The barrel body of this material can maintain the airtightness and stability of the internal environment of the storage barrel through the cooperation with the NFC smart lock, movable buckle, and fixed buckle, and maximize the preservation function.
[0037] Preferably, the above-mentioned built-in NFC storage barrel includes a traceability management system. The NFC traceability chip and NFC humidity thermometer in the storage barrel cooperate with the terminal device of the NFC reader. The terminal device is used to receive the reading information of the NFC traceability chip and NFC humidity thermometer by the NFC reader and store and display it to achieve information communication between the NFC traceability chip and the NFC humidity thermometer.
[0038] Preferably, the above-mentioned traceability management system further includes an NFC smart lock. The device transmits an unlocking instruction to the NFC smart lock through the NFC reader and receives the unlocking information; the corresponding NFC traceability chip, NFC humidity thermometer, and NFC smart lock are recorded with a corresponding relationship to ultimately achieve information communication among the NFC traceability chip, NFC humidity thermometer, and NFC smart lock.
[0039] Example 2:
[0040] The difference between this embodiment and Embodiment 1 is that the NFC humidity thermometer in this embodiment is an active NFC humidity thermometer with a power supply battery, and the power supply battery is connected to the temperature and humidity sensor and the NFC chip; the temperature and humidity sensor is used to continuously collect temperature and humidity data and transmit it to the NFC chip for storage; the NFC chip is used to transmit the temperature and humidity data to the NFC reader when the NFC reader approaches.
[0041] In this embodiment, the NFC humidity thermometer has a power supply battery, which can be in the form of a rechargeable battery or a button battery, etc. For example, the power supply battery can be connected to a solar panel through a charging circuit, and the solar panel absorbs energy from an external ordinary light source or the sun light source and converts it into electrical energy for storage in the power supply battery. In this embodiment, through the function of the power supply battery, the temperature and humidity sensor works, continuously collects the collected temperature and humidity data and transmits it to the NFC chip for storage, and transmits a series of previously recorded data to the NFC reader when an external NFC reader approaches.
[0042] Preferably, the above active NFC humidity thermometer is provided with a display for displaying humidity and temperature. The display is connected to the NFC chip. The NFC chip is integrated with a microcontroller, which can manage the display and is powered by the power supply battery to display the changing temperature and humidity in the storage barrel in real time, facilitating the external reading of the real-time temperature and humidity data.
[0043] The specific embodiments described herein are merely illustrative of the spirit of the present invention. Those skilled in the art to which the present invention pertains can make various modifications or supplements to the described specific embodiments or use similar ways to replace them, but will not deviate from the spirit of the present invention or exceed the scope defined by the appended claims.
[0044] Although terms such as 1-barrel body, 2-barrel cover, 3-NFC traceability chip, 4-NFC humidity thermometer, 5-movable buckle, 6-latching rib, 7-rotating part, 8-opening part, 9-convex plane, 10-NFC intelligent lock, 11-inlay, 12-fixed buckle, etc. are used more in this article, the possibility of using other terms is not excluded. The use of these terms is only to more conveniently describe and explain the essence of the present invention; interpreting them as any additional limitation is contrary to the spirit of the present invention.
Claims
1. A storage bucket with built-in NFC, comprising a bucket body (1) and a bucket lid (2), which are fitted and connected. It is characterized in that, The barrel (1) is embedded with an NFC traceability chip (3) for storing information related to the stored materials; The barrel body (1) is also provided with an NFC humidity thermometer (4), and the NFC humidity thermometer (4) comprises an NFC chip and a temperature and humidity sensor which are electrically connected to each other, and is used to collect temperature and humidity data in the barrel and transmit it through the NFC chip.
2. The storage bucket with built-in NFC according to claim 1, characterized in that, The NFC humidity thermometer (4) is a passive NFC humidity thermometer (4). When an NFC reader approaches, it obtains energy from the NFC reader to collect temperature and humidity data in real time and transmits the data to the NFC reader through the NFC chip.
3. The storage bucket with built-in NFC according to claim 1, characterized in that, The NFC humidity thermometer (4) is an active NFC humidity thermometer (4) having a power supply battery, and the power supply battery is connected to the temperature and humidity sensor and the NFC chip; The temperature and humidity sensor is used to continuously collect temperature and humidity data and transmit it to the NFC chip for storage; The NFC chip is used to transmit temperature and humidity data to the NFC reader when the NFC reader is close to it.
4. The storage bucket with built-in NFC according to claim 3, characterized in that, The NFC humidity thermometer (4) comprises a display for displaying humidity and temperature.
5. The storage bucket with built-in NFC according to claim 1, characterized in that, A movable buckle (5) is provided on the outer side of the top of the barrel body (1) for sealing and buckling the barrel body (1) and the barrel cover (2); The movable buckle (5) comprises a buckling rib (6), a rotating part (7) and a breaking part (8), and the three cooperate to achieve a sealed buckle.
6. The storage bucket with built-in NFC according to claim 1, wherein, An NFC smart lock (10) for locking the barrel body (1) and the barrel cover (2) is provided between the barrel body (1) and the barrel cover (2); When the NFC reader approaches, the energy required for unlocking and / or locking is obtained from the NFC reader.
7. The storage bucket with built-in NFC according to claim 6, characterized in that, A protruding plane (9) matching the shape of the barrel body (1) is provided inside the upper end of the barrel body (1), and the protruding plane (9) supports the barrel cover (2); The barrel cover (2) is provided with a through hole, and the NFC smart lock (10) is arranged in the through hole; the bottom of the NFC smart lock (10) has an inlay (11), and the inlay (11) can be adjusted in angle and rotated to be placed or moved below the protruding plane (9) to achieve locking or unlocking of the barrel body (1) and the barrel cover (2).
8. The storage bucket with built-in NFC according to claim 6 or 7, characterized in that, The NFC traceability chip (3) communicates information with the NFC smart lock (10) and the NFC humidity thermometer (4) through an NFC reader and a previously recorded corresponding relationship, so that the NFC traceability chip (3) can completely record the switch status of the NFC smart lock (10) and the temperature and humidity conditions in the storage barrel.
9. The storage bucket with built-in NFC according to claim 1, characterized in that The barrel (1) is made of stainless steel; A fixing buckle (12) is provided between the barrel body (1) and the barrel cover (2), and the fixing buckle (12) is used to fix the positions of the barrel body (1) and the barrel cover (2) so that the two cannot move.
10. A traceability management system, characterized in that, It includes the storage bucket described in any one of claims 1-9, and a terminal device with an NFC reader. The terminal device is used to receive the reading information of the NFC traceability chip (3) and the NFC humidity thermometer (4) by the NFC reader, and store and display the information. It further includes an NFC smart lock (10). The terminal device is also used to transmit an unlocking instruction to the NFC smart lock (10) through the NFC reader and receive unlocking information. Corresponding relationships are recorded between the NFC traceability chip (3), the corresponding NFC humidity thermometer (4), and the NFC smart lock (10).
Citation Information
Patent Citations
Pericarpium citri reticulatae storage device with multi-layer design
CN214452967U