Sculpture tool management system and management method
The management system, which uses independent compartments and sensor units to identify the identity of sculpture tools, solves the problems of high loss and safety risks in sculpture tool management, realizes precise storage, rapid positioning and automatic maintenance, and improves management efficiency and tool safety.
Patent Information
- Application Number
- CN202510909000.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-07-02
- Publication Date
- 2025-10-10
AI Technical Summary
The existing management of sculpture tools lacks systematicity, resulting in high tool loss, extensive management, prominent safety risks, and difficulty in tracing the responsible persons.
It uses an independent compartment design and a sensor unit to identify the identity of sculpture tools. Combined with a central processing unit and database management, it achieves precise storage verification, rapid positioning, automatic maintenance reminders, monitors environmental parameters, and provides human-computer interaction functions.
It avoids physical collision damage to sculpture tools, improves tool search efficiency, ensures accurate positioning, automatic maintenance and environmental monitoring, and reduces tool oxidation loss and safety risks.
Smart Images

Figure CN120765162A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of warehouse management, and in particular to a sculpture tool management system and a management method. Background Art
[0002] In the fields of sculpture creation, teaching and restoration, sculpture tools (such as chisels, carving knives, scrapers, etc.) have long faced the dilemma of lack of systematic management due to their special materials (including high-carbon steel, alloys, etc.), sharp shapes and high precision requirements.
[0003] Existing sculpture tool management relies on manual memory. During storage, multiple tools are mixed together, resulting in frequent collision damage during the process of taking and placing tools. In particular, when tools of different hardness are mixed, the rate of cutting edge chipping increases significantly. Sculpture tools of different models may be highly similar in appearance, and it takes a long time for users to find a specific model, which seriously affects creative efficiency. In addition, the maintenance of existing sculpture tools mainly relies on experience, lacks a systematic rust warning and periodic maintenance mechanism, and the oxidation loss rate of metal tools in humid environments remains high. In addition, in some scenarios, there is also the problem of difficulty in tracing the person responsible after the sculpture tools are lost or damaged.
[0004] The current market lacks a dedicated management system for this field, and general warehousing solutions are unable to identify tool types. Based on this, the present invention proposes a sculpture tool management system and management method to solve the problems unique to sculpture tools, such as high loss rate, extensive management, and prominent safety risks. Summary of the Invention
[0005] The purpose of the present invention is to overcome the shortcomings of the prior art and provide a sculpture tool management system and management method, which are specifically achieved through the following technical solutions:
[0006] A sculpture tool management system includes a storage device, a first sensing unit, a database, and a central processing unit, wherein:
[0007] The storage device comprises a plurality of storage areas; each storage area comprises a plurality of independent compartments for storing a single sculpture tool;
[0008] The first sensing unit is used to detect whether a sculpture tool is placed in the independent compartment and read the identity information of the tool;
[0009] The database is used to store location information including the storage location of the sculpture tools and identity information for identifying the sculpture tools;
[0010] The central processing unit includes a position verification module and a tool query module; the central processing unit is connected to the first sensor unit and the database by telecommunication;
[0011] The central processing unit receives information collected by the first sensing unit, calls information in the database, drives the position checking module to perform position storage checking of the sculpture tool, and drives the tool query module to perform tool position searching.
[0012] Optionally or preferably, the sculpture tool management system further comprises a man-machine interaction module; the man-machine interaction module comprises a display screen and a prompt unit.
[0013] Optionally or preferably, the central processing unit further comprises a maintenance monitoring module; the maintenance monitoring module automatically calculates and judges whether the tool needs maintenance according to maintenance information recorded in the database and the current time, and generates a list of tools that need maintenance.
[0014] Optionally or preferably, the central processing unit further comprises a use recording module; the use recording module automatically records the taking time, the identity information of the sculpture tool, and the corresponding user identity information each time the first sensing unit detects that the sculpture tool is taken away, and records the returning time, the position of the independent bin and the update returning confirmation information when the tool is detected to be returned.
[0015] Optionally or preferably, the sculpture tool management system further comprises a second sensing unit; the second sensing unit comprises a temperature sensor, a humidity sensor or a corrosive gas sensor, and is used for monitoring micro-environmental parameters of each storage area.
[0016] Optionally or preferably, the sculpture tool management system further comprises an environment control module; the environment control module receives environmental parameters collected by the second sensing unit, compares the stored environmental information in the database, and judges whether the current environment is suitable.
[0017] Optionally or preferably, the identity information is an RFID tag, a two-dimensional code tag or an image identification code containing unique physical features of the tool; the first sensing unit is a corresponding RFID reader-writer, an image recognition device or a physical feature sensor.
[0018] Optionally or preferably, the man-machine interaction module is further provided with an identity recognition unit, which is used for identifying the identity of the user currently operating.
[0019] The application further provides a sculpture tool management method based on the sculpture tool management system.
[0020] When the sculpture tool is stored:
[0021] The sculpture tool with the identity information is placed in a certain independent bin.
[0022] The first sensing unit reads the identity information of the sculpture tool and the position information of the independent bin, and sends the information to the central processing unit.
[0023] The position verification module in the central processing unit queries the database based on the identity information of the sculpture tool and compares the identity information of the tools allowed to be stored in the independent compartment;
[0024] If the sculpture tool is stored in the wrong location, an error message will be issued and the correct location will be called;
[0025] If the storage location of the sculpture tool is correct, update the database;
[0026] When accessing sculpting tools:
[0027] The tool query module searches the database for the current storage location of the sculpture tool and displays it.
[0028] The present invention provides a sculpture tool management system and method, which adopts an independent compartment design and precise tool identity recognition to avoid the risk of physical collision caused by mixed storage of sculpture tools. In addition, it can automatically warn and navigate to the correct location when a tool is misplaced, while providing a quick positioning function, significantly improving tool search efficiency. BRIEF DESCRIPTION OF THE DRAWINGS
[0029] In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the embodiments or the description of the prior art. Obviously, the drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on the structures shown in these drawings without paying any creative work.
[0030] Fig. 1 is a flow chart of the storage method of the present invention;
[0031] Fig. 2 It is a flow chart of the method of using of the present invention. DETAILED DESCRIPTION
[0032] 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.
[0033] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. All other embodiments obtained by ordinary technicians in this field based on the embodiments of the present invention without making any creative efforts shall fall within the scope of protection of the present invention.
[0034] Example 1:
[0035] like Figs. 1-2 As shown:
[0036] The present invention provides a sculpture tool management system, comprising:
[0037] The storage device comprises a plurality of storage areas; each of the storage areas comprises a plurality of independent compartments for storing a single sculpture tool; specifically, the inner wall of each independent compartment is provided with a cushioning material;
[0038] In this embodiment, each of the independent compartments is correspondingly provided with an indicator light.
[0039] The first sensing unit is used to detect whether a sculpture tool is placed in the independent compartment and read the identity information of the tool; each sculpture tool has unique identity information corresponding to the tool.
[0040] The second sensing unit includes a temperature sensor, a humidity sensor or a corrosive gas sensor, and is used to monitor the microenvironmental parameters of each storage area.
[0041] A central processing unit is electrically connected to the first sensing unit and the human-computer interaction module; the central processing unit includes a position verification module, a tool query module, and a maintenance monitoring module;
[0042] The database is used to store the location information, identity information, storage environment information and maintenance information of each sculpture tool; the location information includes the location of each independent compartment and the identity information of the sculpture tool allowed to be stored in the corresponding location; the identity information includes the type and model of the sculpture tool; and the maintenance information includes the maintenance cycle, the last maintenance time, and the maintenance content.
[0043] The human-computer interaction module includes a display screen and a prompt unit.
[0044] The position verification module receives the identity information of the sculpture tool and the position information of the independent compartment collected by the first sensing unit, and compares the received information with the identity information of the sculpture tools allowed to be stored in the independent compartment in the database. If there is a mismatch, the prompt unit is triggered to issue an error prompt and control the indicator light of the current independent compartment to issue an error indication, while displaying the correct storage position of the sculpture tool on the display screen. If there is a match, the corresponding information in the database is updated and the indicator light is controlled to issue a correct indication.
[0045] The tool query module retrieves information from the database based on the user's query instruction and the input identity information of the sculpture tool, finds the location of the independent storage compartment where the tool is currently stored, and displays it on the display screen to guide the user to the location;
[0046] The maintenance monitoring module automatically calculates and determines whether a tool is due for maintenance based on the maintenance information recorded in the database and the current time, generates a list of tools due for maintenance and displays it on the display screen, and issues a reminder through the prompt unit.
[0047] The usage record module automatically records the removal time, the identity information of the sculpting tool, and the corresponding user identity information each time the first sensor unit detects that the sculpting tool has been taken away. When the tool is returned, the module records the return time, the location of the independent compartment, and updates the return confirmation information, thereby forming a usage traceability record including the user, sculpting tool, removal time, return time, and storage location.
[0048] The environmental control module receives the environmental parameters collected by the second sensor unit, compares them with the environmental information stored in the database, and determines whether the current environment is suitable. If not, it generates environmental control suggestion instructions and issues them through the prompt unit and display. Additional linkage environmental control equipment can also be configured to automatically execute control actions.
[0049] In this embodiment, the identity information is an RFID tag, a QR code tag, or an image identification code containing the unique physical characteristics of the tool; correspondingly, the first sensing unit is a corresponding RFID reader, image recognition device, or physical characteristic sensor.
[0050] In this embodiment, the buffer material is a flexible anti-scratch material, such as silica gel, soft sponge or rubber coating.
[0051] In this embodiment, the human-computer interaction module is also provided with an identity recognition unit for identifying the identity of the user currently operating; further, the usage record module is specifically configured to record the user identity information obtained by the identity recognition unit when the tool is taken away, and establish a user-tool use and return association record.
[0052] This embodiment has the following advantages:
[0053] (1) By setting up an independent storage location for each sculpture tool, the tool storage status is monitored in real time through the sensor unit, and the sculpture tool positioning management is accurately performed to avoid misplacement or loss of tools.
[0054] (2) The tool query module can quickly respond to search requests, display the precise location of the tool, and significantly improve search efficiency.
[0055] (3) The maintenance monitoring module can automatically generate a maintenance due list based on the records to avoid tool damage due to missed maintenance.
[0056] (4) The environmental control module monitors temperature, humidity, and corrosive gases in real time, automatically warns of abnormal environments, and protects precision tools from corrosion.
[0057] The foregoing is considered as illustrative only of the principles of the application. Further, since numerous modifications and changes will readily occur to those skilled in the art, it is not desired to limit the application to the exact construction and practice described. Accordingly, all such variations are intended to be included within the scope of the present application as defined in the following claims, along with full authority to use equivalent methods and materials such modifications to the inventive teachings as come within the scope of the following claims.
Claims
1. A sculpture tool management system, characterized by: The system comprises a storage device, a first sensing unit, a database and a central processing unit, wherein: The storage device comprises a plurality of storage areas; each storage area comprises a plurality of independent compartments for storing a single sculpture tool; The first sensing unit is used to detect whether a sculpture tool is placed in the independent compartment and read the identity information of the tool; The database is used to store location information including the storage location of the sculpture tools and identity information for identifying the sculpture tools; The central processing unit includes a position verification module and a tool query module; the central processing unit is connected to the first sensor unit and the database by telecommunication; The central processing unit receives the information collected by the first sensing unit, calls the information in the database, drives the position verification module to perform the position storage verification of the sculpture tool, and drives the tool query module to perform the tool position search.
2. A sculpture tool management system according to claim 1, characterized in that: It also includes a human-computer interaction module; the human-computer interaction module includes a display screen and a prompt unit.
3. A sculpture tool management system according to claim 1, characterized in that: The central processing unit also includes a maintenance monitoring module; the maintenance monitoring module automatically calculates and determines whether a tool is due for maintenance based on the maintenance information recorded in the database and the current time, and generates a list of tools due for maintenance.
4. A sculpture tool management system according to claim 1, characterized in that: The central processing unit also includes a usage recording module; each time the first sensor unit detects that the sculpting tool is taken away, the usage recording module automatically records the removal time, the identity information of the sculpting tool, and the corresponding user identity information, and when the tool is detected to be returned, the usage recording module records the return time, the location of the independent compartment, and updates the return confirmation information.
5. A sculpture tool management system according to claim 1, characterized in that: It also includes a second sensing unit, which includes a temperature sensor, a humidity sensor or a corrosive gas sensor, and is used to monitor the microenvironment parameters of each storage area.
6. A sculpture tool management system according to claim 5, characterized in that: It also includes an environmental control module, which receives the environmental parameters collected by the second sensor unit, compares them with the stored environmental information in the database, and determines whether the current environment is suitable.
7. A sculpture tool management system according to claim 1, characterized in that: The identity information is an RFID tag, a QR code tag or an image identification code containing the unique physical characteristics of the tool; the first sensing unit is a corresponding RFID reader / writer, an image recognition device or a physical characteristic sensor.
8. A sculpture tool management system according to claim 3, characterized in that: The human-computer interaction module is further provided with an identity recognition unit for identifying the identity of the user currently operating.
9. A sculpture tool management method, characterized in that: Adopting the sculpture tool management system according to any one of claims 1-8: When storing your sculpting tools: Place the sculpture tools with identification information in a separate compartment; The first sensing unit reads the identity information of the sculpture tool and the position information of the independent compartment and sends the information to the central processing unit; The position verification module in the central processing unit queries the database based on the identity information of the sculpture tool and compares the identity information of the tools allowed to be stored in the independent compartment; If the sculpture tool is stored in the wrong location, an error message will be issued and the correct location will be called; If the storage location of the sculpture tool is correct, update the database; When accessing sculpting tools: The tool query module searches the database for the current storage location of the sculpture tool and displays it.