Cutter transportation equipment for inputting cutter information data

By designing a tool transportation device that includes a support base, transportation component, data storage component and monitoring component, the problem of existing equipment failing to enter information during transportation is solved, and the automatic collection and transmission of tool information is realized, ensuring the stable transportation of tools and the integrity of information.

CN222974150UActive Publication Date: 2025-06-13JIANGXI MINGHE TONGDA SEIKO CO LTD
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Patent Information

Application Number
CN202422105863.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-28
Publication Date
2025-06-13
Estimated Expiration
2034-08-28

AI Technical Summary

Technical Problem

The existing tool transportation equipment fails to enter information during transportation, resulting in the loss of important information such as tool use and maintenance records, affecting the timely replenishment and replacement of tools.

Method used

A tool transportation device including a support base, transportation component, data storage component and monitoring component is designed. Multiple groups of scanning blocks are connected to input information through a connecting frame, and automatic information collection, processing and transmission is achieved using punch-in blocks and infrared sensors to ensure the stability of the tool during transportation and the accuracy of information.

Benefits of technology

It realizes automatic collection, processing and transmission of tool information, reduces data entry time, ensures stable tool transportation and information integrity, and improves management efficiency and normal operation of equipment.

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Abstract

The utility model relates to the technical field of cutter transportation, in particular to cutter transportation equipment for inputting cutter information data. The technical problems that according to existing transportation equipment, tools are generally transported to a designated position in a unified mode, due to the fact that information input cannot be conducted on the unified tools in the transportation process, important information such as use and maintenance records of the tools is lost, and effective tracking and management are difficult to conduct in the subsequent use and maintenance process; and timely supply and replacement of the cutter are affected. According to the technical scheme, the tool transportation equipment for tool information data entry comprises a supporting base, a transportation assembly, a data storage assembly and a monitoring assembly; the connecting frame is used for connecting the multiple sets of scanning blocks to scan the bar code of the tool holder, the multiple sets of scanning blocks work at the same time, the data entry speed of tool information is increased, especially when a large number of tools are processed, the data entry time can be remarkably shortened, and automatic collection, processing and transmission of the tool information are achieved.
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Description

Technical Field

[0001] The utility model relates to the technical field of tool transportation, in particular to a tool transportation device for tool information data entry. Background Technique

[0002] Tools are widely used in various cutting, processing and manufacturing processes. They can be manual or electric and are made of different materials such as carbon steel, alloy steel, cemented carbide, etc. There are a wide variety of tools, with different shapes and sizes for different processing tasks. When handling tools, transportation equipment is needed. Tool transportation equipment is tools and machines used for transporting, storing, distributing and processing tools, usually used in industrial environments, especially in the manufacturing and metal processing industries. They can help improve work efficiency, reduce human errors, and ensure the proper management and maintenance of tools. Existing transportation equipment usually transports tools to a designated location uniformly during transportation. Since information entry is not carried out on the uniformly transported tools, important information such as the usage and maintenance records of the tools is lost, making it difficult to effectively track and manage them during subsequent use and maintenance, affecting the timely replenishment and replacement of tools. Therefore, we propose a tool transportation device for tool information data entry to solve the problems mentioned above. Content of the Utility Model

[0003] To overcome the problem that existing transportation equipment usually transports tools to a designated location uniformly. Since information entry is not carried out on the uniformly transported tools, important information such as the usage and maintenance records of the tools is lost, making it difficult to effectively track and manage them during subsequent use and maintenance, affecting the timely replenishment and replacement of tools.

[0004] The technical solution of the utility model is: a tool transportation device for tool information data entry, including a support base, a transportation component, a data storage component and a monitoring component; a transportation component for efficiently and safely moving tools from one location to another is installed inside the support base, a data storage component for storing and managing relevant information of tools is installed at the outer end of the support base, and a monitoring component for monitoring the tool transportation status is installed on one side of the data storage component.

[0005] Preferably, a connecting frame is adopted to connect multiple groups of scanning blocks to scan the tool handle barcodes. The multiple groups of scanning blocks work simultaneously, accelerating the data entry speed of tool information. Especially when dealing with a large number of tools, it can significantly reduce the data entry time, realize the automatic collection, processing, and transmission of tool information. The punching block is used to ensure that authorized personnel can start or operate the equipment, clearly track the usage of each employee, and control the operation of the equipment through punching, reducing the possibility of misoperation, ensuring the normal operation of the equipment and the safety of the tools. At the same time, the punching information can be automatically recorded and transmitted to the management software, facilitating data analysis and equipment monitoring by management personnel, establishing a standardized management system, improving work efficiency and discipline. Multiple groups of infrared sensors are used to sense and monitor the stable operation of the tools in real time. When a certain tool is tilted, an alarm is issued for prompt, avoiding jams during transportation and realizing the stable transportation of the tools. By using an auxiliary spring to connect the resilient fixing plate to clamp and convey the tools, a stable clamping effect is provided to ensure that the tools will not loosen or fall during transportation, maintaining the precise position of the tools and enabling stable information entry. A driving motor is connected to a roller to drive the conveyor belt for transportation, realizing efficient power transmission, reducing the vibration and jolting of the tools during transportation, protecting the integrity of the tools and the clarity of the information labels, adapting to the transportation requirements of different types of tools, accelerating the transportation efficiency. At the same time, the transportation information of the cable tools is transmitted by the connecting frame to the recording board for timely feedback, enabling the operator to immediately obtain the position and status information of the tools, realizing data sharing and unified management, and quickly conducting fault diagnosis and maintenance.

[0006] Preferably, the transportation component includes a conveyor belt, a roller, a driving motor, an auxiliary frame, a fixing plate, and an auxiliary spring. The conveyor belt is arranged inside the support seat. Multiple groups of auxiliary frames are arranged on the outer wall of the conveyor belt. The auxiliary spring is arranged inside the auxiliary frame. One end of the auxiliary spring is provided with a fixing plate. By using an auxiliary spring to connect the resilient fixing plate to clamp and convey the tools, a stable clamping effect is provided to ensure that the tools will not loosen or fall during transportation, maintaining the precise position of the tools and enabling stable information entry.

[0007] Preferably, a roller is arranged inside the conveyor belt. The conveyor belt is fixedly connected to the support seat through the roller. A driving motor is arranged outside the support seat at one end of the conveyor belt. By using a driving motor to connect the roller to drive the conveyor belt for transportation, efficient power transmission is realized, reducing the vibration and jolting of the tools during transportation, protecting the integrity of the tools and the clarity of the information labels, adapting to the transportation requirements of different types of tools, and accelerating the transportation efficiency.

[0008] Preferably, the data storage component includes a support column, a recording board, a card punching block, a connecting frame, a connecting wire, and a scanning block. The support column is located on the outer wall of the support seat. A recording board is provided at the upper end of the support column. A card punching block is provided on the outer wall of the recording board. A card swiping slot is formed inside the card punching block. By using the card punching block, it is ensured that authorized personnel can start or operate the device, clearly track the usage of each employee, and control the operation of the device through card punching, reducing the possibility of misoperation, ensuring the normal operation of the device and the safety of the tool. At the same time, the card punching information can be automatically recorded and transmitted to the management software, facilitating data analysis and device monitoring by management personnel, establishing a standardized management system, and improving work efficiency and discipline.

[0009] Preferably, the connecting frame is located at the upper edge of the support seat. A variety of scanning blocks are provided inside the connecting frame. A connecting wire is provided at the outer end of the connecting frame. The connecting frame is electrically connected to the recording board through the connecting wire. By using the connecting frame to connect multiple groups of scanning blocks to scan the barcode of the tool handle, multiple groups of scanning blocks work simultaneously, accelerating the data entry speed of tool information. Especially when dealing with a large number of tools, it can significantly reduce the data entry time, realize the automatic collection, processing, and transmission of tool information, and improve the overall informatization level.

[0010] Preferably, the monitoring component includes a detection board, an infrared sensor, and a transmission cable. The detection board is located at the upper end of the support seat. Multiple groups of infrared sensors are provided on the inner wall of the detection board. By using multiple groups of infrared sensors to sense and monitor the stable operation of the tool in real time, an alarm is issued for prompt when a certain tool is tilted, avoiding jamming and blockage during transmission, and realizing the stable transportation of the tool.

[0011] Preferably, a transmission cable is provided at the rear end of the detection board. The detection board is electrically connected to the connecting frame through the transmission cable. By using the transmission cable, the tool transportation information is transmitted from the connecting frame to the recording board for timely feedback, enabling the operator to immediately obtain the position and status information of the tool, realizing data sharing and unified management, quickly conducting fault diagnosis and maintenance, and reducing the downtime.

[0012] Advantages of the present utility model:

[0013] 1. Compared with traditional transportation equipment, by using a connecting frame to connect multiple groups of scanning blocks to scan the tool handle for barcodes, multiple groups of scanning blocks work simultaneously, accelerating the data entry speed of tool information. Especially when dealing with a large number of tools, it can significantly reduce the data entry time, achieve automatic collection, processing, and transmission of tool information. Using a punching block to ensure that authorized personnel can start or operate the equipment, clearly track the usage of each employee, and control the operation of the equipment through punching, reducing the possibility of misoperation, ensuring the normal operation of the equipment and the safety of the tools. At the same time, the punching information can be automatically recorded and transmitted to the management software, facilitating data analysis and equipment monitoring by management personnel, establishing a standardized management system, improving work efficiency and discipline. Multiple groups of infrared sensors are used to sense and monitor the stable operation of the tools in real-time. When a certain tool is tilted, an alarm is issued for prompt, avoiding jams during transmission and achieving stable transportation of the tools.

[0014] 2. By using an auxiliary spring to connect the rebound fixing plate to clamp and convey the tool, a stable clamping effect is provided to ensure that the tool will not loosen or fall during transportation, maintaining the precise position of the tool for stable information entry. Using a driving motor to connect to the roller to drive the conveyor belt for transportation, achieving efficient power transmission, reducing the vibration and jolting of the tool during transportation, protecting the integrity of the tool and the clarity of the information label, adapting to the transportation needs of different types of tools, accelerating the transportation efficiency. At the same time, the tool transportation information of the transmission cable is transmitted by the connecting frame to the recording board for timely feedback, enabling the operator to immediately obtain the position and status information of the tool, realizing data sharing and unified management, and quickly conducting fault diagnosis and maintenance. Description of the Drawings

[0015] Figure 1 It is a schematic diagram of the overall structure of the present utility model;

[0016] Figure 2 It is a schematic diagram of the transportation component structure of the present utility model;

[0017] Figure 3 It is a schematic diagram of the data storage component structure of the present utility model;

[0018] Figure 4 It is a schematic diagram of the monitoring component structure of the present utility model.

[0019] Description of the reference numerals: 1. Support base; 2. Transportation component; 201. Conveyor belt; 202. Roller; 203. Driving motor; 204. Auxiliary frame; 205. Fixing plate; 206. Auxiliary spring; 3. Data storage component; 301. Support column; 302. Recording board; 303. Punching block; 304. Swipe card slot; 305. Connecting frame; 306. Connecting wire; 307. Scanning block; 4. Monitoring component; 401. Detection board; 402. Infrared sensor; 403. Transmission cable. Detailed implementation manners

[0020] The present utility model will be further described below in conjunction with the accompanying drawings and embodiments.

[0021] Please refer to Figures 1-4 , the present utility model provides an embodiment: a tool transportation device for tool information data entry, including a support base 1, a transportation component 2, a data storage component 3 and a monitoring component 4; a transportation component 2 for efficiently and safely moving tools from one location to another is installed inside the support base 1, and a data storage component 3 for storing and managing relevant information of the tools is installed at the outer end of the support base 1, and a monitoring component 4 for monitoring the tool transportation state is installed on one side of the data storage component 3.

[0022] Please refer to Figures 1-3 , in this embodiment, the transportation component 2 includes a conveyor belt 201, rollers 202, a driving motor 203, an auxiliary frame 204, a fixing plate 205 and an auxiliary spring 206. The conveyor belt 201 is arranged inside the support base 1, and multiple groups of auxiliary frames 204 are arranged on the outer wall of the conveyor belt 201. An auxiliary spring 206 is arranged inside the auxiliary frame 204, and a fixing plate 205 is arranged at one end of the auxiliary spring 206. By using the auxiliary spring 206 to connect and rebound the fixing plate 205 to clamp and convey the tool, a stable clamping effect is provided to ensure that the tool will not loosen or fall during the conveying process, maintain the accurate position of the tool so that the information can be stably entered. Rollers 202 are arranged inside the conveyor belt 201, and the conveyor belt 201 is fixedly connected to the support base 1 by using the rollers 202. A driving motor 203 is arranged at one end of the conveyor belt 201 outside the support base 1. By using the driving motor 203 to connect the rollers 202 to drive the conveyor belt 201 to convey, efficient power transmission is realized, the vibration and bump of the tool during the transportation process are reduced, the integrity of the tool and the clarity of the information label are protected, the transportation requirements of different types of tools are adapted, and the transportation efficiency is accelerated.

[0023] Please refer to Figures 1-3, in this embodiment, the data storage component 3 includes support columns 301, a recording board 302, a card punching block 303, a connecting frame 305, a connecting wire 306, and a scanning block 307. The support columns 301 are located on the outer wall of the support base 1. A recording board 302 is provided at the upper end of the support columns 301. A card punching block 303 is provided on the outer wall of the recording board 302. A card swiping groove 304 is formed inside the card punching block 303. By using the card punching block 303, it is ensured that authorized personnel can start or operate the device, clearly track the usage of each employee, and control the operation of the device through card punching, reducing the possibility of misoperation, ensuring the normal operation of the device and the safety of the cutting tool. At the same time, the card punching information can be automatically recorded and transmitted to the management software, facilitating data analysis and device monitoring by management personnel, establishing a standardized management system, and improving work efficiency and discipline. The connecting frame 305 is located at the upper edge of the support base 1. A variety of scanning blocks 307 are provided inside the connecting frame 305. A connecting wire 306 is provided at the outer end of the connecting frame 305. The connecting frame 305 is electrically connected to the recording board 302 through the connecting wire 306. By using the connecting frame 305 to connect multiple groups of scanning blocks 307 to scan the tool handle barcodes, multiple groups of scanning blocks 307 work simultaneously, accelerating the data entry speed of tool information. Especially when dealing with a large number of cutting tools, it can significantly reduce the data entry time, realize automatic collection, processing, and transmission of tool information, and improve the overall informatization level.

[0024] Please refer to Figures 2-4 , in this embodiment, the monitoring component 4 includes a detection board 401, an infrared sensor 402, and a transmission cable 403. The detection board 401 is located at the upper end of the support base 1. Multiple groups of infrared sensors 402 are provided on the inner wall of the detection board 401. The model of the infrared sensor 402 is HCSR5883. By using multiple groups of infrared sensors 402 to continuously sense and monitor the stable operation of the cutting tool, an alarm is issued for prompt when a certain cutting tool is tilted, avoiding jamming during transmission, and realizing the stable transportation of the cutting tool. A transmission cable 403 is provided at the rear end of the detection board 401. The detection board 401 is electrically connected to the connecting frame 305 through the transmission cable 403. By using the transmission cable 403, the cutting tool transportation information is transmitted from the connecting frame 305 to the recording board 302 for timely feedback, enabling the operator to immediately obtain the position and status information of the cutting tool, realizing data sharing and unified management, quickly conducting fault diagnosis and maintenance, and reducing the downtime.

[0025] When working, first insert the employee card into the card slot 304. Use the card punching block 303 to transmit the data in the card to the recording board 302 for recording. The card punching block 303 is used to ensure that authorized personnel start or operate the equipment, clearly track the usage of each employee, facilitate data analysis and equipment monitoring by management personnel. At the same time, after punching the card, use the recording board 302 to start the equipment to run, reducing the possibility of misoperation and ensuring the normal operation of the equipment. Place the tool to be transported at one end of its conveyor belt 201, and use the auxiliary spring 206 to connect the rebound fixing plate 205 to clamp and fix the tool, positioning the tool handle vertically upward to ensure that the tool will not loosen or fall during transportation. Control the driving motor 203 to connect to the roller 202 to drive the conveyor belt 201 for transportation, reducing the vibration and bump of the tool during transportation. When the fixed tool is transmitted to the lower end of the scanning block 307, multiple groups of scanning blocks 307 scan the information label at the upper end of the tool handle simultaneously, accelerating the data entry speed of the tool information. When dealing with a large number of tools, it can significantly reduce the data entry time, realize the automatic collection, processing and transmission of tool information, and maintain the accurate position of the tool to ensure stable information entry.

[0026] After the tool information is entered, the conveyor belt 201 stably transports the tool to the designated position. Multiple groups of infrared sensors 402 are used to continuously sense and monitor the stable operation of the tool. When a certain tool is tilted, the infrared sensor 402 transmits the information through the transmission cable 403 to the recording board 302 through the connecting frame 305, and issues an alarm for prompt, so that the operator can immediately obtain the position and status information of the tool, avoiding jams during transportation and realizing the stable transportation of the tool.

[0027] Specifically, the mobile 5G private network uses the large bandwidth of 5G. According to the needs of the enterprise, it adopts network slicing technology to formulate a customized 5G network construction plan for the enterprise. The service data is transmitted to the enterprise server room through the mobile shared UPF. Enterprise employees use 5G PAD devices to scan codes and verify and upload the production operations, material information, and quality information of the enterprise in real time, so as to manage and monitor the production process of the enterprise, including the production plan of semi-finished products incoming materials, and realize data docking with the enterprise ERP and WMS, realizing the management of the quality and process specifications of the entire production process, improving production efficiency and product quality. At the same time, enterprise executives can use the 5G dual-domain private network through their mobile phones to monitor the production status of the factory area at all times inside or outside the factory area.

[0028] Communication technology and MES technology. The purpose of this system is to realize data management such as workshop production planning and scheduling, production process control, equipment management, quality management, warehouse management, energy consumption management, and on-site civilized production, and integrate data between various modules of the workshop to realize a comprehensive data platform and report visualization platform. The system is connected to the workshop lower computer terminal through a 5G network to realize real-time collection of workshop production data, provide a data source for real-time monitoring of workshop production conditions, and take appropriate measures to ensure the successful deployment and long-term operation of the system.

[0029] Through the above steps, the barcode of the tool handle is scanned by connecting multiple groups of scanning blocks 307 using a connecting frame 305. Multiple groups of scanning blocks 307 work simultaneously to speed up the data entry speed of the tool information. Especially when processing a large number of tools, it can significantly reduce the data entry time and realize automatic collection, processing and transmission of tool information. The clock-in block 303 is used to ensure that authorized personnel start or operate the equipment, clearly track the usage of each employee, and control the operation of the equipment by clocking in, which reduces the possibility of misoperation and ensures the normal operation of the equipment and the safety of the tool. At the same time, the clock-in information can be automatically recorded and transmitted to the management software, which is convenient for managers to perform data analysis and equipment monitoring, establish a standardized management system, and improve work efficiency and discipline. Multiple groups of infrared sensors 402 are used to sense and monitor the smooth operation of the tool in real time, and an alarm is issued when a tool is tilted. The tool is then transported in a stable manner by means of an auxiliary spring 206 connected to the rebound fixing plate 205 to clamp the tool for transportation, thereby providing a stable clamping effect and ensuring that the tool will not loosen or fall during transportation. The precise position of the tool is maintained so that information can be stably input. The drive motor 203 is connected to the roller 202 to drive the conveyor belt 201 for transportation, thereby achieving efficient power transmission and reducing vibration and bumping of the tool during transportation. This protects the integrity of the tool and the clarity of the information label, adapts to different types of tool transportation needs, and speeds up transportation efficiency. At the same time, the tool transportation information of the transmission cable 403 is transmitted by the connecting frame 305 to the recording board 302 for timely feedback, so that the operator can immediately obtain the location and status information of the tool, thereby achieving data sharing and unified management, and quickly performing fault diagnosis and maintenance.

[0030] The embodiments of the present invention are described in detail above in conjunction with the accompanying drawings, but the present invention is not limited to the above embodiments, and various changes can be made within the knowledge scope of those skilled in the art without departing from the purpose of the present invention.

Claims

1. A tool transport device for entering tool information data, comprising a support base (1); characterized in that: It also comprises a transport component (2), a data storage component (3) and a monitoring component (4); the interior of the support base (1) is equipped with a transport component (2) for efficiently and safely moving a tool from one location to another, the outer end of the support base (1) is equipped with a data storage component (3) for storing and managing relevant information of the tool, and one side of the data storage component (3) is equipped with a monitoring component (4) for monitoring the transport status of the tool.

2. The tool transport device for tool information data entry according to claim 1, characterized in that: The transport assembly (2) comprises a conveyor belt (201), a roller (202), a driving motor (203), an auxiliary frame (204), a fixing plate (205) and an auxiliary spring (206); the conveyor belt (201) is arranged inside the support seat (1); a plurality of auxiliary frames (204) are arranged on the outer wall of the conveyor belt (201); an auxiliary spring (206) is arranged inside the auxiliary frame (204); and a fixing plate (205) is arranged at one end of the auxiliary spring (206).

3. The tool transport device for tool information data entry according to claim 2, characterized in that: A roller (202) is provided inside the conveyor belt (201), and the conveyor belt (201) is fixedly connected to the support seat (1) by using the roller (202). One end of the conveyor belt (201) is located outside the support seat (1) and is provided with a driving motor (203).

4. The tool transport device for tool information data entry according to claim 1, characterized in that: The data storage component (3) comprises a support column (301), a recording board (302), a punching block (303), a connecting frame (305), a connecting line (306) and a scanning block (307); the support column (301) is located on the outer wall of the support base (1); the upper end of the support column (301) is provided with a recording board (302); the outer wall of the recording board (302) is provided with a punching block (303); and a card swiping slot (304) is provided inside the punching block (303).

5. The tool transport device for tool information data entry according to claim 4, characterized in that: The connecting frame (305) is located at the upper edge of the supporting base (1), and a plurality of scanning blocks (307) are arranged inside the connecting frame (305). A connecting wire (306) is arranged at the outer end of the connecting frame (305), and the connecting frame (305) is electrically connected to the recording board (302) via the connecting wire (306).

6. The tool transport device for tool information data entry according to claim 5, characterized in that: The monitoring component (4) comprises a detection board (401), an infrared sensor (402) and a transmission cable (403); the detection board (401) is located at the upper end of the support base (1); and a plurality of groups of infrared sensors (402) are arranged on the inner wall of the detection board (401).

7. The tool transport device for tool information data entry according to claim 6, characterized in that: A transmission cable (403) is provided at the rear end of the detection board (401), and the detection board (401) is electrically connected to the connection frame (305) via the transmission cable (403).