Secret-related storage carrier destroying equipment

The modular design and automated control of confidential storage media destruction equipment solves the problems of existing equipment being single in function and difficult to meet high confidentiality standards, realizes the flexible destruction of paper media and optical media, and improves the destruction efficiency and safety.

CN223454812UActive Publication Date: 2025-10-21NINGBO HANGKE XINAN TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202422798879.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-15
Publication Date
2025-10-21
Estimated Expiration
2034-11-15

AI Technical Summary

Technical Problem

Existing destruction equipment has a single function and cannot meet the destruction needs of paper media and optical media at the same time. It lacks flexibility and automation, is difficult to adapt to changing destruction tasks and confidentiality requirements, and is difficult to meet high confidentiality standards.

Method used

A device for destroying confidential storage media has been designed. It adopts a modular design and includes channels for destroying paper and optical media. It is automatically controlled by an industrial computer and combined with a multi-stage shredding mechanism, a static weighing machine, an industrial camera, etc. to ensure the thoroughness and traceability of the destruction process.

Benefits of technology

It realizes flexible configuration and modular design of equipment, improves destruction efficiency, meets high confidentiality standards, reduces environmental pollution and operating costs, and ensures information security.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to secret-related storage carrier destroying equipment which comprises one or a combination / repeated arrangement of two of a paper medium destroying channel and an optical disk medium destroying channel, and the destroying equipment can randomly form a dual-channel destroying medium type according to customer requirements. For example, two paper medium destroying lines, two optical medium destroying lines and one paper medium optical medium destroying line are arranged. According to the destroying equipment, through a multi-stage crushing mechanism and different crushing cutter group combination modes, thorough destroying of paper media and optical disc media is ensured, and the requirement of a high confidentiality standard is met. In addition, by using the static weighing machine and the U-shaped scale, the medium before and after destruction can be accurately weighed, and it is ensured that the destruction effect meets the confidentiality requirement. The design of the paper medium primary pulverizer and the optical disk medium destroying channel ensures that the rated destroying amount reaches or exceeds 200 kg / h, and the high-efficiency destroying capacity meets the processing requirement of a large number of secret-related storage carriers.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of pulverizers, in particular to a classified storage carrier destruction device. BACKGROUND

[0002] Currently, the destruction devices existing in the market are often single-function, which cannot meet the destruction requirements of paper media and optical disc media at the same time, and lack flexibility and automation, making it difficult to adapt to changing destruction tasks and security requirements.

[0003] Paper media destruction usually adopts mechanical pulverization or incineration, but these methods have the problems of low efficiency, environmental pollution and incomplete destruction. The destruction of optical disc media is more complex, and traditional pulverizing equipment cannot ensure that the data stored in the optical disc is completely destroyed, and there is a risk of data recovery. In addition, most of the existing destruction devices lack modular design, making it difficult to upgrade and maintain the equipment, and the destruction channels cannot be flexibly configured according to actual needs.

[0004] In terms of automation, the existing destruction devices often need manual operation, which not only has low efficiency, but also cannot guarantee the continuity and consistency of the destruction process. At the same time, there is a lack of effective monitoring and management during the destruction process, which makes it difficult to effectively control the whole destruction process and increases the risk of information leakage.

[0005] In terms of security standards, the existing destruction devices are rarely able to meet the high-standard security requirements formulated by institutions such as the State Security Bureau. These standards require that the destroyed media should be in a state that cannot be recovered, but existing technologies often cannot fully meet these strict standards.

[0006] Therefore, it is necessary to develop a new classified storage carrier destruction device, which should have the ability to destroy paper media or optical disc media, be able to realize modular design, automation processing, and meet the needs of high security standards and whole-process control, in order to improve the destruction efficiency, ensure information security, and reduce environmental pollution and operation cost. CONTENT OF THE INVENTION

[0007] The present application provides a classified storage carrier destruction device, which can meet the functional requirements of flexible assembly, modular design and automation processing.

[0008] The classified storage carrier destruction device provided by the present application adopts the following technical solution:

[0009] The classified storage carrier destruction equipment includes one or both of the combination / repeated arrangement of the paper medium destruction channel and the optical disc medium destruction channel, and each destruction channel is communicated with the industrial computer through electrical connection to receive the control signal from the industrial computer and transmit the medium destruction state information, the paper medium destruction channel includes the paper medium conveying device, the paper medium primary crusher, the paper scrap climbing conveyor, the paper medium secondary crusher, the paper medium tertiary crusher and the paper medium waste collecting device which are sequentially connected, and the optical disc medium destruction channel includes the optical disc medium conveying device, the optical disc medium primary crusher, the optical disc medium secondary crusher, the optical disc scrap climbing conveyor, the optical disc medium tertiary crusher and the optical disc medium waste collecting device which are sequentially connected.

[0010] Further improvement, the paper medium destruction channel is composed of a paper medium input module, a paper medium crushing conveying module and a paper medium crushing output module, and the optical disc medium destruction channel is composed of an optical disc medium input module, an optical disc medium crushing conveying module and an optical disc medium crushing output module; the rack sizes of the paper medium input module, the paper medium crushing conveying module, the paper medium crushing output module, the optical disc medium input module, the optical disc medium crushing conveying module and the optical disc medium crushing output module are the same, and the adjacent racks can be connected in parallel or in series.

[0011] Further improvement, the paper medium input module is provided with the paper medium conveying device, the paper medium crushing conveying module is provided with the paper medium primary crusher and the paper scrap climbing conveyor, and the paper medium crushing output module is provided with the paper medium secondary crusher, the paper medium tertiary crusher and the paper medium waste collecting device.

[0012] Further improvement, the optical disc medium input module is provided with the optical disc medium conveying device, the optical disc medium crushing conveying module is provided with the optical disc medium primary crusher, the optical disc medium secondary crusher and the optical disc scrap climbing conveyor, and the optical disc medium crushing output module is provided with the optical disc medium tertiary crusher and the optical disc medium waste collecting device.

[0013] Further improvement, it further includes a static weighing machine, the static weighing machine is located at the incoming end of the paper medium conveying device or the optical disc medium conveying device, the paper medium waste collecting device or the optical disc medium waste collecting device includes a waste box, a U-shaped scale is arranged below the waste box, and the U-shaped scale and the static weighing machine are connected in data communication connection with the industrial computer.

[0014] Further improvement, it further includes an industrial camera, the industrial camera is arranged on the paper medium conveying device or the optical disc medium conveying device, the industrial camera is connected in data communication connection with the industrial computer, and the industrial camera is used for capturing the shape or barcode on the object.

[0015] Further improvement, the optical disc medium conveying device comprises a first conveying belt, a sorting robot and a second conveying belt, the sorting robot is connected with the data communication connection, and the sorting robot is used for sorting the articles on the first conveying belt to the second conveying belt.

[0016] Further improvement, the rated destruction capacity of the paper medium primary crusher is greater than or equal to 200 kg / hour; and the rated destruction capacity of the paper medium destruction channel or the optical disc medium destruction channel is greater than or equal to 200 kg / hour.

[0017] Further improvement, the paper medium secondary crusher and the paper medium tertiary crusher, and / or the optical disc medium primary crusher and the optical disc medium secondary crusher are combined in an upper and lower parallel manner.

[0018] Further improvement, further comprising a display screen, and the display screen is connected with the industrial computer for data communication connection.

[0019] In summary, the present application includes at least one of the following beneficial technical effects:

[0020] 1. Flexible assembly: The entire device is connected by six rack sizes of single device which are completely same, and the center distance of the device entrance is consistent. Therefore, according to customer demand, any combination of double-channel destruction medium type can be formed, such as two paper medium destruction lines, two optical medium destruction lines, and one paper medium and one optical medium destruction line.

[0021] 2. Modular design: Through modular design, the rack size of each destruction channel is unified, so that the adjacent racks can be easily connected in parallel or series, so that the number and combination of destruction channels can be flexibly configured according to actual needs. This design not only improves the adaptability of the device, but also facilitates future expansion and upgrading. Each destruction channel is divided into an input module, a crushing and conveying module, and an output module. Such design makes each module can be replaced or upgraded independently without the need for large-scale modification of the entire system. Modular design also simplifies maintenance and repair work, because the faulty module can be quickly located and replaced.

[0022] 3. Automatic processing: The electrical connection between the industrial computer and each module realizes full-automatic control, including conveying, crushing, weighing, and outputting. Automatic processing improves the destruction efficiency, reduces manual operation, reduces labor intensity and the possibility of operation errors, and realizes the full-automatic process from receiving to destruction through intelligent recognition of the camera and sorting of the robot. The addition of the sorting robot improves the sorting efficiency and accuracy, and can automatically sort the articles from the first conveying belt to the second conveying belt, reducing the need for manual sorting and improving the automation level of the entire destruction process.

[0023] 4. High security standard: The complete destruction of paper media and optical disc media is ensured by the multi-stage shredding mechanism and different combinations of shredding knife groups, meeting the requirements of high security standards. In addition, the use of static weighing machines and U-shaped scales can accurately weigh the media before and after destruction, ensuring that the destruction effect meets the security requirements. The design of the paper media primary shredder and the optical disc media destruction channel ensures that the rated destruction capacity reaches or exceeds 200 kg / hour, which is a high-efficiency destruction capacity suitable for the processing needs of a large number of classified storage carriers.

[0024] 5. Full-process control: The introduction of industrial cameras enables the device to automatically identify and track items, complete records of carrier destruction process data, and achieve safe control of the destruction process, ensuring the accuracy of the destruction process. The data communication connection between the display screen and the industrial computer provides a user interface, allowing the operator to monitor the destruction process and device status in real time. In addition, full-process control also includes the recording and analysis of destruction data, providing support for quality control and safety audits.

[0025] 6. Data communication connection: The data communication connection between each module and the industrial computer ensures real-time transmission and processing of information, making the entire destruction process controllable and traceable, and enhancing the intelligent level of the system. BRIEF DESCRIPTION OF DRAWINGS

[0026] Figure 1 is a perspective view of the device.

[0027] Figure 2 is a layout view (top view) of the device.

[0028] Figure 3 is a structural diagram of the U-shaped scale.

[0029] Figure 4 is a structural diagram of the optical disc sorting function of the optical disc media input module.

[0030] BRIEF DESCRIPTION OF DRAWINGS: 1, paper media conveying device, 2, paper media primary shredder, 3, paper scrap climbing conveyor, 4, paper media secondary shredder, 5, paper media tertiary shredder, 6, paper media waste collection device, 7, optical disc media conveying device, 8, optical disc media primary shredder, 9, optical disc media secondary shredder, 10, optical disc scrap climbing conveyor, 11, optical disc media tertiary shredder, 12, optical disc media waste collection device, 13, paper media input module, 14, paper media shredding conveying module, 15, paper media shredding output module, 16, optical disc media input module, 17, optical disc media shredding conveying module, 18, optical disc media shredding output module, 19, waste bin, 20, U-shaped scale, 21, industrial camera, 22, first conveying belt, 23, sorting robot, 24, second conveying belt, 25, display screen. DETAILED DESCRIPTION

[0031] The following description will be made in conjunction with the accompanying drawings Figures 1-4 The application is further described in detail.

[0032] The application discloses a classified information storage carrier destroying device.

[0033] Referring to Figure 1 The classified information storage carrier destroying device comprises one or a combination / repeated arrangement of paper medium destroying channels and optical disc medium destroying channels, and each destroying channel is connected with an industrial computer through electricity to receive control signals from the industrial computer and transmit medium destroying state information, and the device can be arbitrarily composed of double-channel destroying medium types according to customer requirements, for example, two paper medium destroying lines, two optical disc medium destroying lines, one paper medium optical disc destroying line and one optical disc medium destroying line.

[0034] The paper medium destroying channel comprises paper medium conveying devices 1, paper medium primary pulverizers 2, paper scrap climbing conveyors 3, paper medium secondary pulverizers 4, paper medium tertiary pulverizers 5 and paper medium waste collecting devices 6 connected in sequence. External paper media are input into the paper medium primary pulverizers 2 through the paper medium conveying devices 1, and are destroyed by primary cutters, and the destroyed scraps are sent into the paper medium secondary pulverizers 4 and the paper medium tertiary pulverizers 5 through the paper scrap climbing conveyors 3, and are destroyed by secondary and tertiary cutters, and finally the waste is poured into the paper medium waste collecting devices 6 for collection or turnover.

[0035] The optical disc medium destroying channel comprises optical disc medium conveying devices 7, optical disc medium primary pulverizers 8, optical disc medium secondary pulverizers 9, optical disc scrap climbing conveyors 10, optical disc medium tertiary pulverizers 11 and optical disc medium waste collecting devices 12 connected in sequence. External optical discs are input into the optical disc medium primary pulverizers 8 and the optical disc medium secondary pulverizers 9 through the optical disc medium conveying devices 7, and are destroyed by primary and secondary cutters. The destroyed scraps are sent into the optical disc medium tertiary pulverizers 11 through the optical disc scrap climbing conveyors 10, and are destroyed by tertiary cutters, and finally the waste is poured into the optical disc medium waste collecting devices 12 for collection or turnover.

[0036] As shown in the accompanying drawings Figure 2As shown, the equipment is modular: the entire equipment is connected by six rack-size single-machine equipment, which ensures the consistency of the center distance of the equipment inlet. The paper medium destruction channel is composed of a paper medium input module 13, a paper medium shredding and conveying module 14, and a paper medium shredding output module 15. The optical disc medium destruction channel is composed of an optical disc medium input module 16, an optical disc medium shredding and conveying module 17, and an optical disc medium shredding output module 18. The rack size of the paper medium input module 13, the paper medium shredding and conveying module 14, the paper medium shredding output module 15, the optical disc medium input module 16, the optical disc medium shredding and conveying module 17, and the optical disc medium shredding output module 18 is the same, and adjacent racks can be connected in parallel or series, so that the number and combination of the destruction channels can be flexibly configured according to actual needs. This design not only improves the adaptability of the equipment, but also facilitates future expansion and upgrading.

[0037] The paper medium input module 13 is installed with a paper medium conveying device 1, and is the starting point of the destruction process, responsible for conveying the paper medium to be destroyed into the destruction equipment. The paper medium conveying device 1 installed in the module includes rollers, belts or other mechanical devices for smooth and continuous conveying of paper and documents, ensuring that they can smoothly enter the subsequent destruction process.

[0038] The paper medium shredding and conveying module 14 is installed with a paper medium primary shredder 2 and a paper scrap climbing conveyor 3, and is responsible for preliminary shredding and intermediate conveying. The paper medium primary shredder 2 is used to cut the whole paper or document into smaller pieces, thereby reducing its volume and preparing for further shredding. The paper scrap climbing conveyor 3 conveys the preliminarily shredded paper scraps to the higher-positioned secondary shredder, and this climbing conveying process involves vertical or inclined conveying to realize the transition of height difference in the equipment.

[0039] The paper medium shredding output module 15 is installed with a paper medium secondary shredder 4, a paper medium tertiary shredder 5, and a paper medium waste collecting device 6. The paper medium shredding output module 15 is the last stage of the destruction process, responsible for final shredding and waste output. The paper medium secondary shredder 4 and the paper medium tertiary shredder 5 further reduce the size of the paper scraps, ensuring that the paper medium is thoroughly shredded to an unrecoverable state, thereby meeting the security requirements. The paper medium waste collecting device 6 is responsible for orderly collecting the shredded waste, facilitating subsequent waste output processing and recycling.

[0040] The optical disc medium input module 16 is the starting point of the optical disc destruction process and is responsible for transporting the optical disc media to be destroyed into the destruction equipment. The optical disc medium conveying device 7 installed in the module includes rollers, belts or other mechanical devices for smooth and continuous conveying of optical discs to ensure their smooth entry into the subsequent destruction process.

[0041] The optical disc medium crushing conveying module 17 is responsible for preliminary and intermediate crushing and intermediate conveying. The optical disc medium primary crusher 8 is used to cut the optical discs into smaller pieces, thereby reducing their volume and preparing for further crushing. The optical disc medium secondary crusher 9 further reduces the size of the pieces to ensure that the data stored on the optical discs is completely destroyed. The optical disc debris uphill conveyor 10 conveys the preliminarily and intermediate crushed optical disc debris to the tertiary crusher at a higher position. This uphill conveying process involves vertical or inclined conveying to achieve the transition of height difference within the equipment.

[0042] The optical disc medium crushing output module 18 is the final stage of the destruction process and is responsible for final crushing and waste collection. The optical disc medium tertiary crusher 11 ensures that the optical disc media is completely crushed to an unrecoverable state by further reducing the size of the optical disc pieces, thereby meeting the security requirements. The optical disc medium waste collection device 12 is responsible for orderly collection of the crushed waste, facilitating subsequent waste treatment and recycling.

[0043] Overall, this modular arrangement makes the entire destruction process orderly and efficient, and can be adjusted according to different destruction needs. Each module has a specific function and cooperates with each other to ensure the continuity and thoroughness of the destruction process, while also facilitating the maintenance and upgrade of the equipment. Through such arrangement, the destruction efficiency can be effectively improved, the operation cost can be reduced, and the destroyed media cannot be recovered, thereby achieving the purpose of protecting information security. In addition, for optical discs and other special media, complete crushing is the key to ensuring that data cannot be recovered, so the design of multi-stage crushing mechanism is crucial to meet the high standard of security requirements.

[0044] In the need of security audit for the destruction process, the accurate weighing data can serve as important evidence to prove that a certain amount of classified media has been destroyed. Precise weight data also helps to calculate the cost of destruction operations, including energy consumption, wear and tear, and waste disposal fees, etc. The destruction device also includes a static scale located at the inlet end of the paper medium conveying device 1 or the optical disc medium conveying device 7, which is located at the starting point of the destruction process, used to accurately measure the weight of the incoming material. The incoming paper medium or optical disc medium is weighed by placing it on the static scale manually, and the data is recorded through the communication port. This is crucial for monitoring the destruction amount, evaluating the destruction efficiency, and ensuring the completion of the destruction task. As shown in the attached Figure 3 The paper medium waste collection device 6 or the optical disc medium waste collection device 12 includes a waste box 19, and a U-shaped scale 20 is arranged below the waste box 19. The U-shaped scale below the waste box can monitor the filling degree of the waste box, and when the waste reaches a certain amount, it can automatically trigger the waste disposal or replacement mechanism of the waste box, thereby improving the degree of automation of the entire destruction process. The U-shaped scale 20 and the static scale are connected with the industrial computer for data communication. The data communication connection between the U-shaped scale and the static scale and the industrial computer enables the weighing data to be transmitted to the central control system in real time. In this way, the operator can monitor the weighing data and intervene if necessary. The U-shaped scale is located below the waste collection device and is used to weigh the weight of the crushed waste. This helps to record the weight difference before and after destruction, thereby verifying the integrity and effectiveness of the destruction process. For example, by monitoring the weight before and after destruction in real time, the operator can ensure that each destruction operation has reached the expected destruction amount, thereby achieving quality control. The industrial computer can also automatically adjust the working parameters of the destruction device according to the weighing data to ensure the destruction efficiency and effect. For example, if the incoming material quantity suddenly increases, the industrial computer can adjust the speed or power of the crusher to adapt to the new load.

[0045] As shown in the attached Figure 4As shown, the destruction device also includes an industrial camera 21, which can be used as part of the security measures to ensure that only authenticated carriers are destroyed, thereby enhancing the security of the entire destruction process. The industrial camera 21 is installed on the paper medium conveying device 1 or the optical disc medium conveying device 7 and monitors the physical state of the carriers, such as whether there is damage, whether it meets the predetermined size and shape, etc., which helps to conduct quality control before destruction. The industrial camera 21 is connected to the industrial computer for data communication connection, so that the captured images and data can be transmitted to the central control system in real time, facilitating centralized management and analysis. The industrial camera 21 is used to capture the shape or barcode on the item, which is very useful for realizing automated material tracking and management. By identifying the features of the carriers, the industrial camera captures and records the information of the carriers, providing detailed data records for the destruction process. These data can be used for security audits, inventory management and destruction certificates, ensuring that the correct media is sent into the destruction process. The real-time data of the industrial camera can also be used to trigger automated control processes, such as automatically adjusting the conveying speed or the working parameters of the shredder, to adapt to different carrier types and destruction requirements.

[0046] The automated sorting can reduce the opportunity for operators to directly contact the optical discs, reduce the operation risk, improve the safety and efficiency of the entire destruction process, reduce the time and labor required for manual sorting, and can handle a large number of optical disc media. The optical disc medium conveying device 7 includes a first conveying belt 22, a sorting robot 23 and a second conveying belt 24, and the sorting robot 23 is connected to the industrial computer for data communication connection. Through data communication connection with the industrial computer, the sorting robot 23 can obtain the information of the optical discs that need to be sorted, including the number, type, etc. The sorting robot 23 is used to sort the items on the first conveying belt 22 onto the second conveying belt 24, and the optical discs sorted onto the second conveying belt 24 are input into the shredder. The remaining optical discs after sorting flow away through the first conveying belt 22, ensuring that the correct optical discs are sent into the destruction process.

[0047] The rated destruction capacity is an important indicator to measure the processing capacity of the destruction equipment, which refers to the maximum weight of the articles that the equipment can process and destroy per unit of time under standard working conditions. The rated destruction capacity is a guarantee of the equipment performance by the equipment manufacturer, which indicates the processing capacity of the equipment in the best state. The user can evaluate whether the equipment meets its specific destruction requirements according to this parameter. The rated destruction capacity of the paper medium primary shredder 2 is ≥200 kg / hour; the rated destruction capacity of the paper medium destruction channel or the optical disc medium destruction channel is ≥200 kg / hour. The equipment can efficiently process a large amount of paper medium or optical disc medium, and is suitable for occasions that require the destruction of a large amount of documents or data carriers, such as government departments, large enterprises, archives, etc. In occasions that require large-scale destruction of sensitive materials, such as data cleaning projects or file replacement, a high rated destruction capacity ensures that the equipment can complete the destruction task in time, reducing waiting time and storage costs.

[0048] The knife groups of the paper medium secondary shredder 4 and the paper medium tertiary shredder 5, and / or the knife groups of the optical disc medium primary shredder 8 and the optical disc medium secondary shredder 9 are combined in an up-and-down parallel manner. This continuous shredding process reduces the transfer time of the material between the shredders, improves the overall shredding efficiency, reduces energy consumption and mechanical wear, and improves the energy efficiency ratio of the equipment. The continuous shredding process reduces the residence time of the material inside the equipment, reducing the risk of operators coming into contact with sensitive materials that have not been completely destroyed. The up-and-down parallel configuration of the multi-stage shredder can ensure that the material is shredded multiple times to achieve smaller particle sizes, thereby meeting higher destruction standards and ensuring that the data on the information carrier cannot be recovered. The knife groups in parallel configuration can be stacked in the vertical direction, which can realize multi-layer shredding in limited horizontal space, reducing the space occupation of the equipment.

[0049] It also includes a display screen 25, which serves as a user interface, allowing the operator to directly interact with the industrial computer, monitor the equipment status, and input operation instructions, improving the intuitiveness and convenience of operation. The display screen 25 is in data communication connection with the industrial computer. The display screen can display the working status of the equipment in real time, including the running parameters of the shredder, the speed of the conveyor belt, the weighing data, etc., so that the operator can timely understand the working condition of the equipment. The display screen can display the destruction report, including the type, weight, and time of the destroyed medium, etc., for easy recording and auditing. If the industrial computer supports remote access, the information of the display screen can be transmitted to the remote monitoring system through the network, realizing remote monitoring and management.

[0050] The following is an overview of the shredding process of the destruction equipment:

[0051] Channel one paper medium: the incoming material is placed on the static weighing machine by artificial, and the data is registered through the communication port. The box is opened, and the file to be destroyed is put into the belt conveying line, and is stopped under the camera. The camera scans the code and registers, takes a picture, and displays it on the display screen through the industrial computer. Then the belt continues to convey into the first cutter for destruction. After destruction, the debris is sent into the second and third cutters by the climbing machine, and finally the waste is poured into the waste box and weighed by the U-shaped scale. The data is displayed on the display screen through the communication port, and compared with the incoming weight.

[0052] Channel two optical medium: the incoming material is placed on the static weighing machine by artificial, and the data is registered through the communication port. The box is opened, and the optical disc to be destroyed is put into the belt conveying line, and is stopped under the camera. The camera scans the code and registers, takes a picture, and displays it on the display screen through the industrial computer. At the same time, the position signal is transmitted to the robot, and the robot cooperates with the vacuum chuck to grab the next conveying line and enter the first and second cutters for destruction. After destruction, the debris is sent into the third cutter by the climbing machine, and finally the waste is poured into the waste box and weighed by the U-shaped scale. The data is displayed on the display screen through the communication port, and compared with the incoming weight.

[0053] The above are preferred embodiments of the present application, and are not intended to limit the protection scope of the present application. Therefore, any equivalent changes made in terms of structure, shape and principle based on the present application should be covered within the protection scope of the present application.

Claims

1. A classified storage carrier destruction apparatus, characterized by: The combination / repeated arrangement of one or both of the paper medium destruction channel and the optical disc medium destruction channel, and each destruction channel is communicated with the industrial computer through electrical connection to receive control signals from the industrial computer and transmit medium destruction state information, the paper medium destruction channel includes paper medium conveying device (1), paper medium primary crusher (2), paper scrap climbing conveyor (3), paper medium secondary crusher (4), paper medium tertiary crusher (5) and paper medium waste collecting device (6) connected in sequence, the optical disc medium destruction channel includes optical disc medium conveying device (7), optical disc medium primary crusher (8), optical disc medium secondary crusher (9), optical disc scrap climbing conveyor (10), optical disc medium tertiary crusher (11) and optical disc medium waste collecting device (12) connected in sequence.

2. The classified storage carrier destruction device of claim 1, wherein: The paper medium destruction channel is composed of paper medium input module (13), paper medium crushing conveying module (14) and paper medium crushing output module (15), the optical disc medium destruction channel is composed of optical disc medium input module (16), optical disc medium crushing conveying module (17) and optical disc medium crushing output module (18); the rack size of the paper medium input module (13), paper medium crushing conveying module (14), paper medium crushing output module (15), optical disc medium input module (16), optical disc medium crushing conveying module (17) and optical disc medium crushing output module (18) is the same, and adjacent racks can be connected in parallel or series.

3. The classified storage carrier destruction device of claim 2, wherein: The paper medium conveying device (1) is installed in the paper medium input module (13), the paper medium primary crusher (2) and the paper scrap climbing conveyor (3) are installed in the paper medium crushing conveying module (14), and the paper medium secondary crusher (4), the paper medium tertiary crusher (5) and the paper medium waste collecting device (6) are installed in the paper medium crushing output module (15).

4. The classified storage carrier destruction apparatus of claim 2, wherein: The optical disc medium conveying device (7) is installed in the optical disc medium input module (16), the optical disc medium primary crusher (8), the optical disc medium secondary crusher (9) and the optical disc scrap climbing conveyor (10) are installed in the optical disc medium crushing conveying module (17), and the optical disc medium tertiary crusher (11) and the optical disc medium waste collecting device (12) are installed in the optical disc medium crushing output module (18).

5. The classified storage carrier destruction apparatus of claim 1, wherein: A static weighing machine is further included, which is located at the incoming end of the paper medium conveying device (1) or the optical disc medium conveying device (7), the paper medium waste collecting device (6) or the optical disc medium waste collecting device (12) includes a waste box (19), and a U-shaped scale (20) is arranged below the waste box (19), and the U-shaped scale (20) and the static weighing machine are connected with the industrial computer for data communication.

6. The classified storage carrier destruction apparatus of claim 1, wherein: An industrial camera (21) is further included, which is arranged on the paper medium conveying device (1) or the optical disc medium conveying device (7), and the industrial camera (21) is connected with the industrial computer for data communication, and the industrial camera (21) is used for capturing the shape or barcode on the article.

7. The classified storage carrier destruction apparatus according to claim 6, characterized in that: The optical disc medium conveying device (7) comprises a first conveying belt (22), a sorting robot (23) and a second conveying belt (24), the sorting robot (23) is connected with a data communication, and the sorting robot (23) is used for sorting the articles on the first conveying belt (22) to the second conveying belt (24).

8. The classified storage carrier destruction apparatus of claim 1, wherein: The rated destruction capacity of the paper medium primary crusher (2) is greater than or equal to 200 kg / h; and the rated destruction capacity of the paper medium destruction channel or the optical disc medium destruction channel is greater than or equal to 200 kg / h.

9. The classified storage carrier destruction apparatus of claim 1, wherein: The knife group combination mode of the paper medium secondary crusher (4) and the paper medium tertiary crusher (5) and / or the knife group combination mode of the optical disc medium primary crusher (8) and the optical disc medium secondary crusher (9) is up-and-down parallel connection.

10. The classified storage carrier destruction apparatus of claim 1, wherein: A display screen (25) is further included, and the display screen (25) is connected with the industrial computer in data communication.