Gift product management system based on informatization management

Through the information management system and automated classification and storage equipment, the problems of poor information flow and low efficiency of manual classification in traditional gift management have been solved, the automated management of gift products and real-time data sharing have been realized, and the operational efficiency of the enterprise has been improved.

CN120607017AInactive Publication Date: 2025-09-09DRUM CHUANHUA ELECTRONIC TECHNOLOGY (BEIJING) CO LTD
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Patent Information

Application Number
CN202510789234.7
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-06-13
Publication Date
2025-09-09
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

Under the traditional gift management model, information transmission between departments is not smooth, and real-time data sharing cannot be achieved, resulting in inaccurate inventory information, prone to overselling or out-of-stock, and low efficiency of manual classification and inventory, which affects the company's operational efficiency.

Method used

Design a gift product management system based on information management, including classification standard formulation module, basic information entry module, daily classification management module and data maintenance and analysis module. Combined with automated classification and warehousing equipment, it realizes the automated classification, packaging and storage of gift products, ensuring real-time sharing and accuracy of data.

Benefits of technology

It realizes the automated classification, inventory and storage of gift products, reduces manpower and time costs, ensures real-time sharing and interaction of data, provides a reliable basis for decision-making, and improves enterprise operational efficiency.

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Abstract

The invention discloses a gift product management system based on informatization management. The gift product management system comprises a classification standard making module, a basic information input module, a daily classification management module and a data maintenance analysis module. The daily classification management module uses a classification storage device to safely package the gift products, and performs partitioned storage according to the types of the gift products; the classified storage device comprises a master control operation table, a packaging mechanism and a storage mechanism. The packaging mechanism is arranged on the rear side of the master control operation table. The storage mechanism is arranged on the left front portion of the packaging mechanism. According to the gift product management system based on informatization management, automatic classified checking and classified storage of gift products are achieved, safer automatic packaging is carried out on valuable gifts, the labor cost and the time cost are effectively reduced, all departments can obtain needed information in real time through the system, real-time sharing and interaction of data are achieved, and the management efficiency is improved. And consistency and accuracy of data in each link are ensured.
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Description

Technical Field

[0001] The present invention relates to the technical field of information management, and in particular to a gift product management system based on information management. Background Art

[0002] With the development of the global economy and the increasing frequency of commercial activities, the gift industry market continues to expand, and consumer demand for gifts has become more diverse and personalized. To meet market demand, companies are constantly enriching their gift product lines, covering a variety of types such as business gifts, holiday gifts, and promotional gifts. Product attributes such as materials, brands, and applicable scenarios are also becoming increasingly complex. At the same time, the rise of e-commerce platforms has diversified gift sales channels, and the integrated online and offline sales model has become the mainstream. In this context, companies need to efficiently manage massive amounts of gift product information, accurately locate target customers, and optimize inventory and sales strategies. Traditional manual management methods are no longer able to meet the needs of corporate development, and the application of information management technology is imminent. In the existing technical field, under the traditional management model, information transmission between departments is not smooth, real-time data sharing cannot be achieved, and accurate inventory information cannot be obtained in a timely manner. Overselling is prone to occur, and it is difficult to adjust procurement plans in time according to sales data, resulting in inventory backlogs or out-of-stocks, reducing corporate operational efficiency. In addition, the classification of gift products mainly relies on manual work, and from the collection and organization of product information to classified storage, it requires a lot of manpower and time. When manually counting inventory, staff need to check product information one by one, which is not only slow but also prone to omissions, resulting in untimely inventory data updates, affecting the company's procurement and sales decisions. Summary of the Invention

[0003] The purpose of the present invention is to provide a gift product management system based on information management to at least solve the problems mentioned in the above background technology.

[0004] To achieve the above objectives, the present invention provides the following technical solutions: a gift product management system based on information management, including a classification standard formulation module for organizing personnel from multiple departments to determine gift classification dimensions based on industry and business needs, construct a multi-level classification system and form standard documents to provide a basis for gift classification; The basic information entry module is used to collect detailed information about new gifts before they are put into storage, enter the information into the system according to classification standards, and have it reviewed by a dedicated person to ensure that the information is accurate and complete, thus ensuring that the system data is authentic. Daily classification management module, used to adjust product classification according to market changes, use classification storage devices to safely package gifts, store them in partitions, and record inventory information, while also recording the types and quantities of gifts in sales orders; The data maintenance and analysis module is used to regularly update system data, delete invalid information, add new content, and use data analysis functions to mine classified data to provide support for corporate decision-making; Preferably, the classification and storage device includes: a main control console, a packaging mechanism and a storage mechanism; the packaging mechanism is arranged on the rear side of the main control console, and the packaging mechanism serves as the core area of ​​the automated packaging of gift products; the storage mechanism is arranged in the left front of the packaging mechanism, and the storage mechanism serves as the core unit for finished product warehousing and intelligent sorting.

[0005] Preferably, the packaging mechanism includes: a base platform, a carton conveyor, a carton opening robot arm, a carton bottom sealing machine, a box conveyor line, a filling component, a carton sealing inkjet printer, a first conveyor, a grabbing robot arm, a handling robot arm and a second conveyor; the base platform is arranged on the rear side of the main control console in the left and right directions; the carton conveyor is installed at the right rear of the top of the base platform, and the carton conveyor and the main control console are electrically connected; the carton opening robot arm is installed at the top of the base platform and is located on the right side of the carton conveyor, and the carton opening robot arm is electrically connected to the main control console; the carton bottom sealing machine is installed at the top of the base platform in the left and right directions and is located in front of the carton opening robot arm, and the carton bottom sealing machine is electrically connected to the main control console; the box conveyor line is installed at the top of the base platform in the left and right directions and is located on the left side of the carton bottom sealing machine, and the box conveyor line is electrically connected to the main control console; the filling The components are arranged on the outside of the box conveyor line; the box sealing inkjet printer is installed at the top of the base platform and located on the left side of the box conveyor line, and the box sealing inkjet printer is electrically connected to the main control console; the number of the first conveyors is two, and the two first conveyors are respectively installed at the top of the base platform and located on the left and right sides of the front of the box conveyor line, and the first conveyor is electrically connected to the main control console; the number of the grabbing robotic arms is two, and the two grabbing robotic arms are respectively installed at the rear side of the top of the left and right first conveyors, and the grabbing robotic arms are electrically connected to the main control console; the handling robotic arm is installed at the top of the base platform and located at the right rear of the box conveyor line, and the handling robotic arm is electrically connected to the main control console; the second conveyor is installed at the top of the base platform along the front-to-back direction and located on the left side of the handling robotic arm, and the second conveyor is electrically connected to the main control console.

[0006] Preferably, the filling components include: a mounting frame, a material bracket, a limit block rod, a guide frame, a first electric telescopic rod and a pushing frame; the mounting frame is fixedly mounted on the top of the base platform and located in the middle of the outer side of the box conveyor line; the number of the material brackets is four, and the four material brackets are respectively mounted on the four sides of the top of the mounting frame; the number of the limit block rods is four, and the four limit block rods are respectively mounted on the top of the four limit block rods in the up and down directions; the number of the guide frames is four, and the four guide frames are respectively mounted on the inner sides of the four material brackets and located below the discharge port; the number of the first electric telescopic rods is four, and the four first electric telescopic rods are respectively mounted on the outer sides of the bottom ends of the four material brackets, and the first electric telescopic rod is electrically connected to the main control console; the number of the pushing frames is four, and the four pushing frames are respectively mounted on the outer sides of the telescopic ends of the four first electric telescopic rods, and the pushing frames are respectively plugged into the inner bottom sides of the four limit block rods.

[0007] Preferably, the filling component also includes: a U-shaped groove shell, a groove body, a baffle, a mounting shell, a second electric telescopic rod and a connecting frame; the U-shaped groove shell is fixedly mounted on the bottom ends of the four guide frames; the groove body is opened in the middle of the top end of the inner cavity of the U-shaped groove shell and is located below the inner sides of the four guide frames; the number of the baffles is four, and the four baffles are respectively rotatably connected to the top end of the inner cavity of the U-shaped groove shell by rotating shafts and are located on the four lower sides of the groove body; the number of the mounting shells is four, and the four mounting shells are respectively mounted on the front and back sides of the inner cavity of the U-shaped groove shell; the number of the second electric telescopic rods is four, and one end of the four second electric telescopic rods is respectively rotatably connected to the inner cavities of the four mounting shells by rotating shafts, and the second electric telescopic rod is electrically connected to the main control console; the number of the connecting frames is four, and one end of the four connecting frames is respectively mounted on the outside of the four baffle axis cores, and the other end inner sides of the four connecting frames are respectively rotatably connected to the telescopic ends of the four second electric telescopic rods by rotating shafts.

[0008] Preferably, the storage mechanism includes: a box-type sealed cabin, a sub-control operating table, a sealed door, a storage rack, a base frame, a grating sensor, a scanning device, a first limit assembly, a lifting frame, an electric conveyor belt, a chain assembly and a first motor; the box-type sealed cabin is arranged at the left front of the base platform; the sub-control operating table is embedded in the front right side of the exterior of the base platform, and the sub-control operating table and the main control operating table are remotely connected via a network; the sealed door is installed inside the rear opening on the right side of the exterior of the box-type sealed cabin; there are two storage racks, which are respectively installed on the front and rear sides of the interior of the box-type sealed cabin; the base frame is fixedly installed at the bottom end of the interior of the box-type sealed cabin and is located below the left side of the sealed door; there are two grating sensors, which are respectively installed on the left and right sides of the top of the base frame, and the grating sensor and the sub-control operating table are electrically connected; the scanning device is installed on the left side of the top of the base frame through a bracket, and the scanning device and the sub-control operating table are electrically connected; There are two groups of the first limit assemblies, and each group has two first limit assemblies. The two groups of the first limit assemblies are respectively installed on the front and rear ends of the left and right sides of the base frame; the lifting frame is fixedly installed on the inner sides of the limit ends of the left and right groups of first limit assemblies; there are two electric conveyor belts, and the two electric conveyor belts are respectively installed on the left and right sides of the top of the lifting frame, and the electric conveyor belts are electrically connected to the sub-control operating table; there are two chain assemblies, and the two chain assemblies are respectively installed on the left and right sides of the base frame, and the chains in the left and right chain assemblies are respectively connected to the left and right sides of the lifting frame; there are two first motors, and the two first motors are respectively installed on the left and right sides of the bottom end of the base frame, and the rotating ends of the left and right first motors are respectively connected to the bottom sprocket shaft cores of the left and right chain assemblies, and the first motor is electrically connected to the sub-control operating table; wherein, a driving component is provided inside the box-type sealed cabin and below the front and rear storage racks.

[0009] Preferably, the storage mechanism further comprises: a fixed frame, a rotating arm, a third electric telescopic rod, a gear rack assembly, a belt assembly, a fourth motor, an electromagnetic clutch, a second transmission gear set, a telescopic module, a track frame, a clamping frame, a fourth electric telescopic rod, a limit rack and a limit gear; the fixed frame is arranged at the moving end of the base platform driving component; the rotating arm is rotatably connected to the inner right end of the fixed frame through a bearing; the third electric telescopic rod is installed at the inner front end of the fixed frame, and the third electric telescopic rod is electrically connected to the sub-control operating table; the gear rack assembly The rack is fixedly installed on the telescopic end of the third electric telescopic rod, and the gear key in the gear rack assembly is connected to the outer side of the bottom end of the shaft core of the rotating arm; the shaft core of the pulley on one side of the belt assembly is rotatably connected to the bottom of the inner left end of the rotating arm through a rotating shaft, and the pulley on the other side of the belt assembly is rotatably connected to the bottom of the inner right end of the rotating arm through a bearing, and the belt in the belt assembly is sleeved on the outside of the rotating arm; the fourth motor is installed at the top of the fixed frame, and the rotating end of the fourth motor extends into the inner side of the fixed frame, and the fourth motor is electrically connected to the sub-control operating console; the electromagnetic clutch is installed Mounted on the inner side of the fixed frame, one side of the electromagnetic clutch is connected to the rotating end of the fourth motor, and the electromagnetic clutch is electrically connected to the sub-control console; a gear key on one side of the second transmission gear set is connected to the outer side of the top end of the shaft core of the belt assembly, and the gear key on the other side of the second transmission gear set is mounted on the other side of the electromagnetic clutch; the telescopic module is mounted on the top end of the shaft core of the belt assembly in the front-to-back direction, and the telescopic module is electrically connected to the sub-control console; the track frame is mounted on the rear side of the telescopic end of the telescopic module in the up-down direction; there are two clamping frames, which are respectively sleeved on the upper and lower sides of the outer side of the track frame; the fourth electric telescopic rod is arranged on the inner side of the track frame in the up-down direction, and the upper and lower ends of the fourth electric telescopic rod are respectively connected to the front sides of the upper and lower clamping frames, and the fourth electric telescopic rod is electrically connected to the sub-control console; there are two limit racks, which are respectively mounted on the front right ends of the upper and lower clamping frames; the limit gear is rotatably connected to the inner right end of the track frame through a rotating shaft seat, and the inner sides of the two limit racks are respectively engaged with the front and rear sides of the limit gear.

[0010] Compared with the prior art, the present invention has the following beneficial effects: 1. The unpacking robot receives the stacked cartons and unfolds the main body of the carton, stretching the folded carton board into a rectangular box structure. The carton bottom sealer folds and seals the four flaps at the bottom of the box through its own internal folding mechanism. The first conveyor on the right transports the bottom filling plate stored inside to the grabbing station on its left. The grabbing robot on the right grabs the bottom filling plate at the grabbing station of the first conveyor on the right and fills it into the bottom end of the carton. The second conveyor on the right transports the gift products stored inside to the handling station in front of itself. The handling robot grabs the gift products at the handling station of the second conveyor and places them inside the carton. The second electric telescopic rod extends and drives the connecting frame at the corresponding position to rotate the baffle downward, folding the four hinges on the top of the carton outward. The first electric telescopic rods on the four sides drive the pushing frame to push the filling panels stored inside the material bracket into the guide frame, and enter the four sides of the gift product inside the carton along the guide frame. The first conveyor on the left transports the top filling panel stored inside itself to the grabbing station on its left side. The left grabbing robot arm grabs the bottom filling panel at the grabbing station of the first conveyor on the left and fills it to the top of the carton. The carton arrives under the carton sealing inkjet printer via the box conveyor line. The carton sealing inkjet printer first folds and seals the upper cover of the box opening.

[0011] 2. The first motor drives the internal sprocket of the chain assembly to drive the chain to rotate, so as to drive the lifting frame to move downward under the limiting action of the first limiting assembly, so that the left and right electric conveyor belts lift the carton to the same horizontal height position inside the upper and lower clamping frames. The left and right electric conveyor belts move the carton on their surface forward to the inside of the upper and lower clamping frames. The fourth electric telescopic rod shortens and drives the upper and lower clamping frames to move inward to clamp and fix the carton. The driving component lifts the upper and lower clamping frames to a specified height position. The third electric telescopic rod drives the rack in the gear rack assembly to move horizontally left and right, so that the gear in the gear rack assembly drives the rotating arm to rotate clockwise or counterclockwise in the specified direction position under the action of the rack. The electromagnetic clutch connects the gear in the fourth motor and the second transmission gear group. The fourth motor drives the gear on one side of the second transmission gear group to drive the gear on the other side to rotate synchronously, and then drives the telescopic module to rotate to the specified direction position under the drive of the belt assembly to align with the front and rear storage racks. The telescopic module extends and drives the track frame to drive the upper and lower clamping frames to place the carton in the specified position inside the storage rack.

[0012] This enables automated classification, inventory, and storage of gift products, and safer automatic packaging for valuable gifts, effectively reducing labor and time costs. Furthermore, each department can obtain the required information in real time through the system, achieve real-time data sharing and interaction, and query inventory quantities in real time, ensuring that data in each link is consistent and accurate, providing a reliable basis for corporate decision-making. BRIEF DESCRIPTION OF THE DRAWINGS

[0013] Figure 1 is a schematic diagram of the present invention; Figure 2 for Figure 1 Schematic diagram of the classification storage device structure; Figure 3 for Figure 1 Schematic diagram of the packaging mechanism structure; Figure 4 for Figure 2 Exploded view of the filled component; Figure 5 for Figure 4 A magnified view of point A; Figure 6 for Figure 4 Enlarged view of point B; Figure 7 for Figure 2 Exploded diagram of the storage mechanism; Figure 8 for Figure 7 Enlarged view of point C; Figure 9 for Figure 7 Enlarged view of point D; Figure 10 for Figure 7 Enlarged view of point E; Figure 11 for Figure 7 Enlarged view of point F.

[0014] In the figure: 1. Main control console, 2. Packaging mechanism, 21. Base platform, 22. Carton conveyor, 23. Unpacking robot arm, 24. Carton bottom sealing machine, 25. Box conveyor line, 26. Carton sealing inkjet printer, 27. First conveyor, 28. Grabbing robot arm, 29. Handling robot arm, 210. Second conveyor, 3. Filling component, 31. Mounting frame, 32. Material bracket, 33. Limiting bar, 34. Guide frame, 35. First electric telescopic rod, 36. Pushing frame, 37. U-shaped groove shell, 38. Trough body, 39. Baffle, 310. Mounting shell, 311. Second electric telescopic rod, 312. Connecting frame, 4. Storage mechanism, 41. Box-type sealed cabin, 42. Sub-control console, 43. Sealing door, 44. Storage rack, 45. Base frame, 46. Grating sensor, 47 , scanning equipment, 48, first limiting component, 49, lifting frame, 410, electric conveyor belt, 411, chain assembly, 412, first motor, 413, ground rail assembly, 414, mounting frame, 415, belt assembly, 416, second motor, 417, second limiting component, 418, screw assembly, 419, third motor, 420, first transmission gear set, 421, mounting plate, 422, fixing frame, 423, rotating arm, 424, third electric telescopic rod, 425, gear rack assembly, 426, belt assembly, 427, fourth motor, 428, electromagnetic clutch, 429, second transmission gear set, 430, telescopic module, 431, track frame, 432, clamping frame, 433, fourth electric telescopic rod, 434, limiting rack, 435, limiting gear. DETAILED DESCRIPTION

[0015] 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. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0016] See also Figures 1-11 , the present invention provides a technical solution: a gift product management system based on information management, including: a classification standard formulation module, a basic information entry module, a daily classification management module and a data maintenance and analysis module; The classification standard formulation module includes: Determine the classification dimensions: The company organizes personnel from marketing, procurement, sales and other departments to jointly determine the classification dimensions of gift products based on industry characteristics, business needs and customer needs. Common classification dimensions include product use, product material, product price range, product brand and product target group; Establish a classification hierarchy: Based on the selected classification dimensions, a multi-level classification system is constructed. The first level is classified by product use. The second level is further divided by product material under business gifts. The third level is further divided by product price range under metal business gifts. This forms a clear tree structure to ensure that each gift product can be accurately classified. Form a classification standard document: Organize the determined classification dimensions, levels and specific classification rules into a detailed classification standard document, clarify the definition, scope and characteristics of each category, and serve as the basis for subsequent gift product classification; The basic information entry module: Product information collection: Before new gift products are put into storage, the purchasing or warehousing department should collect detailed information about the products, including product name, model, specifications, material, price, brand, manufacturer, product image, applicable scenarios, and target groups, etc., and ensure that the information is accurate, complete, and clear to avoid classification errors due to missing or incorrect information; Information entry system: Using the information management system, the collected product information is entered into the corresponding classification directory according to the classification standards. During the entry process, the system automatically verifies the information format and promptly prompts the operator to correct any information that does not meet the requirements; Information review: Establish an information review mechanism and assign dedicated personnel to review the entered product information. Reviewers check the accuracy, completeness, and correctness of the information to ensure that the gift product information entered into the system is authentic and reliable; The daily classification management module includes: Product classification adjustment: With market changes, business expansion or new product launches, when existing classification standards cannot meet the needs, timely adjustment of product classification; Inventory classification management: Use classified storage devices to safely package gift products, divide them into sections and store them according to the types of gift products, and record inventory quantity and location information in the information management system; Sales classification management: During the sales process, the sales department uses the information management system to record the types and quantities of gift products retrieved for each order. The system can generate sales reports based on sales data and different classification dimensions. For example, it can count the consumption of various types of gifts by product use and analyze the sales share of gifts at different price points by product price range, etc., providing data support for sales strategy formulation and market analysis. The data maintenance and analysis include: Data update and maintenance: Regularly check and update the gift product classification data in the information management system, delete invalid or expired product information, and add new product information and classification rules; Data analysis and application: Utilize the data analysis function of the information management system to conduct in-depth mining and analysis of gift product classification data. By analyzing customers' purchasing preferences for gifts of different categories, predict market demand, provide reference for procurement decisions, compare inventory turnover rates of products of different categories, optimize inventory management strategies, and display the analysis results in the form of visual charts to facilitate managers to intuitively understand the business situation and make scientific and reasonable business decisions.

[0017] As a preferred solution, further, Figure 2 As shown, the classification storage device includes: a main control console 1, a packaging mechanism 2 and a storage mechanism 4. The main control console 1 has an integrated PLC controller, which communicates in real time with the sub-control system of the storage mechanism 4 through the industrial Ethernet protocol. The surface of the main control console 1 is equipped with a 12-inch touch screen, which supports a visual operation interface. The staff can preset parameters such as carton specifications, production batches, storage strategies, etc., and monitor the operating status of each device in real time through the built-in fault diagnosis system. The rear side of the main control console 1 is reserved with multiple interfaces such as RS485 and USB for connecting external and internal electrical connection equipment and production management systems to realize data interaction and remote control; the packaging mechanism 2 is arranged at the rear side of the main control console 1, and the packaging mechanism 2 serves as the core area of ​​the automated packaging of gift products; the storage mechanism 4 is arranged in front of the left side of the packaging mechanism 2, and the storage mechanism 4 serves as the core unit for finished product warehousing and intelligent sorting.

[0018] As a preferred solution, further, Figure 3As shown, the packaging mechanism 2 includes: a base platform 21, a carton conveyor 22, a carton opening robot arm 23, a carton bottom sealing machine 24, a box conveyor line 25, a filling component 3, a carton sealing inkjet printer 26, a first conveyor 27, a grabbing robot arm 28, a handling robot arm 29 and a second conveyor 210; the base platform 21 is arranged on the rear side of the main control console 1 in the left and right directions, and the base platform 21 is welded with high-strength aluminum alloy profiles, and the table top is paved with 304 stainless steel plates. Electrical wire ducts and air pipe channels are designed inside for centralized management of cables and air sources of various devices. A plurality of adjustable feet and 4 universal wheels are installed at the bottom of the base platform 21 to ensure that the installation is smooth. The carton conveyor 22 is installed at the right rear of the top of the base platform 21. The carton conveyor 22 is electrically connected to the main control console 1. The carton conveyor 22 adopts a belt conveyor to ensure that the cartons maintain linear motion during transportation. A carton separation device is provided at the input end of the carton conveyor 22. The photoelectric sensor cooperates with the pneumatic push plate to realize the single-piece separation and transportation of the cartons. The unpacking robot arm 23 is installed at the top of the base platform 21 and is located on the right side of the carton conveyor 22. The carton conveyor arm 23 is electrically connected to the main control console 1. The carton conveyor arm 23 adopts a multi-axis industrial robot, and the end effector is equipped with multiple vacuum pumps. The empty suction cup can grab a single carton, use the cylinder or motor at its own execution end to drive the unfolding of the carton body, and stretch the folded box board into a rectangular box structure. The working space of the unpacking robot arm 23 covers the output end of the carton conveyor 22 and the input end of the carton bottom sealing machine 24, and can automatically adjust the grabbing position and unfolding force according to different carton specifications; the carton bottom sealing machine 24 is installed at the top of the base platform 21 in the left and right directions and is located in front of the unpacking robot arm 23. The carton bottom sealing machine 24 is electrically connected to the main control console 1. The carton bottom sealing machine 24 adopts hot melt adhesive sealing and is equipped with a high-precision temperature control system. Four groups of folding machines are set inside the carton bottom sealing machine 24. The structure is composed of a plurality of servo motors, each of which is driven by a servo motor to achieve precise control of the folding angle. The conveying part of the carton bottom sealing machine 24 adopts a synchronous belt drive to match the speed of the box conveyor line 25 and dock with it. The box conveyor line 25 is installed at the top of the base platform 21 in the left and right directions and is located on the left side of the carton bottom sealing machine 24. The box conveyor line 25 is electrically connected to the main control console 1. The box conveyor line 25 adopts a belt conveyor. Guide rails are installed on the front and back sides of the conveyor line. Photoelectric sensors are installed at intervals along the conveyor line of the box conveyor 25 to monitor the position of the carton in real time and ensure the precise docking of each station. The filling component 3 is arranged on the outside of the box conveyor line 25.The carton sealing inkjet printer 26 is installed on the top of the base platform 21 and is located on the left side of the box conveyor line 25. The carton sealing inkjet printer 26 is electrically connected to the main control console 1. The carton sealing inkjet printer 26 integrates the carton sealing and coding functions. The carton sealing inkjet printer 26 uses a tape sealing method for the carton sealing part. The coding system in the carton sealing inkjet printer 26 uses a character inkjet printer, which can print Chinese, English, numbers, graphics and other contents. The inkjet printer in the carton sealing inkjet printer 26 is equipped with an automatic cleaning system, which automatically cleans the nozzle after each operation to prevent clogging; the number of the first conveyor 27 is two, and the two The first conveyors 27 are respectively installed on the top of the base platform 21 and are located on the left and right sides in front of the box conveyor line 25. The first conveyors 27 are electrically connected to the main control console 1. There are two first conveyors 27, which are respectively set on the left and right sides in front of the box conveyor line 25. The first conveyors 27 adopt a belt conveyor form and are used to convey the bottom filling plate and the top filling plate respectively. A photoelectric sensor is set at the end of the conveyor line of the first conveyor 27 to ensure that the filling plate stops accurately at the grabbing station; there are two grabbing robotic arms 28, and the two grabbing robotic arms 2 8 are respectively installed at the top rear side of the left and right first conveyors 27, and the grabbing robot arm 28 is electrically connected to the main control console 1. There are two grabbing robot arms 28, which are respectively installed at the top rear side of the left and right first conveyors 27. The grabbing robot arm 28 adopts a multi-axis robot, and the end effector is equipped with a gripper to meet the grabbing requirements; the handling robot arm 29 is installed at the top of the base platform 21 and is located at the right rear of the box conveyor line 25. The handling robot arm 29 is electrically connected to the main control console 1. The handling robot arm 29 adopts a multi-axis industrial robot. The base of the robotic arm 29 is mounted on a rotating platform, allowing for 360-degree rotation. The end effector is equipped with a customized gripper that can be adjusted to the shape and size of the gift product, ensuring a secure grip without damaging the product. A second conveyor 210 is mounted on top of the base platform 21 in the front-to-back direction, to the left of the transport robotic arm 29. The second conveyor 210 is electrically connected to the main control console 1 and uses a belt conveyor. Anti-slip stripes are provided on the conveyor line surface to prevent the gift products from slipping and ensure accurate delivery to the handling station.

[0019] As a preferred solution, further, Figure 3 、 Figure 4 and Figure 5As shown, the filling component 3 includes: a mounting frame 31, a material bracket 32, a limit stop rod 33, a guide frame 34, a first electric telescopic rod 35, a pushing frame 36, a U-shaped groove shell 37, a groove body 38, a baffle 39, a mounting shell 310, a second electric telescopic rod 311 and a connecting frame 312; the mounting frame 31 is fixedly mounted on the top of the base platform 21 and is located in the middle of the outer side of the box conveyor line 25. The mounting frame 31 adopts a four-way symmetrical layout as a whole, forming a square structure around the upper middle of the box conveyor line 25. The number of material brackets 32 is four, and the four material brackets 32 are respectively mounted on the four sides of the top of the mounting frame 31. The material bracket 32 ​​adopts a plate structure, and a discharge chute is provided on the inner top of the material bracket 32; the number of limit bars 33 is four, and the four limit bars 33 are respectively mounted on the top of the four limit bars 33 along the up and down directions. The limit bars 33 are made of chrome-plated round steel and are distributed in a rectangular shape, which accurately matches the outer dimensions of the pushing rack 36, ensuring that the pushing rack 36 slides smoothly inside it. At the same time, the pushing rack 36 The filling plate does not shift during the feeding process, and the inner side of the limit stop rod 33 can store multiple filling plates from top to bottom; there are four guide racks 34, which are respectively mounted on the inner side of the four material brackets 32 and located below the discharge port. The guide racks 34 are made of aluminum alloy profiles, with an arc-shaped and inclined interior and a polytetrafluoroethylene wear-resistant sheet pasted on the surface to ensure that the filling plate slides smoothly under the action of gravity; there are four first electric telescopic rods 35, which are respectively mounted on the outer side of the bottom end of the four material brackets 32. The first electric telescopic rod 35 is electrically connected to the main control console 1. The first electric telescopic rod 35 adopts a servo electric cylinder with a built-in high-precision encoder to realize position closed-loop control; there are four pushing racks 36, which are respectively mounted on the outer side of the telescopic end of the four first electric telescopic rods 35. The pushing racks 36 are respectively inserted into the inner bottom of the four limit stop rods 33. The pushing racks 36 are made of aluminum alloy profiles, and a polyurethane buffer pad is pasted on the pushing surface to prevent damage to the filling plate during the pushing process.Four sets of sliders are installed at the bottom of the pushing frame; the U-shaped groove shell 37 is fixedly installed at the bottom end of the four guide frames 34. The U-shaped groove shell 37 is made of bent and welded steel plates, and a groove body with its own inner cavity is opened on the left and right sides to ensure that the carton passes through the inner cavity of the U-shaped groove shell 37 smoothly during transportation; the groove body 38 is opened in the middle of the top of the inner cavity of the U-shaped groove shell 37 and is located below the inner side of the four guide frames 34; there are four baffles 39, which are respectively connected to the top of the inner cavity of the U-shaped groove shell 37 through a rotating shaft and are located on the four sides below the groove body 38. Rubber buffer strips are pasted on the inner side of the baffle 39 to prevent damage to the carton during folding; there are four mounting shells 310, which are respectively mounted on the front and back sides of the inner cavity of the U-shaped groove shell 37; the number of second electric telescopic rods 311 is Four, one end of the four second electric telescopic rods 311 are respectively connected to the inner cavity of the four mounting shells 310 through a rotating shaft, the second electric telescopic rod 311 is electrically connected to the main control console 1, the second electric telescopic rod 311 adopts a servo electric cylinder, and the second electric telescopic rod 311 electric cylinder is rotatably connected to the mounting shell 310 and the connecting frame 312 through the shaft core; the number of the connecting frames 312 is four, one end of the four connecting frames 312 is respectively installed on the outside of the shaft core of the four baffles 39, and the other end of the four connecting frames 312 is respectively rotatably connected to the telescopic end of the four second electric telescopic rods 311 through a rotating shaft. The connecting frame 312 is made of aluminum alloy profile, one end is fixedly connected to the outside of the rotating shaft of the baffle 39, and the other end is connected to the telescopic end of the second electric telescopic rod 311 through a ball joint to form a stable transmission structure.

[0020] As a preferred solution, further, Figure 7 、 Figure 8 and Figure 9As shown, the storage mechanism 4 includes: a box-type sealed cabin 41, a sub-control operating table 42, a sealed door 43, a storage rack 44, a base frame 45, a grating sensor 46, a scanning device 47, a first limit assembly 48, a lifting frame 49, an electric conveyor belt 410, a chain assembly 411 and a first motor 412; the box-type sealed cabin 41 is arranged in the left front of the base platform 21, and the storage mechanism 4 adopts a box-type sealed structure as a whole. It is located in the left front of the base platform 21 and is connected to the packaging mechanism 2 through the sealed door 43 to form a relatively independent storage space. An electric door structure is installed on the left side of the box-type sealed cabin 41 to ensure smooth entry and exit for maintenance personnel and effective dust prevention; the sub-control operating table 42 is embedded in the outer of the base platform 21. At the front right side of the part, the sub-control console 42 and the main control console 1 are remotely connected via a network. The sub-control console 42 has a built-in PLC controller, which is remotely connected to the main control console 1 via industrial Ethernet to achieve data sharing and collaborative control; the sealed door 43 is installed inside the rear opening on the right side of the exterior of the box-type sealed cabin 41; there are two storage racks 44, which are respectively installed on the front and rear sides of the interior of the box-type sealed cabin 41; the base frame 45 is fixedly installed at the bottom end of the interior of the box-type sealed cabin 41 and is located below the left side of the sealed door 43, and the base frame 45 is welded with H-shaped steel; there are two grating sensors 46, which are respectively installed on the left and right sides of the top of the base frame 45 On the other side, the grating sensor 46 is electrically connected to the sub-control console 42. The grating sensor 46 consists of a transmitting end and a receiving end. When a carton passes through, the grating sensor 46 outputs a signal change, triggering the subsequent equipment action; the scanning device 47 is installed on the top left side of the base frame 45 through a bracket. The scanning device 47 is electrically connected to the sub-control console 42. The scanning device 47 adopts an industrial-grade image scanner and is installed on the top left side of the base frame 45 through a cantilever bracket. The scanning device 47 supports 1D / 2D barcode decoding, can quickly identify text information on the surface of the carton, and upload the data to the warehouse management system in real time; the number of first limit components 48 is two groups, and the number of first limit components 48 in each group is two. Two groups of first limit assemblies 48 are respectively installed on the front and rear ends of the left and right sides of the base frame 45. The first limit assemblies 48 use linear guide rails, which are composed of a guide rail body and a slider. There is one slider for each guide rail as a limit end; the lifting frame 49 is fixedly installed on the inner side of the limit ends of the left and right groups of first limit assemblies 48; there are two electric conveyor belts 410, which are respectively installed on the left and right sides of the top of the lifting frame 49. The electric conveyor belts 410 are electrically connected to the sub-control operation table 42. The electric conveyor belts 410 are made of PVC with a diamond pattern on the surface to increase friction. Each electric conveyor belt 410 is equipped with an independent drive motor and tensioning device to ensure smooth and reliable transportation.There are two chain assemblies 411, which are respectively mounted on the left and right sides of the base frame 45. The chains in the left and right chain assemblies 411 are respectively connected to the left and right sides of the lifting frame 49, and the two ends of the chain of the chain assembly 411 are respectively fixedly connected to the bottom top of the lifting frame 49; there are two first motors 412, which are respectively mounted on the left and right sides of the bottom end of the base frame 45. The rotating ends of the left and right first motors 412 are respectively connected to the bottom sprocket shaft cores of the left and right chain assemblies 411. The first motor 412 is electrically connected to the sub-control operating console 42. The first motor 412 adopts a servo motor and is equipped with an absolute encoder. The motor is connected to the bottom sprocket shaft of the chain assembly 411 through a reducer to achieve Precise control of the lifting frame 49; wherein, a driving component is provided inside the box-type sealed cabin 41 and below the front and rear storage racks 44, and the driving component includes: a ground rail assembly 413, a mounting frame 414, a belt assembly 415, a second motor 416, a second limit assembly 417, a screw assembly 418, a third motor 419, a first transmission gear set 420 and a mounting plate 421; the number of ground rail assemblies 413 is two, and the two ground rail assemblies 413 are respectively mounted on the front and rear sides of the inner bottom end of the box-type sealed cabin 41 along the left and right directions, and the ground rail assembly 413 adopts a heavy-duty linear guide rail, which consists of a guide rail body and a slider, and the number of sliders is two per guide rail, and the guide rail is fixedly connected to the bottom of the box-type sealed cabin 41 by bolts; the mounting frame 414 is mounted along the upper The lower part is installed at the moving end of the front and rear rail assemblies 413, and the mounting frame 414 is welded with a rectangular steel pipe. The bottom of the mounting frame 414 is fixedly connected to the slider of the rail assembly 413 through a connecting plate to ensure smooth movement along the guide rail; the belt assembly 415 is installed at the inner bottom end of the box-type sealed cabin 41 along the left and right directions and is located on the inner side of the front and rear rail assemblies 413. The belt in the belt assembly 415 is connected to the bottom end of the mounting frame 414. The belt assembly 415 adopts a synchronous belt drive, and the pulleys on both sides are installed at the inner bottom end of the box-type sealed cabin 41 through a rotating shaft seat; the second motor 416 is installed on the right side of the inner bottom end of the box-type sealed cabin 41, and the rotating end of the second motor 416 is connected to the pulley shaft core on the right side of the belt assembly 415. The machine 416 is electrically connected to the sub-control operation table 42. The second motor 416 adopts a servo motor and is equipped with an absolute encoder. The motor is connected to the pulley shaft on the right side of the belt assembly 415 through a reducer to achieve precise control of the mounting frame 414. There are two second limit assemblies 417, and the two second limit assemblies 417 are respectively installed on the front and rear sides of the right end of the mounting frame 414 in the up and down directions. The second limit assembly 417 adopts a linear guide rail, which consists of a guide rail body and a slider. There are two sliders each. The screw assembly 418 is installed on the inner side of the mounting frame 414 in the up and down direction. The screw assembly 418 adopts a ball screw, and the nut adopts a flange nut with circulating balls embedded inside. Both ends of the screw are connected to the mounting frame 414 through bearing seats.The third motor 419 is mounted on the inside of the mounting frame 414 and to the left of the lead screw assembly 418. The lead screw assembly 418 is electrically connected to the sub-control console 42. The gear on the other side of the third motor 419 is keyed to the outside of the lead screw shaft in the lead screw assembly 418. The third motor 419 is a servo motor equipped with an absolute encoder. The motor is connected to a gear shaft on one side of the first transmission gear set 420 via a reducer. A gear on one side of the first transmission gear set 420 is fixedly mounted on the rotating end of the third motor 419. The gear on the other side of the first transmission gear set 420 is keyed to the outside bottom of the lead screw shaft in the lead screw assembly 418. The mounting plate 421 is mounted on the limiting end of the second limiting assembly 417 in the front-to-back direction. The lead screw assembly 418 is connected to the left side of the mounting plate 421.

[0021] As a preferred solution, further, Figure 10 and Figure 11As shown, the storage mechanism 4 also includes: a fixed frame 422, a rotating arm 423, a third electric telescopic rod 424, a gear rack assembly 425, a belt assembly 426, a fourth motor 427, an electromagnetic clutch 428, a second transmission gear set 429, a telescopic module 430, a track frame 431, a clamping frame 432, a fourth electric telescopic rod 433, a limit rack 434 and a limit gear 435; the fixed frame 422 is arranged at the moving end of the driving component of the base platform 21; the rotating arm 423 is rotatably connected to the inner right end of the fixed frame 422 through a bearing, and the left and right ends of the rotating arm 423 are concave and are rotatably connected to the inner right end of the fixed frame 422 through a pair of tapered roller bearings, which can achieve ±180° rotation angle adjustment, and the right end is used to install the belt 426 is a rotating shaft of the component; the third electric telescopic rod 424 is mounted on the inner front end of the fixed frame 422, the third electric telescopic rod 424 is electrically connected to the sub-control operating table 42, the third electric telescopic rod 424 uses a servo electric cylinder, the fixed end of which is mounted on the inner front end of the fixed frame 422 through a support, and the telescopic end is rigidly connected to the rack in the gear rack component 425; the rack in the gear rack component 425 is fixedly mounted on the telescopic end of the third electric telescopic rod 424, and the gear key in the gear rack component 425 is connected to the outer side of the bottom end of the shaft core of the rotating arm 423. When the third electric telescopic rod 424 is extended or retracted, the rack is driven to move linearly, thereby driving the gear meshing with it to rotate, thereby realizing the angle adjustment of the rotating arm 423; the pulley shaft core on one side of the belt component 426 is connected to the outer side of the gear rack component 425; The fourth motor 427 is mounted on the top of the fixed frame 422, and the rotating end of the fourth motor 427 extends into the inner side of the fixed frame 422. The fourth motor 427 is electrically connected to the sub-control operating console 42. The fourth motor 427 is a servo motor equipped with an absolute encoder to achieve high-precision position feedback. The electromagnetic clutch 428 is mounted on the inner side of the fixed frame 422. One side of the clutch 428 is connected to the rotating end of the fourth motor 427, and the electromagnetic clutch 428 is electrically connected to the sub-control console 42. The electromagnetic clutch adopts a dry single-plate electromagnetic clutch. The sub-control console 42 controls the on and off of the electromagnetic clutch 428 to achieve the engagement and separation of the power of the fourth motor 427, thereby controlling the rotation of the telescopic module 430; the gear key on one side of the second transmission gear set 429 is connected to the outer side of the top end of the shaft core of the belt assembly 426, and the gear key on the other side of the second transmission gear set 429 is installed on the other side of the electromagnetic clutch 428. The second transmission gear set 429 is composed of cylindrical gears, in which the driving gear key is connected to the outer side of the top end of the shaft core of the belt assembly 426, and the driven gear is connected to the output end of the electromagnetic clutch 428;The telescopic module 430 is installed on the top of the shaft core of the belt assembly 426 in the front-to-back direction. The telescopic module 430 is electrically connected to the sub-control operating table 42. The telescopic module 430 adopts a linear motor structure with an integrated ball screw transmission mechanism inside, and is driven by a servo motor. The telescopic module 430 is fixedly connected to the pulley shaft core through a flange to ensure stability during rotation and telescopic movements; the track frame 431 is installed on the rear side of the telescopic end of the telescopic module 430 in the up-down direction. The track frame 431 is welded with steel pipes. Two cylindrical guide rails are installed on the left and right sides of the track frame 431 to provide sliding guides for the upper and lower clamping frames 432; there are two clamping frames 432, and the two clamping frames 432 are respectively sleeved on the upper and lower sides of the outer side of the track frame 431. The inner surface of the clamping frame 432 is pasted with a non-slip rubber pad to prevent slipping when grabbing the carton; the fourth electric telescopic rod 433 is arranged on the track in the up-down direction On the inner side of the frame 431, the upper and lower ends of the fourth electric telescopic rod 433 are respectively connected to the front sides of the upper and lower clamping frames 432. The fourth electric telescopic rod 433 is electrically connected to the sub-control operating table 42. The fourth electric telescopic rod 433 uses an electric cylinder, and its upper and lower ends are respectively connected to the front sides of the upper and lower clamping frames 432 through hinge supports; there are two limit racks 434, and the two limit racks 434 are respectively installed at the front right ends of the upper and lower clamping frames 432; the limit gear 435 is rotatably connected to the inner right end of the track frame 431 through a rotating shaft seat, and the inner sides of the two limit racks 434 are respectively engaged with the front and rear sides of the limit gear 435. When the fourth electric telescopic rod 433 drives the clamping frame to move, the limit rack 434 drives the limit gear 435 to rotate, which plays a guiding and anti-deflection role, ensuring that the clamping frame 432 is lifted and lowered smoothly along a straight line, thereby achieving accurate grasping and placement of cartons.

[0022] Here’s how it works: Step 1: The staff controls the main control console 1 to start the carton conveyor 22, the unpacking robot 23, the carton bottom sealing machine 24, the box conveyor line 25, the first conveyor 27, the grabbing robot 28, the second conveyor 210, the handling robot 29 and the sealing inkjet printer 26. The staff pre-stacks the empty cartons at the input end of the carton conveyor 22. The carton conveyor 22 transports the empty cartons one by one to the unpacking station inside itself. The unpacking robot 23 receives the stacked cartons and unfolds the carton body, stretching the folded box board into a rectangular box structure. The unpacking robot 23 places the unfolded carton to the internal station of the carton bottom sealing machine 24. The carton bottom sealing machine 24 folds the four folds at the bottom of the box through its own internal folding mechanism. The carton is sealed with hot melt glue, and the bottom of the carton is moved by the carton bottom sealing machine 24 to the input end of the box conveyor line 25. The box conveyor line 25 conveys the internal cartons from right to left to the temporary storage area behind the right grabbing robot arm 28. The first conveyor 27 on the right conveys the bottom filling plate stored inside itself to the grabbing station on its left side. The right grabbing robot arm 28 grabs the bottom filling plate at the grabbing station of the first conveyor 27 on the right and fills it into the bottom end of the carton. After the bottom filling is completed, the box conveyor line 25 conveys the internal cartons to the temporary storage area in front of the right handling robot arm 29. The second conveyor 210 on the right conveys the gift products stored inside itself to the handling station in front of itself. The handling robot arm 2 9 The gift products at the handling station of the second conveyor 210 are grabbed and placed inside the carton. The box conveyor line 25 continues to transport the internal cartons to the bottom of the filling component 3. The preset program inside the main control console 1 controls the second electric telescopic rod 311 and the first electric telescopic rod 35 to start. The second electric telescopic rod 311 on the four sides extends to drive one end of the connecting frame 312 at the corresponding position to move upward, thereby causing the connecting frame 312 to drive the axis core of the baffle 39 to drive the baffle to rotate downward, folding the four hinges on the top of the carton outward, and the first electric telescopic rod 35 on the four sides intermittently shortens and extends to drive the pushing frame 36 at the corresponding position to reciprocate inside and outside the limit baffle 33, thereby pushing the filling plate stored in the material bracket 32 ​​into the guide The guide rack 34 is inside the carton, and enters the four sides of the gift product along the guide rack 34. After the outer side is filled, the box conveyor line 25 conveys the inner carton from right to left to the temporary storage area behind the left grabbing robot arm 28. The left first conveyor 27 conveys the top filling plate stored inside itself to its own left grabbing station. The left grabbing robot arm 28 grabs the bottom filling plate at the grabbing station of the left first conveyor 27 and fills it to the top of the carton. After the top is filled, the carton arrives below the carton sealing inkjet printer 26 via the box conveyor line 25. The carton sealing inkjet printer 26 first folds and seals the upper cover of the box, and then immediately prints the production date, batch number, QR code, logistics information and other contents on the surface of the carton through the inkjet printer system. Step 2: The staff passes the packaged carton through the sealed door 43 through the inner side of the left and right grating sensors 46 and places it on the surface of the electric conveyor belt 410. The front and rear grating sensors 46 sense that there is a carton passing through and send a signal to the sub-control console 42. The sub-control console 42 has an internal preset program to control the scanning device 47, the first motor 412, the electric conveyor belt 410, the fourth electric telescopic rod 433, the second motor 416, the third motor 419, the third electric telescopic rod 424, the electromagnetic clutch 428, the fourth motor 427 and the telescopic module 430 to start. The scanning device 47 scans the surface information of the carton and identifies the production date, batch number, Logistics information and other contents, after successful recognition, the scanning device 47 transmits the data to the sub-control operation console 42, and generates the target storage position instruction of the storage rack 44 according to the destination information, and the first motor 412 drives the internal sprocket of the chain component 411 to drive the chain to rotate, so as to drive the lifting frame 49 to move downward under the limiting action of the first limiting component 48, so that the electric conveyor belts 410 on the left and right sides lift the carton to the same horizontal height position inside the upper and lower clamping frames 432, and the electric conveyor belts 410 on the left and right sides move the carton on their surface to the front side to the inside of the upper and lower clamping frames 432, and the fourth electric telescopic rod 433 shortens to drive the upper and lower clamping frames 432 inward. The carton is clamped and fixed by the movement, and the second motor 416 drives the pulley in the belt assembly 415 to drive the belt to rotate, so as to drive the mounting frame 414 to move to the specified position along the inner side of the front and rear storage racks 44 under the limiting action of the ground rail assembly 413. The third motor 419 drives the screw in the screw assembly 418 to drive the screw nut up and down under the transmission of the first transmission gear group 420, and drives the mounting plate 421 to rise and fall to a specified height position under the limiting action of the second limiting assembly 417. The third electric telescopic rod 424 drives the rack in the gear rack assembly 425 to move horizontally in the left and right directions, so that the gear in the gear rack assembly 425 is driven to rotate under the action of the rack. The arm 423 rotates clockwise or counterclockwise to the specified direction position, and the electromagnetic clutch 428 connects the gears of the fourth motor 427 and the second transmission gear set 429. The fourth motor 427 drives the gear on one side of the second transmission gear set 429 to drive the gear on the other side to rotate synchronously, and then drives the telescopic module 430 to rotate to the specified direction position under the transmission of the belt assembly 426 to align with the front and rear or rear storage racks 44. The telescopic module 430 extends to drive the track frame 431 to drive the upper and lower clamping frames 432 to place the carton smoothly into the specified position inside the storage rack 44. Then the clamping frame 432 is released, the telescopic module 430 retracts, and the equipment is reset to wait for the next instruction.

[0023] While embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions, and variations may be made to these embodiments without departing from the principles and spirit of the invention, and that the scope of the invention is defined by the appended claims and their equivalents.

Claims

1. A gift product management system based on information management, characterized in that: include: Classification standard formulation module, basic information entry module, daily classification management module and data maintenance and analysis module; The classification standard formulation module is used to organize personnel from multiple departments to determine gift classification dimensions based on industry and business needs, build a multi-level classification system and form standard documents to provide a basis for gift classification; The basic information entry module is used to collect detailed information about new gifts before they are put into storage, enter the information into the system according to classification standards, and have it reviewed by a dedicated person to ensure that the information is accurate and complete, thus ensuring that the system data is authentic. Daily classification management module, used to adjust product classification according to market changes, use classification storage devices to safely package gifts, store them in partitions, and record inventory information, while also recording the types and quantities of gifts in sales orders; The data maintenance and analysis module is used to regularly update system data, delete invalid information, add new content, and use data analysis functions to mine classified data to provide support for corporate decision-making; The classification storage device includes: Main control console (1); A packaging mechanism (2) is arranged on the rear side of the main control console (1), and the packaging mechanism (2) serves as the core area of ​​the automated packaging of gift products; The storage mechanism (4) is arranged in front of the left side of the packaging mechanism (2), and the storage mechanism (4) serves as a core unit for finished product storage and intelligent sorting.

2. The gift product management system based on information management according to claim 1, characterized in that: The packaging mechanism (2) comprises: A base platform (21) is arranged on the rear side of the main control console (1) in the left-right direction; A carton conveyor (22) is installed at the right rear of the top of the base platform (21), and the carton conveyor (22) is electrically connected to the main control console (1); A carton unpacking robot arm (23) is installed on the top of the base platform (21) and is located on the right side of the carton conveyor (22), and the carton unpacking robot arm (23) is electrically connected to the main control console (1); A carton bottom sealing machine (24) is installed on the top of the base platform (21) in the left-right direction and is located in front of the unpacking robot arm (23), and the carton bottom sealing machine (24) is electrically connected to the main control console (1); A box conveyor line (25) is installed on the top of the base platform (21) in the left-right direction and is located on the left side of the carton bottom sealing machine (24). The box conveyor line (25) is electrically connected to the main control console (1); A filling component (3) is arranged outside the box conveying line (25); The box sealing inkjet printer (26) is installed on the top of the base platform (21) and is located on the left side of the box conveyor line (25). The box sealing inkjet printer (26) is electrically connected to the main control console (1).

3. The gift product management system based on information management according to claim 2, characterized in that: The packaging mechanism (2) further comprises: A first conveyor (27), wherein the number of the first conveyors (27) is two, and the two first conveyors (27) are respectively installed on the top of the base platform (21) and located on the left and right sides in front of the box conveyor line (25), and the first conveyor (27) is electrically connected to the main control console (1); Grabbing mechanical arms (28), the number of the grabbing mechanical arms (28) is two, the two grabbing mechanical arms (28) are respectively installed on the top rear side of the left and right first conveyors (27), and the grabbing mechanical arms (28) are electrically connected to the main control console (1); A transporting robot arm (29) is installed on the top of the base platform (21) and is located to the right rear of the box conveyor line (25), and the transporting robot arm (29) is electrically connected to the main control console (1); The second conveyor (210) is installed at the top of the base platform (21) along the front-back direction and is located on the left side of the transport robot arm (29). The second conveyor (210) is electrically connected to the main control console (1).

4. The gift product management system based on information management according to claim 3, characterized in that: The filling component (3) comprises: A mounting frame (31) is fixedly mounted on the top of the base platform (21) and is located in the middle of the outer side of the box conveyor line (25); Material brackets (32), the number of the material brackets (32) is four, and the four material brackets (32) are respectively installed on the four sides of the top of the mounting frame (31); Limiting bars (33), the number of the limiting bars (33) is four, and the four limiting bars (33) are respectively installed on the top ends of the four limiting bars (33) in the up-down direction; Guide racks (34), the number of the guide racks (34) is four, and the four guide racks (34) are respectively installed on the inner sides of the four material brackets (32) and located below the discharge port; a first electric telescopic rod (35), wherein the number of the first electric telescopic rods (35) is four, and the four first electric telescopic rods (35) are respectively installed on the outer sides of the bottom ends of the four material brackets (32), and the first electric telescopic rods (35) are electrically connected to the main control console (1); Pushing racks (36), the number of the pushing racks (36) is four, the four pushing racks (36) are respectively installed on the outside of the telescopic ends of the four first electric telescopic rods (35), and the pushing racks (36) are respectively plugged into the inner bottom of the four limit blocking rods (33).

5. The gift product management system based on information management according to claim 4, characterized in that: The filling component (3) further comprises: A U-shaped groove housing (37) fixedly mounted on the bottom ends of the four guide frames (34); A trough body (38) is provided in the middle of the top end of the inner cavity of the U-shaped trough shell (37) and is located below the inner side of the four guide frames (34); Baffles (39), the number of the baffles (39) is four, and the four baffles (39) are respectively connected to the top of the inner cavity of the U-shaped trough shell (37) through a rotating shaft and are located on the four sides below the trough body (38); Mounting shells (310), the number of the mounting shells (310) being four, and the four mounting shells (310) being mounted on the front and rear sides of the inner cavity of the U-shaped groove shell (37), respectively; Second electric telescopic rods (311), the number of the second electric telescopic rods (311) is four, one end of each of the four second electric telescopic rods (311) is rotatably connected to the inner cavities of four mounting shells (310) via a rotating shaft, and the second electric telescopic rods (311) are electrically connected to the main control console (1); The connecting frames (312) are four in number, one end of each of the four connecting frames (312) is mounted on the outside of the axis cores of the four baffles (39), and the inner sides of the other ends of the four connecting frames (312) are rotatably connected to the telescopic ends of the four second electric telescopic rods (311) via rotating shafts.

6. The gift product management system based on information management according to claim 5, characterized in that: The storage mechanism (4) comprises: A box-type sealed cabin (41) is arranged at the left front of the base platform (21); A sub-control console (42) is embedded in the front right side of the exterior of the base platform (21), and the sub-control console (42) and the main control console (1) are remotely connected via a network; A sealing door (43) is installed inside the rear opening on the right side of the exterior of the box-type sealed cabin (41); Storage racks (44), the number of the storage racks (44) is two, and the two storage racks (44) are respectively installed on the front and rear sides of the box-type sealed cabin (41); A base frame (45) is fixedly mounted on the inner bottom end of the box-type sealed cabin (41) and is located below the left side of the sealed door (43); Grating sensors (46), the number of the grating sensors (46) is two, the two grating sensors (46) are respectively installed on the left and right sides of the top of the base frame (45), and the grating sensors (46) are electrically connected to the sub-control operation console (42); A scanning device (47) is mounted on the left side of the top of the base frame (45) via a bracket, and the scanning device (47) is electrically connected to the sub-control console (42); A first limiting assembly (48), wherein the number of the first limiting assemblies (48) is two groups, the number of each group of the first limiting assemblies (48) is two, and the two groups of the first limiting assemblies (48) are respectively installed at the left and right sides and the front and rear ends of the base frame (45); A lifting frame (49) is fixedly mounted on the inner sides of the limiting ends of the left and right sets of first limiting assemblies (48); An electric conveyor belt (410), wherein the number of the electric conveyor belts (410) is two, and the two electric conveyor belts (410) are respectively installed on the left and right sides of the top of the lifting frame (49), and the electric conveyor belts (410) are electrically connected to the sub-control operation console (42); Chain assemblies (411), the number of the chain assemblies (411) is two, the two chain assemblies (411) are respectively installed on the left and right sides of the base frame (45), and the chains in the left and right chain assemblies (411) are respectively connected to the left and right sides of the lifting frame (49); A first motor (412), wherein the number of the first motors (412) is two, and the two first motors (412) are respectively mounted on the left and right sides of the bottom end of the base frame (45), and the rotating ends of the left and right first motors (412) are respectively connected to the bottom sprocket shaft cores of the left and right chain assemblies (411), and the first motors (412) are electrically connected to the sub-control operation console (42); A driving component is provided inside the box-type sealed cabin (41) and below the front and rear storage racks (44).

7. The gift product management system based on information management according to claim 6, characterized in that: The storage mechanism (4) further includes: A fixed frame (422) is provided at the moving end of the driving component of the base platform (21); A rotating arm (423) is rotatably connected to the inner right end of the fixing frame (422) via a bearing; A third electric telescopic rod (424) is mounted on the inner front end of the fixing frame (422), and the third electric telescopic rod (424) is electrically connected to the sub-control operation console (42); a rack and pinion assembly (425), wherein the rack in the rack and pinion assembly (425) is fixedly mounted on the telescopic end of the third electric telescopic rod (424), and the gear key in the rack and pinion assembly (425) is connected to the outer side of the bottom end of the shaft core of the rotating arm (423); A belt assembly (426), wherein a pulley shaft core on one side is rotatably connected to the bottom of the inner left end of the rotating arm (423) via a rotating shaft, and a pulley on the other side of the belt assembly (426) is rotatably connected to the bottom of the inner right end of the rotating arm (423) via a bearing, and a belt in the belt assembly (426) is sleeved on the outside of the rotating arm (423); A fourth motor (427) is mounted on the top of the fixing frame (422), a rotating end of the fourth motor (427) extends into the inner side of the fixing frame (422), and the fourth motor (427) is electrically connected to the sub-control operation console (42); An electromagnetic clutch (428) is installed on the inner side of the fixing frame (422), one side of the electromagnetic clutch (428) is connected to the rotating end of the fourth motor (427), and the electromagnetic clutch (428) is electrically connected to the sub-control operation console (42); The second transmission gear set (429) has a gear key on one side connected to the outer side of the top end of the shaft core of the belt assembly (426), and the gear key on the other side of the second transmission gear set (429) is installed on the other side of the electromagnetic clutch (428).

8. The gift product management system based on information management according to claim 7, characterized in that: The storage mechanism (4) further includes: A telescopic module (430) is installed on the top end of the shaft core of the belt assembly (426) along the front-back direction, and the telescopic module (430) is electrically connected to the sub-control operation console (42); A track frame (431) is installed on the rear side of the telescopic end of the telescopic module (430) in the up-down direction; A clamping frame (432), wherein the number of the clamping frames (432) is two, and the two clamping frames (432) are respectively sleeved on the upper and lower sides of the exterior of the track frame (431); a fourth electric telescopic rod (433) disposed on the inner side of the track frame (431) in the vertical direction, wherein the upper and lower ends of the fourth electric telescopic rod (433) are respectively connected to the front sides of the upper and lower clamping frames (432), and the fourth electric telescopic rod (433) is electrically connected to the sub-control operation table (42); A limiting rack (434), wherein the number of the limiting racks (434) is two, and the two limiting racks (434) are respectively mounted on the front right ends of the upper and lower clamping frames (432); The limiting gear (435) is rotatably connected to the inner right end of the track frame (431) via a rotating shaft seat, and the inner sides of the two limiting racks (434) are respectively engaged with the front and rear sides of the limiting gear (435).