An intelligent classification and storage system for manufacturing raw materials

By designing an intelligent classified storage system, including storage fire extinguishing structure, intelligent forklift structure, energy-saving structure and inspection robot structure, the problems of low efficiency and poor safety caused by human operation in the existing system are solved, automated storage and real-time inspection are realized, and storage efficiency and safety are improved.

CN119551334BActive Publication Date: 2025-05-27JIANHU SHITUO DIGITAL TECH CO LTD
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Patent Information

Application Number
CN202411734565.2
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-11-29
Publication Date
2025-05-27
Estimated Expiration
2044-11-29

AI Technical Summary

Technical Problem

The existing classification and storage system for manufacturing raw materials relies on human operations, resulting in large workloads and easy inventory errors. Granular bulk raw materials are easily scattered when storing them, and the intelligent effect in the storage silo is poor, and unexpected situations cannot be handled in a timely manner, resulting in economic losses.

Method used

Design an intelligent classified storage system, including storage fire extinguishing structure, intelligent forklift structure, energy-saving structure and inspection robot structure, to realize automatic unloading, labeling, inspection and fire extinguishing treatment, reduce human operations, and improve storage efficiency and safety.

Benefits of technology

Through automated operations, reduce human errors, improve classified storage efficiency, enhance the intelligence and security of storage silos, and avoid unnecessary economic losses.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention discloses an intelligent classification storage system for manufacturing raw materials, including a storage and fire extinguishing structure. Inside the storage and fire extinguishing structure, a fixed box encapsulates the raw material storage structure and is used for classifying and labeling the raw materials stored in the box. The raw material storage structure encapsulated in the box is located on the front side of the raw material cleaning and storage structure. An intelligent forklift structure is arranged inside the storage and fire extinguishing structure and is used for automatic loading and unloading. An energy-saving structure is fixed on the upper side of the storage and fire extinguishing structure and is used for energy-saving treatment. An inspection robot structure is arranged on one side of the raw material storage structure encapsulated in the box and is used for inspecting and scanning the inside of the storage and fire extinguishing structure. Both the front and rear sides of the storage and fire extinguishing structure are connected to the energy storage and maintenance component. The intelligent classification storage system for manufacturing raw materials labels the raw materials encapsulated in the box and automatically carries out loading and unloading, inspects the inside of the storage bin and scans the labels, and processes in a timely manner when special situations occur. The energy-saving structure adjusts the angle according to needs and automatically stores energy for the intelligent machinery inside the storage bin.
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Description

Technical Field

[0001] The present invention relates to the technical field of manufacturing production raw materials, and in particular to an intelligent classification and storage system for manufacturing production raw materials. Background Art

[0002] Raw materials refer to various raw materials and main materials, auxiliary materials, fuels, repair spare parts, packaging materials, purchased semi-finished products, etc. that are processed and changed in form or nature during the production process and constitute the main entity of the product. Existing manufacturing raw materials are mostly unloaded and handled manually during classification and storage, and the goods are sorted and put into storage. Later, the raw materials after storage are manually scanned and counted. Manual operation is easy, the entire workload is large, and counting errors are prone to occur. At the same time, if granular bulk raw materials are stored and scattered to the ground by mistake, the granular bulk raw materials cannot be cleaned on site later, and the practicality is not strong. The existing storage silos require staff to conduct internal inspections, and the intelligent effect is poor. Accidents in the storage silos cannot be handled in time, causing unnecessary economic losses. Summary of the invention

[0003] The purpose of the present invention is to provide an intelligent classification and storage system for manufacturing raw materials to solve the problem raised in the above background technology that the existing manufacturing raw materials are mostly unloaded by manual handling during classification and storage, and the goods are sorted and stored. Later, the raw materials after storage are manually scanned and counted. The manual operation is easy, the entire workload is large, and counting errors are prone to occur. At the same time, if the granular bulk raw materials are stored and scattered to the ground by mistake, the granular bulk raw materials cannot be cleaned on site later, and the practicality is not strong. The existing storage silos require staff to conduct internal inspections, the intelligent effect is poor, and accidents in the storage silos cannot be handled in time, resulting in unnecessary economic losses.

[0004] To achieve the above-mentioned purpose, the present invention provides the following technical solutions: an intelligent classification storage system for manufacturing production raw materials, including a storage fire extinguishing structure, a box-encapsulated raw material storage structure is fixed in the storage fire extinguishing structure and is used for classifying, labeling and storing the box-encapsulated raw materials, the box-encapsulated raw material storage structure is located in front of the raw material cleaning storage structure, an intelligent forklift structure is arranged in the storage fire extinguishing structure and is used for automatic loading and unloading, an energy-saving structure is fixed on the upper side of the storage fire extinguishing structure and is used for energy-saving processing, an inspection robot structure is arranged on one side of the box-encapsulated raw material storage structure and is used for inspection, scanning and processing in the storage fire extinguishing structure, and the front and rear sides of the storage fire extinguishing structure are connected to energy storage and maintenance components;

[0005] The storage fire extinguishing structure comprises a storage warehouse, a first water tank is fixed on the upper side of the storage warehouse, and the first water tank is connected to the fire extinguishing assembly through a first water pipe;

[0006] The fire extinguishing assembly includes a first support frame, and the first support frame is telescopically adjustable to adjust a first high-pressure nozzle on a first support plate through a telescopic structure;

[0007] The box packaging raw material storage structure includes a first conveyor belt, the left side of the first conveyor belt is attached to the second conveyor belt, the second conveyor belt runs through the labeling box, the labeling box is telescopically adjusted to adjust the position of the automatic labeling machine through the telescopic structure, and the box storage component is arranged on the left side of the automatic labeling machine;

[0008] The box storage assembly includes a second support frame, and a second support plate is detachably mounted on the second support frame;

[0009] The intelligent forklift structure includes a handling robot, a first monitoring body is fixed on the upper side of the handling robot, the handling robot adjusts the angle of the third support frame through a telescopic structure, the third support frame adjusts the position of the forklift plate through the telescopic structure, the front and rear outer walls of the third support frame adjust the position of the auxiliary limit assembly through the telescopic structure, the top plate is fixed on the upper side of the third support frame, and the lighting lamp is fixed on the upper side of the top plate;

[0010] The energy-saving structure includes an angle adjustment component, a first fixed plate is fixed on the upper side of the angle adjustment component, a motor in a third motor box on the first fixed plate drives a rotating block to rotate, a second fixed plate is fixed on the upper side of the rotating block, and a motor on the second fixed plate drives the energy-saving component to rotate;

[0011] The energy-saving component includes a first photovoltaic panel, the first photovoltaic panel is located in front of the second photovoltaic panel, the second photovoltaic panel is fixed on the second fixed panel at the rear, the first photovoltaic panel and the second photovoltaic panel are connected to the third photovoltaic panel by a rotating rod, and the third photovoltaic panel, the second photovoltaic panel and the first photovoltaic panel are connected by a connecting rope;

[0012] The inspection robot structure includes a first flushing component, the inspection robot is fixed on the first flushing component, the second monitoring body is fixed on the inspection robot, the auxiliary fire extinguishing component is fixed on the inspection robot, and the code scanning component is fixed on the first flushing component;

[0013] The first flushing assembly includes a second water tank, the second water tank is connected to the flushing head through a third water pipe, the flushing head is clamped and fixed between the clamps, the clamps are fixed to the first manipulator, and the first manipulator is fixed to the top of the second water tank;

[0014] The auxiliary fire extinguishing assembly includes a fire extinguisher, which is connected to a discharge nozzle through a conveying pipe, and the discharge nozzles are evenly distributed on a third fixed plate, a second manipulator is fixed on the third fixed plate, and one end of the second manipulator is fixed on the left side of the inspection robot;

[0015] The code scanning component includes a fourth fixed plate. The motor on the fourth fixed plate drives the screw to rotate. The rotation of the screw drives the electric telescopic rod on the support block to move up and down. The automatic code scanning machine is fixed on the electric telescopic rod.

[0016] Preferably, the raw material cleaning and storage structure includes a material guide protection component, in which a flushing component and a storage flat material scraper component are disassembled and installed, the storage flat material scraper component is located at the lower side of the flushing component, the motor on the lower left end of the storage flat material scraper component drives the sealing component to rotate, the fourth conveyor belt at the lower side of the sealing component passes through the drying component, the fifth conveyor belt is arranged at the lower side of the fourth conveyor belt, the belt scale body on the left side of the fourth conveyor belt weighs the cleaned raw materials, and the raw material storage component is arranged on the left side of the belt scale body to store the cleaned raw materials.

[0017] Preferably, the material guide protection assembly includes a material guide box, the third conveyor belt passes through the right side of the material guide box, a material guide plate is fixed on the inner wall of the material guide box, and the position of the first shock absorber is adjusted by the first shock absorber through telescopic adjustment of the material guide plate.

[0018] By adopting the above technical solution, the material guide plate is protected by arranging a material guide protection component.

[0019] Preferably, the flushing assembly includes a second water pipe, which is connected to a second high-pressure nozzle and flushes the raw materials that need to be cleaned.

[0020] By adopting the above technical solution, the dust on the granular raw material is washed by setting a washing component.

[0021] Preferably, the flat material storage scraper assembly includes a filter plate, and the motor on the filter plate drives the fixed rod to rotate, and the rotation of the fixed rod drives the flat material rod and the scraper plate on the first support rod to rotate, the flat material rod is located on the lower side of the scraper plate, and the motor in the first motor box in the fixed rod drives the first support rod to rotate and adjust the position of the flat material rod and the scraper plate, and the position of the second shock absorber plate on the upper side of the fixed rod is adjusted by telescopic movement of the second shock absorber.

[0022] By adopting the above technical solution, the raw materials on the filter plate are leveled by arranging a storage and scraping assembly.

[0023] Preferably, the sealing assembly comprises a leakage hole, which penetrates the filter plate, and the motor in the second motor box on the filter plate drives the material blocking plate to rotate and seal or open the leakage hole.

[0024] By adopting the above technical solution, the leakage hole is sealed by arranging a sealing component.

[0025] Preferably, the drying component comprises a drying box, an air dryer runs through the drying box, and an electric heating wire is embedded in the drying box and is used for drying the raw materials.

[0026] By adopting the above technical solution, a drying component is provided to dry the washed granular raw materials.

[0027] Preferably, the raw material storage assembly includes a storage tank, a vibrator is fixed on the outer wall of the storage tank, a radar level meter penetrates the upper side of the storage tank, a sliding plate is fixed on the outer wall of the storage tank, and the sliding plate is slidably connected to the second support rod.

[0028] By adopting the above technical solution, raw materials are stored by setting up raw material storage components.

[0029] Preferably, the energy storage and maintenance component includes a first energy storage bin, in which a battery is embedded, the first energy storage bin is located at the rear side of a second energy storage bin, a maintenance room and a cleaning room are embedded in the second energy storage bin, and the maintenance room is located on one side of the cleaning room.

[0030] By adopting the above technical solution, energy storage and maintenance components are set up to repair and store energy for the machinery in the storage warehouse.

[0031] Compared with the prior art, the invention has the following beneficial effects: the intelligent classification and storage system for manufacturing production raw materials,

[0032] (1) The present invention stores raw materials separately according to their types, automatically labels the box-packaged raw materials and automatically transports and unloads them, automatically inspects the storage bin and automatically scans the labels of the box-packaged raw materials in the storage bin, and promptly handles special situations. The energy-saving structure on the storage bin can adjust the angle according to needs, and automatically takes advantage of the intelligent mechanical energy storage in the storage bin. Different types of bulk raw materials enter the guide box through the third conveyor belt respectively. The first shock absorber plate in the guide box plays a buffering and shock-absorbing role with the assistance of the first shock absorber, thereby protecting the guide plate. The bulk raw materials fall through the leakage hole to the fourth conveyor belt, and fall through the fifth conveyor belt to the belt scale body for weighing. Finally, they enter the storage tank through the third conveyor belt on the left side of the belt scale body for classified storage, and are weighed on the radar level meter. With the assistance of the automatic labeling machine, the quantity of bulk raw materials is calculated, the accuracy of the belt scale body is verified, and finally the data is transmitted to the later ERP system for storage and recording. If the bulk raw materials fall and need to be cleaned, the baffle plate moves and seals the leakage hole with the assistance of the stepper motor in the second motor box. The raw materials on the filter plate are cleaned of dust with the assistance of the second high-pressure nozzle. The cleaned bulk raw materials enter the drying component for automatic drying, which increases practicality. The box packaging raw materials are labeled with the assistance of the automatic labeling machine, and the information is collected and transmitted to the later ERP system for recording and storage with the assistance of the small camera on the labeling box. Finally, with the assistance of the intelligent forklift structure, the box packaging raw materials are placed on the second support plate for storage as needed. The entire operation does not require manual handling by staff, which improves the efficiency of classification and storage.

[0033] (2) In the present invention, the gear drives the support seat on the rack to rotate under the auxiliary action of the stepping motor in the hollow base, thereby adjusting the angle of the upper energy-saving component to ensure that the energy-saving component is better exposed to sunlight and increase the utilization rate of sunlight. The energy-saving component is directly unfolded when in use and folded when not in use to save space. The electric energy generated by the energy-saving component is stored in the battery, and the battery provides electric energy for the entire electrical components in the storage warehouse. The maintenance room in the second energy storage warehouse is convenient for the staff to maintain and repair the intelligent forklift structure, the inspection robot structure and other devices, and clean them under the action of the cleaning room. At the same time, it is convenient for the second water tank on the lower side of the inspection robot to store water;

[0034] (3) The present invention inspects the interior of the storage warehouse in real time with the assistance of the inspection robot. The staff can directly view the inspection results later. The motor on the fourth fixed plate drives the screw rod, and the automatic barcode scanner on the electric telescopic rod adjusts the height, thereby scanning the box packaging materials on the second support plate at different heights, and entering the label information into the ERP system. The entire scanning work does not require manual operation, which improves work efficiency and saves labor costs. In addition, in the event of an emergency, the alarm on the inspection robot alerts the staff and transmits the information of the emergency to the background for reminder. If a fire occurs, the inspection robot moves to the fire point and selects the first flushing component or the auxiliary fire extinguishing component according to the needs of the site to extinguish the fire, so as to avoid the spread of fire and cause unnecessary losses. The hydraulic cylinder on the lower moving module of the inspection robot adjusts the height of the inspection robot, thereby extinguishing the fire at different heights. BRIEF DESCRIPTION OF THE DRAWINGS

[0035] Figure 1 It is a front view structural schematic diagram of the present invention;

[0036] Figure 2 It is a rear view structural schematic diagram of the present invention;

[0037] Figure 3 It is a schematic diagram of the top view structure of the present invention;

[0038] Figure 4 This is a schematic diagram of the box packaging raw material storage structure of the present invention;

[0039] Figure 5 This is a schematic diagram of the raw material cleaning storage structure of the present invention;

[0040] Figure 6 This is a schematic diagram of the distribution structure of the flat material storage and scraping assembly on the material guide and protection assembly of the present invention;

[0041] Figure 7 This is a schematic diagram of the structure of the intelligent forklift of the present invention;

[0042] Figure 8This is a schematic diagram of the energy-saving structure of the present invention;

[0043] Fig. 9 This is a schematic diagram of the structure of the inspection robot of the present invention;

[0044] Fig.10 It is a schematic diagram of the structure of the flat material storage and scraping assembly of the present invention.

[0045] In the figure: 1. Storage fire extinguishing structure; 11. Storage warehouse; 12. First water tank; 13. First water pipe; 14. Fire extinguishing assembly; 141. First support frame; 142. First support plate; 143. First high-pressure nozzle; 2. Box packaging raw material storage structure; 21. First conveyor belt; 22. Second conveyor belt; 23. Labeling box; 24. Automatic labeling machine; 25. Box storage assembly; 251. Second support frame; 252. Second support plate; 3. Raw material cleaning storage structure; 31. Material guide protection assembly; 311. Material guide box; 312. Third conveyor belt; 313. Material guide plate; 314. First shock absorber; 315. First shock absorber plate; 32. Flushing assembly; 321. Second water pipe ; 322, second high-pressure nozzle; 33, storage flat material scraper assembly; 331, filter plate; 332, fixing rod; 333, first motor box; 334, first support rod; 335, flat material rod; 336, scraper plate; 337, second shock absorber; 338, second shock absorber plate; 34, sealing assembly; 341, leakage hole; 342, baffle plate; 343, second motor box; 35, fourth conveyor belt; 36, fifth conveyor belt; 37, drying assembly; 371, drying box; 372, air dryer; 373, electric heating wire; 38, belt scale body; 39, raw material storage assembly; 391, storage tank; 392, vibrator; 393, radar level meter; 394, second support rod; 3 95. Sliding plate; 4. Intelligent forklift structure; 41. Handling robot; 42. First monitoring body; 43. Third support frame; 44. Forklift plate; 45. Auxiliary limit assembly; 451. First baffle; 452. Sliding block; 453. Second baffle; 454. Third baffle; 46. Top plate; 47. Lighting lamp; 5. Energy-saving structure; 51. Angle adjustment assembly; 511. Hollow base; 512. Support seat; 513. Rack; 514. Gear; 52. First fixed plate; 53. Rotating block; 54. Third motor box; 55. Second fixed plate; 56. Energy-saving assembly; 561. First photovoltaic panel; 562. Second photovoltaic panel; 563. Third photovoltaic panel; 564. Connecting rope; 6 , inspection robot structure; 61, first flushing component; 611, second water tank; 612, third water pipe; 613, flushing head; 614, fixture; 615, first manipulator; 62, inspection robot; 63, second monitoring body; 64, auxiliary fire extinguishing component; 641, fire extinguisher; 642, feed pipe; 643, discharge nozzle; 644, third fixed plate; 645, second manipulator; 65, code scanning component; 651, fourth fixed plate; 652, screw; 653, support block; 654, electric telescopic rod; 655, automatic code scanning machine; 7, energy storage maintenance component; 71, first energy storage bin; 72, battery; 73, second energy storage bin; 74, maintenance room; 75, cleaning room. DETAILED DESCRIPTION

[0046] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. 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 creative work are within the scope of protection of the present invention.

[0047] See also Figure 1-10 The present invention provides a technical solution: an intelligent classification and storage system for manufacturing production raw materials, such as Figure 1 , Figure 2 and Figure 3 As shown, it includes a storage fire extinguishing structure 1, which includes a storage warehouse 11, a first water tank 12 is fixed on the upper side of the storage warehouse 11, the first water tank 12 is connected to the fire extinguishing assembly 14 through a first water pipe 13, and the fire extinguishing assembly 14 includes a first support frame 141, and the first support frame 141 is telescopically adjusted through a telescopic structure. A first high-pressure nozzle 143 on a first support plate 142;

[0048] Among them, a position adjustment module is embedded on the upper side of the storage warehouse 11. The position adjustment module is a prior art. Under the auxiliary action of the position adjustment module, the fire extinguishing assembly 14 is driven to move left and right, so as to extinguish the fire in the storage warehouse 11. There are two groups of fire extinguishing assemblies 14, and the two groups of fire extinguishing assemblies 14 are symmetrically arranged.

[0049] Specifically, the telescopic structures in the present application are all hydraulic cylinders, which are prior art. The hydraulic cylinder in the first support frame 141 drives the first high-pressure nozzle 143 on the first support plate 142 to move through the hydraulic rod, thereby adjusting the height of the first high-pressure nozzle 143;

[0050] In the above scheme, when a fire occurs, the inspection robot 62 accurately locates the fire point, and with the assistance of the position adjustment module, drives the first support frame 141 to move to the desired position, and the first support frame 141 moves through the first support plate 142 to drive the first high-pressure nozzle 143 to adjust the position, and the hydraulic cylinder in the first support frame 141 drives the first high-pressure nozzle 143 on the first support plate 142 to move downward to the desired height through the hydraulic rod, and the pressurized water in the first water tank 12 enters the first high-pressure nozzle 143 through the first water pipe 13, and the fire point is extinguished with the assistance of multiple groups of first high-pressure nozzles 143 to ensure the fire extinguishing effect.

[0051] like Figure 1 , Figure 4 and Figure 7As shown, a box-packaged raw material storage structure 2 is fixed in the storage and fire extinguishing structure 1 and is used for classifying and labeling the box-packaged raw materials for storage. An intelligent forklift structure 4 is arranged in the storage and fire extinguishing structure 1 and is used for automatic loading and unloading. The box-packaged raw material storage structure 2 includes a first conveyor belt 21. The left side of the first conveyor belt 21 is attached to a second conveyor belt 22. The second conveyor belt 22 runs through a labeling box 23. The labeling box 23 adjusts the position of an automatic labeling machine 24 through a telescopic structure. A box storage assembly 25 is arranged on the left side of the automatic labeling machine 24. The box storage assembly 25 includes a second support frame 251. A second support plate 252 is disassembled and installed on the second support frame 251. The intelligent forklift structure 4 includes a transport The robot 41, the first monitoring body 42 is fixed on the upper side of the handling robot 41, the handling robot 41 adjusts the angle of the third support frame 43 through the telescopic structure, the third support frame 43 adjusts the position of the forklift plate 44 through the telescopic structure, the front and rear outer walls of the third support frame 43 adjust the position of the auxiliary limit assembly 45 through the telescopic structure, the top plate 46 is fixed on the upper side of the third support frame 43, the lighting lamp 47 is fixed on the upper side of the top plate 46, the auxiliary limit assembly 45 includes a first baffle 451, the telescopic structure on the first baffle 451 telescopically adjusts the position of the second baffle 453 on the slider 452, and the second baffle 453 adjusts the position of the third baffle 454 through the telescopic structure;

[0052] Among them, a small camera is fixed on the upper side of the labeling box 23, and the small camera takes pictures of the labeling information and transmits the information to the later ERP system for recording and storage, so as to facilitate information comparison in case of errors in the later data. A plurality of groups of second support plates 252 are evenly distributed on the second support frame 251, so as to store different box packaging materials. The box packaging material storage structure 2 is provided with at least 12 groups, so as to facilitate the classification and storage of box packaging materials according to the needs in the later stage.

[0053] Furthermore, the side plate of the second support frame 251 drives the limit clamping plate to limit and clamp the packaging raw material box through the hydraulic rod on the hydraulic cylinder, so as to avoid the packaging raw material box from falling when carrying other packaging raw material boxes, causing unnecessary losses;

[0054] Specifically, three groups of hydraulic cylinders are embedded on both the front and rear sides of the third support frame 43, and the three groups of hydraulic cylinders drive the first baffle 451 to adjust the position through hydraulic rods. Two groups of hydraulic cylinders are embedded on the second baffle 453, and the two groups of hydraulic cylinders are symmetrically arranged. The hydraulic cylinders on the second baffle 453 drive the third baffle 454 to adjust through hydraulic rods, thereby limiting the packaging raw material boxes of different widths, thereby increasing practicality;

[0055] In the above scheme, the box packaging raw materials are moved to the second conveyor belt 22 in the labeling box 23 through the first conveyor belt 21, and the packaging raw material box is labeled with the assistance of the automatic labeling machine 24. After the labeling is completed, the box packaging raw materials move to the left to the required position, and with the assistance of the handling robot 41, the forklift plate 44 on the third support frame 43 is driven to move to the required position, and with the assistance of the hydraulic module on the third support frame 43, the forklift plate 44 is driven to move upward and support and move the packaging raw material box out, and then the packaging raw material box is moved to the left to the required position. The position of the third baffle 454 is adjusted with the assistance of the hydraulic cylinder on the second baffle 453, and the first baffle 451 is driven relatively by the hydraulic rod with the assistance of the hydraulic cylinders on the front and rear sides of the third support frame 43. When the first baffle 451 moves relatively to the required position, the second baffle 453 and the third baffle 454 move relatively to clamp the packaging raw material box to prevent it from falling during movement, and finally the box packaging raw materials are stored on the second support plate 252 corresponding to the second support frame 251, without manual handling, saving time and effort.

[0056] like Figure 1 , Figure 5 , Figure 6 and Fig.10As shown, the box-encapsulated raw material storage structure 2 is located at the front side of the raw material cleaning storage structure 3, and the raw material cleaning storage structure 3 includes a material guide protection component 31. The flushing component 32 and the storage flat material scraping component 33 are disassembled and installed in the material guide protection component 31. The storage flat material scraping component 33 is located at the lower side of the flushing component 32. The motor on the lower left end of the storage flat material scraping component 33 drives the sealing component 34 to rotate. The fourth conveyor belt 35 on the lower side of the sealing component 34 passes through the drying component 37. The fifth conveyor belt 36 is arranged on the lower side of the fourth conveyor belt 35. The belt scale body 38 on the left side of the fourth conveyor belt 35 is connected to the cleaning component 37. The washed raw materials are weighed, a raw material storage assembly 39 is arranged on the left side of the belt scale body 38 to store the cleaned raw materials, the material guide protection assembly 31 includes a material guide box 311, the right side of the material guide box 311 passes through the third conveyor belt 312, a material guide plate 313 is fixed on the inner wall of the material guide box 311, the material guide plate 313 adjusts the position of the first shock absorber plate 315 through the first shock absorber 314, the flushing assembly 32 includes a second water pipe 321, the second water pipe 321 is connected to the second high-pressure nozzle 322 and flushes the raw materials that need to be cleaned, and the flat material storage scraping assembly 33 includes a filter plate 33 1. The motor on the filter plate 331 drives the fixed rod 332 to rotate, and the rotation of the fixed rod 332 drives the flat rod 335 and the scraper plate 336 on the first support rod 334 to rotate. The flat rod 335 is located at the lower side of the scraper plate 336. The motor in the first motor box 333 in the fixed rod 332 drives the first support rod 334 to rotate and adjust the positions of the flat rod 335 and the scraper plate 336. The upper side of the fixed rod 332 adjusts the position of the second shock absorber 338 through the second shock absorber 337. The sealing assembly 34 includes a leakage hole 341, and the leakage hole 341 runs through the filter plate 33 1, the motor in the second motor box 343 on the filter plate 331 drives the material blocking plate 342 to rotate and seal or open the material leakage hole 341, the drying component 37 includes a drying box 371, the drying box 371 is penetrated by an air dryer 372, the drying box 371 is embedded with an electric heating wire 373 and is used to dry the raw materials, the raw material storage component 39 includes a storage tank 391, a vibrator 392 is fixed on the outer wall of the storage tank 391, a radar level meter 393 is penetrated on the upper side of the storage tank 391, and a sliding plate 395 is fixed on the outer wall of the storage tank 391, and the sliding plate 395 is slidably connected to the second support rod 394;

[0057] Among them, at least 20 groups of raw material cleaning storage structures 3 are provided, and the 20 groups of raw material cleaning storage structures 3 are symmetrically arranged. Four groups of first shock absorbing plates 315 are provided, and three groups of first shock absorbers 314 are fixed at equal distances on each group of first shock absorbing plates 315. The flushing assembly 32 is fixed on the upper side of the inner part of the material guide box 311 and the lower side of the material guide plate 313, which is convenient for cleaning the material guide box 311 in the later stage. There are multiple groups of second high-pressure nozzles 322 distributed at equal distances on the second water pipe 321, so as to ensure the later cleaning effect. The second shock absorbing plate 338 is arranged in an arc shape, and two groups of second shock absorbers 337 are fixed between the second shock absorbing plate 338 and the fixed rod 332, so as to protect the second shock absorbing plate 338. A water guide trough is fixed on the lower side of the fourth conveyor belt 35, and the water guide trough is connected with the wastewater processor. The wastewater processor includes pebble filter material, quartz sand filter material, modified fiber ball, activated alumina ball water purification filter material and activated carbon filter material to ensure the quality of wastewater treatment.

[0058] Furthermore, the motors in the first motor box 333 and the second motor box 343 are both stepper motors, which are prior art. The leakage holes 341 and the baffle plates 342 are fan-shaped, with relatively large holes for easy leakage. At least six groups of air dryers 372 are passed through the top of the upper side of the drying box 371. A filter is provided at the air inlet of the air dryer 372 to prevent impurities from entering the drying box 371. The electric heating wire 373 is snake-shaped and wound inside the drying box 371.

[0059] Specifically, the sliding plate 395 fixed on the storage tank 391 is slidably connected to the second support rod 394 through the first shock absorber 314. Two groups of first shock absorbers 314 are provided on the sliding plate 395. The two groups of first shock absorbers 314 are symmetrically arranged. A belt scale body 38 is provided at the discharge port at the lower side of the storage tank 391 to facilitate weighing the discharged raw materials.

[0060] In the preferred scheme of this embodiment, the granular raw material enters the guide box 311 through the third conveyor belt 312 and falls on the first shock absorber plate 315, which plays a role of buffering and shock absorption with the assistance of the first shock absorber 314 on the guide plate 313. The granular raw material falls on the second shock absorber plate 338 through the discharge port, which plays a role of shock absorption with the assistance of the second shock absorber 337 on the fixed rod 332. Finally, the granular raw material is stored on the filter plate 331, and the flattening rod 335 on the lower side of the first support rod 334 on the fixed rod 332 is driven to flatten the material with the assistance of the motor on the filter plate 331 to avoid accumulation of granular raw material. The high-pressure water in the first water tank 12 enters the second high-pressure nozzle 322 through the second water pipe 321 to clean the granular raw material that needs to be cleaned, and the baffle plate 342 on the lower side of the leakage hole 341 is driven to move to one side with the assistance of the stepping motor in the second motor box 343, and the granular raw material passes through the filter plate 331. The granular raw materials fall through the leakage hole 341 to the fourth conveyor belt 35, and with the assistance of the stepper motor in the first motor box 333, the scraper plate 336 on the first support rod 334 rotates and fits the filter plate 331, and the scraper plate 336 rotates to scrape the cleaned granular raw materials on the filter plate 331 to ensure thorough discharge, and the granular raw materials fall through the fourth conveyor belt 35 to the fifth conveyor belt 36, and are air-dried with the assistance of the air dryer 372 in the drying box 371, and the drying speed is accelerated with the assistance of the electric heating wire 373. The dried granular raw materials are weighed with the assistance of the belt scale body 38, and finally stored in the storage tank 391. The granular raw materials in the storage tank 391 are leveled with the assistance of the vibrator 392 on the storage tank 391, and are measured with the assistance of the radar level meter 393, so that the belt scale body 38 is weighed and re-measured to ensure the accuracy of the data.

[0061] like Figure 1 , Figure 2 , Figure 3 and Figure 8As shown, an energy-saving structure 5 is fixed on the upper side of the storage fire extinguishing structure 1 and is used for energy-saving treatment. The front and rear sides of the storage fire extinguishing structure 1 are connected to the energy storage maintenance component 7. The energy-saving structure 5 includes an angle adjustment component 51. A first fixed plate 52 is fixed on the upper side of the angle adjustment component 51. A motor in a third motor box 54 on the first fixed plate 52 drives a rotating block 53 to rotate. A second fixed plate 55 is fixed on the upper side of the rotating block 53. The motor on the second fixed plate 55 drives an energy-saving component 56 to rotate. The energy-saving component 56 includes a first photovoltaic panel 561. The first photovoltaic panel 561 is located at the second photovoltaic panel 562. On the front side, the second photovoltaic panel 562 is fixed on the second fixed plate 55 on the rear side, the first photovoltaic panel 561 and the second photovoltaic panel 562 are rotatably connected to the third photovoltaic panel 563 via a rotating rod, the third photovoltaic panel 563, the second photovoltaic panel 562 and the first photovoltaic panel 561 are connected via a connecting rope 564, the energy storage maintenance assembly 7 includes a first energy storage bin 71, a storage battery 72 is embedded in the first energy storage bin 71, the first energy storage bin 71 is located at the rear side of the second energy storage bin 73, a maintenance room 74 and a cleaning room 75 are embedded in the second energy storage bin 73, and the maintenance room 74 is located on one side of the cleaning room 75;

[0062] Among them, there are four groups of energy-saving structures 5, which are symmetrically arranged about the central axis of the storage warehouse 11. The motors fixed on the third motor box 54 and the front side of the second fixing plate 55 are stepping motors. The second fixing plate 55 is fixed with an intelligent control tracking system, which can determine the geographical longitude and latitude position of the energy-saving component 56, so as to accurately track the angle of the sun according to the sun's trajectory, ensure that the energy-saving component 56 absorbs sunlight better and increases the sunlight utilization rate. The rear side of the second fixing plate 55 is fixed with a rubber groove plate to facilitate the support of the energy-saving component 56 when not in use;

[0063] Further, five groups of third photovoltaic panels 563 are provided, and the five groups of third photovoltaic panels 563 are rotatably connected to the rotating rod between the first photovoltaic panel 561 and the second photovoltaic panel 562. Two groups of second fixed panels 55 are provided, and the two groups of second fixed panels 55 are symmetrically arranged.

[0064] In the preferred solution of this embodiment, the second fixed plate 55 on the rotating block 53 is driven to rotate with the assistance of the stepper motor on the third motor box 54 between the first fixed plates 52, and the rotation of the second fixed plate 55 drives the energy-saving component 56 to rotate to the required angle, and the stepper motor on the front second fixed plate 55 drives the first photovoltaic panel 561 to rotate, and the rotation of the first photovoltaic panel 561 drives the third photovoltaic panel 563 to spread out through the connecting rope 564, ensuring that the first photovoltaic panel 561, the second photovoltaic panel 562 and the third photovoltaic panel 563 are In use, the first photovoltaic panel 561, the second photovoltaic panel 562 and the third photovoltaic panel 563 convert solar energy into electrical energy and store it in the battery 72 in the first energy storage compartment 71 to provide electrical energy for the entire device. With the assistance of the stepper motor in the hollow base 511, the gear 514 is driven to rotate. The gear 514 rotates through the rack 513 on the support seat 512 to drive the upper energy-saving component 56 to adjust. The maintenance room 74 in the second energy storage compartment 73 maintains all devices, and cleaning work is carried out under the action of the cleaning room 75;

[0065] like Figure 1 and Fig. 9 As shown, a patrol robot structure 6 is arranged on one side of the box-encapsulated raw material storage structure 2 and is used for patrol scanning and processing inside the storage fire extinguishing structure 1. The patrol robot structure 6 includes a first flushing component 61, a patrol robot 62 is fixed on the first flushing component 61, a second monitoring body 63 is fixed on the patrol robot 62, an auxiliary fire extinguishing component 64 is fixed on the patrol robot 62, and a code scanning component 65 is fixed on the first flushing component 61. The first flushing component 61 includes a second water tank 611, and the second water tank 611 is connected to a flushing head 613 through a third water pipe 612. The flushing head 613 is clamped and fixed between a clamp 614, and the clamp 614 is fixed on a first manipulator 615 The first manipulator 615 is fixed on the top of the second water tank 611. The auxiliary fire extinguishing assembly 64 includes a fire extinguisher 641. The fire extinguisher 641 is connected to the discharge nozzle 643 through the feeding pipe 642. The discharge nozzles 643 are evenly distributed on the third fixed plate 644. The second manipulator 645 is fixed on the third fixed plate 644. One end of the second manipulator 645 is fixed on the left side of the inspection robot 62. The code scanning assembly 65 includes a fourth fixed plate 651. The motor on the fourth fixed plate 651 drives the screw 652 to rotate. The rotation of the screw 652 drives the electric telescopic rod 654 on the support block 653 to move up and down. The automatic code scanning machine 655 is fixed on the electric telescopic rod 654;

[0066] Among them, there are two groups of inspection robot structures 6, and the two groups of inspection robot structures 6 are symmetrically arranged. There are two groups of fire extinguishers 641, and the two groups of fire extinguishers 641 are placed in the inspection robot 62. The inspection robot 62 is connected with a rotating sealing plate to facilitate the replacement of the fire extinguisher 641. The rear side of the second water tank 611 adjusts the position of the bottom plate cleaning device through a hydraulic cylinder to clean the ground. The lower side of the second water tank 611 is inlaid with a hydraulic cylinder, and the hydraulic cylinder drives the upper inspection robot 62 to adjust its height through a hydraulic rod, which is convenient for accurate fire extinguishing in the later stage.

[0067] In the preferred solution of this embodiment, the inspection is carried out with the assistance of the inspection robot 62, and the inspection situation video is transmitted to the ERP system for recording and storage with the assistance of the second monitoring body 63. With the assistance of the motor on the fourth fixed plate 651, the electric telescopic rod 654 on the support block 653 is driven to move through the screw 652, and the movement of the electric telescopic rod 654 drives the automatic barcode scanner 655 to adjust the position, so as to scan and query the packaging raw material boxes at different heights. In the event of a fire, the inspection machine The robot 62 moves to the fire source, and the pressurized tap water in the second water tank 611 is sprayed out through the flushing head 613 on the third water pipe 612. With the assistance of the first manipulator 615, the flushing head 613 in the clamp 614 is driven to adjust the angle. Similarly, the fire extinguisher 641 is opened, and the fire extinguishing agent in the fire extinguisher 641 enters the discharge nozzle 643 on the third fixed plate 644 through the delivery pipe 642. The discharge nozzle 643 on the third fixed plate 644 is adjusted in angle with the assistance of the second manipulator 645.

[0068] Working principle: When using the intelligent classification and storage system for manufacturing production raw materials, connect the external power supply, extinguish the fire with the assistance of the storage fire extinguishing structure 1, classify and store the box-packaged raw materials with the assistance of the box-packaged raw material storage structure 2, automatically clean the particle principle storage and the particle raw materials that need to be cleaned with the assistance of the raw material cleaning storage structure 3, automatically load and unload materials with the assistance of the intelligent forklift structure 4, save energy with the assistance of the energy-saving structure 5, and conduct inspections with the assistance of the inspection robot structure 6. The contents not described in detail in this specification belong to the existing technology known to professional and technical personnel in this field.

[0069] The directions or positional relationships indicated by terms such as "center", "longitudinal", "lateral", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inside" and "outside" are based on the directions or positional relationships shown in the accompanying drawings. They are merely simplified descriptions for the convenience of describing the present invention, and do not indicate or imply that the devices or elements referred to must have a specific direction, be constructed and operated in a specific direction. Therefore, they should not be understood as limitations on the protection content of the present invention.

[0070] Although the present invention has been described in detail with reference to the aforementioned embodiments, it is still possible for those skilled in the art to modify the technical solutions described in the aforementioned embodiments, or to make equivalent substitutions for some of the technical features therein. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and principles of the present invention should be included in the protection scope of the present invention.

Claims

1. An intelligent classification and storage system for manufacturing production raw materials, characterized in that: The storage and fire extinguishing structure comprises a storage and fire extinguishing structure (1), wherein a box-encapsulated raw material storage structure (2) is fixed inside the storage and fire extinguishing structure (1) and is used for classifying, labeling and storing the box-encapsulated raw materials, the box-encapsulated raw material storage structure (2) is located in front of a raw material cleaning storage structure (3), an intelligent forklift structure (4) is arranged inside the storage and fire extinguishing structure (1) and is used for automatic loading and unloading, an energy-saving structure (5) is fixed on the upper side of the storage and fire extinguishing structure (1) and is used for energy-saving processing, an inspection robot structure (6) is arranged on one side of the box-encapsulated raw material storage structure (2) and is used for inspection, scanning and processing inside the storage and fire extinguishing structure (1), and the front and rear sides of the storage and fire extinguishing structure (1) are connected to an energy storage maintenance component (7); The storage fire extinguishing structure (1) comprises a storage warehouse (11), a first water tank (12) is fixed on the upper side of the storage warehouse (11), and the first water tank (12) is connected to the fire extinguishing assembly (14) via a first water pipe (13); The fire extinguishing assembly (14) comprises a first support frame (141), wherein the first support frame (141) is configured to adjust a first high-pressure nozzle (143) on a first support plate (142) by telescoping the first support frame (141); The box packaging raw material storage structure (2) comprises a first conveyor belt (21), the left side of the first conveyor belt (21) is attached to the second conveyor belt (22), the second conveyor belt (22) passes through the labeling box (23), the labeling box (23) is telescopically adjusted to adjust the position of the automatic labeling machine (24) through the telescopic structure, and the box storage component (25) is arranged on the left side of the automatic labeling machine (24); The box storage assembly (25) comprises a second support frame (251), and a second support plate (252) is detachably mounted on the second support frame (251); The raw material cleaning storage structure (3) comprises a material guide protection component (31), a flushing component (32) and a storage flat material scraping component (33) are detachably installed in the material guide protection component (31), the storage flat material scraping component (33) is located at the lower side of the flushing component (32), a motor on the lower left end of the storage flat material scraping component (33) drives the sealing component (34) to rotate, a fourth conveyor belt (35) at the lower side of the sealing component (34) passes through the drying component (37), a fifth conveyor belt (36) is arranged at the lower side of the fourth conveyor belt (35), a belt scale body (38) at the left side of the fourth conveyor belt (35) weighs the cleaned raw materials, and a raw material storage component (39) is arranged at the left side of the belt scale body (38) to store the cleaned raw materials; The storage flat material scraper assembly (33) comprises a filter plate (331), wherein a motor on the filter plate (331) drives a fixed rod (332) to rotate, and the rotation of the fixed rod (332) drives a flat material rod (335) and a scraper plate (336) on a first support rod (334) to rotate, wherein the flat material rod (335) is located below the scraper plate (336), and a motor in a first motor box (333) in the fixed rod (332) drives the first support rod (334) to rotate and adjust the positions of the flat material rod (335) and the scraper plate (336), and the upper side of the fixed rod (332) is telescopically adjusted through a second shock absorber (337) to adjust the position of a second shock absorber plate (338); The intelligent forklift structure (4) comprises a transport robot (41), a first monitoring body (42) is fixed on the upper side of the transport robot (41), the transport robot (41) adjusts the angle of the third support frame (43) through a telescopic structure, the third support frame (43) adjusts the position of the forklift plate (44) through the telescopic structure, the front and rear outer walls of the third support frame (43) adjust the position of the auxiliary limit assembly (45) through the telescopic structure, a top plate (46) is fixed on the upper side of the third support frame (43), and a lighting lamp (47) is fixed on the upper side of the top plate (46); The auxiliary limiting assembly (45) comprises a first baffle (451), a telescopic structure on the first baffle (451) telescopically adjusting the position of a second baffle (453) on a sliding block (452), and the second baffle (453) telescopically adjusting the position of a third baffle (454) through the telescopic structure; The energy-saving structure (5) comprises an angle adjustment component (51), a first fixed plate (52) is fixed on the upper side of the angle adjustment component (51), a motor in a third motor box (54) on the first fixed plate (52) drives a rotating block (53) to rotate, a second fixed plate (55) is fixed on the upper side of the rotating block (53), and a motor on the second fixed plate (55) drives an energy-saving component (56) to rotate; The energy-saving component (56) comprises a first photovoltaic panel (561), the first photovoltaic panel (561) is located in front of a second photovoltaic panel (562), the second photovoltaic panel (562) is fixed on a second fixing plate (55) at the rear, the first photovoltaic panel (561) and the second photovoltaic panel (562) are rotatably connected to a third photovoltaic panel (563) via a rotating rod, and the third photovoltaic panel (563), the second photovoltaic panel (562) and the first photovoltaic panel (561) are connected via a connecting rope (564); The inspection robot structure (6) comprises a first flushing component (61), an inspection robot (62) is fixed on the first flushing component (61), a second monitoring body (63) is fixed on the inspection robot (62), an auxiliary fire extinguishing component (64) is fixed on the inspection robot (62), and a code scanning component (65) is fixed on the first flushing component (61); The first flushing assembly (61) comprises a second water tank (611), the second water tank (611) is connected to a flushing head (613) via a third water pipe (612), the flushing head (613) is clamped and fixed between clamps (614), the clamps (614) are fixed on a first manipulator (615), and the first manipulator (615) is fixed on the top of the second water tank (611); The auxiliary fire extinguishing assembly (64) comprises a fire extinguisher (641), the fire extinguisher (641) is connected to a discharge nozzle (643) via a feed pipe (642), the discharge nozzles (643) are equidistantly distributed on a third fixed plate (644), a second manipulator (645) is fixed on the third fixed plate (644), and one end of the second manipulator (645) is fixed on the left side of the inspection robot (62); The code scanning assembly (65) comprises a fourth fixing plate (651). A motor on the fourth fixing plate (651) drives a screw rod (652) to rotate. The rotation of the screw rod (652) drives an electric telescopic rod (654) on a support block (653) to move up and down. An automatic code scanning machine (655) is fixed on the electric telescopic rod (654).

2. The intelligent classification and storage system for manufacturing production raw materials according to claim 1 is characterized by: The material guide protection assembly (31) comprises a material guide box (311), the right side of the material guide box (311) passes through a third conveyor belt (312), a material guide plate (313) is fixed on the inner wall of the material guide box (311), and the material guide plate (313) is telescopically adjusted through a first shock absorber (314) to adjust the position of a first shock absorber plate (315).

3. The intelligent classification and storage system for manufacturing production raw materials according to claim 1 is characterized by: The flushing assembly (32) comprises a second water delivery pipe (321), the second water delivery pipe (321) being connected to a second high-pressure nozzle (322) and flushing raw materials that need to be cleaned.

4. The intelligent classification and storage system for manufacturing production raw materials according to claim 1 is characterized by: The sealing component (34) comprises a material leakage hole (341), the material leakage hole (341) penetrates the filter plate (331), and the motor in the second motor box (343) on the filter plate (331) drives the material blocking plate (342) to rotate and seal or open the material leakage hole (341).

5. The intelligent classification and storage system for manufacturing production raw materials according to claim 1 is characterized by: The drying component (37) comprises a drying box (371), the drying box (371) having an air dryer (372) running through it, and the drying box (371) having an electric heating wire (373) embedded therein for drying the raw materials.

6. The intelligent classification and storage system for manufacturing production raw materials according to claim 1 is characterized by: The raw material storage assembly (39) comprises a storage tank (391), a vibrator (392) is fixed on the outer wall of the storage tank (391), a radar level meter (393) penetrates the upper side of the storage tank (391), a sliding plate (395) is fixed on the outer wall of the storage tank (391), and the sliding plate (395) is slidably connected to a second support rod (394).

7. The intelligent classification and storage system for manufacturing production materials according to claim 1 is characterized by: The energy storage maintenance component (7) comprises a first energy storage compartment (71), a storage battery (72) is embedded in the first energy storage compartment (71), the first energy storage compartment (71) is located at the rear side of the second energy storage compartment (73), a maintenance room (74) and a cleaning room (75) are embedded in the second energy storage compartment (73), and the maintenance room (74) is located at one side of the cleaning room (75).

Citation Information

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