Intelligent pawpaw deep processing equipment
By designing intelligent and sophisticated papaya processing equipment and utilizing airflow and magnetic separation technologies, the problems of incomplete separation of foreign matter and dust pollution in papaya powder detection have been solved, enabling rapid and safe papaya powder detection and separation, and improving the quality and detection efficiency of papaya powder.
Patent Information
- Application Number
- CN202511317771.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-16
- Publication Date
- 2025-11-11
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
Existing intelligent inspection equipment for papaya processing is difficult to remove quickly or results in waste when detecting foreign objects in papaya powder. Furthermore, the separation is incomplete, and foreign objects are easily left behind. In addition, papaya powder is prone to flying or mixing with dust during the inspection process, affecting the quality and safety of the inspection.
An intelligent and sophisticated processing equipment for papaya was designed, including a material bin, a discharge component, a conveying component, a rotating component, a blowing component, a separation component, and a detection component. It utilizes airflow and magnetic force to separate foreign objects, and achieves rapid detection and separation through cyclone separation technology and a submillimeter wave detector, thus preventing papaya powder from coming into contact with the outside world.
This technology enables rapid detection and separation of papaya powder, reducing the omission and waste of foreign matter during separation, ensuring the quality and safety of papaya powder, avoiding dust pollution, and improving detection efficiency and accuracy.
Smart Images

Figure CN120920384A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of intelligent detection equipment for papaya processing, specifically intelligent and sophisticated processing equipment for papaya. Background Technology
[0002] When processing papaya, enzymatic hydrolysis, separation, and extraction are often required. The invention patent with patent application number CN201010515885.0 discloses a preparation process for high-activity liquid papain. The process has a short production cycle, and the entire production process can be completed within 5 days, which greatly improves production efficiency. The process parameters are easy to control, the equipment is easy to maintain, and the extraction rate can be close to 100%, which greatly reduces the waste of raw materials. It has low energy consumption, is energy-saving and environmentally friendly, and the overall production cost is reduced by more than 30% compared with conventional natural static immersion extraction. It is a green and environmentally friendly extraction process. To ensure the quality of papaya products after intelligent and intensive processing, intelligent testing is often required. Patent application CN202411116380.5 discloses a device and method for optically detecting foodborne pathogens. When the lifting frame rises, it also drives the magnetic plate upwards. When the magnetic plate reaches the right side of the magnetic receiving box, the magnetic blocks on the magnetic plate generate a magnetic repulsion force on the magnetic receiving box, which in turn pushes the magnetic receiving box and guide rod two to move to the left on the support. The magnetic receiving box drives the rotating rod, winding roller, and cleaning block to move synchronously. At this time, the wound steel... The wire rope is unwound from the take-up roller, compressing the torsion spring. The take-up roller, rotating rod, and cleaning block rotate inside the magnetic receiving box. When the cleaning block moves with the magnetic receiving box to the underside of the near-infrared hyperspectral system detector head, it contacts the lower surface of the detector head, cleaning dust and impurities from the surface. This prevents dust and impurities from adhering to the detector head and affecting detection quality. Because the cleaning block itself is also rotating, the cleaning effect is good, and the magnetic receiving box also facilitates the collection of dust and impurities that fall, preventing them from falling below. For fruit and food samples, the testing quality was also guaranteed. Patent application CN202110518563.X discloses a system and method for rapid detection of elements in food ingredients. This system uses testing equipment to quickly detect various elements in food ingredients, categorizes and records the different elements detected in different ingredients, and then uses these elements to create meal recipes. These meals are then provided to people who lack these nutrients or those who enjoy the meal, thus supplementing the body's required elements to achieve a balance, improve physical fitness, and replenish energy. With the aim of preventing or treating physical illnesses and improving quality of life, according to the publicly available technical solutions, existing intelligent detection equipment for papaya processing has several drawbacks. First, when detecting foreign objects in papaya powder, it often cannot quickly remove them, or it may contain large amounts of papaya powder, resulting in waste. Second, when separating and recycling the accompanying papaya powder, foreign objects are easily left behind, which is detrimental to ensuring the quality of the papaya powder. Third, during the detection of papaya powder, it is easy for papaya powder to become airborne or for dust from the air to fall into the papaya powder, which is detrimental to ensuring the safe detection of papaya powder. Summary of the Invention
[0003] In view of the shortcomings of the existing technology, the purpose of this invention is to provide intelligent and sophisticated processing equipment for papaya to solve the problems mentioned in the background. This invention has a novel structure, multiple functions, and is suitable for foreign object detection in papaya sophisticated processing operations.
[0004] To achieve the above objectives, the present invention is implemented through the following technical solution: Intelligent deep processing equipment for papaya, comprising a material box and a box cover; a discharge assembly is installed on the material box, the discharge assembly including a bottom pipe and a discharge valve; a conveying assembly is installed on one side of the material box, the conveying assembly including a side box and a connecting pipe; an inlet / outlet assembly is installed on the side box, the inlet / outlet assembly including an outlet pipe and a guide pipe; a rotating assembly is installed on the side box, the rotating assembly including a circular plate and a motor; a connecting assembly is installed on the circular plate, the connecting assembly including an upper pipe and a lower pipe; a blowing assembly is installed on the side box, the blowing assembly including a cone and a fan; a separation assembly is installed on one side of the side box, the separation assembly including a cyclone and an inner pipe; and a detection assembly is installed on the side box, the detection assembly including a cover and a detector.
[0005] Furthermore, the bottom of the material box is welded to the support leg, the box cover is threaded onto the top of the material box, the bottom of the side box is welded to the support plate, the inner side of the side box is welded with a partition plate, the partition plate is evenly distributed on the inner side of the side box, the bottom pipe is welded to the bottom of the material box, and the discharge valve is installed on the bottom pipe.
[0006] Furthermore, one end of the conduit is bolted to the bottom of the bottom pipe, and the other end of the conduit is bolted to the outer side of the side box. The circular plate is mounted on the inner wall of the side box and the partition plate respectively via a rotating shaft. Both ends of the upper pipe are welded to the circular plate, both ends of the connecting pipe are welded to the partition plate, and the outlet pipe is welded to the top of one side of the side box.
[0007] Furthermore, the bottom pipe is connected to the outlet pipe in sequence through the guide pipe, the upper pipe, the connecting pipe, and the upper pipe. The motor is mounted on the partition plate by bolts. The center of the circular plate is keyed to the output shaft of the motor. Both ends of the lower pipe are welded to the circular plate. The lower pipe and the upper pipe are both fixed to the circular plate by connecting rods. The cone is mounted on the bottom of one side of the side box by bolts. The bottom of the other side of the side box is welded with an air duct. The cone is connected to the air duct in sequence through the lower pipe, the connecting pipe, and the lower pipe.
[0008] Furthermore, the fan is bolted to the inside of the cone, and a filter cartridge is bolted to one side of the cone.
[0009] Furthermore, the cyclone is bolted to the support leg, one end of the air duct passes through the cyclone and is connected to the cyclone, the bottom end of the inner tube is installed inside the cyclone, the top end of the inner tube passes through the top of the cyclone and is welded to the bottom of one end of the guide tube, a drain pipe is welded to the bottom of the cyclone, and a discharge valve is installed on the drain pipe.
[0010] Furthermore, the bottom of the first cover is bolted to the inside of the side box, the top of the first cover extends to the top of the side box, and the other side of the side box is bolted to the second cover. The detector is bolted to the inner wall of the top of the first cover and the second cover. The first cover and the second cover are respectively fitted onto the outside of the conduit and the connecting pipe.
[0011] Furthermore, magnetic blocks are welded to the top and bottom of the circular plate, and stop blocks are welded to the inner walls of the top and bottom of the side box. Slots are opened on the inner side of the stop blocks, and insertion rods are welded to both sides of the magnetic blocks. The length and diameter of the insertion rods are equal to the depth and inner diameter of the slots.
[0012] Furthermore, the stop block has a fine hole, the slot is connected to the outside of the stop block through the fine hole, and a one-way valve is installed on the stop block, the outside of the stop block is connected to the slot in one direction through the one-way valve.
[0013] Furthermore, an intelligent control system is bolted to the side box, and the detector is connected to the intelligent control system via wires. The intelligent control system is connected to the first discharge valve, the second discharge valve, the motor, and the fan via wires. The detector is a submillimeter wave detector.
[0014] Compared with the prior art, the beneficial effects of the present invention are as follows: 1. This intelligent and sophisticated papaya processing equipment involves screening, cleaning, crushing, enzymatic hydrolysis, separation, and purification of papaya. To prevent residual papaya pits, mechanical debris, and other foreign matter in the processed product, a detection process is implemented. During detection, a fan operates, filtering air through a filter cartridge and blowing it into the inner side of the lower pipe via a cone. The air then passes through the connecting pipe and the lower pipe into the inner side of the air duct, and then through a cyclone separator and the inner pipe into the inner side of the guide tube. Papaya powder is then loaded into the inner side of the material box, and the box lid is sealed on top. The first discharge valve is opened, rotating and causing the papaya powder to fall through the bottom pipe into the inner side of the guide tube. The airflow within the guide tube propels the papaya powder to the right. A detector inside the second enclosure detects the papaya powder. When foreign matter is detected, the intelligent control system activates the circuit. The machine, driven by a motor, rotates a circular plate and connecting rod 180 degrees, causing the upper tube to rotate to the bottom and the lower tube to rotate to the top, while ensuring airflow continuity. The airflow carries foreign objects and papaya powder from the upper tube through the duct to the inside of the cyclone separator. After cyclone separation, the papaya powder, due to its low density and small particle size, is carried by the airflow to the inside of the inner tube and re-enters the inner conduit. Foreign objects are discharged to the bottom of the cyclone separator and then outwards through the discharge valve in the discharge pipe. On one hand, the papaya powder is dispersed by the airflow within the conduit, preventing a thick layer of papaya powder from affecting the detection effect. On the other hand, the papaya powder and foreign objects are fully dispersed, resulting in a small amount of papaya powder in the upper tube during the switching between the upper and lower tubes, reducing separation difficulty. Furthermore, the separation of foreign objects and papaya powder within the cyclone separator and the subsequent recycling of the papaya powder minimizes waste.
[0015] 2. When using this intelligent and sophisticated papaya processing equipment, if the detector in the second enclosure fails to detect any foreign objects, the foreign objects will enter the inner side of the connecting pipe through the upper pipe, and then be detected by the detector inside the first enclosure. The motor drives the circular plate and connecting rod, and through the switching between the upper and lower pipes, the foreign objects are carried downwards and blown to the inner side of the cyclone separator by the airflow. When a small number of smaller foreign objects are blown to the inner side of the inner pipe by the airflow inside the cyclone separator, they re-enter the inner side of the guide tube for re-detection. This allows them to be sent back to the inner side of the cyclone separator for separation and discharge, preventing the omission of foreign objects and incomplete separation, thus effectively ensuring the quality of the papaya powder.
[0016] 3. When this intelligent and sophisticated papaya processing equipment is in use, the circular plate rotates 180 degrees back and forth. The circular plate drives the magnetic block, which in turn drives the insertion rod to insert into the inner side of the slot. This allows the air in the slot to be discharged through the fine holes. Since the exhaust speed of the fine holes is insufficient, the air pressure in the slot is used for buffering to prevent the magnetic block from colliding with the stop block. The magnetic force of the magnetic block and the limiting position of the stop block ensure that the upper and lower tubes are completely aligned with the adjacent pipes after the position change, thus ensuring smooth airflow. A one-way valve facilitates the quick removal of the insertion rod, ensuring the efficiency of the upper and lower tube conversion. After the papaya powder is tested and foreign matter is separated, it is sent out through the outlet pipe and into the papaya powder filling equipment. The papaya powder does not come into contact with the outside environment during the testing, foreign matter removal, and foreign matter sorting processes, thus effectively preventing the papaya powder from flying or adhering to dust in the air, ensuring the safe testing and foreign matter separation of the papaya powder. Attached Figure Description
[0017] Figure 1 This is a schematic diagram of the intelligent deep processing equipment for papaya of the present invention. Figure 1 ; Figure 2 This is a schematic diagram of the intelligent deep processing equipment for papaya of the present invention. Figure 2 ; Figure 3 This is a schematic diagram of the intelligent deep processing equipment for papaya of the present invention. Figure 3 ; Figure 4 This is a schematic diagram of the intelligent deep processing equipment for papaya of the present invention. Figure 4 ; Figure 5 This is a cross-sectional view of the intelligent deep processing equipment for papaya of the present invention; Figure 6 This is a side sectional view of the side box of the intelligent deep processing equipment for papaya of the present invention; Figure 7 This is a schematic diagram of the circular plate in the intelligent deep processing equipment for papaya of the present invention; Figure 8 This is a schematic diagram of the structure of the stop block in the intelligent deep processing equipment for papaya of the present invention; In the diagram: 1. Material box; 2. Box cover; 3. Support leg; 4. Support plate; 5. Bottom pipe; 6. Discharge valve one; 7. Side box; 8. Outlet pipe; 9. Connecting pipe; 10. Guide pipe; 11. Cover body one; 12. Cover body two; 13. Detector; 14. Circular plate; 15. Upper pipe; 16. Lower pipe; 17. Connecting rod; 18. Motor; 19. Conical cylinder; 20. Filter cartridge; 21. Fan; 22. Air duct; 23. Cyclone; 24. Inner pipe; 25. Pipeline; 26. Discharge valve two; 27. Magnetic block; 28. Stop block; 29. Slot; 30. Insert rod; 31. One-way valve; 32. Fine hole. Detailed Implementation
[0018] To make the technical means, creative features, objectives and effects of this invention easier to understand, the invention will be further described below in conjunction with specific embodiments.
[0019] Please see Figures 1 to 8 This invention provides a technical solution: intelligent deep processing equipment for papaya, including a material box 1 and a box cover 2. A discharge assembly is installed on the material box 1, comprising a bottom pipe 5 and a discharge valve 6. A conveying assembly is installed on one side of the material box 1, comprising a side box 7 and a connecting pipe 9. An inlet / outlet assembly is installed on the side box 7, comprising an outlet pipe 8 and a guide pipe 10. A rotating assembly is installed on the side box 7, comprising a circular plate 14 and a motor 18. A connecting assembly is installed on the circular plate 14, comprising an upper pipe 1. 5 and lower pipe 16, a blowing assembly is installed on the side box 7, the blowing assembly includes a cone 19 and a fan 21, a separation assembly is installed on one side of the side box 7, the separation assembly includes a cyclone 23 and an inner pipe 24, a detection assembly is installed on the side box 7, the detection assembly includes a cover 11 and a detector 13, the bottom of the material box 1 is welded to the support leg 3, the box cover 2 is threaded onto the top of the material box 1, the bottom of the side box 7 is welded to the support plate 4, and partitions are welded to the inner side of the side box 7, the partitions are evenly distributed on the inner side of the side box 7, and so on. The bottom pipe 5 is welded to the bottom of the material box 1. The first discharge valve 6 is installed on the bottom pipe 5. An intelligent control system is bolted to the side box 7. The detector 13 is connected to the intelligent control system via wires. The intelligent control system is connected to the first discharge valve 6, the second discharge valve 26, the motor 18, and the fan 21 via wires. The detector 13 is a submillimeter wave detector. During use, if the detector 13 in the second cover 12 misses a detection, foreign objects enter the inside of the connecting pipe 9 through the upper pipe 15 and are then detected by the detector 13 inside the first cover 11. The machine operates by using a motor 18 to drive a circular plate 14 and a connecting rod 17. Through the switching between the upper tube 15 and the lower tube 16, foreign objects are carried downwards and blown into the inner side of the cyclone 23 by the airflow. When a small number of smaller foreign objects are blown into the inner tube 24 by the airflow inside the cyclone 23, the foreign objects re-enter the inner side of the guide tube 10 for re-detection. This allows them to be sent back into the inner side of the cyclone 23 for separation and discharge, avoiding the omission of foreign objects or incomplete separation, and effectively ensuring the quality of the papaya powder.
[0020] In this embodiment, the fan 21 is bolted to the inside of the cone 19. A filter cartridge 20 is bolted to one side of the cone 19. The bottom of the first cover 11 is bolted to the inside of the side box 7. The top of the first cover 11 extends to the top of the side box 7. A second cover 12 is bolted to the other side of the side box 7. The detector 13 is bolted to the inner wall of the top of the first cover 11 and the second cover 12. The first cover 11 and the second cover 12 are respectively fitted onto the duct 10 and the connecting... On the outside of the tube 9, magnetic blocks 27 are welded to the top and bottom of the circular plate 14. Blocks 28 are welded to the inner walls of the top and bottom of the side box 7. Slots 29 are formed on the inner side of the blocks 28. Insert rods 30 are welded to both sides of the magnetic blocks 27. The length and diameter of the insert rods 30 are equal to the depth and inner diameter of the slots 29. Fine holes 32 are formed on the blocks 28. The slots 29 are connected to the outside of the blocks 28 through the fine holes 32. A one-way valve 31 is installed on the blocks 28. The outer side of block 28 is connected to slot 29 in one direction via one-way valve 31. During use, when the circular plate 14 rotates 180 degrees back and forth, the circular plate 14 drives the magnetic block 27, which in turn drives the insertion rod 30 to insert into the inner side of slot 29, expelling air from slot 29 through fine hole 32. Since the exhaust speed of fine hole 32 is insufficient, the air pressure in slot 29 is used for buffering to prevent magnetic block 27 from colliding with stop block 28. The magnetic force of magnetic block 27 and the limiting position of stop block 28 are used to ensure the upper tube 15 and the lower tube 28 are properly positioned. After the position is changed, pipe 16 is completely aligned with the adjacent pipe, thus ensuring smooth airflow. The one-way valve 31 facilitates the quick removal of the insertion rod 30, ensuring the conversion efficiency between the upper pipe 15 and the lower pipe 16. After the papaya powder is tested and foreign matter is separated, it is sent out through the outlet pipe 8 and into the papaya powder filling equipment. The papaya powder does not come into contact with the outside world during the testing, foreign matter removal, and foreign matter sorting processes, thus effectively preventing the papaya powder from flying or adhering to dust in the air, ensuring the safe testing and foreign matter separation of the papaya powder.
[0021] In this embodiment, one end of the conduit 10 is bolted to the bottom of the bottom pipe 5, and the other end of the conduit 10 is bolted to the outer side of the side box 7. The circular plate 14 is mounted on the inner wall and the partition of the side box 7 via a rotating shaft. Both ends of the upper pipe 15 are welded to the circular plate 14. Both ends of the connecting pipe 9 are welded to the partition. The outlet pipe 8 is welded to the top of one side of the side box 7. The bottom pipe 5 is connected to the outlet pipe 8 in sequence via the conduit 10, the upper pipe 15, the connecting pipe 9, and the upper pipe 15. The motor 18 is bolted to the partition. The center of the circular plate 14 is keyed to the output shaft of the motor 18. Both ends of the lower pipe 16 are welded to the circular plate 14. Both the lower pipe 16 and the upper pipe 15 are fixed by the connecting rod 17. On the circular plate 14, the cone 19 is bolted to the bottom of one side of the side box 7. A duct 22 is welded to the bottom of the other side of the side box 7. The cone 19 is connected to the duct 22 via a lower pipe 16, a connecting pipe 9, and another lower pipe 16. The cyclone 23 is bolted to the support leg 3. One end of the duct 22 passes through and connects to the cyclone 23. The bottom end of the inner pipe 24 is installed inside the cyclone 23, and the top end of the inner pipe 24 passes through the top of the cyclone 23 and is welded to the bottom of one end of the guide pipe 10. A drain pipe 25 is welded to the bottom of the cyclone 23, and a discharge valve 26 is installed on the drain pipe 25. During the deep processing of papaya, the papaya needs to be screened, cleaned, crushed, and processed with enzymes. The process involves disintegration, separation, and purification. To prevent residual papaya seeds, mechanical debris, and other foreign matter from remaining in the processed product, a detection process is performed. During detection, fan 21 operates, filtering air through filter cartridge 20 and then blowing it through cone 19 into the inner side of lower pipe 16. The air then passes through connecting pipe 9 and lower pipe 16 into the inner side of air duct 22, and then through cyclone separator 23 and inner pipe 24 into the inner side of guide tube 10. Papaya powder is then loaded into the inner side of material box 1, and box cover 2 is placed on top of material box 1. Discharge valve 6 is opened, rotating and causing the papaya powder to fall through bottom pipe 5 into the inner side of guide tube 10. The airflow within guide tube 10 propels the papaya powder to the right. Detector 13 inside enclosure 12 detects the papaya powder. When a positive result is detected... When foreign objects are present, the intelligent control system activates motor 18, which rotates the circular plate 14 and connecting rod 17 180 degrees. This causes the upper pipe 15 to rotate downwards and the lower pipe 16 to rotate upwards, ensuring airflow continuity. The airflow then blows the foreign objects and papaya powder from the upper pipe 15 through the air duct 22 to the inside of the cyclone separator 23. After cyclone separation, the papaya powder, due to its low density and small particle size, is carried by the airflow to the inside of the inner pipe 24 and then re-enters the inside of the guide tube 10. The foreign objects are discharged to the bottom of the cyclone separator 23 and then discharged outwards through the discharge valve 26 in the discharge pipe 25. On the one hand, the papaya powder is dispersed by the airflow within the guide tube 10, preventing a thick layer of papaya powder from affecting the detection effect. On the other hand, the papaya powder and foreign objects are fully dispersed.This design ensures that when the upper pipe 15 and lower pipe 16 switch, the amount of papaya powder in the upper pipe 15 is very small, reducing the difficulty of separation. Furthermore, foreign matter and papaya powder are separated within the cyclone separator 23, and the papaya powder is then recycled, minimizing waste.
[0022] This intelligent papaya deep processing equipment provides power to all electrical equipment via an external power source. The deep processing of papaya involves screening, cleaning, crushing, enzymatic hydrolysis, separation, and purification. To prevent residual papaya seeds, mechanical debris, and other foreign matter in the processed product, a testing process is performed. During testing, the blower 21 operates, filtering air through the filter cartridge 20 and then blowing it through the cone 19 into the inner side of the lower pipe 16. The air then passes through the connecting pipe 9 and the lower pipe 16 into the inner side of the air duct 22, and then through the cyclone separator 23 and the inner pipe 24 into the inner side of the guide tube 10. Papaya powder is then loaded into the inner side of the material box 1, and the box cover 2 is sealed on top of the material box 1. The discharge valve 6 is opened, and it rotates to pass the papaya powder through... The bottom pipe 5 falls to the inside of the guide tube 10. The airflow in the guide tube 10 blows the papaya powder to the right. The detector 13 inside the cover 12 detects the papaya powder. When foreign objects are detected, the intelligent control system turns on the motor 18. The motor 18 drives the circular plate 14 and the connecting rod 17 to rotate 180 degrees, thereby causing the upper pipe 15 to rotate downwards and the lower pipe 16 to rotate upwards, while ensuring the airflow is unobstructed. The airflow blows the foreign objects and papaya powder in the upper pipe 15 through the air duct 22 to the inside of the cyclone separator 23. After cyclone separation, due to the low density and small particle size of the papaya powder, it is carried by the airflow to the inside of the inner pipe 24 and re-enters the inside of the guide tube 10. The foreign objects are discharged to the bottom of the cyclone separator 23 and then through the discharge valve 26 in the discharge pipe 25. The papaya powder is discharged outwards. On the one hand, the airflow disperses the papaya powder within the guide tube 10, preventing a thick layer of papaya powder from affecting the detection effect. On the other hand, the papaya powder and foreign matter are fully dispersed, resulting in a small amount of papaya powder in the upper tube 15 when switching between the upper tube 15 and the lower tube 16, reducing the difficulty of separation. Furthermore, the foreign matter and papaya powder are separated within the cyclone 23, and the papaya powder is recycled, reducing waste. If the detector 13 in the second enclosure 12 misses a detection, the foreign matter enters the inner side of the connecting tube 9 through the upper tube 15, and is then detected by the detector 13 in the first enclosure 11. The motor 18 drives the circular plate 14 and the connecting rod 17, and the switching between the upper tube 15 and the lower tube 16 carries the foreign matter downwards. The airflow blows the foreign objects to the inside of the cyclone 23. When a small amount of foreign matter is blown to the inside of the inner tube 24 by the airflow, it re-enters the inside of the guide tube 10 for further inspection. This allows it to be sent back to the inside of the cyclone 23 for separation and discharge, preventing any omissions or incomplete separation and effectively ensuring the quality of the papaya powder. When the circular plate 14 rotates 180 degrees, it drives the magnetic block 27, which in turn drives the insertion rod 30 to insert into the inside of the slot 29. This discharges air from the slot 29 through the fine hole 32. Since the exhaust speed of the fine hole 32 is insufficient, the air pressure inside the slot 29 acts as a buffer to prevent the magnetic block 27 from colliding with the stop block 28.The magnetic force of the magnetic block 27 and the limiting position of the stop block 28 ensure that the upper pipe 15 and lower pipe 16 are completely aligned with the adjacent pipes after the position change, thus ensuring smooth airflow. The one-way valve 31 facilitates the rapid removal of the insertion rod 30, ensuring efficient switching between the upper pipe 15 and lower pipe 16. After detection and foreign object separation, the papaya powder is sent out through the outlet pipe 8 and into the papaya powder filling equipment. During detection, foreign object removal, and foreign object sorting, the papaya powder does not come into contact with the outside environment, effectively preventing it from flying or adhering to airborne dust, ensuring safe detection and foreign object separation of the papaya powder.
[0023] The foregoing has shown and described the basic principles, main features, and advantages of the present invention. It will be apparent to those skilled in the art that the present invention is not limited to the details of the exemplary embodiments described above, and that the invention can be implemented in other specific forms without departing from its spirit or essential characteristics. Therefore, the embodiments should be considered illustrative and non-limiting in all respects, and the scope of the invention is defined by the appended claims rather than the foregoing description. Thus, all variations falling within the meaning and scope of equivalents of the claims are intended to be included within the present invention. No reference numerals in the claims should be construed as limiting the scope of the claims.
[0024] Furthermore, it should be understood that although this specification describes embodiments, not every embodiment contains only one independent technical solution. This narrative style is merely for clarity. Those skilled in the art should consider the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that can be understood by those skilled in the art.
Claims
1. A papaya intelligent deep processing equipment, comprising a material box (1) and a box cover (2), wherein a discharge assembly is installed on the material box (1), the discharge assembly comprising a bottom pipe (5) and a discharge valve (6), and a conveying assembly is installed on one side of the material box (1), the conveying assembly comprising a side box (7) and a connecting pipe (9), characterized in that: An inlet / outlet assembly is installed on the side box (7), the inlet / outlet assembly includes an outlet pipe (8) and a conduit (10). A rotating assembly is installed on the side box (7), the rotating assembly includes a circular plate (14) and a motor (18). A connecting assembly is installed on the circular plate (14), the connecting assembly includes an upper pipe (15) and a lower pipe (16). A blowing assembly is installed on the side box (7), the blowing assembly includes a cone (19) and a fan (21). A separation assembly is installed on one side of the side box (7), the separation assembly includes a cyclone (23) and an inner pipe (24). A detection assembly is installed on the side box (7), the detection assembly includes a cover (11) and a detector (13).
2. The intelligent deep processing equipment for papaya according to claim 1, characterized in that: The bottom of the material box (1) is welded to the support leg (3), the box cover (2) is threaded onto the top of the material box (1), the bottom of the side box (7) is welded to the support plate (4), the inner side of the side box (7) is welded with a partition plate, the partition plate is evenly distributed on the inner side of the side box (7), the bottom pipe (5) is welded to the bottom of the material box (1), and the discharge valve (6) is installed on the bottom pipe (5).
3. The intelligent deep processing equipment for papaya according to claim 2, characterized in that: One end of the conduit (10) is bolted to the bottom of the bottom pipe (5), and the other end of the conduit (10) is bolted to the outer side of the side box (7). The circular plate (14) is mounted on the inner wall and the partition of the side box (7) respectively by a rotating shaft. Both ends of the upper pipe (15) are welded to the circular plate (14). Both ends of the connecting pipe (9) are welded to the partition. The outlet pipe (8) is welded to the top of one side of the side box (7).
4. The intelligent deep processing equipment for papaya according to claim 3, characterized in that: The bottom pipe (5) is connected to the outlet pipe (8) in sequence through the conduit (10), the upper pipe (15), the connecting pipe (9), and the upper pipe (15). The motor (18) is mounted on the partition plate by bolts. The center of the circular plate (14) is keyed to the output shaft of the motor (18). Both ends of the lower pipe (16) are welded to the circular plate (14). The lower pipe (16) and the upper pipe (15) are both fixed to the circular plate (14) by the connecting rod (17). The cone (19) is mounted on the bottom of one side of the side box (7) by bolts. The bottom of the other side of the side box (7) is welded with the air duct (22). The cone (19) is connected to the air duct (22) in sequence through the lower pipe (16), the connecting pipe (9), and the lower pipe (16).
5. The intelligent deep processing equipment for papaya according to claim 4, characterized in that: The fan (21) is bolted to the inside of the cone (19), and a filter cartridge (20) is bolted to one side of the cone (19).
6. The intelligent deep processing equipment for papaya according to claim 5, characterized in that: The cyclone (23) is bolted to the support leg (3). One end of the air pipe (22) passes through the cyclone (23) and is connected to the cyclone (23). The bottom end of the inner tube (24) is installed inside the cyclone (23). The top end of the inner tube (24) passes through the top of the cyclone (23) and is welded to the bottom of one end of the guide tube (10). A drain pipe (25) is welded to the bottom of the cyclone (23). A discharge valve (26) is installed on the drain pipe (25).
7. The intelligent deep processing equipment for papaya according to claim 6, characterized in that: The bottom of the first cover (11) is bolted to the inside of the side box (7), and the top of the first cover (11) extends to the top of the side box (7). The other side of the side box (7) is bolted to the second cover (12). The detector (13) is bolted to the inner wall of the top of the first cover (11) and the second cover (12). The first cover (11) and the second cover (12) are respectively fitted on the outside of the conduit (10) and the connecting pipe (9).
8. The intelligent deep processing equipment for papaya according to claim 7, characterized in that: The top and bottom of the circular plate (14) are welded with magnetic blocks (27), and the inner walls of the top and bottom of the side box (7) are welded with blocks (28). The inner side of the blocks (28) is provided with slots (29). The two sides of the magnetic blocks (27) are welded with insert rods (30). The length and diameter of the insert rods (30) are equal to the depth and inner diameter of the slots (29).
9. The intelligent deep processing equipment for papaya according to claim 8, characterized in that: The stop block (28) has a fine hole (32), and the slot (29) is connected to the outside of the stop block (28) through the fine hole (32). A one-way valve (31) is installed on the stop block (28), and the outside of the stop block (28) is connected to the slot (29) in one direction through the one-way valve (31).
10. The intelligent deep processing equipment for papaya according to claim 9, characterized in that: The side box (7) is equipped with an intelligent control system by bolts. The detector (13) is connected to the intelligent control system by wires. The intelligent control system is connected to the first discharge valve (6), the second discharge valve (26), the motor (18), and the fan (21) by wires. The detector (13) is a submillimeter wave detector.
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