Carrot juice powder solid beverage production line packaging machine

By designing a carrot juice powder solid beverage production line packaging machine that includes a conveyor belt, buffer tank, feeding mechanism, cleaning mechanism and filter plate, the problems of easy moisture absorption, easy oxidation and poor fluidity in the production process of carrot powder solid beverage are solved, and efficient packaging is achieved, preventing blockage and oxidation is ensured, and product quality and production efficiency are ensured.

CN120229408AInactive Publication Date: 2025-07-01JIANGSU BOKE BIOTECHNOLOGY DEVELOPMENT CO LTD
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Patent Information

Application Number
CN202510451574.9
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-11
Publication Date
2025-07-01
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

During the production process, carrot powder solid beverages are prone to moisture absorption, oxidation and poor fluidity, resulting in low production efficiency, unstable product quality and short shelf life. Existing packaging equipment is not ideal for anti-blocking, anti-oxidation and impurity filtration.

Method used

A carrot juice powder solid beverage production line packaging machine is designed, using components such as conveyor belts, buffer tanks, feeding mechanisms, cleaning mechanisms and filter plates. Through technical means such as gears, synchronization belts, sweeping rods, scrapers, vacuum pumps, vitamin E solution tanks, etc., the uniform flow of the powder is achieved, preventing blockage, preventing oxidation and impurity filtration.

Benefits of technology

It improves packaging efficiency, prevents powder clogging and oxidation, ensures product quality and production efficiency, and extends the product's shelf life.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of food packaging machinery, in particular to a carrot juice powder solid beverage production line packaging machine which comprises a workbench, a conveying belt is installed at the upper end of the workbench, an operation box is fixedly connected to the upper end of the workbench, and a buffer tank is slidably connected to the inner side of the operation box; a first support is fixedly connected to the position, close to one side, of the upper end of the operation box, a first motor is installed at the upper end of the first support, a second support is fixedly connected to the position, close to the other side, of the upper end of the conveying belt, a cleaning mechanism is installed at the upper end of the second support, and a feeding mechanism is installed on the outer side of the buffer tank. Through cooperation of the first gear, the second gear and the outer gear ring, the buffer tank and the discharging auger rod can rotate oppositely, so that the packaging speed is increased, when the buffer tank rotates, the idler wheels and the protruding blocks interact, the buffer tank shakes, carrot powder blockage is avoided, vibration feeding and a screw conveying system work cooperatively, and it is ensured that powder flows evenly.
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Description

Technical Field

[0001] The present invention relates to the technical field of food packaging machinery, and particularly to a sealing machine for a carrot juice powder solid beverage production line. Background Art

[0002] As a healthy food rich in vitamins and minerals, carrot powder solid beverage has received extensive attention in recent years. However, during the production process, the characteristics of carrot powder (such as easy moisture absorption, easy oxidation, poor fluidity, etc.) and technical problems in the packaging process have brought challenges to production efficiency, product quality, and shelf life.

[0003] Traditional packaging equipment has obvious deficiencies in dealing with the moisture absorption and oxidation of carrot powder. For example, the powder in the buffer tank is prone to caking and blocking, resulting in reduced production efficiency. During the packaging process, the powder comes into contact with oxygen, accelerating the oxidation of nutrients. In addition, incomplete cleaning of the bottle body may cause impurity residues, affecting product hygiene and quality. In the prior art, although some equipment adopts a vibrating feeding and screw conveying system, the effects in anti-blocking, anti-oxidation, and impurity filtration are still not ideal. For this reason, we propose a sealing machine for a carrot juice powder solid beverage production line. Summary of the Invention

[0004] In order to make up for the deficiencies of the prior art and solve at least one technical problem proposed in the background art, the present invention proposes a sealing machine for a carrot juice powder solid beverage production line.

[0005] The technical solution adopted by the present invention to solve its technical problems is: a sealing machine for a carrot juice powder solid beverage production line, including a workbench. A conveyor belt is installed at the upper end of the workbench. An operation box is fixedly connected to the upper end of the workbench. A buffer tank is slidably connected to the inside of the operation box. A first bracket is fixedly connected to a position near one side of the upper end of the operation box. A first motor is installed at the upper end of the first bracket. A second bracket is fixedly connected to a position near the other side of the upper end of the conveyor belt. A cleaning mechanism is installed at the upper end of the second bracket. A feeding mechanism is installed outside the buffer tank.

[0006] Preferably, the feeding mechanism includes a first gear fixedly connected to the output shaft of the first motor. A first synchronous belt is rotatably connected to the outside of the first gear. A second gear is rotatably connected to the inside of the first synchronous belt. A first rotating shaft is fixedly connected to the inside of the second gear. The inside of the first rotating shaft is designed with a hollow. The outside of the first rotating shaft is rotatably connected to the buffer tank. The outside of the first rotating shaft penetrates through the buffer tank. An air extraction pipe is fixedly connected to the inside of the buffer tank at the outside of the first rotating shaft. Two symmetrically arranged sweeping rods are fixedly connected to the lower side of the air extraction pipe at the outside of the first rotating shaft. Scrapers are fixedly connected to one side of each of the two sweeping rods away from each other. A discharging auger rod is fixedly connected to the lower end of the first rotating shaft.

[0007] Preferably, an external gear ring is rotatably connected below the first synchronous belt on the outer side of the first gear, and the inner wall of the external gear ring is fixedly connected to the buffer tank through a clamping block.

[0008] Preferably, the feeding mechanism further includes two groups of symmetrically arranged T-shaped rods fixedly connected to the buffer tank. A sliding rod is slidably connected to the outer side of the T-shaped rod near the upper end. A ball is installed at the upper end of the sliding rod, and the ball is slidably connected inside the operation box. A spring is arranged inside the sliding rod. One end of the spring is fixedly connected to the sliding rod, and the other end of the spring is fixedly connected to the T-shaped rod.

[0009] Preferably, the lower end of the T-shaped rod is fixedly connected to a third bracket. A roller is rotatably connected inside the third bracket. An annular plate is rotatably connected to the outer side of the roller. A plurality of convex blocks are fixedly connected to the upper end of the annular plate. The outer side of the annular plate is fixedly connected to the operation box through a clamping block.

[0010] Preferably, a filter plate is rotatably connected to the outer side of the first rotating shaft. The outer side of the filter plate is fixedly connected to the buffer tank. The filter plate is designed as a sector angle.

[0011] Preferably, a plurality of groups of oppositely arranged auger rods are rotatably connected to the included angle at the upper end of the filter plate. Third gears are fixedly connected to both ends of the oppositely arranged auger rods. The other end of the third gear is rotatably connected to a fixing plate through a rotating shaft. The lower end of the fixing plate is fixedly connected to an installation box. One side of the two installation boxes close to each other is fixedly connected to the buffer tank. A second motor is installed on one side of one of the two fixing plates. The output shaft of the second motor is fixedly connected to one group of oppositely arranged auger rods. A second synchronous belt is rotatably connected to the outer sides of the plurality of third gears. The oppositely arranged auger rods are designed in an arc shape and are made of a soft material.

[0012] Preferably, the cleaning mechanism includes a vacuum pump fixedly connected to the second bracket. The input port of the vacuum pump is rotatably connected to the first rotating shaft. The output port of the vacuum pump is fixedly connected to an exhaust pipe. A connecting plate is fixedly connected to the outer side of the exhaust pipe near the lower end. A vitamin E solution tank is fixedly connected to the inner side of the connecting plate. A pneumatic valve is installed at the lower end of the vitamin E solution tank. The driving air hole of the pneumatic valve is fixedly connected to the exhaust pipe through a pipeline.

[0013] Preferably, a second rotating shaft is rotatably connected to the inner side of the vitamin E solution tank. A blade is fixedly connected to the lower end of the second rotating shaft. A fourth gear is fixedly connected to the upper end of the second rotating shaft. A third synchronous belt is rotatably connected to the outer side of the fourth gear. A fifth gear is rotatably connected to the inner side of the third synchronous belt. A third rotating shaft is fixedly connected to the lower end of the fifth gear. A T-shaped sleeve is rotatably connected to the outer side of the third rotating shaft. One end of the T-shaped sleeve is fixedly connected to the operation box.

[0014] Preferably, a sixth gear is fixedly connected to the lower end of the third rotating shaft. A fourth synchronous belt is rotatably connected to the outer side of the sixth gear. A seventh gear is rotatably connected to the inner side of the fourth synchronous belt. The upper end of the seventh gear is fixedly connected to the first gear through a rotating shaft. A plurality of cleaning rods are fixedly connected to the lower end of the fourth synchronous belt. The cleaning rods are made of a soft material. A brush is arranged on one side of the cleaning rods.

[0015] Compared with the prior art, the present invention provides a packaging machine for a carrot juice powder solid beverage production line, which has the following beneficial effects: 1. Through the cooperation of the first gear, the second gear and the external tooth ring, the buffer tank and the discharging auger rod can rotate in opposite directions, thereby improving the packaging efficiency. When the buffer tank rotates, the rollers and the bumps interact with each other, causing the buffer tank to shake, avoiding the blockage of carrot powder. The vibrating feeding and screw conveying systems work together to ensure the uniform flow of the powder, prevent blockage, and improve the production efficiency. The cooperative design of the sweeping rod and the scraper can not only stir the powder to prevent caking, but also scrape the residual powder on the inner wall of the buffer tank, avoiding the growth of bacteria, thereby improving the packaging efficiency and preventing blockage.

[0016] 2. Aiming at the problem that carrot juice powder is easy to oxidize, the vacuum pump and the air extraction pipe cooperate to extract the air in the buffer tank, maintain a vacuum state, reduce the contact between the powder and oxygen, and at the same time ensure a low humidity environment to prevent moisture absorption and caking. The included angle design of the filter plate can effectively filter the impurities in the powder, and the movement of the buffer tank concentrates the impurities at the included angle position for centralized treatment. The opposite auger rod and the second motor cooperate to convey the impurities at the included angle position to the installation box for centralized collection. During the conveying process, the extrusion action of the opposite auger rod can crush some impurities and pass through the filter plate, accelerating the filtering speed, thereby performing anti-oxidation treatment and impurity filtering on the powder.

[0017] 3. Through the cooperation of the seventh gear and the sixth gear, the cleaning rods can clean the outside of the bottle body before filling, avoiding the residue of water stains or impurities. The exhaust pipe and the pneumatic valve cooperate to clean the inside of the bottle body with high-pressure gas to keep it clean. At the same time, the high-pressure air flow drives the pneumatic valve to open, and the antioxidant in the vitamin E solution tank is evenly sprayed in the bottle body to prevent the oxidation of the nutritional components of the carrot powder and ensure the product quality. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] Figure 1 Schematic diagram of the overall structure of a packaging machine for a carrot juice powder solid beverage production line proposed by the present invention; Figure 2 Cross-sectional schematic diagram of the overall structure of a packaging machine for a carrot juice powder solid beverage production line proposed by the present invention; Figure 3 Schematic diagram of the overall structure of the feeding mechanism of a packaging machine for a carrot juice powder solid beverage production line proposed by the present invention; Figure 4 Cross-sectional schematic diagram of the overall structure of the feeding mechanism of a packaging machine for a carrot juice powder solid beverage production line proposed by the present invention Figure 1 ; Figure 5 A packaging machine for a carrot juice powder solid beverage production line proposed by the present invention Figure 4 Enlarged schematic diagram of part A structure; Figure 6 Cross-sectional schematic diagram of the overall structure of the feeding mechanism of a packaging machine for a carrot juice powder solid beverage production line proposed by the present invention Figure 2 ; Figure 7 Cross-sectional schematic diagram of the overall structure of the feeding mechanism of a packaging machine for a carrot juice powder solid beverage production line proposed by the present invention Figure 3 ; Figure 8 Schematic diagram of the overall structure of the cleaning mechanism of a packaging machine for a carrot juice powder solid beverage production line proposed by the present invention; Figure 9 Cross-sectional schematic diagram of the overall structure of the cleaning mechanism of a packaging machine for a carrot juice powder solid beverage production line proposed by the present invention; Figure 10 A packaging machine for a carrot juice powder solid beverage production line proposed by the present invention Figure 9 Enlarged schematic diagram of part B structure.

[0019] In the figure: 1, workbench; 2, conveyor belt; 3, operation box; 4, buffer tank; 5, first bracket; 6, first motor; 7, feeding mechanism; 71, first gear; 72, first synchronous belt; 73, second gear; 74, first rotating shaft; 75, suction pipe; 76, filter plate; 77, sweeping rod; 78, scraper; 79, discharging auger rod; 710, annular plate; 711, bump; 712, T-shaped rod; 713, sliding rod; 714, ball; 715, spring; 716, third bracket; 717, roller; 718, external gear ring; 719, installation box; 720, fixing plate; 721, counter-rotating auger rod; 722, second motor; 723, third gear; 724, second synchronous belt; 8, second bracket; 9, cleaning mechanism; 91, vacuum pump; 92, exhaust pipe; 93, connecting plate; 94, vitamin E solution tank; 95, second rotating shaft; 96, blade; 97, fourth gear; 98, third synchronous belt; 99, fifth gear; 910, third rotating shaft; 911, T-shaped sleeve; 912, sixth gear; 913, fourth synchronous belt; 914, seventh gear; 915, cleaning rod; 916, pneumatic valve. Specific embodiments

[0020] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention.

[0021] Please refer to Figures 1 - 10 , a sealing machine for a carrot juice powder solid beverage production line, including a workbench 1, a conveyor belt 2 is installed at the upper end of the workbench 1, an operation box 3 is fixedly connected to the upper end of the workbench 1, a buffer tank 4 is slidably connected to the inside of the operation box 3, a first bracket 5 is fixedly connected to a position near one side of the upper end of the operation box 3, a first motor 6 is installed at the upper end of the first bracket 5, a second bracket 8 is fixedly connected to a position near the other side of the upper end of the conveyor belt 2, a cleaning mechanism 9 is installed at the upper end of the second bracket 8, and a feeding mechanism 7 is installed outside the buffer tank 4.

[0022] In this embodiment, the feeding mechanism 7 includes a first gear 71 fixedly connected to the output shaft of the first motor 6, a first synchronous belt 72 is rotatably connected to the outside of the first gear 71, a second gear 73 is rotatably connected to the inside of the first synchronous belt 72, a first rotating shaft 74 is fixedly connected to the inside of the second gear 73, the inside of the first rotating shaft 74 is designed with a hollow, the outside of the first rotating shaft 74 is rotatably connected to the buffer tank 4, the outside of the first rotating shaft 74 penetrates through the buffer tank 4, a suction pipe 75 is fixedly connected to the inside of the buffer tank 4 on the outside of the first rotating shaft 74, two groups of symmetrically arranged sweeping rods 77 are fixedly connected to the lower part of the suction pipe 75 on the outside of the first rotating shaft 74, scraping plates 78 are fixedly connected to one side of the two groups of sweeping rods 77 away from each other, and a discharging auger rod 79 is fixedly connected to the lower end of the first rotating shaft 74.

[0023] Specifically, the output shaft of the first motor 6 drives the first gear 71 to rotate. When the first gear 71 rotates, it drives the second gear 73 to rotate through the first synchronous belt 72. The second gear 73 drives the first rotating shaft 74 to rotate, and the first rotating shaft 74 drives the sweeping rod 77 to stir the carrot powder to prevent powder caking. When the sweeping rod 77 rotates, it drives the scraping plate 78 to rotate, and the scraping plate 78 scrapes the inner wall of the buffer tank 4 to prevent the carrot powder sticking to the inner wall of the buffer tank 4 from getting damp. The first rotating shaft 74 drives the discharging auger rod 79 to rotate, so that the discharging auger rod 79 discharges the carrot powder from the buffer tank 4, thereby filling the bottle body. The discharging auger rod 79 and the buffer tank 4 rotate in opposite directions, thereby improving the filling speed.

[0024] In this embodiment, an external gear ring 718 is rotatably connected below the first synchronous belt 72 on the outside of the first gear 71, and the inner wall of the external gear ring 718 is fixedly connected to the buffer tank 4 through a clamping block.

[0025] Specifically, the first gear 71 drives the external gear ring 718 to rotate, and the external gear ring 718 drives the buffer tank 4 to rotate in the operation box 3. The buffer tank 4 and the first rotating shaft 74 rotate in opposite directions.

[0026] In this embodiment, the feeding mechanism 7 further includes two groups of symmetrically arranged T-shaped rods 712 fixedly connected to the buffer tank 4. A sliding rod 713 is slidably connected to the outer side of the T-shaped rod 712 near the upper end. A ball 714 is installed at the upper end of the sliding rod 713, and the ball 714 is slidably connected to the inner side of the operation box 3. A spring 715 is arranged inside the sliding rod 713. One end of the spring 715 is fixedly connected to the sliding rod 713, and the other end of the spring 715 is fixedly connected to the T-shaped rod 712.

[0027] Specifically, the buffer tank 4 drives the T-shaped rod 712 to rotate, the T-shaped rod 712 drives the sliding rod 713 to rotate, and the sliding rod 713 drives the ball 714 to slide in the operation box 3 to assist the buffer tank 4 to rotate.

[0028] In this embodiment, a third bracket 716 is fixedly connected to the lower end of the T-shaped rod 712. A roller 717 is rotatably connected to the inner side of the third bracket 716. An annular plate 710 is rotatably connected to the outer side of the roller 717. A plurality of convex blocks 711 are fixedly connected to the upper end of the annular plate 710, and the outer side of the annular plate 710 is fixedly connected to the operation box 3 through a clamping block.

[0029] Specifically, the T-shaped rod 712 drives the roller 717 to slide on the upper end of the annular plate 710 through the third bracket 716. The convex blocks 711 cause a bulge to form on the upper end of the annular plate 710 to form a partial drop, so that when the roller 717 rotates on the upper end of the annular plate 710, the spring 715 is compressed through the T-shaped rod 712, thereby causing the buffer tank 4 to shake, thereby preventing the fluidity of the carrot juice powder inside.

[0030] In this embodiment, a filter plate 76 is rotatably connected to the outer side of the first rotating shaft 74. The outer side of the filter plate 76 is fixedly connected to the buffer tank 4. The filter plate 76 is designed as a sector angle.

[0031] Specifically, the filter plate 76 sways along with the buffer tank 4. Due to the design of the filter plate 76 as a sector angle, impurities are concentrated at the angle of the filter plate 76.

[0032] In this embodiment, a plurality of groups of opposed auger rods 721 are rotatably connected to the upper angle of the filter plate 76 respectively. Both ends of the opposed auger rod 721 are fixedly connected with a third gear 723. The other end of the third gear 723 is rotatably connected with a fixing plate 720 through a rotating shaft. The lower end of the fixing plate 720 is fixedly connected with an installation box 719. One side of the two installation boxes 719 close to each other is fixedly connected to the buffer tank 4. A second motor 722 is installed on one side of one of the two fixing plates 720. The output shaft of the second motor 722 is fixedly connected with a group of opposed auger rods 721. The outer sides of the plurality of third gears 723 are jointly rotatably connected with a second synchronous belt 724. The opposed auger rod 721 is designed as an arc and is made of a soft material.

[0033] Specifically, start the second motor 722 installed on one side of the fixing plate 720. The output shaft of the second motor 722 drives the opposed auger rod 721 to rotate. The opposed auger rod 721 rotates to transfer the impurities at the angle of the filter plate 76 to the installation box 719 through the auger. Through the rotation and extrusion of the opposed auger rod 721, part of the powder is extruded and broken so that the powder can pass through the filter plate 76, while the impurities enter the installation box 719 for centralized collection, avoiding blockage of the filter plate 76. One group of third gears 723 drives the rest of the third gears 723 to rotate synchronously through the second synchronous belt 724, so as to synchronously clean the angles of the filter plate 76 by multiple groups of opposed auger rods 721.

[0034] In this embodiment, the cleaning mechanism 9 includes a vacuum pump 91 fixedly connected to the second bracket 8. The input port of the vacuum pump 91 is rotatably connected to the first rotating shaft 74. The output port of the vacuum pump 91 is fixedly connected with an exhaust pipe 92. A connecting plate 93 is fixedly connected to a position close to the lower end of the outer side of the exhaust pipe 92. The inner side of the connecting plate 93 is fixedly connected with a vitamin E solution tank 94. A pneumatic valve 916 is installed at the lower end of the vitamin E solution tank 94. The driving air hole of the pneumatic valve 916 is fixedly connected to the exhaust pipe 92 through a pipeline.

[0035] Specifically, the vacuum pump 91 extracts the air in the buffer tank 4 through the suction pipe 75 to maintain the vacuum rate in the buffer tank 4 and prevent the oxidation of the nutrients in the carrot juice powder. The air flow output by the vacuum pump 91 is output outward through the exhaust pipe 92. The air flow output by the exhaust pipe 92 cleans the bottles waiting for filling below, keeping the inside of the bottles clean. The exhaust pipe 92 outputs part of the air flow to the pneumatic valve 916 through a pipe to control the opening and closing of the pneumatic valve 916.

[0036] In this embodiment, a second rotating shaft 95 is rotatably connected to the inner side of the vitamin E solution tank 94. A blade 96 is fixedly connected to the lower end of the second rotating shaft 95. A fourth gear 97 is fixedly connected to the upper end of the second rotating shaft 95. A third timing belt 98 is rotatably connected to the outer side of the fourth gear 97. A fifth gear 99 is rotatably connected to the inner side of the third timing belt 98. A third rotating shaft 910 is fixedly connected to the lower end of the fifth gear 99. A T-shaped sleeve 911 is rotatably connected to the outer side of the third rotating shaft 910. One end of the T-shaped sleeve 911 is fixedly connected to the operation box 3.

[0037] Specifically, when the first gear 71 rotates, it drives the seventh gear 914 to rotate through the rotating shaft. The seventh gear 914 drives the sixth gear 912 to rotate through the fourth timing belt 913. The sixth gear 912 drives the fifth gear 99 to rotate through the third rotating shaft 910 inside the T-shaped sleeve 911. The fifth gear 99 drives the fourth gear 97 to rotate through the third timing belt 98. The fourth gear 97 drives the blade 96 to rotate through the second rotating shaft 95, thereby stirring the solvent in the vitamin E solution tank 94 and preventing the solvent from depositing.

[0038] In this embodiment, a sixth gear 912 is fixedly connected to the lower end of the third rotating shaft 910. A fourth timing belt 913 is rotatably connected to the outer side of the sixth gear 912. A seventh gear 914 is rotatably connected to the inner side of the fourth timing belt 913. The upper end of the seventh gear 914 is fixedly connected to the first gear 71 through a rotating shaft. A plurality of cleaning rods 915 are fixedly connected to the lower end of the fourth timing belt 913. The cleaning rods 915 are made of a soft material, and a brush is provided on one side of the cleaning rods 915.

[0039] Specifically, the sixth gear 912 and the seventh gear 914 jointly drive the fourth timing belt 913 to rotate. When the fourth timing belt 913 rotates, it cleans the outer side of the bottle before filling through the cleaning rods 915.

[0040] Working principle: When in use, place the bottle body at the upper end of the conveyor belt 2 and transport it into the operation box 3 for filling. Start the vacuum pump 91 installed at the upper end of the second bracket 8. The vacuum pump 91 extracts the air in the buffer tank 4 through the suction pipe 75 to maintain the vacuum rate in the buffer tank 4 and prevent the oxidation of the nutrients in the carrot juice powder. The air flow output by the vacuum pump 91 is output outward through the exhaust pipe 92. The air flow output by the exhaust pipe 92 cleans the bottle bodies waiting for filling below, keeping the inside of the bottle bodies clean. The exhaust pipe 92 outputs part of the air flow to the pneumatic valve 916 through a pipe, causing the pneumatic valve 916 to open the outlet, so that the vitamin E solution antioxidant in the vitamin E solution tank 94 flows downward, and is evenly sprinkled in the bottle body under the blowing of the air flow output by the exhaust pipe 92, preventing the oxidation of the nutrients in the carrot powder after filling and maintaining the product quality.

[0041] Start the first motor 6 installed at the upper end of the first bracket 5. The output shaft of the first motor 6 drives the first gear 71 to rotate. The first gear 71 drives the external gear ring 718 to rotate. The external gear ring 718 drives the buffer tank 4 to rotate in the operation box 3. The buffer tank 4 drives the T-shaped rod 712 to rotate. The T-shaped rod 712 drives the sliding rod 713 to rotate. The sliding rod 713 drives the ball 714 to slide in the operation box 3. The T-shaped rod 712 drives the roller 717 to slide on the upper end of the annular plate 710 through the third bracket 716. Through the convex block 711, a bulge is formed on the upper end of the annular plate 710 to form a partial drop, so that when the roller 717 rotates on the upper end of the annular plate 710, the buffer tank 4 is pressed against the spring 715 through the T-shaped rod 712, so that the buffer tank 4 shakes, thus avoiding the fluidity of the carrot juice powder inside; When the first gear 71 rotates, it drives the second gear 73 to rotate through the first synchronous belt 72. The second gear 73 drives the first rotating shaft 74 to rotate. The first rotating shaft 74 drives the sweeping rod 77 to stir the carrot powder to prevent powder caking. When the sweeping rod 77 rotates, it drives the scraping plate 78 to rotate. The scraping plate 78 scrapes the inner wall of the buffer tank 4 to prevent the carrot powder sticking to the inner wall of the buffer tank 4 from getting damp. The first rotating shaft 74 drives the discharging auger rod 79 to rotate, so that the discharging auger rod 79 discharges the carrot powder from the buffer tank 4, thereby filling the bottle body. The discharging auger rod 79 and the buffer tank 4 rotate in opposite directions, thus improving the filling speed; After the carrot powder is put into the buffer tank 4, the fibers in the carrots are not completely removed during the processing and are filtered by the filter plate 76. The filter plate 76 shakes along with the buffer tank 4, causing impurities to concentrate at the corners of the filter plate 76. The qualified powder drops downward. The second motor 722 installed on one side of the fixed plate 720 is started, and the output shaft of the second motor 722 drives the counter-rotating auger rod 721 to rotate. The rotation of the counter-rotating auger rod 721 transfers the impurities at the corners of the filter plate 76 to the installation box 719 through the auger, and through the extrusion of the rotation of the counter-rotating auger rod 721, part of the powder is crushed so that the powder can pass through the filter plate 76, while the impurities enter the installation box 719 for centralized collection, avoiding the blockage of the filter plate 76. A set of third gears 723 drives the rest of the third gears 723 to rotate synchronously through the second synchronous belt 724, so that multiple groups of counter-rotating auger rods 721 clean the corners of the filter plate 76 synchronously; When the first gear 71 rotates, it drives the seventh gear 914 to rotate through the rotating shaft. The seventh gear 914 drives the sixth gear 912 to rotate through the fourth synchronous belt 913. When the fourth synchronous belt 913 rotates, it cleans the outer side of the bottle body before filling through the cleaning rod 915. The sixth gear 912 drives the fifth gear 99 to rotate through the third rotating shaft 910 inside the T-shaped sleeve 911. The fifth gear 99 drives the fourth gear 97 to rotate through the third synchronous belt 98. The fourth gear 97 drives the blade 96 to rotate through the second rotating shaft 95, thereby stirring the solvent in the vitamin E solution tank 94 to avoid the deposition of the solvent.

[0042] Although the embodiments of the present invention have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principles and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A carrot juice powder solid beverage production line packaging machine, comprising a workbench (1), characterized in that: A conveyor belt (2) is installed at the upper end of the workbench (1), an operation box (3) is fixedly connected to the upper end of the workbench (1), a buffer tank (4) is slidably connected to the inner side of the operation box (3), a first bracket (5) is fixedly connected to the upper end of the operation box (3) near one side, a first motor (6) is installed at the upper end of the first bracket (5), a second bracket (8) is fixedly connected to the upper end of the conveyor belt (2) near the other side, a cleaning mechanism (9) is installed at the upper end of the second bracket (8), and a feeding mechanism (7) is installed on the outer side of the buffer tank (4).

2. The carrot juice powder solid beverage production line packaging machine according to claim 1, characterized in that: The feeding mechanism (7) comprises a first gear (71) fixedly connected to the output shaft of the first motor (6); the outer side of the first gear (71) is rotatably connected to a first synchronous belt (72); the inner side of the first synchronous belt (72) is rotatably connected to a second gear (73); the inner side of the second gear (73) is fixedly connected to a first rotating shaft (74); the inner side of the first rotating shaft (74) is hollow; the outer side of the first rotating shaft (74) is rotatably connected to a buffer tank (4); the outer side of the first rotating shaft (74) penetrates the buffer tank (4); the inside of the buffer tank (4) outside the first rotating shaft (74) is fixedly connected to an exhaust pipe (75); two groups of symmetrical sweeping rods (77) are fixedly connected below the exhaust pipe (75) outside the first rotating shaft (74); the two groups of sweeping rods (77) are fixedly connected to a scraper (78) on the far side; and the lower end of the first rotating shaft (74) is fixedly connected to a discharge auger rod (79).

3. The packaging machine for a carrot juice powder solid beverage production line according to claim 2, characterized in that: An outer first synchronous belt (72) on the outside of the first gear (71) is rotatably connected to an outer gear ring (718) below, and an inner wall of the outer gear ring (718) is fixedly connected to the buffer tank (4) via a clamping block.

4. The carrot juice powder solid beverage production line packaging machine according to claim 1, characterized in that: The feeding mechanism (7) further comprises two groups of symmetrical T-shaped rods (712) fixedly connected to the buffer tank (4); a slide rod (713) is slidably connected to the outer side of the T-shaped rod (712) near the upper end; a ball (714) is mounted on the upper end of the slide rod (713); the ball (714) is slidably connected to the inner side of the operating box (3); a spring (715) is arranged on the inner side of the slide rod (713); one end of the spring (715) is fixedly connected to the slide rod (713); and the other end of the spring (715) is fixedly connected to the T-shaped rod (712).

5. The carrot juice powder solid beverage production line packaging machine according to claim 4, characterized in that: The lower end of the T-shaped rod (712) is fixedly connected to a third bracket (716), the inner side of the third bracket (716) is rotatably connected to a roller (717), the outer side of the roller (717) is rotatably connected to an annular plate (710), the upper end of the annular plate (710) is fixedly connected to a plurality of groups of protrusions (711), and the outer side of the annular plate (710) is fixedly connected to an operating box (3) via a clamping block.

6. The carrot juice powder solid beverage production line packaging machine according to claim 2, characterized in that: The outer side of the first rotating shaft (74) is rotatably connected to a filter plate (76), the outer side of the filter plate (76) is fixedly connected to the buffer tank (4), and the filter plate (76) is designed to have a fan-shaped angle.

7. The packaging machine for a carrot juice powder solid beverage production line according to claim 6, characterized in that: A plurality of groups of opposing auger rods (721) are rotatably connected at the angles of the upper ends of the filter plates (76); both ends of the opposing auger rods (721) are fixedly connected to third gears (723); the other end of the third gear (723) is rotatably connected to a fixed plate (720) via a rotating shaft; a mounting box (719) is fixedly connected to the lower end of the fixed plate (720); the adjacent sides of the two groups of mounting boxes (719) are fixedly connected to the buffer tank (4); a second motor (722) is installed on one side of one of the two groups of fixing plates (720); the output shaft of the second motor (722) is fixedly connected to a group of opposing auger rods (721); the outer sides of the plurality of groups of third gears (723) are rotatably connected to a second synchronous belt (724); the opposing auger rods (721) are of arc design and are made of soft material.

8. The carrot juice powder solid beverage production line packaging machine according to claim 1, characterized in that: The cleaning mechanism (9) comprises a vacuum pump (91) fixedly connected to the second bracket (8); an input port of the vacuum pump (91) is rotatably connected to the first rotating shaft (74); an output port of the vacuum pump (91) is fixedly connected to an exhaust pipe (92); a connecting plate (93) is fixedly connected to the outer side of the exhaust pipe (92) near the lower end; a vitamin E solution tank (94) is fixedly connected to the inner side of the connecting plate (93); a pneumatic valve (916) is installed at the lower end of the vitamin E solution tank (94); a driving air hole of the pneumatic valve (916) is fixedly connected to the exhaust pipe (92) via a pipeline.

9. The carrot juice powder solid beverage production line packaging machine according to claim 8, characterized in that: The inner side of the vitamin E solution tank (94) is rotatably connected to a second rotating shaft (95), the lower end of the second rotating shaft (95) is fixedly connected to a blade (96), the upper end of the second rotating shaft (95) is fixedly connected to a fourth gear (97), the outer side of the fourth gear (97) is rotatably connected to a third synchronous belt (98), the inner side of the third synchronous belt (98) is rotatably connected to a fifth gear (99), the lower end of the fifth gear (99) is fixedly connected to a third rotating shaft (910), the outer side of the third rotating shaft (910) is rotatably connected to a T-shaped sleeve (911), and one end of the T-shaped sleeve (911) is fixedly connected to the operating box (3).

10. The carrot juice powder solid beverage production line packaging machine according to claim 9, characterized in that: The lower end of the third rotating shaft (910) is fixedly connected to a sixth gear (912); the outer side of the sixth gear (912) is rotatably connected to a fourth synchronous belt (913); the inner side of the fourth synchronous belt (913) is rotatably connected to a seventh gear (914); the upper end of the seventh gear (914) is fixedly connected to the first gear (71) via a rotating shaft; the lower end of the fourth synchronous belt (913) is fixedly connected to a plurality of cleaning rods (915); the cleaning rods (915) are made of a soft material, and a brush is provided on one side of the cleaning rods (915).

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