A device and method for preparing areca nut brine
By using heat dissipation and air extraction technology in the areca nut brine preparation device, the problem of maltose melting at high temperatures was solved, improving the quality of the brine and the flavor absorption effect of areca nuts, while protecting the environment and health.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-27
- Publication Date
- 2026-03-10
AI Technical Summary
In existing technologies, during the preparation of areca nut brine, maltose easily melts and flows out at high temperatures, affecting the quality and shelf life of the brine and causing the loss of flavor substances and nutrients.
Design an apparatus for preparing areca nut brine, comprising a stirring drum, a heat dissipation component, and an exhaust device. The apparatus uses a fan plate to dissipate heat from the outside of the stirring drum, and combines vibration and exhaust to filter the flue gas, preventing the maltose from melting and removing harmful substances.
It effectively prevents reducing sugars from melting at high temperatures, improves the appearance and shelf life of the brine, enhances the flavor absorption of betel nuts and product quality, and protects the environment and health.
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Figure CN119386737B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The application belongs to the technical field of betel nut processing, in particular to a betel nut brine preparation device and preparation method BACKGROUND
[0002] Betel nut brine is a key seasoning in betel nut products, mainly brown paste made by the thermal reaction of calcium hydroxide and sugar, and usually sweeteners and various edible essences and spices are added. The production process of betel nut brine includes lime digestion, fine washing, boiling, and addition of ingredients. During the production process, attention should be paid to avoid the formation of lumps and blocks to ensure that the brine can solidify correctly.
[0003] A patent application with publication number CN107440062A discloses a preparation method of betel nut brine, which includes designing a certain ratio of calcium hydroxide to sugar and controlling the alkalinity in the brine system. The brine is prepared by mixing, cooking, reacting, homogenizing, and stirring processes. The prepared brine has sufficient strength and good forming, and also has the characteristics of not blocking, not burning, and not grinding.
[0004] Currently, in the prior art, when preparing betel nut brine, sugar and brine need to be stirred and mixed to prepare water. Since the sugar in water has strong hygroscopicity, it can melt easily in a high-temperature environment, causing the "brine flow" phenomenon. This phenomenon can seriously affect the quality of the prepared brine, causing the loss of flavor substances and nutrients in the brine.
[0005] Therefore, the application provides a betel nut brine preparation device and preparation method. SUMMARY
[0006] To make up for the shortcomings of the prior art and solve at least one technical problem raised in the background art.
[0007] The technical solution adopted by the application to solve its technical problems is: the betel nut brine preparation device comprises a machine shell, a cylinder box is fixedly installed on the top of the machine shell, a stirring cylinder is arranged in the machine shell, the top of the machine shell is fixedly connected with the bottom of the cylinder box, a storage box is fixedly installed on the inner wall of the cylinder box, a plurality of proportioners are fixedly installed on the inner wall of the storage box, the discharge ends of the proportioners are fixedly connected with the top inner wall of the stirring cylinder, a ring plate is fixedly installed on the inner wall of the machine shell, the ring plate is arranged outside the stirring cylinder, a heat dissipation assembly is arranged between the ring plate and the stirring cylinder, the heat dissipation assembly comprises a fan plate, and the heat dissipation assembly is used to drive the fan plate to dissipate heat from the stirring cylinder.
[0008] The required materials for preparing the betel nut brine, sugar and the prepared calcium hydroxide are sequentially placed into the proportioner in the container box, the required materials are sequentially placed into the stirring cylinder by controlling the proportioner, then the stirring assembly in the machine shell stirs and mixes the materials placed into the stirring cylinder, the brine preparation is carried out, during the stirring operation, the fan blades in the heat dissipation assembly are operated between the ring plate and the stirring cylinder by the stirring assembly, the fan blades will perform the fan operation on the outside of the stirring cylinder, so that the heat is dissipated, and the reducing sugar in the brine is prevented from melting and flowing at high temperature, which affects the appearance and shelf life of the product.
[0009] Preferably, the heat dissipation assembly further comprises a shifting plate, the number of the shifting plate and the fan blades is multiple, the inside of the ring plate is provided with multiple notches, the shifting plate is fixedly connected with one side of the fan blade, and the shifting plate and the fan blade form a complete fan blade, the multiple shifting plates are rotationally connected with the inner walls of the multiple notches respectively, multiple return plate springs are arranged between one side of the multiple shifting plates and the inner walls of the multiple notches, and the multiple fan blades are arranged between the ring plate and the stirring cylinder; during preparation, the shifting plate is pushed and rotated in the ring plate by the stirring assembly, the shifting plate drives the fan blade to rotate between the ring plate and the stirring cylinder, when the shifting plate rotates, the shifting plate presses the return plate spring to rotate, when the push block slides out of the shifting plate, the return plate spring pushes the shifting plate to reset, the shifting plate is pushed and reset by the push block and the return plate spring, and the two work together, so that the fan blade performs the fan operation on the outer wall of the stirring cylinder, and the heat is reduced.
[0010] Preferably, the top of the stirring cylinder is fixedly installed with a motor, one end of the motor is fixedly installed with a shaft, and both ends of the shaft are fixedly installed with rotating rods, respectively, the outer walls of the middle of the two rotating rods are fixedly installed with push blocks, and the two push blocks are slidably connected with one side of the multiple shifting plates; during preparation, the two rotating rods are driven to rotate by the motor through the shaft, and the shifting plate in the ring plate is pushed and rotated by the push block on the rotating rod, so as to provide power for the fan blade to perform the fan operation on the outer wall of the stirring cylinder.
[0011] Preferably, the bottom of the stirring barrel is slidingly connected with a circular table, a group of sliding shafts are fixedly installed on the inner wall of the shell, the bottom of the circular table is slidingly connected with the outer wall of the group of sliding shafts, a group of return springs are arranged between the inner wall of the shell and the bottom of the circular table, the group of return springs are respectively arranged outside the group of sliding shafts, the bottom of the circular table is fixedly and symmetrically installed with moving blocks, the bottom of each rotating rod is fixedly installed with an extrusion rod, the two extrusion rods are respectively slidingly connected with the surfaces of the two moving blocks, when the motor drives the two rotating rods to rotate through the shaft, the motor drives the extrusion rods to rotate at the bottom of the circular table, when the extrusion rods rotate, the extrusion rods push the moving blocks through the limiting, the circular table moves up on the bottom of the stirring barrel, the circular table moves up and down on the bottom of the stirring barrel through the elastic force of the return springs, so that vibration is generated, the raw materials in the stirring barrel are stirred by the stirring rods, the mixing and stirring of the brine are accelerated, the vibration can help to remove the bubbles in the brine, reduce the surface tension of the brine, and make the brine more easily penetrate into the internal structure of the betel nut. The vibration can also promote the chemical reaction in the brine, so that the betel nut better absorbs the flavoring substances in the brine, thereby improving the taste and quality of the final product.
[0012] Preferably, the inner wall of the storage box is fixedly installed with a groove box, the inner wall of the groove box is fixedly installed with an air extraction device, the outer wall of the groove box is fixedly installed with a plurality of airflow pipes, one end of each airflow pipe is fixedly installed at the top of the stirring barrel, the inner wall of the groove box is fixedly installed with a smoke filtering ring, the smoke filtering ring is arranged between the air extraction device and the plurality of airflow pipes, a plurality of air pipes are fixedly installed between the air extraction device and the smoke filtering ring, while stirring, the raw materials react and generate a certain amount of smoke when mixed, and the smoke contains a variety of harmful substances such as particulate matter and nitrogen oxides. These pollutants not only pollute the environment, but also have adverse effects on human health. The air extraction device extracts the smoke in the stirring barrel through the airflow pipes, the smoke passes through the smoke filtering ring during extraction, the smoke filtering ring filters and removes the slag of the smoke, thereby reducing the emission of smoke and reducing harm.
[0013] Preferably, the two ends of the shaft are fixedly installed with L-shaped rods, one end of each L-shaped rod is fixedly installed with a slag scraping block, the two slag scraping blocks are slidingly connected with the outer wall of the smoke filtering ring, the bottom of the groove box is fixedly installed with a slag collecting box, the opening of the slag collecting box is arranged between the smoke filtering ring and the plurality of airflow pipes, when the motor drives the stirring rod to stir the raw materials in the stirring barrel to make brine, the motor drives the L-shaped rods to rotate through the shaft, the L-shaped rods drive the slag scraping blocks to scrape on the smoke filtering ring when rotating, the slag scraping blocks scrape off the impurities filtered out by the smoke filtering ring, the scraped impurities will enter the slag collecting box through the opening and be collected, thereby avoiding too much impurities adhering to the smoke filtering ring when the smoke filtering ring performs the smoke removal operation, and affecting the smoke removal effect.
[0014] Preferably, the other end of the motor is fixedly installed with a stirring rod, the stirring rod is arranged in the interior of the stirring cylinder, when the motor rotates, the motor drives the stirring rod to rotate in the stirring cylinder, so that the raw materials in the stirring cylinder are stirred to prepare brine, and the stirring function is achieved.
[0015] Preferably, the bottom inner wall of the shell is fixedly installed with a plurality of brine flowing pipes, the plurality of brine flowing pipes are all in sliding connection with the inner wall of the circular table, the bottom inner wall of the shell is fixedly installed with a flow controller, one end of each of the plurality of brine flowing pipes is fixedly connected with the top of the flow controller, the bottom of the flow controller is fixedly installed with a brine outlet pipe, the brine outlet pipe is arranged outside the bottom end of the shell, when working, the preparation of brine can be completed through the above process, when the preparation is completed, the flow controller is controlled to be opened, the brine in the stirring cylinder flows into the flow controller through the brine flowing pipes, and finally flows out of the machine from the brine outlet pipe to perform the working operation of the next process.
[0016] A preparation method of a betel nut brine preparation device, comprising the following steps:
[0017] S1, the materials required for preparing betel nut brine and the prepared calcium hydroxide are sequentially placed in the proportioner, the proportioner is controlled to sequentially place the required materials in the stirring cylinder through proportioning;
[0018] S2, then the motor is controlled to work, so that the motor drives the stirring rod to stir and mix the materials in the stirring cylinder to prepare brine;
[0019] S3, when the motor drives the stirring cylinder to stir the materials, the motor drives the temperature-dissipating assembly to work through the rotating rod to perform fan operation on the outside of the stirring cylinder, so that the temperature is dissipated, and the reducing sugar in the brine is prevented from melting and flowing at high temperature, which affects the appearance and shelf life of the product;
[0020] S4, at the same time, the motor drives the circular table to move up and down at the bottom of the stirring cylinder through the rotating rod to vibrate, and the stirring rod is used to stir and mix the raw materials in the stirring cylinder to speed up the stirring and mixing of the brine;
[0021] S5, while stirring, the raw materials react to produce a certain amount of smoke when mixing, and the smoke in the stirring cylinder is extracted through the air flow pipe of the air extraction device to perform smoke removal operation;
[0022] S6, through the above process, the preparation of brine can be completed, the prepared brine flows out of the machine through the brine outlet pipe finally, and the working operation of the next process is performed.
[0023] A preparation method of a betel nut brine preparation device, the temperature-dissipating assembly specifically uses the following steps:
[0024] S7, when the motor drives the stirring rod to stir the raw materials in the stirring cylinder, the motor drives the two rotating rods to rotate, the rotating rods push the shifting plates in the ring plates to rotate when rotating, the shifting plates drive the fan plates to rotate between the ring plates and the stirring cylinder, the shifting plates press the return plate springs to rotate when rotating, the return plate springs push the shifting plates to reset when the push blocks slide out of the shifting plates, the push blocks push the shifting plates and the return plate springs push the shifting plates to reset, and the two work together, so that the fan plates realize the fan work on the outer wall of the stirring cylinder.
[0025] The beneficial effects of the present application are as follows:
[0026] 1. The device and method for preparing areca nut brine, when the motor drives the stirring rod to stir the raw materials in the stirring cylinder, the motor drives the push blocks to push the shifting plates in the ring plates, the shifting plates drive the fan plates to rotate between the ring plates and the stirring cylinder, the return plate springs push the shifting plates to reset when the push blocks slide out of the shifting plates, and the two work together, so that the fan plates realize the fan work on the outer wall of the stirring cylinder, preventing the reducing sugar in the brine from melting and flowing at high temperature, affecting the appearance and shelf life of the product.
[0027] 2. The device and method for preparing areca nut brine, the motor drives the two extrusion rods to rotate at the bottom of the circular table, the extrusion rods push the limiting push blocks to move the table block when rotating, the circular table moves up at the bottom of the stirring cylinder, and the circular table moves up and down at the bottom of the stirring cylinder through the elastic force of the reset spring, thereby vibrating, the vibration can help remove bubbles in the brine, reduce the surface tension of the brine, make the brine more easily penetrate into the internal structure of the areca nut, and promote the chemical reaction in the brine, so that the areca nut better absorbs the flavoring substances in the brine, thereby improving the taste and quality of the final product.
[0028] 3. The device and method for preparing areca nut brine, while stirring, the raw materials react to produce certain smoke when mixing, the smoke contains various harmful substances, pollutes the environment and also has adverse effects on human health, the air suction device sucks out the smoke in the stirring cylinder through the airflow pipe, and the smoke is filtered by the smoke filter ring during the suction process, so as to reduce the emission of smoke and protect the environment and the health of the workers.
[0029] 4. The betel nut brine preparation device and preparation method, when the motor drives the stirring rod to stir the raw materials in the stirring cylinder to prepare brine, the motor drives the L-shaped rod to rotate through the shaft, and the L-shaped rod drives the slag scraping block to scrape on the smoke filter ring when rotating, the impurities filtered out of the smoke filter ring are scraped off, and the scraped impurities will enter the slag collecting box through the smooth opening for collection, so that when the smoke filter ring is performing smoke removal operation, the too much impurities adhered to the smoke filter ring will not affect the smoke removal effect. BRIEF DESCRIPTION OF DRAWINGS
[0030] The application will be further described below with reference to the drawings.
[0031] Figure 1 is the main body diagram of the application;
[0032] Figure 2 is the overall diagram of the application;
[0033] Figure 3 is the structure diagram of the transfer position plate in the application;
[0034] Figure 4 is the structure diagram of the smoke filter ring in the application;
[0035] Figure 5 is the structure diagram of the slag scraping block in the application;
[0036] Figure 6 is the structure diagram of the air flow pipe in the application;
[0037] Figure 7 is the structure diagram of the fan plate in the application;
[0038] Figure 8 is the structure diagram of the circular table in the application;
[0039] Figure 9 is the structure diagram of the push block in the application;
[0040] Figure 10 is the structure diagram of the sliding shaft in the application.
[0041] In the figure: 1, the machine shell; 2, the brine outlet pipe; 3, the cylinder box; 4, the ring plate; 5, the transfer rod; 6, the storage box; 7, the transfer position plate; 8, the shaft; 9, the proportioner; 10, the motor; 11, the air extraction device; 12, the air pipe; 13, the air flow pipe; 14, the smoke filter ring; 15, the L-shaped rod; 16, the slag scraping block; 17, the slag collecting box; 18, the stirring cylinder; 19, the return plate spring; 20, the stirring rod; 21, the circular table; 22, the flow controller; 23, the brine outlet pipe; 24, the reset spring; 25, the sliding shaft; 26, the moving table block; 27, the extrusion rod; 28, the fan plate; 29, the groove box; 30, the notch; 31, the push block. DETAILED DESCRIPTION
[0042] In order to make the technical means, creative features, purposes and effects of the present application easy to understand, the specific embodiments are combined below to further describe the present application.
[0043] As shown in Figures 1 to 10 The device for preparing betel nut brine comprises a casing 1, a barrel 3 fixedly installed on the top of the casing 1, a stirring barrel 18 arranged in the casing 1, the top of the casing 1 fixedly connected with the bottom of the barrel 3, an inner wall of the barrel 3 fixedly installed with a storage box 6, an inner wall of the storage box 6 fixedly installed with a plurality of proportioners 9, the discharging ends of the proportioners 9 fixedly connected with the top inner wall of the stirring barrel 18, an inner wall of the casing 1 fixedly installed with a ring plate 4, the ring plate 4 arranged outside the stirring barrel 18, a heat dissipation assembly arranged between the ring plate 4 and the stirring barrel 18, the heat dissipation assembly comprising a fan plate 28, the heat dissipation assembly used to drive the fan plate 28 to dissipate heat for the stirring barrel 18;
[0044] Since the sucrose in water has a strong hygroscopic ability, it is extremely easy to melt in a high-temperature environment, and the phenomenon of “brine flowing” occurs, which seriously affects the quality of the prepared brine and causes the flavor substances and nutrients in the brine to flow away;
[0045] The materials required for preparing betel nut brine, sucrose and the melted calcium hydroxide are sequentially placed in the proportioners 9 in the storage box 6, the proportioners 9 sequentially place the required materials into the stirring barrel 18 through proportioning, and then the stirring assembly in the casing 1 is controlled to stir and mix the materials placed in the stirring barrel 18, so as to prepare the brine. During the stirring operation, the fan plate 28 in the heat dissipation assembly is driven by the stirring assembly to operate between the ring plate 4 and the stirring barrel 18, and the fan plate 28 will perform a fan operation on the outside of the stirring barrel 18, so as to achieve heat dissipation, prevent the reducing sugar in the brine from melting and flowing in the brine under high temperature, and affect the appearance and shelf life of the product.
[0046] As shown in Figures 6 to 7 The heat dissipation assembly further comprises a plurality of indexing plates 7, the number of the indexing plates 7 and the fan plates 28 is the same, a plurality of notches 30 are formed in the inner portion of the ring plate 4, the indexing plates 7 are fixedly connected with one side of the fan plates 28, and the two form a complete fan blade, the plurality of indexing plates 7 are respectively rotatably connected with the inner walls of the plurality of notches 30, a plurality of return plate springs 19 are arranged between one side of the plurality of indexing plates 7 and the inner walls of the plurality of notches 30, and the plurality of fan plates 28 are arranged between the ring plate 4 and the stirring barrel 18;
[0047] When preparing, the stirring assembly pushes and rotates the indexing plate 7 in the ring plate 4, and the indexing plate 7 drives the fan plate 28 to rotate between the ring plate 4 and the stirring cylinder 18. When rotating, the indexing plate 7 is pressed and rotated by the return plate spring 19. When the push block 31 slides out of the indexing plate 7, the return plate spring 19 pushes the indexing plate 7 to reset. The push block 31 pushes the indexing plate 7 and the return plate spring 19 pushes the indexing plate 7 to reset. The two work together to make the fan plate 28 fan the outer wall of the stirring cylinder 18, thereby reducing the heat.
[0048] As shown in Figures 7 to 9 , the top of the stirring cylinder 18 is fixedly installed with a motor 10. One end of the motor 10 is fixedly installed with a shaft 8. Both ends of the shaft 8 are fixedly installed with rotating rods 5. The middle outer wall of each of the two rotating rods 5 is fixedly installed with a push block 31. Both of the push blocks 31 are slidably connected to one side of the plurality of indexing plates 7.
[0049] When preparing, the motor 10 drives the two rotating rods 5 to rotate through the shaft 8. When the rotating rods 5 rotate, the push blocks 31 on the rotating rods 5 push and rotate the indexing plates 7 in the ring plate 4, providing power for the fan plate 28 to fan the outer wall of the stirring cylinder 18.
[0050] As shown in Figures 8 to 10 , the bottom of the stirring cylinder 18 is slidably connected with a circular table 21. The inner wall of the casing 1 is fixedly installed with a group of slide shafts 25. The bottom of the circular table 21 is slidably connected with the outer wall of the group of slide shafts 25. A group of return springs 24 is arranged between the inner wall of the casing 1 and the bottom of the circular table 21. The group of return springs 24 is respectively arranged outside the group of slide shafts 25. The bottom of the circular table 21 is fixedly installed with displacement blocks 26. The bottom of each of the two rotating rods 5 is fixedly installed with an extrusion rod 27. Both of the extrusion rods 27 are slidably connected with the surfaces of the two displacement blocks 26.
[0051] When the motor 10 drives the two rotating rods 5 to rotate through the shaft 8, the motor 10 drives the extrusion rods 27 to rotate at the bottom of the circular table 21 through the rotating rods 5. When the extrusion rods 27 rotate, they push the displacement blocks 26. The circular table 21 will move up at the bottom of the stirring cylinder 18. Through the elastic force of the return springs 24, the circular table 21 will move up and down at the bottom of the stirring cylinder 18 to vibrate. In combination with the stirring rods 20, the raw materials in the stirring cylinder 18 are stirred, which can speed up the mixing and stirring of the brine. The vibration can help remove the bubbles in the brine, reduce the surface tension of the brine, and make the brine more easily penetrate into the internal structure of the betel nut. The vibration can also promote the chemical reaction in the brine, so that the betel nut can better absorb the flavoring substances in the brine, thereby improving the taste and quality of the final product.
[0052] As shown in Figures 4 to 5As shown, the inner wall of the storage box 6 is fixedly installed with a groove box 29, the inner wall of the groove box 29 is fixedly installed with an air extraction device 11, the outer wall of the groove box 29 is fixedly installed with a plurality of air flow pipes 13, one end of the plurality of air flow pipes 13 is fixedly installed on the top of the stirring cylinder 18, the inner wall of the groove box 29 is fixedly installed with a smoke filtering ring 14, the smoke filtering ring 14 is arranged between the air extraction device 11 and the plurality of air flow pipes 13, and a plurality of air pipes 12 are fixedly installed between the air extraction device 11 and the smoke filtering ring 14.
[0053] While stirring, the raw materials react when mixed to produce a certain amount of smoke, which contains a variety of harmful substances such as particulate matter, nitrogen oxides, etc. These pollutants not only pollute the environment, but also have adverse effects on human health. The air extraction device 11 extracts the smoke in the stirring cylinder 18 through the air flow pipe 13. The smoke is filtered by the smoke filtering ring 14 during extraction. The smoke filtering ring 14 filters and removes the slag, thereby reducing smoke emissions and reducing harm. It should be noted that the smoke filtering ring 14 is a filtering device used to filter smoke.
[0054] As shown in Figures 4 to 5 The two ends of the shaft 8 are fixedly installed with L-shaped rods 15, one end of each of the two L-shaped rods 15 is fixedly installed with a slag scraping block 16, and the two slag scraping blocks 16 are in sliding connection with the outer wall of the smoke filtering ring 14. The bottom of the groove box 29 is fixedly installed with a slag collecting box 17, and the opening of the slag collecting box 17 is arranged between the smoke filtering ring 14 and the plurality of air flow pipes 13.
[0055] When the motor 10 drives the stirring rod 20 to stir the raw materials in the stirring cylinder 18 to make sauce, the motor 10 drives the L-shaped rod 15 to rotate through the shaft 8. The L-shaped rod 15 drives the slag scraping block 16 to scrape on the smoke filtering ring 14 when rotating, and the slag scraping block 16 scrapes off the impurities filtered out by the smoke filtering ring 14. The scraped impurities will enter the slag collecting box 17 through the opening and be collected, thereby avoiding too much impurities adhering to the smoke filtering ring 14 when the smoke filtering ring 14 is performing the smoke removal operation, which affects the smoke removal effect.
[0056] As shown in Figures 7 to 8 The other end of the motor 10 is fixedly installed with a stirring rod 20, and the stirring rod 20 is arranged in the interior of the stirring cylinder 18.
[0057] When the motor 10 rotates, the motor 10 drives the stirring rod 20 to rotate in the stirring cylinder 18, thereby stirring the raw materials in the stirring cylinder 18 to make sauce, which plays a role in stirring and making sauce.
[0058] As shown in Figures 1 to 10As shown, the bottom inner wall of the shell 1 is fixedly installed with a plurality of flow halogen tubes 23, which are all in sliding connection with the inner wall of the circular table 21. The bottom inner wall of the shell 1 is fixedly installed with a flow controller 22. One end of each of the plurality of flow halogen tubes 23 is fixedly connected with the top of the flow controller 22. The bottom of the flow controller 22 is fixedly installed with an outlet halogen tube 2, which is arranged outside the bottom end of the shell 1.
[0059] During operation, the preparation of brine can be completed through continuous operation of the above process. When the preparation is completed, the flow controller 22 is controlled to be opened, and the brine in the stirring cylinder 18 flows into the flow controller 22 through the flow halogen tubes 23, and finally flows out of the outlet halogen tube 2 to the outside of the machine for the next working operation.
[0060] A preparation method of a betel nut brine preparation device includes the following steps:
[0061] S1, the materials required for the preparation of betel nut brine and the boiled calcium hydroxide are sequentially placed in the proportioner 9. The proportioner 9 sequentially places the required materials in the stirring cylinder 18 through proportioning.
[0062] S2, then control the motor 10 to operate, so that the motor 10 drives the stirring rod 20 to stir and mix the materials in the stirring cylinder 18 for brine preparation.
[0063] S3, when the motor 10 drives the stirring cylinder 18 to stir the materials, the motor 10 drives the temperature-dissipating assembly through the rotating rod 5 to operate, and performs fan operation on the outside of the stirring cylinder 18, so as to achieve temperature dissipation and prevent the reducing sugar in the brine from melting and flowing at high temperature, which affects the appearance and shelf life of the product.
[0064] S4, at the same time, the motor 10 drives the circular table 21 to move up and down at the bottom of the stirring cylinder 18 through the rotating rod 5 to vibrate, and cooperates with the stirring rod 20 to stir the raw materials in the stirring cylinder 18, so as to accelerate the mixing and stirring of the brine.
[0065] S5, while stirring, the raw materials react and produce a certain amount of smoke gas during mixing. The air extraction device 11 extracts the smoke gas in the stirring cylinder 18 through the air flow pipe 13 to perform smoke removal operation on the smoke gas.
[0066] S6, through continuous operation of the above process, the preparation of brine can be completed. The prepared brine finally flows out of the outlet halogen tube 2 to the outside of the machine for the next working operation.
[0067] A preparation method of a betel nut brine preparation device, and a temperature-dissipating assembly specifically used includes the following steps:
[0068] S7, when the motor 10 drives the stirring rod 20 to stir the raw materials in the stirring cylinder 18, the motor 10 drives the two rotating rods 5 through the shaft rod 8, and when the rotating rod 5 rotates, the push block 31 on the rotating rod 5 pushes and rotates the indexing plate 7 in the ring plate 4, and the indexing plate 7 drives the fan plate 28 to rotate between the ring plate 4 and the stirring cylinder 18, and when rotating, the indexing plate 7 presses the return plate spring 19 to rotate, and when the push block 31 slides out of the indexing plate 7, the return plate spring 19 pushes the indexing plate 7 to reset, and the push block 31 pushes the indexing plate 7 and the return plate spring 19 pushes the indexing plate 7 to reset, and the two work together to make the fan plate 28 realize the fan work on the outer wall of the stirring cylinder 18.
[0069] Working principle: by putting the materials needed for preparing areca betel nut liquor, sugar and prepared calcium hydroxide into the proportioner 9 in the storage box 6 in turn, through proportioning, controlling the proportioner 9 to put the required materials into the stirring cylinder 18 in turn, and then controlling the stirring assembly in the machine shell 1 to stir and mix the materials put into the stirring cylinder 18, preparing the liquor, and when stirring, the stirring assembly drives the fan plate 28 in the heat dissipation assembly to work between the ring plate 4 and the stirring cylinder 18, and the fan plate 28 will fan the outside of the stirring cylinder 18, so as to realize heat dissipation and prevent the reducing sugar in the liquor from melting and flowing at high temperature, affecting the appearance and shelf life of the product;
[0070] When preparing, the stirring assembly pushes and rotates the indexing plate 7 in the ring plate 4, and the indexing plate 7 drives the fan plate 28 to rotate between the ring plate 4 and the stirring cylinder 18, and when rotating, the indexing plate 7 presses the return plate spring 19 to rotate, and when the push block 31 slides out of the indexing plate 7, the return plate spring 19 pushes the indexing plate 7 to reset, and the push block 31 pushes the indexing plate 7 and the return plate spring 19 pushes the indexing plate 7 to reset, and the two work together to make the fan plate 28 realize the fan work on the outer wall of the stirring cylinder 18, and play a role in reducing heat;
[0071] When preparing, the motor 10 drives the two rotating rods 5 through the shaft rod 8, and when the rotating rod 5 rotates, the push block 31 on the rotating rod 5 pushes and rotates the indexing plate 7 in the ring plate 4, providing power for the fan plate 28 to fan the outer wall of the stirring cylinder 18;
[0072] When the motor 10 drives the two rotating rods 5 to rotate through the shaft rod 8, the motor 10 drives the extrusion rod 27 to rotate at the bottom of the circular table 21 through the rotating rod 5, and when the extrusion rod 27 rotates, the extrusion rod 27 drives the limiting push lifting moving block 26 to move, and the circular table 21 moves up at the bottom of the stirring cylinder 18, and through the elastic force of the reset spring 24, the circular table 21 moves up and down at the bottom of the stirring cylinder 18 to vibrate, and then the stirring rod 20 is matched to stir the raw materials in the stirring cylinder 18, so that the mixing and stirring of the brine can be accelerated, the vibration can help to remove the bubbles in the brine, reduce the surface tension of the brine, and make the brine more easily penetrate into the internal structure of the betel nut. The vibration can also promote the chemical reaction in the brine, so that the betel nut can better absorb the flavoring substances in the brine, thereby improving the taste and quality of the final product;
[0073] At the same time of stirring, the raw materials react to produce a certain amount of smoke when mixed, and the smoke contains a variety of harmful substances such as particulate matter, nitrogen oxides and the like. These pollutants not only pollute the environment, but also have adverse effects on human health. The air suction device 11 sucks the smoke in the stirring cylinder 18 through the air flow pipe 13, and the smoke passes through the smoke filter ring 14 during the suction process. The smoke filter ring 14 filters and removes the slag of the smoke, thereby reducing the discharge of the smoke and reducing the harm;
[0074] When the motor 10 drives the stirring rod 20 to stir the raw materials in the stirring cylinder 18 to make brine, the motor 10 drives the L-shaped rod 15 to rotate through the shaft rod 8, and the L-shaped rod 15 drives the slag scraping block 16 to scrape on the smoke filter ring 14 when rotating, so as to scrape off the impurities filtered out by the smoke filter ring 14. The scraped impurities will enter the slag collection box 17 through the smooth opening to be collected, so as to avoid that too much impurities adhere to the smoke filter ring 14 when the smoke filter ring 14 performs the smoke removal operation, thereby affecting the smoke removal effect.
[0075] When the motor 10 rotates, the motor 10 drives the stirring rod 20 to rotate in the stirring cylinder 18, so as to stir the raw materials in the stirring cylinder 18 to make brine, thereby playing a role of stirring brine;
[0076] When working, the above process is continuously operated, so that the preparation of brine can be completed. When the preparation is completed, the control flow device 22 is opened, and the brine in the stirring cylinder 18 will flow into the control flow device 22 through the flow brine pipe 23, and finally flow out of the machine through the brine outlet pipe 2 to perform the next working operation.
[0077] The above shows and describes the basic principles, main features and advantages of the present application. Those skilled in the art should understand that the present application is not limited to the above embodiments, and the above embodiments and descriptions in the specification are only to illustrate the principles of the present application. Without departing from the spirit and scope of the present application, various changes and improvements can be made to the present application, and these changes and improvements all fall within the scope of the present application. The scope of protection of the present application is defined by the appended claims and their equivalents.
Claims
1. A device for preparing areca nut brine, characterized by: The utility model relates to a kind of mixing machine, including shell (1), the top of shell (1) is fixedly installed with cylinder box (3), the inside of shell (1) is provided with stirring cylinder (18), the top of shell (1) is fixedly connected with the bottom of cylinder box (3), the inner wall of cylinder box (3) is fixedly installed with storage box (6), the inner wall of storage box (6) is fixedly installed with multiple proportioner (9), the discharge end of multiple proportioner (9) is fixedly connected with the top inner wall of stirring cylinder (18), the inner wall of shell (1) is fixedly installed with ring plate (4), ring plate (4) is placed at the outside of stirring cylinder (18), and heat dissipation assembly is arranged between ring plate (4) and stirring cylinder (18), heat dissipation assembly includes fan blade (28), and heat dissipation assembly is used to drive fan blade (28) to heat stirring cylinder (18) and dissipate heat; Heat dissipation assembly further includes index plate (7), the number of index plate (7) and fan blade (28) is multiple, the inside of ring plate (4) is provided with multiple notches (30), index plate (7) is fixedly connected with one side of fan blade (28), and both form a complete fan blade, multiple index plates (7) are rotatably connected with the inner wall of multiple notches (30) respectively, multiple index plates (7) are rotatably connected with the inner wall of multiple notches (30) respectively, and multiple return plate springs (19) are arranged between the inner wall of multiple notches (30) and one side of multiple index plates (7), and multiple fan blades (28) are arranged between ring plate (4) and stirring cylinder (18); The top of stirring cylinder (18) is fixedly installed with motor (10), one end of motor (10) is fixedly installed with shaft (8), and the both ends of shaft (8) are respectively fixedly installed with rotating rod (5), the middle outer wall of two rotating rods (5) is fixedly installed with push block (31), and two push blocks (31) are slidably connected with one side of multiple index plates (7); The bottom of stirring cylinder (18) is slidably connected with circular table (21), the inner wall of shell (1) is fixedly installed with a group of slide shafts (25), the bottom of circular table (21) is slidably connected with the outer wall of a group of slide shafts (25), a group of return springs (24) are arranged between the inner wall of shell (1) and the bottom of circular table (21), a group of return springs (24) are respectively arranged outside a group of slide shafts (25), the bottom of circular table (21) is fixedly installed with displacement table block (26) symmetrically, the bottom of two rotating rods (5) is fixedly installed with extrusion rod (27), and two extrusion rods (27) are slidably connected with the surface of two displacement table blocks (26) respectively; The inner wall of storage box (6) is fixedly installed with groove box (29), the inner wall of groove box (29) is fixedly installed with air extraction device (11), the outer wall of groove box (29) is fixedly installed with multiple airflow tubes (13), one end of multiple airflow tubes (13) is fixedly installed on the top of stirring cylinder (18), the inner wall of groove box (29) is fixedly installed with filter smoke ring (14), filter smoke ring (14) is arranged between air extraction device (11) and multiple airflow tubes (13), and multiple air pipes (12) are fixedly installed between air extraction device (11) and filter smoke ring (14). The bottom of the shaft rod (8) is fixedly installed with an L-shaped rod (15), one end of the two L-shaped rods (15) is fixedly installed with a slag scraping block (16), the two slag scraping blocks (16) are slidably connected with the outer wall of the smoke filtering ring (14), the bottom of the groove box (29) is fixedly installed with a slag receiving box (17), and the opening of the slag receiving box (17) is arranged between the smoke filtering ring (14) and the plurality of airflow pipes (13).
2. The device for preparing areca nut brine according to claim 1, characterized in that: The other end of the motor (10) is fixedly installed with a stirring rod (20), and the stirring rod (20) is arranged in the interior of the stirring cylinder (18).
3. The device for preparing areca nut brine according to claim 2, characterized in that: The bottom inner wall of the machine shell (1) is fixedly installed with a plurality of flow halogen tubes (23), the plurality of flow halogen tubes (23) are slidably connected with the inner wall of the circular table (21), the bottom inner wall of the machine shell (1) is fixedly installed with a flow controller (22), one end of the plurality of flow halogen tubes (23) is fixedly connected with the top of the flow controller (22), the bottom of the flow controller (22) is fixedly installed with an outlet halogen tube (2), and the outlet halogen tube (2) is arranged outside the bottom end of the machine shell (1).
4. A method for preparing betel brine by using the betel brine preparation device according to any one of claims 1-3, characterized in that: The steps include: S1, the materials required for preparing betel nut brine and the boiled calcium hydroxide are sequentially placed in the proportioner (9), the proportioner (9) is controlled to sequentially place the required materials in the stirring cylinder (18) through proportioning; S2, then control the motor (10) to work, so that the motor (10) drives the stirring rod (20) to stir and mix the materials in the stirring cylinder (18), and prepare the brine; S3, when the motor (10) drives the stirring cylinder (18) to stir the materials, the motor (10) drives the temperature dissipation assembly to work through the rotating rod (5) to perform fan operation on the outside of the stirring cylinder (18), so as to realize temperature dissipation and prevent the reducing sugar in the brine from melting and flowing out under high temperature, which affects the appearance and shelf life of the product; S4, at the same time, the motor (10) drives the circular table (21) to move up and down at the bottom of the stirring cylinder (18) through the rotating rod (5) to vibrate, and cooperates with the stirring rod (20) to stir the raw materials in the stirring cylinder (18) to accelerate the mixing and stirring of the brine; S5, while stirring, the raw materials react and produce a certain amount of smoke gas when mixing, and the air suction device (11) sucks out the smoke gas in the stirring cylinder (18) through the airflow pipe (13) to perform smoke removal operation on the smoke gas; S6, through the continuous operation of the process, the preparation of the brine can be completed, and the prepared brine flows out of the machine through the outlet halogen tube (2) finally, and the next working operation is performed.
5. The method for preparing areca nut brine according to claim 4, characterized in that: The temperature dissipation assembly is used in the following steps: S7, the motor (10) drives the stirring rod (20) to stir the raw materials in the stirring cylinder (18), the motor (10) drives the two rotating rods (5) to rotate through the shaft rod (8), when the rotating rod (5) rotates, the rotating rod (5) pushes and extrudes the rotating plate (7) in the ring plate (4) through the push block (31) on the rotating rod (5), the rotating plate (7) will drive the fan plate (28) to rotate between the ring plate (4) and the stirring cylinder (18), when rotating, the rotating plate (7) extrudes the back plate spring (19) to rotate, when the push block (31) slides out of the rotating plate (7), the back plate spring (19) pushes the rotating plate (7) to reset, the rotating plate (7) is pushed and extruded by the push block (31) and the back plate spring (19) pushes the rotating plate (7) to reset, the two work together, so that the fan plate (28) realizes the fan work on the outer wall of the stirring cylinder (18).
Citation Information
Patent Citations
Novel areca-nut brine preparation method
CN107440062A
Pharmaceutical wastewater purification device
CN118684384A
Processing and stirring device for areca-nut brine
CN219399745U