Granulating equipment for producing san ren tea solid beverage
By using an air jet ring and a micro-pump system to pre-dry and secondary extrude the granules, the problem of wet granules sticking together is solved, the dispersibility and quality of the granules are improved, transportation and storage costs are reduced, and a highly efficient granulation process is achieved.
Patent Information
- Application Number
- CN202511525089.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-24
- Publication Date
- 2026-02-13
- Estimated Expiration
- 2045-10-24
AI Technical Summary
In the prior art, freshly extruded wet granules have high adhesiveness, causing them to clump together after extrusion, which affects the subsequent drying process.
The pellets are pre-dried using a jet ring and micro-pump system. Lightweight fragments are separated and recycled by blowing air upwards through jet holes. The pellets are then extruded and shaped again using an extrusion plate. The raw material temperature is maintained through a cooling cycle, thereby improving pellet quality and utilization rate.
It effectively avoids particle adhesion, improves particle dispersibility and overall quality, reduces transportation and storage costs, and at the same time improves raw material utilization and granulation efficiency.
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Figure CN120984173B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the field of solid beverage production, and particularly relates to a granulating equipment for producing solid beverage of Sanren tea. BACKGROUND
[0002] The solid beverage of Sanren tea is prepared from Yuliiren, Labi, Maidongxugen, Sangsheng, wheat, Yiriren, Fuling, Baobian, Heye, Mugu, sorbitol, lactitol, maltodextrin, maltitol, resistant dextrin, fish collagen peptide, yeast extract, vegetable fat powder and silicon dioxide as raw materials through extraction, concentration, granulation and drying processes.
[0003] The prior art usually adds dry paste powder, maltitol fine powder and other mixed materials into a mixer for mixing for 20 minutes, then slowly adds appropriate amount of pure water for stirring to form suitable soft material, and the soft material is extruded by a granulator to form wet particles, and the wet particles are dried, but the just extruded wet particles have high stickiness, so that the particles are bonded together after extrusion, which is not conducive to the subsequent drying process. SUMMARY
[0004] In order to overcome the shortcomings that the just extruded wet particles have high stickiness, so that the particles are bonded together after extrusion, which is not conducive to the subsequent drying process, the present application provides a granulating equipment for producing solid beverage of Sanren tea.
[0005] Technical scheme: A granulating equipment for producing solid beverage of Sanren tea, comprising a granulator, a gas injection ring, a connecting pipe, a connecting ring, a micro pump and a hollow pipe; the granulator is connected with the gas injection ring; the gas injection ring is provided with a plurality of annularly distributed gas injection holes; the granulator is connected with a plurality of connecting pipes; the gas injection ring is fixedly connected with the connecting ring, and the connecting ring is in communication with the connecting pipes; the connecting ring is provided with a plurality of collecting holes; the connecting pipe is connected with the micro pump; the connecting pipe is in communication with the hollow pipe, and the hollow pipe is located in the granulator; and the top of the granulator is provided with an exhaust valve.
[0006] In addition, it is particularly preferred that the granulator comprises a chassis, a fixed seat, an electric drive shaft, an extrusion plate, an electric push rod, a discharge ring and a stirring assembly; the chassis is fixedly connected with the fixed seat; the fixed seat is fixedly connected with the discharge ring; the discharge ring is provided with a plurality of annularly distributed discharge holes; the discharge ring is connected with the stirring assembly for stirring the raw materials; the fixed seat is fixedly connected with the electric push rod; the telescopic end of the electric push rod is fixedly connected with a rectangular plate which is slidingly connected with the chassis; the rectangular plate is fixedly connected with a driving motor; the output shaft of the driving motor is fixedly connected with the electric drive shaft; the electric drive shaft is slidingly connected with the extrusion plate through a spline, and the extrusion plate is located on the inner side of the discharge ring.
[0007] Furthermore, it is particularly preferred that the stirring assembly comprises a stirring cylinder, a feeding pipe, a liquid injection pipe, a stirring plate and a connecting plate; the discharge ring is fixedly connected with the stirring cylinder, the stirring cylinder is fixedly connected with the connecting pipe, and the stirring cylinder is fixedly connected with the air injection ring; the stirring cylinder is communicated with the feeding pipe; the stirring cylinder is communicated with the liquid injection pipe; the electric drive shaft is fixedly connected with the stirring plate located in the stirring cylinder; the electric drive shaft is fixedly connected with the connecting plate in sliding connection with the stirring cylinder; and the exhaust valve is located at the top of the stirring cylinder.
[0008] Furthermore, it is particularly preferred that the air injection hole is upwardly inclined.
[0009] Furthermore, it is particularly preferred that the air injection ring is arranged in a manner that the upper part is smaller and the lower part is larger.
[0010] Furthermore, it is particularly preferred that the stirring assembly further comprises a partition plate; the discharge ring is fixedly connected with a plurality of partition plates, and the partition plates are located between adjacent two rows of discharge holes.
[0011] Furthermore, it is particularly preferred that the outlet end of the hollow pipe is located at the lower part of the stirring cylinder.
[0012] Furthermore, it is particularly preferred that the connecting plate is arranged in a manner that the middle part is higher and the four peripheral parts are lower.
[0013] Furthermore, it is particularly preferred that the stirring assembly further comprises an inner ring, an electric guide rail, a moving block, an extrusion plate I, a rubber sheet, a rotating plate and an extrusion plate II; the fixed seat is fixedly connected with the inner ring, and the inner ring is fixedly connected with the stirring cylinder and located at the inner side of the discharge ring, and a compression cavity is formed between the outer side of the inner ring and the inner side of the discharge ring; the inner ring is provided with a plurality of round holes, and the diameter of the discharge hole is smaller than that of the round hole; the stirring cylinder is provided with a sliding groove; the stirring cylinder is fixedly connected with the electric guide rail; the electric guide rail is slidingly connected with a plurality of moving blocks, and the moving blocks slide in the sliding groove; one half of the number of the moving blocks are each fixedly connected with an extrusion plate I, and the extrusion plate I slides in the sliding groove; the other half of the number of the moving blocks are each fixedly connected with an extrusion plate II, and the extrusion plate II slides in the sliding groove, and the extrusion plate II is distributed in intervals with the extrusion plate I; one rubber sheet for sealing the sliding groove is fixedly connected between each of the adjacent two moving blocks; one rotating plate is rotatably connected in each of the round holes, and a torsion spring is arranged between the rotating plate and the round hole, and the rotating plate is only allowed to rotate to one side of the discharge ring.
[0014] Furthermore, it is particularly preferred that the stirring assembly further comprises a round pipe, a return pipe, a one-way valve and a connecting sheet; the electric drive shaft is hollow, and the electric drive shaft, the extrusion plate and the stirring plate are all made of heat-conducting material; the electric drive shaft is rotatably connected with the round pipe in communication with the inside of the electric drive shaft, and the round pipe is fixedly connected with the stirring cylinder; the electric drive shaft is fixedly connected with the return pipe, and the return pipe is located in the inside of the electric drive shaft; the connecting sheet is fixedly connected to the bottom of the return pipe and fixedly connected with the inner wall of the electric drive shaft; the connecting sheet is fixedly connected with a plurality of one-way valves, and the one-way valves only allow fluid to flow from top to bottom.
[0015] Beneficial effects: when the present application blows the particles upward for pre-drying through the air injection hole, the light broken powder is blown upward and enters the connecting ring through the collecting hole, while the heavy particles fall downward under the action of gravity and are not blown into the connecting ring, at the same time, the micro pump is controlled to start, the broken powder in the connecting ring is sucked into the hollow pipe through the connecting pipe, and then is blown into the stirring cylinder, the exhaust valve at the top of the stirring cylinder exhausts the excess gas in the stirring cylinder, thereby blowing the broken powder separated from the particles back into the stirring cylinder for recycling, improving the raw material utilization rate, reducing the broken powder mixed in the particles, and improving the overall quality of the particles.
[0016] The present application can extrude the raw material extruded from the discharge hole for the first time again through the extrusion plate I and the extrusion plate II in turn and alternately, complete the secondary extrusion molding, and the diameter of the discharge hole is smaller than the round hole, so that the particles extruded from the discharge hole have higher bulk density, and the material with high bulk density has large unit volume mass, so that the occupied space is relatively small during storage and transportation, thereby reducing the cost.
[0017] In the granulation process, the external pump is controlled to start, cold air is downwardly conveyed into the hollow electric drive shaft through the round pipe, the extrusion plate and the stirring plate are cooled through heat exchange, the raw material is maintained at a suitable temperature, then the cold air flows into the return pipe downwardly through the one-way valve on the connecting piece, and finally returns to the cooling pump from the return pipe, so that the cooling cycle is formed, and the granulation quality is improved. BRIEF DESCRIPTION OF DRAWINGS
[0018] Figure 1 The structure schematic view of the granulation equipment for producing the solid beverage of Sanren tea is disclosed.
[0019] Figure 2 The internal structure schematic view of the air injection ring of the granulation equipment for producing the solid beverage of Sanren tea is disclosed.
[0020] Figure 3 The combined sectional view of the stirring cylinder and the air injection ring of the granulation equipment for producing the solid beverage of Sanren tea is disclosed.
[0021] Figure 4 The combined partial sectional view of the stirring cylinder, the air injection ring and the discharge ring of the granulation equipment for producing the solid beverage of Sanren tea is disclosed.
[0022] Figure 5 The combined partial structure schematic view of the discharge ring, the partition plate and the inner ring of the granulation equipment for producing the solid beverage of Sanren tea is disclosed.
[0023] Figure 6The combination partial structure schematic diagram of the stirring barrel, the inner ring, the electric guide rail, the moving block and the extrusion plate I of the granulating equipment for the production of the solid beverage of Sanrencha tea disclosed by the application is shown in the figure;
[0024] Figure 7 The combination partial structure schematic diagram of the inner ring and the discharging ring of the granulating equipment for the production of the solid beverage of Sanrencha tea disclosed by the application is shown in the figure;
[0025] Figure 8 The initial state diagram of the extrusion plate I and the extrusion plate II of the granulating equipment for the production of the solid beverage of Sanrencha tea disclosed by the application is shown in the figure;
[0026] Figure 9 The state diagram when the extrusion plate I extrudes to the side of the extrusion plate II of the granulating equipment for the production of the solid beverage of Sanrencha tea disclosed by the application is shown in the figure.
[0027] In the figure: 1 - base frame, 101 - fixed seat, 102 - electric drive shaft, 103 - extrusion plate, 104 - stirring barrel, 105 - feeding pipe, 106 - liquid spraying pipe, 107 - stirring plate, 108 - connecting plate, 109 - electric push rod, 1010 - air jet ring, 1011 - discharging ring, 1012 - partition plate, 1013 - connecting pipe, 1014 - connecting ring, 1015 - micro pump, 1016 - hollow pipe, 1017 - rectangular plate, 1018 - drive motor, 201 - inner ring, 202 - electric guide rail, 203 - moving block, 204 - extrusion plate I, 205 - rubber sheet, 206 - rotating plate, 207 - extrusion plate II, 301 - round pipe, 302 - return pipe, 303 - one-way valve, 304 - connecting sheet, 1001 - air jet hole, 1002 - collection hole, 11 - discharging hole, 21 - round hole, 22 - compression cavity, 41 - sliding groove. DETAILED DESCRIPTION
[0028] In order to make the purpose, technical scheme and advantages of the present application more clear and obvious, the present application is further described in detail below in combination with specific embodiments and with reference to the drawings. It should be understood that these descriptions are only exemplary and are not intended to limit the scope of the present application. In addition, in the following description, the description of the known structures and technologies is omitted to avoid unnecessary confusion of the concept of the present application.
[0029] Example 1, a granulating equipment for the production of a solid beverage of Sanrencha tea, as shown in the figure, comprises a granulator; Figures 1-9
[0030] The jet ring 1010 is connected with the pelletizer, the jet ring 1010 is provided with a plurality of jet holes 1001 which are distributed in a ring shape, the pelletizer is connected with two connecting pipes 1013, the jet ring 1010 is fixedly connected with a connecting ring 1014 which is communicated with the connecting pipes 1013, the connecting ring 1014 is provided with at least eight collecting holes 1002, the connecting pipes 1013 are connected with a micro pump 1015, the connecting pipes 1013 are communicated with a hollow pipe 1016 which is located in the pelletizer, and an exhaust valve is arranged at the top of the pelletizer.
[0031] The pelletizer comprises a base frame 1, a fixed seat 101, an electric drive shaft 102, an extrusion plate 103, an electric push rod 109, a discharging ring 1011 and a stirring assembly, the fixed seat 101 is fixedly connected with the base frame 1, the discharging ring 1011 is fixedly connected with the fixed seat 101, the discharging ring 1011 is provided with a plurality of discharging holes 11, the discharging ring 1011 is connected with the stirring assembly for stirring raw materials, the electric push rod 109 is bolted with the fixed seat 101, the telescopic end of the electric push rod 109 is fixedly connected with a rectangular plate 1017 which is slidingly connected with the base frame 1, the rectangular plate 1017 is bolted with a drive motor 1018, the output shaft of the drive motor 1018 is fixedly connected with the electric drive shaft 102, and the electric drive shaft 102 is slidingly connected with the extrusion plate 103 through a spline and the extrusion plate 103 is located on the inner side of the discharging ring 1011.
[0032] The stirring assembly comprises a stirring cylinder 104, a feeding pipe 105, a liquid spraying pipe 106, a stirring plate 107 and a connecting plate 108, the discharging ring 1011 is fixedly connected with the stirring cylinder 104 which is fixedly connected with the connecting pipes 1013 and the jet ring 1010 and located on the upper side of the discharging ring 1011, the stirring cylinder 104 is communicated with the feeding pipe 105 and the liquid spraying pipe 106, the electric drive shaft 102 is fixedly connected with the stirring plate 107 which is located in the stirring cylinder 104, and the electric drive shaft 102 is fixedly connected with the connecting plate 108 which is slidingly connected with the stirring cylinder 104, and the exhaust valve is located at the top of the stirring cylinder 104.
[0033] The jet holes 1001 are arranged in an upwardly inclined manner.
[0034] The jet ring 1010 is arranged in a circular truncated cone shape with a small upper part and a large lower part.
[0035] The pelletizer further comprises a partition plate 1012, a plurality of partition plates 1012 are fixedly connected with the outer side of the discharging ring 1011 and located between two adjacent rows of discharging holes 11.
[0036] The outlet end of the hollow pipe 1016 is located in the lower part of the stirring cylinder 104.
[0037] The connecting plate 108 is arranged with a middle high and four sides low, and the powder in the stirring cylinder 104 falls down when the connecting plate 108 moves down, thereby guiding the powder downward and reducing the amount of powder adhered to the connecting plate 108.
[0038] In use, the external air pump is connected to the air jet ring 1010 through the air pipe, and the external pump is connected to the liquid jet pipe 106. Then, the operator adds the raw materials composed of dry paste powder, maltitol fine powder and other mixed materials into the stirring cylinder 104 from the feeding pipe 105. Subsequently, the driving motor 1018 is controlled to drive the electric drive shaft 102 to rotate, and the electric drive shaft 102 drives the stirring plate 107 to rotate. At the same time, the electric drive shaft 102 drives the extrusion plate 103 to rotate through the spline. Then, the stirring plate 107 stirs the raw materials in the stirring cylinder 104. After stirring for 20 minutes, the external pump is controlled to slowly add a proper amount of pure water into the stirring cylinder 104 through the liquid jet pipe 106 to stir, so that the raw materials are made into soft materials with appropriate moisture. After the stirring is completed, the electric push rod 109 is controlled to drive the rectangular plate 1017, the driving motor 1018, the electric drive shaft 102, the stirring plate 107 and the connecting plate 108 to move upward. The electric drive shaft 102 slides relative to the extrusion plate 103, and the connecting plate 108 rises and separates from the stirring cylinder 104. At this time, the raw materials in the stirring cylinder 104 fall down from the gap between the connecting plate 108 and the stirring cylinder 104 into the discharging ring 1011, and then are extruded from the discharge hole 11 by the rotating extrusion plate 103 to form granular products.
[0039] After the particles are extruded from the discharge hole 11, the external air pump is controlled to start, and gas is delivered into the air jet ring 1010, so that the gas is sprayed from the air jet hole 1001 to blow the particles extruded from the discharge hole 11, pre-dry the particles, keep the particles in a dispersed granular state, avoid the moist particles having high adhesion, and make the particles adhere to each other to form a group after extrusion, which is not conducive to the subsequent drying process.
[0040] Moreover, the air jet hole 1001 is arranged in an upward inclination, so that the gas sprayed from the air jet hole 1001 blows the extruded particles upward, prolongs the contact time of the particles with the gas flow, improves the pre-drying efficiency, avoids the surface being quickly dried while the inside being still wet, and avoids the cracking phenomenon caused by “surface drying”.
[0041] It is also considered that when the gas sprayed from the air jet hole 1001 blows the extruded particles, the space between the inner side of the air jet ring 1010 and the outer side of the discharging ring 1011 is small, and the particles are easily adhered and remained on the inner wall of the air jet ring 1010 after being blown up. Therefore, the inner side of the air jet ring 1010 is arranged in an inclination, the space between the inner side of the air jet ring 1010 and the outer side of the discharging ring 1011 is increased, the capacity of accommodating the particles is improved, the amount of particles adhered to the inner wall of the air jet ring 1010 is reduced, and the discharging efficiency is improved.
[0042] Since the particles just extruded from the discharge holes 11 are in a wet stage, and the particles themselves contain sugar, the particles extruded from the adjacent two rows of discharge holes 11 are easy to stick together, and it is difficult to dry them subsequently. Therefore, by arranging the partition plates 1012 between the vertically adjacent two rows of discharge holes 11, the particles extruded from the adjacent two rows of discharge holes 11 are initially separated, avoiding them from sticking together at the beginning.
[0043] Further considering that the particles extruded from the discharge holes 11 will carry some fines, when the air injection hole 1001 blows the particles upward for pre-drying, the fines with lighter mass are blown upward and pass through the collection hole 1002 into the connecting ring 1014, while the particles with heavier mass will fall downward under the action of their own gravity and will not be blown into the connecting ring 1014. At the same time, the micro-pump 1015 is controlled to start, and the fines in the connecting ring 1014 are sucked into the hollow tube 1016 through the connecting pipe 1013, and then blown into the stirring drum 104 by the hollow tube 1016. The exhaust valve at the top of the stirring drum 104 exhausts the excess gas in the stirring drum 104, thereby blowing some of the fines falling from the particles back into the initial stirring drum 104 for recycling, improving the utilization rate of raw materials, reducing the fines mixed in the particles, and improving the overall quality of the particles.
[0044] Since the outlet end of the hollow tube 1016 is located at the inner lower part of the stirring drum 104, the fines blown out from the hollow tube 1016 will directly fall into the bottom of the stirring drum 104 and mix with the raw materials, avoiding the fines blown into the stirring drum 104 from being immediately exhausted from the exhaust valve at the top of the stirring drum 104, causing waste.
[0045] Example 2, based on example 1, as Figures 3-9As shown, it also comprises an inner ring 201, an electric guide rail 202, a moving block 203, an extrusion plate I 204, a rubber sheet 205, a rotating plate 206 and an extrusion plate II 207; the fixed seat 101 is fixedly connected with the inner ring 201, and the inner ring 201 is fixedly connected with the stirring barrel 104, and the inner ring 201 is located inside the discharging ring 1011, and a compression cavity 22 is formed between the outer side of the inner ring 201 and the inner side of the discharging ring 1011; the inner ring 201 is provided with a plurality of round holes 21, and the diameter of the discharging hole 11 is smaller than that of the round hole 21; the stirring barrel 104 is provided with a sliding groove 41; the stirring barrel 104 is fixedly connected with the electric guide rail 202; the electric guide rail 202 is slidingly connected with eight moving blocks 203, and the moving blocks 203 slide in the sliding groove 41; half of the number of the moving blocks 203 are fixedly connected with one extrusion plate I 204, and the extrusion plate I 204 slides in the sliding groove 41; the other half of the number of the moving blocks 203 are fixedly connected with one extrusion plate II 207, and the extrusion plate II 207 slides in the sliding groove 41, and the extrusion plate II 207 is distributed at intervals with the extrusion plate I 204; one rubber sheet 205 is fixedly connected between every two adjacent moving blocks 203; one rotating plate 206 is rotatably connected in each round hole 21, and a torsion spring is arranged between the rotating plate 206 and the round hole 21, and the rotating plate 206 is only allowed to rotate to one side of the discharging ring 1011.
[0046] The prior art only extrudes the stirred raw materials once, and has the problem of low compression molding property, and the bulk density of the particles is low, and more fine powder is easily produced. In order to solve this problem, the extrusion plate 103 rotates to extrude the stirred raw materials into the inner ring 201 first, the rotating plate 206 rotates to the one side of the discharging ring 1011 to open the round hole 21, so that the raw materials are first extruded through the round hole 21 and then enter the compression cavity 22, at this time, the electric guide rail 202 is controlled to make the moving block 203 drive the corresponding extrusion plate I 204 to rotate clockwise from the top to the bottom, the moving block 203 slides in the sliding groove 41, the moving block 203 makes the rubber sheet 205 adaptively deform, keeps the sealing of the lower side of the sliding groove 41, makes the extrusion plate I 204 move to the side close to the extrusion plate II 207, and then the raw materials between the extrusion plate I 204 and the extrusion plate II 207 which have been extruded once are extruded from the discharging hole 11 again, like Figure 9As shown, then, the control electric guide rail 202 makes the moving block 203 drive the corresponding extrusion plate II 207 to rotate clockwise from the top to the bottom view, so that the extrusion plate II 207 moves to the side close to the extrusion plate I 204, and then the raw material in the compression cavity 22 region between the extrusion plate I 204 and the extrusion plate II 207 is again extruded from the discharge hole 11. In this way, the extrusion plate I 204 and the extrusion plate II 207 are alternately rotated, and then the raw material that has been extruded once in the compression cavity 22 region is again extruded from the discharge hole 11, completing the secondary extrusion forming. Since the diameter of the discharge hole 11 is smaller than the diameter of the circular hole 21, the particle bulk density of the material extruded from the discharge hole 11 is higher, and the material with high bulk density has a large unit volume mass, so that the space occupied during storage and transportation is relatively small, thereby reducing the cost. As shown, since the rotating plate 206 in the circular hole 21 is only allowed to rotate to one side of the discharge ring 1011, the raw material extruded again in the compression cavity 22 cannot return to the inner ring 201 from the circular hole 21, but can only be extruded from the discharge hole 11.
[0047] In Example 3, based on Example 2, as shown in Figure 3 and Figure 4 Further comprising a circular pipe 301, a return pipe 302, a one-way valve 303 and a connecting piece 304; the electric drive shaft 102 is hollow, and the electric drive shaft 102, the extrusion plate 103 and the stirring plate 107 are all made of copper; the electric drive shaft 102 is rotatably connected with the circular pipe 301, the circular pipe 301 communicates with the electric drive shaft 102, and the circular pipe 301 is fixedly connected with the stirring cylinder 104; the electric drive shaft 102 is fixedly connected with the return pipe 302, and the return pipe 302 is located inside the electric drive shaft 102; the bottom of the return pipe 302 is fixedly connected with the connecting piece 304, and the connecting piece 304 is fixedly connected with the inner wall of the electric drive shaft 102; the connecting piece 304 is fixedly connected with three one-way valves 303, and the one-way valves 303 only allow fluid to flow from top to bottom.
[0048] In this embodiment, the air inlet of the external cooling pump is communicated with the circular pipe 301, and the air outlet is communicated with the return pipe 302. Considering that the granulation raw material contains syrup components, and the extrusion plate 103 and the stirring plate 107 will generate a certain amount of heat when rotating rapidly, and the temperature of the raw material will rise under continuous work, thereby causing the syrup components to coking and discoloring, affecting the granulation quality. Therefore, in the granulation process of Example 1, the external pump is controlled to start, cold air is downwardly conveyed into the hollow electric drive shaft 102 through the circular pipe 301, and then the extrusion plate 103 and the stirring plate 107 are cooled through heat exchange, so that the raw material is maintained at a suitable temperature. Then the cold air flows downwardly through the one-way valves 303 on the connecting piece 304 into the return pipe 302, and finally returns to the cooling pump from the return pipe 302, forming a cooling cycle and improving the granulation quality.
[0049] It should be understood that the foregoing embodiments are merely illustrative of the present application and that no limitation of the scope of the present application is intended by the same. Furthermore, it should be appreciated that in the practice of the application, modifications can be made by those skilled in the art without departing from the scope of the application as taught by the foregoing disclosure.
Claims
1. A granulating apparatus for producing a solid beverage of three-nut tea, comprising a granulator, characterized in that: The jet ring (1010) is provided with a plurality of annularly distributed jet holes (1001); the pelletizer is connected with a plurality of connecting pipes (1013); the jet ring (1010) is fixedly connected with a connecting ring (1014), and the connecting ring (1014) is communicated with the connecting pipes (1013); the connecting ring (1014) is provided with a plurality of collecting holes (1002); the connecting pipes (1013) are connected with micro pumps (1015); the connecting pipes (1013) are communicated with hollow pipes (1016), and the hollow pipes (1016) are located in the pelletizer; and the pelletizer is provided at the top with an exhaust valve; The pelletizer comprises a chassis (1); the chassis (1) is fixedly connected with a fixing seat (101); the fixing seat (101) is fixedly connected with a discharging ring (1011); the discharging ring (1011) is provided with a plurality of annularly distributed discharging holes (11); the discharging ring (1011) is connected with a stirring assembly for stirring raw materials; the fixing seat (101) is fixedly connected with an electric push rod (109); the telescopic end of the electric push rod (109) is fixedly connected with a rectangular plate (1017) which is slidingly connected with the chassis (1); the rectangular plate (1017) is fixedly connected with a driving motor (1018); the output shaft of the driving motor (1018) is fixedly connected with an electric driving shaft (102); the electric driving shaft (102) is slidingly connected with an extrusion plate (103) through a spline, and the extrusion plate (103) is located on the inner side of the discharging ring (1011); The stirring assembly comprises a stirring cylinder (104); the discharging ring (1011) is fixedly connected with the stirring cylinder (104), the stirring cylinder (104) is fixedly connected with the connecting pipes (1013), and the stirring cylinder (104) is fixedly connected with the jet ring (1010); the stirring cylinder (104) is communicated with a feeding pipe (105); the stirring cylinder (104) is communicated with a liquid spraying pipe (106); the electric driving shaft (102) is fixedly connected with a stirring plate (107) located in the stirring cylinder (104); the electric driving shaft (102) is fixedly connected with a connecting plate (108) which is slidingly connected with the stirring cylinder (104); and the exhaust valve is located at the top of the stirring cylinder (104); Further include the inner ring (201); The fixed seat (101) is fixed with the inner ring (201), and the inner ring (201) is fixed with the stirring drum (104), and the inner ring (201) is located inside the discharge ring (1011), and the compression cavity (22) is formed between the outer side of the inner ring (201) and the inner side of the discharge ring (1011); The inner ring (201) is provided with a plurality of round holes (21), and the discharge hole (11) is smaller than the round hole (21); The stirring drum (104) is provided with a sliding groove (41); The stirring drum (104) is fixed with the electric guide rail (202); A plurality of moving blocks (203) are slidably connected to the electric guide rail (202), and the moving blocks (203) slide in the sliding groove (41); Half of the number of moving blocks (203) are fixed with an extrusion plate I (204), and the extrusion plate I (204) slides in the sliding groove (41); The other half of the number of moving blocks (203) are fixed with an extrusion plate II (207), and the extrusion plate II (207) slides in the sliding groove (41), and the extrusion plate II (207) is distributed with the extrusion plate I (204) at intervals; A rubber sheet (205) for plugging the sliding groove (41) is fixed between the adjacent two moving blocks (203); Each round hole (21) is rotatably connected with a rotating plate (206), and a torsion spring is arranged between the rotating plate (206) and the round hole (21), and the rotating plate (206) is configured to rotate only in the direction away from the center of the inner ring (201).
2. The granulating apparatus for producing a solid beverage of three nuts tea according to claim 1, wherein The air injection hole (1001) is upwardly inclined.
3. The granulating apparatus for producing a solid beverage of three nuts tea according to claim 1, wherein The air injection ring (1010) is arranged in a small size at the top and a large size at the bottom.
4. The granulating apparatus for producing a solid beverage of three nuts tea according to claim 2, wherein Further include the partition (1012); The discharge ring (1011) is fixed with a plurality of partition plates (1012), and the partition plate (1012) is located between the adjacent two rows of discharge holes (11).
5. The granulating apparatus for producing a solid beverage of three nuts tea according to claim 3, wherein The outlet end of the hollow tube (1016) is located in the lower part of the stirring drum (104).
6. The granulating apparatus for producing a solid beverage of three nuts tea according to claim 3, wherein The connecting plate (108) is arranged in a high middle and low periphery.
7. The granulating apparatus for producing a solid beverage of three nuts tea according to claim 3, wherein the granulating apparatus is characterized by comprising: a granulating device for granulating the tea leaves; and a drying device for drying the tea leaves granulated by the granulating device. Further include the round tube (301); The electric drive shaft (102) is hollow, and the electric drive shaft (102), the extrusion plate (103) and the stirring plate (107) are all made of heat-conducting material; The electric drive shaft (102) is rotatably connected with the round tube (301) in communication with its interior, and the round tube (301) is fixed with the stirring drum (104); The electric drive shaft (102) is fixed with the return pipe (302), and the return pipe (302) is located in the interior of the electric drive shaft (102); The connecting piece (304) is fixed at the bottom of the return pipe (302), and the connecting piece (304) is fixed with the inner wall of the electric drive shaft (102); The connecting piece (304) is fixed with a plurality of one-way valves (303), and the one-way valves (303) only allow fluid to flow from top to bottom.
Citation Information
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