Green citrus tea production system and processing technology
Through the combination of rotary cutting device and gas injection assembly, the problem of insufficient cutting in green gantang tea production is solved, high-effect meat cutting and production efficiency are improved, labor costs are reduced, and system reliability is improved.
Patent Information
- Application Number
- CN202310839716.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-07-10
- Publication Date
- 2025-08-22
- Estimated Expiration
- 2043-07-10
AI Technical Summary
In the existing green orange tea production system, the cutting mechanism is difficult to adapt to the inner wall of the small green orange, resulting in insufficient cutting, high labor costs and low production efficiency.
The rotating cutting device is adopted, including an annular rotating seat, an elastic cutting piece and an air injection assembly. The rotation driving assembly drives the annular rotating seat to rotate, and the air injection assembly is used to control the deformation of the elastic cutting piece, which is suitable for the internal shape of the green orange for sufficient cutting.
It realizes efficient cutting of green orange pulp, reduces labor costs, improves production efficiency, and saves power sources through the rational use of rotating drive components, and improves the reliability of the system.
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Figure CN116784492B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of green citrus tea production systems, and in particular to a green citrus tea production system and a processing technology thereof. Background Art
[0002] Green tangerine tea, as the name suggests, is a tea drink prepared with green tangerines as raw materials. Usually, in the process of making green tangerine tea, it is necessary to open the green tangerines, take out the pulp inside, keep the green tangerine peel, and then carry out subsequent preparations. In the green tangerine processing link, since it is necessary to keep the original shape of the green tangerine peel as much as possible, it is difficult for the knife to reach the inside of the green tangerine when cutting. Therefore, most of the operations are manual, resulting in high labor costs and insufficient production efficiency. Therefore, a green tangerine tea production system is urgently needed to solve the above problems.
[0003] After searching, the Chinese patent application number CN202110071582.2 discloses a small green tangerine auxiliary fleshing device, which includes a support frame, a compression mechanism, a cutting mechanism, a scraping mechanism and a clamping and rotating mechanism; the support frame is fixedly connected to a compression mechanism, the support frame is fixedly connected to a cutting mechanism, one side of the compression mechanism is fixedly connected to a scraping mechanism, and the support frame is fixedly connected to a clamping and rotating mechanism. The small green tangerine auxiliary fleshing device in the above patent has the following shortcomings: although it is provided with a cutting mechanism that can adjust the cutting range, the shape of the cutting mechanism is difficult to adapt to the inner wall of the small green tangerine, which easily causes insufficient cutting and needs to be improved. Summary of the Invention
[0004] The purpose of the present invention is to solve the shortcomings of the prior art and to propose a green citrus tea production system and a processing technology thereof.
[0005] In order to achieve the above object, the present invention adopts the following technical solutions:
[0006] A green tangerine tea production system includes a green tangerine hollowing device, the green tangerine hollowing device includes a rotary cutting device, and the rotary cutting device includes:
[0007] A mounting frame, an electric telescopic cylinder is installed on the top of the mounting frame, and a mounting base is fixed on the output end of the electric telescopic cylinder;
[0008] An annular rotating seat, which is rotatably mounted on the mounting frame, and the mounting seat is slidably connected to the outer wall of the annular rotating seat. The central axis of the annular rotating seat and the mounting seat are adapted to each other, and an annular cutting head for opening is provided at the bottom end of the annular rotating seat;
[0009] A rotation drive assembly is mounted on the mounting frame and is used to drive the annular rotating seat to rotate;
[0010] Mounting rod, a cutting motor is installed on the inner wall of the top of the mounting seat, the output end of the cutting motor is connected to the mounting rod through a coupling, and the mounting rod is a hollow structure;
[0011] The piston rod, the piston rod seal is movably connected to the inner wall of the mounting rod, and a plurality of strip openings are opened on the bottom side wall of the mounting rod. The outer circumferential wall of the bottom end of the mounting rod is fixed with evenly distributed elastic cutting pieces, and the other end of the elastic cutting piece passes through the strip opening and is fixed to the bottom side wall of the piston rod;
[0012] The gas injection assembly is installed on the outside of the mounting rod and is used to inject gas into the space at the top of the piston rod inside the mounting rod, thereby driving the piston rod to move up and down inside the mounting rod.
[0013] Preferably, the rotation drive assembly includes:
[0014] a first drive motor, the first drive motor being fixed to an outer wall of the mounting frame;
[0015] The driving gear is rotatably mounted on the mounting frame, and the driving gear is transmission-connected to the output end of the first driving motor. The outer wall of the annular rotating seat is provided with evenly distributed convex teeth, and the driving gear is meshed with the convex teeth.
[0016] Further: the rotary cutting device also includes:
[0017] A first support frame, wherein an electric telescopic frame is installed on the top of the first support frame, and one end of the mounting frame is rotatably mounted on the electric telescopic frame;
[0018] The second drive motor is fixed to the top of the electric telescopic frame, and the output end of the second drive motor is connected to the mounting frame through a shaft.
[0019] Further: the gas injection assembly includes:
[0020] An annular airbag, which is installed on the outside of the mounting rod;
[0021] A ventilation tube, one end of which is conductively connected to the annular airbag, and the other end of which is conductively connected to the top end of the mounting rod;
[0022] An extrusion member is mounted in the mounting base.
[0023] Furthermore: a first annular gear rack is fixed to the inner wall of the top of the mounting seat, an annular bracket is fixed to the inner wall of the top of the mounting seat, a mounting cylinder is rotatably mounted on the annular bracket, a second annular gear rack is mounted on the top of the mounting cylinder through a second spring, the second annular gear rack can slide up and down on the inner wall of the top of the mounting cylinder, and the second annular gear rack and the first annular gear rack form a one-way limiting structure that rotates clockwise or counterclockwise;
[0024] The extrusion member includes a pressing block and a first spring. The pressing block is slidably connected to the inner wall of the mounting tube. The end position of the pressing block is adapted to the annular airbag. The pressing block is mounted on the mounting tube through the first spring.
[0025] An arc-shaped wedge is provided on the inner wall of the annular rotating seat. The thickness of the arc-shaped wedge gradually increases along the rotatable direction of the mounting cylinder. The end of the pressing block is a wedge-shaped structure adapted to the arc-shaped wedge.
[0026] Furthermore: the green mandarin hollowing equipment also includes a rotary feeding device, and the rotary feeding device includes:
[0027] A second support frame, the second support frame is installed on one side of the first support frame;
[0028] a third drive motor, the third drive motor being mounted on an outer wall of one side of the second support frame;
[0029] A turret, the turret being rotatably mounted on the second support frame via a shaft, the output end of the third drive motor being in driving connection with the shaft of the turret;
[0030] A first accommodating seat is installed on the rotating frame, and a plurality of first accommodating seats are arranged in a circumferential distribution;
[0031] The bearing net seat is detachably installed in the first receiving seat, and the bearing net seat is used to receive the green oranges.
[0032] Furthermore: a card slot is provided on the outer side of the bearing mesh seat, and a first protrusion adapted to the card slot is provided on the inner wall of the first accommodating seat. When the bearing mesh seat is installed in the first accommodating seat, the first protrusion is engaged in the card slot, and pull rings are fixed on both sides of the top of the bearing mesh seat.
[0033] Further: the green citrus tea production system also includes a conveying and cleaning device, and the conveying and cleaning device includes:
[0034] A third support frame is mounted on the third support frame, and a second accommodating seat is equidistantly mounted between the two conveyor chain assemblies. The second accommodating seat is adapted to the shape and size of the supporting mesh seat. A second protrusion adapted to the card slot is provided in the second accommodating seat, and the supporting mesh seat is detachably mounted in the second accommodating seat.
[0035] A cleaning liquid supply device is provided on one side of the conveyor chain assembly, and an output end of the cleaning liquid supply device is connected to a cleaning nozzle via a liquid supply pipe;
[0036] An electric telescopic rod is installed on the cleaning liquid supply device, a fixed bracket is installed on the top of the electric telescopic rod, and the cleaning nozzle is fixed on the fixed bracket. The position of the cleaning nozzle is adapted to the second accommodating seat.
[0037] A processing technology for a green citrus tea production system comprises the following steps:
[0038] S1: Open the green tangerine and hollow out the flesh to obtain a container-shaped green tangerine peel;
[0039] S2: cleaning the container-shaped green tangerine peel;
[0040] S3: subjecting the Suaeda salsa seeds to a preliminary fermentation treatment;
[0041] S4: steaming after the initial fermentation treatment to crack the seed coat of Suaeda salsa and expose the young shoots of Suaeda salsa inside the seeds;
[0042] S5: Laying the first layer of Suaeda salsa leaves in the container-shaped green citrus peel;
[0043] S6: Filling the container-shaped green tangerine peel with Suaeda salsa seeds treated in step S4;
[0044] S7: laying a second layer of Suaeda salsa leaves on the Suaeda salsa seeds to obtain the filled green citrus tea material;
[0045] S8: placing the filled green tangerine tea material in a fermentation tank for fermentation treatment to obtain the tea.
[0046] Further: The ingredients of the green tangerine tea, by weight, include:
[0047] 20-50 parts of Suaeda salsa seeds and 10 parts of Suaeda salsa leaves;
[0048] The filling volume of the Suaeda salsa seeds and Suaeda salsa leaves accounts for 70-90% of the total volume of the container-shaped green tangerine peel.
[0049] The beneficial effects of the present invention are:
[0050] 1. The present invention is provided with a rotary cutting device. When cutting the green mandarin oranges, the annular rotating seat can be driven to rotate by the rotary driving assembly first, and then the green mandarin oranges can be opened; after opening, the electric telescopic cylinder works to push the mounting seat downward, so that the elastic cutting blade moves downward and is exposed under the annular cutting head; the cutting motor works to drive the mounting rod to rotate, and then drives the elastic cutting blade to cut the flesh of the green mandarin oranges.
[0051] 2. When further cutting is required, the gas injection assembly of the present invention injects gas into the space at the top of the piston rod inside the mounting rod, thereby driving the piston rod to move up and down inside the mounting rod, thereby shortening the distance from the bottom end of the piston rod to the bottom end of the mounting rod, so that the elastic cutting piece is deformed and expanded outward into a lantern shape to better adapt to the shape of the interior of the green tangerine, thereby achieving the purpose of sufficient cutting.
[0052] 3. The present invention sets a rotation drive assembly, which can drive the driving gear to rotate based on the operation of the first driving motor, and then drive the annular rotating seat to rotate under the convex tooth transmission to meet the processing requirements; by setting an electric telescopic frame and a second driving motor, it can drive the mounting frame to rise and fall and deflect, thereby better meeting the processing requirements.
[0053] 4. The present invention provides a gas injection assembly, which can inject the gas in the annular airbag into the mounting rod through the ventilation duct by extrusion of the extrusion piece. When the extrusion is released, part of the gas returns to the annular airbag and the piston rod is reset, thereby achieving control of the shape of the elastic cutting blade.
[0054] 5. The present invention provides an arc-shaped wedge block, a pressure block and other structures. When the annular rotating seat rotates to drive the annular cutting head to perform an opening operation, the flat end of the arc-shaped wedge block contacts the flat surface of the end of the pressure block and pushes the pressure block to rotate the mounting tube in a rotatable direction. During the rotation, the second annular gear rack is guided by the oblique tooth structure, the second spring is compressed, and the second annular gear rack slides downward to achieve avoidance.
[0055] 6. In the present invention, when gas injection is required, the rotating drive assembly drives the annular rotating seat to reverse. At this time, the inclined end of the arc wedge block contacts the end of the pressure block, thereby squeezing the pressure block inward. At this time, since the second annular gear rack and the first annular gear rack are in a one-way limiting structure, the mounting cylinder will not rotate, so that the pressure block can be fully squeezed, thereby realizing the squeezing of the annular airbag; this method is driven by the rotating drive assembly, which fully utilizes the driving capacity of the driving component, saves power source, and has high reliability. BRIEF DESCRIPTION OF THE DRAWINGS
[0056] Figure 1 This is a structural schematic diagram of a green citrus tea production system proposed by the present invention;
[0057] Figure 2 This is a structural schematic diagram of a green citrus tea production system proposed by the present invention from another angle;
[0058] Figure 3 This is a structural schematic diagram of a green tangerine hollowing device in a green tangerine tea production system proposed by the present invention;
[0059] Figure 4 This is a structural schematic diagram of a rotary cutting device in a green citrus tea production system proposed by the present invention;
[0060] Figure 5 This is a schematic structural diagram of a cross-section of a mounting base in a green tangerine tea production system proposed by the present invention;
[0061] Figure 6 This is a schematic structural diagram of a green tangerine tea production system proposed by the present invention after the mounting base and the annular rotating base are separated;
[0062] Figure 7 This is a schematic structural diagram of a green citrus tea production system proposed by the present invention after the installation cylinder and the annular bracket are separated;
[0063] Figure 8 This is a schematic structural diagram of a cross-section of an annular airbag and a mounting rod in a green tangerine tea production system proposed by the present invention;
[0064] Figure 9 This is a structural schematic diagram of a rotary feeding device in a green citrus tea production system proposed by the present invention;
[0065] Figure 10 This is a structural diagram of the separation of the supporting net seat and the first receiving seat in the green tangerine tea production system proposed by the present invention;
[0066] Figure 11 This is a structural schematic diagram of a conveying and cleaning device in a green tangerine tea production system proposed by the present invention;
[0067] Figure 12 This is a structural schematic diagram of the second receiving seat in the green tangerine tea production system proposed by the present invention;
[0068] Figure 13 This is a relationship diagram between the amount of Suaeda salsa seeds added and the product effect in Experiment 1 of the present invention;
[0069] Figure 14 This is a graph showing the relationship between filling volume and product quality in Experiment 2 of the present invention.
[0070] In the figure: 1 mounting frame, 2 receiving tank, 3 fermentation tank, 4 rotating frame, 5 electric telescopic frame, 6 electric telescopic cylinder, 7 third support frame, 8 second collection tank, 9 first collection tank, 10 discharge pipe, 11 first support frame, 12 second drive motor, 13 mounting base, 14 annular rotating base, 15 second support frame, 16 cleaning liquid supply device, 17 conveyor chain assembly, 18 cleaning nozzle, 19 third drive motor, 20 convex teeth, 21 drive gear, 22 first drive motor, 23 annular bracket, 2 4 Mounting cylinder, 25 arc-shaped wedge, 26 annular cutting head, 27 first annular gear rack, 28 pressure block, 29 first spring, 30 second annular gear rack, 31 second spring, 32 annular airbag, 33 mounting rod, 34 elastic cutting piece, 35 strip opening, 36 piston rod, 37 ventilation duct, 38 bearing mesh seat, 39 first accommodating seat, 40 first protrusion, 41 card slot, 42 pull ring, 43 second accommodating seat, 44 electric telescopic rod, 45 liquid supply pipe, 46 fixing bracket, 47 second protrusion. DETAILED DESCRIPTION
[0071] The technical solution of this patent is further described in detail below in conjunction with specific implementation methods.
[0072] The following describes in detail embodiments of the present invention, examples of which are shown in the accompanying drawings, wherein the same or similar reference numerals throughout represent the same or similar elements or elements having the same or similar functions. The embodiments described below with reference to the accompanying drawings are exemplary and are only used to explain the present invention, and should not be construed as limiting the present invention.
[0073] Example 1:
[0074] A green citrus tea production system, such as Figure 1-12 As shown, it includes a green tangerine hollowing device, the green tangerine hollowing device includes a rotary cutting device, and the rotary cutting device includes:
[0075] Mounting frame 1, the top of which is mounted an electric telescopic cylinder 6, the output end of which is fixed with a mounting seat 13;
[0076] The annular rotating seat 14 is rotatably mounted on the mounting frame 1, and the mounting seat 13 is slidably connected to the outer wall of the annular rotating seat 14. The central axis positions of the annular rotating seat 14 and the mounting seat 13 are adapted. The bottom end of the annular rotating seat 14 is provided with an annular cutting head 26 for opening;
[0077] A rotation drive assembly is mounted on the mounting frame 1 and is used to drive the annular rotating seat 14 to rotate;
[0078] Mounting rod 33, a cutting motor is mounted on the inner wall of the top of the mounting seat 13, and the output end of the cutting motor is connected to the mounting rod 33 through a coupling. The mounting rod 33 is a hollow structure;
[0079] The piston rod 36 is movably connected to the inner wall of the mounting rod 33 in a sealed manner. The bottom side wall of the mounting rod 33 is provided with a plurality of strip-shaped openings 35. The outer circumferential wall of the bottom end of the mounting rod 33 is fixed with evenly distributed elastic cutting blades 34. The other end of the elastic cutting blade 34 passes through the strip opening 35 and is fixed to the bottom side wall of the piston rod 36.
[0080] The gas injection assembly is installed on the outside of the mounting rod 33 and is used to inject gas into the space above the piston rod 36 inside the mounting rod 33, thereby driving the piston rod 36 to move up and down inside the mounting rod 33;
[0081] By providing a rotary cutting device, when cutting the green mandarin oranges, the annular rotating seat 14 can be driven to rotate by the rotary drive assembly first, thereby opening the green mandarin oranges; after opening, the electric telescopic cylinder 6 works to push the mounting seat 13 downward, causing the elastic cutting blade 34 to move downward and be exposed under the annular cutting head 26; the cutting motor works to drive the mounting rod 33 to rotate, thereby driving the elastic cutting blade 34 to cut the flesh of the green mandarin oranges;
[0082] When further cutting is required, the air injection assembly injects air into the space at the top of the piston rod 36 inside the mounting rod 33, thereby driving the piston rod 36 to move up and down inside the mounting rod 33, thereby shortening the distance from the bottom end of the piston rod 36 to the bottom end of the mounting rod 33, causing the elastic cutting piece 34 to deform and expand outward into a lantern shape to better adapt to the shape of the inside of the green tangerine, thereby achieving the purpose of sufficient cutting.
[0083] In order to facilitate the control of the annular rotating seat 14 rotation; Figure 4-6 As shown, the rotation drive assembly includes:
[0084] A first drive motor 22, the first drive motor 22 is fixed to the outer wall of the mounting frame 1;
[0085] A driving gear 21 is rotatably mounted on the mounting frame 1 and is drivingly connected to the output end of the first driving motor 22. Evenly distributed convex teeth 20 are provided on the outer wall of the annular rotating seat 14, and the driving gear 21 meshes with the convex teeth 20.
[0086] By setting up a rotation drive assembly, the first drive motor 22 can drive the drive gear 21 to rotate, and then drive the annular rotating seat 14 to rotate under the transmission of the convex teeth 20 to meet processing requirements.
[0087] In order to facilitate the control of the movement of the mounting frame 1; Figure 3 、 Figure 4 As shown, the rotary cutting device also includes:
[0088] A first support frame 11, an electric telescopic frame 5 is installed on the top of the first support frame 11, and one end of the mounting frame 1 is rotatably mounted on the electric telescopic frame 5;
[0089] A second drive motor 12 is fixed to the top of the electric telescopic frame 5, and an output end of the second drive motor 12 is connected to the mounting frame 1 through a shaft;
[0090] By providing the electric telescopic frame 5 and the second driving motor 12 , the mounting frame 1 can be driven to rise, fall and deflect, thereby better meeting the processing requirements.
[0091] In order to facilitate the control of gas injection; Figure 5-8 As shown, the gas injection assembly includes:
[0092] An annular airbag 32 is mounted on the outside of the mounting rod 33;
[0093] A ventilation tube 37, one end of which is conductively connected to the annular airbag 32, and the other end of which is conductively connected to the top end of the mounting rod 33;
[0094] An extrusion member is installed in the mounting seat 13;
[0095] By setting up a gas injection assembly, the gas in the annular airbag 32 can be injected into the mounting rod 33 through the ventilation tube 37 by the extrusion of the extrusion piece. When the extrusion is released, part of the gas returns to the annular airbag 32 and the piston rod 36 is reset, thereby achieving control of the shape of the elastic cutting piece 34.
[0096] In order to facilitate the control of gas injection; Figure 5-8 As shown, a first annular gear rack 27 is fixed to the inner wall of the top of the mounting seat 13, and an annular bracket 23 is fixed to the inner wall of the top of the mounting seat 13. A mounting cylinder 24 is rotatably mounted on the annular bracket 23. A second annular gear rack 30 is mounted on the top of the mounting cylinder 24 through a second spring 31. The second annular gear rack 30 can slide up and down on the inner wall of the top of the mounting cylinder 24. The second annular gear rack 30 and the first annular gear rack 27 form a one-way limiting structure that rotates clockwise or counterclockwise.
[0097] The extrusion member includes a pressing block 28 and a first spring 29. The pressing block 28 is slidably connected to the inner wall of the mounting tube 24. The end position of the pressing block 28 is adapted to the annular airbag 32. The pressing block 28 is mounted on the mounting tube 24 via the first spring 29.
[0098] The inner wall of the annular rotating seat 14 is provided with an arc-shaped wedge block 25, the thickness of which gradually increases along the rotatable direction of the mounting cylinder 24, and the end of the pressing block 28 is a wedge-shaped structure adapted to the arc-shaped wedge block 25;
[0099] By providing the arc-shaped wedge block 25, the pressure block 28 and other structures, when the annular rotating seat 14 rotates to drive the annular cutting head 26 to perform the opening operation, the flat end of the arc-shaped wedge block 25 contacts the flat surface of the end of the pressure block 28 and pushes the pressure block 28, so that the mounting cylinder 24 rotates in the rotatable direction. During the rotation, the second annular gear rack 30 is guided by the oblique tooth structure, the second spring 31 is compressed, and the second annular gear rack 30 slides downward to achieve avoidance.
[0100] When gas injection is required, the rotary drive assembly drives the annular rotary seat 14 to reverse, and the inclined end of the arc wedge block 25 contacts the end of the pressure block 28, thereby squeezing the pressure block 28 inward. At this time, since the second annular gear rack 30 and the first annular gear rack 27 are in a one-way limiting structure, the mounting cylinder 24 will not rotate, so that the pressure block 28 can be fully squeezed, thereby achieving the squeezing of the annular airbag 32. This method is driven by the rotary drive assembly, which fully utilizes the driving capacity of the driving component, saves power source, and has high reliability.
[0101] Furthermore, a pulley may be installed at one end of the pressing block 28 close to the annular airbag 32 , and the pulley may be used for squeezing to reduce friction and improve reliability.
[0102] In order to realize the loading of materials; Figure 3 、 Figure 9 As shown, the green mandarin hollowing equipment also includes a rotary feeding device, and the rotary feeding device includes:
[0103] A second support frame 15 is installed on one side of the first support frame 11;
[0104] A third drive motor 19 is mounted on an outer wall of one side of the second support frame 15;
[0105] The rotating frame 4 is rotatably mounted on the second support frame 15 via a shaft, and the output end of the third drive motor 19 is drivingly connected to the shaft of the rotating frame 4;
[0106] A first accommodating seat 39 is mounted on the rotating frame 4, and a plurality of first accommodating seats 39 are arranged in a circumferential distribution;
[0107] The supporting net seat 38 is detachably mounted in the first receiving seat 39 and is used to receive the green oranges;
[0108] By setting up a rotary loading device, the green oranges can be loaded in an orderly manner, which improves the practicality.
[0109] In order to facilitate disassembly and assembly; Figure 10 As shown, a slot 41 is provided on the outer side of the supporting mesh seat 38, and a first protrusion 40 adapted to the slot 41 is integrally provided on the inner wall of the first receiving seat 39. When the supporting mesh seat 38 is installed in the first receiving seat 39, the first protrusion 40 is engaged in the slot 41. Pull rings 42 are fixed on both sides of the top of the supporting mesh seat 38.
[0110] In addition, in order to facilitate the collection of the cut pulp, a first collecting tank 9 is provided below the rotary feeding device, and a discharge pipe 10 is provided on one side of the first collecting tank 9 .
[0111] Example 2:
[0112] A green citrus tea production system, such as Figure 1 、 Figure 11 、 Figure 12 As shown, in order to facilitate the cleaning of the green tangerine peel after treatment, this embodiment makes the following improvements on the basis of Example 1: the green tangerine tea production system also includes a conveying and cleaning device, and the conveying and cleaning device includes:
[0113] The third support frame 7 is provided with a conveyor chain assembly 17. A second receiving seat 43 is equidistantly provided between the two conveyor chain assemblies 17. The second receiving seat 43 is adapted to the shape and size of the supporting mesh seat 38. A second protrusion 47 adapted to the slot 41 is provided in the second receiving seat 43. The supporting mesh seat 38 is detachably installed in the second receiving seat 43.
[0114] The cleaning liquid supply device 16 is provided on one side of the conveyor chain assembly 17 , and the output end of the cleaning liquid supply device 16 is connected to the cleaning nozzle 18 via a liquid supply pipe 45 ;
[0115] An electric telescopic rod 44 is mounted on the cleaning liquid supply device 16. A fixing bracket 46 is mounted on the top of the electric telescopic rod 44. The cleaning nozzle 18 is fixed on the fixing bracket 46. The position of the cleaning nozzle 18 is adapted to the second receiving seat 43.
[0116] In addition, in order to facilitate the collection of the liquid after cleaning, a second collection tank 8 is provided below the conveyor chain assembly 17 .
[0117] In order to facilitate subsequent processing; Figure 1 As shown, the green tangerine tea production system further includes a fermentation tank 3, in which evenly distributed containing tanks 2 are provided.
[0118] Example 3:
[0119] A processing technology for a green citrus tea production system comprises the following steps:
[0120] S1: Open the green tangerine and hollow out the flesh to obtain a container-shaped green tangerine peel;
[0121] S2: cleaning the container-shaped green tangerine peel;
[0122] S3: subjecting the Suaeda salsa seeds to a preliminary fermentation treatment;
[0123] S4: steaming after the initial fermentation treatment to crack the seed coat of Suaeda salsa and expose the young shoots of Suaeda salsa inside the seeds;
[0124] S5: Laying the first layer of Suaeda salsa leaves in the container-shaped green citrus peel;
[0125] S6: Filling the container-shaped green tangerine peel with Suaeda salsa seeds treated in step S4;
[0126] S7: laying a second layer of Suaeda salsa leaves on the Suaeda salsa seeds to obtain the filled green citrus tea material;
[0127] S8: placing the filled green tangerine tea material in a fermentation tank for fermentation treatment to obtain the tea.
[0128] The ingredients of the green tangerine tea, by weight, include:
[0129] 20-50 parts of Suaeda salsa seeds and 10 parts of Suaeda salsa leaves;
[0130] The filling volume of the Suaeda salsa seeds and Suaeda salsa leaves accounts for 70-90% of the total volume of the container-shaped green tangerine peel.
[0131] Experiment 1:
[0132] In order to verify the efficacy of the green citrus tea prepared by the present invention, other conditions were kept unchanged, the amount of Suaeda salsa seeds added was adjusted, and the preparation was carried out, and the following conclusions were obtained:
[0133] Suaeda salsa seeds added 20 servings 30 servings 40 servings 50 servings Colon cleansing effect 77.3 81.5 84.2 83.9 Slimming effect 79.1 81.7 83.6 82.7
[0134] From the above, it can be seen that the best effect is achieved when the addition amount of Suaeda salsa seeds is controlled at 40 parts.
[0135] Experiment 2:
[0136] In order to verify the quality of the green citrus tea prepared by the present invention, other conditions were kept unchanged, and the filling volume of Suaeda salsa seeds and Suaeda salsa leaves was adjusted to prepare the tea. The following conclusions were obtained:
[0137] Filling volume 70% 75% 80% 85% 90% Product taste 77.1 81.4 83.8 84.3 82.9 Product scent 75.5 80.3 83.9 85.7 85.5
[0138] From the above, it can be seen that when the filling volume accounts for 85% of the total volume of the container-shaped green tangerine peel, the comprehensive performance of the taste and aroma of the product is the best.
[0139] The above description is only a preferred specific embodiment of the present invention, but the scope of protection of the present invention is not limited thereto. Any technician familiar with the technical field, within the technical scope disclosed by the present invention, who makes equivalent replacements or changes based on the technical solution and inventive concept of the present invention, should be covered by the scope of protection of the present invention.
Claims
1. A green citrus tea production system, characterized in that: The invention comprises a green tangerine hollowing device, wherein the green tangerine hollowing device comprises a rotary cutting device, and the rotary cutting device comprises: A mounting frame (1), an electric telescopic cylinder (6) is mounted on the top of the mounting frame (1), and a mounting seat (13) is fixed to the output end of the electric telescopic cylinder (6); An annular rotating seat (14) is rotatably mounted on the mounting frame (1), and the mounting seat (13) is slidably connected to the outer wall of the annular rotating seat (14) up and down, the central axis positions of the annular rotating seat (14) and the mounting seat (13) are adapted, and an annular cutting head (26) for opening is provided at the bottom end of the annular rotating seat (14); A rotation drive assembly, the rotation drive assembly is mounted on the mounting frame (1) and is used to drive the annular rotating seat (14) to rotate; A mounting rod (33) is provided, and a cutting motor is installed on the inner wall of the top of the mounting seat (13). The output end of the cutting motor is connected to the mounting rod (33) through a coupling. The mounting rod (33) is a hollow structure. The piston rod (36) is movably connected to the inner wall of the mounting rod (33) in a sealed manner. The bottom side wall of the mounting rod (33) is provided with a plurality of strip openings (35). The outer circumferential wall of the bottom end of the mounting rod (33) is fixed with uniformly distributed elastic cutting pieces (34). The other end of the elastic cutting piece (34) passes through the strip opening (35) and is fixed to the bottom side wall of the piston rod (36). An air injection assembly is installed on the outside of the mounting rod (33) and is used to inject air into the space at the top of the piston rod (36) inside the mounting rod (33), thereby driving the piston rod (36) to move up and down inside the mounting rod (33); the air injection assembly includes: An annular airbag (32), the annular airbag (32) is installed outside the mounting rod (33); A ventilation conduit (37), one end of the ventilation conduit (37) is conductively connected to the annular airbag (32), and the other end of the ventilation conduit (37) is conductively connected to the inner top end of the mounting rod (33); An extrusion piece is installed in a mounting seat (13); a first annular gear rack (27) is fixed to the inner wall of the top of the mounting seat (13); an annular bracket (23) is fixed to the inner wall of the top of the mounting seat (13); a mounting cylinder (24) is rotatably mounted on the annular bracket (23); a second annular gear rack (30) is mounted on the top of the mounting cylinder (24) via a second spring (31); the second annular gear rack (30) can slide up and down on the inner wall of the top of the mounting cylinder (24); the second annular gear rack (30) and the first annular gear rack (27) form a one-way limiting structure that rotates clockwise or counterclockwise; The extrusion member includes a pressing block (28) and a first spring (29). The pressing block (28) is slidably connected to the inner wall of the mounting tube (24). The end position of the pressing block (28) is adapted to the annular airbag (32). The pressing block (28) is mounted on the mounting tube (24) via the first spring (29). The inner wall of the annular rotating seat (14) is provided with an arc-shaped wedge block (25), the thickness of which gradually increases along the rotatable direction of the mounting cylinder (24), and the end of the pressing block (28) is a wedge-shaped structure adapted to the arc-shaped wedge block (25).
2. A green citrus tea production system according to claim 1, characterized in that: The rotation drive assembly includes: A first drive motor (22), the first drive motor (22) is fixed to the outer wall of the mounting frame (1); A driving gear (21) is rotatably mounted on the mounting frame (1). The driving gear (21) is transmission-connected to the output end of the first driving motor (22). The outer wall of the annular rotating seat (14) is provided with evenly distributed convex teeth (20), and the driving gear (21) is meshed with the convex teeth (20).
3. A green citrus tea production system according to claim 2, characterized in that: The rotary cutting device further comprises: A first support frame (11), an electric telescopic frame (5) is installed on the top of the first support frame (11), and one end of the mounting frame (1) is rotatably mounted on the electric telescopic frame (5); A second drive motor (12) is fixed to the top of the electric telescopic frame (5), and an output end of the second drive motor (12) is connected to the mounting frame (1) via a shaft.
4. A green citrus tea production system according to claim 1, characterized in that: The green mandarin hollowing equipment also includes a rotary feeding device, and the rotary feeding device includes: A second support frame (15), the second support frame (15) is installed on one side of the first support frame (11); A third drive motor (19), the third drive motor (19) is mounted on an outer wall of one side of the second support frame (15); A rotating frame (4), the rotating frame (4) is rotatably mounted on the second support frame (15) via a shaft, and the output end of the third drive motor (19) is connected to the shaft of the rotating frame (4); A first accommodating seat (39), the first accommodating seat (39) is mounted on the rotating frame (4), and a plurality of first accommodating seats (39) are arranged in a circumferential distribution; The bearing net seat (38) is detachably mounted in the first accommodating seat (39), and the bearing net seat (38) is used to accommodate green oranges.
5. A green citrus tea production system according to claim 4, characterized in that: A card slot (41) is provided on the outer side of the bearing mesh seat (38), and a first protrusion (40) adapted to the card slot (41) is provided on the inner wall of the first accommodating seat (39). When the bearing mesh seat (38) is installed in the first accommodating seat (39), the first protrusion (40) is engaged in the card slot (41), and pull rings (42) are fixed on both sides of the top of the bearing mesh seat (38).
6. A green citrus tea production system according to claim 5, characterized in that: The green citrus tea production system further includes a conveying and cleaning device, which includes: A third support frame (7), a conveyor chain assembly (17) is installed on the third support frame (7), a second accommodating seat (43) is equidistantly installed between the two conveyor chain assemblies (17), and the second accommodating seat (43) is adapted to the shape and size of the bearing net seat (38); a second protrusion (47) adapted to the card slot (41) is provided in the second accommodating seat (43), and the bearing net seat (38) is detachably installed in the second accommodating seat (43); A cleaning liquid supply device (16), the cleaning liquid supply device (16) is arranged on one side of the conveyor chain assembly (17), and the output end of the cleaning liquid supply device (16) is connected to a cleaning nozzle (18) through a liquid supply pipe (45); An electric telescopic rod (44) is installed on the cleaning liquid supply device (16). A fixed bracket (46) is installed on the top of the electric telescopic rod (44). The cleaning nozzle (18) is fixed on the fixed bracket (46). The position of the cleaning nozzle (18) is adapted to the second receiving seat (43).
7. A green citrus tea production system according to any one of claims 1 to 6, characterized in that: The processing technology of the green tangerine tea production system comprises the following steps: S1: Open the green tangerine and hollow out the flesh to obtain a container-shaped green tangerine peel; S2: cleaning the container-shaped green tangerine peel; S3: subjecting the Suaeda salsa seeds to a preliminary fermentation treatment; S4: steaming after the initial fermentation treatment to crack the seed coat of Suaeda salsa and expose the young shoots of Suaeda salsa inside the seeds; S5: Laying the first layer of Suaeda salsa leaves in the container-shaped green citrus peel; S6: Filling the container-shaped green tangerine peel with Suaeda salsa seeds processed in step S4; S7: laying a second layer of Suaeda salsa leaves on the Suaeda salsa seeds to obtain the filled green citrus tea material; S8: placing the filled green tangerine tea material in a fermentation tank for fermentation treatment to obtain the tea.
8. A green citrus tea production system according to claim 7, characterized in that: The ingredients of the green tangerine tea, by weight, include: 20-50 parts of Suaeda salsa seeds and 10 parts of Suaeda salsa leaves; The filling volume of the Suaeda salsa seeds and Suaeda salsa leaves accounts for 70-90% of the total volume of the container-shaped green tangerine peel.
Citation Information
Patent Citations
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CN218104817U