Agastache rugosus summer-heat tea composition with synergistic effect, processing technology and processing equipment
Through the Huoxiang Summer Tea composition and the three-forming process, a solid tea product in rectangular block or pill shape was prepared, which solved the problem of single types of medicinal tea and inconvenient liquid portability, and achieved efficient release of efficacy and stable taste.
Patent Information
- Application Number
- CN202510912012.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-07-03
- Publication Date
- 2025-08-01
- Estimated Expiration
- 2045-07-03
AI Technical Summary
The existing medicinal tea preparation type is single, which is not convenient for consumers to carry with them. The liquid form is prone to leakage and is temperature sensitive, which affects the taste and stability.
The formula of the Huoxiang summer tea composition, including Huoxiang, Poria, orange peel and other medicinal materials, is prepared into rectangular blocks or pills through three molding processes and concentration molding devices. Combined with the effects of clearing heat, digesting food, and diuretics, it is suitable for summer damp and heat stagnation syndrome.
It provides a variety of solid tea products for easy carrying, fine crushing of raw materials, easy release of active ingredients, stable taste, and suitable for relieving symptoms of damp and heat in summer.
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Figure CN120392946A_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the field of health-care tea preparation, in particular to a patchouli tea composition with synergistic effects, a processing technology and processing equipment. Background Art
[0002] Patchouli Summer Tea is a summer health tea with Patchouli as the main ingredient. It has the effects of relieving heat and dampness, and stopping vomiting. Based on Patchouli Summer Tea, various compound combinations have been continuously extended, such as honeysuckle patchouli tea, mint patchouli tea, new patchouli tea, fragrant patchouli tea, etc.
[0003] Nowadays, conventional tea brewing is no longer suitable for the majority of consumers. How to brew tea quickly and conveniently leads to the preparation of Huoxiang Summer Tea, and various product forms such as sheets and pills have emerged. The invention patent with Chinese patent application number 202510359350.5 discloses a refreshing medicinal tea and its preparation method, which includes the following components by weight: 10-20 parts of guarana extract, 8-15 parts of green tea extract, 45-52 parts of taurine, 5-12 parts of vitamin B group, 15-20 parts of ginseng extract, 100-150 parts of maca powder, 5-12 parts of phosphatidylserine, and 10-20 parts of ginkgo leaf extract; the invention combines the combined effects of caffeine, tea polyphenols and ginsenosides to simulate the refreshing effect of energy drinks through multi-target effects, while retaining the functions of traditional medicinal tea. The natural properties can stimulate the nervous system, enhance alertness and concentration, and can effectively resist fatigue and promote a state of wakefulness. The preparation process of the medicinal tea combines cold extraction and hot extraction to ensure the effectiveness of the ingredients. At the same time, it is flavored with stevioside, honey or rock sugar to make it pleasant to the taste and easy to accept. The refreshing medicinal tea proposed in the above invention is produced in the same way as many medicinal teas. The liquid it produces is similar to an oral liquid, which is very inconvenient in daily use. If it is not stored properly, it is easy to leak. In addition, liquids are more sensitive to temperature than solids, and are easily affected by high temperatures and even deteriorate. Summary of the Invention
[0004] Therefore, in response to the above problems, the present invention proposes a patchouli tea composition, processing technology and processing equipment with synergistic effects, which solves the technical problem that the existing medicinal tea preparation products are of a single type and inconvenient for consumers to carry and use.
[0005] To achieve the above object, the present invention adopts the following technical solutions: An Agastache rugosa summer tea composition with a synergistic effect, comprising the following raw materials in parts by weight: 6-8 parts of Agastache rugosa, 60-80 parts of Poria cocos, 10-12 parts of dried tangerine peel, 3-5 parts of Elsholtzia ciliata, 8-12 parts of Platycodon grandiflorum, 6-8 parts of nutmeg, 18-20 parts of cloves, 6-8 parts of Angelica dahurica, 3-5 parts of Hovenia dulcis, 8-10 parts of white hyacinth bean, 6-8 parts of hawthorn, 8-12 parts of purslane, 8-12 parts of Amomum villosum, 8-12 parts of fennel, 8-12 parts of papaya, 6-8 parts of mulberry leaves, 6-8 parts of malt, 8-12 parts of honeysuckle, 5-8 parts of Perilla frutescens, 5-8 parts of liquorice, 3-5 parts of lotus leaf, 9-13 parts of Perilla seed, 8-10 parts of cinnamon, 8-10 parts of dried ginger, 8-10 parts of Houttuynia cordata, 8-10 parts of sweet basil, 8-10 parts of Mesona chinensis, 5-10 parts of Imperata cylindrica, 5-10 parts of Phragmites australis, 8-12 parts of lophatherum gracile, and 75-85 parts of tea leaves.
[0006] Further, the tea leaves are green tea or white tea.
[0007] A processing technology for an Agastache rugosa summer tea composition with a synergistic effect, comprising the following steps: S1. Preliminary cleaning of raw materials; the raw materials are preliminarily cleaned and impurities are removed, and the cleaning process uses distilled water at a temperature of 5°C - 10°C for low-temperature cleaning; S2. Mixing of raw materials; all the raw materials that have completed preliminary cleaning are mixed and stirred through a stirring kettle; S3. Preliminary shaping of raw materials; the raw materials that have been evenly mixed and stirred are extruded and shaped through a shaping module, and are preliminarily shaped into a rectangular block structure; S4. Crushing of raw materials; the raw material blocks formed into a rectangular block structure through preliminary shaping are put into a stirring crusher for crushing and stirring, and are stirred and crushed until the particle diameter of the crushed material is 1.8 - 2.2 mm; S5. Secondary shaping of the crushed material; the crushed material is taken out, placed in a heating barrel, and pure water is added for heating and stirring. After heating and stirring to a turbid state of solid-liquid mixture, solid-liquid separation is carried out by extrusion through a gauze. The solid is in a spherical structure, and the liquid is collected for later use; S6. Shaping of raw materials into pills; the spherical raw materials preliminarily shaped through the gauze are placed in a concentrated shaping device for pill-shaped drying and shaping, and concentration operation is carried out synchronously; S7. Packaging of finished products; the tea pills that have completed pill-shaped shaping and concentration are vacuum-packed.
[0008] Further, during the preliminary shaping operation in step S3, a drying operation is carried out synchronously. The shaping module is heated to 180°C - 220°C, and the heating and drying time is 3 minutes - 5 minutes.
[0009] Further, in step S6, the concentration process is to let the tea liquid in step S5 drip onto the raw materials, and concentrate the tea liquid in the raw materials by means of high-temperature drying.
[0010] A processing device, which is applied to the processing technology of Huoxiang Shucha composition with synergistic effect, includes a concentration and forming device. The concentration and forming device includes a frame, a lower reaction and forming plate fixedly arranged on the frame, an upper reaction and forming plate movably arranged on the frame, a raw material turning device arranged on the lower reaction and forming plate, and a liquid medicine dripping device arranged on the upper reaction and forming plate. The raw material turning device is used for continuously turning and rolling the raw materials, and the liquid medicine dripping device is used for dripping the tea liquid onto the raw materials for high-temperature concentration. Heating rods are arranged in the concentration and forming device.
[0011] Further, on one side of the upper reaction and forming plate close to the lower reaction and forming plate, an upper reaction cavity is arranged. On one side of the lower reaction and forming plate close to the upper reaction and forming plate, a lower reaction cavity is arranged. The upper reaction cavity and the lower reaction cavity together form a reaction chamber. The raw material turning device is arranged in the lower reaction cavity, and the liquid medicine dripping device is arranged in the upper reaction cavity.
[0012] Further, the raw material turning device includes a number of turning stations arranged in a matrix. Each turning station includes a rolling outer shell and a rolling support rod that cooperate with each other. The rolling outer shell and the rolling support rod are sleeved with each other. The rolling outer shell is rotatably arranged in the lower reaction cavity. It includes a rolling part and a support part connected to each other. The rolling part is in a bowl shape. The rolling support rod is inserted into the support part and can move up and down in the support part. The rolling support rod extends upward to protrude from the bottom of the rolling part, and retracts downward into the support part after being subjected to an external force. A roller for receiving the raw materials is arranged at the free end of the rolling support rod. The roller is driven to rotate by a rotating motor, so as to drive the raw materials to roll in the vertical direction. The rolling part rotates horizontally in the lower reaction cavity. When the rolling support rod sinks into the support part, the raw materials contact the inner side wall of the rolling part and roll in the horizontal direction under the drive of the rolling part.
[0013] Further, the liquid medicine dripping device includes a number of dripping stations arranged in a matrix. The number of dripping stations is the same as that of the turning stations and they correspond one by one. Each dripping station includes a dripping rod and a liquid guiding rod arranged in the dripping rod. The liquid guiding rod elastically expands and contracts in the dripping rod, and is used for guiding the liquid medicine in the dripping rod. The dripping rod can move up and down in the vertical direction. The dripping rod is communicated with a liquid medicine transportation pipeline for transporting the liquid medicine to the raw materials for concentration. A liquid guiding ball is arranged at the free end of the liquid guiding rod.
[0014] Furthermore, an annular support portion is provided at the free end of the liquid-conducting rod at the edge of the liquid-conducting ball.
[0015] By adopting the above technical solution, the beneficial effects of the present invention are: The present invention also can make the tea of hot summer heat-clearing and detoxicating more be effective in the treatment of summer heat-related ailments, such as pharyngolaryngitis, tinea versicolor, rhizoma alba, rhizoma argyi, and rhizoma scabra.
[0016] 2. In the preparation process of this formula, an innovative improvement is adopted for the molding process. The original single molding process is improved into raw material pre-molding, crushing and stirring, and then secondary molding and further pelletizing. The reason for the three molding operations in total is that compared with the traditional single stirring and direct pelletizing, the advantage is that the block raw material after the first pre-molding can be more completely crushed when entering the mixing and grinding machine, avoiding the traditional situation where all the raw materials enter the mixing and grinding machine at once without being stirred and crushed, and are directly output with the raw materials that have been stirred and crushed, resulting in uneven coarseness of the raw materials during the later finished product brewing process, and the medicinal ingredients are difficult to fully exert; at the same time, after comprehensive crushing, secondary molding is carried out through gauze. In this process, a solid-liquid separation process is carried out simultaneously, and the extracted medicinal liquid is collected and stored. Then the raw materials after preliminary molding are passed through a concentration molding device to make the finished product. In this process, the medicinal liquid is dripped into the raw materials and dried at high temperature. The medicinal materials prepared in this way are more finely ground than those prepared by ordinary preparation processes, and the active ingredients in the raw materials are more easily released during the brewing process.
[0017] 3. In order to meet the improvement and innovation in the processing technology in the present invention, an improved concentration and forming device is proposed. Its advantage lies in the targeted improvement and innovation in supporting the processing technology. Through the concentration and forming device, concentration and forming can be carried out simultaneously. Among them, the upper reaction forming plate mainly performs the concentration process, and the lower reaction forming plate mainly performs the forming process. Through the raw material turnover device, it can be ensured that the outer circumferential surface of the raw material is smoother and rounder during the process of forming into pills, and the overall texture of the final product is uniform. This is achieved through the tumbling part and the supporting part. Among them, the tumbling part is used to fit against the outer circumferential surface of the raw material and form the outer circumferential surface of the raw material, while the roller on the supporting part can continuously change the state of the raw material, ensuring that all surfaces of the raw material pill can contact the tumbling part during this tumbling process, so as to ensure that the entire outer surface of the raw material pill can be formed. At the same time, because the raw material pill keeps rolling during the forming process, the dripping device of the liquid medicine in the upper reaction chamber can be coordinated during the rolling process to uniformly cover the outer circumferential surface of the raw material pill with the liquid medicine.
[0018] 4. The liquid medicine dripping device and the raw material turnover device in the present invention cooperate with each other during the working process. When the liquid medicine dripping device drips the liquid medicine, the dripping rod will descend to be close to the raw material pill. The liquid guiding rod in the dripping rod will abut against the top of the raw material pill and drive the raw material pill to move downward until the tumbling support rod enters the supporting part. At this time, the lower half arc surface of the raw material pill contacts the tumbling part and rotates following the tumbling part, and the dripping process synchronously performs the uniform dripping operation. The free end of the liquid guiding rod is provided with a liquid guiding ball, ensuring that the liquid medicine is evenly applied from all around the liquid guiding ball, and the annular supporting part ensures the stability of the raw material pill when it rotates following the tumbling part. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] By reading the detailed description of the non-restrictive embodiments with reference to the following drawings, other features, purposes, and advantages of the present invention will become more obvious: Figure 1 It is the process flow chart of the processing technology of the present invention; Figure 2 It is the structural schematic diagram of the processing equipment of the present invention; Figure 3 It is the internal structural schematic diagram of the processing equipment of the present invention; Figure 4 For Figure 3 The enlarged view at A in Figure 5 It is the bottom view structural schematic diagram of the upper reaction forming plate in the present invention; Figure 6 It is the internal structural schematic diagram of the raw material turnover device in the present invention; Figure 7 It is the top view structural schematic diagram of the raw material turnover device in the present invention; Figure 8This is a schematic diagram of the working state of the tumbling support rod in the present invention. Detailed implementation mode
[0020] To make the technical means, creative features, achieved purposes and effects of the present invention easy to understand, the present invention will be further described below in conjunction with specific implementation modes.
[0021] Please refer to Figures 1-8 , the present invention provides a Huoxiang Shucha composition with a synergistic effect, including the following raw materials in parts by weight: 6 parts of Pogostemon cablin, 60 parts of Poria cocos, 10 parts of Citrus reticulata Blanco, 3 parts of Elsholtzia ciliata (Thunb.) Hyland., 8 parts of Platycodon grandiflorum, 6 parts of Myristica fragrans Houtt., 18 parts of Eugenia caryophyllata Thunb., 6 parts of Angelica dahurica (Fisch. ex Hoffm.) Benth. et Hook. f. ex Franch. et Sav., 3 parts of Hovenia dulcis Thunb., 8 parts of Dolichos lablab L., 6 parts of Crataegus pinnatifida Bunge, 8 parts of Portulaca oleracea L., 8 parts of Amomum villosum Lour., 8 parts of Foeniculum vulgare Mill., 8 parts of Chaenomeles sinensis (Thouin) Koehne, 6 parts of Morus alba L., 6 parts of Hordeum vulgare L. var. nudum Hook. f., 8 parts of Lonicera japonica Thunb., 5 parts of Perilla frutescens (L.) Britt., 5 parts of Glycyrrhiza uralensis Fisch., 3 parts of Nelumbo nucifera Gaertn., 9 parts of Perilla frutescens (L.) Britt. var. acuta (Thunb.) Kudo, 8 parts of Cinnamomum cassia Presl, 8 parts of Zingiber officinale Rosc., 8 parts of Houttuynia cordata Thunb., 8 parts of Ocimum basilicum L., 8 parts of Mesona chinensis Benth., 5 parts of Imperata cylindrica Beauv. var. major (Nees) C. E. Hubb., 5 parts of Phragmites australis (Cav.) Trin. ex Steud., 8 parts of Lophatherum gracile Brongn., 75 parts of tea; among them, the tea is selected from Fuding white tea; this formula belongs to an extended variant of Huoxiang Zhengqi Powder, combined with heat-clearing, digestion-promoting and diuretic components, and achieves the best effect by drinking after brewing, and is applicable to the syndrome of summer damp-heat complicated with food stagnation.
[0022] This embodiment simultaneously presents a processing technology for the above-mentioned Huoxiang Shucha composition, a processing technology for a Huoxiang Shucha composition with a synergistic effect, including the following steps: S1. Preliminary cleaning of raw materials; the raw materials are preliminarily cleaned and impurities are removed, and the cleaning process is carried out with low-temperature cleaning using distilled water at a temperature of 5°C; S2. Mixing of raw materials; all the raw materials that have completed preliminary cleaning are mixed and stirred through a stirring kettle; S3. Pre-forming of raw materials; the raw materials that have been evenly mixed and stirred are extruded and formed through a forming module, and pre-formed into a rectangular block structure; S4. Crushing of raw materials; the raw material blocks formed into a rectangular block structure through pre-forming are put into a stirring crusher for crushing and stirring, and stirred and crushed until the particle diameter of the crushed material is 1.8 mm; S5. Secondary forming of crushed materials; the crushed materials are taken out, placed in a heating barrel, added with pure water for heating and stirring, and after heating and stirring to a turbid state of solid-liquid mixture, solid-liquid separation is carried out by extrusion using a gauze, the solid is in a spherical structure, and the liquid is collected for standby; S6. Forming of raw material pills; the spherical raw materials preliminarily formed through the gauze are placed in a concentration forming device for pill-shaped drying and forming and concentration operation is carried out simultaneously; S7. Finished product packaging; the tea pills that have completed pill-shaped forming and concentration are vacuum-packed.
[0023] Among them, during the pre - forming operation in step S3, a drying operation is carried out synchronously. The forming module is heated to 180 degrees Celsius, and the heating and drying time is 5 minutes. In step S6, the concentration process is to let the tea liquid in step S5 drip onto the raw materials, and the tea liquid is concentrated in the raw materials by means of high - temperature drying.
[0024] This embodiment also synchronously proposes a processing device applied to the above - mentioned processing technology. A processing device is applied to the processing technology of the Huoxiang Shucha composition with a synergistic effect, including a concentration and forming device. The concentration and forming device includes a frame 1, a lower reaction and forming plate 2 fixedly arranged on the frame 1, an upper reaction and forming plate 3 movably arranged on the frame 1, a raw material turning device 5 arranged on the lower reaction and forming plate 2, and a liquid medicine dripping device 4 arranged on the upper reaction and forming plate 3. The raw material turning device 5 is used to continuously turn and round the raw materials, and the liquid medicine dripping device 4 is used to drip the tea liquid onto the raw materials for high - temperature concentration. A heating rod 8 is arranged in the upper reaction and forming plate 3 on the concentration and forming device. The upper reaction and forming plate 3 moves up and down on the frame 1, approaching or moving away from the lower reaction and forming plate 2. The liquid medicine in step S5 enters the liquid medicine dripping device 4 in the upper reaction and forming plate 3 from the outside through a liquid medicine transportation pipeline 7. On one side of the upper reaction and forming plate 3 close to the lower reaction and forming plate 2, there is an upper reaction cavity 31. On one side of the lower reaction and forming plate 2 close to the upper reaction and forming plate 3, there is a lower reaction cavity 21. The upper reaction cavity 31 and the lower reaction cavity 21 together form a reaction chamber. The raw material turning device 5 is arranged in the lower reaction cavity 21, and the liquid medicine dripping device 4 is arranged in the upper reaction cavity 31. The raw material turning device 5 includes a number of turning workstations arranged in a matrix. The turning workstation includes a mutually - cooperating tumbling outer shell 51 and a tumbling support rod 52. The tumbling outer shell 51 and the tumbling support rod 52 are sleeved with each other. The tumbling outer shell 51 is rotatably arranged in the lower reaction cavity 21, and it includes a tumbling part 511 and a support part 512 connected to each other. The tumbling part 511 is a bowl - shaped structure. The tumbling support rod 52 is inserted into the support part 512 and can move up and down in the support part 512. The tumbling support rod 52 extends upward to protrude from the bottom of the tumbling part 511 and retracts downward into the support part 512 after being subjected to an external force. A roller 521 for receiving the raw materials is arranged at the free end of the tumbling support rod 52. The roller 521 is driven to rotate by a rotating motor, thereby driving the raw materials to roll in the vertical direction. The tumbling part 511 rotates horizontally in the lower reaction cavity 21. When the tumbling support rod 52 sinks into the support part 512, the raw materials contact the inner wall of the tumbling part 511 and are driven by the tumbling part 511 to roll in the horizontal direction.
[0025] The liquid medicine dropping device 4 includes a plurality of dropping stations arranged in a matrix. The number of the dropping stations is the same as that of the turning stations and they correspond to each other one by one. The dropping station includes a dropping rod 41 and a liquid guiding rod 42 arranged inside the dropping rod 41. The liquid guiding rod 42 elastically expands and contracts inside the dropping rod 41 and is used to guide the liquid medicine inside the dropping rod 41. The dropping rod 41 can move up and down in the vertical direction. The dropping rod 41 is communicated with a liquid medicine transportation pipeline 7 and is used to transport the liquid medicine into the raw material for concentration. A liquid guiding ball 43 is arranged at the free end of the liquid guiding rod 42, and an annular supporting part 6 is arranged at the edge of the free end of the liquid guiding rod 42 where the liquid guiding ball 43 is located.
[0026] The liquid medicine dropping device 4 and the raw material turning device 5 cooperate with each other and work together. When the upper reaction forming plate 3 approaches the lower reaction forming plate 2, the liquid medicine dropping device 4 approaches the raw material turning device 5. The original raw material pills that rotate in the vertical direction are transformed under the pressing action of the liquid guiding rod 42 to abut against the rolling part 511 and rotate in the horizontal direction. At this time, the liquid guiding ball 43 is also forced to retract upward, and the liquid medicine seeps into the raw material pills from the gaps around the liquid guiding ball 43. After the uniform coverage is completed, the dropping rod 41 rises. After the raw material pills lose force, they are continuously lifted upward by the rolling support rod 52 and driven by the roller 521 to roll in the vertical direction to switch the dropping area. Then the dropping rod 41 descends again to repeat the dropping process.
[0027] The above shows and describes the basic principles, main features and advantages of the present invention. For those skilled in the art, it is obvious that the present invention is not limited to the details of the above exemplary embodiments, and can be implemented in other specific forms without departing from the spirit or basic features of the present invention. Therefore, from any point of view, the embodiments should be regarded as exemplary and non-limiting. The scope of the present invention is defined by the appended claims rather than the above description. Therefore, all changes falling within the meaning and scope of the equivalent elements of the claims are intended to be included in the present invention. Any reference numerals in the claims should not be regarded as limiting the claimed claims.
[0028] In addition, it should be understood that although this specification is described according to the embodiments, not every embodiment only contains an independent technical solution. This narrative way of the specification is only for clarity. Those skilled in the art should regard the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that can be understood by those skilled in the art.
Claims
1. Huoxiang Shucha composition with synergistic effect, characterized in that: It includes the following raw materials by weight: 6 - 8 parts of Pogostemon cablin, 60 - 80 parts of Poria cocos, 10 - 12 parts of Citrus reticulata Blanco, 3 - 5 parts of Elsholtzia ciliata (Thunb.) Hyland., 8 - 12 parts of Platycodon grandiflorus, 6 - 8 parts of Myristica fragrans Houtt., 18 - 20 parts of Eugenia caryophyllata Thunb., 6 - 8 parts of Angelica dahurica (Fisch. ex Hoffm.) Benth. et Hook. f. ex Franch. et Sav., 3 - 5 parts of Hovenia dulcis Thunb., 8 - 10 parts of Dolichos lablab L., 6 - 8 parts of Crataegus pinnatifida Bunge, 8 - 12 parts of Portulaca oleracea L., 8 - 12 parts of Amomum villosum Lour., 8 - 12 parts of Foeniculum vulgare Mill., 8 - 12 parts of Chaenomeles sinensis (Thouin) Koehne, 6 - 8 parts of Morus alba L., 6 - 8 parts of Hordeum vulgare L. var. nudum Hook. f., 8 - 12 parts of Lonicera japonica Thunb., 5 - 8 parts of Perilla frutescens (L.) Britt., 5 - 8 parts of Glycyrrhiza uralensis Fisch., 3 - 5 parts of Nelumbo nucifera Gaertn., 9 - 13 parts of Perilla frutescens (L.) Britt. var. acuta (Thunb.) Kudo, 8 - 10 parts of Cinnamomum cassia Presl, 8 - 10 parts of Zingiber officinale Rosc., 8 - 10 parts of Houttuynia cordata Thunb., 8 - 10 parts of Ocimum basilicum L., 8 - 10 parts of Mesona chinensis Benth., 5 - 10 parts of Imperata cylindrica Beauv. var. major (Nees) C. E. Hubb., 5 - 10 parts of Phragmites australis (Cav.) Trin. ex Steud., 8 - 12 parts of Lophatherum gracile Brongn., 75 - 85 parts of tea leaves.
2. The Huoxiang Shucha composition with a synergistic effect according to claim 1, wherein: The tea leaves are green tea or white tea.
3. A processing technology for the patchouli summer tea composition with a synergistic effect as described in claim 2, characterized in that: It includes the following steps: S1. Preliminary cleaning of raw materials: The raw materials are preliminarily cleaned and impurities are removed. During the cleaning process, distilled water at a temperature of 5°C - 10°C is used for low-temperature cleaning. S2. Mixing of raw materials: All the raw materials after preliminary cleaning are mixed and stirred in a stirring kettle. S3. Preliminary forming of raw materials: The mixed and stirred raw materials are extruded and formed through a forming module, and are preliminarily formed into a rectangular block structure. S4. Crushing of raw materials: The raw material blocks formed into a rectangular block structure through preliminary forming are put into a stirring crusher for crushing and stirring, and are stirred and crushed until the particle diameter of the crushed material is 1.8 - 2.2 mm. S5. Secondary forming of crushed material: The crushed material is taken out, placed in a heating barrel, and pure water is added for heating and stirring. After heating and stirring to a turbid state of solid-liquid mixture, solid-liquid separation is carried out by extrusion through a gauze. The solid is in a spherical structure, and the liquid is collected for standby. S6. Forming of raw material pills: The spherical raw materials preliminarily formed through the gauze are placed in a concentration forming device for pill-shaped drying and forming, and concentration operation is carried out synchronously. S7. Packaging of finished products: The tea pills after pill-shaped forming and concentration are vacuum-packed.
4. The processing technology of a patchouli summer tea composition with a synergistic effect according to claim 3, characterized in that: During the process of preliminary forming operation in step S3, a drying operation is carried out synchronously. The forming module is heated to 180°C - 220°C, and the heating and drying time is 3 minutes - 5 minutes.
5. The processing technology of a patchouli summer tea composition with a synergistic effect according to claim 4, characterized in that: In step S6, the concentration process is to let the tea liquid in step S5 drip onto the raw materials, and the tea liquid is concentrated in the raw materials by high-temperature drying.
6. A processing device, which is applied to the processing process of the patchouli summer tea composition with synergistic effect as described in claim 5, and is characterized in that: It includes a concentration forming device. The concentration forming device includes a frame, a lower reaction forming plate fixedly arranged on the frame, an upper reaction forming plate movably arranged on the frame, a raw material turning device arranged on the lower reaction forming plate, and a medicine liquid dripping device arranged on the upper reaction forming plate. The raw material turning device is used for continuously turning and rolling the raw materials, and the medicine liquid dripping device is used for dripping the tea liquid onto the raw materials for high-temperature concentration. Heating rods are arranged in the concentration forming device.
7. A processing device according to claim 6, characterized in that: On one side of the upper reaction forming plate close to the lower reaction forming plate, an upper reaction cavity is provided. On one side of the lower reaction forming plate close to the upper reaction forming plate, a lower reaction cavity is provided. The upper reaction cavity and the lower reaction cavity together form a reaction chamber. The raw material turning device is arranged in the lower reaction cavity, and the liquid medicine dripping device is arranged in the upper reaction cavity.
8. A processing device according to claim 7, wherein: The raw material turning device includes a number of turning stations arranged in a matrix. Each turning station includes a mutually cooperating tumbling outer shell and a tumbling support rod. The tumbling outer shell and the tumbling support rod are sleeved with each other. The tumbling outer shell is rotatably arranged in the lower reaction cavity and includes a tumbling part and a support part connected to each other. The tumbling part is in a bowl-shaped structure. The tumbling support rod is inserted into the support part and can move up and down in the support part. The tumbling support rod extends upward to protrude from the bottom of the tumbling part and retracts downward into the support part after being subjected to an external force. A roller for receiving the raw material is arranged at the free end of the tumbling support rod. The roller is driven to rotate by a rotating motor, thereby driving the raw material to roll in the vertical direction. The tumbling part rotates horizontally in the lower reaction cavity. When the tumbling support rod sinks into the support part, the raw material contacts the inner side wall of the tumbling part and rolls in the horizontal direction under the drive of the tumbling part.
9. A processing device according to claim 8, characterized in that: The liquid medicine dripping device includes a number of dripping stations arranged in a matrix. The number of the dripping stations is the same as that of the turning stations and they correspond one by one. Each dripping station includes a dripping rod and a liquid guiding rod arranged in the dripping rod. The liquid guiding rod elastically expands and contracts in the dripping rod and is used to guide the liquid medicine in the dripping rod. The dripping rod can move up and down in the vertical direction. The dripping rod is communicated with a liquid medicine transportation pipeline for transporting the liquid medicine into the raw material for concentration. A liquid guiding ball is arranged at the free end of the liquid guiding rod.
10. A processing device according to claim 9, characterized in that: An annular support part is arranged at the free end of the liquid guiding rod at the edge of the liquid guiding ball.
Citation Information
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