Synergistic composition of agastache tea for summer heat, processing technology and processing equipment

By using the Huoxiang Shucha (藿香暑茶) composition formula and a three-stage molding process, a stable solid tea product is prepared, solving the problems of inconvenience in carrying medicinal tea and temperature sensitivity, and realizing diversified and effective tea beverages.

CN120392946BActive Publication Date: 2025-11-07FUJIAN NANAN LIANHUAFENG TEA FACTORY
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Patent Information

Application Number
CN202510912012.X
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-07-03
Publication Date
2025-11-07
Estimated Expiration
2045-07-03

AI Technical Summary

Technical Problem

Existing medicinal tea preparations are limited in variety, making them inconvenient for consumers to carry and use. Their liquid form is prone to leakage and is temperature sensitive, affecting their taste and stability.

Method used

The formula of Huoxiang Shucha (藿香暑茶) includes a variety of medicinal materials such as agastache, poria cocos, and tangerine peel. Through three molding processes and a concentration molding device, it is prepared into a rectangular block or pill-shaped solid tea product. Combining the effects of clearing heat and detoxifying, and promoting diuresis, it is suitable for summer damp-heat syndrome with food stagnation.

Benefits of technology

We offer a variety of solid tea products that are easy to carry. The raw materials are finely ground, making it easy to release the active ingredients. The taste is stable and suitable for relieving symptoms of summer heat and dampness.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present application relates to the field of health-care tea preparation, and particularly relates to a synergistic effect of aogushu tea composition, a processing technology and a processing device, comprising the following raw materials in parts by weight: agastache rugosa, poria cocos, orange peel, elsholtzia, platycodon, mace, clove, radix angelicae dahuricae, citrus grandis, albizia kalkora, hovenia acerba, portulaca oleracea, amomum villosum, cumin, chaenomeles speciosa, mulberry leaf, malt, honeysuckle, perilla, licorice, lotus leaf, perilla seed, cassia, dried ginger, houttuynia cordata, sweet basil, nardostachys chinensis, imperata cylindrica, phragmites communis, lophatherum gracile, and tea leaf; the technical problem of a single type of existing medicinal tea preparation product, which is inconvenient for consumers to carry and use, is solved.
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Description

TECHNICAL FIELD

[0001] The present application relates to the field of health tea preparation, in particular to a synergistic composition of agastache tea, a processing technology and a processing device. BACKGROUND

[0002] Agastache tea is a summer health tea drink with agastache as the main raw material, which has the effects of relieving summer heat and dampness, harmonizing the middle and stopping vomiting. Based on agastache tea, various compound combinations have been developed, such as honeysuckle agastache tea, mint agastache tea, new agastache tea, and xiang agastache tea.

[0003] Nowadays, conventional tea brewing is not suitable for the majority of consumers. How to quickly and conveniently brew has led to the development of various product forms such as tablets and pills.

[0004] Chinese patent application No. 202510359350.5 discloses a refreshing medicinal tea and its preparation method. The tea contains the following components by weight: guarana extract 10-20 parts, green tea extract 8-15 parts, taurine 45-52 parts, vitamin B group 5-12 parts, ginseng extract 15-20 parts, maca powder 100-150 parts, phosphatidylserine 5-12 parts, and ginkgo leaf extract 10-20 parts. The invention combines the synergistic effects of caffeine, tea polyphenols, and ginsenosides, and modulates the refreshing effect of energy drinks through multi-target action. It also retains the natural properties of traditional medicinal tea, stimulates the nervous system, improves alertness and concentration, effectively resists fatigue, and promotes wakefulness. The preparation process combines cold extraction and hot extraction to ensure the effectiveness of the ingredients. The tea is flavored with steviol glycosides, honey or sugar to make it pleasant to the taste and easy to accept. The refreshing medicinal tea proposed in the above invention is similar to many medicinal tea production and preparation methods, and it produces a liquid similar to an oral liquid, which is very inconvenient to use in daily life. If not properly stored, it can easily leak, and the liquid is more sensitive to temperature than solids, which can affect the taste and even cause spoilage due to high temperature. SUMMARY

[0005] Therefore, to solve the above problems, the present application proposes a synergistic composition of agastache tea, a processing technology and a processing device, which solves the technical problem of single type of medicinal tea preparation product and inconvenience for consumers to carry and use.

[0006] To achieve the above objectives, the present invention adopts the following technical solution: a synergistic patchouli tea composition, comprising the following raw materials in parts by weight: 6-8 parts patchouli, 60-80 parts Poria cocos, 10-12 parts tangerine peel, 3-5 parts Elsholtzia ciliata, 8-12 parts Platycodon grandiflorus, 6-8 parts nutmeg, 18-20 parts clove, 6-8 parts Angelica dahurica, 3-5 parts Citrus aurantium, 8-10 parts white hyacinth bean, 6-8 parts hawthorn, 8-12 parts purslane, and 8-12 parts Amomum villosum. 8-12 parts fennel, 8-12 parts papaya, 6-8 parts mulberry leaves, 6-8 parts malt, 8-12 parts honeysuckle, 5-8 parts perilla, 5-8 parts licorice, 3-5 parts lotus leaves, 9-13 parts perilla seeds, 8-10 parts cinnamon, 8-10 parts dried ginger, 8-10 parts houttuynia cordata, 8-10 parts sweet basil, 8-10 parts mesona chinensis, 5-10 parts imperata cylindrica root, 5-10 parts reed rhizome, 8-12 parts light bamboo leaves, and 75-85 parts tea leaves.

[0007] Furthermore, the tea leaves are green tea or white tea.

[0008] A processing method for a patchouli-based herbal tea composition with synergistic effects includes the following steps:

[0009] S1. Raw material pre-cleaning: Each raw material is preliminarily cleaned and impurities are removed. The cleaning process uses distilled water at a temperature of 5℃-10℃ for low-temperature cleaning.

[0010] S2. Raw material mixing: All the raw materials that have undergone preliminary cleaning are mixed and stirred in a mixing tank;

[0011] S3. Raw material preforming: The mixed raw materials are extruded and preformed into rectangular block structures through a molding die.

[0012] S4. Raw material crushing: The raw material blocks, which have been pre-formed into rectangular block structures, are put into a mixing and crushing machine for crushing and mixing until the particle diameter is 1.8-2.2mm.

[0013] S5. Secondary molding of crushed material: Take out the crushed material, put it into a heating cylinder, add pure water and heat and stir. After heating and stirring until the solid and liquid mixture is turbid, separate the solid and liquid by squeezing through gauze. The solid is in a spherical structure and the liquid is collected for later use.

[0014] S6. Raw material pelletizing: The spherical raw material, which has been initially shaped through gauze, is placed in a concentration and pelletizing device for pelletizing and drying while simultaneously undergoing concentration.

[0015] S7. Finished product packaging: The tea balls, after being formed into pellets and concentrated, are vacuum-packed.

[0016] Further, the drying operation is performed synchronously during the preforming operation in step S3, the forming mold is heated to 180-220 degrees Celsius, and the heating and drying time is 3-5 minutes.

[0017] Further, the concentrating process in step S6 is to drop the tea liquid in step S5 into the raw materials, and concentrate the tea liquid in the raw materials by high-temperature drying.

[0018] A processing device is applied to the processing technology of a synergistic effect of aoges tea composition, comprising a concentrating and forming device, the concentrating and forming device comprises a rack, a lower reaction forming plate fixedly arranged on the rack, an upper reaction forming plate movably arranged on the rack, a raw material overturning device arranged on the lower reaction forming plate, and a liquid dropping device arranged on the upper reaction forming plate, the raw material overturning device is used to continuously overturn and round the raw materials, the liquid dropping device is used to drop the tea liquid into the raw materials for high-temperature concentration, and a heating rod is arranged in the concentrating and forming device.

[0019] Further, an upper reaction cavity is arranged on one side of the upper reaction forming plate close to the lower reaction forming plate, a lower reaction cavity is arranged on one side of the lower reaction forming plate close to the upper reaction forming plate, the upper reaction cavity and the lower reaction cavity jointly form a reaction chamber, the raw material overturning device is arranged in the lower reaction cavity, and the liquid dropping device is arranged in the upper reaction cavity.

[0020] Further, the raw material overturning device comprises a plurality of overturning stations arranged in a matrix, the overturning station comprises a rolling outer shell and a rolling support rod matched 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 and comprises a rolling part and a supporting part connected with each other, the rolling part is in a bowl-shaped structure, the rolling support rod is inserted into the supporting part and can be lifted up and down in the supporting part, the rolling support rod extends upwardly to protrude from the bottom of the rolling part and is retracted downwardly into the supporting part after being subjected to an external force, a rolling shaft for receiving the raw materials is arranged at the free end of the rolling support rod, the rolling shaft is driven to rotate by a rotating motor, thereby driving the raw materials to roll in the vertical direction, and the rolling part rotates horizontally in the lower reaction cavity, when the rolling support rod sinks into the supporting part, the raw materials contact the inner side wall of the rolling part and roll horizontally under the driving of the rolling part.

[0021] Further, the medicine droplet falling device comprises a plurality of matrix-arranged droplet stations, the droplet stations and the turnover stations are same in number and one-to-one corresponding, the droplet station comprises a droplet rod, a liquid guide rod arranged in the droplet rod, the liquid guide rod is elastically telescopic in the droplet rod, and is used for guiding the medicine in the droplet rod, the droplet rod can be lifted up and down along the vertical direction, the droplet rod is connected with a medicine transportation pipeline and used for conveying the medicine to the raw material for concentration, and the free end of the liquid guide rod is provided with a liquid guide ball.

[0022] Further, the free end of the liquid guide rod is provided with an annular support portion at the edge of the liquid guide ball.

[0023] By adopting the foregoing technical scheme, the present application has the following beneficial effects:

[0024] 1、The present application improves the formula of the existing Huoxiangshu tea, and highlights the addition of three medicinal materials, namely, Rhizoma Imperatae, Phragmites communis and Lophatheri Herba, and the mixture according to proper proportions, and the main improvement direction is to enhance the heat-clearing and detoxifying effect through Rhizoma Imperatae, Phragmites communis and Lophatheri Herba on the basis of the original effect, and the three medicinal materials also have diuretic effect, especially Lophatheri Herba, which can synergize with Houttuyniae Herba, Lonicerae Japonicae Flos and Folium Nelumbinis to greatly improve the heat-clearing and detoxifying effect, and can synergize with Elsholtziae Herba to achieve the effect of relieving summer-heat and promoting diuresis, and is aimed at relieving the symptoms of bitter taste, short and red urine and heavy body heat, and the formula increases the proportion of tea leaves and Poria cocos, so that the formula can be in the form of daily beverage, and is more acceptable to consumers, and the formula meets the principle of "Eighteen Reactions and Nineteen Intolerances", and in conclusion, the formula belongs to the extended version of Huoxiang Zhengqi Powder, and combines heat-clearing, food-digesting and diuretic ingredients to achieve the best effect after brewing, and is suitable for summer-heat and food stagnation syndrome.

[0025] 2、In the preparation process of the formula, the improvement of the forming process is innovated, which improves the original single forming process into raw material pre-forming, stirring after crushing, second forming, and further third forming of pills. The advantage of three forming operations is that the blocky raw material after the first pre-forming can be more completely crushed when entering the stirring crusher, avoiding the traditional method of putting all the raw material into the stirring crusher at once, which leads to uneven crushing and the difficulty of fully releasing the effective components in the raw material during the later brewing process. Meanwhile, after complete crushing, the raw material is formed again through gauze, and the solid-liquid separation process is carried out simultaneously. The extracted liquid is collected and stored, and then the raw material after preliminary forming is formed into a finished product through a concentration forming device. In this process, the liquid is dripped into the raw material and dried at high temperature. Compared with the medicine prepared by the ordinary preparation process, the raw material is more finely crushed, and the effective components in the raw material are more easily released during the brewing process.

[0026] 3、In order to meet the improvement of the processing technology, an improved concentration forming device is provided, which has the advantage of targeted improvement of the supporting processing technology. The concentration forming device can perform concentration and forming simultaneously. The upper reaction forming plate mainly performs the concentration process, and the lower reaction forming plate mainly performs the forming process. The raw material turnover device can ensure that the outer circumferential surface of the raw material is smoother and more rounded during the pill forming process, and the overall texture of the finished product is uniform. The tumbling part and the supporting part achieve this purpose. The tumbling part is used to fit the outer circumferential surface of the raw material and form the outer circumferential surface of the raw material. The rollers 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 the tumbling process, so that the entire outer surface of the raw material pill can be formed. At the same time, because the raw material pill is constantly rolling during the forming process, the liquid dripping device in the upper reaction cavity can uniformly cover the outer circumferential surface of the raw material pill.

[0027] 4、The liquid dripping device and the raw material turnover device in the present application work together. When the liquid dripping device drips liquid, the dripping rod will descend close to the raw material pill. The liquid guide rod in the dripping rod will rest on the top of the raw material pill and drive the raw material pill to move downward to the tumbling support rod and enter the supporting part. At this time, the lower semicircular surface of the raw material pill contacts the tumbling part and rotates with the tumbling part. The liquid dripping process is synchronized with the uniform liquid dripping operation. The free end of the liquid guide rod is provided with a liquid guide ball, which ensures that the liquid is evenly applied from the four sides of the liquid guide ball. The annular support part ensures the stability of the raw material pill when it rotates with the tumbling part. Attached Figure Description

[0028] Other features, objects, and advantages of the present invention will become more apparent from the following detailed description of non-limiting embodiments with reference to the accompanying drawings:

[0029] Figure 1 This is a flowchart of the processing technology of the present invention;

[0030] Figure 2 This is a schematic diagram of the processing equipment of the present invention;

[0031] Figure 3 This is a schematic diagram of the internal structure of the processing equipment of the present invention;

[0032] Figure 4 for Figure 3 Enlarged view of point A in the middle;

[0033] Figure 5 This is a bottom view of the upper reaction molding plate structure in this invention;

[0034] Figure 6 This is a schematic diagram of the internal structure of the raw material turning device in this invention;

[0035] Figure 7 This is a top view of the raw material turning device in this invention.

[0036] Figure 8 This is a schematic diagram of the working state of the rolling support rod in this invention. Detailed Implementation

[0037] To make the technical means, creative features, objectives and effects of this invention easier to understand, the invention will be further described below in conjunction with specific embodiments.

[0038] Please see Figures 1-8 This invention provides a synergistic herbal tea composition containing the following ingredients in parts by weight: 6 parts patchouli, 60 parts Poria cocos, 10 parts tangerine peel, 3 parts Elsholtzia ciliata, 8 parts Platycodon grandiflorus, 6 parts nutmeg, 18 parts clove, 6 parts Angelica dahurica, 3 parts Citrus aurantium, 8 parts white hyacinth bean, 6 parts hawthorn, 8 parts purslane, 8 parts Amomum villosum, 8 parts fennel, 8 parts papaya, 6 parts mulberry leaf, 6 parts malt, 8 parts honeysuckle, and 5 parts perilla. Ingredients: 5 parts licorice root, 3 parts lotus leaf, 9 parts perilla seed, 8 parts cinnamon, 8 parts dried ginger, 8 parts houttuynia cordata, 8 parts sweet basil, 8 parts mesona chinensis, 5 parts Imperata cylindrica root, 5 parts reed rhizome, 8 parts bamboo leaves, and 75 parts tea leaves; among which, Fuding white tea is selected. This formula is an extended variation of Huoxiang Zhengqi San, combining heat-clearing, digestive, and diuretic components. It achieves the best effect when consumed after brewing and is suitable for summer damp-heat syndrome with food stagnation.

[0039] The embodiment synchronously proposes a processing technology of the above-mentioned Huoxiangshucha composition, and the processing technology of the Huoxiangshucha composition with synergistic effect comprises the following steps:

[0040] S1, raw material pre-cleaning; each raw material is preliminarily cleaned and impurities are removed, and the cleaning process adopts low-temperature cleaning with distilled water at 5 DEG C;

[0041] S2, raw material mixing; all the raw materials after preliminary cleaning are mixed and stirred in a stirring kettle;

[0042] S3, raw material pre-forming; each raw material after uniform mixing and stirring is extruded into a rectangular block structure through a forming die set;

[0043] S4, raw material crushing; the raw material block formed into a rectangular block structure by pre-forming is put into a stirring crusher for crushing and stirring, and the stirring and crushing are performed until the particle diameter of the crushed material is 1.8 mm;

[0044] S5, secondary forming of the crushed material; the crushed material is taken out, placed in a heated cylinder, and added with pure water for heating and stirring; after the heating and stirring to a turbid state of solid-liquid mixture, the solid-liquid separation is performed by extrusion through gauze, the solid is in a spherical structure, and the liquid is collected for use;

[0045] S6, raw material pelletizing; the spherical raw material after preliminary forming by gauze is placed in a concentration forming device for pelletizing, drying and forming, and simultaneously performing concentration operation;

[0046] S7, finished product packaging; the tea pellets after pelletizing and concentration are vacuum packaged.

[0047] In step S3, the drying operation is simultaneously performed during the pre-forming operation, the forming die set is heated to 180 DEG C, and the heating and drying time is 5 minutes; in step S6, the concentration process is that the tea liquid in step S5 is dropped into the raw material, and the tea liquid is concentrated in the raw material by high-temperature drying.

[0048] The embodiment synchronously proposes a processing equipment applied to the above processing technology. The processing equipment is applied to the processing technology of the coordinated effect of the agastache rugosa tea composition, and comprises a concentration forming device. The concentration forming device comprises a rack 1, a lower reaction forming plate 2 fixedly arranged on the rack 1, an upper reaction forming plate 3 movably arranged on the rack 1, a raw material overturning device 5 arranged on the lower reaction forming plate 2, and a liquid medicine dropping device 4 arranged on the upper reaction forming plate 3. The raw material overturning device 5 is used for continuously overturning and rounding the raw material. The liquid medicine dropping device 4 is used for dropping the tea liquid into the raw material for high-temperature concentration. A heating rod 8 is arranged in the upper reaction forming plate 3 of the concentration forming device. The upper reaction forming plate 3 is lifted up and down on the rack 1, and is close to or away from the lower reaction forming plate 2. The liquid medicine in step S5 enters the liquid medicine dropping device 4 in the upper reaction forming plate 3 from the outside through a liquid medicine conveying pipeline 7.

[0049] An upper reaction cavity 31 is arranged on one side of the upper reaction forming plate 3 close to the lower reaction forming plate 2. A lower reaction cavity 21 is arranged on one side of the lower reaction forming plate 2 close to the upper reaction forming plate 3. The upper reaction cavity 31 and the lower reaction cavity 21 jointly form a reaction chamber. The raw material overturning device 5 is arranged in the lower reaction cavity 21. The liquid medicine dropping device 4 is arranged in the upper reaction cavity 31. The raw material overturning device 5 comprises a plurality of overturning stations arranged in a matrix. The overturning station comprises a rolling outer shell 51 and a rolling support rod 52 matched with each other. The rolling outer shell 51 and the rolling support rod 52 are sleeved with each other. The rolling outer shell 51 is rotatably arranged in the lower reaction cavity 21, and comprises a rolling part 511 and a supporting part 512 connected with each other. The rolling part 511 is in a bowl-shaped structure. The rolling support rod 52 is inserted into the supporting part 512 and can be lifted up and down in the supporting part 512. The rolling support rod 52 extends upward to the bottom of the rolling part 511 and is retracted downward into the supporting part 512 after being subjected to an external force. A rolling shaft 521 for receiving the raw material is arranged at the free end of the rolling support rod 52. The rolling shaft 521 is driven to rotate by a rotating motor, thereby driving the raw material to roll in the vertical direction. The rolling part 511 rotates horizontally in the lower reaction cavity 21. When the rolling support rod 52 sinks into the supporting part 512, the raw material contacts the inner side wall of the rolling part 511 and rolls in the horizontal direction under the driving of the rolling part 511.

[0050] The medicine liquid dropping device 4 comprises a plurality of liquid dropping stations arranged in a matrix, the liquid dropping stations and the turnover stations are same in number and one-to-one corresponding, the liquid dropping station comprises a liquid dropping rod 41 and a liquid guide rod 42 arranged in the liquid dropping rod 41, the liquid guide rod 42 is elastically telescopic in the liquid dropping rod 41 and is used for guiding the medicine liquid in the liquid dropping rod 41, the liquid dropping rod 41 can be lifted up and down along the vertical direction, the liquid dropping rod 41 is communicated with the medicine liquid conveying pipeline 7 and is used for conveying the medicine liquid to the raw material for concentration, the free end of the liquid guide rod 42 is provided with a liquid guide ball 43, and the free end of the liquid guide rod 42 is provided with an annular support part 6 at the edge of the liquid guide ball 43.

[0051] The medicine liquid dropping device 4 and the raw material turnover device 5 cooperate and work together, when the upper reaction forming plate 3 approaches the lower reaction forming plate 2, the medicine liquid dropping device 4 approaches the raw material turnover device 5, the raw material pill originally rotating in the vertical direction is changed into rotating in the horizontal direction by the pressing of the liquid guide rod 42, at this time, the liquid guide ball 43 is also forced to retract upwards, the medicine liquid seeps into the raw material pill from the gap around the liquid guide ball 43, after uniform covering, the liquid dropping rod 41 rises, the raw material pill is lifted up by the tumbling support rod 52 and is driven to rotate in the vertical direction by the roller 521 to switch the liquid dropping area, and then the liquid dropping rod 41 descends again to repeat the liquid dropping process.

[0052] The above shows and describes the basic principles and main features of the present application and the advantages of the present application, for those skilled in the art, it is obvious that the present application is not limited to the details of the above exemplary embodiments, and the present application can be realized in other specific forms without departing from the spirit or basic features of the present application. Therefore, from any point of view, the embodiments should be regarded as exemplary and non-limiting, the scope of the present application 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 application. Any reference signs in the claims should not be regarded as limiting the claims involved.

[0053] In addition, it should be understood that although the present specification is described in terms of embodiments, not every embodiment contains only one independent technical solution, the description manner of the specification is only for the sake of clarity, those skilled in the art should regard the specification as a whole, and the technical solutions in each embodiment can also be properly combined to form other embodiments which can be understood by those skilled in the art.

Claims

1. A processing apparatus applied in a processing procedure of aogon tea composition, characterized in that: The concentration forming device comprises a rack, a lower reaction forming plate fixedly arranged on the rack, an upper reaction forming plate movably arranged on the rack, a raw material overturning device arranged on the lower reaction forming plate, and a liquid medicine dropping device arranged on the upper reaction forming plate, the raw material overturning device is used for continuously overturning and rounding the raw material, the liquid medicine dropping device is used for dropping tea liquid into the raw material for high-temperature concentration, and a heating rod is arranged in the concentration forming device; An upper reaction cavity is arranged on one side of the upper reaction forming plate close to the lower reaction forming plate, a lower reaction cavity is arranged on one side of the lower reaction forming plate close to the upper reaction forming plate, the upper reaction cavity and the lower reaction cavity jointly form a reaction chamber, the raw material overturning device is arranged in the lower reaction cavity, and the liquid medicine dropping device is arranged in the upper reaction cavity; The raw material overturning device comprises a plurality of overturning stations arranged in a matrix, each overturning station comprises a rolling outer shell and a rolling support rod matched 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 and comprises a rolling part and a supporting part connected with each other, the rolling part is in a bowl-shaped structure, the rolling support rod is inserted into the supporting part and can be lifted up and down in the supporting part, the rolling support rod extends upward to protrude from the bottom of the rolling part and is retracted into the supporting part under the action of an external force, and a roller for receiving the raw material is arranged at the free end of the rolling support rod, the roller is driven to rotate by a rotating motor, thereby driving the raw material to roll in the vertical direction, and the rolling part rotates horizontally in the lower reaction cavity, when the rolling support rod sinks into the supporting part, the raw material contacts the inner side wall of the rolling part and rolls in the horizontal direction under the driving of the rolling part; The liquid medicine dropping device comprises a plurality of liquid dropping stations arranged in a matrix, the number of the liquid dropping stations is the same as that of the overturning stations and each liquid dropping station corresponds to one overturning station, each liquid dropping station comprises a liquid dropping rod and a liquid guide rod arranged in the liquid dropping rod, the liquid guide rod is elastically telescopic in the liquid dropping rod and is used for guiding the liquid medicine in the liquid dropping rod, the liquid dropping rod can be lifted up and down in the vertical direction, the liquid dropping rod is connected with a liquid medicine conveying pipeline and is used for conveying the liquid medicine to the raw material for concentration, and a liquid guide ball is arranged at the free end of the liquid guide rod; The processing technology of the agastache tea composition comprises the following steps: S1, raw material pre-washing; each raw material is preliminarily washed and impurities are removed, and the washing process adopts low-temperature washing with distilled water at a temperature of 5-10°C; S2, raw material mixing; all the raw materials after preliminary washing are mixed and stirred in a stirring kettle; S3, raw material pre-forming; each raw material after uniform mixing and stirring is extruded and formed into a rectangular block structure through a forming die set; S4, raw material crushing; the raw material block formed into a rectangular block structure through pre-forming is put into a stirring crusher for crushing and stirring, and the crushing and stirring are performed until the particle diameter of the crushed material is 1.8-2.2mm; S5, secondary forming of the crushed material; the crushed material is taken out, placed in a heated barrel, and heated and stirred with pure water. After heating and stirring to a turbid state of solid-liquid mixture, solid-liquid separation is performed by extrusion through gauze. The solid is spherical in structure, and the liquid is collected for later use; S6, raw material pelletization; the spherical raw material after preliminary shaping by gauze is placed in a concentration shaping device for pelletization, drying, and shaping, and concentration is simultaneously performed; S7, finished product packaging; the tea pellets after pelletization and concentration are vacuum packaged; In step S3, drying is performed simultaneously during the preforming operation. The forming mold is heated to 180-220 degrees Celsius, and the heating and drying time is 3-5 minutes. In step S6, the concentration process is to drop the tea liquid in step S5 into the raw material, and the tea liquid is concentrated in the raw material by high-temperature drying.

2. A processing apparatus according to claim 1, wherein: The free end of the liquid guide rod is provided with an annular support portion at the edge of the liquid guide ball.

Citation Information

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