A kind of golden thread lotus beverage and processing method thereof

By adding black tea, wolfberry and tangerine peel to the Golden Stream drink and using multiple rolling and drying processing methods, the existing Golden Stream drink has solved the problem of single ingredients and poor taste, achieving a richer taste and a variety of health effects, while improving the quality and processing efficiency of the product.

CN116406719BActive Publication Date: 2025-06-06QUANZHOU JINCAO BIOTECHNOLOGY CO LTD
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Patent Information

Application Number
CN202310222423.7
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-03-09
Publication Date
2025-06-06
Estimated Expiration
2043-03-09

AI Technical Summary

Technical Problem

The existing golden thread drinks and processing methods have problems such as single ingredients, poor taste and inability to roll and twist, which cannot meet the needs of modern people for balanced nutrition.

Method used

The combination of black tea, wolfberry, tangerine peel is used to adjust the density and pressure of the rolling device to adapt to different tendernesses of golden thread tea with different tenderness.

Benefits of technology

While retaining the flavor of nigra, it improves the taste and taste of the drink, increases the effects of reducing blood sugar, beauty and skin care, eye protection and purpose protection, and improves the quality and processing efficiency of nigra products.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a roxburghii beverage and a processing method thereof. The components include black tea, wolfberry, roxburghii and tangerine peel, and the weight ratio of the components is black tea: wolfberry: roxburghii: tangerine peel=3:5:3:3. The roxburghii uses roxburghii tea leaves that have been repeatedly rolled and dried. The roxburghii beverage of the invention is more flavorful, sweeter in taste and thicker in flavor when combined with other ingredients while fully retaining the flavor of roxburghii. The beverage of the invention not only has the liver-protecting, anti-cancer, anti-oxidation and anti-viral effects of roxburghii tea, but also has the effects of lowering blood sugar, beautifying and nourishing the skin, and protecting the eyes, and has a good health-preserving effect for middle-aged and elderly people.
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Description

Technical Field

[0001] The invention relates to the field of roxburghii beverage processing, and in particular to a roxburghii beverage and a processing method thereof. Background Art

[0002] Anoectochilus roxburghii is a rare plant of the genus Anoectochilus in the family Orchidaceae. It can be used as both medicine and food. It is also known as Anoectochilus roxburghii, Anoectochilus roxburghii, Anoectochilus ginseng, etc. It is a traditional and precious Chinese herbal medicine with Fujian and Taiwan characteristics. It is known as the "king of medicine" and "golden grass" among the people. Anoectochilus roxburghii has a long history of folk use and a wide range of applications. It has significant efficacy on a variety of diseases. Its efficacy is recorded in classics such as "Chinese Herbal Medicine Dictionary", "Chinese Herbal Medicine Dictionary", "National Compilation of Chinese Herbal Medicines", "Chinese Materia Medica", "Supplement to Materia Medica", and "Fujian Pharmacopoeia". It tastes sweet and is flat in nature. It has the effects of clearing heat and cooling blood, dispelling wind and dampness, detoxifying, relieving pain, and relieving cough. Modern research shows that Anoectochilus roxburghii mainly contains chemical components such as anoectochilus glycosides, flavonoids, polysaccharides, alkaloids, volatile oils, triterpenes, sterols, amino acids, and trace elements. These functional components play an important role in human health, such as enhancing immunity, resisting liver damage, lowering blood sugar, and resisting oxidation.

[0003] The existing patent application number 201010242106.4 discloses a golden thread lotus beverage and its preparation method, which mixes golden thread lotus with white sugar and raw licorice to improve the taste of golden thread lotus tea. The ingredients and functions are single, the taste is poor, and it cannot meet the requirements of modern people for balanced nutrition. The patent application number 201510147350.5 discloses a preparation method of golden thread lotus semi-fermented tea, which uses an ordinary rolling machine for rolling, and cannot fully roll the golden thread lotus, thereby affecting the appearance and quality of the golden thread lotus tea.

[0004] In view of this, the applicant conducted in-depth research on the above issues, which led to the present case. Summary of the invention

[0005] One purpose of the present invention is to provide a golden thread lotus beverage, which has the effects of lowering blood sugar, beautifying the skin and protecting the eyes.

[0006] The second purpose of the present invention is to provide a processing method, which can adjust the precision of rolling and improve the rolling quality of golden thread vine, and is suitable for processing golden thread vine with different tenderness.

[0007] In order to achieve the above object, the solution of the present invention is:

[0008] A roxburghii roxburghii beverage comprises black tea, wolfberry, roxburghii roxburghii and tangerine peel, wherein the weight ratio of the components is black tea: wolfberry: roxburghii roxburghii: tangerine peel=3:5:3:3.

[0009] Furthermore, the roxburghii roxburghii tea leaves are made from roxburghii roxburghii tea leaves that have been rolled and dried multiple times.

[0010] A processing method for preparing the above-mentioned roxburghii beverage comprises the following steps:

[0011] (1) Picking golden thread vines that have been cultivated in the mountains or greenhouses for more than 7 months, sorting them, and removing yellow leaves;

[0012] (2) placing the sorted golden thread vine on a vibration screening device for vibration removal to remove dust from the roots or stems of the golden thread vine;

[0013] (3) Preliminarily kneading the golden thread vine, and then washing and drying the golden thread vine to remove the water on the surface of the golden thread vine used for cleaning;

[0014] (4) drying the roxburghii leaves in the sun to wither, so that the enzymes in the roxburghii leaves begin to decompose and ferment, and the water in the roxburghii leaves begins to evaporate;

[0015] (5) collecting the withered golden thread vine, shaking the vine to further ferment it, and then drying the vine after shaking for 15 minutes;

[0016] (6) Stir-fry the golden thread vine in a hot pan at 70°C for 3 minutes;

[0017] (7) sending the stir-fried golden thread lotus to a kneading device for secondary kneading;

[0018] (8) drying the roxburghii roxburghii after being rolled for multiple times, adding black tea, wolfberry, tangerine peel and other ingredients to mix, and sealing and packaging the mixed roxburghii roxburghii tea.

[0019] Furthermore, in step (7), for the less tender golden thread vine, the stir-fried golden thread vine is directly added to the kneading device for kneading, thereby increasing the density of the kneading bosses in the kneading device and increasing the pressure in the barrel.

[0020] Furthermore, in step (7), for the tender golden thread lily leaves, the stir-fried golden thread lily leaves are left to stand for 30 minutes, and then added to the kneading device for kneading, and the density of the kneading bosses in the kneading device is reduced.

[0021] Furthermore, the kneading device includes a base, a kneading disk, a material barrel, a first driving mechanism and a second driving mechanism. The kneading disk is installed on the base, and the material barrel is connected to the base through a connecting rod mechanism. The first driving mechanism drives the material barrel to swing above the kneading disk. The kneading disk includes an outer disk, a middle disk and an inner disk which are sequentially socketed. The outer disk, the middle disk and the inner disk are coaxially arranged and have kneading bosses on their upper surfaces. A discharge port is provided in the middle of the inner disk, and a slidingly connected sealing plate is provided in the discharge port. The second driving mechanism drives the inner and outer disks to rotate around the central axis.

[0022] Furthermore, the second driving mechanism includes a first motor, the outer disk is fixedly connected to the base, the lower end of the outer disk is provided with an inner gear ring, the lower end of the middle disk is provided with a plurality of driving gears, a circular groove is provided on the base, a rotating shaft is provided in the middle of the driving gear, the upper end of the rotating shaft is rotatably connected to the lower surface of the middle disk, the lower end of the rotating shaft is embedded in the circular groove and movably connected, the lower end of the inner disk is provided with a first outer gear ring, a rotating part and a second outer gear ring, the driving gear is meshed with the inner gear ring and the first outer gear ring for transmission, the rotating part is rotatably connected to the base, and the output end of the first motor is meshed with the second outer gear ring for transmission through gears.

[0023] Furthermore, the sealing plate is provided with a plurality of kneading strips, the lower end of the base is provided with a driving cylinder, the power output end of the driving cylinder is provided with a second motor, the motor shaft of the second motor is provided with a connecting frame, and the end of the connecting frame is connected to the lower end of the sealing plate.

[0024] Furthermore, the first driving mechanism includes a third motor, a gearbox and a connecting rod shaft, the connecting rod shaft is connected to the connecting rod mechanism, the third motor is connected to the gearbox, and the gearbox is connected to the connecting rod shaft through a bevel gear.

[0025] Furthermore, the material barrel is provided with a pressing plate and a third driving mechanism, and the third driving mechanism includes a fourth motor, a fixed plate, a guide rod, a lifting frame and a screw rod. A connecting rod is provided on the side of the material barrel, and the guide rod is vertically connected to the connecting rod. The fixed plate is connected to the upper end of the guide rod, and the two ends of the screw rod are respectively rotatably connected to the connecting rod and the fixed plate. The fourth motor is arranged on the fixed plate and drives the screw rod to rotate. One end of the lifting frame is sleeved on the guide rod and rotatably connected to the screw rod, and the other end of the lifting frame is connected to the upper end of the pressing plate.

[0026] Compared with the prior art, the beneficial effect is that the present invention, while fully retaining the flavor of the golden thread lotus, cooperates with other ingredients to brew a golden thread lotus beverage with a richer taste, a sweeter mouthfeel, and a stronger taste. In addition, the beverage of the present invention not only has the liver-protecting, anti-cancer, anti-oxidation and anti-viral effects of golden thread lotus tea, but also has the effects of lowering blood sugar, beautifying and nourishing the skin, and protecting the eyes and improving eyesight, and has a good health-preserving effect for middle-aged and elderly people. In addition, in the processing method of the present invention, by debugging the rolling machine, golden thread lotus of different tenderness can be rolled, so that the prepared golden thread lotus product can be oxidized, and the golden thread lotus leaves are more compact, which greatly improves the product quality of the golden thread lotus. BRIEF DESCRIPTION OF THE DRAWINGS

[0027] Figure 1 It is a schematic diagram of the process of the preparation method of the present invention.

[0028] Figure 2 It is a three-dimensional diagram of the external structure of the kneading device.

[0029] Figure 3 It is a schematic diagram of the cross-sectional structure of the kneading device.

[0030] Figure 4 It is a schematic diagram of the transmission mechanism of the inner disk, the middle disk and the outer disk.

[0031] Figure 5 This is a schematic diagram of the structure of the kneading plate when kneading golden thread vine with a higher degree of tenderness.

[0032] Figure 6 This is a schematic diagram of the structure of the kneading plate when kneading golden thread vine with a low degree of tenderness.

[0033] Figure 7 This is a three-dimensional diagram of the external structure of the flushing equipment.

[0034] Figure 8 Another perspective view of the external structure of the flushing equipment.

[0035] Fig. 9 It is a schematic diagram of the cross-sectional structure of the flushing equipment.

[0036] Fig.10 It is a schematic diagram of the connection structure between the flushing plate and the conveyor chain.

[0037] Fig.11 It is a schematic diagram of the cross-sectional structure between the toggles.

[0038] Fig.12 It is a three-dimensional diagram of the external structure of the flushing plate.

[0039] In the figure:

[0040] Base 1, circular groove 11, drive cylinder 12, second motor 13, connecting frame 14,

[0041] Kneading disk 2, outer disk 21, inner gear ring 211, middle disk 22, driving gear 221,

[0042] Inner plate 23, discharge port 231, first outer gear ring 232, rotating part 233,

[0043] The second outer gear ring 234, the kneading boss 24, the blocking plate 25, the kneading strip 251, the barrel 3, the leaf outlet 31, the pressing plate 32, the fourth motor 33, the fixing plate 34, the guide rod 35,

[0044] Lifting frame 36, screw rod 37, first driving mechanism 41, third motor 411,

[0045] gearbox 412, connecting rod shaft 413, second driving mechanism 42, first motor 421,

[0046] Screening device 5, screening frame 51, screen plate 52, vibration motor 53,

[0047] Dust collecting device 54, upper discharge plate 55, lower discharge plate 56, partition 57, flushing device 6, flushing frame 61, flushing cover 611, transverse guide rail 612, fixed grid frame 613,

[0048] Filter plate 614, guide plate 615, water pump 616, filter 617, water storage tank 618, first conveyor belt 62, flushing plate 63, limiting groove 631, strip hole 632, rack 633, guide groove 634, conveyor chain belt 64, limiting nail 641, drive assembly 65,

[0049] Drive motor 651, drive sprocket 652, transmission sprocket 653, drive shaft 654,

[0050] Transmission shaft 655, water spray assembly 66, upper water spray part 661, upper delivery pipe 6611,

[0051] Upper nozzle 6612, lower water spraying part 662, lower delivery pipe 6621, lower nozzle 6622,

[0052] The toggle assembly 67, the toggle shaft 671, the toggle gear 672, the toggle rod 673, the spring 674, the kneading sheet 675, the friction protrusion 6751, the drying device 7, the second conveyor belt 71,

[0053] Oven 72. DETAILED DESCRIPTION

[0054] In order to further explain the technical solution of the present invention, the present invention is described in detail below through specific embodiments.

[0055] like Figure 1-6 As shown, a roxburghii beverage comprises black tea, wolfberry, roxburghii and tangerine peel, and the weight ratio of each component is black tea: wolfberry: roxburghii: tangerine peel = 3:5:3:3. The roxburghii uses roxburghii tea leaves that have been repeatedly rolled and dried. The roxburghii beverage of the present invention is more flavorful, sweeter in taste and stronger in flavor when combined with other ingredients while fully retaining the flavor of roxburghii. In addition, the beverage of the present invention not only has the liver-protecting, anti-cancer, anti-oxidation and anti-viral effects of roxburghii tea, but also has the effects of lowering blood sugar, beautifying and nourishing the skin, and protecting the eyes, and has good health-preserving effects for middle-aged and elderly people.

[0056] A processing method for preparing the above-mentioned roxburghii beverage comprises the following steps:

[0057] (1) Picking golden thread vines that have been cultivated in the mountains or greenhouses for more than 7 months, sorting them, and removing yellow leaves;

[0058] (2) placing the sorted golden thread vine on a vibration screening device for vibration removal to remove dust from the roots or stems of the golden thread vine;

[0059] (3) Preliminarily kneading the golden thread vine, and then washing and drying the golden thread vine to remove the water on the surface of the golden thread vine used for cleaning;

[0060] (4) drying the roxburghii leaves in the sun to wither, so that the enzymes in the roxburghii leaves begin to decompose and ferment, and the water in the roxburghii leaves begins to evaporate;

[0061] (5) collecting the withered golden thread vine, shaking the vine to further ferment it, and then drying the vine after shaking for 15 minutes;

[0062] (6) Stir-fry the golden thread vine in a hot pan at 70°C for 3 minutes;

[0063] (7) sending the stir-fried golden thread lotus to a kneading device for secondary kneading;

[0064] (8) drying the roxburghii roxburghii after being rolled for multiple times, adding black tea, wolfberry, tangerine peel and other ingredients to mix, and sealing and packaging the mixed roxburghii roxburghii tea.

[0065] Preferably, in step (7), for the golden thread vine with a slightly lower tenderness, generally referring to the golden thread vine cultivated for 9-12 months, the stir-fried golden thread vine is directly added to the kneading device for kneading, the density of the kneading boss 24 in the kneading device is increased, and the pressure in the barrel 3 is increased at the same time. This can increase the kneading friction frequency of the golden thread vine leaves. Using a higher temperature and a larger kneading friction force is more conducive to kneading the golden thread vine into strips, making the color of the leaves brighter.

[0066] Preferably, in step (7), the roxburghii leaves with high tenderness generally refer to roxburghii leaves that have been cultivated for 7-9 months, because they are tender, have low cellulose content and contain more pectin. The stir-fried roxburghii leaves are left to stand for 30 minutes, and then added to the kneading device for kneading, and the density of the kneading bosses 24 in the kneading device is reduced, so that the leaves are not only easier to be kneaded into strips, but also the color and aroma of the tender leaves can be maintained.

[0067] In this embodiment, in order to facilitate the adjustment of the kneading friction frequency of the golden thread vine during kneading, the kneading device includes a base 1, a kneading disk 2, a barrel 3, a first driving mechanism 41 and a second driving mechanism 42, the lower end of the barrel 3 is provided with a leaf outlet 31, the kneading disk 2 is mounted on the base 1, the barrel 3 is connected to the base 1 through a connecting rod mechanism, the kneading disk 2 includes an outer disk 21, a middle disk 22 and an inner disk 23 which are sequentially sleeved, the outer disk 21, the middle disk 22 and the inner disk 23 are coaxially arranged and the upper surfaces are provided with kneading bosses 24, the middle part of the inner disk 23 is provided with a discharge port 231, and a slidingly connected sealing plate 25 is provided in the discharge port 231, and the second driving mechanism 42 drives the inner disk 23 and the outer disk 21 to rotate around the central axis. The first driving mechanism 41 drives the connecting rod mechanism to move, thereby driving the material barrel 3 to swing above the kneading disk 2, so that the golden thread lotus coming out of the leaf outlet 31 can be fully kneaded and rubbed with the kneading boss 24, realizing an automated kneading process, greatly reducing labor costs, and improving kneading efficiency.

[0068] Specifically, the second driving mechanism 42 includes a first motor 421, an outer disk 21 fixedly connected to the base 1, an inner gear ring 211 is provided at the lower end of the outer disk 21, a plurality of driving gears 221 are provided at the lower end of the middle disk 22, a circular groove 11 is provided on the base 1, a rotating shaft is provided in the middle of the driving gear 221, the upper end of the rotating shaft is rotatably connected to the lower surface of the middle disk 22, the lower end of the rotating shaft is embedded in the circular groove 11 and movably connected, a first outer gear ring 232, a rotating part 233 and a second outer gear ring 234 are provided at the lower end of the inner disk 23, the driving gear 221 is meshed with the inner gear ring 211 and the first outer gear ring 232 for transmission, the rotating part 233 can be rotatably connected to the base 1 through a bearing, and the output end of the first motor 421 is meshed with the second outer gear ring 234 for transmission. After adopting the above structure, the first motor 421 drives the inner disk 23 to rotate through the second outer gear ring 234. During the rotation of the inner disk 23, the first outer gear ring 232 meshes with the driving gear 221 to drive the driving gear 221 to rotate. Since the inner gear ring 211 is fixedly connected to the base 1, the inner gear ring 211 remains fixed, and the inner gear ring 211 meshes with the driving gear 221 to drive, so that the rotating shaft of the driving gear 221 slides along the circular groove 11, and then drives the middle disk 22 to rotate around the central axis. In this way, the inner disk 23, the middle disk 22 and the outer disk 21 rotate relative to each other, so that the kneading bosses 24 set on the inner disk 23, the middle disk 22 and the outer disk 21 move relative to each other, thereby adjusting the density of the kneading bosses 24, and then adjusting the kneading friction frequency of the golden thread lotus. For example, when kneading the golden thread vine with a slightly lower tenderness, due to the high hardness of the leaves, the kneading frequency should be increased, and the inner disk 23 and the middle disk 22 should be rotated to make each kneading boss 24 relatively dispersed, so that the barrel 3 can ensure that the leaves are fully kneaded during the swing kneading process, and improve the kneading effect of the golden thread vine with a slightly lower tenderness. When kneading the golden thread vine with a higher tenderness, due to the higher tenderness, the cellulose content is low and there is more pectin in the leaves, the leaves are relatively soft, which is convenient for kneading and deformation. At this time, the inner disk 23 and the middle disk 22 are rotated to merge the kneading bosses 24 on each disk to form a kneading boss 24 with a longer length, so that the distribution density of the kneading bosses 24 can be reduced, the kneading friction frequency can be reduced, and the phenomenon of the golden thread vine leaf being broken due to excessive kneading can be avoided, and the kneading effect can be further improved. The present invention can adjust the distribution position of each kneading boss 24 by rotating the inner disk 23 and the middle disk 22, thereby adjusting the kneading frequency, and is easy to operate, suitable for different types of golden thread vine leaves, and has stronger applicability.

[0069] Preferably, the blocking plate 25 is provided with a plurality of kneading strips 251, and the kneading strips 251 can further knead the golden thread lotus leaves located in the middle to improve the kneading effect. The lower end of the base 1 is provided with a driving cylinder 12, and the power output end of the driving cylinder 12 is provided with a second motor 13, and the motor shaft of the second motor 13 is provided with a connecting frame 14, and the end of the connecting frame 14 is connected to the lower end of the blocking plate 25. After adopting the above structure, when the kneading is completed, the driving cylinder 12 drives the second motor 13 and the connecting frame 14 to descend, thereby driving the blocking plate 25 to move downward to the bottom of the discharge port 231, and then the second motor 13 drives the connecting frame 14 to rotate, thereby driving the blocking plate 25 to separate from the discharge port 231. At this time, the discharge port 231 is opened, and the leaves on the kneading disk 2 can be discharged through the discharge port 231 to the collection bucket placed in advance at the lower end of the discharge port 231 for recycling. It makes it more convenient and quick to collect the leaves after kneading, and further improves the preparation efficiency.

[0070] In this embodiment, in order to realize the movement of the driving connecting rod mechanism, the first driving mechanism 41 includes a third motor 411, a gearbox 412 and a connecting rod shaft 413, the connecting rod shaft 413 is connected to the connecting rod mechanism, the third motor 411 is connected to the gearbox 412, and the gearbox 412 is connected to the connecting rod shaft 413 through a bevel gear. The third motor 411 drives the connecting rod shaft 413 to rotate through the variable box, thereby driving the connecting rod mechanism to move, so that the barrel 3 can swing regularly on the kneading disk 2.

[0071] More preferably, the barrel 3 is provided with a pressing plate 32 and a third driving mechanism, the third driving mechanism includes a fourth motor 33, a fixed plate 34, a guide rod 35, a lifting frame 36 and a screw rod 37, a connecting rod is provided on the side of the barrel 3, the guide rod 35 is vertically connected to the connecting rod, the fixed plate 34 is connected to the upper end of the guide rod 35, the two ends of the screw rod 37 are respectively rotatably connected to the connecting rod and the fixed plate 34, the fourth motor 33 is arranged on the fixed plate 34 and drives the screw rod 37 to rotate, one end of the lifting frame 36 is sleeved on the guide rod 35 and rotatably connected to the screw rod 37, and the other end of the lifting frame 36 is connected to the upper end of the pressing plate 32. After adopting the above structure, the fourth motor 33 drives the screw rod 37 to rotate, drives the lifting frame 36 to perform lifting and lowering movements, thereby driving the pressing plate 32 to perform lifting and lowering movements in the barrel 3, so that the kneading pressure in the barrel 3 can be automatically adjusted, and the operation is more convenient and the use is more convenient.

[0072] In this embodiment, as shown in the attached Figure 7-12As shown, a flushing device is used to remove impurities, clean and dry the golden thread vine. The flushing device includes a screening device 5, a flushing device 6 and a drying device 7. The flushing device 6 includes a flushing frame 61, a first conveyor belt 62, a flushing tray 63, a conveyor chain belt 64, a driving component 65, a water spray component 66 and a toggle component 67. The bottom of the flushing tray 63 is a filtering mesh structure, which is convenient for the water spray component 66 to flush the golden thread vine in the flushing tray 63. The first conveyor belt 62 is arranged on the side of the conveyor chain belt 64, and the two conveyor chain belts 64 are arranged symmetrically. The driving component 65 drives the conveyor chain belt 64 to keep the same conveying speed as the first conveyor belt 62. The conveyor chain belt 64 is provided with a uniformly distributed limit pin 641, and the limit pin 641 is welded to the side of the conveyor chain belt 64. The front end and the rear end of the lower surface of the flushing tray 63 are provided with corresponding limit grooves 631, and the limit grooves 631 are opened at the front side wall and the rear side wall of the flushing tray 63. During conveying, the height of the first conveyor belt 62 is slightly higher than the conveyor chain 64. When the first conveyor belt 62 conveys the front end of the flushing tray 63 to the conveyor chain 64, the limiting nail 641 is embedded in the limiting groove 631 at the front end of the flushing tray 63. Then the first conveyor belt 62 continues to convey the flushing tray 63 and completely conveys the flushing tray 63 to the conveyor chain 64. The flushing tray 63 falls from the first conveyor belt 62, so that the limiting groove 631 at the rear end of the flushing tray 63 is sleeved on the corresponding limiting nail 641, so that the flushing tray 63 and the conveyor chain 64 are connected to each other, and the conveyor chain 64 drives the flushing tray 63 to move forward when it moves.

[0073] Specifically, the driving assembly 65 includes a driving motor 651, a driving sprocket 652, a transmission sprocket 653, a driving shaft 654 and a transmission shaft 655. The driving shaft 654 and the transmission shaft 655 are rotatably connected to the flushing rack 61. The driving shaft 654 and the transmission shaft 655 are arranged parallel to each other. The driving sprocket 652 is sleeved on both ends of the driving shaft 654, and the transmission sprocket 653 is sleeved on both ends of the transmission shaft 655. The two ends of the conveying chain belt 64 on both sides are respectively wound around the transmission sprocket 653 and the driving sprocket 652. The driving motor 651 is installed on the flushing rack 61 and drives the driving shaft 654 to rotate, thereby driving the conveying chain belt to move.

[0074] A flushing cover 611 is provided on the flushing frame 61, and a water spray assembly 66 is provided on the inner side of the flushing cover 611. The flushing cover 611 can isolate water to prevent the water sprayed by the water spray assembly 66 from splashing everywhere. The water spray assembly 66 includes an upper water spray part 661 and a lower water spray part 662. The upper water spray part 661 is provided above the conveying chain belt 64, and the lower water spray part 662 is provided below the conveying chain belt 64. The upper water spray part 661 and the lower water spray part 662 are arranged alternately with each other. The upper water spray part 661 includes an upper conveying pipe 6611 and an upper nozzle 6612. The upper conveying pipe 6611 is provided in a group of three. The upper nozzle 6612 is provided on the upper conveying pipe 6611. The upper nozzles 6612 of adjacent upper conveying pipes 6611 are arranged alternately with each other, so that the water sprayed by the upper nozzle 6612 is more dispersed and dense, thereby enhancing the flushing effect. The lower water spraying part 662 includes a lower conveying pipe 6621 and a lower spraying head 6622. The lower water spraying part 662 has a similar installation structure to the upper water spraying part 661. Three lower conveying pipes 6621 are grouped together. The lower spraying heads 6622 are arranged on the lower conveying pipes 6621. The lower spraying heads 6622 of adjacent lower conveying pipes 6621 are arranged alternately and spaced apart from each other, so that the water sprayed by the lower spraying heads 6622 is more dispersed and dense, thereby enhancing the flushing effect. With the above structure, when the flushing tray 63 moves forward with the conveying chain belt 64, the upper water spraying part 661 and the lower water spraying part 662 intermittently flush the golden thread vine in the flushing tray 63, so that the upper and lower ends of the golden thread vine can be effectively and densely flushed, and the cleaning is cleaner, and the flushing efficiency is higher.

[0075] In order to further improve the flushing quality, the toggle assembly 67 includes a toggle shaft 671, a toggle gear 672, a toggle rod 673, a spring 674 and a kneading sheet 675. The front side wall and the rear side wall of the flushing plate 63 are provided with a strip hole 632 for the toggle rod 673 to pass through. The toggle assembly 67 is arranged below the upper water spraying part 661, so that when the toggle assembly 67 turns over the golden thread lotus on the upper layer, the golden thread lotus located below can be fully rinsed, and the flushing is more sufficient. The two ends of the toggle shaft 671 are rotatably connected to the flushing rack 61, the toggle gear 672 is sleeved on both sides of the toggle shaft 671, the toggle rod 673 is evenly arranged around the central axis direction of the toggle shaft 671 and arranged along the axis direction of the toggle shaft 671. The toggle rods 673 on adjacent toggle shafts 671 are respectively staggered. The lateral spacing of the toggle rod 673 is made larger, and the golden thread vine in a small area can be completely turned over each time it is toggled, so as to avoid the toggle rod 673 from being too close to toggle too many golden thread vines, resulting in the golden thread vine being too heavy to be completely turned over. At the same time, the toggle rod 673 is dispersedly arranged, which can increase the area of ​​toggle, so that the toggle rod 673 can fully toggle the golden thread vine. And the length of the toggle rod 673 arranged farther back is slightly longer by 2-3mm, so as to ensure that the toggle rod 673 arranged at the rear side can maintain the toggle effect of the beam height. A rack 633 is provided on the flushing tray 63, and the rack 633 can mesh with the toggle gear 672 when passing through the toggle assembly 67, thereby driving the toggle shaft 671 to rotate. The rack 633 and the toggle gear 672 can be made of plastic material, have a certain elasticity, and the tooth height at the front and rear ends of the rack 633 is slightly lower than the tooth height in the middle, so as to facilitate the meshing and separation of the toggle gear 672 and the rack 633. One end of the kneading pressing sheet 675 is rotatably connected to the toggle rod 673, and the end of the kneading pressing sheet 675 is connected to the spring 674, and the other end of the spring 674 is connected to the middle of the toggle rod 673. The kneading pressing sheet 675 is in an arc shape, and the lower surface of the kneading pressing sheet 675 is provided with a plurality of friction protrusions 6751. When the toggle rod 673 toggles the golden thread lotus, under the elastic force of the spring 674, the kneading pressing sheet 675 is driven to always press the golden thread lotus downward, and the kneading pressing sheet 675 and the golden thread lotus move forward and backward relative to each other, so that the kneading pressing sheet 675 can perform preliminary kneading on the golden thread lotus, thereby improving the fermentation efficiency of the golden thread lotus leaves. The above structure drives the toggle shaft 671 to rotate automatically when the flushing plate 63 moves, and the structure is simple, which can effectively save manufacturing costs. And the golden thread lotus can be kneaded by the kneading pressing sheet 675 while flushing and toggling, thereby improving the fermentation efficiency of the golden thread lotus, thereby improving the processing efficiency.

[0076] Preferably, in order to prevent the washing tray 63 from vibrating when it is moved and twisted, transverse guide rails 612 are provided on both sides of the washing rack 61, and guide grooves 634 cooperating with the transverse guide rails 612 are provided on the sides of the washing tray 63. Guide slopes are provided at the front and rear ends of the transverse guide rails 612 to facilitate the insertion of the transverse guide rails 612 into the guide grooves 634. The washing rack 61 is also provided with a fixed grid 613, which is arranged below the conveying end of the conveying chain 64 to support the conveying chain 64. In this way, when the washing tray 63 moves forward, the guide groove 634 first cooperates with the transverse guide rails 612 for guidance, and the transverse guide rails 612 simultaneously limit the washing tray 63 in the up and down directions, while the limit pins 641 limit the washing tray 63 in the front and back directions. The flushing plate 63 can be firmly fixed on the conveying chain 64 during flushing and shifting in the flushing device 6, so as to avoid the flushing plate 63 from moving, further improve the flushing efficiency of the golden thread vine, and make the golden thread vine clean more thoroughly.

[0077] Preferably, a filter plate 614 and a guide plate 615 are further provided below the conveyor chain 64, the guide plate 615 is obliquely arranged on both sides of the filter plate 614, a water tank 618 is provided below the filter plate 614, the water outlet of the water tank 618 is connected to a water pump 616 and a filter 617, and the filter 617 is connected to an upper delivery pipe 6611 and a lower delivery pipe 6621. With the above structure, the water used to clean the golden thread lotus flows downward to the guide plate 615 after flushing, and the guide plate 615 diverts the water to the filter plate 614 for filtering, and the filtered water flows to the water tank 618 for storage, and is output to the upper delivery pipe 6611 and the lower delivery pipe 6621 through the water pump 616, thereby realizing the recycling of water resources and further reducing costs. In addition, the filter 617 can adsorb and filter the water output from the water tank 618 to keep the flushing water clean.

[0078] In this embodiment, the screening device 5 includes a screening frame 51, a screen plate 52, a vibration motor 53, a dust collecting device 54, an upper discharge plate 55 and a lower discharge plate 56. The screen plate 52 is installed on the screening frame 51. The screening frame 51 is provided with a vibration spring, which can further increase the vibration frequency of the screen plate. The upper discharge plate 55 is arranged at the front end of the screen plate 52. The screen plate 52 and the upper discharge plate 55 are provided with a partition plate 57 arranged at intervals. The partition plate 57 can ensure that the golden thread lotus is transported more dispersedly and evenly. The lower discharge plate 56 is arranged below the screen plate 52. The vibration motor 53 is installed on the screening frame 51. The upper discharge plate 55 extends to the top of the first conveyor belt 62, and the upper discharge plate 55 is provided with a discharge port, and the lower discharge plate 56 is provided with a waste port. The dust suction device 54 is arranged on the side of the screening frame 51, and the adsorption end of the dust suction device 54 covers the top of the screen plate 52. The dust suction device 54 can be a gas dust suction device 54 or an electrostatic dust suction device 54. The adsorption force of the dust suction device 54 is small, and it will only adsorb small particles of sand and dust, so it will not adsorb the golden thread lotus. During operation, the newly picked golden thread lotus is placed on the screen plate 52, and the vibration motor 53 is turned on to vibrate the screening frame 51. The golden thread lotus is rapidly vibrated on the screen plate 52 and gradually transported to the upper discharge plate 55. During the transportation process, most of the sand on the golden thread lotus is vibrated off and filtered through the screen plate 52 to fall to the lower discharge plate 56. The golden thread lotus will raise sand and dust during the rapid vibration process, which can be adsorbed by the dust suction device 54 at this time, further improving the screening effect of the golden thread lotus. After that, the golden thread lotus is vibrated and transported to the upper discharge plate 55, and falls evenly onto the flushing tray 63 through the discharge port. The screened sand and soil can be discharged through the waste outlet.

[0079] In this embodiment, the drying device 7 includes a second conveyor belt 71 and an oven 72, and the oven 72 is arranged on the second conveyor belt 71. The conveyor chain 64 continues to convey the rinsed rinsing tray 63 forward to the second conveyor belt 71, and the second conveyor belt 71 conveys the rinse tray 63 to the oven 72 for drying to remove moisture from the surface of the golden thread vine. At the same time, since the golden thread vine is preliminarily kneaded, the temperature of the golden thread vine can be increased during drying, thereby accelerating the oxidation rate of the golden thread vine, further improving the processing efficiency.

[0080] The above embodiments and drawings do not limit the product form and style of the present invention. Any appropriate changes or modifications made by ordinary technicians in the relevant technical field should be deemed to be within the patent scope of the present invention.

Claims

1. A golden thread lotus drink, It is characterized in that The components include black tea, wolfberry, golden thread lotus and tangerine peel, and the weight ratio of the components is black tea: wolfberry: golden thread lotus: tangerine peel = 3:5:3:3; The processing method of the beverage comprises the following steps: (1) Picking golden thread vines that have been cultivated in the mountains or greenhouses for more than 7 months, sorting them, and removing yellow leaves; (2) placing the sorted golden thread vine on a vibration screening device for vibration removal to remove dust from the roots or stems of the golden thread vine; (3) Preliminarily kneading the golden thread vine, and then washing and drying the golden thread vine to remove the water on the surface of the golden thread vine used for cleaning; (4) drying the roxburghii leaves in the sun to wither, so that the enzymes in the roxburghii leaves begin to decompose and ferment, and the water in the roxburghii leaves begins to evaporate; (5) collecting the withered golden thread vine, shaking the vine to further ferment it, and then drying the vine after shaking for 15 minutes; (6) Stir-fry the golden thread vine in a hot pan at 70°C for 3 minutes; (7) sending the stir-fried golden thread lotus to a kneading device for secondary kneading; (8) drying the golden thread lily after the secondary rolling, adding black tea, wolfberry and tangerine peel to mix, and sealing and packaging the mixed golden thread lily tea; The kneading adopts a kneading device, which includes a base, a kneading disk, a material barrel, a first driving mechanism and a second driving mechanism. The kneading disk is installed on the base, and the material barrel is connected to the base through a connecting rod mechanism. The first driving mechanism drives the material barrel to swing above the kneading disk. The kneading disk includes an outer disk, a middle disk and an inner disk which are sequentially socketed. The outer disk, the middle disk and the inner disk are coaxially arranged and have kneading bosses on their upper surfaces. A discharge port is provided in the middle of the inner disk, and a slidingly connected sealing plate is provided in the discharge port. The second driving mechanism drives the inner and outer disks to rotate around the central axis.

2. A golden thread lotus beverage as claimed in claim 1, It is characterized in that The roxburghii roxburghii tea is roxburghii ... tea leaves that have been twice rolled and dried.

3. A golden thread lotus beverage as claimed in claim 1, It is characterized in that In step (7), for the less tender golden thread vine, the stir-fried golden thread vine is directly added to the kneading device for kneading, thereby increasing the density of the kneading bosses in the kneading device and increasing the pressure in the barrel.

4. A golden thread lotus beverage as claimed in claim 1, It is characterized in that In step (7), for the tender golden thread lily leaves, the stir-fried golden thread lily is left to stand for 30 minutes, and then added to the kneading device for kneading, and the density of the kneading bosses in the kneading device is reduced.

5. The rosmarinus officinalis beverage according to claim 1, It is characterized in that The second driving mechanism includes a first motor, the outer disk is fixedly connected to the base, an inner gear ring is provided at the lower end of the outer disk, a plurality of driving gears are provided at the lower end of the middle disk, a circular groove is provided on the base, a rotating shaft is provided in the middle of the driving gear, the upper end of the rotating shaft is rotatably connected to the lower surface of the middle disk, the lower end of the rotating shaft is embedded in the circular groove and movably connected, the lower end of the inner disk is provided with a first outer gear ring, a rotating part and a second outer gear ring, the driving gear is meshed with the inner gear ring and the first outer gear ring for transmission, the rotating part is rotatably connected to the base, and the output end of the first motor is meshed with the second outer gear ring for transmission.

6. A golden thread lotus beverage as claimed in claim 5, It is characterized in that The blocking plate is provided with a plurality of kneading strips, the lower end of the base is provided with a driving cylinder, the power output end of the driving cylinder is provided with a second motor, a connecting frame is provided on the motor shaft of the second motor, and the end of the connecting frame is connected to the lower end of the blocking plate.

7. A golden thread lotus beverage as claimed in claim 6, It is characterized in that The first driving mechanism includes a third motor, a gearbox and a connecting rod shaft, the connecting rod shaft is connected to the connecting rod mechanism, the third motor is connected to the gearbox, and the gearbox is connected to the connecting rod shaft through a bevel gear.

8. A roxburghii roxburghii beverage as claimed in claim 7, It is characterized in that The material barrel is provided with a pressing plate and a third driving mechanism, and the third driving mechanism includes a fourth motor, a fixed plate, a guide rod, a lifting frame and a screw rod. A connecting rod is provided on the side of the material barrel, and the guide rod is vertically connected to the connecting rod. The fixed plate is connected to the upper end of the guide rod, and the two ends of the screw rod are respectively rotatably connected to the connecting rod and the fixed plate. The fourth motor is arranged on the fixed plate and drives the screw rod to rotate. One end of the lifting frame is sleeved on the guide rod and is rotatably connected to the screw rod, and the other end of the lifting frame is connected to the upper end of the pressing plate.

Citation Information

Patent Citations

  • Jewel orchid beverage and production method thereof

    CN101961123A

  • Preparation method for anoectochilus roxburghii semi-fermented tea

    CN104798924A

  • Method for processing original anoectochilus formosanus

    CN103385336A

  • Anoectochilus formosanus health tea tablet and preparation method thereof

    CN115644286A