Pueraria lobata and ostrea gigas peptide beverage preparation device and method

The improved kudzu root and oyster peptide beverage preparation device utilizes a hot air and concentrate exchange and agitation system composed of multiple components to solve the problem of uneven drying, achieving a highly efficient and uniform drying effect, and improving product quality and production efficiency.

CN118766113BActive Publication Date: 2025-12-19GUANGXI BEIBU GULF IND RES INST CO LTD
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Patent Information

Application Number
CN202411139403.4
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-08-20
Publication Date
2025-12-19
Estimated Expiration
2044-08-20

AI Technical Summary

Technical Problem

In existing kudzu and oyster peptide beverage preparation equipment, the hot air and concentrated liquid are not mixed sufficiently during the drying process, resulting in uneven drying. Some materials are over-dried or under-dried, affecting product quality and efficiency.

Method used

The device, which consists of components such as an air collecting cylinder, hose, rotating sleeve, corrugated groove, pressing plate, and grid ring, ensures full contact between hot air and concentrated liquid through multiple exchanges and disturbances, forming vortices and convection, thereby improving drying efficiency and uniformity.

Benefits of technology

It achieves thorough mixing of hot air and concentrated liquid, shortens drying time, improves drying efficiency, reduces local overheating or under-drying, maintains the looseness and flowability of the product, and improves the final quality.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present application relates to the technical field of beverage preparation, and discloses a kudzu root and oyster peptide beverage preparation device, which comprises a main body, a fixed frame is fixedly connected to the outer surface of the main body, a hot air pump is fixedly connected to the top of the fixed frame, a liquid inlet pipe is fixedly connected to the top of the main body, one end of the liquid inlet pipe close to the fixed frame penetrates through the top inner wall of the main body and extends to the outside, and a partition plate is fixedly connected to the inside of the main body. When the concentrated liquid is sprayed in the form of mist, the mist-shaped concentrated liquid will fall into the middle of the hollow disc, and then part of the mist-shaped concentrated liquid will be rolled into the vortex along with the flow of the vortex when the vortex is generated and flows, at this time, the hot air can fully contact the mist-shaped concentrated liquid when the vortex generated by the hot air flows, and the mist-shaped concentrated liquid can be quickly taken away, and meanwhile, the vortex can form strong disturbance to the concentrated liquid, so that the heat exchange between the mist droplets and the hot air is more sufficient, thereby shortening the drying time and improving the drying efficiency.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of beverage preparation, in particular to a preparation device and method of a kudzu root and oyster peptide beverage. BACKGROUND

[0002] With the increasing pursuit of healthy life, the market demand for kudzu root and oyster peptide beverages will continue to expand. Therefore, the kudzu root and oyster peptide beverage preparation device has broad application prospects and market potential;

[0003] The kudzu root and oyster peptide beverage includes the steps of pretreatment, enzymolysis, filtration, concentration and drying during production. Generally, the existing device sprays the oyster peptide concentrate in the form of mist into the drying chamber through a high-pressure pump during drying, and then hot air is injected into the drying chamber to mix the hot air with the concentrate, achieving the drying effect. Since the concentrate is sprayed in the form of mist into the drying chamber, the concentrate is mixed and distributed inside the drying chamber. When hot air is injected into the drying chamber, the flow of hot air is difficult to mix with the concentrate due to the continuous spraying of the concentrate, resulting in uneven drying of the concentrate, which causes some materials to be over-dried and some materials to be under-dried, affecting the overall quality and drying efficiency of the product. SUMMARY

[0004] The present application aims to provide a kudzu root and oyster peptide beverage preparation device and method to solve the problems raised in the background.

[0005] To solve the above technical problems, the present application is realized by the following technical scheme:

[0006] The present application is a kudzu root and oyster peptide beverage preparation device, which comprises a main body, a fixed frame fixedly connected to the outer surface of the main body, a hot air pump fixedly connected to the top of the fixed frame, a liquid inlet pipe fixedly connected to the top of the main body, the end of the liquid inlet pipe near the fixed frame penetrating through the top inner wall of the main body and extending to the outside, a partition plate fixedly connected inside the main body, the middle of the partition plate fixedly connected to the outer surface of the extension end of the liquid inlet pipe, a gas collecting ring fixedly connected to the side of the partition plate near the liquid inlet pipe, the output end of the hot air pump penetrating through the top outer wall of the main body and being in communication with the gas collecting ring, and a discharge pipe fixedly connected to the bottom of the main body.

[0007] The rotating mechanism comprises a plurality of gas collecting cylinders fixedly connected to the side of the gas collecting ring away from the liquid inlet pipe, the plurality of gas collecting cylinders being arranged in a circular array with the liquid inlet pipe as the center, the side of the gas collecting cylinder away from the liquid inlet pipe penetrating through the bottom outer wall of the partition plate and extending to the outside, the gas collecting cylinder being in communication with the gas collecting ring, a plurality of hoses fixedly connected to the side of the gas collecting cylinder away from the partition plate, and a fixed cylinder fixedly connected to the end of the hose away from the gas collecting cylinder.

[0008] The auxiliary mechanism comprises a rotating sleeve slidably connected to the outer surface of the hollow cylinder inside the fixed plate, the outer surface of the rotating sleeve is provided with a special-shaped groove, and the inside of the special-shaped groove is slidably connected with two L-shaped rods.

[0009] Further, the inside of the fixed cylinder is fixedly connected with a fixed plate, the middle part of the fixed cylinder is slidably connected with a hollow cylinder, one side of the hollow cylinder close to the gas collecting cylinder is fixedly connected with the gas collecting cylinder, the hollow cylinder is in communication with the gas collecting cylinder, one end of the hollow cylinder away from the gas collecting cylinder is in an open arrangement, the end of the hollow cylinder away from the gas collecting cylinder penetrates through the side wall of the fixed plate and extends to the outside, the outer surface of the fixed plate is fixedly connected with a connecting pipe, the connecting pipe is in communication with the fixed plate, and the outer surface of the conveying hose is provided with a plurality of round holes.

[0010] Further, the inner wall of the rotating sleeve is provided with a wave groove, the inside of the wave groove is slidably connected with two insertion rods, one side of the two insertion rods away from the wave groove is fixedly connected to the outer surface of the hollow cylinder, the plurality of connecting pipes are in a leading arrangement, and one side of the conveying rotating sleeve close to the gas collecting cylinder is rotatably connected to the top inner wall of the fixed cylinder.

[0011] Further, the inside of the main body is provided with an inflation mechanism, the inflation mechanism comprises a hollow disc fixedly connected to the side of the plurality of fixed cylinders away from the gas collecting cylinder, the side of the connecting pipe close to the hollow disc is in communication with the hollow disc, the inner wall of the hollow disc is in an open arrangement, and the side of the hollow disc close to the liquid inlet pipe is provided with an annular groove.

[0012] Further, the inside of the hollow disc is rotatably connected with a grid ring, the inside of the annular groove is rotatably connected with a rotating ring, the side of the rotating ring away from the hollow disc is fixedly connected with a plurality of curved pipes, the side wall of the curved pipe is fixedly connected with a C-shaped plate, the grid ring is fixedly connected with the curved pipe through the C-shaped plate, and the conveying curved pipe is in communication with the hollow disc.

[0013] Further, the inside of the main body is provided with an exchange mechanism, the exchange mechanism comprises a plurality of fan shafts rotatably connected to the side of the partition plate away from the liquid inlet pipe, the outer surface of the fan shaft is fixedly connected with a tooth, the outer surface of the fan shaft is rotatably connected with a fan sleeve, the outer surface of the fan sleeve is fixedly connected with a tooth two, and the outer surface of the plurality of fan sleeves is rotatably connected with a grid cylinder.

[0014] Further, the inner wall of the grid cylinder is in an open arrangement, the opening of the grid cylinder is fixedly connected with an inner cylinder, the side of the inner cylinder close to the fan shaft is fixedly connected with a tooth ring, the tooth ring is in meshing connection with the tooth one, the side of the grid cylinder close to the fan shaft is fixedly connected with a tooth ring two, and the tooth ring two is in meshing connection with the tooth two.

[0015] Further, the inside of the grid cylinder is provided with a shaking mechanism, the shaking mechanism comprises two sliding rails fixedly connected on one side of the inner cylinder close to the grid cylinder, a plurality of T-shaped rods are slidably connected in the sliding rails, rotating rods are rotatably connected on the side of the T-shaped rods away from the sliding rails, annular plates are rotatably connected on the side of the plurality of rotating rods away from the T-shaped rods, and spring blocks are slidably connected between the two annular plates.

[0016] Further, a use method of a kudzu vine and oyster peptide beverage preparation device, the kudzu vine and oyster peptide beverage preparation device, the method comprising the following steps,

[0017] S1: first connect the liquid inlet pipe with the concentrated liquid storage tank, then spray the concentrated liquid through the liquid inlet pipe by the high-pressure pump;

[0018] S2: at this time, the sprayed concentrated liquid is in mist state, at this time, the hot air pump is started, and the hot air pump will deliver hot air into the inside of the main body to mix with the misted concentrated liquid, so that the drying effect is achieved.

[0019] The present application has the following beneficial effects:

[0020] 1. The application, first, the liquid inlet pipe and concentrated liquid storage tank are connected, then the concentrated liquid is sprayed through the liquid inlet pipe by high pressure pump, at this time the sprayed concentrated liquid is mist, at this time the hot air pump is started, the hot air pump will deliver hot air into the gas ring when working, then part of the hot air will first enter into a plurality of hoses through the gas collecting cylinder, then another part of the wind will enter between the pressing plate and the fixed cylinder through the hollow cylinder, when the hot air enters the hose, the hot air will be sprayed through the round hole on the hose, at this time the gas is sprayed, the sprayed gas will form a larger pressure between the hose and the round hole, at this time the hose is affected by the pressure and will shake, since the hose has several, when the hose shakes, the shaking hose will drive the fixed cylinder to slide up and down on the surface of the hollow cylinder, when the fixed cylinder slides, the sliding fixed cylinder will drive the rotating sleeve to slide synchronously, when the rotating sleeve slides on the hollow cylinder, the wave groove inside the rotating sleeve will slide on the surface of the inserting rod, at this time the wave groove slides on the inserting rod, the rotating sleeve will rotate on the top inner wall of the fixed cylinder, when the rotating sleeve rotates, the L-shaped rod moves up and down through the special-shaped groove on the surface of the rotating sleeve, the L-shaped rod moves up and down and drives the pressing plate, so that the pressing plate extrudes the gas between the pressing plate and the fixed cylinder, the extruded gas enters the hollow disc through the connecting pipe, since a plurality of connecting pipes are arranged in the same direction, when the gas enters the hollow disc through the connecting pipe, a flow is formed on the inner wall of the hollow disc, when the concentrated liquid is sprayed in mist, the misty concentrated liquid will fall into the middle of the hollow disc, then part of the misty concentrated liquid will be rolled into the vortex with the flow of the vortex when the vortex is generated and flows, at this time the vortex generated by the hot air can make the hot air fully contact with the misty concentrated liquid, can quickly take away the moisture in the misty concentrated liquid, at the same time the vortex can form strong disturbance to the concentrated liquid, so that the heat exchange between the mist droplets and the hot air is more sufficient, thereby shortening the drying time and improving the drying efficiency.

[0021] 2. The application, when the hot gas is sprayed through the round hole on the hose, the sprayed gas will impact on the surface of the fan shaft to make the fan shaft rotate, the fan shaft will drive the inner cylinder to rotate through the teeth on the surface when rotating, the inner cylinder rotates and drives the grid cylinder to rotate, when the grid cylinder rotates, the rotating grid cylinder will drive the fan sleeve to rotate on the surface of the fan shaft through the tooth ring two, at this time the rotating fan sleeve and the fan shaft rotate in opposite directions, when the fan sleeve and the fan shaft rotate in opposite directions, a convection can be formed between the misty concentrated liquid and the hot air, which helps the uniform distribution of hot air and the full mixing of mist droplets, further improves the drying efficiency, reduces the phenomenon of local overheating or insufficient drying, and improves the drying uniformity of the product.

[0022] 3、The application, when the hot air enters into the hollow disc from the connecting pipe, the gas will first impact on the grid ring, and then when the vortex is formed, the grid ring will rotate, at this time the rotating grid ring will also produce airflow in the middle of the hollow disc, and throw the gas and the concentrated liquid into the hollow disc, when the mixed gas of hot air and concentrated liquid is thrown, the rotating grid ring will drive the curved pipe to rotate through the rotating ring, at this time the vortex of hot air and concentrated liquid mixed in the hollow disc will carry the already dried concentrated liquid with the curved pipe and spray it to the surface of the grid cylinder, then when the gas is sprayed through the round hole on the hose, the gas will first spray on the fan shaft, so that the teeth on the fan shaft drive the inner cylinder and the grid cylinder to rotate through the tooth ring, when the grid cylinder rotates, it will hit the gas sprayed on the grid cylinder by the curved pipe, through the hitting effect of the grid ring, the caking and agglomeration phenomenon of the misty concentrated liquid in the drying process can be effectively reduced, which helps to maintain the bulkiness and fluidity of the product and improve the final quality of the product.

[0023] 4、The application, when the gas carrying the concentrated liquid sprays on the grid cylinder through the curved pipe, the gas will blow the spring block, so that the spring block shakes, and at the same time the spring block also shakes when the grid cylinder rotates, when the spring block shakes, it drives the annular plate and the rotating rod to shake, the annular plate also slides in the inner slide rail through the T-shaped rod while shaking, at this time the shaking annular plate can scrape up and down on the inner wall of the grid cylinder, which can remove the residues or caking attached to the inner wall of the grid cylinder and maintain the cleanliness of the inner part of the grid cylinder, at the same time the shaking spring block also hits the particles while shaking, which helps to further break the larger particles and make them more evenly distributed in the main body, ensuring the smooth flow of the gas and the misty concentrated liquid, accelerating the drying speed of the concentrated liquid and improving the drying uniformity.

[0024] Of course, it is not necessary for any product implementing the present application to achieve all the advantages mentioned above at the same time. BRIEF DESCRIPTION OF DRAWINGS

[0025] In order to more clearly illustrate the technical solutions of the embodiments of the present application, the drawings needed for the following embodiment description will be briefly introduced. Obviously, the drawings in the following description are only some embodiments of the present application, and other drawings can also be obtained by those skilled in the art without creative labor.

[0026] Figure 1 It is a schematic diagram of the overall structure of the present application;

[0027] Figure 2 It is a schematic diagram of the overall cross-sectional structure of the present application;

[0028] Figure 3 It is a schematic diagram of the main body of the present application;

[0029] Figure 4 Structure diagram of rotating mechanism of the present application;

[0030] Figure 5 Structure diagram of auxiliary mechanism of the present application;

[0031] Figure 6 Structure diagram of inflating mechanism of the present application;

[0032] Figure 7 Structure diagram of exchange mechanism of the present application;

[0033] Figure 8 Structure diagram of Figure 7 Enlarged view of A in the middle;

[0034] Figure 9 Structure diagram of shaking mechanism of the present application;

[0035] Figure 10 Structure diagram of Figure 9 Enlarged view of B in the middle;

[0036] Figure 11 Flow chart of using method of the present application.

[0037] In the drawings, the components represented by each reference numeral are listed as follows:

[0038] In the drawings: 1, main body; 101, fixed frame; 102, hot air pump; 103, liquid inlet pipe; 104, partition; 105, gas collecting ring; 106, discharge pipe; 2, rotating mechanism; 201, gas collecting cylinder; 202, hollow cylinder; 203, hose; 204, fixed cylinder; 205, fixed plate; 206, connecting pipe; 3, auxiliary mechanism; 301, rotating sleeve; 302, wavy groove; 303, L-shaped rod; 304, pressing plate; 305, insertion rod; 4, inflating mechanism; 401, hollow disc; 402, annular groove; 403, grid ring; 404, rotating ring; 405, curved pipe; 5, exchange mechanism; 501, fan shaft; 502, fan sleeve; 503, grid cylinder; 504, tooth ring; 505, inner cylinder; 506, tooth ring two; 6, shaking mechanism; 601, sliding rail; 602, T-shaped rod; 603, rotating rod; 604, annular plate; 605, spring block. DETAILED DESCRIPTION

[0039] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only a part of the embodiments of the present application, rather than all the embodiments of the present application. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative work fall within the scope of protection of the present application.

[0040] Please refer toFigures 1-10 As shown, the present application is a kind of kudzu vine oyster peptide beverage preparation device, including main body 1, the outer surface of main body 1 is fixedly connected with fixed frame 101, the top of fixed frame 101 is fixedly connected with hot air pump 102, the top of main body 1 is fixedly connected with liquid inlet pipe 103, one end of liquid inlet pipe 103 close to fixed frame 101 penetrates to the top inner wall of main body 1 and extends to the outside, the inside of main body 1 is fixedly connected with baffle 104, the middle part of baffle 104 is fixedly connected with the outer surface of the extension end of liquid inlet pipe 103, one side of baffle 104 close to liquid inlet pipe 103 is fixedly connected with gas collecting ring 105, the output end of hot air pump 102 penetrates to the top outer wall of main body 1 and is in communication with gas collecting ring 105, the bottom of main body 1 is fixedly connected with discharge pipe 106, further comprising;

[0041] Rotating mechanism 2, rotating mechanism 2 includes a plurality of gas collecting cylinders 201 fixedly connected on the side of gas collecting ring 105 away from liquid inlet pipe 103, a plurality of gas collecting cylinders 201 are arranged in a circular array with liquid inlet pipe 103 as the center, the side of gas collecting cylinder 201 away from liquid inlet pipe 103 penetrates to the bottom outer wall of baffle 104 and extends to the outside, gas collecting cylinder 201 is in communication with gas collecting ring 105, the side of gas collecting cylinder 201 away from baffle 104 is fixedly connected with a plurality of hoses 203, one end of a plurality of hoses 203 away from gas collecting cylinder 201 is fixedly connected with fixed cylinder 204;

[0042] Auxiliary mechanism 3, auxiliary mechanism 3 includes rotating sleeve 301 slidingly connected on the outer surface of hollow cylinder 202 inside fixed plate 205, the outer surface of rotating sleeve 301 is provided with a special-shaped groove, two L-shaped rods 303 are slidingly connected in the special-shaped groove, one end of L-shaped rod 303 away from rotating sleeve 301 penetrates to the bottom outer wall of fixed plate 205 and extends to the outside, the extension end of two L-shaped rods 303 is fixedly connected with pressing plate 304, first connect liquid inlet pipe 103 with the storage tank of concentrated liquid, then spray the concentrated liquid through liquid inlet pipe 103 by high-pressure pump, at this time, the sprayed concentrated liquid is in mist form, at this time, start hot air pump 102, hot air pump 102 will deliver hot air into gas collecting ring 105 when working, part of the hot air will first enter a plurality of hoses 203 through gas collecting cylinder 201, then another part of the air will enter between pressing plate 304 and fixed cylinder 204 through hollow cylinder 202.

[0043] The inner part of the fixed cylinder 204 is fixedly connected with a fixed plate 205, the middle part of the fixed cylinder 204 is slidingly connected with a hollow cylinder 202, the side close to the gas collecting cylinder 201 of the hollow cylinder 202 is fixedly connected with the gas collecting cylinder 201, the hollow cylinder 202 is in communication with the gas collecting cylinder 201, the end away from the gas collecting cylinder 201 of the hollow cylinder 202 is in an open setting, the end away from the gas collecting cylinder 201 of the hollow cylinder 202 penetrates through the side wall of the fixed plate 205 and extends to the outside, the outer surface of the fixed plate 205 is fixedly connected with a connecting pipe 206, the connecting pipe 206 is in communication with the fixed plate 205, the outer surface of the conveying hose 203 is provided with a plurality of round holes, when the hot air enters into the hose 203, the hot air will be sprayed through the round holes on the hose 203, at this time, when the gas is sprayed, the sprayed gas will form a large pressure between the hose 203 and the round hole.

[0044] The inner wall of the rotating sleeve 301 is provided with a wave groove 302, the inside of the wave groove 302 is slidingly connected with two insertion rods 305, the side away from the wave groove 302 of the two insertion rods 305 is fixedly connected to the outer surface of the hollow cylinder 202, the plurality of connecting pipes 206 are in a leading setting, the side close to the gas collecting cylinder 201 of the conveying rotating sleeve 301 is rotationally connected to the top inner wall of the fixed cylinder 204, the movable hose 203 will drive the fixed cylinder 204 to slide up and down on the surface of the hollow cylinder 202, when the fixed cylinder 204 slides, the sliding fixed cylinder 204 will drive the rotating sleeve 301 to slide synchronously, when the rotating sleeve 301 slides on the hollow cylinder 202, the wave groove 302 inside the rotating sleeve 301 will slide on the surface of the insertion rod 305.

[0045] The inside of the main body 1 is provided with an inflation mechanism 4, the inflation mechanism 4 includes a hollow disc 401 fixedly connected to the side away from the gas collecting cylinder 201 of the plurality of fixed cylinders 204, the side close to the hollow disc 401 of the connecting pipe 206 is in communication with the hollow disc 401, the inner wall of the hollow disc 401 is in an open setting, the side close to the liquid inlet pipe 103 of the hollow disc 401 is provided with an annular groove 402, the gas is extruded and enters into the hollow disc 401 through the connecting pipe 206, since the plurality of connecting pipes 206 are in the same direction, when the gas enters into the hollow disc 401 through the connecting pipe 206, a flow will be formed on the inner wall of the hollow disc 401.

[0046] The inside of the hollow disc 401 is rotatably connected with a grid ring 403, the inside of the annular groove 402 is rotatably connected with a rotating ring 404, the side of the rotating ring 404 away from the hollow disc 401 is fixedly connected with a plurality of curved pipes 405, the side wall of the curved pipe 405 is fixedly connected with a C-shaped plate, the grid ring 403 is fixedly connected with the curved pipe 405 through the C-shaped plate, the conveying curved pipe 405 is in communication with the hollow disc 401, when the hot air gas enters the hollow disc 401 from the connecting pipe 206, the gas will first impact on the grid ring 403, then when the vortex is formed, the grid ring 403 will rotate, at this time, the rotating grid ring 403 will also produce flow in the middle of the hollow disc 401, and the gas and the concentrated liquid are thrown into the hollow disc 401.

[0047] The inside of the main body 1 is provided with an exchange mechanism 5, the exchange mechanism 5 includes a plurality of fan shafts 501 rotatably connected on the side of the partition plate 104 away from the liquid inlet pipe 103, the outer surface of the fan shaft 501 is fixedly connected with a tooth, the outer surface of the fan shaft 501 is rotatably connected with a fan sleeve 502, the outer surface of the fan sleeve 502 is fixedly connected with a tooth two, the outer surface of a plurality of fan sleeves 502 is rotatably connected with a grid cylinder 503, then when the gas is sprayed through the round hole on the hose 203, the gas will first be sprayed on the fan shaft 501, so that the tooth one on the fan shaft 501 drives the inner cylinder 505 and the grid cylinder 503 to rotate through the tooth ring 504.

[0048] The inner wall of the grid cylinder 503 is in an open configuration, the opening of the grid cylinder 503 is fixedly connected with an inner cylinder 505, the side of the inner cylinder 505 close to the fan shaft 501 is fixedly connected with a tooth ring 504, the tooth ring 504 is engaged with the tooth one, the side of the grid cylinder 503 close to the fan shaft 501 is fixedly connected with a tooth ring two 506, the tooth ring two 506 is engaged with the tooth two, when the hot gas is sprayed through the round hole on the hose 203, the sprayed gas will impact on the surface of the fan shaft 501 to make the fan shaft 501 rotate, the fan shaft 501 will drive the inner cylinder 505 to rotate through the tooth on the surface when rotating, the inner cylinder 505 will drive the grid cylinder 503 to rotate when rotating, when the grid cylinder 503 rotates, the rotating grid cylinder 503 will drive the fan sleeve 502 to rotate on the surface of the fan shaft 501 through the tooth ring two 506.

[0049] The inside of the grid cylinder 503 is provided with a shaking mechanism 6, the shaking mechanism 6 includes two slide rails 601 fixedly connected on the inner cylinder 505 close to the side of the grid cylinder 503, the inside of the slide rail 601 is slidably connected with a plurality of T-shaped rods 602, the side, away from the slide rail 601, of the T-shaped rod 602 is rotatably connected with a rotating rod 603, the side, away from the T-shaped rod 602, of the plurality of rotating rods 603 is rotatably connected with an annular plate 604, the two annular plates 604 are slidably connected with spring blocks 605, when the gas carrying the concentrated liquid is sprayed on the grid cylinder 503 through the curved pipe 405, the gas will blow the spring blocks 605, so that the spring blocks 605 shake, at the same time, the spring blocks 605 will also shake when the grid cylinder 503 rotates, when the spring blocks 605 shake, the annular plates 604 and the rotating rods 603 will be driven to shake.

[0050] A use method of a kudzu vine and oyster peptide beverage preparation device, the kudzu vine and oyster peptide beverage preparation device, the method comprising the following steps,

[0051] S1: first connect the liquid inlet pipe 103 with the concentrated liquid storage tank, then spray the concentrated liquid through the liquid inlet pipe 103 by the high-pressure pump;

[0052] S2: at this time, the sprayed concentrated liquid is in mist form, at this time, the hot air pump 102 is started, and the hot air pump will deliver hot air into the inside of the main body 1 when working, so that the hot air is mixed with the misty concentrated liquid, so that the drying effect is achieved.

[0053] In use, first connect the inlet pipe 103 with the concentrated liquid storage tank, then through the high-pressure pump to spray the concentrated liquid through the inlet pipe 103, at this time the sprayed concentrated liquid is mist, at this time start the hot air pump 102, the hot air pump 102 in work will deliver hot air into the gas collecting ring 105, then part of the hot air will enter into the plurality of hoses 203 through the gas collecting cylinder 201 first, then another part of the wind will enter between the pressing plate 304 and the fixed cylinder 204 through the hollow cylinder 202, when the hot air enters into the hose 203, the hot air will be sprayed through the round hole on the hose 203, at this time when the gas is sprayed, the sprayed gas will form a larger pressure between the hose 203 and the round hole, at this time the hose 203 is affected by the pressure and will shake, because the hose 203 has several, when the hose 203 shakes, the shaking hose 203 will drive the fixed cylinder 204 to slide up and down on the surface of the hollow cylinder 202, when the fixed cylinder 204 slides, the sliding fixed cylinder 204 will drive the rotating sleeve 301 to slide synchronously, when the rotating sleeve 301 slides on the hollow cylinder 202, the wave groove 302 inside the rotating sleeve 301 will slide on the surface of the insertion rod 305, at this time when the wave groove 302 slides on the insertion rod 305, the rotating sleeve 301 will rotate in the top inner wall of the fixed cylinder 204, when the rotating sleeve 301 rotates, the L-shaped rod 303 moves up and down through the special-shaped groove on the surface of the rotating sleeve 301, the L-shaped rod 303 moves up and down and drives the pressing plate 304, so that the pressing plate 304 extrudes the gas between the pressing plate 304 and the fixed cylinder 204, the gas is extruded and enters into the hollow disc 401 through the connecting pipe 206, because the plurality of connecting pipes 206 are arranged in the same direction, when the gas enters into the hollow disc 401 through the connecting pipe 206, a flow is formed on the inner wall of the hollow disc 401, when the concentrated liquid is sprayed in mist, the misty concentrated liquid will fall in the middle of the hollow disc 401, then part of the misty concentrated liquid will be rolled into the vortex with the flow of the vortex when the vortex is generated and flows, at this time when the vortex generated by the hot air flows, the hot air can fully contact with the misty concentrated liquid, can quickly take away the water in the misty concentrated liquid, at the same time the vortex can form strong disturbance to the concentrated liquid, so that the heat exchange between the mist droplets and the hot air is more sufficient, thereby shortening the drying time and improving the drying efficiency.When the hot air enters into the hollow disc 401 from the connecting pipe 206, the air will first impact on the grid ring 403, and then when the vortex is formed, the grid ring 403 will rotate, at this time the rotating grid ring 403 will also produce airflow in the middle of the hollow disc 401, and throw the gas and the concentrated liquid into the hollow disc 401, when the mixed gas of hot air and concentrated liquid is thrown, the rotating grid ring 403 will drive the curved pipe 405 to rotate through the rotating ring 404, at this time the vortex of hot air and concentrated liquid mixed in the hollow disc 401 will carry the dried concentrated liquid with the curved pipe 405 and spray it to the surface of the grid cylinder 503, and then when the gas is sprayed through the round hole on the hose 203, the gas will first spray on the fan shaft 501, so that the teeth on the fan shaft 501 drive the inner cylinder 505 and the grid cylinder 503 to rotate through the tooth ring 504, when the grid cylinder 503 rotates, it will hit the gas sprayed on the grid cylinder 503 by the curved pipe 405, through the hitting effect of the grid ring 403, it can effectively reduce the caking and agglomeration phenomenon of the misty concentrated liquid in the drying process, help to maintain the bulkiness and fluidity of the product, and improve the final quality of the product. When the hot air is sprayed through the round hole on the hose 203, the sprayed gas will impact on the surface of the fan shaft 501 to make the fan shaft 501 rotate, and the fan shaft 501 will drive the inner cylinder 505 to rotate through the teeth on the surface when rotating, and the inner cylinder 505 will drive the grid cylinder 503 to rotate when rotating, and the rotating grid cylinder 503 will drive the fan sleeve 502 to rotate on the surface of the fan shaft 501 through the tooth ring 506 when the grid cylinder 503 rotates, at this time the rotating fan sleeve 502 and the fan shaft 501 rotate in opposite directions, and when the fan sleeve 502 and the fan shaft 501 rotate in opposite directions, a convection current can be formed between the misty concentrated liquid and the hot air, which helps to uniformly distribute the hot air and fully mix the mist, further improves the drying efficiency, reduces the phenomenon of local overheating or insufficient drying, and improves the drying uniformity of the product. When the gas carrying the concentrated liquid passes through the curved pipe 405 and sprays on the grid cylinder 503, the gas will blow the spring block 605, so that the spring block 605 shakes, and at the same time the spring block 605 also shakes when the grid cylinder 503 rotates, and when the spring block 605 shakes, it will drive the annular plate 604 and the rotating rod 603 to shake, and the annular plate 604 will also slide in the inner slide rail 601 through the T-shaped rod 602 while shaking, at this time the shaking annular plate 604 can scrape up and down on the inner wall of the grid cylinder, which can remove the residues or caking attached to the inner wall of the grid cylinder 503, and maintain the cleanliness of the grid cylinder, and at the same time the shaking spring block 605 will also hit the particles while shaking, which helps to further break the larger particles, so that they are more uniformly distributed in the main body 1, ensures the smooth flow of the gas and the misty concentrated liquid, speeds up the drying speed of the concentrated liquid, and improves the drying uniformity.

[0054] The preferred embodiments of the application disclosed above are only to help explain the present application. The preferred embodiments are not intended to be exhaustive or to limit the application to the precise form disclosed. Many modifications and variations are possible in light of the above teaching. It is intended that the scope of the application be limited not with this detailed description, but rather by the claims and the full range of equivalents to which such claims are entitled.

Claims

1. A kudzu vine oyster peptide beverage preparation device, comprising a main body (1), the outer surface of the main body (1) is fixedly connected with a fixed frame (101), the top of the fixed frame (101) is fixedly connected with a hot air pump (102), the top of the main body (1) is fixedly connected with a liquid inlet pipe (103), one end of the liquid inlet pipe (103) close to the fixed frame (101) penetrates through the top inner wall of the main body (1) and extends to the outside, the inside of the main body (1) is fixedly connected with a partition plate (104), the middle part of the partition plate (104) is fixedly connected with the outer surface of the extending end of the liquid inlet pipe (103), one side of the partition plate (104) close to the liquid inlet pipe (103) is fixedly connected with a gas collecting ring (105), the output end of the hot air pump (102) penetrates through the top outer wall of the main body (1) and is in communication with the gas collecting ring (105), the bottom of the main body (1) is fixedly connected with a discharge pipe (106), characterized in that, Also includes; The rotating mechanism (2) includes a plurality of gas collecting cylinders (201) fixedly connected on the gas collecting ring (105) away from the liquid inlet pipe (103), a plurality of the gas collecting cylinders (201) are arranged in a circular array with the liquid inlet pipe (103) as the center, the side of the gas collecting cylinder (201) away from the liquid inlet pipe (103) penetrates to the bottom outer wall of the partition plate (104) and extends to the outside, the gas collecting cylinder (201) is in communication with the gas collecting ring (105), and the side of the gas collecting cylinder (201) away from the partition plate (104) is fixedly connected with a plurality of hoses (203); The auxiliary mechanism (3) includes a rotating sleeve (301) slidingly connected on the outer surface of the hollow cylinder (202) in the fixed plate (205), the outer surface of the rotating sleeve (301) is provided with a special-shaped groove, and the special-shaped groove is slidingly connected with two L-shaped rods (303); The inside of the fixed cylinder (204) is fixedly connected with a fixed plate (205), the middle part of the fixed cylinder (204) is slidingly connected with a hollow cylinder (202), the side of the hollow cylinder (202) close to the gas collecting cylinder (201) is fixedly connected with the gas collecting cylinder (201), the hollow cylinder (202) is in communication with the gas collecting cylinder (201), the end of the hollow cylinder (202) away from the gas collecting cylinder (201) is provided with an opening, the end of the hollow cylinder (202) away from the gas collecting cylinder (201) penetrates to the side wall of the fixed plate (205) and extends to the outside, and the outer surface of the fixed plate (205) is fixedly connected with a connecting pipe (206); the connecting pipe (206) is in communication with the fixed plate (205), and a plurality of round holes are formed in the outer surface of the delivery hose (203); The inner wall of the rotating sleeve (301) is provided with a wave groove (302), the wave groove (302) is slidingly connected with two insertion rods (305), the sides of the two insertion rods (305) away from the wave groove (302) are fixedly connected to the outer surface of the hollow cylinder (202), a plurality of the connecting pipes (206) are provided to be open, and the side of the rotating sleeve (301) close to the gas collecting cylinder (201) is rotationally connected to the top inner wall of the fixed cylinder (204); The inside of the main body (1) is provided with an inflating mechanism (4), the inflating mechanism (4) includes a hollow disc (401) fixedly connected to the sides of a plurality of the fixed cylinders (204) away from the gas collecting cylinder (201), the side of the connecting pipe (206) close to the hollow disc (401) is in communication with the hollow disc (401), the inner wall of the hollow disc (401) is provided with an opening, and the side of the hollow disc (401) close to the liquid inlet pipe (103) is provided with an annular groove (402). The inside of the hollow disc (401) is rotationally connected with a grid ring (403), the inside of the annular groove (402) is rotationally connected with a rotating ring (404), the side, away from the hollow disc (401), of the rotating ring (404) is fixedly connected with a plurality of curved pipes (405), the side wall of the curved pipe (405) is fixedly connected with a C-shaped plate, the grid ring (403) is fixedly connected with the curved pipe (405) through the C-shaped plate, and the curved pipe (405) is in communication with the hollow disc (401).

2. The device for preparing a kudzu vine and oyster peptide beverage according to claim 1, characterized in that: The inside of the main body (1) is provided with an exchange mechanism (5), the exchange mechanism (5) comprises a plurality of fan shafts (501) rotationally connected to the side, away from the liquid inlet pipe (103), of the partition plate (104), the outer surface of the fan shaft (501) is fixedly connected with a tooth, the outer surface of the fan shaft (501) is rotationally connected with a fan sleeve (502), the outer surface of the fan sleeve (502) is fixedly connected with a second tooth, and the outer surface of the plurality of fan sleeves (502) is rotationally connected with a grid cylinder (503).

3. The device for preparing a kudzu vine and oyster peptide beverage according to claim 2, characterized in that: The inner wall of the grid cylinder (503) is in an open configuration, the opening of the grid cylinder (503) is fixedly connected with an inner cylinder (505), the side, close to the fan shaft (501), of the inner cylinder (505) is fixedly connected with a tooth ring (504), the tooth ring (504) is in meshing connection with the tooth, the side, close to the fan shaft (501), of the grid cylinder (503) is fixedly connected with a second tooth ring (506), and the second tooth ring (506) is in meshing connection with the second tooth.

4. The device for preparing a kudzu vine and oyster peptide beverage according to claim 3, characterized in that: The inside of the grid cylinder (503) is provided with a shaking mechanism (6), the shaking mechanism (6) comprises two slide rails (601) fixedly connected to the side, close to the grid cylinder (503), of the inner cylinder (505), the inside of the slide rail (601) is slidably connected with a plurality of T-shaped rods (602), the side, away from the slide rail (601), of the T-shaped rod (602) is rotationally connected with a rotating rod (603), the side, away from the T-shaped rod (602), of the plurality of rotating rods (603) is rotationally connected with an annular plate (604), and two annular plates (604) are slidably connected with a spring block (605).

5. The use of a device for preparing a drink of pueraria oyster peptide, characterized in that: The method comprises the following steps, S1: first, connect the liquid inlet pipe (103) with the concentrated liquid storage tank, and then spray the concentrated liquid out of the liquid inlet pipe (103) through the high-pressure pump; S2: at this time, the sprayed concentrated liquid is in mist form, at this time, start the hot air pump (102), and the hot air pump will deliver hot air into the inside of the main body (1) to mix with the misty concentrated liquid, so as to achieve the drying effect.

Citation Information

Patent Citations

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