A kind of canister of seabuckthorn raw pulp

CN224822264UActive Publication Date: 2026-10-09XINJIANG DAHER BIOTECHNOLOGY CO LTD
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Patent Information

Application Number
CN202522340087.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-11-04
Publication Date
2026-10-09
Estimated Expiration
2035-11-04

AI Technical Summary

Technical Problem

[0004]本实用新型的目的在于提供一种调配沙棘原浆的罐体,以解决上述背景技术中提出的现有的调配沙棘原浆的罐体,在使用时传统罐体多采用单层搅拌桨,沙棘原浆在调配时易出现分层、局部混合不充分的情况,混合均匀度较低,影响原浆品质的一致性,部分罐体虽有温控结构,但控温精度低,无法满足沙棘原浆调配过程中对温度的精准要求,导致原浆营养成分流失或变质,且传统罐体内部清洁依赖人工刷洗,不仅耗时费力,还易出现清洁死角,滋生细菌,影响沙棘原浆的卫生安全,同时调配过程中易产生涡流,使沙棘原浆与空气过度接触,导致氧化,降低原浆品质,且缺乏针对沙棘原浆特性的特殊结构设计,进料、液位监测等结构不合理,影响调配效率与监测准确性的问题

Benefits of technology

[0012]与现有技术相比,本实用新型的有益效果是:该调配沙棘原浆的罐体,通过设置搅拌清理组件,通过十字形防涡流板可有效破坏调配过程中产生的涡流,避免沙棘原浆与空气过度接触导致氧化变质,同时防止原浆因涡流产生局部堆积,多组环形分布的上层、中层、下层搅拌片,可对罐体内不同高度的原浆进行立体式搅拌,混合均匀度提升,确保原浆中营养成分分布一致,两组对称的清理毛刷随转动杆同步转动,可实时清洁罐体本体内壁,避免原浆残留,大幅降低细菌滋生风险,保障沙棘原浆的卫生安全,设置了进料组件,采用四组环形分布的进料管,可同时添加沙棘原浆、辅料及其他调配原料,无需分次进料,避免杂质进入罐体内影响原浆口感与澄清度,进料头的扩口设计还能减少原料飞溅,避免原料浪费,降低生产成本,通过清洗液箱与四组对角分布的倾斜喷洒管、喷洒头,可实现无死角喷洒清洗,清洁时间缩短,清洗后的废液可通过回收管统一排出,便于集中处理,符合环保生产要求,恒温管采用圆环状结构,均匀分布在罐体本体内部,可直接与沙棘原浆接触换热。

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Abstract

The utility model provides a kind of tank of deployment sea-buckthorn raw pulp, including tank body, the bottom of tank body is fixedly installed with fixed foot by bolt, the bottom of tank body is connected with recovery pipe, the bottom of recovery pipe is connected with recovery tank, the outside of tank body is connected with collecting pipe, the top of tank body is provided with feed assembly, the inside of tank body is provided with thermostatic tube, the inside of tank body is provided with stirring cleaning assembly.The tank of deployment sea-buckthorn raw pulp, by setting stirring cleaning assembly, vortex generated in deployment process can be effectively destroyed by anti-vortex plate, avoid sea-buckthorn raw pulp and excessive contact with air cause oxidation metamorphism, prevent raw pulp from local accumulation due to vortex, stirring piece mixing uniformity improves, ensure that the distribution of nutrient composition in raw pulp is consistent, cleaning brush synchronous rotation, can clean tank body inner wall in real time, avoid raw pulp residue, guarantee the health and safety of sea-buckthorn raw pulp.
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Description

Technical Field

[0001] This utility model relates to the technical field of sea buckthorn pulp, and in particular to a container for preparing sea buckthorn pulp. Background Technology

[0002] Sea buckthorn pulp is a nutrient-rich natural beverage containing various vitamins, amino acids, and other nutrients beneficial to the human body. These nutrients not only meet the body's daily nutritional needs but also have significant health benefits. Sea buckthorn pulp has been widely used in food processing, health product manufacturing, and many other fields. However, the preparation process of sea buckthorn pulp is complex and places high demands on the performance of the container. The container needs to have good sealing, corrosion resistance, and stability to ensure that the sea buckthorn pulp is not affected by external factors during preparation and storage, thereby maintaining its original nutritional value and taste. Therefore, a container specifically designed for preparing sea buckthorn pulp is needed.

[0003] However, existing tanks for preparing sea buckthorn pulp often use single-layer stirring paddles, which can easily lead to stratification and insufficient mixing in certain areas during preparation, resulting in low uniformity and affecting the consistency of pulp quality. Although some tanks have temperature control structures, the temperature control accuracy is low and cannot meet the precise temperature requirements during the preparation of sea buckthorn pulp, leading to the loss or deterioration of nutrients in the pulp. Furthermore, cleaning the inside of traditional tanks relies on manual scrubbing, which is not only time-consuming and labor-intensive but also prone to creating blind spots that breed bacteria, affecting the hygiene and safety of the sea buckthorn pulp. At the same time, eddies can easily be generated during the preparation process, causing excessive contact between the sea buckthorn pulp and air, leading to oxidation and reducing the quality of the pulp. In addition, there is a lack of special structural design for the characteristics of sea buckthorn pulp, and the feeding and liquid level monitoring structures are unreasonable, affecting the efficiency of preparation and the accuracy of monitoring. Utility Model Content

[0004] The purpose of this invention is to provide a tank for preparing sea buckthorn pulp, addressing the problems mentioned in the background section regarding existing tanks for preparing sea buckthorn pulp. Traditional tanks often use a single-layer stirring paddle, which easily leads to stratification and insufficient mixing of the pulp during preparation, resulting in low uniformity and affecting the consistency of pulp quality. While some tanks have temperature control structures, their temperature control accuracy is low, failing to meet the precise temperature requirements during sea buckthorn pulp preparation, leading to nutrient loss or deterioration. Furthermore, cleaning the interior of traditional tanks relies on manual scrubbing, which is time-consuming, labor-intensive, and prone to creating blind spots that breed bacteria, affecting the hygiene and safety of the sea buckthorn pulp. Additionally, eddies are easily generated during preparation, causing excessive contact between the pulp and air, leading to oxidation and reduced pulp quality. Moreover, there is a lack of specific structural design tailored to the characteristics of sea buckthorn pulp, with unreasonable feeding and level monitoring structures affecting preparation efficiency and monitoring accuracy.

[0005] To achieve the above objectives, this utility model provides the following technical solution: a tank for preparing sea buckthorn pulp, comprising a tank body, a fixed support foot fixedly installed at the bottom of the tank body by bolts, the bottom of the fixed support foot being provided with anti-slip texture, a connecting adjustment ring fixedly installed on the outer side of the fixed support foot, a recycling pipe being connected through the bottom of the tank body, a recycling box being connected through the bottom of the recycling pipe, a collection pipe being connected through the outer side of the tank body, a feeding assembly being provided at the top of the tank body, a constant temperature pipe being provided inside the tank body, and a stirring and cleaning assembly being provided inside the tank body, the stirring and cleaning assembly including anti-slip features. A vortex plate is installed inside the tank body. A protective cover is fixedly installed at the bottom of the anti-vortex plate. A motor is fixedly installed at the top inside the protective cover. A rotating rod is fixedly installed at the output end of the motor. A cleaning brush is fixedly installed on the outside of the rotating rod. A slider is fixedly installed at the bottom of the rotating rod. A rotating shaft is fixedly installed at the bottom of the rotating rod. An upper stirring plate, a middle stirring plate, and a lower stirring plate are fixedly installed on the outside of the rotating shaft. A connecting column is fixedly installed on the inner wall of the tank body. A fixing ring is fixedly installed at the top of the connecting column.

[0006] Preferably, the feeding assembly includes a plug, which is installed on the tank body. A feed pipe is connected through to the top of the plug. A feed head is provided on the outside of the feed pipe, and a filter screen is provided on the inside of the feed pipe. An mounting plate is fixedly installed on the top of the plug, and a pull ring is fixedly installed on the top of the mounting plate. A cleaning fluid tank is fixedly installed on the bottom of the plug, and a spray pipe is connected through to the bottom of the cleaning fluid tank. A spray head is connected through to the bottom of the spray pipe.

[0007] Preferably, the feed pipe, feed head, and filter screen are provided in four identical sets, and the four sets of feed pipe, feed head, and filter screen are arranged in a ring about the vertical center line of the plug.

[0008] Preferably, the spray pipes and spray heads are inclined, and there are four identical sets of spray pipes and spray heads, which are diagonally distributed about the vertical center line of the cleaning liquid tank.

[0009] Preferably, the thermostatic tube has a circular structure and is located inside the tank body.

[0010] Preferably, the anti-vortex plate has a cross-shaped structure, and the rotating rod and cleaning brush are provided in two identical sets, with the two sets of rotating rods and cleaning brushes symmetrically distributed about the vertical center line of the motor, and the cleaning brushes contacting the inner wall of the tank body.

[0011] Preferably, the upper, middle, and lower stirring blades are provided in multiple identical sets, and the multiple sets of upper, middle, and lower stirring blades are arranged in a ring about the vertical center line of the rotation axis, and the upper, middle, and lower stirring blades are arranged in descending order of size.

[0012] Compared with existing technologies, the beneficial effects of this utility model are as follows: The tank for preparing sea buckthorn pulp, through the installation of a stirring and cleaning assembly, effectively disrupts the eddies generated during the mixing process using a cross-shaped anti-eddy current plate, preventing excessive contact between the sea buckthorn pulp and air, which could lead to oxidation and deterioration. It also prevents localized accumulation of the pulp due to eddies. Multiple sets of annularly distributed upper, middle, and lower stirring blades provide three-dimensional stirring of the pulp at different heights within the tank, improving mixing uniformity and ensuring consistent nutrient distribution. Two sets of symmetrical cleaning brushes rotate synchronously with the rotating rod, cleaning the inner wall of the tank in real time, preventing pulp residue, significantly reducing the risk of bacterial growth, and protecting the sea buckthorn pulp. To ensure the hygiene and safety of the pulp, a feeding assembly is installed, employing four sets of annularly distributed feeding pipes. This allows for the simultaneous addition of sea buckthorn pulp, auxiliary materials, and other blending ingredients, eliminating the need for multiple feedings and preventing impurities from entering the tank and affecting the taste and clarity of the pulp. The flared design of the feeding head also reduces material splashing, avoiding material waste and lowering production costs. Through the cleaning liquid tank and four sets of diagonally distributed inclined spray pipes and spray heads, thorough cleaning without dead angles can be achieved, shortening the cleaning time. The waste liquid after cleaning can be uniformly discharged through the recovery pipe for centralized treatment, meeting environmental protection production requirements. The constant temperature tube adopts a circular structure and is evenly distributed inside the tank body, allowing direct contact and heat exchange with the sea buckthorn pulp. Attached Figure Description

[0013] Figure 1 This is a three-dimensional structural diagram of the present invention;

[0014] Figure 2 This is a schematic diagram of the structure in which the anti-slip texture and the connecting adjustment ring of this utility model cooperate with each other;

[0015] Figure 3 This is a schematic diagram of the structure of the collection tube and the constant temperature tube of this utility model.

[0016] Figure 4 This is a schematic diagram of the structure of the cleaning brush and the anti-vortex plate of this utility model.

[0017] Figure 5 This is a schematic diagram of the disassembled structure of the stirring and cleaning component of this utility model.

[0018] In the diagram: 1. Tank body; 2. Fixed support feet; 3. Anti-slip texture; 4. Connecting adjustment ring; 5. Recovery pipe; 6. Recovery box; 7. Collection pipe; 8. Feeding assembly; 801. Plug; 802. Feeding pipe; 803. Feeding head; 804. Filter screen; 805. Mounting plate; 806. Pull ring; 807. Cleaning fluid tank; 808. Spray pipe; 809. Spray head; 9. Thermostatic pipe; 10. Stirring and cleaning assembly; 1001. Anti-vortex plate; 1002. Protective cover; 1003. Motor; 1004. Rotating rod; 1005. Cleaning brush; 1006. Slider; 1007. Rotating shaft; 1008. Upper stirring plate; 1009. Middle stirring plate; 1010. Lower stirring plate; 1011. Connecting column; 1012. Fixed ring. Detailed Implementation

[0019] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0020] Please see Figure 1-5This utility model provides a technical solution: a tank for preparing sea buckthorn pulp, comprising a tank body 1, a fixed support leg 2 fixedly installed at the bottom of the tank body 1 by bolts, the bottom of the fixed support leg 2 being provided with anti-slip texture 3, a connecting adjustment ring 4 fixedly installed on the outer side of the fixed support leg 2, a recycling pipe 5 passing through the bottom of the tank body 1, a recycling box 6 passing through the bottom of the recycling pipe 5, a collection pipe 7 passing through the outer side of the tank body 1, a feeding assembly 8 provided at the top of the tank body 1, and a constant flow device inside the tank body 1. The tank body 1 is equipped with a stirring and cleaning assembly 10, which includes an anti-vortex plate 1001. The anti-vortex plate 1001 is installed inside the tank body 1. A protective cover 1002 is fixedly installed at the bottom of the anti-vortex plate 1001. A motor 1003 is fixedly installed at the top inside the protective cover 1002. A rotating rod 1004 is fixedly installed at the output end of the motor 1003. A cleaning brush 1005 is fixedly installed on the outside of the rotating rod 1004. A slider 10 is fixedly installed at the bottom of the rotating rod 1004. 06. A rotating shaft 1007 is fixedly installed at the bottom of the rotating rod 1004. An upper stirring plate 1008, a middle stirring plate 1009, and a lower stirring plate 1010 are fixedly installed on the outer side of the rotating shaft 1007. A connecting column 1011 is fixedly installed on the inner wall of the tank body 1. A fixing ring 1012 is fixedly installed on the top of the connecting column 1011. By setting the stirring and cleaning assembly 10, the cross-shaped anti-vortex plate 1001 can effectively break the vortex. The eddies generated during the blending process prevent the sea buckthorn pulp from oxidizing and deteriorating due to excessive contact with air, and also prevent the pulp from accumulating locally due to the eddies. Multiple sets of annularly distributed upper, middle and lower stirring blades can perform three-dimensional stirring of the pulp at different heights in the tank, improving the uniformity of mixing and ensuring that the nutrients in the pulp are evenly distributed. Two sets of symmetrical cleaning brushes 1005 rotate synchronously with the rotating rod 1004, which can clean the inner wall of the tank body 1 in real time, avoid pulp residue, greatly reduce the risk of bacterial growth, and ensure the hygiene and safety of the sea buckthorn pulp.

[0021] Furthermore, the feeding assembly 8 includes a plug 801, which is installed on the tank body 1. A feed pipe 802 is connected through the top of the plug 801. A feed head 803 is provided on the outer side of the feed pipe 802, and a filter screen 804 is provided on the inner side of the feed pipe 802. An mounting plate 805 is fixedly installed on the top of the plug 801, and a pull ring 806 is fixedly installed on the top of the mounting plate 805. A cleaning fluid tank 807 is fixedly installed at the bottom of the plug 801, and a spray pipe 808 is connected through the bottom of the cleaning fluid tank 807. A spray head 80 is connected through the bottom of the spray pipe 808. 9. By setting up the feeding component 8 and adopting four sets of annularly distributed feeding pipes 802, sea buckthorn pulp, auxiliary materials and other blending raw materials can be added at the same time without the need for multiple feedings. This avoids impurities entering the tank and affecting the taste and clarity of the pulp. The flared design of the feeding head 803 can also reduce raw material splashing, avoid raw material waste and reduce production costs. Through the cleaning liquid tank 807 and four sets of diagonally distributed inclined spray pipes 808 and spray heads 809, it is possible to achieve spray cleaning without dead angles, shorten the cleaning time, and the waste liquid after cleaning can be discharged uniformly through the recovery pipe 5 for centralized treatment, which meets the requirements of environmentally friendly production.

[0022] Furthermore, the feed pipe 802, feed head 803, and filter screen 804 are provided in four identical sets, and the four sets of feed pipe 802, feed head 803, and filter screen 804 are arranged in a ring about the vertical center line of the plug 801. By setting four sets of feed pipe 802, feed head 803, and filter screen 804, each set of feed pipe 802 is independently equipped with a filter screen 804, which can filter impurities in different raw materials separately. The filtration coverage is high, avoiding filtration failure caused by clogging of a single filter screen 804. The ring distribution also allows the raw materials to fall evenly from different directions at the top of the tank, reducing the local accumulation of raw materials in the tank, initially improving the mixing uniformity, laying the foundation for subsequent stirring processes, and improving the initial distribution uniformity of raw materials.

[0023] Furthermore, the spray pipes 808 and spray heads 809 are inclined, and there are four identical sets of spray pipes 808 and spray heads 809. The four sets of spray pipes 808 and spray heads 809 are diagonally distributed about the vertical center line of the cleaning fluid tank 807. By setting four sets of spray pipes 808 and spray heads 809, the entire area of ​​the inner wall of the tank is covered from top to bottom. With the diagonal distribution, the spray range of the four sets of spray heads 809 can form cross coverage, without any cleaning dead corners. The diagonal distribution can balance the spray pressure of the cleaning fluid, avoiding the cleaning fluid splashing caused by excessive local pressure or the cleaning incomplete due to insufficient local pressure. The inclined spray can also enhance the flushing force of the cleaning fluid on the inner wall, quickly peeling off stubborn residual sea buckthorn pulp, shortening the cleaning time, reducing the amount of cleaning fluid used, and significantly reducing cleaning costs and water consumption.

[0024] Furthermore, the thermostatic tube 9 has a circular structure and is located inside the tank body 1. By setting the thermostatic tube 9 to a circular structure, it is ensured that the sea buckthorn pulp can quickly reach the target mixing temperature. The circular distribution can make the temperature uniform in all areas of the tank, accurately ensuring the stability of the active ingredients in the sea buckthorn pulp and improving the component retention rate. In addition, the built-in circular thermostatic tube 9 does not occupy the external space of the tank, avoiding the limitation of the tank installation environment on the traditional jacket, and making the equipment adaptable to more production scenarios.

[0025] Furthermore, the anti-vortex plate 1001 has a cross-shaped structure, and two identical sets of rotating rods 1004 and cleaning brushes 1005 are provided. The two sets of rotating rods 1004 and cleaning brushes 1005 are symmetrically distributed about the vertical center line of the motor 1003. The cleaning brushes 1005 are in contact with the inner wall of the tank body 1. By providing two sets of rotating rods 1004 and cleaning brushes 1005, the two symmetrically distributed brushes can simultaneously clean the inner wall from both sides of the tank, improving the cleaning efficiency compared to a single set of brushes. Furthermore, it can balance the centrifugal force when the brush rotates, avoiding vibration of the motor 1003 caused by unilateral force, thus extending the service life of the motor 1003. The close contact between the brush and the inner wall can thoroughly remove the sea buckthorn pulp residue adhering to the tank wall, preventing the residual pulp from oxidizing and deteriorating and contaminating the next batch of pulp. The cross-shaped anti-vortex plate 1001 can cooperate with the brush rotation, breaking the vortex without hindering the brush movement, achieving simultaneous anti-vortex and cleaning without additional processes, further improving the integration of the equipment.

[0026] Furthermore, the upper layer stirring blade 1008, the middle layer stirring blade 1009, and the lower layer stirring blade 1010 are all provided in multiple identical sets, and the multiple sets of upper layer stirring blades 1008, middle layer stirring blades 1009, and lower layer stirring blades 1010 are all arranged in a ring about the vertical center line of the rotation shaft 1007. The upper layer stirring blades 1008, middle layer stirring blades 1009, and lower layer stirring blades 1010 are arranged in descending order of size. By providing multiple sets of upper layer stirring blades 1008, middle layer stirring blades 1009, and lower layer stirring blades 1010, the multiple sets of ring-shaped stirring blades can... The system provides comprehensive mixing of sea buckthorn pulp at different heights within the tank. The large upper mixing blades drive the top pulp to flow rapidly, the medium-sized middle mixing blades mix the middle pulp, and the small lower mixing blades fit the bottom space of the tank, preventing collisions with the anti-vortex plate 1001. This achieves three-dimensional mixing, improving the uniformity of the mixture. The arrangement of the blades from large to small conforms to the internal space characteristics of the tank, maximizing the use of the mixing area and reducing dead zones. The multiple ring-shaped distributions also enhance the stability of the mixing, preventing mixing failure due to damage to a single mixing blade and ensuring a continuous and stable blending process.

[0027] Working principle: First, the operator selects a food-grade stainless steel tank body 1 and a cap 801 that matches the top opening of the tank body 1. Four feed holes are evenly spaced in a ring on the top of the cap 801, with a feed pipe 802 welded through each hole. A flared feed head 803 is welded to the outer top of each feed pipe 802 for easy material pouring. A filter screen 804 is fixedly installed in the middle of the inner side of the feed pipe 802 using a clip to ensure impurities are filtered before the material enters the tank. A mounting plate 805 is welded to the center of the top of the cap 801, with a pull ring 806 welded to the top of the mounting plate 805 for easy removal of the cap 801. A cleaning liquid tank 807 is bolted to the bottom of the cap 801. Four sets of inclined spray pipes 808 are welded diagonally at the bottom of tank 1. Each set of spray pipes 808 is connected to a spray head 809 at the bottom, ensuring that the spray head 809 can cover the entire inner wall of the tank. Finally, the assembled plug 801 is placed on top of the tank body 1 and sealed with a sealing ring to prevent raw material leakage during the mixing process. In the lower middle part of the interior of the tank body 1, a cross-shaped anti-vortex plate 1001 is fixedly installed with bolts. The anti-vortex plate 1001 must be installed horizontally to avoid affecting the rotation of subsequent stirring components. At the bottom center of the anti-vortex plate 1001, a protective cover 1002 is welded and fixed. A motor 1003 mounting hole is opened on the top of the protective cover 1002, and a motor 1003 shock-absorbing pad is installed inside. The motor 1003 is fixedly installed on the protective cover 1002 with bolts. Inside the mounting hole at the top of the protective cover 1002, the output end of the motor 1003 extends downwards through the protective cover 1002 into the tank body. A rotating rod 1004 is fixedly connected to the output end of the motor 1003 via a coupling. Two sets of cleaning brushes 1005 are welded symmetrically to the outside of the rotating rod 1004. A fixed slider 1006 is welded to the bottom of the rotating rod 1004, along with a rotating shaft 1007. Multiple sets of stirring blades are welded to the outside of the rotating shaft 1007 in three layers: upper stirring blade 1008, middle stirring blade 1009, and lower stirring blade 1010, ensuring that the stirring blades do not collide with the anti-vortex plate 1001 during rotation. Three sets of connecting columns 1011 are welded in a ring-shaped, equidistant arrangement on the upper part of the inner wall of the tank body 1. Each set of connecting columns 1011... 011. A fixed ring 1012 is welded to the top. The rotating rod 1004 is passed through the fixed ring 1012, ensuring that the rotating rod 1004 rotates smoothly without shaking. Inside the tank body 1, multiple sets of circular thermostatic pipes 9 are welded and fixed along the circumference of the inner wall of the tank. The thermostatic pipes 9 must be installed horizontally to ensure that they cover the entire height area inside the tank. The inlet and outlet ends of the thermostatic pipes 9 penetrate the outer wall of the tank and are connected to the external temperature control system to ensure that the thermostatic medium can be delivered into the tank through the thermostatic pipes 9 to control the temperature of the sea buckthorn pulp preparation. Finally, check whether all components are firmly installed and whether the connections are sealed. Test the power supply to ensure that the motor 1003 rotates smoothly, the spray head 809 sprays evenly, and the thermostatic pipes 9 can normally supply and cut off the medium, ensuring that all systems function normally.Complete the assembly of the entire tank.

[0028] The foregoing has shown and described the basic principles, main features, and advantages of this utility model. Those skilled in the art should understand that this utility model is not limited to the above embodiments. The embodiments and descriptions in the specification are merely illustrative of the principles of this utility model. Various changes and modifications can be made to this utility model without departing from its spirit and scope, and all such changes and modifications fall within the scope of the claimed utility model.

Claims

1. A container for preparing sea buckthorn pulp, comprising a container body (1), characterized in that: The bottom of the tank body (1) is fixedly installed with a fixed support foot (2) by bolts. The bottom of the fixed support foot (2) is provided with anti-slip texture (3). A connecting adjustment ring (4) is fixedly installed on the outside of the fixed support foot (2). A recycling pipe (5) is connected through the bottom of the tank body (1). A recycling box (6) is connected through the bottom of the recycling pipe (5). A collection pipe (7) is connected through the outside of the tank body (1). A feeding assembly (8) is provided on the top of the tank body (1). A constant temperature pipe (9) is provided inside the tank body (1). A stirring and cleaning assembly (10) is provided inside the tank body (1). The stirring and cleaning assembly (10) includes an anti-vortex plate (1001), which is installed inside the tank body (1). A protective cover (1002) is fixedly installed at the bottom of the anti-vortex plate (1001). A motor (1003) is fixedly installed at the top inside the protective cover (1002). A rotating rod (1004) is fixedly installed at the output end of the motor (1003). A cleaning brush (1005) is fixedly installed on the outside of the rotating rod (1004). A cleaning brush (1005) is fixedly installed at the bottom of the rotating rod (1004). The tank has a slider (1006), a rotating shaft (1007) is fixedly installed at the bottom of the rotating rod (1004), an upper stirring plate (1008) is fixedly installed on the outside of the rotating shaft (1007), a middle stirring plate (1009) is fixedly installed on the outside of the rotating shaft (1007), a lower stirring plate (1010) is fixedly installed on the outside of the rotating shaft (1007), a connecting column (1011) is fixedly installed on the inner wall of the tank body (1), and a fixing ring (1012) is fixedly installed on the top of the connecting column (1011).

2. The tank for preparing sea buckthorn pulp according to claim 1, characterized in that: The feeding assembly (8) includes a plug (801), which is installed on the tank body (1). The top of the plug (801) is connected to a feed pipe (802). A feed head (803) is provided on the outside of the feed pipe (802). A filter screen (804) is provided on the inside of the feed pipe (802). An installation plate (805) is fixedly installed on the top of the plug (801). A pull ring (806) is fixedly installed on the top of the installation plate (805). A cleaning fluid tank (807) is fixedly installed on the bottom of the plug (801). A spray pipe (808) is connected through the bottom of the cleaning fluid tank (807). A spray head (809) is connected through the bottom of the spray pipe (808).

3. The tank for preparing sea buckthorn pulp according to claim 2, characterized in that: The feed pipe (802), feed head (803) and filter screen (804) are provided in four identical sets, and the four sets of feed pipe (802), feed head (803) and filter screen (804) are arranged in a ring about the vertical center line of the plug (801).

4. The tank for preparing sea buckthorn pulp according to claim 2, characterized in that: The spray pipe (808) and spray head (809) are inclined, and there are four identical sets of spray pipe (808) and spray head (809), and the four sets of spray pipe (808) and spray head (809) are diagonally distributed about the vertical center line of the cleaning liquid tank (807).

5. The tank for preparing sea buckthorn pulp according to claim 1, characterized in that: The thermostatic tube (9) has a circular structure and is located inside the tank body (1).

6. The tank for preparing sea buckthorn pulp according to claim 1, characterized in that: The anti-vortex plate (1001) has a cross-shaped structure. The rotating rod (1004) and the cleaning brush (1005) are provided in two identical sets. The two sets of rotating rods (1004) and cleaning brushes (1005) are symmetrically distributed about the vertical center line of the motor (1003). The cleaning brush (1005) is in contact with the inner wall of the tank body (1).

7. The tank for preparing sea buckthorn pulp according to claim 1, characterized in that: The upper stirring plate (1008), middle stirring plate (1009) and lower stirring plate (1010) are all provided in multiple sets, and the multiple sets of the upper stirring plate (1008), middle stirring plate (1009) and lower stirring plate (1010) are all arranged in a ring about the vertical center line of the rotation axis (1007), and the upper stirring plate (1008), middle stirring plate (1009) and lower stirring plate (1010) are arranged in descending order of size.