High-pressure dissolving device
By designing the liquid separation components and stirring components of the high-pressure dissolution device, the problem of poor dissolution effect of existing equipment in plant beverage processing is solved, and a more efficient solid-liquid separation and dissolution effect is achieved.
Patent Information
- Application Number
- CN202421744118.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-23
- Publication Date
- 2025-06-03
- Estimated Expiration
- 2034-07-23
AI Technical Summary
The existing high-pressure dissolution equipment is not convenient for turning and extruding plants in plant beverage processing, resulting in poor dissolution effect and inconvenient for the separation and filtration of solid plants and liquids.
A high-pressure dissolution device is designed, including a tank body, a liquid separation assembly and a stirring assembly. The liquid separation assembly is suspended by the filter screen through the connecting rod, and the hydraulic rod controls the lifting and lowering of the auxiliary pressure plate. The agitating assembly turns plants through the shaped liquid stirring rod, and the auxiliary pressure plate squeezes the plants to achieve a better and faster dissolution effect.
Through the design of suspended filter mesh and hydraulic auxiliary pressure plate, effective solid-liquid separation and dissolution between plants and liquids is achieved, the dissolution effect of plant beverages is improved, and subsequent liquid collection and sampling inspection is facilitated.
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Figure CN222930701U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of plant beverage processing, and specifically relates to a high-pressure dissolution device. Background Art
[0002] The high-pressure dissolution technology is a technology in which, under high-pressure conditions, through the action of high temperature and high pressure, the useful components in solid materials are dissolved in a solvent, so as to realize the extraction and enrichment of useful components. For high-pressure dissolution equipment, it is used in the processing of plant beverages to extract the effective components in plants into liquids to make plant beverages.
[0003] However, when the existing plant beverages are subjected to high-pressure dissolution, it is inconvenient to turn over and extrude the plants, resulting in low dissolution effect of the plants, and it is also inconvenient to separate and filter solid plants and liquids.
[0004] Therefore, in view of this, research and improvement are carried out on the existing structure and deficiencies, and a high-pressure dissolution device is provided. Content of the Utility Model
[0005] The purpose of the utility model is to provide a high-pressure dissolution device to solve the problems raised in the above background art.
[0006] To achieve the above purpose, the utility model provides the following technical solution: A high-pressure dissolution device, including a tank body and a liquid separation assembly. A tank cover is arranged at the upper end of the tank body. The liquid separation assembly for solid-liquid separation is arranged at the lower end of the tank cover, and the liquid separation assembly includes a connecting rod, a separation filter screen, a hydraulic rod and an auxiliary pressing plate. The lower end of the connecting rod is connected with the separation filter screen. A hydraulic rod is arranged on the inner side of the connecting rod, and the output end of the hydraulic rod is connected with the auxiliary pressing plate. A stirring assembly for stirring is arranged in the middle of the tank cover.
[0007] Further, a liquid adding pipe is arranged on the right side of the upper end of the tank cover, and the number of liquid adding pipes is two.
[0008] Further, a pressure gauge is arranged on the left side of the upper end of the tank cover, and a pressure pipe is arranged in front of the pressure gauge.
[0009] Further, a liquid discharge pipe is arranged at the lower end of the tank body, and a support seat is installed on the outer side of the lower end of the tank body.
[0010] Further, the stirring assembly includes a rotating rod and a liquid stirring rod, and the end of the rotating rod is connected with the liquid stirring rod.
[0011] Further, a sampling assembly for sampling inspection is arranged on the side of the tank body, and a silica gel heating plate is arranged on the inner wall of the tank body.
[0012] Further, the sampling assembly includes a sampling pipe and an observation cylinder, and the end of the sampling pipe is connected with the observation cylinder.
[0013] Furthermore, the sampling component further includes a support frame and a vacuum pump. A support frame is arranged outside the observation cylinder, and the top of the observation cylinder is connected to the vacuum pump through a pipeline.
[0014] The utility model provides a high-pressure dissolution device, which has the following beneficial effects:
[0015] 1. In the utility model, the sub-filter screen is suspended and installed inside the tank body through a connecting rod. The sub-filter screen can play a role in solid-liquid separation when plants are dissolved under high pressure in the liquid, so as to facilitate the collection of the liquid after dissolution. The hydraulic rod controls the lifting of the auxiliary pressing plate through telescoping. The two groups of auxiliary pressing plates work alternately, so that the auxiliary pressing plates extrude the plants in the parts stirred by the liquid stirring rod, making the plants dissolve better and faster.
[0016] 2. In the utility model, the U-shaped liquid stirring rod can turn over the plants in the sub-filter screen to promote the dissolution of the plants in the liquid. The sampling pipe is controlled to open and close through a valve. After the vacuum pump pumps the observation cylinder to a vacuum state, the valve of the sampling pipe is opened, so that part of the solution inside the tank body is pumped into the observation cylinder for sampling observation and detection, so as to observe the dissolution situation. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Figure 1 is an overall external structure schematic diagram of a high-pressure dissolution device of the utility model;
[0018] Figure 2 is an internal structure schematic diagram of the tank body of a high-pressure dissolution device of the utility model;
[0019] Figure 3 is a structural schematic diagram of the stirring component of a high-pressure dissolution device of the utility model.
[0020] In the figure: 1, tank body; 2, tank cover; 3, liquid separation component; 301, connecting rod; 302, sub-filter screen; 303, hydraulic rod; 304, auxiliary pressing plate; 4, liquid adding pipe; 5, pressure gauge; 6, pressure pipe; 7, liquid discharge pipe; 8, support seat; 9, stirring component; 901, rotating rod; 902, liquid stirring rod; 10, sampling component; 1001, sampling pipe; 1002, observation cylinder; 1003, support frame; 1004, vacuum pump; 11, silica gel heating plate. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0021] The following further describes in detail the embodiments of the utility model in conjunction with the drawings. The following embodiments are used to illustrate the utility model, but cannot be used to limit the scope of the utility model.
[0022] Such as Figure 1 and Figure 3As shown in the figure, a high-pressure dissolution device includes a tank body 1 and a liquid separation assembly 3. A tank cover 2 is provided at the upper end of the tank body 1, a drain pipe 7 is provided at the lower end of the tank body 1, and a support base 8 is installed on the outer side of the lower end of the tank body 1. The stirring assembly 9 includes a rotating rod 901 and a liquid stirring rod 902, and the end of the rotating rod 901 is connected to the liquid stirring rod 902. The U-shaped liquid stirring rod 902 can turn the plants in the sub-filter screen 302 to promote the dissolution of the plants in the liquid. A sampling assembly 10 for sampling inspection is provided on the side of the tank body 1, and a silica gel heating plate 11 is provided on the inner wall of the tank body 1. The sampling assembly 10 includes a sampling pipe 1001 and an observation cylinder 1002, and the end of the sampling pipe 1001 is connected to the observation cylinder 1002. The sampling pipe 1001 is controlled to open and close by a valve. The sampling assembly 10 further includes a support frame 1003 and a vacuum pump 1004. A support frame 1003 is provided outside the observation cylinder 1002, and the top of the observation cylinder 1002 is connected to the vacuum pump 1004 through a pipeline. After the vacuum pump 1004 pumps the observation cylinder 1002 to a vacuum, the valve of the sampling pipe 1001 is opened so that a part of the solution inside the tank body 1 is pumped into the observation cylinder 1002 for sampling observation and detection, thereby observing the dissolution situation.
[0023] As Figure 2 shown in the figure, the liquid separation assembly 3 for solid-liquid separation is arranged at the lower end of the tank cover 2. The liquid separation assembly 3 includes a connecting rod 301, a sub-filter screen 302, a hydraulic rod 303 and an auxiliary pressing plate 304. The lower end of the connecting rod 301 is connected to the sub-filter screen 302. The connecting rod 301 suspends and installs the sub-filter screen 302 inside the tank body 1. The sub-filter screen 302 can play a role in solid-liquid separation when the plants are dissolved under high pressure in the liquid, so as to collect the liquid after subsequent dissolution. A hydraulic rod 303 is arranged on the inner side of the connecting rod 301. The hydraulic rod 303 controls the lifting of the auxiliary pressing plate 304 through expansion and contraction, and the output end of the hydraulic rod 303 is connected to the auxiliary pressing plate 304. The two groups of auxiliary pressing plates 304 work alternately, so that the auxiliary pressing plate 304 squeezes the plants in the part stirred by the liquid stirring rod 902, making the plants dissolve better and faster. A stirring assembly 9 for stirring is arranged in the middle of the tank cover 2. Two liquid adding pipes 4 are arranged on the right side of the upper end of the tank cover 2, and a pressure gauge 5 is arranged on the left side of the upper end of the tank cover 2, and a pressure pipe 6 is arranged in front of the pressure gauge 5.
[0024] In summary, for this high-pressure dissolution device, first according to Figures 1 - 3The structure shown in the figure opens upward through the tank lid 2. After putting the plant to be dissolved into the sub-filter screen 302, the tank lid 2 is closed. The liquid adding pipe 4 conveys liquid into the interior of the tank body 1. When dissolving the solution, the air pressure pipe 6 pressurizes the interior of the tank body 1. At the same time, the silica gel heating plate 11 heats to assist in dissolving the plants inside the tank body 1. During dissolution, the U-shaped liquid stirring rod 902 can turn the plants in the sub-filter screen 302 to promote the dissolution of the plants in the liquid. At the same time, the two groups of auxiliary pressing plates 304 work alternately, so that the auxiliary pressing plates 304 squeeze the plants in the parts stirred by the liquid stirring rod 902, making the plants dissolve better and faster. Also, because the sub-filter screen 302 is suspended and installed inside the tank body 1, the sub-filter screen 302 can play a role in solid-liquid separation when the plants are dissolved under high pressure in the liquid, so as to collect the liquid after subsequent dissolution. When sampling and detecting during dissolution, first, the vacuum pump 1004 evacuates the observation cylinder 1002 to vacuum, and then the valve of the sampling pipe 1001 is opened so that part of the solution inside the tank body 1 is pumped into the observation cylinder 1002 for sampling observation and detection, thereby observing the dissolution situation. When the dissolution is completed, it can be discharged through the drain pipe 7.
[0025] The embodiments of the present invention are given for purposes of illustration and description, and are not exhaustive or limit the present invention to the disclosed form. Many modifications and variations are obvious to those of ordinary skill in the art. The embodiments are chosen and described in order to better explain the principles of the present invention and its practical applications, and to enable those of ordinary skill in the art to understand the present invention and design various embodiments with various modifications suitable for specific purposes.
Claims
1. A high-pressure dissolving device, comprising a tank body (1) and a liquid separation component (3), characterized in that: The upper end of the tank body (1) is provided with a tank cover (2), and the liquid separation component (3) for solid-liquid separation is provided at the lower end of the tank cover (2), and the liquid separation component (3) comprises a connecting rod (301), a filter screen (302), a hydraulic rod (303) and an auxiliary pressure plate (304), the lower end of the connecting rod (301) is connected to the filter screen (302), the inner side of the connecting rod (301) is provided with a hydraulic rod (303), and the output end of the hydraulic rod (303) is connected to the auxiliary pressure plate (304), and a stirring component (9) for stirring is provided in the middle of the tank cover (2).
2. A high pressure dissolving device according to claim 1, characterized in that: A liquid adding pipe (4) is arranged on the right side of the upper end of the tank cover (2), and there are two liquid adding pipes (4).
3. A high pressure dissolving device according to claim 1, characterized in that: A pressure gauge (5) is arranged on the left side of the upper end of the tank cover (2), and a pressure pipe (6) is arranged in front of the pressure gauge (5).
4. A high pressure dissolving device according to claim 1, characterized in that: The lower end of the tank body (1) is provided with a liquid discharge pipe (7), and a support seat (8) is installed on the outer side of the lower end of the tank body (1).
5. A high pressure dissolving device according to claim 1, characterized in that: The stirring assembly (9) comprises a rotating rod (901) and a liquid stirring rod (902), and the end of the rotating rod (901) is connected to the liquid stirring rod (902).
6. A high pressure dissolving device according to claim 5, characterized in that: A sampling assembly (10) for sampling inspection is arranged on the side of the tank body (1), and a silica gel heating plate (11) is arranged on the inner wall of the tank body (1).
7. A high pressure dissolving device according to claim 6, characterized in that: The sampling assembly (10) comprises a sampling tube (1001) and an observation tube (1002), and the end of the sampling tube (1001) is connected to the observation tube (1002).
8. A high pressure dissolving device according to claim 7, characterized in that: The sampling assembly (10) further comprises a support frame (1003) and a vacuum pump (1004); the support frame (1003) is arranged outside the observation tube (1002), and the top of the observation tube (1002) is connected to the vacuum pump (1004) via a pipeline.