Plant juice filling device and juice filling method thereof
By using a vacuum device to form a vacuum state through a plant juicer, the problems of large damage, low efficiency and pollution in traditional plant juice acquisition methods are solved, and stable, continuous juice extraction and efficient production are achieved.
Patent Information
- Application Number
- CN202511015964.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-07-23
- Publication Date
- 2025-09-12
AI Technical Summary
Traditional methods of obtaining plant juice cause great damage to plants, have low collection efficiency, high costs, and pollute the environment, making it difficult to achieve continuous and stable juice acquisition.
A plant juicer is used, and a vacuum device is used to form a vacuum state, so that an air pressure difference is generated between the juice diameter in the plant body and the transport tube, so that the juice can flow automatically under self-control. The juice is stored in a refrigerator to ensure continuous and stable extraction.
It achieves stable and continuous extraction of plant juice, reduces damage to plants and environmental pollution, reduces costs, and improves collection efficiency and product quality.
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Figure CN120615652A_ABST
Abstract
Description
Technical Field
[0001] The invention belongs to the technical field of plant juice filling, in particular to a plant juice filling device and a juice filling method thereof. Background Art
[0002] Plant juice, containing a variety of elements and minerals, has a long history of utilization throughout human history. For a long time, people primarily obtained plant juice through open-cut cutting and releasing operations on plant stems, such as tapping rubber trees for rubber juice and drilling holes in pine trees for oil. With technological advancements, the methods for extracting plant juice have gradually expanded, including pressing, distillation, solvent extraction, and physical collection. These methods provide avenues for obtaining plant juice products in different scenarios.
[0003] However, traditional methods of obtaining plant juice have significant drawbacks. Open cutting and releasing operations not only cause significant damage to the plants, which can easily lead to growth inhibition due to wound infection, but are also significantly affected by the natural environment, resulting in low juice collection efficiency and difficulty in achieving continuous and stable collection. The pressing method easily destroys the active ingredients in the plant juice during the extraction process, affecting product quality. Distillation and solvent extraction methods are complex, require a lot of energy and chemical reagents, have high investment costs, and may cause environmental pollution. Although physical collection methods are relatively gentle, they also suffer from the problems of small collection volumes and cumbersome processes. Summary of the Invention
[0004] In order to solve the above problems, the present invention provides a plant juicer and a juice filling method thereof, which utilizes the pressure difference between the juice diameter in the plant body and the transport tube to make the juice automatically control direct flow under a vacuum state, and the juice is filled stably and continuously. It can be widely used, requires little investment, and has high and stable output.
[0005] In order to achieve the above functions, the technical solution adopted by the present invention is as follows: a plant juicer includes a connecting pipe, a delivery tube and a vacuum device, the connecting pipe is connected to the delivery tube, the inner diameter of the connecting pipe is 6-8mm, the inner diameter of the delivery tube is 4mm or less, the delivery tube is connected to the vacuum device, and the connecting pipe is equipped with a buckle.
[0006] Preferably, the vacuum device is an airbag and a one-way valve. The airbag is connected to the delivery tube, and the one-way valve is connected to the airbag. When the one-way valve is opened, the airbag is used to evacuate the gas in the delivery tube and the connector tube to form a vacuum state.
[0007] Preferably, the vacuum device is a juice sucker, which is connected to the conduit and is used to evacuate the gas in the conduit and the connector tube to form a vacuum state.
[0008] A method for filling a plant juicer comprises the following steps:
[0009] (1) Tightly connect the joint pipe, the delivery tube, and the vacuum device to form a juicer, and then prepare the refrigerator;
[0010] (2) Use a caliper to select a branch from the previous year that matches the joint, cut off the upper part of the branch at an angle of 8 mm, and point the branch downward;
[0011] (3) Socketing the joint tube of the juicer assembled in step (1) onto the obliquely cut branch, and fastening it with a buckle, and then using a vacuum device to evacuate the gas in the delivery tube and the joint tube to form a vacuum state;
[0012] (4) Place the juicer and the remaining portion at the tree height or lowest point in the terrain into a cooler;
[0013] (5) Monitor the extracted plant juice and process it as needed.
[0014] The present invention adopts the above solution to achieve the following beneficial effects:
[0015] 1. The vacuum device can effectively evacuate the gas in the delivery tube and the joint tube to form a stable vacuum state. Under the action of negative pressure, the juice can flow smoothly, reducing residue and blockage, and ensuring the juicing effect;
[0016] 2. The pressure difference between the sap runoff in the plant body and the transport tube causes the sap to flow automatically under vacuum, with good stability and a long-term flow, ensuring the continuity of sap filling;
[0017] 3. During the sap filling process, place the sap filler and the remaining part at the tree height or the lowest point of the terrain into a refrigerator. This can provide a suitable storage environment for the plant sap, reduce the impact of external factors on the sap quality, and facilitate subsequent monitoring and processing of the sap;
[0018] 4. It can obtain original ecological green products with stable output, reduce the impact of factors such as plants and climate on product production, and has low investment and high output. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] Figure 1 It is a structural schematic diagram of the plant juicer of the present invention.
[0020] Among them, 1. Connecting tube, 11. Buckle, 2. Conduit, 3. Vacuum device, 31. Air bag, 311. One-way valve, 32. Juice aspirator. DETAILED DESCRIPTION
[0021] The technical solution of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the embodiments described are only some embodiments of the present invention, not all embodiments. All other embodiments obtained by ordinary technicians in this field based on the embodiments of the present invention without making any creative efforts shall fall within the scope of protection of the present invention.
[0022] The plant juicer and juice filling method provided by the present invention are best applied to woody vines in the embodiments.
[0023] Example 1
[0024] like Figure 1 As shown, the plant juicer of the present invention includes a connecting tube 1, a delivery tube 2 and a vacuum device 3. The connecting tube 1 is connected to the delivery tube 2. The inner diameter of the connecting tube 1 is 8 mm, and the inner diameter of the delivery tube 2 is 4 mm. The delivery tube 2 is connected to the vacuum device 3. The connecting tube 1 is provided with a buckle 11. The vacuum device 3 is an airbag 31 and a one-way valve 311. The airbag 31 is connected to the delivery tube 2, and the one-way valve 311 is connected to the airbag 31.
[0025] A method for filling a plant juicer comprises the following steps:
[0026] (1) Tightly connect the connector tube 1, the delivery tube 2, and the vacuum device 3 consisting of the air bag 31 and the one-way valve 311 to form a juicer, ensuring that there is no air leakage at the connection. Then prepare a refrigerator set at 4°C;
[0027] (2) Use a caliper to select a branch from the previous year with a diameter that matches the 8mm joint tube 1, and use a sharp knife to cut off the upper part of the branch at an angle of 8mm, so that the cross section is at a 45° angle, and place the branch facing downward;
[0028] (3) Attach the joint tube 1 of the juicer assembled in step (1) to the oblique section of the branch, so that the joint tube 1 completely covers the oblique section of the branch, and secure it with the buckle 11 to ensure that there is no gap. Then, open the one-way valve 311, repeatedly squeeze the airbag 31 by hand, and use the rebound force of the airbag 31 to evacuate the gas in the delivery tube 2 and the joint tube 1 to form a vacuum state. Then, close the one-way valve 311 to maintain the negative pressure.
[0029] (4) Place the juicer and the remaining part of the tree at the lowest point into the prepared refrigerator to keep the branches and juicer in a low-temperature environment;
[0030] (5) At regular intervals, the extracted plant juice is taken out for monitoring, and the juice is filtered, diluted, or otherwise processed as needed based on the monitoring results.
[0031] Example 2
[0032] In the plant juicer of this embodiment, the inner diameter of the joint tube 1 is 6 mm, the inner diameter of the delivery tube 2 is 3 mm, the vacuum device 3 is a juicer 32, and the juicer 32 is connected to the delivery tube 2. The rest of the structure is the same as that of Example 1.
[0033] A method for filling a plant juicer comprises the following steps:
[0034] (1) Tightly connect the joint pipe 1, the delivery tube 2, and the juice sucker 32 to form a juicer. After checking that all components are firmly connected, prepare a refrigerator with a temperature of 2°C;
[0035] (2) Use a caliper to select a branch from the previous year with a diameter that matches the 6mm joint tube 1. Use a sharp knife to cut off the upper part of the branch at an angle of 8mm, so that the cross section is at a 45° angle, and place the branch facing downward;
[0036] (3) The joint tube 1 of the juicer assembled in step (1) is connected to the oblique section of the branch so that the joint tube 1 completely covers the oblique section of the branch and is fastened with the buckle 11 to ensure that there is no gap. Then, the juicer 32 is operated to empty the gas in the delivery tube 2 and the joint tube 1 to form a vacuum state and maintain it;
[0037] (4) Place the juicer and the remaining part of the tree at the lowest point into the prepared refrigerator to keep the branches and juicer in a low-temperature environment;
[0038] (5) The extracted plant juice is monitored at regular intervals and processed accordingly based on the monitoring data.
[0039] The present invention and its embodiments are described above. This description is not restrictive. The drawings show only one embodiment of the present invention, and the actual structure is not limited thereto. In short, if a person skilled in the art is inspired by this and, without departing from the purpose of the present invention, designs structures and embodiments similar to this technical solution without inventiveness, they shall fall within the scope of protection of the present invention.
Claims
1. Plant juicer, characterized in that: The invention comprises a joint pipe (1), a delivery tube (2) and a vacuum pumping device (3); the joint pipe (1) is connected to the delivery tube (2); the inner diameter of the joint pipe (1) is 6-8 mm, the inner diameter of the delivery tube (2) is 4 mm or less, the delivery tube (2) is connected to the vacuum pumping device (3), and the joint pipe (1) is provided with a buckle (11).
2. The plant juicer according to claim 1, characterized in that The vacuum device (3) comprises an air bag (31) and a one-way valve (311). The air bag (31) is connected to the delivery tube (2), and the one-way valve (311) is connected to the air bag (31).
3. The plant juicer according to claim 1, characterized in that The vacuum device (3) is a juice sucker (32), and the juice sucker (32) is connected to the delivery tube (2).
4. The method for filling a plant juicer according to any one of claims 1 to 3, characterized in that: The steps include: (1) Tightly connect the joint pipe (1), the delivery tube (2) and the vacuum device (3) to form a juicer, and then prepare the refrigerator; (2) Use a caliper to select a branch from the previous year that matches the joint, cut off the upper part of the branch at an angle of 8 mm, and point the branch downward; (3) The joint pipe (1) of the juicer assembled in step (1) is connected to the obliquely cut branch and fixed with a buckle (11), and then the gas in the delivery tube (2) and the joint pipe (1) is evacuated by using the vacuum device (3) to form a vacuum state; (4) Place the juicer and the remaining portion at the tree height or lowest point in the terrain into a cooler; (5) Monitor the extracted plant juice and process it as needed.
Citation Information
Patent Citations
Plant juice sampling and detecting device and method
CN113777228A
Collecting device for plant juice
CN216207823U