Energy-saving traditional Chinese medicine drying system

By designing a cap with adjustable vent holes, the problem of multiple caps caused by fixed vent holes was solved, enabling flexible adjustment of the cell culture environment and reducing external influences, thus improving the convenience and efficiency of cell culture.

CN224313541UActive Publication Date: 2026-06-02HUBEI JURUI BIOTECHNOLOGY CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
HUBEI JURUI BIOTECHNOLOGY CO LTD
Filing Date
2025-06-27
Publication Date
2026-06-02

AI Technical Summary

Technical Problem

In the existing technology, the vent holes of the vent cap are fixed, which requires the use of multiple caps to meet the culture needs of different cells, resulting in complicated production and management.

Method used

A bottle cap was designed with vent holes divided into multiple regions, each with a gradually increasing pore size. The vent holes can be flexibly adjusted through a combination of a rotating plate and a pin. Combined with the design of the sealing area and sampling port, it can meet the diverse needs of cell culture.

Benefits of technology

It enables rapid and convenient adjustment of permeability according to cell needs, reduces the types of bottle caps, reduces the impact of the external environment on cells, and improves the flexibility and efficiency of cell culture.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN224313541U_ABST
    Figure CN224313541U_ABST
Patent Text Reader

Abstract

This utility model relates to the field of traditional Chinese medicine drying technology, specifically an energy-saving traditional Chinese medicine drying system. It includes a bottle body with a cap threaded to the top. The cap has vent holes and a sealing area. The vent holes are divided into multiple regions, each with a gradually increasing diameter. A rotating plate is rotatably mounted on the top of the cap, with a fan-shaped notch extending through its center. The cap's top features vent holes and a sealing area. Operators can rotate the rotating plate according to specific cell culture needs, aligning the fan-shaped notch with the required vent holes or sealing area. This satisfies diverse cell culture requirements without the need for multiple vent caps. Adjustment is simple and convenient. In closed mode, the sealing plug is removed, and a pipette is used to take samples through the sampling port. In this case, the cell culture environment inside the bottle needs to be isolated from the outside environment. Sampling through the smaller sampling port eliminates the need to open the cap, reducing the impact of the external environment on the cells inside the bottle.
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Description

Technical Field

[0001] This utility model relates to the field of traditional Chinese medicine drying technology, specifically an energy-saving traditional Chinese medicine drying system. Background Technology

[0002] Different cells require different culture conditions. Some cells need to be cultured in a sealed environment, such as CO2-dependent cells, while others need to be cultured in a permeable environment, such as CHO cells, which require increased dissolved oxygen and may require a permeable cap. Therefore, rotating bottles need to be equipped with multiple caps. Moreover, different cells require different levels of permeability. However, in the current technology, the permeable caps have fixed vent holes, so more types of caps are needed, making production and storage more complicated. Utility Model Content

[0003] To address the aforementioned issues, this application provides an energy-saving traditional Chinese medicine drying system that solves the problem of diverse cell culture needs and the requirement to equip numerous bottle caps due to fixed vent holes in the bottle caps.

[0004] An energy-saving traditional Chinese medicine drying system includes a bottle body, with a bottle cap threadedly connected to the top of the bottle body. The bottle cap has a vent hole and a sealing area on the top.

[0005] The vent is divided into multiple zones, with the pore size of each zone gradually increasing.

[0006] A rotating plate is mounted on the top of the bottle cap and has a fan-shaped notch running through the middle.

[0007] In addition, a sampling hole is provided through the top of the bottle cap, and a sealing plug is slidably installed in the middle of the sampling hole, with the sampling hole located in the middle of the sealing area.

[0008] In addition, the top of the bottle cap has multiple fixing holes, which correspond one-to-one with the ventilation holes in different areas. A pin is slidably installed in the middle of the fixing hole, and the pin slides through the rotating plate. A spring is fixedly installed between the rotating plate and the pin.

[0009] In addition, multiple positioning rods are evenly fixedly installed on the outside of the bottle cap, and the positioning rods correspond one-to-one with the fixing holes.

[0010] In addition, the outer side of the positioning rod is frosted.

[0011] In addition, an anti-slip pad is embedded in the bottom of the bottle.

[0012] In addition, the anti-slip mat is made of silicone.

[0013] The beneficial effects of this utility model are as follows:

[0014] The present invention discloses an energy-saving Chinese medicine drying system. The top of the bottle cap is provided with a vent and a sealing area. According to the specific needs of cell culture, the operator can rotate the rotating plate so that the fan-shaped notch matches the vent or sealing area of ​​the required area, which can meet the diverse needs of cell culture. There is no need to equip multiple vent caps, and the adjustment is simple, fast and convenient.

[0015] In closed mode, staff remove the sealing plug and use a pipette to take a sample through the sampling port. At this time, the cell culture environment inside the bottle needs to be isolated from the outside world. Taking a sample through a smaller sampling port eliminates the need to open the bottle cap, which reduces the impact of the external environment on the cells inside the bottle. Attached Figure Description

[0016] The present invention will be further described below with reference to the accompanying drawings and embodiments.

[0017] Figure 1 This utility model provides an overall structural schematic diagram of an energy-saving traditional Chinese medicine drying system.

[0018] Figure 2 A schematic diagram of the bottom structure of an energy-saving traditional Chinese medicine drying system provided by this utility model;

[0019] Figure 3 A schematic diagram of the bottle cap connection for an energy-saving traditional Chinese medicine drying system provided by this utility model;

[0020] Figure 4 A schematic diagram of the top structure of the bottle cap of an energy-saving traditional Chinese medicine drying system provided by this utility model.

[0021] In the picture:

[0022] 1. Bottle body; 2. Bottle cap; 3. Anti-slip pad; 4. Vent hole; 5. Sealing area; 6. Fixing hole; 7. Sampling hole; 8. Sealing plug; 9. Positioning rod; 10. Rotating plate; 11. Fan-shaped notch; 12. Spring; 13. Pin. Detailed Implementation

[0023] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the present utility model will be briefly introduced below in conjunction with the accompanying drawings and descriptions of the embodiments or the prior art. Obviously, the following description of the structure of the accompanying drawings is only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort. It should be noted that the description of these embodiments is used to help understand this utility model, but does not constitute a limitation on this utility model.

[0024] like Figure 1-4As shown, this utility model embodiment provides an energy-saving Chinese medicine drying system, including a bottle body 1, a bottle cap 2 threadedly connected to the top of the bottle body 1, and a vent hole 4 and a sealing area 5 provided on the top of the bottle cap 2;

[0025] The ventilation holes are divided into multiple regions, with the pore size of each region gradually increasing to meet the culture needs of more types of cells.

[0026] The rotating plate 10 is rotatably mounted on the top of the bottle cap 2, with a fan-shaped notch 11 running through the middle to facilitate switching between ventilation and sealing modes, as well as different levels of ventilation modes.

[0027] In this embodiment, the air permeability level can be switched by rotating the rotating plate 10 according to the specific needs of cell culture, so that the fan-shaped notch 11 matches the air vent 4 or sealing area 5 of the required area, which can meet the diverse cell culture needs, without the need for multiple air vent caps, and the adjustment is simple, fast and convenient.

[0028] Furthermore, the top of the bottle cap 2 is provided with multiple fixing holes 6, which correspond one-to-one with the ventilation holes 4 in different areas. A pin 13 is slidably installed in the middle of the fixing hole 6. The pin 13 and the fixing hole 6 cooperate to fix the position of the rotating plate 10. The pin 13 slides through the rotating plate 10. A spring 12 is fixedly installed between the rotating plate 10 and the pin 13, which can reduce the possibility that the pin 13 will shake and disengage from the fixing hole 6 due to the rotation of the bottle body 1.

[0029] In this embodiment, before rotating the rotating plate 10, the worker pulls the pin 13 upward, the spring 12 is stretched, the bottom of the pin 13 disengages from the fixing hole 6, and then the rotating plate 10 is rotated through the pin 13.

[0030] After the ventilation mode is adjusted, the staff releases the pin 13. The bottom of the pin 13 enters the fixing hole 6 under the elastic force of the spring 12, thus fixing the rotating plate 10. During the subsequent rotation of the rotating bottle, the position of the rotating plate 10 remains unchanged, maintaining the set ventilation efficiency.

[0031] Furthermore, multiple positioning rods 9 are evenly fixedly installed on the outer side of the bottle cap 2. The positioning rods 9 correspond one-to-one with the fixing holes 6, which makes it easy for the staff to know the rotation angle of the rotating plate 10 and makes it easier for the pin 13 to be inserted into the fixing hole 6. The outer side of the positioning rods 9 is frosted to increase the friction between the bottle cap 2 and the staff's palm, making it easier for the staff to rotate the bottle cap 2.

[0032] Furthermore, a sampling hole 7 is provided through the top of the bottle cap 2 to facilitate the sampling and testing of cells inside the bottle by staff. A sealing plug 8 is slidably installed in the middle of the sampling hole 7, and the sampling hole 7 is located in the middle of the sealing area 5.

[0033] In this embodiment, sampling may be required during cell culture. In the ventilated mode, the cell culture environment inside the bottle is always connected to the external environment. The staff can directly rotate the bottle cap 2 to open it and use a pipette to take a sample. In the closed mode, the staff removes the sealing plug 8 and uses a pipette to take a sample through the sampling hole 7. At this time, the cell culture environment inside the bottle needs to be isolated from the outside. Sampling is done through the smaller sampling hole 7 without opening the bottle cap 2, which can reduce the impact of the external environment on the cells inside the bottle.

[0034] Furthermore, an anti-slip pad 3 is embedded in the bottom of the bottle body 1 to increase the friction between the bottle body 1 and the rotating parts, making the bottle body 1 less prone to slipping. The anti-slip pad 3 is made of silicone, which is heat-resistant, can be sterilized by high pressure, and is chemically inert, so it does not react with the bottle body 1. At the same time, silicone is soft and has strong friction, making it suitable for rotating bottles.

[0035] Specific working methods:

[0036] To switch the air permeability level, staff can pull the pin 13 upwards according to the specific needs of cell culture. The spring 12 is stretched, and the bottom of the pin 13 disengages from the fixing hole 6. By rotating the rotating plate 10 through the pin 13, the fan-shaped notch 11 can be matched with the air permeability hole 4 or the sealing area 5 in the required area. This can meet diverse cell culture needs without the need for multiple air permeability caps. Moreover, the adjustment is simple, fast, and convenient.

[0037] When the staff loosens the pin 13, the bottom of the pin 13 enters the fixing hole 6 under the elastic force of the spring 12, thus fixing the rotating plate 10. During the subsequent rotation of the rotating bottle, the position of the rotating plate 10 remains unchanged, maintaining the set air permeability efficiency.

[0038] During cell culture, sampling may be required. In the permeable mode, the cell culture environment inside the bottle is always connected to the external environment. The staff can directly rotate the cap 2 to open it and use a pipette to take a sample. In the closed mode, the staff removes the sealing plug 8 and uses a pipette to take a sample through the sampling hole 7. At this time, the cell culture environment inside the bottle needs to be isolated from the outside environment. Sampling is done through the smaller sampling hole 7 without opening the cap 2, which can reduce the impact of the external environment on the cells inside the bottle.

[0039] Finally, it should be noted that the above description is merely a preferred embodiment of this utility model and is not intended to limit the scope of protection of this utility model. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this utility model should be included within the scope of protection of this utility model.

Claims

1. An energy-saving traditional Chinese medicine drying system, comprising a bottle body (1), wherein a bottle cap (2) is threadedly connected to the top of the bottle body (1), characterized in that: The bottle cap (2) is provided with a vent hole (4) and a sealing area (5) at the top; The vent (4) is divided into multiple regions, and the pore size of each region gradually increases; A rotating plate (10) is rotatably mounted on the top of the bottle cap (2), with a fan-shaped notch (11) running through the middle.

2. The energy-saving traditional Chinese medicine drying system according to claim 1, characterized in that: The top of the bottle cap (2) has a through-hole (7), and a sealing plug (8) is slidably installed in the middle of the sampling hole (7). The sampling hole (7) is located in the middle of the sealing area (5).

3. The energy-saving traditional Chinese medicine drying system according to claim 1, characterized in that: The bottle cap (2) has multiple fixing holes (6) on its top. The fixing holes (6) correspond one-to-one with the ventilation holes (4) in different areas. A pin (13) is slidably installed in the middle of the fixing hole (6). The pin (13) slides through the rotating plate (10). A spring (12) is fixedly installed between the rotating plate (10) and the pin (13).

4. The energy-saving traditional Chinese medicine drying system according to claim 3, characterized in that: Multiple positioning rods (9) are evenly fixedly installed on the outside of the bottle cap (2), and the positioning rods (9) correspond one-to-one with the fixing holes (6).

5. The energy-saving traditional Chinese medicine drying system according to claim 4, characterized in that: The outer side of the positioning rod (9) is sanded.

6. The energy-saving traditional Chinese medicine drying system according to claim 1, characterized in that: The bottom of the bottle body (1) is fitted with an anti-slip pad (3).

7. The energy-saving traditional Chinese medicine drying system according to claim 6, characterized in that: The anti-slip mat (3) is made of silicone.