Antrodia camphorata strain cultivation device
By using a transparent plate and a sealed plate structure in the Antrodia camphorata spawn cultivation device, the problem of damaging the seal when observing or handling the spawn was solved, thus achieving the stability of the cultivation environment during the observation process.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- YIBIN NIUZHANGZHI BIOTECHNOLOGY CO LTD
- Filing Date
- 2025-05-22
- Publication Date
- 2026-04-17
AI Technical Summary
Existing microbial culture devices are prone to damaging the airtightness of the chamber when observing or handling microbial cultures, which affects the stability of the culture environment.
A device for cultivating Antrodia camphorata was designed, which adopts a transparent plate and a sealing plate structure. The transparent plate is flipped to a horizontal state to seal the cultivation drawer when observed. The sealing plate ensures the airtightness of the box when the cultivation drawer is put in and taken out through a snap-fit structure and magnetic strip.
This effectively reduces the disruption to the cultivation environment when observing the growth status of the strains, ensures the stability of the cultivation environment, and avoids the exchange of internal and external environments.
Smart Images

Figure CN224124820U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of fungal culture technology, and in particular to a device for cultivating Antrodia camphorata fungi. Background Technology
[0002] With the increasing demand for natural medicines and health products, the demand for the rare medicinal fungus Antrodia camphorata is rising year by year. However, the quantity of wild Antrodia camphorata is extremely limited, making it difficult to meet market demand, and artificial cultivation has become an inevitable trend.
[0003] Regarding microbial culture devices, a search revealed, for example, a microbial propagation and cultivation device disclosed in patent publication number CN221094166U, which includes a base with a cultivation cabinet on top. A humidity sensor detects dryness within the cultivation cabinet and sends a signal to a controller to activate a water pump. Two water pipes deliver water to a spray plate, where multiple spray nozzles spray water into the cultivation cabinet to increase humidity, thus controlling the humidity level. A temperature sensor detects temperatures below a set detection range and sends a signal to the controller to activate a fan. A connecting pipe delivers air to a filter box. A heating element heats the air after two filtrations, which is then delivered through a duct to a blower plate. Multiple blowers blow hot air into the cultivation cabinet to raise the temperature, thus controlling the temperature.
[0004] Based on the above search and analysis of existing technologies, most existing microbial culture devices similar to those disclosed above employ a simulated natural environment inside a box to better cultivate the microorganisms. During the cultivation process, it is crucial to maintain the box's airtightness as much as possible to ensure a stable internal cultivation environment. However, existing microbial culture devices are prone to compromising the box's airtightness when observing or handling the microorganisms, leading to disruptions in the stability of the cultivation environment. Therefore, a new *Antrodia camphorata* microbial culture device is proposed to address these issues. Utility Model Content
[0005] The purpose of this application is to provide a device for cultivating Antrodia camphorata to solve the problems mentioned in the background art.
[0006] To achieve the above objectives, this application provides the following technical solution: a cultivation device for Antrodia camphorata, comprising a cultivation box, an environmental simulation device installed at the top of the cultivation box, and multiple cultivation trays horizontally slidably installed at the bottom of the cultivation box. Multiple transparent plates are connected to the side of the cultivation box where the cultivation trays slide outwards, and the multiple transparent plates are arranged in a one-to-one correspondence with the multiple cultivation trays. When the transparent plates are in a horizontal state, the horizontal plane of their lower end faces coincides with the horizontal plane of the upper end faces of the cultivation trays.
[0007] As a further supplement to this solution, the transparent plate is hinged to the side of the incubator, and both the transparent plate and the top of the incubator are equipped with mutually attractive magnetic plates.
[0008] As a further supplement to this solution, handles are fixed to both the transparent plate and the incubation tray.
[0009] As a further supplement to this solution, the inner side of the incubator is provided with multiple sealing plates, which correspond one-to-one with multiple incubation drawers. The sealing plates are located on the side where the incubation drawers slide into the incubator, and multiple telescopic rods are connected between the sealing plates and the incubator.
[0010] A snap-fit structure is provided between the sealing plate and the incubation tray.
[0011] As a further supplement to this solution, the snap-fit structure includes a rubber block embedded in the side end of the incubation tray and a snap-fit ball fixed to the side end of the sealing plate. The rubber block is provided with a snap-fit groove that snaps into the snap-fit ball.
[0012] As a further supplement to this solution, the sealing plate and the inner wall of the incubator near the sliding side of the incubator drawer are both equipped with two mutually attractive magnetic plates.
[0013] As a further supplement to this solution, a display screen is installed on the outer wall of the incubator, and the display screen is electrically connected to the environmental simulation device.
[0014] In summary, the technical effects and advantages of this utility model are as follows:
[0015] 1. In this utility model, by setting a transparent plate, when it is necessary to check the growth status of the fungal strain in the early stage of germination of Antrodia camphorata spores, the transparent plate can be flipped to a horizontal state. At this time, when the cultivation tray is pulled outward, the upper surface of the cultivation tray is sealed by the transparent plate, which greatly reduces the damage to the internal cultivation environment. The operator can observe the growth status of the fungal strain in the cultivation tray through the transparent plate.
[0016] 2. In this utility model, through the cooperation of the sealing plate and the snap-fit structure, when the incubation drawer is opened, the snap-fit ball is snapped by the snap-fit groove, and moves with the sealing plate along with the incubation drawer. Finally, under the limiting action on the other side of the incubator, it separates from the incubation drawer and stays at the opening of the incubator where the incubation drawer slides out. Under the action of the magnetic suction piece two, it is stably attached to the incubator, and the opening is stably sealed, avoiding the exchange of the internal and external environment of the incubator when changing or taking out the incubation drawer. Attached Figure Description
[0017] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this application. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0018] Figure 1 This is a schematic diagram of the three-dimensional structure in the cultivation state in this embodiment;
[0019] Figure 2 for Figure 1 A schematic diagram of the side cross-section structure;
[0020] Figure 3 for Figure 2 Enlarged structural diagram at point A in the diagram;
[0021] Figure 4 This is a three-dimensional structural diagram of the incubation tray and transparent plate in this embodiment.
[0022] Figure 5 for Figure 4 A schematic diagram of the side cross-section structure.
[0023] In the diagram: 1. Incubator; 2. Environmental simulation device; 3. Incubation drawer; 4. Transparent plate; 5. Display screen; 6. Handle; 7. Magnetic suction plate one; 8. Sealing plate; 9. Multi-section telescopic rod; 10. Rubber block; 1001. Snap-fit groove; 11. Snap-fit ball; 12. Magnetic suction plate two. Detailed Implementation
[0024] 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.
[0025] Example: Reference Figure 1-5 The device for cultivating Antrodia camphorata includes an incubation box 1. An environmental simulation device 2 is installed at the top of the incubation box 1. Multiple incubation trays 3 are horizontally slidably installed at the bottom of the incubation box 1. The environmental simulation device 2 includes conventional detection modules (such as temperature sensors, humidity sensors, etc.), a water mist generator, a supplementary light, a temperature control device, etc., used to simulate the natural growth environment of the fungus.
[0026] The incubator 1 is equipped with a display screen 5 on its outer wall. The display screen 5 is electrically connected to the environmental simulation device 2 and is used to display various environmental data inside the incubator 1 for the convenience of operators.
[0027] It should be further noted that Antrodia camphorata spores require a dark environment in the early stages of germination. Dark conditions are more conducive to spore germination, while light may inhibit spore activation and the formation of primary hyphae. Therefore, light-proof conditions should be ensured in the early stages of cultivation until the hyphae have initially grown. The cultivation box 1 is preferably made of opaque material.
[0028] To facilitate observation of the growth status of the microorganisms under sealed conditions, the incubation box 1 is connected to multiple transparent plates 4 on the side of the incubation drawer 3 that slides outward. The multiple transparent plates 4 are set one-to-one with the multiple incubation drawers 3. When the transparent plates 4 are in a horizontal state, the horizontal plane of their lower end faces coincides with the horizontal plane of the upper end face of the incubation drawer 3. At this time, when the incubation drawer 3 is pulled outward, the upper end face of the incubation drawer 3 is sealed by the transparent plates 4, which greatly reduces the damage to the internal incubation environment. The operator can observe the growth status of the microorganisms in the incubation drawer 3 through the transparent plates 4.
[0029] To facilitate the storage of the transparent plate 4, the transparent plate 4 is hinged to the side of the incubator 1. Both the transparent plate 4 and the top of the incubator 1 are equipped with magnetic suction plates 7 that attract each other. Both the transparent plate 4 and the incubator 3 are fixed with handles 6 to facilitate opening and closing of the transparent plate 4 and the incubator 3.
[0030] Considering that changing the culture tray 3 may cause an exchange of the internal and external environments of the incubator 1, multiple sealing plates 8 are provided on the inner side of the incubator 1. The multiple sealing plates 8 are provided one-to-one with the multiple culture trays 3. The sealing plate 8 is located on the side where the culture tray 3 slides into the incubator 1. Multiple telescopic rods 9 are connected between the sealing plate 8 and the incubator 1. A snap-fit structure is provided between the sealing plate 8 and the culture tray 3. Specifically, the snap-fit structure includes a rubber block 10 embedded in the side of the culture tray 3 and a snap-fit ball 11 fixed to the side of the sealing plate 8. The rubber block 10 is provided with a snap-fit groove 1001 that snaps into the snap-fit ball 11.
[0031] like Figure 2 and Figure 3 As shown, when the incubation tray 3 is in the closed state, the snap-fit ball 11 is squeezed and snapped into the snap-fit groove 1001. When the incubation tray 3 is opened, the snap-fit ball 11, under the snap-fit action of the snap-fit groove 1001, moves with the sealing plate 8 along with the incubation tray 3. Finally, under the limiting action on the other side of the incubator 1, it separates from the incubation tray 3 and stays at the opening of the incubator 1 where the incubation tray 3 slides out, and seals the opening to avoid the exchange of the internal and external environment of the incubator 1 caused by changing the incubation tray 3.
[0032] To ensure that the sealing plate 8 can be stably attached to the incubator 1 during the replacement of the incubation tray 3, magnetic suction plates 2 12 that attract each other are installed on the inner wall of both the sealing plate 8 and the incubator 1 near the sliding side of the incubation tray 3. Under the action of the magnetic suction plates 2 12, the sealing plate 8 is stably attached to the incubator 1, thereby ensuring its stable sealing effect.
[0033] The working principle of this utility model is as follows: Antrodia camphorata spawn is placed in a cultivation tray 3 for cultivation. During the cultivation process, an environmental simulation device 2 is used to simulate the natural growth environment of the spawn, including strict control of factors such as temperature, humidity, and light.
[0034] When it is necessary to check the growth status of the fungal strain in the early stage of germination of Antrodia camphorata spores, the transparent plate 4 can be flipped to a horizontal position. At this time, when the cultivation tray 3 is pulled outward, the upper surface of the cultivation tray 3 is sealed by the transparent plate 4, which greatly reduces the damage to the internal cultivation environment. The operator can observe the growth status of the fungal strain in the cultivation tray 3 through the transparent plate 4.
[0035] In addition, when the incubation tray 3 is opened, the snap-fit ball 11, under the snap-fit action of the snap-fit groove 1001, moves along with the sealing plate 8 as the incubation tray 3 moves. Finally, under the limiting action on the other side of the incubator 1, it separates from the incubation tray 3 and stays at the opening of the incubator 1 where the incubation tray 3 slides out. Under the action of the magnetic suction piece 12, it is stably attached to the incubator 1, and the opening is stably sealed to avoid the exchange of the internal and external environment of the incubator 1 when the incubation tray 3 is replaced.
[0036] Finally, it should be noted that the above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Although the present utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.
Claims
1. A device for cultivating Ganoderma annosum, comprising a cultivation box (1), characterized in that, An environmental simulation device (2) is installed at the top inner end of the incubator (1). Multiple incubation trays (3) are horizontally slidably installed at the bottom end of the incubator (1). Multiple transparent plates (4) are connected to the side of the incubator (1) where the incubator (1) slides outward. The multiple transparent plates (4) are arranged one-to-one with the multiple incubation trays (3). When the transparent plate (4) is in a horizontal state, the horizontal plane of its lower end surface coincides with the horizontal plane of the upper end surface of the incubation tray (3).
2. The device for cultivating the Ganoderma annosum strain according to claim 1, wherein: The transparent plate (4) is hinged to the side of the incubator (1), and magnetic suction plates (7) that attract each other are installed on the top of both the transparent plate (4) and the incubator (1).
3. The device for cultivating the Ganoderma annosum of claim 2, wherein: Both the transparent plate (4) and the incubation tray (3) are fixed with handles (6).
4. The device for cultivating the Ganoderma annosum of claim 1, wherein: The inner side of the incubator (1) is provided with multiple sealing plates (8), and the multiple sealing plates (8) are provided in correspondence with the multiple incubation trays (3). The sealing plate (8) is located on the side where the incubation tray (3) slides into the incubator (1). Multiple telescopic rods (9) are connected between the sealing plate (8) and the incubator (1). A snap-fit structure is provided between the sealing plate (8) and the incubation tray (3).
5. The device for cultivating the Ganoderma annosum of claim 4, wherein: The snap-fit structure includes a rubber block (10) embedded in the side end of the cultivation tray (3) and a snap-fit ball (11) fixed to the side end of the sealing plate (8). The rubber block (10) is provided with a snap-fit groove (1001) that snaps into the snap-fit ball (11).
6. The device for cultivating the Ganoderma annosum of claim 5, wherein: Both the sealing plate (8) and the inner wall of the incubator (1) near the sliding side of the incubator (3) are equipped with mutually attractive magnetic plates (12).
7. The device for cultivating the Ganoderma annosum of claim 1, wherein: A display screen (5) is installed on the outer wall of the incubator (1), and the display screen (5) is electrically connected to the environmental simulation device (2).
Citation Information
Patent Citations
Strain propagation cultivation device
CN221094166U