Temperature and humidity regulation and control equipment for strain cultivation

By using a gas guiding mechanism that combines a servo motor and fan blades, along with a heating rod, a semiconductor cooling plate, and an atomizing frame, the problem of inaccurate temperature and humidity control in mushroom houses is solved, enabling precise adjustment of temperature and humidity within the mushroom house, thus improving the efficiency of spawn cultivation and the practicality of the equipment.

CN223879751UActive Publication Date: 2026-02-06ZHEJIANG QINGFENG MODERN AGRICULTURAL EQUIPMENT CO LTD
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Patent Information

Application Number
CN202423304430.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-31
Publication Date
2026-02-06
Estimated Expiration
2034-12-31

AI Technical Summary

Technical Problem

Existing mushroom house temperature and humidity control equipment is difficult to coordinate effectively, resulting in inaccurate temperature and humidity control, increased unnecessary cost waste, and negatively impacting the effectiveness of spawn cultivation.

Method used

A gas guiding mechanism using a servo motor and fan blades, combined with a heating rod, semiconductor cooling plate, and atomizing frame, along with the design of a water pump and connecting pipes, enables precise control of temperature and humidity in the mushroom house.

Benefits of technology

It enables precise regulation of temperature and humidity in the mushroom house, improving the efficiency of spawn cultivation and the practicality of the equipment, while reducing resource waste.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses temperature and humidity regulation and control equipment for strain cultivation, and relates to the technical field of strain cultivation. The device comprises a regulation and control bin and air inlet ports uniformly formed in one side of the regulation and control bin, and further comprises a gas guide mechanism arranged on the side, close to the air inlet ports, in the regulation and control bin; the water bin is arranged on one side in the regulation and control bin, a water pump part is arranged in the water bin, and the output end of the water pump part is connected with a connecting pipe; the left side and the right side of the connecting pipe are connected with a refrigerating mechanism and a humidity adjusting mechanism correspondingly. According to the mushroom house, the servo motor is arranged to be matched with the fan blades, gas on the outer side can be guided, when the gas passes through the heating rod, the gas can be heated, the temperature in the mushroom house can be adjusted and controlled, meanwhile, if the humidity needs to be controlled, water can be guided into the atomization port in the atomization frame through the water pump piece, and the atomization effect is improved. And therefore, the temperature and the humidity in the mushroom house can be accurately controlled.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to the technical field of strain cultivation, especially relates to a temperature and humidity control equipment for strain cultivation. BACKGROUND

[0002] Strains are microorganisms used as active cell catalysts in fermentation processes, including bacteria, actinomycetes, yeasts and molds. They are derived from a large number of microorganisms in nature, and useful strains are isolated and screened from them, and then improved and stored for production. Gold ear cultivation must prepare mixed strains containing gold ear mycelium or yeast-like conidia and phellinus.

[0003] When cultivating strains, the temperature and humidity in the mushroom house need to be accurately controlled. The existing mushroom house needs to use multiple heating or humidifying devices to control the temperature and humidity inside. However, due to the difficulty in close cooperation between the devices, not only the temperature and humidity in the mushroom house are affected, but also unnecessary cost waste is caused, resulting in normal cultivation of gold ear fungus. UTILITY MODEL CONTENT

[0004] In view of the above-mentioned shortcomings of the prior art, the utility model provides a temperature and humidity control equipment for strain cultivation, which can effectively solve the problems of the prior art.

[0005] To solve the above technical problems, the utility model is realized by the following technical scheme:

[0006] The utility model is a temperature and humidity control equipment for strain cultivation, which comprises a control bin and an air inlet port uniformly arranged on one side of the control bin, and further comprises:

[0007] A gas guiding mechanism is arranged on one side of the control bin close to the air inlet port for guiding the gas;

[0008] A water bin is arranged on one side of the control bin, and a water pump is arranged in the water bin. The output end of the water pump is connected with a connecting pipe, and the connecting pipe is arranged in a "T" shape.

[0009] The left and right sides of the connecting pipe are respectively connected with a refrigeration mechanism and a humidity adjusting mechanism for controlling the temperature and humidity in the mushroom house;

[0010] A temperature and humidity detection assembly is arranged on one side of the control bin away from the air inlet port for detecting the temperature and humidity of the exhaust gas.

[0011] Further, the gas guiding mechanism comprises a servo motor, a fan blade and a guide slope. The servo motor is fixed on one side of the control bin close to the air inlet port. The fan blade is fixed on the output end of the servo motor. The guide slope is arranged on one side of the air inlet port, and the other end of the guide slope is connected with the water bin.

[0012] Further, the inside of the guide slope is fixed with heating rods, and the heating rods are provided in several groups.

[0013] Further, the refrigeration mechanism comprises a semiconductor refrigeration plate, a valve piece one and a refrigeration circulation pipe, the semiconductor refrigeration plate is fixed at the lower end of the water tank and located in the regulating tank, the valve piece one is arranged at one end of the connecting pipe, the refrigeration circulation pipe is connected at the other end of the valve piece one, and the other end of the refrigeration circulation pipe is arranged in an 'S' shape and connected with the bottom of the water tank.

[0014] Further, the humidity adjusting mechanism comprises a valve piece two, an atomization frame and atomization ports, the valve piece two is arranged at the end of the valve piece one away from the connecting pipe, the atomization frame is connected at the tail end of the valve piece two, the cross section of the atomization frame is arranged in a'mouth' shape structure, and the atomization ports are uniformly arranged on the inner wall of the atomization frame.

[0015] The utility model has the following beneficial effects:

[0016] The utility model discloses a servo motor and fan blade cooperation can guide the gas of outside, and the filter screen that sets up outside the air inlet port can filter the gas that enters the regulating tank, when the gas passes through the heating rod, can heat it, can adjust the temperature in the mushroom house and control, if need cooling the mushroom house, can open the water pump piece, can guide the water that semiconductor refrigeration plate cooling to the refrigeration circulation pipe with the cooperation of the gas that fan blade guides, can cool the mushroom house, at the same time, if need control humidity, can guide the water in the atomization port in the atomization frame with water pump piece, can humidify the gas, can accurately control the temperature and humidity in the mushroom house. BRIEF DESCRIPTION OF DRAWINGS

[0017] In order to more clearly illustrate the technical scheme of the embodiment of the utility model, the following will be to the embodiment description needed to use the drawing briefly introduced, obviously, the following description in the drawing is only some embodiments of the utility model, for those skilled in the art, under the premise of not paying the creative labor, can also obtain other drawings according to these drawings.

[0018] Fig. 1 It is the overhead view schematic diagram of the temperature and humidity control equipment for mushroom cultivation of the utility model.

[0019] Fig. 2 It is the cross section schematic diagram of the temperature and humidity control equipment for mushroom cultivation of the utility model.

[0020] Fig. 3 It is the overhead view schematic diagram of the refrigeration mechanism and humidity adjusting mechanism of the utility model.

[0021] The attached diagram lists the components represented by each number as follows:

[0022] 1. Control chamber; 2. Air inlet port; 3. Servo motor; 4. Fan blade; 5. Guide slope; 6. Heating rod; 7. Water tank; 8. Semiconductor cooling plate; 9. Water pump; 10. Connecting pipe; 11. Valve component one; 12. Cooling circulation pipe; 13. Valve component two; 14. Atomizing frame; 15. Atomizing port; 16. Temperature and humidity detection component. Detailed Implementation

[0023] The technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present invention.

[0024] Please see Figs. 1-3 As shown, this utility model is a temperature and humidity control device for microbial culture, including a control chamber 1 and air inlets 2 evenly arranged on one side of the control chamber 1, and further including:

[0025] A gas guiding mechanism is located inside the control chamber 1 on one side near the air inlet port 2, and is used to guide the gas.

[0026] A water tank 7 is located inside the control chamber 1 on one side. A water pump 9 is installed inside the water tank 7, and the output end of the water pump 9 is connected to a connecting pipe 10, which is arranged in a "T" shape. The gas guiding mechanism includes a servo motor 3, a fan blade 4, and a guide slope 5. The servo motor 3 is fixed inside the control chamber 1 near the air inlet port 2, the fan blade 4 is fixed to the output end of the servo motor 3, and the guide slope 5 is located on one side of the air inlet port 2, with the other end connected to the water tank 7. The servo motor 3 drives the fan blade 4 to rotate, guiding the outside gas into the mushroom house. A filter screen installed outside the air inlet port 2 filters the gas entering the control chamber 1, and the guide slope 5 guides the gas quickly. A heating rod 6 is fixed inside the guide slope 5, and several sets of heating rods 6 are installed. When the guided gas passes through the heating rod 6, it is heated, thus regulating and controlling the temperature inside the mushroom house.

[0027] The left and right sides of the connecting pipe 10 are respectively connected with a refrigeration mechanism and a humidity adjusting mechanism, which are used for controlling the temperature and humidity in the mushroom house; the temperature and humidity detection assembly 16 is arranged on the side of the control bin 1 away from the air inlet port 2, and is used for detecting the temperature and humidity of the discharged gas; the refrigeration mechanism comprises a semiconductor refrigeration plate 8, a valve piece one 11 and a refrigeration circulating pipe 12, the semiconductor refrigeration plate 8 is fixed to the lower end of the water bin 7 and located in the control bin 1, the valve piece one 11 is arranged at one end of the connecting pipe 10, the refrigeration circulating pipe 12 is connected to the other end of the valve piece one 11, and the other end of the refrigeration circulating pipe 12 is arranged in an "S" shape and connected to the bottom of the water bin 7; if it is needed to cool the mushroom house, the water pump piece 9 can be turned on, so that the water cooled by the semiconductor refrigeration plate 8 can be guided into the connecting pipe 10, the valve piece one 11 can be arranged at one end of the connecting pipe 10, and the valve piece one 11 can be turned on, so that the water can be guided into the refrigeration circulating pipe 12 and combined with the air guided by the fan blade 4, thereby cooling the mushroom house.

[0028] The humidity adjusting mechanism comprises a valve piece two 13, an atomization frame 14 and atomization ports 15, the valve piece two 13 is arranged at the end of the valve piece one 11 away from the connecting pipe 10, the atomization frame 14 is connected to the tail end of the valve piece two 13, and the cross section of the atomization frame 14 is arranged in a "mouth" shape structure, the atomization ports 15 are uniformly arranged on the inner wall of the atomization frame 14, if it is needed to control the humidity, the valve piece two 13 can be turned on, so that the water guided by the water pump piece 9 can be guided into the atomization ports 15 in the atomization frame 14, thereby humidifying the air, and the temperature and humidity in the mushroom house can be accurately controlled; finally, the heating rod 6, the refrigeration mechanism and the humidity adjusting mechanism in the device can be used in combination, so that the temperature and humidity of the mushroom house can be ensured, thereby further improving the practicability of the device, and the temperature and humidity detection assembly 16 can be used in combination, thereby accurately controlling the temperature and humidity in the mushroom house, and avoiding affecting the subsequent treatment by using multiple adjusting devices.

[0029] The above is only the preferred embodiment of the present application, and does not limit the present application, any modification, equivalent replacement, improvement of any modification, equivalent replacement, improvement of the technical solutions recorded in the foregoing embodiments, all belong to the protection scope of the present application.

Claims

1. A temperature and humidity control device for bacteria culture, comprising a control bin (1) and an air inlet port (2) uniformly arranged on one side of the control bin (1), characterized in that, Also include: Gas guide mechanism, set in the regulation warehouse (1) inside near the air inlet (2) on one side, for the gas guide; Water tank (7), set in the regulation warehouse (1) inside one side, the inside of water tank (7) is provided with water pump piece (9), the output end of water pump piece (9) is connected with connecting pipe (10), and connecting pipe (10) is provided with "T" shape structure; The left and right sides of connecting pipe (10) are connected with refrigeration mechanism and humidity adjusting mechanism respectively, for controlling the temperature and humidity in the mushroom house; Temperature and humidity detection assembly (16), set in the regulation warehouse (1) inside away from the air inlet (2) on one side, for detecting the temperature and humidity of the exhaust gas.

2. The temperature and humidity control device for cultivating a bacterial strain according to claim 1, wherein The gas guide mechanism includes servo motor (3), fan blade (4), guide slope (5), servo motor (3) is fixed in the regulation warehouse (1) inside near the air inlet (2) on one side, fan blade (4) is fixed in the output end of servo motor (3), guide slope (5) is set in the air inlet (2) on one side, and the other end of guide slope (5) is communicated with water tank (7).

3. The temperature and humidity control device for cultivating a bacterial strain according to claim 2, wherein The inside of the guide slope (5) is fixed with heating rod (6), and the heating rod (6) is provided with several groups.

4. The temperature and humidity control device for cultivating a bacterial strain according to claim 1, wherein The refrigeration mechanism includes semiconductor refrigeration plate (8), valve piece one (11) and refrigeration cycle pipe (12), semiconductor refrigeration plate (8) is fixed in the inside lower end of water tank (7) and semiconductor refrigeration plate (8) is located in the regulation warehouse (1), valve piece one (11) is set in one end of connecting pipe (10), refrigeration cycle pipe (12) is connected in the other end of valve piece one (11), and refrigeration cycle pipe (12) is provided with "S" shape in the other end and is connected with the bottom of water tank (7).

5. The temperature and humidity control device for cultivating a bacterial strain according to claim 4, wherein The humidity adjusting mechanism includes valve piece two (13), atomization frame (14) and atomization port (15), valve piece two (13) is set in the end of valve piece one (11) away from connecting pipe (10), atomization frame (14) is connected in the tail end of valve piece two (13), and the cross section of atomization frame (14) is provided with "Kou" shape structure, atomization port (15) is evenly set on the inner wall of atomization frame (14) upper end.