Bean sprout self-heating constant-temperature bean sprout production device
By designing a bean sprout production device including an insulated flushing tank and siphon, the automatic flushing and constant temperature control of bean sprouts are realized, which solves the problem that existing devices cannot automatically flush and improves the quality and health of bean sprouts.
Patent Information
- Application Number
- CN202421152184.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-05-24
- Publication Date
- 2025-05-06
- Estimated Expiration
- 2034-05-24
AI Technical Summary
The existing bean sprout production equipment cannot achieve automatic flushing, resulting in unstable growth environment of bean sprouts and prone to problems such as bacteria and mold growth.
A device including an insulated flushing tank, a siphon tube, a faucet and a budding barrel body was designed. The water was automatically flushed through the siphon principle, and the water was flushed every six hours. A constant temperature heating rod and insulation were set up in the budding barrel to control the temperature and air composition.
It realizes automatic watering of bean sprouts, maintains the stability of the growth environment of bean sprouts, reduces the breeding of bacteria and molds, and improves the quality and health of bean sprouts.
Smart Images

Figure CN222827825U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of bean sprout cultivation, in particular to a bean sprout self-heating constant temperature production device. Background Art
[0002] As a traditional vegetable, bean sprouts are loved by people for their fresh, crisp, tender, unique flavor and comprehensive nutrition. In order to avoid buying substandard hormone bean sprouts in the market, many families are willing to grow bean sprouts at home.
[0003] A Chinese patent with authorization announcement number CN214229316U discloses a constant temperature and humidity germination box for bean sprout production. The technical solution disclosed in the patent document is as follows: it includes a box door and a box body, one side of the box body is rotatably connected to the box door, the inner wall of the box body is equidistantly installed with a multi-station rotatable storage device, the inner wall of the box body is rotatably connected to an adjustment device with a self-locking function, the box body is located at a corresponding position of the storage device, and the storage device is transmission-connected to the adjustment device. The constant temperature and humidity germination box for bean sprout production can adjust the position of the cultivation tray in multiple directions at will through the tempered glass window, the storage device and the adjustment device, and the cultivation tray can be taken out more conveniently through the storage device. Compared with the traditional constant temperature and humidity germination box for bean sprout production, the space utilization rate of this germination box is extremely high, the space can be fully utilized, and the operation of the device is very simple, saving time and effort. However, the above scheme still has the problem of being unable to automatically flush the bean sprouts. Utility Model Content
[0004] A technical problem solved by the utility model is that the existing devices cannot automatically flush bean sprouts.
[0005] The technical solution adopted by the utility model is: comprising a heat preservation flushing tank and a sprout growing barrel body, the bottom end of the inner wall of the heat preservation flushing tank is fixedly connected with a siphon tube, the siphon tube is used to pour water into the sprout growing barrel body, the top of the heat preservation flushing tank is fixedly connected with a faucet, the bottom of the heat preservation flushing tank is fixedly connected with an outlet pipe, the top of the sprout growing barrel body is covered with a heat preservation blanket, and the outlet pipe is inserted at the top of the heat preservation blanket. Thus, the bean sprouts can be automatically rinsed.
[0006] As a further improvement of the present invention, a constant temperature heating rod is inserted into the top of the thermal insulation flushing tank, and a plug is electrically connected to the top of the constant temperature heating rod, so that the water inside the thermal insulation flushing tank can be heated.
[0007] As a further improvement of the utility model, the outside of the bud-raising barrel body is covered with a heat-insulating blanket, the top of the inner top of the bud-raising barrel body is provided with a clamping groove, the inner part of the clamping groove is slidably connected with a water-leaking plate, and the top of the heat-insulating blanket is provided with a reserved hole, so that the external environment does not affect the microenvironment in the bud-raising barrel.
[0008] As a further improvement of the utility model, the interior of the sprout growing barrel body is provided with an internal slope, the outer surface of the sprout growing barrel body is fixedly connected with a drainage pipe at the lower surface of the internal slope, and a section of the drainage pipe away from the internal slope is fixedly connected with an automatic closing silicone sleeve, so as to take away the heat and dirt in the bean sprout growing process.
[0009] As a further improvement of the utility model, the heat preservation flushing tank, the siphon tube and the faucet adopt the siphon principle, so that when the water is full of the siphon tube, the bean sprouts can be flushed.
[0010] As a further improvement of the utility model, the constant temperature heating rod controls the constant temperature to be 23° C. to 27° C., thereby taking away the excessive heat generated in the early growth stage of bean sprouts and supplementing the insufficient heat generated in the later growth stage.
[0011] The utility model has the following beneficial effects: 1. Through the heat preservation flushing tank, siphon and faucet, water is injected into the heat preservation flushing tank by opening the faucet, so that the water will overflow the siphon when it flows in for six hours, so that the water flows into the main body of the bud-raising barrel through the outlet pipe, so as to achieve the effect of automatically flushing the bean sprouts inside the device every six hours, and after several hours of cultivation, high-quality bean sprouts can be obtained. There is no complexity of manual production, no energy consumption of mechanical production, and the equipment is simple to operate, which is suitable for family use. Bean sprouts will produce some residues and dirt during the growth process. Regular flushing can clean the surface of the bean sprouts, reduce the growth of bacteria and mold, and keep the bean sprouts healthy. The flushing of water can promote the oxygen in the soil to enter the roots of the bean sprouts, help the respiration of the bean sprouts, increase the oxygen supply, and promote growth. Moreover, the flushing of the constant temperature water, the flow of water during the flushing process will take away the excessive heat generated in the early growth of the bean sprouts and supplement the lack of heat generated in the later growth, which is helpful to adjust the growth environment temperature of the bean sprouts and avoid the influence of too high or too low temperature on the bean sprouts.
[0012] Through the heat preservation water tank, heat preservation blanket and outer heat preservation cotton, the heat preservation water tank is used to keep the internal temperature warm, the heat preservation blanket is used to seal and keep the top of the bud raising barrel body warm, and then the outer heat preservation cotton is used to keep the outer wall of the bud raising barrel body warm, so that the external environment cannot affect the microenvironment inside the bud raising barrel body. In addition, the heat preservation blanket above the bud raising barrel body can limit the exchange of fresh air from the outside with the air inside the bud raising barrel body, thereby achieving the purpose of reducing oxygen and increasing carbon dioxide. Maintaining the stability of the microenvironment inside the bud raising barrel body helps to ensure that the seeds can grow smoothly. Maintaining the stability of the microenvironment inside the bud raising barrel body can ensure that the bean sprout seeds grow under the most suitable conditions. This can maximize the growth rate and health of the plants. In addition, by controlling the microenvironment inside the bud raising barrel, the risk of possible pests and diseases in the external environment being transmitted to the plants can be reduced, making the plants easier to manage and protect. BRIEF DESCRIPTION OF THE DRAWINGS
[0013] Figure 1 It is a schematic diagram of the utility model.
[0014] Figure 2 It is a schematic diagram of the cross-sectional structure of the utility model.
[0015] Figure 3 It is a schematic diagram of the cross-sectional structure of the thermal insulation blanket, the outer thermal insulation cotton and the main body of the bud-raising barrel in the utility model.
[0016] As shown in the figure: 101, insulated flushing tank; 102, siphon; 103, faucet; 104, outlet pipe; 201, plug; 202, constant temperature heating rod; 301, insulation blanket; 302, outer insulation cotton; 303, bud growing barrel body; 304, leaking plate; 305, internal slope; 306, drain pipe; 307, automatic closing silicone sleeve; 308, positioning slot; 309, reserved hole. DETAILED DESCRIPTION
[0017] The utility model is further described below in conjunction with the accompanying drawings.
[0018] As shown in the figure, a bean sprout self-heating constant temperature bean sprout production device includes a heat preservation flushing tank 101, a siphon 102, a faucet 103, an outlet pipe 104, a heat preservation blanket 301 and a sprout growing barrel body 303.
[0019] Taking the production of 100 jin of bean sprouts per day as an example, the constant temperature flushing system only needs to be equipped with a water tank of about ten liters of water. The outer layer of the heat preservation flushing tank 101 is insulated with heat preservation cotton. By connecting the plug 201 to the power supply, the constant temperature heating rod 202 controls the water temperature at 25°C, and the bean sprouts are rinsed once every six hours. The flushing time is controlled by the siphon 102 in the heat preservation flushing tank 101. The heat preservation flushing tank 101 adopts the siphon principle. After the water is full of the siphon 102, it will automatically rinse. The flushed water flows to the leaking plate 304 placed on the top of the sprouting barrel body 303, and the water is evenly sprinkled on the beans below from the holes on the leaking plate 304. Flushing with 25°C water every six hours can take away the excessive heat generated in the early growth of bean sprouts and supplement the lack of heat generated in the later growth. After a few hours of cultivation, high-quality bean sprouts can be obtained. There is no complexity of manual production, no energy consumption of mechanical production, and the equipment is simple to operate, which is suitable for home use. Bean sprouts will produce some residue and dirt during their growth. Regular flushing can clean the surface of bean sprouts, reduce the growth of bacteria and mold, and keep the bean sprouts healthy. The flushing of water can promote the oxygen in the soil to enter the roots of bean sprouts, help the respiration of bean sprouts, increase oxygen supply, and promote growth.
[0020] Further, the constant temperature heating rod 202 heats the water accumulated inside the heat preservation flushing tank 101 and the heat preservation of the heat preservation flushing tank 101 itself, and the temperature inside the heat preservation flushing tank 101 is kept at 25°C. The outlet pipe 104 is inserted into the inside of the sprouting barrel body 303 through the reserved hole 309 reserved on the surface of the heat preservation quilt 301. The sealing of the sprouting barrel body 303 by the heat preservation quilt 301 can increase the carbon dioxide in the sprouting barrel body 303 and reduce the oxygen content. The heat preservation quilt 301 and the leaking plate 304 above the sprouting barrel body 303 will limit the exchange of fresh air from the outside, so as to achieve the purpose of reducing oxygen and increasing carbon dioxide. According to expert determination and many years of production verification, the content of air components suitable for bean sprout production is: oxygen 10%, carbon dioxide 10%, nitrogen 80%, and the natural composition of general air is not suitable for the best requirements of bean sprout production. However, this device limits air exchange to make the air in the sprouting barrel meet the best production requirements of bean sprouts, which is not achieved by bean sprout machines on the general market. Bean sprouts compete freely in the small environment and strive to grow to obtain water, sunlight and air. The bean sprouts breathe and excrete smoothly, which further promotes their healthy growth.
[0021] Furthermore, due to the evenly distributed small holes on the water leakage plate 304, water can fall evenly on the beans. The outer layer of the sprouting barrel body 303 is provided with an outer layer of heat-insulating cotton 302, so that the inside of the sprouting barrel body 303 is not affected by the external cold and hot environment. The front end of the drain pipe 306 is sealed by a mesh, so as to prevent the beans from rushing out of the drain pipe 306 while ensuring the smooth outflow of water. The end of the drain pipe 306 is fixedly connected with an automatic closing silicone sleeve 307, so that after the water is smoothly discharged, the external cold and hot air cannot enter the inside of the sprouting barrel body 303 to affect the bean sprouts, and the internal inclined surface 305 fixedly connected inside the sprouting barrel body 303 can allow the dripping water to flow quickly and take away the dirt and heat.
[0022] The advantages of the utility model are: 1) The bean sprouts inside the device are automatically rinsed every six hours, and high-quality bean sprouts can be obtained after several hours of cultivation. There is no complexity of manual production, no energy consumption of mechanical production, and the equipment is simple to operate and suitable for family use. 2) The external environment cannot affect the microenvironment inside the sprout barrel body 303. Moreover, the heat preservation blanket 301 above the sprout barrel body 303 can limit the exchange of fresh air from the outside with the air inside the sprout barrel body 303, thereby achieving the purpose of reducing oxygen and increasing carbon dioxide. 3) Regular rinsing can clean the surface of the bean sprouts, reduce the growth of bacteria and mold, and keep the bean sprouts healthy. 4) The heat preservation blanket 301 and the leaking plate 304 will limit the exchange of fresh air from the outside, so as to achieve the purpose of reducing oxygen and increasing carbon dioxide. 5) The water that is sprinkled flows quickly and takes away the dirt and heat on the surface of the bean sprouts.
[0023] Those skilled in the art should be aware that the protection scheme of the present utility model is not limited to the above-mentioned embodiments, and various arrangements, combinations and transformations can be made on the basis of the above-mentioned embodiments. Without violating the spirit of the present utility model, various transformations of the present utility model fall within the protection scope of the present utility model.
Claims
1. A bean sprout self-heating constant temperature bean sprout production device, comprising a heat preservation flushing tank (101) and a sprout growing barrel body (303), characterized in that: A siphon (102) is fixedly connected to the bottom end of the inner wall of the heat-insulating flushing tank (101), and the siphon (102) is used to pour water into the bud-raising barrel body (303). A faucet (103) is fixedly connected to the top of the heat-insulating flushing tank (101), and an outlet pipe (104) is fixedly connected to the bottom of the heat-insulating flushing tank (101). The top of the bud-raising barrel body (303) is covered with a heat-insulating blanket (301), and the outlet pipe (104) is inserted into the top of the heat-insulating blanket (301).
2. The bean sprout self-heating constant temperature production device according to claim 1, characterized in that: A constant temperature heating rod (202) is inserted into the top end of the heat-insulating flushing tank (101), and a plug (201) is electrically connected to the top end of the constant temperature heating rod (202).
3. The bean sprout self-heating constant temperature production device according to claim 1, characterized in that: The outside of the bud-raising barrel body (303) is covered with a heat-insulating blanket (301), the top of the inside of the bud-raising barrel body (303) is provided with a locking groove (308), the inside of the locking groove (308) is slidably connected with a water-leaking plate (304), and the top of the heat-insulating blanket (301) is provided with a reserved hole (309).
4. The bean sprout self-heating constant temperature production device according to claim 1, characterized in that: An internal inclined surface (305) is provided inside the bud-raising barrel body (303); a drainage pipe (306) is fixedly connected to the outer surface of the bud-raising barrel body (303) at the lower surface of the internal inclined surface (305); and an automatically closed silicone sleeve (307) is fixedly connected to a section of the drainage pipe (306) away from the internal inclined surface (305).
5. The bean sprout self-heating constant temperature production device according to claim 2, characterized in that: The constant temperature heating rod (202) controls the constant temperature to be 23°C to 27°C.
Citation Information
Patent Citations
Constant temperature and humidity type germination box for bean sprout production
CN214229316U