Storage bin capable of uniformly melting viscous liquid

By installing a coaxial mounting ring and stirring mechanism inside the storage silo, the problem of uneven heating of viscous liquids is solved, achieving uniform heating and efficient discharge of viscous liquids, and improving the safety of storage and discharge.

CN223836268UActive Publication Date: 2026-01-27WUXI HAIFEITE KEMAI MASCH EQUIP CO LTD
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Patent Information

Application Number
CN202520590792.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-31
Publication Date
2026-01-27
Estimated Expiration
2035-03-31

AI Technical Summary

Technical Problem

Existing storage silos have difficulty achieving uniform heating when heating viscous liquids, resulting in low efficiency in discharging viscous liquids.

Method used

An installation ring is installed inside the storage silo, with the installation ring coaxial with the storage silo. The heating tube is installed inside the installation ring. Combined with the stirring mechanism, which includes a motor, stirring shaft, and stirring rod, the uniform stirring and heating of the viscous liquid is achieved by rotating the stirring rod.

Benefits of technology

It achieves uniform heating of viscous liquids in the storage silo, improves the discharge efficiency of viscous liquids, reduces the possibility of clumping, and improves the safety of storage and discharge.

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Abstract

The utility model discloses a storage bin with a function of uniformly melting viscous liquid, which belongs to the technical field of liquid storage bins and comprises a heating pipe for heating liquid in the storage bin, a mounting ring is arranged in the storage bin, the mounting ring and the storage bin are coaxially arranged, the heating pipe is arranged in the mounting ring, the heating pipe and the mounting ring are coaxially arranged, and the mounting ring and the heating pipe are coaxially arranged. A first sealing cover is arranged on the storage bin, a stirring mechanism is arranged in the storage bin, the stirring mechanism comprises a motor arranged in the first sealing cover, a stirring shaft fixed to an output shaft of the motor and a stirring rod used for uniformly stirring the viscous liquid, the stirring shaft is rotationally arranged in the storage bin, and the stirring rod is arranged on the stirring shaft. The device has the effects that the viscous liquid in the storage bin can be conveniently and uniformly heated, and the discharging efficiency of the viscous liquid is improved.
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Description

Technical Field

[0001] This utility model relates to the field of liquid storage silo technology, and in particular to a storage silo that can uniformly melt viscous liquids. Background Technology

[0002] Storage silos have a wide range of applications in many fields, including industry, agriculture, logistics and construction. They can also be used to store viscous liquids.

[0003] When viscous liquids are stored in silos, they need to be heated and melted before they can be discharged from the silos. Current heating methods often involve installing heating pipes on the inner perimeter of the silo to melt the viscous liquid. However, because the heating pipes are far from the center of the silo, the viscous liquid in the center of the silo is difficult to heat, resulting in uneven heating and reduced discharge efficiency.

[0004] In response to the aforementioned technologies, there is an urgent need to design and develop a storage silo that can uniformly melt viscous liquids, and can uniformly stir the viscous liquids in the storage silo so that the heating element can uniformly heat the viscous liquids, thereby improving the discharge efficiency of viscous liquids. Utility Model Content

[0005] In order to facilitate uniform heating of viscous liquid in the storage bin and improve the discharge efficiency of viscous liquid, this application provides a storage bin that can uniformly melt viscous liquid.

[0006] The technical solution provided in this application for a storage silo that can uniformly melt viscous liquids is as follows:

[0007] A storage silo for uniformly melting viscous liquid includes a heating tube for heating the liquid inside the silo. A mounting ring is disposed inside the silo and coaxially with it. The heating tube is disposed within the mounting ring and coaxially with it. A sealing cover is provided on the silo. A stirring mechanism is disposed inside the silo. The stirring mechanism includes a motor disposed within the sealing cover, a stirring shaft fixed to the motor's output shaft, and a stirring rod for uniformly stirring the viscous liquid. The stirring shaft is rotatably disposed within the silo, and the stirring rod is disposed on the stirring shaft.

[0008] By adopting the above technical solution, an installation ring is provided inside the storage silo, and the installation ring is coaxially arranged with the storage silo. The heating tube is set inside the installation ring, and the heating tube is coaxially arranged with the installation ring. A sealing cover is provided on the storage silo, and the motor is set inside the sealing cover. The stirring shaft is fixed on the output shaft of the motor and is rotatably set inside the storage silo. The stirring rod is set on the stirring shaft. When the heating tube is used to heat the viscous liquid in the storage silo, the drive motor drives the stirring shaft to rotate, and the stirring shaft drives the stirring rod to rotate, which facilitates uniform stirring of the viscous liquid in the storage silo, so that the heating tube can uniformly heat the viscous liquid and improve the discharge efficiency of the viscous liquid.

[0009] Preferably, the stirring mechanism includes a scraping assembly, which includes a scraper for scraping viscous liquid on the top surface of the mounting ring and an inclined shovel for scraping viscous liquid off the top surface of the mounting ring. The scraper is disposed on the stirring rod, and the inclined shovel is disposed on the scraper.

[0010] By adopting the above technical solution, the scraper is set on the stirring rod, and the inclined shovel is set on the scraper. During the process of the motor driving the stirring shaft to rotate the stirring rod, the stirring rod drives the scraper to rotate. The scraper scrapes the viscous liquid on the top surface of the mounting ring. The scraper drives the inclined shovel to rotate, and the inclined shovel can scrape the viscous liquid off the top surface of the mounting ring, which is convenient for cleaning the viscous liquid on the top surface of the mounting ring and avoids the possibility of the liquid staying on the mounting ring for a long time and being continuously heated by the heating tube, thus preventing clumping.

[0011] Preferably, the stirring shaft has an installation groove, and a heating mechanism is provided on the stirring shaft. The heating mechanism includes a heating bar for heating the viscous liquid in the middle of the storage bin and a power supply box for powering the heating bar. The heating bar is disposed inside the stirring shaft, and the power supply box is disposed inside the installation groove.

[0012] By adopting the above technical solution, an installation groove is opened inside the stirring shaft, the heating strip is set inside the stirring rod, and the power supply box is set inside the installation groove. During the process of the motor driving the stirring shaft to rotate the stirring rod, the power supply box rotates with the stirring shaft, and the heating strip rotates with the stirring rod. The power supply box supplies power to the heating strip, and the heating strip heats the stirring rod. The stirring rod can heat the viscous liquid located in the middle of the storage bin. The heating and stirring of the viscous liquid in the middle of the storage bin are carried out simultaneously, which is beneficial to maintain the uniform heating of the viscous liquid in the storage bin as a whole.

[0013] Preferably, the sealing cover is detachably connected to the storage bin by screws. A storage slot is provided on the top surface of the sealing cover, the motor is disposed in the storage slot, the stirring shaft is rotatably disposed in the storage slot, and a plug slot for charging the power supply box is provided on the top surface of the stirring shaft. The plug slot is connected to the storage slot and the mounting slot.

[0014] By adopting the above technical solution, the sealing cover and the storage bin are detachably connected by screws. A storage slot is provided on the top surface of the sealing cover, the motor is installed in the storage slot, and the stirring shaft is rotatably installed in the storage slot. A plug slot for charging the power supply box is provided on the top surface of the stirring shaft. The plug slot is connected to the storage slot and the mounting slot. When it is necessary to charge the power supply box, the sealing cover can be detached from the storage bin by releasing the screws. One end of the charger is passed through the plug slot and connected to the power supply box, and the other end of the charger is connected to the charging port of the charging pile, so as to facilitate charging the power supply box.

[0015] Preferably, a transfer groove is provided on the top surface of the storage silo, the stirring shaft is rotatably disposed in the transfer groove, a limiting ring groove is provided on the side wall of the transfer groove, a limiting ring block is provided on the side of the stirring shaft, and the limiting ring block is rotatably disposed in the limiting ring groove.

[0016] By adopting the above technical solution, a transfer groove is provided on the top surface of the storage silo, the stirring shaft is rotatably installed in the transfer groove, a limiting ring groove is provided on the side wall of the transfer groove, a limiting ring block is provided on the side of the stirring shaft, the limiting ring block is rotatably installed in the limiting ring groove, the limiting ring block prevents the stirring shaft from leaving the storage silo, and improves the stability of the rotational connection between the stirring shaft and the storage silo.

[0017] Preferably, a support mechanism is provided below the storage silo. The support mechanism includes a support plate located directly below the storage silo and a support column located on the top surface of the support plate. The support column is connected to the storage silo.

[0018] By adopting the above technical solution, the support plate is set directly below the storage silo, the support column is set on the top surface of the support plate, and the support column is connected to the storage silo to provide stable support for the storage silo.

[0019] Preferably, a material passage hole is provided on the side of the storage bin, a connecting rod is provided on the side of the storage bin, a feeding hopper is provided on the connecting rod, the discharge port of the feeding hopper is connected to the material passage hole, and a sealing cover is provided on the feeding hopper.

[0020] By adopting the above technical solution, a material passage hole is opened on the side of the storage silo, a connecting rod is provided on the side of the storage silo, and a feeding hopper is provided on the connecting rod. The discharge port of the feeding hopper is connected to the material passage hole, and a second sealing cover is provided on the feeding hopper. When it is necessary to store viscous liquid in the storage silo, the second sealing cover is opened, and the viscous liquid flows into the storage silo through the connection between the feeding hopper and the storage silo, which facilitates the storage of viscous liquid in the storage silo.

[0021] Preferably, an observation window is provided on the side wall of the storage silo, and a protective glass is installed inside the observation window, with the protective glass and the observation window being sealed together.

[0022] By adopting the above technical solution, an observation window is provided on the side wall of the storage silo. A protective glass is installed inside the observation window, and the protective glass is sealed to the observation window, so that the staff can observe the storage volume of viscous liquid in the storage silo through the observation window.

[0023] In summary, this application includes at least one of the following beneficial technical effects:

[0024] 1. An installation ring is installed inside the storage silo, and the installation ring is coaxial with the storage silo. The heating tube is installed inside the installation ring, and the heating tube is coaxial with the installation ring. A sealing cover is installed on the storage silo, and the motor is installed inside the sealing cover. The stirring shaft is fixed on the output shaft of the motor and is rotatably installed inside the storage silo. The stirring rod is installed on the stirring shaft. When the heating tube is used to heat the viscous liquid in the storage silo, the drive motor drives the stirring shaft to rotate, and the stirring shaft drives the stirring rod to rotate, which facilitates uniform stirring of the viscous liquid in the storage silo. This allows the heating tube to heat the viscous liquid evenly, reducing the situation where the viscous liquid is difficult to heat evenly, thereby improving the discharge efficiency of the viscous liquid.

[0025] 2. The scraper is mounted on the stirring rod, and the shovel is mounted on the scraper. As the motor drives the stirring shaft to rotate the stirring rod, the stirring rod drives the scraper to rotate. The scraper scrapes the viscous liquid on the top surface of the mounting ring. The scraper drives the shovel to rotate, and the shovel can scrape the viscous liquid off the top surface of the mounting ring, making it easier to clean the viscous liquid on the top surface of the mounting ring. This avoids the possibility of the liquid remaining on the mounting ring for a long time and being continuously heated by the heating tube, thus preventing clumping. This further improves the safety of storing and discharging viscous liquid.

[0026] 3. An installation groove is provided inside the stirring shaft, and the heating strip is installed inside the stirring rod. The power supply box is installed inside the installation groove. When the motor drives the stirring shaft to rotate the stirring rod, the power supply box rotates with the stirring shaft, and the heating strip rotates with the stirring rod. The power supply box supplies power to the heating strip, and the heating strip heats the stirring rod. The stirring rod can heat the viscous liquid located in the middle of the storage bin. The heating and stirring of the viscous liquid in the middle of the storage bin are carried out simultaneously, which helps to maintain the uniform heating of the viscous liquid in the storage bin, thereby facilitating the uniform discharge of the viscous liquid. Attached Figure Description

[0027] Figure 1 This is a schematic diagram of the overall structure of a storage bin that can uniformly melt viscous liquid, according to an embodiment of this application.

[0028] Figure 2 This is a cross-sectional view of the storage silo in an embodiment of this application.

[0029] Explanation of reference numerals in the attached figures:

[0030] 1. Storage bin; 11. Feed hole; 12. Connecting rod; 13. Feed hopper; 14. Sealing cover II; 15. Observation window; 16. Mounting ring; 17. Sealing cover I; 171. Storage slot; 18. Transfer slot; 181. Limiting ring slot; 2. Heating tube; 3. Support mechanism; 31. Support plate; 32. Support column; 4. Stirring mechanism; 41. Motor; 42. Stirring shaft; 421. Mounting slot; 422. Insertion slot; 423. Limiting ring block; 43. Stirring rod; 44. Scraping assembly; 441. Scraper block; 442. Inclined shovel block; 5. Heating mechanism; 51. Heating strip; 52. Power supply box. Detailed Implementation

[0031] The present application will be further described in detail below with reference to the accompanying drawings.

[0032] This application discloses a storage bin that allows for the uniform melting of viscous liquids, as described in the embodiments below. Figure 1 and Figure 2 As shown, a storage bin for uniformly melting viscous liquid includes a storage bin 1, a heating pipe 2, a support mechanism 3, a stirring mechanism 4, and a heating mechanism 5.

[0033] Reference Figure 1 As shown, the storage bin 1 is horizontally arranged, and the length direction of the storage bin 1 is perpendicular to the ground. The support mechanism 3 includes a support plate 31 and a support column 32. The support plate 31 is horizontally arranged directly below the storage bin 1, and the axis of the support plate 31 coincides with the axis of the storage bin 1.

[0034] Reference Figure 1As shown, the support column 32 is welded and fixed to the top surface of the support plate 31. There are 3 support columns 32, which are evenly distributed at equal intervals along the circumference of the support plate 31 on the top surface of the support plate 31. The length direction of the support column 32 is the same as the length direction of the storage bin 1. The support column 32 is connected to the storage bin 1 to provide stable support for the storage bin 1.

[0035] Reference Figure 1 and Figure 2 As shown, a material passage hole 11 is provided on the side of the storage bin 1, and a connecting rod 12 is provided on the side of the storage bin 1. A feeding hopper 13 is provided on the connecting rod 12. The outlet of the feeding hopper 13 is connected to the material passage hole 11. A sealing cover 2 14 is provided on the feeding hopper 13. When it is necessary to store viscous liquid in the storage bin 1, the sealing cover 2 14 is opened, and the viscous liquid flows into the storage bin 1 through the connection between the feeding hopper 13 and the storage bin 1, which facilitates the storage of viscous liquid in the storage bin 1.

[0036] Reference Figure 1 As shown, an observation window 15 is provided on the side wall of the storage bin 1. The length direction of the observation window 15 is the same as the length direction of the storage bin 1. A protective glass is installed inside the observation window 15. The protective glass is sealed to the observation window 15, so that the staff can observe the storage amount of viscous liquid in the storage bin 1 through the observation window 15.

[0037] Reference Figure 2 As shown, a mounting ring 16 is provided inside the storage bin 1. The mounting ring 16 is coaxially arranged with the storage bin 1. There are two mounting rings 16, which are arranged sequentially along the length of the storage bin 1. There are two heating tubes 2, which correspond one-to-one with the mounting rings 16. The heating tubes 2 are set inside the mounting rings 16 and are coaxially arranged with the mounting rings 16.

[0038] Reference Figure 2 As shown, a sealing cover 17 is provided on the storage silo 1. The stirring mechanism 4 includes a motor 41, a stirring shaft 42, a stirring rod 43, and a scraping assembly 44. The motor 41 is located inside the sealing cover 17. The stirring shaft 42 is fixed on the output shaft of the motor 41. The stirring shaft 42 is rotatably located inside the storage silo 1. The axis of the stirring shaft 42 coincides with the axis of the storage silo 1. The length of the stirring shaft 42 is the same as the length of the storage silo 1.

[0039] Reference Figure 2 As shown, there are 6 stirring rods 43, which are divided into 2 groups. The 2 groups of stirring rods 43 are arranged sequentially along the length of the stirring shaft 42. Each group of stirring rods 43 corresponds to the mounting ring 16. The 3 stirring rods 43 in each group are evenly distributed at equal distances along the circumference of the stirring shaft 42. The stirring rods 43 are welded to the stirring shaft 42.

[0040] Reference Figure 2 As shown, when the heating tube 2 is used to heat the viscous liquid in the storage bin 1, the drive motor 41 drives the stirring shaft 42 to rotate, and the stirring shaft 42 drives the stirring rod 43 to rotate, which facilitates the uniform stirring of the viscous liquid in the storage bin 1, so that the heating tube 2 can heat the viscous liquid evenly and improve the discharge efficiency of the viscous liquid.

[0041] Reference Figure 2 As shown, there are 6 sets of scraping components 44, each corresponding to a stirring rod 43. Each scraping component 44 includes a scraper block 441 and an inclined shovel block 442. The scraper block 441 is mounted on the stirring rod 43, and the inclined shovel block 442 is mounted on the scraper block 441. The bottom surface of the scraper block 441 is in contact with the top surface of the mounting ring 16. The side of the scraper block 441 near the inner arc wall of the storage hopper 1 is in contact with the inner arc wall of the storage hopper 1. The inclined shovel block 442 is mounted on the scraper block 441, and the bottom surface of the inclined shovel block 442 is in contact with the top surface of the mounting ring 16. The side of the scraper block 441 near the inner arc wall of the storage hopper 1 is in contact with the inner arc wall of the storage hopper 1.

[0042] Reference Figure 2 As shown, during the process of the motor 41 driving the stirring shaft 42 to rotate the stirring rod 43, the stirring rod 43 drives the scraper 441 to rotate. The scraper 441 scrapes the viscous liquid on the top surface of the mounting ring 16. The scraper 441 drives the inclined shovel 442 to rotate. The inclined shovel 442 can scrape the viscous liquid off the top surface of the mounting ring 16, making it easier to clean the viscous liquid on the top surface of the mounting ring 16. This avoids the possibility of the liquid staying on the mounting ring 16 for a long time and being continuously heated by the heating tube 2, which could lead to clumping.

[0043] Reference Figure 2 As shown, an installation groove 421 is provided inside the stirring shaft 42. The axis of the installation groove 421 coincides with the axis of the stirring shaft 42. The heating mechanism 5 includes heating bars 51 and a power supply box 52. The power supply box 52 is set inside the installation groove 421. There are 6 heating bars 51, and each heating bar 51 corresponds to a stirring rod 43. The heating bars 51 are set inside the stirring rod 43, and the length direction of the heating bars 51 is the same as the length direction of the stirring rod 43.

[0044] Reference Figure 2 As shown, during the process of the motor 41 driving the stirring shaft 42 to rotate the stirring rod 43, the power supply box 52 rotates with the stirring shaft 42, and the heating strip 51 rotates with the stirring rod 43. The power supply box 52 supplies power to the heating strip 51, and the heating strip 51 heats the stirring rod 43. The stirring rod 43 can heat the viscous liquid located in the middle of the storage bin 1. The heating and stirring of the viscous liquid in the middle of the storage bin 1 are carried out simultaneously, which is beneficial to maintain the uniform heating of the viscous liquid in the storage bin 1.

[0045] Reference Figure 2 As shown, the sealing cover 17 is detachably connected to the storage bin 1 by screws. A storage groove 171 is provided on the top surface of the sealing cover 17. The motor 41 is installed in the storage groove 171, and the stirring shaft 42 is rotatably installed in the storage groove 171. A plug-in groove 422 for charging the power supply box 52 is provided on the top surface of the stirring shaft 42. The plug-in groove 422 is connected to the storage groove 171 and to the mounting groove 421.

[0046] Reference Figure 2 As shown, when it is necessary to charge the power supply box 52, the sealing cover 17 is detached from the storage bin 1 by unscrewing the screws, one end of the charger is connected to the power supply box 52 through the plug slot 422, and the other end of the charger is connected to the charging port of the charging pile, so as to facilitate charging the power supply box 52.

[0047] Reference Figure 2 As shown, a transfer groove 18 is provided on the top surface of the storage silo 1. The axis of the transfer groove 18 coincides with the axis of the storage silo 1. The stirring shaft 42 is rotatably disposed in the transfer groove 18. A limiting ring groove 181 is provided on the side wall of the transfer groove 18. The axis of the limiting ring groove 181 coincides with the axis of the transfer groove 18.

[0048] Reference Figure 2 As shown, a limiting ring block 423 is provided on the side of the stirring shaft 42. The axis of the limiting ring block 423 coincides with the axis of the stirring shaft 42. The limiting ring block 423 is rotatably disposed in the limiting ring groove 181. The limiting ring block 423 prevents the stirring shaft 42 from disengaging from the storage bin 1, thereby improving the stability of the rotational connection between the stirring shaft 42 and the storage bin 1.

[0049] The implementation principle of a storage bin 1 for uniformly melting viscous liquid in this application embodiment is as follows:

[0050] When heating the viscous liquid in the storage silo 1 using the heating tube 2, the drive motor 41 drives the stirring shaft 42 to rotate, and the stirring shaft 42 drives the stirring rod 43 to rotate, which facilitates uniform stirring of the viscous liquid in the storage silo 1. At the same time, the power supply box 52 rotates with the stirring shaft 42, and the heating bar 51 rotates with the stirring rod 43. The power supply box 52 supplies power to the heating bar 51, and the heating bar 51 heats the stirring rod 43. The stirring rod 43 can heat the viscous liquid located in the middle of the storage silo 1. The simultaneous heating and stirring of the viscous liquid in the middle of the storage silo 1 is beneficial to maintaining uniform heating of the viscous liquid as a whole in the storage silo 1 and improving the discharge efficiency of the viscous liquid.

[0051] The above are all preferred embodiments of this application, and are not intended to limit the scope of protection of this application. Therefore, all equivalent changes made in accordance with the structure, shape and principle of this application should be covered within the scope of protection of this application.

Claims

1. A storage bin for uniformly melting viscous liquid, comprising a heating tube (2) for heating the liquid within the storage bin (1), characterized in that: An installation ring (16) is provided inside the storage bin (1), and the installation ring (16) is coaxially arranged with the storage bin (1). The heating tube (2) is arranged inside the installation ring (16), and the heating tube (2) is coaxially arranged with the installation ring (16). A sealing cover (17) is provided on the storage bin (1). A stirring mechanism (4) is provided inside the storage bin (1). The stirring mechanism (4) includes a motor (41) arranged inside the sealing cover (17), a stirring shaft (42) fixed on the output shaft of the motor (41), and a stirring rod (43) for uniformly stirring the viscous liquid. The stirring shaft (42) is rotatably arranged inside the storage bin (1), and the stirring rod (43) is arranged on the stirring shaft (42).

2. A storage silo for uniformly melting viscous liquids according to claim 1, characterized in that: The stirring mechanism (4) includes a scraping assembly (44), which includes a scraper (441) for scraping viscous liquid on the top surface of the mounting ring (16) and an inclined shovel (442) for scraping viscous liquid off the top surface of the mounting ring (16). The scraper (441) is disposed on the stirring rod (43), and the inclined shovel (442) is disposed on the scraper (441).

3. A storage silo according to claim 1, characterized in that: An installation groove (421) is provided inside the stirring shaft (42), and a heating mechanism (5) is provided on the stirring shaft (42). The heating mechanism (5) includes a heating strip (51) for heating the viscous liquid in the middle of the storage bin (1) and a power supply box (52) for powering the heating strip (51). The heating strip (51) is located inside the stirring rod (43), and the power supply box (52) is located inside the installation groove (421).

4. A storage silo according to claim 3, characterized in that: The sealing cover (17) is detachably connected to the storage bin (1) by screws. A storage slot (171) is provided on the top surface of the sealing cover (17). The motor (41) is located in the storage slot (171). The stirring shaft (42) is rotatably located in the storage slot (171). A plug slot (422) for charging the power supply box (52) is provided on the top surface of the stirring shaft (42). The plug slot (422) is connected to the storage slot (171) and the mounting slot (421).

5. A storage silo according to claim 4, characterized in that: The top surface of the storage bin (1) is provided with a transfer groove (18), the stirring shaft (42) is rotatably disposed in the transfer groove (18), a limiting ring groove (181) is provided on the side wall of the transfer groove (18), a limiting ring block (423) is provided on the side of the stirring shaft (42), and the limiting ring block (423) is rotatably disposed in the limiting ring groove (181).

6. A storage silo according to claim 1, characterized in that: A support mechanism (3) is provided below the storage silo (1). The support mechanism (3) includes a support plate (31) located directly below the storage silo (1) and a support column (32) located on the top surface of the support plate (31). The support column (32) is connected to the storage silo (1).

7. A storage silo according to claim 1, characterized in that: The storage bin (1) has a material passage hole (11) on its side, a connecting rod (12) is provided on the side of the storage bin (1), a feeding hopper (13) is provided on the connecting rod (12), the discharge port of the feeding hopper (13) is connected to the material passage hole (11), and a sealing cover (14) is provided on the feeding hopper (13).

8. A storage silo according to claim 1, characterized in that: An observation window (15) is provided on the side wall of the storage silo (1), and a protective glass is provided inside the observation window (15), and the protective glass is sealed to the observation window (15).