Novel disc continuous feeding bin

By adjusting the movable nut to control the distance between the upper and lower seals and the length of the corrugated steel pipe, the problem of fixed volume of the discharge port of the disc feeding bin is solved, the flexible control of the discharge amount is achieved, and the accuracy and flexibility of feeding are improved.

CN223328447UActive Publication Date: 2025-09-12ZHENGZHOU DINGLI NEW ENERGY EQUIP CO LTD
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Patent Information

Application Number
CN202422777934.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-14
Publication Date
2025-09-12
Estimated Expiration
2034-11-14

AI Technical Summary

Technical Problem

The supply volume between the existing disc feeding bin discharge port and the disc is difficult to adjust, resulting in a fixed discharge port volume that cannot be flexibly controlled.

Method used

By adjusting the movable nut, the upper adjusting block and the lower adjusting block are moved closer or separated, and the distance between the upper seal and the lower seal is controlled, thereby adjusting the length of the corrugated steel pipe, realizing the adjustment of the distance between the discharge port and the disc feeding trough, and shortening the discharge port volume.

Benefits of technology

The flexible adjustment of the distance between the discharge port and the disc feeding trough is realized, the discharge amount can be accurately controlled, and the flexibility and accuracy of feeding are improved.

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Abstract

The utility model provides a novel disc continuous feeding bin, which belongs to the technical field of material unloading equipment and comprises a storage bin arranged in a support frame and a disc feeder arranged at the bottom of the storage bin, a feed opening is arranged on the lower surface of the storage bin, a slot is communicated with the bottom of the feed opening, and a corrugated steel pipe is communicated with the bottom of the slot. A slot is formed in the outer wall of the corrugated steel pipe, an inserting plate is movably arranged in the slot, a pair of limiting plates is arranged at a slot opening in one end of the slot, a baffle is arranged at a slot opening in the other end of the slot, the left side and the right side of the outer wall of the corrugated steel pipe are each provided with an adjusting device, and the bottom of the corrugated steel pipe is connected with the feeding end of the disc feeder. The lower adjusting block and the upper adjusting block are made to be close to or separated from each other, the distance between the upper sealing piece and the lower sealing piece is controlled, the distance between the corrugated steel pipes is controlled, adjustment of the distance between the discharging opening and the disc feeding groove is achieved, and the volume of the discharging opening is shortened.
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Description

Technical Field

[0001] The utility model relates to the technical field of material unloading equipment, in particular to a novel disc continuous feeding bin. Background Art

[0002] Disc feeder is a volumetric metering feeding equipment, which is widely used in mining, chemical industry, building materials, food and other industries.

[0003] In the disc feeding silo in the related technology, the material flows out from the discharge port below the silo, enters the discharge pipe through the discharge port, and then enters the disc through the discharge pipe. The motor drives the disc to rotate so that the material moves with the disc and moves toward the discharge port. The scraper inside the disc then scrapes the material off the disc and enters the next equipment through the discharge port.

[0004] However, most of the existing discharge pipes are fixed, which makes the material storage space between the discharge port and the disc fixed. When it is necessary to control the supply amount from the discharge port to the disc, it is not easy to adjust. In order to solve the above problem, a new type of disc continuous feeding bin is proposed to solve the above problem. Utility Model Content

[0005] In view of this, the utility model provides a new disc continuous feeding bin. The utility model adjusts the movable nut to make the lower adjusting block close to or separate from the upper adjusting block, thereby controlling the distance between the upper seal and the lower seal, and then controlling the distance between the corrugated steel pipes, thereby realizing the adjustment of the distance between the discharge port and the disc feeding trough, thereby shortening the volume of the discharge port.

[0006] In order to solve the above technical problems, the utility model provides a new type of disc continuous feeding silo, including a storage silo arranged in a support frame, a disc feeder arranged at the bottom of the storage silo, a discharge port arranged on the lower surface of the storage silo, a slot arranged at the bottom of the discharge port, a corrugated steel pipe arranged at the bottom of the slot, an insert plate movably arranged in the slot, a pair of limit plates arranged at the slot at one end of the slot, a baffle arranged at the slot at the other end of the slot, an adjustment device arranged on both sides of the outer wall of the corrugated steel pipe, and the bottom of the corrugated steel pipe is connected to the feed end of the disc feeder.

[0007] Each adjusting device includes an upper seal connected to the upper end of the corrugated steel pipe, the upper seal is used for the communication between the corrugated steel pipe and the slot, and a lower seal connected to the lower end of the corrugated steel pipe, the lower seal is used for the communication between the corrugated steel pipe and the disc feeding trough. A plurality of upper adjusting blocks are provided on the surface of the upper seal, and the upper adjusting blocks are used for opening threaded holes. A plurality of lower adjusting blocks are provided on the surface of the lower seal, and the lower adjusting blocks are used for opening threaded holes. The upper adjusting blocks correspond coaxially to the lower adjusting blocks.

[0008] A threaded hole is provided between each upper adjusting block and the lower adjusting block, the threaded hole is used to install a threaded rod, a threaded rod is provided in the threaded hole, and the threaded rod is used to adjust the distance between the upper adjusting block and the lower adjusting block.

[0009] A positioning nut is provided on the top of the upper adjusting block, which is used to fix the upper end of the threaded rod. A movable nut is provided at the bottom of the lower adjusting block, which is used to move the lower adjusting block forward and backward. The movable nut is installed at the bottom of the threaded rod.

[0010] The disc feeder includes a motor base fixed to the ground, the motor base is fixed to the ground with bolts, a reducer is provided on the side of the top of the motor base close to the corrugated steel pipe, the motor base and the reducer are fixed with bolts, a drive motor is provided on the side of the reducer, the motor base is used to fix and support the reducer and the drive motor, a disc feeding trough is provided on the top of the drive motor and the reducer, the disc feeding trough is used to receive the material falling from the corrugated steel pipe, a discharge port is provided on the bottom of the disc feeding trough away from the drive motor, the discharge port is used to discharge the material in the disc feeding trough to the next process, and the top of the disc feeding trough is connected to the bottom of the lower sealing member.

[0011] A guide rail is provided on each side of the slot, and the guide rail is used for the movement of the slider. A slider is provided on each side of the left and right side of the end of the plug-in plate away from the limit plate. The slider is used to connect and fix the plug-in plate so that the plug-in plate can also move on the guide rail. The slider slides with the guide rail, and the length of the slider is one tenth of the length of the guide rail.

[0012] Multiple positioning plates are provided at the upper and lower ends of the limit plate. The positioning plates are used to fix the outer surface of the slot to the baffle to prevent the plug-in board from falling. The front of each positioning plate is fixed to the surface of the slot, and the rear of each positioning plate is fixed to the limit plate.

[0013] In summary, compared with the prior art, this application has at least one of the following beneficial technical effects:

[0014] 1. By adjusting the movable nut, the lower adjusting block and the upper adjusting block are moved closer or separated, thereby controlling the distance between the upper seal and the lower seal, thereby controlling the distance between the corrugated steel pipes, thereby adjusting the distance between the discharge port and the disc feed trough, and thereby shortening the volume of the discharge port.

[0015] 2. The reducer is used to control the discharge speed of the disc feed chute, and the motor base is used to fix the reducer and drive motor.

[0016] 3. When the baffle is adjusted too many times, there may be material residue in the guide rail that affects the movement of the slider. You can remove the baffle to separate it from the slot, and then move the insert plate to push the material residue in the guide rail out of the slot through the slider for cleaning, making it easier to use. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] Figure 1 This is a schematic diagram of the main structure of the utility model;

[0018] Figure 2 This is a partial front view structural diagram of the utility model;

[0019] Figure 3 It is a partial side sectional view of the utility model;

[0020] Figure 4 It is a top sectional view of the present invention.

[0021] Explanation of the accompanying reference numerals: 100, support frame; 101, storage silo; 102, discharge port; 200, slot; 201, plug plate; 202, limit plate; 203, baffle; 204, guide rail; 205, slider; 206, positioning plate; 300, corrugated steel pipe; 301, adjustment device; 302, upper seal; 303, lower seal; 304, upper adjustment block; 305, lower adjustment block; 306, threaded hole; 307, threaded rod; 308, positioning nut; 309, movable nut; 400, disc feeder; 401, motor base; 402, reducer; 403, drive motor; 404, disc feeding trough; 405, discharge port. DETAILED DESCRIPTION

[0022] In order to make the purpose, technical solutions and advantages of the embodiment of the present invention clearer, the following will be combined with the appended drawings of the embodiment of the present invention. Figure 1-4 The technical solutions of the embodiments of the present invention are clearly and completely described. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of them. Based on the described embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field are within the scope of protection of the present invention.

[0023] like Figure 1-4As shown: This embodiment provides a new type of disc continuous feeding silo, including a storage silo 101 arranged in a support frame 100, the top of the storage silo 101 is welded and fixed to the support frame 100, thereby reducing the downward pressure of the storage silo, and a disc feeder 400 is arranged at the bottom of the storage silo 101. The disc feeder 400 can realize continuous and reliable supply of materials to meet the continuous operation requirements of the production line. A discharge port 102 is provided on the lower surface of the storage silo 101. The discharge port 102 is used for the material in the storage silo to flow into the corrugated steel pipe 300. The bottom of the discharge port 102 is connected with a slot 200. The slot 200 is used to connect the discharge port 102 and the corrugated steel pipe 300. The bottom of the slot 200 is connected with the corrugated steel pipe 300. The steel pipe 300 itself has a rigid telescopic function, which can realize the longitudinal telescopic adjustment of the material port. A plug plate 201 is movably arranged in the slot 200. The plug plate 201 is used to control the flow rate of material discharged from the discharge port 102. A pair of limit plates 202 are provided at the slot at one end of the slot 200. The limit plates 202 are used to prevent the slider 205 from derailing and falling. A baffle 203 is provided at the slot at the other end of the slot 200. The baffle 203 is used to prevent the slider 205 and the plug plate 201 from derailing and falling. An adjusting device 301 is provided on both sides of the outer wall of the corrugated steel pipe 300. The adjusting device 301 is used to adjust and control the longitudinal length of the corrugated steel pipe 300. The bottom of the corrugated steel pipe 300 is connected to the feed end of the disc feeder 400, and the plug plate 201 is horizontally L-shaped.

[0024] During use, by adjusting the movable nut 309, the lower adjustment block 305 and the upper adjustment block 304 are moved closer or separated, thereby controlling the distance between the upper seal 302 and the lower seal 303, and then controlling the distance between the corrugated steel pipes 300, thereby realizing the adjustment of the distance between the discharge port 102 and the disc feeding trough 404, thereby shortening the volume of the discharge port 102.

[0025] This embodiment provides a new type of disc continuous feeding bin,

[0026] like Figure 1 、 23: Each regulating device 301 includes an upper sealing member 302 connected to the upper end of the corrugated steel pipe 300, the upper sealing member 302 is used for communication between the corrugated steel pipe 300 and the slot 200, the upper sealing member 302 is welded and fixed to the corrugated steel pipe 300, and a lower sealing member 303 connected to the lower end of the corrugated steel pipe 300, the lower sealing member 303 is welded and fixed to the corrugated steel pipe 300, and both the upper sealing member 302 and the lower sealing member 303 can adopt circular flanges, and the lower sealing member 303 is used for the corrugated steel pipe 300. The corrugated steel pipe 300 is connected to the disc feeding trough 404, and a plurality of upper adjusting blocks 304 are provided on the surface of the upper sealing member 302. The upper adjusting blocks 304 are welded and fixed to the upper sealing member 302, and the upper adjusting blocks 304 are used to open threaded holes 306. A plurality of lower adjusting blocks 305 are provided on the surface of the lower sealing member 303. The lower adjusting blocks 305 are welded and fixed to the lower sealing member 303, and the lower adjusting blocks 305 are used to open threaded holes 306. The upper adjusting blocks 304 and the lower adjusting blocks 305 correspond coaxially.

[0027] The effect is: the upper seal 302 is used for sealing the connection between the upper end of the corrugated steel pipe 300 and the discharge port 102 of the storage silo, and the lower seal 303 is used for sealing the connection between the lower end of the corrugated steel pipe 300 and the feed end of the disc feeding trough 404, thereby connecting the corrugated steel pipe 300 with the discharge port 102 of the storage silo, and the corrugated steel pipe 300 is connected with the disc feeder 400.

[0028] like Figure 1 、 2 As shown in Figure 3: A threaded hole 306 is provided between each upper adjusting block 304 and the lower adjusting block 305, and the threaded hole 306 is used to install a threaded rod 307. A threaded rod 307 is provided in the threaded hole 306, and the threaded rod 307 is used to adjust the distance between the upper adjusting block 304 and the lower adjusting block 305. A positioning nut 308 is provided on the top of the upper adjusting block 304, and the positioning nut 308 is used to fix the upper end of the threaded rod 307. A movable nut 309 is provided at the bottom of the lower adjusting block 305, and the movable nut 309 is used for the forward and backward movement of the lower adjusting block 305. The movable nut 309 is installed at the bottom of the threaded rod 307.

[0029] The effect is that the threaded rod 307 is used to adjust the distance between the upper adjustment block 304 and the lower adjustment block 305 , thereby tightening the longitudinal length of the corrugated steel pipe 300 , thereby adjusting the distance between the discharge port 102 and the disc feeder 400 .

[0030] like Figure 1 、 23: The disc feeder 400 includes a motor base 401 fixed to the ground, the motor base 401 is fixed to the ground with bolts, a reducer 402 is provided on the top of the motor base 401 near the corrugated steel pipe 300, the motor base 401 and the reducer 402 are fixed with bolts, a drive motor 403 is provided on the side of the reducer 402, the reducer 402 and the drive motor 403 are mechanically sealed, the motor base 401 is used to fix and support the reducer 402 and the drive motor 403, the drive motor 403 A disc feeding trough 404 is provided at the top of the reducer 402. The turntable in the disc feeding trough 404 is connected to the rotating shaft on the reducer 402 through a bearing mechanical seal. The disc feeding trough 404 is used to receive the material falling from the corrugated steel pipe 300. A discharge port 405 is provided at the bottom of the disc feeding trough 404 on the side away from the driving motor 403. The discharge port 405 is used to discharge the material in the disc feeding trough 404 to the next process. The top of the disc feeding trough 404 is connected to the bottom of the lower seal 303. The motor base 401 can also adopt a shock-absorbing type.

[0031] The effect is as follows: the reducer 402 is used to control the discharging speed of the disc feeding trough 404 , and the motor base 401 is used to fix the reducer 402 and the driving motor 403 .

[0032] like Figure 1 、 3 4: A guide rail 204 is provided on each side of the left and right sides of the slot 200, and the guide rail 204 is welded and fixed to the slot 200. The guide rail 204 is used to move the slider 205. A slider 205 is provided on each side of the left and right sides of the end of the plug-in plate 201 away from the limit plate 202. The slider 205 is welded and fixed to the plug-in plate 201, and the fitting surface of the slider 205 and the guide rail 204 is polished. The slider 205 is used to connect and fix with the plug-in plate 201 so that the plug-in plate 201 can also move on the guide rail 204. The slider 205 slides with the guide rail 204, and the length of the slider 205 is one tenth of the length of the guide rail 204.

[0033] The effect is that the slider 205 is used to be connected and fixed to the plugboard 201 so that the plugboard 201 can also move on the guide rail 204.

[0034] like Figure 1 、 2 , 3, and 4: Multiple positioning plates 206 are provided at the upper and lower ends of the limit plate 202. The positioning plates 206 are used to fix the outer surface of the slot 200 to the baffle 203, thereby preventing the plug-in board 201 from falling. The front of each positioning plate 206 is fixed to the surface of the slot 200 using bolts, and the rear of each positioning plate 206 is fixed to the limit plate 202 using bolts.

[0035] The effect is: when the baffle 203 is adjusted too many times, there may be material residue in the guide rail 204 that affects the movement of the slider 205. The baffle 203 can be removed to separate the baffle 203 from the slot 200, and then the insert plate 201 can be moved to push the material residue in the guide rail 204 out of the slot 200 through the slider 205 for cleaning, making it convenient to use.

[0036] Working principle: By adjusting the movable nut 309, the lower adjusting block 305 and the upper adjusting block 304 are moved closer or separated, thereby controlling the distance between the upper seal 302 and the lower seal 303, and then controlling the distance between the corrugated steel pipe 300, thereby realizing the adjustment of the distance between the discharge port 102 and the disc feeding trough 404, thereby shortening the volume of the discharge port 102, and also controlling the opening of the baffle 203 and the slot 200 to control the amount of material dropped from the discharge port 102, and manually pulling out the baffle 203 to make the slider 205 connected to the baffle 203 move in the guide rail 204, thereby realizing the opening of the baffle 203 and the slot 200 connected to the discharge port 102, thereby realizing the adjustment of the amount of material dropped from the discharge port 102.

[0037] Furthermore, it should be noted that, in the description of this utility model, unless otherwise expressly specified or limited, the terms "installed," "connected," and "connected" should be understood in a broad sense. For example, they can refer to fixed connections, detachable connections, or integral connections; mechanical connections, electrical connections; direct connections, indirect connections through an intermediate medium, and internal connections between two components. Those skilled in the art will understand the specific meanings of the above terms in this utility model based on specific circumstances.

[0038] The above is a preferred embodiment of the present invention. It should be pointed out that for ordinary technicians in this technical field, several improvements and modifications can be made without departing from the principles described in the present invention. These improvements and modifications should also be regarded as the scope of protection of the present invention.

Claims

1. A novel disc continuous feeding silo, comprising a storage silo (101) disposed within a support frame (100), and a disc feeder (400) disposed at the bottom of the storage silo (101), characterized in that: The lower surface of the storage silo (101) is provided with a discharge port (102), the bottom of the discharge port (102) is connected to a slot (200), the bottom of the slot (200) is connected to a corrugated steel pipe (300), a plug plate (201) is movably provided in the slot (200), a pair of limit plates (202) are provided at the notch at one end of the slot (200), a baffle (203) is provided at the notch at the other end of the slot (200), an adjustment device (301) is provided on both sides of the outer wall of the corrugated steel pipe (300), and the bottom of the corrugated steel pipe (300) is connected to the feeding end of the disc feeder (400).

2. A novel disc continuous feeding bin as claimed in claim 1, characterized in that: Each of the adjusting devices (301) comprises an upper sealing member (302) connected to the upper end of the corrugated steel pipe (300), and a lower sealing member (303) connected to the lower end of the corrugated steel pipe (300); a plurality of upper adjusting blocks (304) are provided on the surface of the upper sealing member (302); a plurality of lower adjusting blocks (305) are provided on the surface of the lower sealing member (303); and the upper adjusting blocks (304) correspond to the lower adjusting blocks (305) coaxially.

3. A novel disc continuous feeding bin as claimed in claim 2, characterized in that: A threaded hole (306) is coaxially provided between each upper adjustment block (304) and the lower adjustment block (305), and a threaded rod (307) is provided in the threaded hole (306).

4. A novel disc continuous feeding bin as claimed in claim 3, characterized in that: A positioning nut (308) is provided on the top of the upper adjustment block (304), and a movable nut (309) is provided on the bottom of the lower adjustment block (305). The movable nut (309) is installed on the bottom of the threaded rod (307).

5. A novel disc continuous feeding bin as claimed in claim 4, characterized in that: The disc feeder (400) includes a motor base (401) fixed to the ground, a reducer (402) is provided on the top of the motor base (401) on a side close to the corrugated steel pipe (300), a drive motor (403) is provided on the side adjacent to the reducer (402), a disc feeding trough (404) is provided on the top of the reducer (402), a discharge port (405) is provided on the bottom of the disc feeding trough (404) on a side away from the drive motor (403), and the top of the disc feeding trough (404) is connected to the bottom of the lower sealing member (303).

6. A novel disc continuous feeding bin as claimed in claim 5, characterized in that: A guide rail (204) is provided on each of the left and right sides of the slot (200), and a slider (205) is provided on each of the left and right sides of one end of the inserting plate (201) away from the limiting plate (202). The slider (205) is slidably engaged with the guide rail (204), and the length of the slider (205) is one tenth of the length of the guide rail (204).

7. A novel disc continuous feeding bin as claimed in claim 6, characterized in that: A plurality of positioning plates (206) are provided at both upper and lower ends of the limiting plate (202), the front portion of each positioning plate (206) is fixed to the surface of the slot (200), and the rear portion of each positioning plate (206) is fixed to the limiting plate (202).