Blanking mechanism of batching bin
By installing partitions and a rotating motor-driven circumferential feeding blocker inside the batching silo, the problem of chaotic feeding mechanisms in existing batching silos is solved, achieving orderly feeding and cost savings.
Patent Information
- Application Number
- CN202520049706.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-09
- Publication Date
- 2026-01-20
- Estimated Expiration
- 2035-01-09
AI Technical Summary
The existing material feeding mechanism of the batching silo has a simple structure, which can easily lead to chaotic batching, increase costs, and make it inconvenient to use.
The internal space of the silo is divided into four batching areas by partitions. Each area is equipped with a funnel-shaped discharge port. A rotating motor drives the circumferential discharge blocking plate and the staggered interface to precisely control the discharge sequence and ensure that the materials are discharged in sequence.
It enables orderly material feeding, avoids chaotic batching, reduces costs, and improves ease of use and structural stability.
Smart Images

Figure CN223812949U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical equipment in the batching bin technology in bin body technology, specifically a batching bin unloading mechanism. BACKGROUND
[0002] In the prior art, the batching bin is a device for receiving, storing and discharging each component raw material required according to the formula in the production process of a factory. A batching bin usually includes the following devices: a bin body, a batching device, an arch breaking device, a material level indicator and a control system. It can be mainly applied to fertilizer production: used for storing different types of fertilizer raw materials such as nitrogen fertilizer, phosphorus fertilizer and potassium fertilizer, batching according to the formula proportion through an automatic batching machine, and producing various compound fertilizers and organic fertilizers; applied to feed processing: storing feed raw materials such as corn, soybean meal and fish meal, and accurately batching according to the nutritional needs of animals to produce high-quality feed; applied to building material production: used for storing raw materials such as cement, sand and gravel in the production process of cement and mortar, to ensure the accuracy and stability of batching.
[0003] There are many structures of batching bins in the prior art, such as the "vibrating type multi-type batching bin" disclosed in the technical solution of publication (announcement) No. CN218987579U; the "highly flexible batching bin" disclosed in publication (announcement) No. CN115593970A; the "mixing and conditioning bin for batching" disclosed in publication (announcement) No. CN114053900A, etc.
[0004] In the prior art, the setting of the batching bin body is very important, especially the unloading mechanism of the bin body, which is the valve mechanism for controlling each component of the batching bin. It plays a very important role in controlling the batching ratio. In the prior art, a single valve mechanism is usually arranged at the position of the unloading port of the bin body of each batching bin. This structure of the unloading mechanism can cause batching confusion, and the existing structure can also increase the cost of the overall device, which is not convenient to use and can easily cause batching confusion.
[0005] Therefore, in order to solve the above problems, it is necessary to develop a batching bin unloading mechanism with reasonable structure, cost saving and convenient use. UTILITY MODEL CONTENTS
[0006] The utility model aims at the deficiencies in the prior art, and provides a batching bin unloading mechanism. The technical solution is as follows:
[0007] A kind of ingredient bin discharging mechanism, including total warehouse body, partition is provided in the total warehouse body, and the space in the total warehouse body is divided into four ingredient areas by partition, different material is placed in each ingredient area, and the lower end of each ingredient area is correspondingly provided with funnel-shaped discharge port, four discharge ports are arranged in a circle, and fixed plate is installed in the area between four discharge ports, and rotating motor is installed on the fixed plate;
[0008] The main shaft of the rotating motor passes through the fixed plate downward, and the shaft end is provided with a discharge blocking plate, the discharge blocking plate is a ring-shaped plate structure, and the height of the discharge blocking plate is set to correspond to the position of the discharge port.
[0009] The size of the misaligned interface is adapted to the size of the discharge port, and the misaligned interface and the four discharge ports are located on the same circle.
[0010] Further, a connecting rod is installed on the main shaft of the rotating motor, and the connecting rod is fixedly installed with the discharge blocking plate.
[0011] Further, the connecting rod is provided with four cross-shaped rods.
[0012] Further, the width of the discharge blocking plate is greater than the diameter of the discharge port, and the discharge blocking plate is used to block all the discharge ports.
[0013] Further, the fixed plate is fixed between the four discharge ports by welding.
[0014] Further, the fixed plate is provided with four embedding blocks corresponding to the position of the discharge port, and the embedding blocks are provided in an arc-shaped structure.
[0015] Further, the size of the discharge port and the misaligned interface is set to allow the misaligned interface to be located between two discharge ports without overlapping any discharge port.
[0016] Further, the rotating motor is connected with a control device to control the rotating motor.
[0017] Advantages: the present application has the following advantages:
[0018] 1) the device, the blanking plate will be four blanking completely blocked, the misaligned interface is on the same circumference with four blanking, through the rotating motor drive ring blanking plate rotation, then the misaligned interface on the blanking plate also rotate accordingly, when the misaligned interface moves to the position corresponding to the blanking, the material in the corresponding batching area of blanking realizes the blanking, and after reaching the batching amount requirement, control the blanking plate to continue to move, so that the misaligned interface corresponds to the position of another blanking, realize the blanking of the batching area, repeat the operation can sequentially complete the blanking work of the material in all batching area, will not cause the disorder of batching, the structure is very clever and reasonable;
[0019] 2) the rotating motor in the device is specifically installed on the fixed plate, the fixed plate is welded in the area corresponding to the four blanking, and in order to stabilize the overall structure, the arc-shaped embedding block is arranged on the fixed plate, which can be embedded in the side wall of the blanking, the structure is stable;
[0020] 3) the device also needs to set the width of the annular blanking plate, so that the blanking plate can completely block the blanking, and the blanking will not leak, the overall structure is reasonable; and the adjacent blanking also needs to set a wider area, so that the misaligned interface can be placed more reasonably between the adjacent blanking. BRIEF DESCRIPTION OF DRAWINGS
[0021] Figure 1 is a structural diagram of the present application;
[0022] Figure 2 is Figure 1 A view in the direction of the arrow;
[0023] Figure 3 is Figure 1 B-B sectional view;
[0024] Figure 4 is Figure 1 C view in the direction of the arrow;
[0025] Among them, the total warehouse body 1; the partition plate 2; the batching area 3; the blanking 4; the fixed plate 5; the rotating motor 6; the main shaft 7; the blanking plate 8; the misaligned interface 9; the connecting rod 10; the embedding block 11. DETAILED DESCRIPTION
[0026] The present application will be further illustrated below in combination with the drawings and specific embodiments, the embodiments are implemented on the premise of the technical scheme of the present application, it should be understood that these embodiments are only used to illustrate the present application and not used to limit the scope of the present application.
[0027] such as Figure 1 and Figure 2As shown in the figure, a kind of ingredient bin discharging mechanism, including total warehouse body 1, the partition 2 is arranged in total warehouse body 1, the space in total warehouse body 1 is divided into four ingredient areas 3 by the partition 2, different materials are placed in each ingredient area 3 correspondingly, and the lower end of each ingredient area 3 is correspondingly provided with funnel-shaped discharge port 4, four discharge ports 4 are arranged in a circle, and a fixed plate 5 is installed in the area between four discharge ports 4, and a rotating motor 6 is installed on the fixed plate 5;
[0028] The main shaft 7 of rotating motor 6 passes through the fixed plate 5 downward, and the shaft end is provided with a discharging baffle plate 8, the discharging baffle plate 8 is a whole annular plate structure, and the height of the discharging baffle plate 8 is set correspondingly, so that the discharging baffle plate 8 corresponds to the position of the discharge port 4, and the discharging baffle plate 8 blocks the discharge port 4 from the lower position as a whole;
[0029] As shown in the figure, Figure 3 and Figure 4 The discharging baffle plate 8 is also provided with a misaligned interface 9, the size of the misaligned interface 9 is matched with the size of the discharge port 4, and the misaligned interface 9 is located on the same circumference as the four discharge ports 4, when the misaligned interface 9 is driven by the rotating motor 6 to correspond to the position of the discharge port 4, the discharge port 4 is opened correspondingly, and the material in the upper ingredient area 3 is discharged from the discharge port 4 correspondingly, when the misaligned interface 9 is not connected with any one of the discharge ports 4, the discharging baffle plate 8 blocks all the discharge ports 4.
[0030] The main shaft 7 of rotating motor 6 is provided with a connecting rod 10, which is fixedly installed with the discharging baffle plate 8 correspondingly, and the connecting rod 10 and the discharging baffle plate 8 are rotated by the rotating motor 6.
[0031] The connecting rod 10 is provided with four cross-shaped rods; the width of the discharging baffle plate 8 is greater than the diameter of the discharge port 4, and all the discharge ports 4 are blocked by the annular discharging baffle plate 8; the fixed plate 5 is fixed between the four discharge ports 4 by welding.
[0032] The fixed plate 5 is also provided with four embedding blocks 11 corresponding to the position of the discharge port 4, the embedding blocks 11 are provided in the form of corresponding arc structure, and the embedding blocks 11 are correspondingly welded between the discharge ports 4.
[0033] The size of the discharging port 4 and the misaligned interface 9 is set correspondingly, so that the misaligned interface 9 can be located between two discharge ports 4 without overlapping with any one of the discharge ports 4; the rotating motor 6 is connected with a control device, and the rotating motor 6 is controlled by the control device.
[0034] The working principle and specific working process of the device are as follows: the total warehouse body is provided with four ingredient areas through a partition plate, and each ingredient area is equipped with different materials; in the process of discharging the materials in each ingredient area, the discharging baffle plate below is used to complete the discharging.
[0035] The discharging baffle plate can completely block the four discharging ports, the misaligned interfaces are located on the same circumference as the four discharging ports, and the misaligned interfaces can be positioned corresponding to the discharging ports or misaligned with the positions of the discharging ports; when the rotating motor is turned on, the rotating motor is correspondingly rotated, the angle of rotation is accurately controlled by the control device, the ring-shaped discharging baffle plate is rotated by the rotating motor, and the misaligned interfaces on the discharging baffle plate are correspondingly rotated and moved; when the misaligned interfaces are moved to positions corresponding to the discharging ports, the materials in the ingredient area corresponding to the discharging port are discharged from the discharging port position, and after the required amount of ingredients is reached, the discharging baffle plate is continuously moved so that the misaligned interfaces correspond to the positions of another discharging port, thereby achieving the discharging of the ingredient area, and repeating the operation can complete the discharging of the materials in all ingredient areas.
[0036] After the discharging is completed, the misaligned interfaces are only moved to the area between adjacent discharging ports, so that the misaligned interfaces do not overlap with the positions of any discharging port, thereby completely blocking the discharging ports and achieving discharging blocking.
[0037] The rotating motor in the device is specifically installed on the fixed plate, the fixed plate is correspondingly welded at the area between the four discharging ports, and an arc-shaped embedding block is further arranged on the fixed plate to stably embed the side wall of the discharging port.
[0038] In addition, the width of the ring-shaped discharging baffle plate is also arranged correspondingly, so that the discharging baffle plate can completely block the discharging ports, the discharging ports will not leak, and the overall structure is reasonable; and a relatively wide area is also arranged between adjacent discharging ports, so that the misaligned interfaces can be reasonably placed between adjacent discharging ports.
[0039] The above specific embodiment is only a preferred embodiment of the present application, and is not intended to limit the implementation and scope of claims of the present application, and any equivalent changes and modifications made according to the scope of the patent protection of the present application should be included in the scope of the patent application of the present application.
Claims
1. A feeding mechanism for a batching silo, characterized in that: The container includes a main body (1), which is equipped with a partition (2). The partition (2) divides the space inside the main body (1) into four batching areas (3). Each batching area (3) contains different materials. Each batching area (3) has a funnel-shaped discharge port (4) at its lower end. The four discharge ports (4) are arranged in a circle. A fixing plate (5) is installed in the area between the four discharge ports (4). A rotary motor (6) is installed on the fixing plate (5). The main shaft (7) of the rotary motor (6) passes downward through the fixed plate (5), and a discharge blocking plate (8) is installed at the shaft end. The discharge blocking plate (8) has an overall circumferential plate structure, and the height of the discharge blocking plate (8) is set accordingly so that the position of the discharge blocking plate (8) corresponds to the discharge port (4). The discharge blocking plate (8) completely blocks the discharge port (4) from the bottom position. Furthermore, the feeding block plate (8) is also provided with a misaligned interface (9). The size of the misaligned interface (9) is adapted to the size of the feeding port (4). The misaligned interface (9) and the four feeding ports (4) are located on the same circumference. When the misaligned interface (9) is driven to correspond with the feeding port (4) by the rotating motor (6), the feeding port (4) is opened accordingly. The material in the upper feeding area (3) is fed from the feeding port (4). When the misaligned interface (9) is not connected to any feeding port (4), the feeding block plate (8) blocks all the feeding ports (4).
2. The material feeding mechanism of the batching bin according to claim 1, characterized in that: A connecting rod (10) is installed on the main shaft (7) of the rotary motor (6). The connecting rod (10) is fixedly installed with the discharge plate (8). The rotary motor (6) drives the connecting rod (10) and the discharge plate (8) to rotate.
3. The material feeding mechanism of the batching bin according to claim 2, characterized in that: The connecting rod (10) is provided with four cross-shaped rods.
4. The material feeding mechanism of the batching bin according to claim 1, characterized in that: The width of the discharge blocking plate (8) is greater than the diameter of the discharge port (4), and the annular discharge blocking plate (8) blocks all the discharge ports (4).
5. The material feeding mechanism of the batching bin according to claim 1, characterized in that: The fixing plate (5) is fixed between the four feed ports (4) by welding.
6. The material feeding mechanism of the batching bin according to claim 5, characterized in that: The fixing plate (5) is also provided with four insert blocks (11) corresponding to the position of the discharge port (4). The insert blocks (11) are set with corresponding arc-shaped structures and are welded to the discharge ports (4) respectively.
7. The material feeding mechanism of the batching bin according to claim 1, characterized in that: The sizes of the feed port (4) and the misaligned interface (9) are set accordingly so that when the misaligned interface (9) is located between the two feed ports (4), it does not overlap with either feed port (4).
8. The material feeding mechanism of the batching bin according to claim 7, characterized in that: The rotary motor (6) is connected to a control device, which controls the rotary motor (6) accordingly.
Citation Information
Patent Citations
Mixing and tempering bin for burdening
CN114053900A
Highly flexible batching bin
CN115593970A
Vibrating type multi-type batching bin
CN218987579U