One-driving-two type dust-free feeding station
By designing a type one-to-two dust-free feeding station, using a screening mechanism and a multi-feeding pipe valve structure, the problem of raw material impurities affecting the quality of finished products and poor use flexibility is solved, and efficient and flexible multi-line feeding is achieved, ensuring the quality and production efficiency of finished products.
Patent Information
- Application Number
- CN202421721904.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-19
- Publication Date
- 2025-08-08
- Estimated Expiration
- 2034-07-19
AI Technical Summary
Existing feed additive raw material feeding stations are prone to mix impurities, affecting the quality of the finished product, and have poor usage flexibility, so they cannot serve multiple production lines at the same time or separately.
A one-to-drag-type dust-free feeding station is designed, including a screening mechanism, multiple feeding pipes and feeding valves, equipped with a screening motor and a dust collector, which can filter impurities before feeding and feed two production lines at the same time or separately.
It effectively reduces impurities in raw materials, ensures the quality of the finished product, and improves the flexibility of use. It can feed materials for two production lines at the same time or separately, improving the applicability and efficiency of the equipment.
Smart Images

Figure CN223201205U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of feed additive processing equipment, in particular to a one-to-two dust-free feeding station. Background Art
[0002] Feed additives can be added to feed to improve livestock nutrition, enhance physical fitness, reduce feed usage, and prevent and treat diseases. To ensure production efficiency and optimize costs, feed additives are now often obtained through production lines. The various raw materials required for feed additives can be added to the production line through feeding stations.
[0003] However, common feed additive raw material feeding stations often have the following problems: 1. The raw materials entering the feeding station are likely to contain a lot of impurities or garbage, which are directly fed into the subsequent processing through the feeding station, which is likely to affect the quality of the final feed additives; 2. Most raw material feeding stations can only be used for feeding a single production line, with high overall costs, poor flexibility of use, and weak market competitiveness. Utility Model Content
[0004] The purpose of the utility model is to provide a one-to-two dust-free feeding station, which can solve one or more of the above problems.
[0005] According to one aspect of the present invention, a one-to-two dust-free feeding station is provided, comprising a feeding station body, a screening mechanism, a first discharge pipe, a second discharge pipe, a first discharge valve, a second discharge valve and a support.
[0006] The feeding station body is installed on the support, and a receiving cavity is provided in the feeding station body. A protrusion is provided at the bottom of the feeding station body, and the protrusion is provided with a total discharge port connected to the receiving cavity.
[0007] The screening mechanism is installed on the support and extends into the accommodating cavity.
[0008] The first discharge pipe and the second discharge pipe are connected to the protrusions respectively, and the first discharge pipe and the second discharge pipe are both connected to the main discharge port. The first discharge valve is installed on the first discharge pipe, and the second discharge valve is installed on the second discharge pipe.
[0009] The beneficial effects of the present invention are as follows: in the present invention, by setting a screening mechanism, the raw materials can be conveniently screened and filtered before being output from the feeding station main body, effectively reducing the impurities or garbage contained in the raw materials to ensure the quality of the finished feed additives obtained in subsequent processing; at the same time, by setting two discharge pipes and corresponding discharge valves, the feeding station main body can feed two production lines at the same time, or feed one production line alone, and has strong flexibility in use.
[0010] In some embodiments, the screening mechanism includes a screening mesh and a screening motor. Multiple screening meshes and multiple screening motors are provided. Multiple screening motors are mounted on a support and are connected to multiple screening meshes, respectively, disposed within a receiving cavity. The screening motor can conveniently drive the screening mesh to improve the screening effect on the raw material.
[0011] In some embodiments, the present invention further includes a capping mechanism. The feeding station body is provided with a feeding port, the feeding port being in communication with the receiving chamber. The capping mechanism is mounted on the feeding station body and covers the feeding port. The provision of the feeding port facilitates the feeding of external raw materials into the receiving chamber, and the provision of the capping mechanism facilitates sealing the feeding port when no raw materials are needed, thereby reducing external contamination of the receiving chamber.
[0012] In some embodiments, the capping mechanism includes a cover plate and an electric push rod, which includes a cylinder and a push rod. The cylinder is hingedly connected to the cover plate, one end of the push rod is movably mounted on the cylinder, and the other end of the push rod is hingedly mounted on the feeding station body. The electric push rod can drive the cover plate to move, thereby facilitating the closing and opening of the cover plate on the feeding port.
[0013] In some embodiments, the present invention further includes a dust collector, a dust removal motor, and a motor base. The motor base is connected to the feeding station body, and the dust removal motor is mounted on the motor base and connected to the dust collector. The dust collector extends into the receiving chamber. Before feeding the materials into the receiving chamber, the dust removal motor can drive the dust collector to effectively remove dust from the interior of the receiving chamber, thereby minimizing dust contamination of the raw materials subsequently entering the receiving chamber.
[0014] In some embodiments, the feeding station body is provided with an inclined portion, and the protrusion is provided at the bottom of the inclined portion. The setting of the inclined portion can facilitate the raw materials to enter the feeding station body and slide through the inclined portion to the protrusion.
[0015] In some embodiments, the present invention further includes a discharge pipe and a discharge valve. The discharge pipe is connected to the feeding station body and communicates with the accommodating chamber. The discharge valve is mounted on the discharge pipe. The provision of the discharge pipe and discharge valve facilitates direct discharge from the accommodating chamber when needed, meeting specific requirements and improving the safety of the present invention. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 This is a structural schematic diagram of a one-to-two dust-free feeding station according to an embodiment of the present invention.
[0017] Figure 2 This is a cross-sectional view of the total discharge port of a one-to-two dust-free feeding station according to one embodiment of the present invention.
[0018] Figure 3 for Figure 1 A partial enlarged view of the middle capping mechanism.
[0019] In the figure: 1. Feeding station body, 2. Screening mechanism, 3. First discharge pipe, 4. Second discharge pipe, 5. First discharge valve, 6. Second discharge valve, 7. Support, 8. Capping mechanism, 9. Dust collector, 10. Dust removal motor, 20. Motor base, 30. Discharge pipe, 40. Discharge valve, 11. Inclined portion, 12. Protrusion, 121. Main discharge port, 122. Feeding port, 21. Screening net, 22. Screening motor, 81. Cover plate, 82. Electric push rod. DETAILED DESCRIPTION
[0020] The structural principle and working principle of the present invention are further described in detail below with reference to the accompanying drawings.
[0021] refer to Figure 1 、 Figure 2 and Figure 3 The utility model is a one-to-two dust-free feeding station, including a feeding station body 1, a screening mechanism 2, a first discharge pipe 3, a second discharge pipe 4, a first discharge valve 5, a second discharge valve 6 and a support 7.
[0022] The feeding station body 1 is fixed on the support 7 by bolts. A accommodating cavity is provided in the feeding station body 1. A slope 11 is provided on the lower side of the feeding station body 1. A protrusion 12 is provided at the bottom of the slope 11. The protrusion 12 is provided with a total discharge port 121 connected to the accommodating cavity.
[0023] The screening mechanism 2 includes a screening mesh 21 and a screening motor 22. There can be multiple screening meshes 21 and screening motors 22. In this embodiment, there are preferably two screening meshes 21 and two screening motors 22. The bodies of the two screening motors 22 are fixedly mounted on the support 7 by bolts. The two screening motors 22 are respectively connected to the two screening meshes 21 through vibrators, so that the screening motors 22 can drive the screening meshes 21 to vibrate.
[0024] After setting, all screening motors 22 extend into the accommodating cavity, so that the two screening nets 21 are both arranged in the accommodating cavity. After setting, the screening nets 21 are all located above the protrusion 12.
[0025] One end of the first discharge pipe 3 is fixedly connected to the protrusion 12 through a flange, and one end of the second discharge pipe 4 is also fixedly connected to the protrusion 12 through a flange. After being set, the first discharge pipe 3 and the second discharge pipe 4 are both connected to the main discharge port 121.
[0026] The first discharge valve 5 is fixedly mounted on the first discharge pipe 3 by means of bolts. The first discharge valve 5 can open and close the first discharge pipe 3 .
[0027] The second discharge valve 6 is fixedly mounted on the second discharge pipe 4 by means of bolts. The second discharge valve 6 can open and close the second discharge pipe 4 .
[0028] The one-to-two dust-free feeding station of the present invention further includes a covering mechanism 8 . The feeding station body 1 is provided with a feeding port 122 , which is communicated with the accommodating cavity.
[0029] The capping mechanism 8 includes a cover plate 81 and an electric push rod 82. Preferably, there are two electric push rods 82, each of which includes a cylinder and a push rod. The cylinders of the two electric push rods 82 are respectively hinged to the cover plate 81 through a pin. In each electric push rod 82, one end of the push rod is movably mounted on the cylinder through a piston, while the other end of the push rod is hinged to the feeding station body 1 through a pin. The two electric push rods 82 are symmetrically arranged.
[0030] The size of the cover plate 81 can match the size of the feeding port 122 , so that the electric push rod 82 can drive the cover plate 81 to move, so that the cover plate 81 can cover the feeding port 122 or move away from the feeding port 122 .
[0031] The one-to-two dust-free feeding station of the present invention further includes a dust collector 9, a dust removal motor 10, and a motor base 20. The motor base 20 is fixedly connected to the feeding station body 1 by bolts, the body of the dust removal motor 10 is fixedly mounted on the motor base 20 by bolts, and the output shaft of the dust removal motor 10 is connected to the dust collector 9 through a reducer, so that the dust removal motor 10 can drive the dust collector 9 to work, and the dust collector 9 extends into the accommodating cavity.
[0032] The one-to-two dust-free feeding station of the present invention includes a discharge pipe 30 and a discharge valve 40. The discharge pipe 30 is connected to the feeding station body 1 by bolts, and the discharge pipe 30 is connected to the accommodating chamber. The discharge valve 40 is installed on the discharge pipe 30 and can open and close the discharge pipe 30.
[0033] When the one-to-two dust-free feeding station of the present invention is in use, the two production lines that need feeding can be respectively connected to the first discharge pipe 3 and the second discharge pipe 4 and communicated with each other.
[0034] Before feeding, the dust removal motor 10 can drive the dust collector 9 to work, and the dust collector 9 can remove dust from the accommodating cavity, so that the interior of the feeding station body 1 becomes basically dust-free.
[0035] When feeding, the electric push rod 82 of the sealing mechanism 8 can drive the cover plate 81 to move, so that the cover plate 81 can leave the feeding port 122 to open the feeding port 122, and the external feeding device can feed the material to the feeding port 122, so that the raw materials can enter the accommodating cavity. Thereafter, the raw materials can be moved to the total discharge port 121 through the inclined portion under the action of gravity, and during the movement of the raw materials, the screening motor 22 can drive the screening net 21 to vibrate, so as to filter and screen the raw materials, thereby effectively reducing the impurities and garbage contained in the raw materials.
[0036] When it is necessary to feed materials to the production line, the user can open the first discharge valve 5 of the first discharge pipe 3 or the second discharge valve 6 on the second discharge pipe 4 corresponding to the production line, so that the raw materials at the total discharge port 121 can be output to the corresponding production line through the first discharge pipe 3 or the second discharge pipe 4 to realize feeding. The user can even open the first discharge valve 5 of the first discharge pipe 3 or the second discharge valve 6 on the second discharge pipe 4 at the same time, so that the utility model can feed materials to two production lines at the same time.
[0037] The above descriptions are only some embodiments of the present invention. For those skilled in the art, several modifications and improvements can be made without departing from the inventive concept of the present invention, and these all fall within the scope of protection of the present invention.
Claims
1. A one-to-two dust-free feeding station, characterized in that: It includes a feeding station body, a screening mechanism, a first discharge pipe, a second discharge pipe, a first discharge valve, a second discharge valve and a support. The feeding station body is installed on the support, and a receiving cavity is provided in the feeding station body. A protrusion is provided at the bottom of the feeding station body, and the protrusion is provided with a total discharge port connected to the receiving cavity. The screening mechanism is installed on the support and extends into the accommodating cavity. The first discharge pipe and the second discharge pipe are connected to the protrusions respectively, and the first discharge pipe and the second discharge pipe are both connected to the main discharge port. The first discharge valve is installed on the first discharge pipe, and the second discharge valve is installed on the second discharge pipe.
2. A one-to-two dust-free feeding station according to claim 1, characterized in that: The screening mechanism includes a screening net and a screening motor. There are multiple screening nets and screening motors. Multiple screening motors are installed on a support. Multiple screening motors are respectively connected to multiple screening nets. The screening net is arranged in the accommodating cavity.
3. The one-to-two dust-free feeding station according to claim 1, characterized in that: It includes a sealing mechanism, the feeding station body is provided with a feeding port, the feeding port is communicated with the accommodating cavity, and the sealing mechanism is installed on the feeding station body and can cover the feeding port.
4. A one-to-two dust-free feeding station according to claim 3, characterized in that: The capping mechanism includes a cover plate and an electric push rod. The electric push rod includes a cylinder body and a push rod. The cylinder body is hinged to the cover plate. One end of the push rod is movably mounted on the cylinder body, and the other end of the push rod is hinged on the feeding station body.
5. The one-to-two dust-free feeding station according to claim 1, characterized in that: It includes a dust collector, a dust removal motor and a motor base. The motor base is connected to the feeding station body. The dust removal motor is installed on the motor base and connected to the dust collector. The dust collector extends into the accommodating cavity.
6. The one-to-two dust-free feeding station according to claim 1, characterized in that: The feeding station body is provided with an inclined portion, and the protrusion is provided at the bottom of the inclined portion.
7. The one-to-two dust-free feeding station according to claim 1, characterized in that: It includes a discharge pipe and a discharge valve. The discharge pipe is connected to the feeding station body and communicated with the accommodating cavity. The discharge valve is installed on the discharge pipe.