Feeding machine with screening function
By designing a feeding machine with screening function, and using the matching design of screening components and feeding conveyor belts, the problem that the existing feeding machine cannot effectively identify the particle size of chicken feed is solved, precise screening and classified transportation are achieved, and production efficiency and product quality are improved.
Patent Information
- Application Number
- CN202421683702.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-16
- Publication Date
- 2025-06-27
- Estimated Expiration
- 2034-07-16
AI Technical Summary
The existing feeding machine without screening function cannot effectively identify the particle size in chicken feed production, resulting in uneven quality, low efficiency and high cost of manual pre-screening. The additional addition of independent screening equipment also increases equipment and space costs.
A feeding machine with screening function is designed, including screening components and feeding conveyor belts. The screening components include a base frame, mounting frame, screening parts, screening mesh, vibration components, etc. The precise screening of chicken feed is achieved through the screen and vibration components, and the feeding conveyor belt is matched with the feeding conveyor belt through the discharge pipe to realize the classified transportation of materials of different particle sizes.
Accurate particle size screening of chicken feed is achieved, ensuring the consistency and stability of product quality, improving production efficiency, and reducing labor and equipment costs.
Smart Images

Figure CN223027785U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the field of feeding equipment, and particularly relates to a feeding machine with a screening function. Background Technique
[0002] The feeding machine for chicken feed production is a mechanical device used to transport chicken feed from one location to another during the production process of chicken feed. The currently widely used feeding machine without a screening function in chicken feed production has many disadvantages. First of all, due to the lack of a screening function, it is impossible to effectively distinguish the particle size of chicken feed during the feeding process, resulting in materials with uneven quality being transported into the production link together. This is caused by the single structure and function of the feeding machine itself.
[0003] To address this problem, the conventional method is to manually pre-screen the chicken feed before feeding or add additional independent screening equipment. However, manual pre-screening not only increases labor costs but also has low efficiency, and it is also prone to unstable and inaccurate screening results due to human factors; adding additional independent screening equipment will increase the costs of equipment purchase, installation, and maintenance, and will also occupy more production space, affecting the rationality of the workshop layout. Therefore, a new structure needs to be proposed to solve the above technical problems. Content of the Utility Model
[0004] Aiming at the deficiencies of the existing technology, the purpose of the utility model is to provide a feeding machine with a screening function to solve the problems proposed in the above background technique.
[0005] The utility model is realized through the following technical solutions: A feeding machine with a screening function includes: a screening component and a feeding conveyor belt. The screening component includes: a bottom frame, a first mounting frame, a second mounting frame, a screening member, a screen, a feeding plate, a vibration component, a mounting plate, and a collection box. The upper side surface of the bottom frame is symmetrically installed with the first mounting frame and the second mounting frame. A screening member is installed between the first mounting frame and the second mounting frame. A vibration motor is installed on the front side surface of the first mounting frame through a fixing plate. A screen is installed on the upper side surface of the screening member. A discharge cylinder is installed on the lower side surface of the screening member. A mounting plate is installed inside the bottom frame. A collection box is installed on the upper side surface of the mounting plate. A discharge pipe is installed on the lower side surface of the mounting plate. Each discharge pipe corresponds to and matches each feeding conveyor belt.
[0006] As a preferred embodiment, the first mounting frame is installed at the left edge of the upper side surface of the bottom frame, the second mounting frame is installed at the right edge of the upper side surface of the bottom frame, the height of the second mounting frame is greater than that of the first mounting frame, and the screening member is installed between the first mounting frame and the second mounting frame at an inclination of 25 degrees with the left side lower and the right side higher.
[0007] As a preferred embodiment, a feed plate is installed at the right edge of the upper surface of the screening member. A sieve is installed inside the screening member. The mesh size of the sieve gradually decreases from left to right. Two groups of baffle assemblies are installed on the upper surface of the screening member.
[0008] As a preferred embodiment, the baffle assembly includes: a fixed frame, an electric push rod, and a baffle body. Two fixed frames are installed on the upper surface of the screening member. The baffle body is installed on the lower surface of the fixed frame through the electric push rod. The side surface of the baffle body away from the electric push rod abuts against the upper surface of the sieve. The screening component sieve can be customized and set according to the particle size required for chicken feed production, and can accurately screen out materials of different particle sizes, ensuring the quality consistency and stability of chicken feed products.
[0009] As a preferred embodiment, three discharge cylinders are evenly installed on the lower surface of the screening member. The discharge end of the discharge cylinder is arranged on the upper surface of the collection box. The upper surface of the collection box is designed to be open. The lower surface of the collection box is installed with discharge pipes that are staggered from each other through mounting plates and are matched with the number of collection boxes.
[0010] As a preferred embodiment, a valve is provided at the connection between the discharge pipe and the mounting plate. The discharge pipe is connected to the inside of the collection box. Each discharge pipe corresponds to an upper conveyor belt, which can classify and convey the screened chicken feed of different specifications and particle sizes, enabling materials of different qualities or particle sizes to be accurately conveyed to the corresponding subsequent processing links, which helps to achieve a refined production process.
[0011] After adopting the above technical solution, the beneficial effect of the present utility model is: By setting the screening component, the screening component includes: a chassis, a mounting frame one, a mounting frame two, a screening member, a sieve, a feed plate, a vibration component, a mounting plate, and a collection box. The mounting frame one and the mounting frame two are symmetrically installed on the upper surface of the chassis. The screening member is installed between the mounting frame one and the mounting frame two. A vibration motor is installed on the front surface of the mounting frame one through a fixing plate. The sieve is installed on the upper surface of the screening member. The discharge cylinder is installed on the lower surface of the screening member. The mounting plate is installed inside the chassis. The collection box is installed on the upper surface of the mounting plate. The discharge pipe is installed on the lower surface of the mounting plate. When in use, the screening component sieve can be customized and set according to the particle size required for chicken feed production, and can accurately screen out materials of different particle sizes, ensuring the quality consistency and stability of chicken feed products.
[0012] By setting up a feeding conveyor belt, each discharge pipe corresponds to and matches each feeding conveyor belt. When in use, each discharge pipe corresponds to a feeding conveyor belt, and different specifications and particle sizes of chicken feed after screening can be classified and conveyed, enabling materials of different qualities or particle sizes to be accurately conveyed to the corresponding subsequent processing links, which helps to achieve a refined production process. Brief Description of the Drawings
[0013] In order to more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the following will briefly introduce the drawings required for use in the description of the embodiments or the prior art. Obviously, the drawings in the following description are only some embodiments of the present invention. For those of ordinary skill in the art, other drawings can be obtained based on these drawings without creative efforts.
[0014] Figure 1 It is a schematic diagram of the overall structure of a feeding machine with a screening function according to the present invention.
[0015] Figure 2 It is a schematic diagram of the screening component of a feeding machine with a screening function according to the present invention.
[0016] In the figure, 100 - chassis, 110 - mounting frame one, 120 - mounting frame two, 130 - vibration motor;
[0017] 200 - screening part, 210 - sieve mesh, 220 - feeding plate, 230 - discharge cylinder;
[0018] 300 - mounting plate, 310 - collection box, 320 - discharge pipe -;
[0019] 400 - fixing frame, 410 - electric push rod, 420 - baffle body;
[0020] 500 - feeding conveyor belt. Detailed Embodiments
[0021] The following will clearly and completely describe the technical solutions in the embodiments of the present invention with reference to the drawings in the embodiments of the present invention. Obviously, the described embodiments are only some embodiments of the present invention, rather than all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts belong to the scope of protection of the present invention.
[0022] Please refer to Figures 1 to 2, the present utility model provides a technical solution: a feeding machine with a screening function, including: a screening component and a feeding conveyor belt 500. The screening component includes: a chassis 100, a first mounting frame 110, a second mounting frame 120, a screening member 200, a screen 210, a feeding plate 220, a vibration component, a mounting plate 300, and a collection box 310. On the upper side surface of the chassis 100, the first mounting frame 110 and the second mounting frame 120 are symmetrically installed. Between the first mounting frame 110 and the second mounting frame 120, the screening member 200 is installed. On the front side surface of the first mounting frame 110, a vibration motor 130 is installed through a fixing plate. On the upper side surface of the screening member 200, the screen 210 is installed. On the lower side surface of the screening member 200, a discharge tube 320 is installed. Inside the chassis 100, the mounting plate 300 is installed. On the upper side surface of the mounting plate 300, a collection box is installed. On the lower side surface of the mounting plate 300, a discharge pipe 320 is installed. Each discharge pipe 320 corresponds to and matches each feeding conveyor belt 500.
[0023] Please refer to Figure 1 , Figure 2 , as the first embodiment of the present utility model: on the left edge of the upper side surface of the chassis 100, the first mounting frame 110 is installed. On the right edge of the upper side surface of the chassis 100, the second mounting frame 120 is installed. The height of the second mounting frame 120 is greater than the height of the first mounting frame 110. Between the first mounting frame 110 and the second mounting frame 120, the screening member 200 is installed at an inclined angle of 25 degrees with the left side lower and the right side higher.
[0024] On the right edge of the upper side surface of the screening member 200, the feeding plate 220 is installed. Inside the screening member 200, the screen 210 is installed. The mesh size of the screen 210 gradually decreases from left to right. On the upper side surface of the screening member 200, two groups of baffle components are installed.
[0025] The baffle component includes: a fixing frame 400, an electric push rod 410, and a baffle body 420. On the upper side surface of the screening member 200, two fixing frames 400 are installed. On the lower side surface of the fixing frame 400, the baffle body 420 is installed through the electric push rod 410. On the side surface of the baffle body 420 away from the electric push rod 410, it abuts against the upper side surface of the screen 210;
[0026] During use, the user conveys the chicken feed to be screened towards the screening member 200 through the feeding plate 220. At the same time, the vibration motor 130 needs to be started synchronously. At this time, the baffle body 420 of the first baffle assembly on the upper surface of the screening member 200 is in contact with the upper surface of the screen 210. When the chicken feed enters the upper surface of the screen 210, it will be blocked by the baffle body 420. Then, due to the vibration motor 130, the chicken feed that meets the mesh of this section of the screen 210 will fall into the inner part of the discharge cylinder 320 through the screen 210, and then fall into the inner part of the collection box 310 from the discharge cylinder 320. Then, the collection box 310 conveys it to the feeding conveyor belt 500 upward through the discharge pipe 320. Finally, the chicken feed that meets this screening is fed through the feeding conveyor belt 500. After a period of screening, at this time, the user can open the electric push rod 410 of the first baffle assembly, raise the baffle body 420 through the electric push rod 410, so that the blocked chicken feed enters the next section of the screen 210 for screening. Through the above operation steps and principles, the chicken feed can be further screened. Then, the second baffle body 420 is raised through the electric push rod 410 again by the above principle. Finally, all the chicken feed will fall onto the surface of the feeding conveyor belt 500 through the last section of the screen 210 for feeding operation (the aperture of the last section of the screen 210 is much larger than the diameter of ordinary chicken feed and can let all the chicken feed fall. However, if encountering unconventional chicken feed, the user can clean it manually). Since the screening component can be customized and set according to the particle size required for chicken feed production, it can accurately screen out materials of different particle sizes, ensuring the quality consistency and stability of chicken feed products.
[0027] Please refer to Figure 1 、 Figure 2 As the second embodiment of the present invention: Three discharge cylinders 320 are evenly installed on the lower surface of the screening member 200. The discharge end of the discharge cylinder 320 is arranged on the upper surface of the collection box 310. The upper surface of the collection box 310 is designed to be open. The lower surface of the collection box 310 is staggeredly installed through the mounting plate 300 with discharge pipes 320 that match the number of the collection box 310;
[0028] A valve is provided at the connection between the discharge pipe 320 and the mounting plate 300, and the discharge pipe 320 is connected to the inside of the collection box;
[0029] During use, each discharge pipe 320 corresponds to a feeding conveyor belt 500 (the feeding conveyor belt 500 is a prior art, and its specific working principle and structure are not described in detail here). It can classify and convey the screened chicken feed of different specifications and particle sizes, enabling materials of different qualities or particle sizes to be accurately conveyed to the corresponding subsequent processing links, which helps to realize a refined production process.
[0030] The above are only the preferred embodiments of the present utility model and are not intended to limit the present utility model. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and principle of the present utility model shall be included within the protection scope of the present utility model.
Claims
1. A feeding machine with screening function, comprising: A screening component and a feeding conveyor belt (500), characterized in that the screening component comprises: a base frame (100), a first mounting frame (110), a second mounting frame (120), a screening element (200), a screen (210), a feed plate (220), a vibration motor (130), a mounting plate (300) and a collection box (310); The upper surface of the base frame (100) is symmetrically mounted with a mounting frame 1 (110) and a mounting frame 2 (120); a screening element (200) is mounted between the mounting frame 1 (110) and the mounting frame 2 (120); a vibration motor (130) is mounted on the front surface of the mounting frame 1 (110) via a fixing plate; a screen (210) is mounted on the upper surface of the screening element (200); and a discharge barrel (230) is mounted on the lower surface of the screening element (200); A mounting plate (300) is installed inside the base frame (100), a collection box is installed on the upper surface of the mounting plate (300), and a discharge pipe (320) is installed on the lower surface of the mounting plate (300), and each of the discharge pipes (320) corresponds to and matches each loading conveyor belt (500).
2. A material feeding machine with screening function as claimed in claim 1, characterized in that: A mounting frame 1 (110) is installed on the left edge of the upper surface of the base frame (100), and a mounting frame 2 (120) is installed on the right edge of the upper surface of the base frame (100). The height of the mounting frame 2 (120) is greater than the height of the mounting frame 1 (110). A screening element (200) is installed between the mounting frame 1 (110) and the mounting frame 2 (120) at an angle of 25 degrees, with the left side lower and the right side higher.
3. A material feeding machine with screening function as claimed in claim 2, characterized in that: A feed plate (220) is installed on the right edge of the upper surface of the screening element (200), a screen (210) is installed inside the screening element (200), the mesh size of the screen (210) gradually decreases from left to right, and two groups of baffle assemblies are installed on the upper surface of the screening element (200).
4. A material feeding machine with screening function as claimed in claim 3, characterized in that: The baffle assembly comprises: a fixing frame (400), an electric push rod (410) and a baffle body (420); two fixing frames (400) are installed on the upper surface of the screening element (200); the baffle body (420) is installed on the lower surface of the fixing frame (400) via the electric push rod (410); and a side surface of the baffle body (420) away from the electric push rod (410) abuts against the upper surface of the screen (210).
5. A material feeding machine with screening function as claimed in claim 4, characterized in that: Three discharge barrels (230) are evenly installed on the lower surface of the screening element (200), and the discharge end of the discharge barrel (230) is arranged on the upper surface of the collecting box (310). The upper surface of the collecting box (310) is designed to be open, and the lower surface of the collecting box (310) is staggered and installed with discharge pipes (320) matching the number of the collecting boxes (310) through the mounting plate (300).
6. A material feeding machine with screening function as claimed in claim 5, characterized in that: A valve is provided at the connection between the discharge pipe (320) and the mounting plate (300), and the discharge pipe (320) is in communication with the interior of the collection box.