Feed production device capable of easily adding trace elements
By using the main grinding roller and the secondary grinding roller in the feed production device to grind and refine trace elements, and mixing them with the stirring group and the brush group driven by the transmission shaft, the problem of uneven distribution of trace elements is solved, the feed quality and bioavailability are improved, and it is suitable for small breeding farms.
Patent Information
- Application Number
- CN202421912484.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-08
- Publication Date
- 2025-07-01
- Estimated Expiration
- 2034-08-08
AI Technical Summary
When existing feed production equipment adds trace elements, it leads to uneven distribution of trace elements, affecting the consistency and bioavailability of feed. The initial investment cost of automation equipment is high, which is difficult for small farms to bear.
A feed production device including a main grinding roller and a secondary grinding roller is designed. The main grinding roller is driven to rotate by a servo motor to grind and refine the trace element solid particles, and the main stirring group, brush group and secondary stirring group are driven to rotate through the transmission shaft to achieve uniform mixing of trace elements and chicken feed.
Through grinding and stirring technology, the uniform distribution of trace elements in the feed is achieved, the quality and bioavailability of the feed is improved, and the equipment cost is reduced, making it suitable for small farms.
Smart Images

Figure CN223040891U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of feed production devices, and particularly relates to a feed production device that is easy to add trace elements. Background Art
[0002] A chicken feed production device that is easy to add trace elements is a device specifically designed to conveniently add and evenly distribute micronutrients (such as vitamins, minerals, and amino acids, etc.) during the feed production process. The design focus of such devices is to ensure the precise proportioning and uniform mixing of trace elements to meet the nutritional needs of chickens at different growth stages, thereby improving their growth performance and health level. However, existing such production devices also have drawbacks. In the traditional feed production process, due to the limitations of the production device, the distribution of trace elements in the feed is uneven, affecting the consistency and biological utilization rate of the feed. To improve these problems, the conventional solution is to use automated equipment to improve the uniform distribution of trace elements in the feed. However, this solution also has disadvantages. The initial investment cost of automated equipment is relatively high, which may be difficult for small-scale farms to bear, and when equipment failures occur, it will cause the production line to stagnate. Therefore, it is hoped to propose a new structure to solve the above problems. Summary of the Utility Model
[0003] Aiming at the deficiencies of the existing technology, the purpose of the utility model is to provide a feed production device that is easy to add trace elements.
[0004] The utility model is realized through the following technical solutions: A feed production device that is easy to add trace elements, comprising: a device main body, a main grinding roller, and a main stirring group. A feed hopper is provided at the top of the device main body, a first motor box is provided at the rear side of the device main body, and a grinding chamber is provided above the interior of the device main body;
[0005] A mixing chamber is provided below the grinding chamber, a partition is provided between the mixing chamber and the grinding chamber. A main grinding roller is provided on the left side inside the grinding chamber, a secondary grinding roller is provided on the right side of the main grinding roller, and a plurality of groups of blanking ports are opened in the annular region of the partition away from the center of the circle;
[0006] A second motor box is provided below the partition, a mixing mechanism is provided above the interior of the mixing chamber, and the mixing mechanism is composed of a transmission shaft, a main stirring group, a secondary stirring group, and a brush. The main stirring group, the secondary stirring group, and the brush are all arranged symmetrically in a mirror image.
[0007] As a preferred embodiment, an observation glass is provided above the front surface of the device main body, a box door is provided below the observation glass, and the left side of the box door is hinged to the front surface of the device main body through a hinge column;
[0008] The bottom of the device body is provided with a discharge pipe, the top of the discharge pipe is connected to the bottom of the mixing chamber in a penetrating manner, a valve is arranged on the side of the discharge pipe, a servo motor 1 is arranged inside the motor box 1, the output end of the front side of the servo motor 1 is connected to the rear side of the rotating shaft, and the front side of the rotating shaft penetrates through the back surface of the device body and is connected to the front and back surfaces of the main grinding roller in a penetrating manner.
[0009] As a preferred embodiment, the main grinding roller is fixedly connected to the rotating shaft, the main grinding roller and the auxiliary grinding roller have the same specifications, the auxiliary grinding roller is a fixed structure, and the materials of the main grinding roller and the auxiliary grinding roller are both diamond.
[0010] As a preferred embodiment, the interval length between the main grinding roller and the auxiliary grinding roller is less than the width of the trace element solid particles, and the gap between the main grinding roller and the auxiliary grinding roller is directly below the feed inlet.
[0011] As a preferred embodiment, the side of the partition plate is fixedly welded to the inner wall of the device body through four connecting plates, the top of the motor box 2 is fixedly welded to the center of the bottom of the partition plate, the top of the partition plate is a conical structure. During actual use, the trace element solid particles enter downward along the feed inlet to the gap between the main grinding roller and the auxiliary grinding roller. The main grinding roller rotates driven by the servo motor 1, so as to grind and refine the trace element solid particles entering the gap between the main grinding roller and the auxiliary grinding roller, making the trace element solid particles ground into fine particles, so that it is easy to add the trace element solid particles to the chicken feed and make the chicken feed and the trace element solid particles mix more evenly. The ground trace element solid particles fall downward to the top of the partition plate and enter the upper left and right sides above the mixing chamber along the inclined surface of the top of the partition plate and the material falling port, and finally gather towards the center along the inclined surfaces on the upper left and right sides of the mixing chamber and fall into the interior of the mixing chamber. The final effect is to grind the trace element solid particles into fine particles through the grinding of the main grinding roller and the auxiliary grinding roller, which is easy to add the trace element solid particles.
[0012] As a preferred embodiment, a servo motor 2 is arranged inside the motor box 2, the output end of the bottom of the servo motor 2 is connected to the top of the transmission shaft, a brush group is arranged below the transmission shaft, and a main stirring group is arranged below the brush group.
[0013] As a preferred embodiment, the left and right sides of the brush group are respectively in contact with the left and right sides of the mixing chamber. A secondary stirring group is installed below the brush group. The left and right sides at the top of the mixing chamber are both inclined surface structures sloping towards the center, and the bottom of the mixing chamber is an inclined surface structure sloping towards the center. During actual use, the drive shaft drives the main stirring group, the brush group, and the secondary stirring group to rotate. The main stirring group and the secondary stirring group cooperate to mix and stir the chicken feed and the trace element solid particles, so that the trace element solid particles and the chicken feed are fully mixed, ensuring the uniform distribution of the trace element solid particles in the chicken feed and the quality of the chicken feed. During the stirring process, the brush group continuously brushes the left and right sides of the mixing chamber, brushing the chicken feed adhering to the left and right inner walls of the mixing chamber into the interior of the mixing chamber, thereby achieving the effect of saving resources (Servo motor 1 and Servo motor 2 are both prior arts, and their models can be selected according to needs and will not be elaborated).
[0014] After adopting the above technical solutions, the beneficial effects of the present utility model are as follows: By setting the main grinding roller and the secondary grinding roller, the trace element solid particles entering between the main grinding roller and the secondary grinding roller can be ground and refined, thus facilitating the mixing of the trace element solid particles and the chicken feed. By setting the drive shaft, the main stirring group, and the secondary stirring group, the chicken feed and the ground trace element solid particles inside the mixing chamber can be fully stirred and mixed, making the trace element solid particles evenly distributed in the chicken feed and improving the quality of the chicken feed. By setting the brush group, the chicken feed adhering to the inner wall of the mixing chamber can be brushed off, enabling the chicken feed to fall back into the mixing chamber for stirring again, thereby saving resources and being able to clean the inner wall of the mixing chamber. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] In order to more clearly illustrate the technical solutions in the embodiments of the present utility model or in 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 following drawings are only some embodiments of the present utility model. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings.
[0016] Figure 1 It is a schematic diagram of a feed production device for easily adding trace elements of the present utility model.
[0017] Figure 2 It is a schematic diagram of the internal structure of a feed production device for easily adding trace elements of the present utility model.
[0018] Figure 3 It is a schematic diagram of the structure of the partition in a feed production device for easily adding trace elements of the present utility model.
[0019] Figure 4This is a schematic structural diagram of the mixing mechanism in a feed production device for easily adding trace elements according to the present utility model.
[0020] In the figure, 100 - device main body, 110 - feed hopper, 120 - motor box one, 130 - grinding chamber, 140 - mixing chamber, 150 - partition board;
[0021] 160 - feed inlet, 170 - main grinding roller, 180 - auxiliary grinding roller, 190 - motor box two, 200 - mixing mechanism;
[0022] 210 - blanking port, 220 - transmission shaft, 230 - brush group, 240 - main stirring group, 250 - auxiliary stirring group. Specific embodiments
[0023] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only partial embodiments of the present utility model, rather than all embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present utility model without making creative efforts belong to the protection scope of the present utility model.
[0024] Please refer to Figures 1 to 4 : A feed production device for easily adding trace elements, including: device main body 100, main grinding roller 170, and main stirring group 240. A feed hopper 110 is provided at the top of the device main body 100, a motor box one 120 is provided at the rear side of the device main body 100, and a grinding chamber 130 is provided above the interior of the device main body 100;
[0025] A mixing chamber 140 is provided below the grinding chamber 130, a partition board 150 is provided between the mixing chamber 140 and the grinding chamber 130. A main grinding roller 170 is provided on the left side inside the grinding chamber 130, an auxiliary grinding roller 180 is provided on the right side of the main grinding roller 170, and a plurality of groups of blanking ports 210 are opened in the annular region of the partition board 150 away from the center of the circle;
[0026] A motor box two 190 is provided below the partition board 150, a mixing mechanism 200 is provided above the interior of the mixing chamber 140. The mixing mechanism 200 is composed of a transmission shaft 220, a main stirring group 240, an auxiliary stirring group 250, and a brush group 230. The main stirring group 240, the auxiliary stirring group 250, and the brush are all arranged symmetrically in mirror image.
[0027] An observation glass is provided above the front of the device main body 100, a box door is provided below the observation glass, and the left side of the box door is hinged to the front of the device main body 100 through a hinge column;
[0028] At the bottom of the device main body 100, there is a discharge pipe. The top of the discharge pipe is connected to the bottom of the mixing chamber 140 in a through manner. A valve is provided on the side of the discharge pipe. Inside the first motor box 120, there is a first servo motor. The output end on the front side of the first servo motor is connected to the rear side of the rotating shaft. The front side of the rotating shaft penetrates through the back surface of the device main body 100 and is connected to the front and back surfaces of the main grinding roller 170 in a through manner.
[0029] The main grinding roller 170 is fixedly connected to the rotating shaft. The main grinding roller 170 and the secondary grinding roller 180 have the same specifications. The secondary grinding roller 180 is a fixed structure. The materials of both the main grinding roller 170 and the secondary grinding roller 180 are diamond.
[0030] The interval length between the main grinding roller 170 and the secondary grinding roller 180 is less than the width of the trace element solid particles. The gap between the main grinding roller 170 and the secondary grinding roller 180 is directly below the feed inlet 160.
[0031] The side of the partition plate 150 is welded and fixed to the inner wall of the device main body 100 through four groups of connecting plates. The top of the second motor box 190 is welded and fixed to the central part of the bottom of the partition plate 150. The top of the partition plate 150 is a conical structure. During actual use, the trace element solid particles enter downward along the feed inlet 160 to the gap between the main grinding roller 170 and the secondary grinding roller 180. The main grinding roller 170 rotates driven by the first servo motor, so as to grind and refine the trace element solid particles entering the gap between the main grinding roller 170 and the secondary grinding roller 180, making the trace element solid particles ground into fine particles, so that it is easy to add the trace element solid particles to the chicken feed and make the chicken feed and the trace element solid particles more easily mixed evenly. The ground trace element solid particles fall downward onto the top of the partition plate 150 and enter the upper left and right sides above the mixing chamber 140 along the inclined surface of the top of the partition plate 150 and the material discharge port 210, and finally gather towards the center along the inclined surfaces on the upper left and right sides of the mixing chamber 140 and fall into the interior of the mixing chamber 140. The final effect is that the trace element solid particles are ground into fine particles by the grinding of the main grinding roller 170 and the secondary grinding roller 180, which is easy to add the trace element solid particles.
[0032] Inside the second motor box 190, there is a second servo motor. The output end at the bottom of the second servo motor is connected to the top of the transmission shaft 220. Below the transmission shaft 220, there is a brush group 230. Below the brush group 230, there is a main stirring group 240.
[0033] The left and right sides of the brush group 230 are respectively in contact with the left and right sides of the mixing chamber 140. A secondary stirring group 250 is installed below the brush group 230. The left and right sides at the top of the mixing chamber 140 are both inclined surface structures that slope towards the center, and the bottom of the mixing chamber 140 is an inclined surface structure that slopes towards the center. During actual use, the transmission shaft 220 drives the main stirring group 240, the brush group 230, and the secondary stirring group 250 to rotate. The main stirring group 240 and the secondary stirring group 250 cooperate to mix and stir the chicken feed and the trace element solid particles, so that the trace element solid particles and the chicken feed are fully mixed, ensuring the uniform distribution of the trace element solid particles in the chicken feed and the quality of the chicken feed. During the stirring process, the brush group 230 continuously brushes the left and right sides of the mixing chamber 140, brushing the chicken feed attached to the left and right inner walls of the mixing chamber 140 into the interior of the mixing chamber 140, thus achieving the effect of saving resources (the first servo motor and the second servo motor are both prior arts, and their models can be selected according to needs and will not be elaborated).
[0034] Example 1: Please refer to Figures 1 to 3 , during actual use, first start the first servo motor inside the motor box 120, open the box door, pour the chicken feed into the mixing chamber 140, then close the box door, pour the trace element solid particles into the feed hopper 110. The trace element solid particles enter the gap between the main grinding roller 170 and the secondary grinding roller 180 along the feed port 160. The main grinding roller 170 rotates driven by the first servo motor, thereby grinding and refining the trace element solid particles that enter the gap between the main grinding roller 170 and the secondary grinding roller 180, grinding the trace element solid particles into fine particles, so that it is easy to add the trace element solid particles to the chicken feed and make the chicken feed and the trace element solid particles easier to be mixed evenly. The ground trace element solid particles fall downward onto the top of the partition 150 and enter the upper left and right sides of the mixing chamber 140 along the inclined surface at the top of the partition 150 and the material dropping port 210, and finally gather towards the center along the inclined surfaces on the upper left and right sides of the mixing chamber 140 and fall into the interior of the mixing chamber 140. The final effect is that the trace element solid particles are ground into fine particles by the grinding of the main grinding roller 170 and the secondary grinding roller 180, which is easy to add the trace element solid particles.
[0035] Example 2: Please refer to Figure 2 and Figure 4After the ground trace element solid particles enter the interior of the mixing chamber 140, start the second servo motor. The second servo motor drives the transmission shaft 220 to rotate. The transmission shaft 220 drives the main stirring group 240, the brush group 230 and the auxiliary stirring group 250 to rotate. The main stirring group 240 and the auxiliary stirring group 250 cooperate to mix and stir the chicken feed and the trace element solid particles, so that the trace element solid particles and the chicken feed are fully mixed, ensuring the uniform distribution of the trace element solid particles in the chicken feed and the quality of the chicken feed. During the stirring process, the brush group 230 continuously brushes the left and right sides of the mixing chamber 140, brushing the chicken feed adhering to the left and right inner walls of the mixing chamber 140 into the interior of the mixing chamber 140, thus achieving the effect of saving resources (the first servo motor and the second servo motor are both prior arts, and their models can be selected according to needs and will not be elaborated).
[0036] The above are only the preferred embodiments of the present invention and are not intended to limit the present invention. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention shall be included in the protection scope of the present invention.
Claims
1. A feed production device that is easy to add trace elements, comprising: The device body (100), the main grinding roller (170) and the main stirring group (240) are characterized in that: a feed hopper (110) is provided on the top of the device body (100), a motor box 1 (120) is provided on the rear side of the device body (100), and a grinding chamber (130) is provided on the upper part of the device body (100); A mixing chamber (140) is provided below the grinding chamber (130), a partition (150) is provided between the mixing chamber (140) and the grinding chamber (130), a main grinding roller (170) is provided on the left side inside the grinding chamber (130), an auxiliary grinding roller (180) is provided on the right side of the main grinding roller (170), and a plurality of groups of blanking openings (210) are provided in an annular area of the partition (150) away from the center of the circle; A motor box 2 (190) is provided below the partition (150), and a mixing mechanism (200) is provided above the interior of the mixing chamber (140). The mixing mechanism (200) is composed of a transmission shaft (220), a main stirring group (240), a secondary stirring group (250), and a brush group (230). The main stirring group (240), the secondary stirring group (250), and the brush are all arranged in a mirror-symmetrical manner.
2. A feed production device that is easy to add trace elements as claimed in claim 1, characterized in that: An observation glass is provided above the front of the device body (100), and a box door is provided below the observation glass, the left side of the box door being hinged to the front of the device body (100) via a hinge column; A discharge pipe is provided at the bottom of the device body (100), the top of the discharge pipe is connected to the bottom of the mixing chamber (140), a valve is provided on the side of the discharge pipe, a servo motor is provided inside the motor box (120), the output end of the front side of the servo motor is connected to the rear side of the rotating shaft, the front side of the rotating shaft passes through the back side of the device body (100) and is connected to the front and back sides of the main grinding roller (170).
3. A feed production device that is easy to add trace elements as claimed in claim 2, characterized in that: The main grinding roller (170) is connected and fixed to the rotating shaft. The main grinding roller (170) and the auxiliary grinding roller (180) have the same specifications. The auxiliary grinding roller (180) is a fixed structure. The main grinding roller (170) and the auxiliary grinding roller (180) are both made of diamond.
4. A feed production device for easily adding trace elements as claimed in claim 3, characterized in that: The spacing length between the main grinding roller (170) and the auxiliary grinding roller (180) is smaller than the width of the solid particles of the trace elements, and the gap between the main grinding roller (170) and the auxiliary grinding roller (180) is located directly below the feed port (160).
5. A feed production device for easily adding trace elements as claimed in claim 1, characterized in that: The side surface of the partition (150) is welded and fixed to the inner wall of the device body (100) through four sets of connecting plates, the top of the second motor box (190) is welded and fixed to the center of the bottom of the partition (150), and the top of the partition (150) is a conical structure.
6. A feed production device for easily adding trace elements as claimed in claim 5, characterized in that: A servo motor 2 is arranged inside the motor box 2 (190); an output end at the bottom of the servo motor 2 is connected to the top of a transmission shaft (220); a brush group (230) is arranged below the transmission shaft (220); and a main stirring group (240) is arranged below the brush group (230).
7. A feed production device for easily adding trace elements as claimed in claim 6, characterized in that: The left and right sides of the brush group (230) are in contact with the left and right sides of the mixing chamber (140) respectively; a secondary stirring group (250) is installed below the brush group (230); the left and right sides of the top of the mixing chamber (140) are both inclined surface structures inclined toward the center; and the bottom of the mixing chamber (140) is an inclined surface structure inclined toward the center.