Quantitative feeding mixing device for feed production

CN224711885UActive Publication Date: 2026-09-04HENAN MUHE GROUP FEED
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Patent Information

Application Number
CN202521726879.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-08-14
Publication Date
2026-09-04
Estimated Expiration
2035-08-14

AI Technical Summary

Technical Problem

其中,人工定量下料需要耗费大量人力,下料过程中产生的原料粉尘还极易对操作人员产生健康损伤;而安装流量计的方式较为简单,可以实时监控原料流动情况,安装简便,减少了机械部件磨损,但高质量的流量计成本相对较高,尤其是针对固体粉末物料涉及的流量计

Benefits of technology

[0018] In this invention, a directional feeding component is installed on a quantitative feeding and mixing device for seed feed production. The drive motor can rotate the threaded rod, which, in conjunction with the moving plate, can move the feeding pipe. The feeding pipe can then move the adjusting plate, thereby adjusting the internal space of the quantitative container to the required size according to the needs of the feed. Quantitative feeding can be performed during the feeding process, making it more convenient to use. The overall device has a simple structure, is easy to operate, and is more practical.

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Abstract

The utility model relates to feed production is with quantitative feeding mixing device technical field especially for a kind of quantitative feeding mixing device for feed production, including mixing box, the base surface of mixing box is provided with box cover, the left side and right side of mixing box are symmetrically provided with positioning feeding assembly, by setting directional feeding assembly on kind feed production is with quantitative feeding mixing device, operating drive motor can drive screw rod to rotate, under the cooperation of moving plate, can drive discharge pipe to move, by discharge pipe, adjusting plate can be moved, so as to be needed to regulate the size of the space inside quantitative barrel according to the need of batching, quantitative feeding can be carried out when batching, more convenient to use, overall device structure is simple, easy to operate and more practical.
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Description

Technical Field

[0001] This utility model relates to the technical field of quantitative feeding and mixing devices for feed production, specifically a quantitative feeding and mixing device for feed production. Background Technology

[0002] Feed refers to specially formulated food for livestock, designed to meet their nutritional needs and promote growth and development. It is made from a mixture of various raw materials in specific proportions to ensure that animals receive comprehensive and balanced nutrition. In the feed production process, materials need to be quantitatively added to mixing equipment. Current technologies typically involve manual feeding or the installation of flow meters on the feed pipe. Manual feeding is labor-intensive, and the dust generated during the feeding process can easily cause health hazards to operators. Installing flow meters is simpler, allows for real-time monitoring of material flow, is easy to install, and reduces wear on mechanical parts. However, high-quality flow meters are relatively expensive, especially those used for solid powder materials. Furthermore, to ensure the accuracy of the flow meters, regular calibration is usually required, particularly when handling different types of materials, which can cause measurement deviations. Flow meters are also not well-suited for materials that are prone to clogging or have irregular shapes.

[0003] Therefore, a quantitative feeding and mixing device for feed production is needed to improve the above problems. Utility Model Content

[0004] The purpose of this invention is to provide a quantitative feeding and mixing device for feed production to solve the problems mentioned in the background art.

[0005] To achieve the above objectives, this utility model provides the following technical solution:

[0006] A quantitative feeding and mixing device for feed production includes a mixing box, a box cover is provided on the base surface of the mixing box, and positioning feeding components are symmetrically arranged on the left and right sides of the mixing box.

[0007] The quantitative feeding assembly includes a first support frame, a second support frame on the right side of the first support frame, a fixing sleeve at the inner end of the first and second support frames, fixing bolts symmetrically arranged on the front and rear sides of the base surface of the fixing sleeve, fixing through holes symmetrically opened at the bottom of the first and second support frames, a quantitative bucket on the base surface of the first and second support frames, a feeding hopper at the upper end of the quantitative bucket, a material sensor at the upper part of the quantitative bucket, an adjusting plate slidably arranged inside the quantitative bucket, a feeding pipe at the lower end of the adjusting plate, a support plate on the inner side of the first and second support frames, a threaded rod rotatably arranged between the base surface of the support plate and the first and second support frames respectively, a moving plate between the outer wall of the threaded rod and the feeding pipe, and a drive motor on the outer side of the base surface of the first and second support frames.

[0008] In a preferred embodiment of this invention, the adjustment plate is located below the material sensor.

[0009] As a preferred embodiment of this utility model, the bottom of the mixing box is evenly provided with support legs along the circumferential direction, the lower end of the support legs is provided with a shock absorber, the lower end of the shock absorber is provided with a moving wheel, the bottom of the mixing box is provided with a discharge valve, the middle of the base surface of the mixing box is provided with a rotating motor, and the bottom of the box cover is rotatably provided with a mixing rod.

[0010] Through the above technical solution, the shock absorber can reduce the vibration of the mixing box during movement, thereby reducing damage to the mixing box. The moving wheels are equipped with brake pads, which can be used to fix the moving wheels.

[0011] As a preferred embodiment of this utility model, the first support frame is located on the left side of the mixing box, the second support frame is located on the right side of the mixing box, the inner end of the fixing sleeve is fixedly connected to the left and right sides of the mixing box, the fixing bolt is adapted to the fixing through hole, and the inside of the fixing through hole is adapted to the fixing bolt and has an internal thread.

[0012] As a preferred embodiment of this utility model, the measuring container is provided with an observation window on the front, the observation window is made of transparent glass, and the observation window is provided with scale lines on the front.

[0013] The above technical solution, with its transparent glass material and graduated lines, makes it easy to observe the amount of feed inside the metering container, enabling quantitative feeding.

[0014] As a preferred embodiment of this utility model, the feeding pipe is equipped with a solenoid valve, the base surface of the box cover is respectively provided with a first through groove corresponding to the feeding pipe, and the bottom of the first support frame, the second support frame and the metering bucket are all provided with a second through groove corresponding to the feeding pipe.

[0015] As a preferred embodiment of this utility model, the drive end of the drive motor is connected to the upper end of the threaded rod, the moving plate is threadedly connected to the threaded rod, the moving plate is fixedly connected to the feeding pipe, and the outer side of the moving plate is symmetrically provided with sliders, and the inner side of the first support frame and the second support frame are provided with grooves corresponding to the sliders.

[0016] Through the above technical solution, the slider and the groove can limit the movement of the moving plate, making it more stable during movement.

[0017] Compared with the prior art, the beneficial effects of this utility model are:

[0018] In this invention, a directional feeding component is installed on a quantitative feeding and mixing device for seed feed production. The drive motor can rotate the threaded rod, which, in conjunction with the moving plate, can move the feeding pipe. The feeding pipe can then move the adjusting plate, thereby adjusting the internal space of the quantitative container to the required size according to the needs of the feed. Quantitative feeding can be performed during the feeding process, making it more convenient to use. The overall device has a simple structure, is easy to operate, and is more practical. Attached Figure Description

[0019] Figure 1 This is the overall front view of the present utility model;

[0020] Figure 2 This is an exploded view of the quantitative feeding component structure of this utility model;

[0021] Figure 3 This is a partial structural diagram of the present utility model;

[0022] Figure 4 This is a structural diagram of the internal structure of the mixing box of this utility model.

[0023] In the diagram: 1. Mixing box; 2. Box cover; 3. Quantitative feeding assembly; 301. First support frame; 302. Second support frame; 303. Fixing sleeve; 304. Fixing bolt; 305. Fixing through hole; 306. Quantitative bucket; 307. Feed hopper; 308. Adjusting plate; 309. Discharge pipe; 310. Support plate; 311. Threaded rod; 312. Moving plate; 313. Drive motor; 101. Support leg; 102. Shock absorber; 103. Moving wheel; 104. Discharge valve; 105. Rotary motor; 106. Mixing rod. Detailed Implementation

[0024] The technical solutions of the present utility model will be clearly and completely described below with reference to the embodiments of the present utility model. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. All other embodiments obtained by those skilled in the art based on the embodiments of the present utility model without creative effort are within the protection scope of the present utility model.

[0025] To facilitate understanding of this utility model, a more comprehensive description of the utility model will be given below with reference to the accompanying drawings, and several embodiments of the utility model will be provided. However, the utility model can be implemented in many different forms and is not limited to the embodiments described herein. On the contrary, the purpose of providing these embodiments is to make the disclosure of the utility model more thorough and complete.

[0026] For examples, please refer to Figure 1-4 This utility model provides a technical solution:

[0027] A quantitative feeding and mixing device for feed production includes a mixing box 1, a box cover 2 provided on the base surface of the mixing box 1, and positioning feeding components 3 symmetrically provided on the left and right sides of the mixing box 1.

[0028] In this embodiment, please refer to Figure 2 and 3 The quantitative feeding assembly 3 includes a first support frame 301, a second support frame 302 on the right side of the first support frame 301, a fixing sleeve 303 at the inner end of the first support frame 301 and the second support frame 302, fixing bolts 304 symmetrically arranged on the front and rear sides of the base surface of the fixing sleeve 303, fixing through holes 305 symmetrically opened at the bottom of the first support frame 301 and the second support frame 302, a quantitative bucket 306 on the base surface of the first support frame 301 and the second support frame 302, a feed hopper 307 at the upper end of the quantitative bucket 306, and a feed hopper 307 inside the upper part of the quantitative bucket 306. A material sensor (not shown in the figure) is included. An adjusting plate 308 is slidably mounted inside the metering container 306, below the material sensor. A feeding pipe 309 is located at the lower end of the adjusting plate 308. Support plates 310 are mounted on the inner sides of the first support frame 301 and the second support frame 302. Threaded rods 311 are rotatably mounted on the base surface of the support plate 310 between the first support frame 301 and the second support frame 302. A movable plate 312 is mounted between the outer wall of the threaded rod 311 and the feeding pipe 309. A drive motor 313 is mounted on the outer side of the base surfaces of the first support frame 301 and the second support frame 302. The material sensor is a capacitive sensor or a radar sensor, which is existing technology.

[0029] The mixing chamber 1 has support legs 101 evenly arranged around its bottom circumference. A shock absorber 102 is installed at the lower end of each support leg 101, and a moving wheel 103 is installed at the lower end of each shock absorber 102. A discharge valve 104 is installed at the bottom of the mixing chamber 1. A rotating motor 105 is installed in the middle of the base of the mixing chamber 1. A mixing rod 106 is rotatably installed at the bottom of the chamber cover 2. The shock absorber 102 can dampen the mixing chamber 1 during movement, thereby reducing damage. Brake pads are installed on the moving wheels 103 to fix them in place. A first support frame 301 is located on the left side of the mixing chamber 1, and a second support frame 302 is located on the right side of the mixing chamber 1. The inner end of the fixing sleeve 303 is fixedly connected to the left and right sides of the mixing chamber 1. Fixing bolts 304 are correspondingly fitted to fixing through holes 305, and the interior of the fixing through holes 305 is threaded to fit the fixing bolts 304. The front of the container 306 is provided with an observation window made of transparent glass. The observation window has scale lines on the front. The transparent glass and scale lines make it easy to observe the amount of feed inside the quantitative container 306, enabling quantitative feeding. A solenoid valve is provided on the feeding pipe 309. The base surface of the box cover 2 is provided with a first through groove corresponding to the feeding pipe 309. The bottom of the first support frame 301, the second support frame 302 and the quantitative container 306 are all provided with a second through groove corresponding to the feeding pipe 309. The drive end of the drive motor 313 is connected to the upper end of the threaded rod 311. The moving plate 312 is threadedly connected to the threaded rod 311 and fixedly connected to the feeding pipe 309. The outer side of the moving plate 312 is symmetrically provided with sliders, and the inner side of the first support frame 301 and the second support frame 302 is provided with grooves corresponding to the sliders. The sliders and grooves can limit the movement of the moving plate 312, making it more stable when moving.

[0030] The working process of this utility model is as follows: When using the quantitative feeding and mixing device for feed production designed in this scheme, during feeding, the distance between the adjusting plate 308 and the material sensor is first adjusted according to the amount of feed to be added. The space between the two is the size of the quantitative tank 306. During adjustment, the drive motor 313 is run, which drives the threaded rod 311 to rotate. Since the moving plate 312 is threadedly connected to the threaded rod 311, and the inner end of the moving plate 312 is connected to the feed pipe 309, the rotation of the threaded rod 311 drives the moving plate 312 to move. When the moving plate 312 moves, it drives the adjusting plate 308 to move as well. The position of the adjusting plate 308 can be observed through the observation window and scale lines. After moving it to the appropriate position as needed, feed is put into the metering tank 306. When the feed level in the metering tank 306 triggers the material sensor, feeding stops and the solenoid valve is opened. The feed in the metering tank 306 enters the mixing tank 1 through the feed pipe 309. Then, the rotating motor 105 is run. When the rotating motor 105 is running, it drives the mixing rod 106 to rotate. The feed can be mixed through the mixing rod 106.

[0031] The material sensor, rotary motor 105, and drive motor 313 used in this utility model are all existing known electrical devices, and all can be purchased and used directly on the market. Their structure, circuit, and control principle are all existing known technologies. Therefore, the structure, circuit, and control principle of the rotary motor 105 and drive motor 313 will not be described in detail here.

[0032] All standard parts used in this application can be purchased from the market. The specific connection methods of each part adopt conventional methods such as bolts, rivets, and welding that are mature in the prior art. The machinery, parts and equipment adopt conventional models in the prior art and are also general components, which are common knowledge in this field.

[0033] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A quantitative feeding and mixing device for feed production, comprising a mixing chamber (1), characterized in that: The base surface of the mixing box (1) is provided with a box cover (2), and the left and right sides of the mixing box (1) are symmetrically provided with a quantitative feeding component (3). The quantitative feeding assembly (3) includes a first support frame (301), a second support frame (302) is provided on the right side of the first support frame (301), a fixing sleeve (303) is provided at the inner end of the first support frame (301) and the second support frame (302), fixing bolts (304) are symmetrically provided on the front and rear sides of the base surface of the fixing sleeve (303), fixing through holes (305) are symmetrically opened at the bottom of the first support frame (301) and the second support frame (302), a quantitative bucket (306) is provided on the base surface of the first support frame (301) and the second support frame (302), and a feed hopper (307) is provided at the upper end of the quantitative bucket (306). A material sensor is provided in the upper part of the metering container (306). An adjusting plate (308) is slidably arranged inside the metering container (306). A feeding pipe (309) is provided at the lower end of the adjusting plate (308). A support plate (310) is provided on the inner side of the first support frame (301) and the second support frame (302). A threaded rod (311) is rotatably arranged between the base surface of the support plate (310) and the first support frame (301) and the second support frame (302), respectively. A moving plate (312) is arranged between the outer wall of the threaded rod (311) and the feeding pipe (309). A drive motor (313) is arranged on the outer side of the base surface of the first support frame (301) and the second support frame (302).

2. The quantitative feeding and mixing device for feed production according to claim 1, characterized in that: The adjustment plate (308) is located below the material sensor.

3. The quantitative feeding and mixing device for feed production according to claim 1, characterized in that: The bottom of the mixing box (1) is evenly provided with support legs (101) along the circumferential direction. The lower end of the support legs (101) is provided with a shock absorber (102). The lower end of the shock absorber (102) is provided with a moving wheel (103). The bottom of the mixing box (1) is provided with a discharge valve (104). The middle of the base surface of the mixing box (1) is provided with a rotating motor (105). The bottom of the box cover (2) is rotatably provided with a mixing rod (106).

4. The quantitative feeding and mixing device for feed production according to claim 1, characterized in that: The first support frame (301) is located on the left side of the mixing box (1), and the second support frame (302) is located on the right side of the mixing box (1). The inner end of the fixing sleeve (303) is fixedly connected to the left and right sides of the mixing box (1). The fixing bolt (304) is correspondingly adapted to the fixing through hole (305), and the inside of the fixing through hole (305) is adapted to the fixing bolt (304) and has an internal thread.

5. The quantitative feeding and mixing device for feed production according to claim 1, characterized in that: The measuring container (306) has an observation window on its front side. The observation window is made of transparent glass and has scale lines on its front side.

6. The quantitative feeding and mixing device for feed production according to claim 1, characterized in that: The feed pipe (309) is equipped with a solenoid valve. The base surface of the box cover (2) is provided with a first through groove corresponding to the feed pipe (309). The bottom of the first support frame (301), the second support frame (302) and the metering bucket (306) are all provided with a second through groove corresponding to the feed pipe (309).

7. The quantitative feeding and mixing device for feed production according to claim 1, characterized in that: The drive end of the drive motor (313) is connected to the upper end of the threaded rod (311), the moving plate (312) is threadedly connected to the threaded rod (311), the moving plate (312) is fixedly connected to the feed tube (309), the outer side of the moving plate (312) is symmetrically provided with sliders, and the inner side of the first support frame (301) and the second support frame (302) are provided with grooves corresponding to the sliders.