A rapid drying structure for a feed production device

CN224771938UActive Publication Date: 2026-09-18JINAN XINGJI FEED CO LTD
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Patent Information

Application Number
CN202521629041.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-08-01
Publication Date
2026-09-18
Estimated Expiration
2035-08-01

AI Technical Summary

Technical Problem

常规应对方法是停机人工清理搅拌,但在无人干预情况下,热风受阻导致烘干效率大幅降低,且饲料受热不均,部分可能过度烘干,部分则未达标准

Benefits of technology

[0009] After adopting the above technical solution, the beneficial effects of this utility model are as follows: 1. By setting up a roller assembly, a roller assembly for stirring and drying feed is installed on the upper surface of the base frame assembly, and a drive component for driving the stirring component is installed on the right side surface of the roller assembly through the base frame assembly. In use, the roller assembly is supported by the base frame assembly to stir and dry the feed, and the stirring component is driven by the right drive component. In use, the roller body and the stirring component work together to allow the feed to fully contact the hot air flow with the hot air assembly, which greatly improves the uniformity of heating and accelerates the efficiency of moisture evaporation.

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Abstract

This utility model provides a rapid drying structure for a feed production device, including: a base frame assembly, a drum assembly, and a hot air assembly. The drum assembly for stirring and drying the feed is mounted on the upper surface of the base frame assembly. A drive unit for driving the stirring component is mounted on the right side surface of the drum assembly via the base frame assembly. The stirring component is installed inside the drum assembly. The hot air assembly includes a hot air pipe for blowing air onto and drying the drum assembly. The hot air pipe is mounted above the drum assembly via a bracket. Compared with the prior art, this utility model has the following advantages: By setting up the drum assembly, during use, the base frame assembly supports the drum assembly to stir and dry the feed, and the right-side drive unit drives the stirring component. During use, the drum body and the stirring component work together to allow the feed to fully contact the hot air flow with the hot air assembly, significantly improving heating uniformity and accelerating moisture evaporation efficiency.
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Description

Technical Field

[0001] This utility model belongs to the field of drying equipment, and specifically relates to a rapid drying structure for a feed production device. Background Technology

[0002] The drying structure of a feed production unit is a core component for rapidly removing excess moisture from feed and ensuring feed quality and storage stability. However, existing drying structures in feed production units have several areas for optimization. Feed with high initial moisture content is prone to adhesion during drying, such as sticking to the inner wall of the screen cylinder or covering the screen openings. This hinders the normal flow of hot air, primarily due to a lack of a rapid adaptation mechanism between the material's moisture content and the equipment structure. The conventional solution is to stop the machine and manually clean and stir the feed. However, without intervention, the obstructed hot air leads to a significant reduction in drying efficiency and uneven heating of the feed, with some parts potentially over-dried and others failing to meet standards. Furthermore, in traditional drying methods, the direction of the hot airflow is relatively fixed. For example, feed at the top is exposed to the high-temperature airflow for a longer period, and any movement of the feed can negatively impact its quality. Therefore, a new structure is needed to address these technical problems. Utility Model Content

[0003] In view of the shortcomings of the existing technology, the purpose of this utility model is to provide a rapid drying structure for a feed production device, thereby solving the problems mentioned in the background art.

[0004] This utility model is achieved through the following technical solution: a rapid drying structure for a feed production device, comprising: a base frame assembly, a drum assembly, and a hot air assembly. The upper surface of the base frame assembly is equipped with a drum assembly for stirring and drying the feed. The right side surface of the drum assembly is equipped with a drive unit for driving the stirring component via the base frame assembly. The stirring component is installed inside the drum assembly. The hot air assembly includes a hot air pipe for blowing and drying the drum assembly. The hot air pipe is installed above the drum assembly via a bracket. The base frame assembly includes a base frame body, a mounting frame, uprights, and a fixing frame. Four uprights are mounted on the upper surface of the base frame body, and a top frame is mounted on one end of each upright away from the base frame body. The roller assembly includes a roller body, a mounting shell, a feeding component, and a discharging component. The roller body is installed inside the top frame. The roller body has a screen structure. The mounting shell is mounted on the right and left surfaces of the roller body. A semi-circular protective cover is mounted on the right surface of the roller body through the mounting shell. The feeding component is mounted on the left side of the upper surface of the roller body, and a discharging component with a cover is mounted on the right side of the lower surface of the roller body.

[0005] In a preferred embodiment, a fixing frame is installed below the top frame via an upright, and an mounting frame is installed on the right side of the upper surface of the base frame body.

[0006] In a preferred embodiment, the drive component includes a drive motor, a drive belt, and a protective cover. The drive motor is mounted on the upper surface of the mounting bracket, and the output shaft of the drive motor is connected to the drive belt.

[0007] In a preferred embodiment, the stirring component includes a rotating shaft, stirring blade one, and stirring blade two. The rotating shaft is rotatably mounted at the center of the drum body via a mounting shell. The mounting shell is connected to a transmission belt through the rotating shaft. Multiple stirring blades one are evenly mounted on the outer surface of the rotating shaft. The stirring blades one are arranged in an inclined structure on the outer surface of the rotating shaft. The stirring blades two are positioned via the rotating shaft at a position that matches the position of the discharge component.

[0008] In a preferred embodiment, a bracket is mounted on the upper surface of the mounting shell on the right side, and a hot air duct is mounted on the end of the bracket away from the mounting shell. The hot air duct is connected to an external air supply device through a pipe. Multiple air outlets are evenly mounted on the lower side of the outer surface of the hot air duct, and the air outlet end of the air outlet is aligned with the upper surface of the roller body.

[0009] After adopting the above technical solution, the beneficial effects of this utility model are as follows: 1. By setting up a roller assembly, a roller assembly for stirring and drying feed is installed on the upper surface of the base frame assembly, and a drive component for driving the stirring component is installed on the right side surface of the roller assembly through the base frame assembly. In use, the roller assembly is supported by the base frame assembly to stir and dry the feed, and the stirring component is driven by the right drive component. In use, the roller body and the stirring component work together to allow the feed to fully contact the hot air flow with the hot air assembly, which greatly improves the uniformity of heating and accelerates the efficiency of moisture evaporation.

[0010] 2. By setting up a hot air assembly, which includes a hot air pipe for blowing and drying the drum assembly, the hot air pipe is installed above the drum assembly via a bracket. During use, the hot air pipe of the hot air assembly can accurately blow hot air into the drum. The directional air delivery design of the hot air pipe allows the hot air to be concentrated on the feed. Combined with the rotation and stirring of the drum, the heat exchange is more direct and efficient, significantly shortening the drying time. Attached Figure Description

[0011] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0012] Figure 1 This is a schematic diagram of the overall structure of a rapid drying structure for a feed production device according to this utility model.

[0013] Figure 2 This is a schematic diagram of the side structure of a rapid drying structure of a feed production device according to the present invention.

[0014] Figure 3 This is a schematic diagram of the stirring component of a rapid drying structure in a feed production device according to this utility model.

[0015] Figure 4 This is a schematic diagram of the bottom structure of a rapid drying structure for a feed production device according to this utility model.

[0016] In the diagram, 100 is the base frame, 110 is the mounting bracket, 120 is the drive motor, 130 is the protective cover, 140 is the upright frame, and 150 is the fixing bracket. 200 - Mounting housing, 210 - Drum body, 220 - Feeding component; 300 - Rotating shaft, 310 - Agitator blade one, 320 - Agitator blade two, 330 -; 400 - bracket, 410 - hot air duct, 420 - air outlet. Detailed Implementation

[0017] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0018] Please see Figures 1 to 4 As the first embodiment of this utility model: a rapid drying structure for a feed production device, including: a base frame assembly, a drum assembly and a hot air assembly. The upper surface of the base frame assembly is equipped with a drum assembly for stirring and drying the feed. The right side surface of the drum assembly is equipped with a drive unit for driving the stirring component through the base frame assembly. The stirring component is installed inside the drum assembly. The hot air assembly includes a hot air pipe 410 for blowing and drying the drum assembly. The hot air pipe 410 is installed above the drum assembly through a bracket. The base frame assembly includes a base frame body 100, a mounting frame 110, a vertical frame 140, and a fixing frame 150. Four vertical frames 140 are mounted on the upper surface of the base frame body 100, and a top frame is mounted on the end of the four vertical frames 140 away from the base frame body 100. The roller assembly includes a roller body 210, a mounting shell 200, a feed component 220, and a discharge component. The roller body 210 is installed inside the top frame. The roller body 210 has a screen structure. The mounting shell 200 is mounted on the right and left surfaces of the roller body 210. A semi-circular protective cover 130 is mounted on the right surface of the roller body 210 through the mounting shell 200. The feed component 220 is mounted on the left side of the upper surface of the roller body 210, and a discharge component with a cover plate is mounted on the right side of the lower surface of the roller body 210. A fixing bracket 150 is installed under the top frame via a vertical bracket 140, and a mounting bracket 110 is installed on the right side of the upper surface of the base frame body 100. The drive components include a drive motor 120, a drive belt, and a protective cover 130. The drive motor 120 is mounted on the upper surface of the mounting bracket 110, and the output shaft of the drive motor 120 is connected to the drive belt.

[0019] The mixing component includes a rotating shaft 300, a first mixing blade 310, and a second mixing blade 320. The rotating shaft 300 is rotatably mounted on the center of the drum body 210 via a mounting shell 200. The mounting shell 200 is connected to the drive belt through the rotating shaft 300. Multiple first mixing blades 310 are evenly mounted on the outer surface of the rotating shaft 300. The first mixing blades 310 are arranged in an inclined structure on the outer surface of the rotating shaft 300. The second mixing blade 320 is positioned by the rotating shaft 300 to match the position of the discharge component. When using this device, the user first prepares the feed to be dried (the particle size of the feed to be dried by this device must be larger than the mesh size of the screen on the outer surface of the drum body 210; the user can install drum bodies 210 with different mesh sizes according to actual conditions to adapt to the drying of different feed particles). After preparing the feed, the user can start the drive motor 120 on the upper surface of the mounting frame 110, so that the drive motor 120 drives the rotating shaft 300 inside the drum body 210 to rotate via the drive belt. When the rotating shaft 300 rotates, the first stirring blade 310 and the second stirring blade 320 on its outer surface will also rotate. At this time, the user can turn on the hot air assembly on the upper surface of the drum body 210 and put the feed to be dried into the feed inlet 220. After the feed is put into the inside of the drum body 210 through the feed inlet 220, the rotating stirring blades will start to rotate. Leaf 310 drives the feed to move along the drum body 210, causing the feed inside the drum body 210 to tumble and move (the rotation speed of the shaft 300 depends on the speed of the feed rolling, that is, the faster the shaft 300 rotates, the shorter the drying time of the feed; users can choose according to actual needs). While the feed is tumbling and moving, it is being dried. When the feed moves to the stirring leaf 320, the feed is dried and can be discharged by the user through the discharge device. During use, the drum assembly is supported by the base frame assembly to stir and dry the feed, and the stirring component is driven by the right-side drive component. During use, the drum body 210 and the stirring component work together to allow the feed to fully contact the hot air flow with the hot air component, greatly improving the uniformity of heating and accelerating the evaporation efficiency of moisture.

[0020] Please see Figures 1 to 4 As a second embodiment of the present invention: based on the description in the above embodiments, further, a bracket 400 is installed on the upper surface of the right mounting shell 200, and a hot air pipe 410 is installed at the end of the bracket 400 away from the mounting shell 200. The hot air pipe 410 is connected to an external air supply device through a pipe. Multiple air outlets 420 are evenly installed on the lower side of the outer surface of the hot air pipe 410, and the air outlet end of the air outlet 420 is aligned with the upper surface of the roller body 210. When the feed is dried using the steps of the first embodiment, the user needs to turn on the external air supply equipment (the air supply equipment is a hot air supply equipment, and the model can be any existing model on the market; its specific working principle and structure will not be described here) in advance. The air supply equipment supplies air to the hot air pipe 410, and then the hot air pipe 410 discharges the hot air through the air outlet 420. At this time, the hot air will blow directly onto the drum body 210. Since the drum body 210 is a screen structure, the hot air will directly act on the turning feed particles, thereby quickly drying the feed. During use, the hot air pipe 410 of the hot air assembly is installed above the drum assembly through the bracket 400, which can accurately blow hot air into the drum. The directional air supply design of the hot air pipe 410 allows the hot air to be concentrated on the feed. Combined with the rotation and stirring of the drum, the heat exchange is more direct and efficient, and the drying time is greatly shortened.

[0021] The above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.

Claims

1. A rapid drying structure of a feed production apparatus, comprising: The base frame assembly, the roller assembly, and the hot air assembly are characterized in that the upper surface of the base frame assembly is equipped with a roller assembly for stirring and drying feed, the right side surface of the roller assembly is equipped with a drive unit for driving the stirring component via the base frame assembly, the stirring component is installed inside the roller assembly, and the hot air assembly includes a hot air pipe (410) for blowing and drying the roller assembly, the hot air pipe (410) being installed above the roller assembly via a bracket (400); The base frame assembly includes a base frame body (100), a mounting frame (110), uprights (140), and a fixing frame (150). Four uprights (140) are mounted on the upper surface of the base frame body (100). A top frame is mounted on one end of each of the four uprights (140) away from the base frame body (100). The roller assembly includes a roller body (210), a mounting shell (200), a feeding component (220), and a discharging component. The roller body (210) is installed inside the top frame. The roller body (210) is a screen structure. Mounting shells (200) are installed on the right and left surfaces of the roller body (210). A protective cover (130) with a semi-circular structure is installed on the right surface of the roller body (210) through the mounting shells (200). A feeder (220) is installed on the left side of the upper surface of the roller body (210). A discharger with a cover plate is installed on the right side of the lower surface of the roller body (210).

2. The rapid drying structure of a feed production device as described in claim 1, characterized in that: A fixing frame (150) is installed below the top frame via a vertical frame (140), and an mounting frame (110) is installed on the right side of the upper surface of the base frame body (100).

3. The rapid drying structure of a feed production device as described in claim 2, characterized in that: The drive unit includes a drive motor (120), a drive belt, and a protective cover (130). The drive motor (120) is mounted on the upper surface of the mounting bracket (110), and the output shaft of the drive motor (120) is connected to the drive belt.

4. The rapid drying structure of a feed production device as described in claim 3, characterized in that: The stirring component includes a rotating shaft (300), stirring blade one (310), and stirring blade two (320). The rotating shaft (300) is rotatably mounted on the center of the drum body (210) through a mounting shell (200). The rotating shaft (300) passes through the mounting shell (200) and is connected to the transmission belt. Multiple stirring blades one (310) are evenly mounted on the outer surface of the rotating shaft (300). The stirring blades one (310) are arranged in an inclined structure on the outer surface of the rotating shaft (300). The stirring blade two (320) is set at a position matching the position of the discharge component through the rotating shaft (300).

5. The rapid drying structure of a feed production device as described in claim 4, characterized in that: A bracket (400) is installed on the upper surface of the mounting shell (200) on the right side. A hot air pipe (410) is installed at the end of the bracket (400) away from the mounting shell (200). The hot air pipe (410) is connected to an external air supply device through a pipe. Multiple air outlets (420) are evenly installed on the lower side of the outer surface of the hot air pipe (410). The air outlet end of the air outlet (420) is aligned with the upper surface of the roller body (210).