A coating stirring device for preparing seed coating
Patent Information
- Application Number
- CN202521583552.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-07-28
- Publication Date
- 2026-09-04
- Estimated Expiration
- 2035-07-28
AI Technical Summary
在搅拌过程中,如果密封性不好,容易导致原料泄漏,不仅浪费原料,还会影响生产环境
1、均匀高效搅拌:搅拌叶与搅拌轴平行设置且通过连杆连接的结构,使搅拌叶能够充分覆盖搅拌锅空间,实现原料的均匀搅拌混合,提高种衣剂的包衣质量;
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Figure CN224711904U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the technical field, and more specifically, to a stirring device for preparing a seed coating agent. Background Technology
[0002] Seed coating agents play a vital role in agricultural production. They form a protective film on the seed surface, providing functions such as disease and insect prevention, and promoting seed germination and seedling growth. The preparation of seed coating agents requires thorough mixing of various raw materials to ensure the uniformity and stability of the coating. However, existing mixing devices for seed coating agent preparation have many shortcomings, affecting the production quality and efficiency of seed coating agents.
[0003] On the one hand, the structural design of the mixing device is not reasonable enough, which can easily lead to uneven mixing during the mixing process. For example, the traditional method of setting the mixing blades may not be able to cover the entire space of the mixing pot, resulting in some raw materials not being fully mixed and affecting the coating effect of the seed coating agent. Moreover, the lifting and adjustment function of the mixing device is not perfect, and it is impossible to flexibly adjust the position of the mixing shaft according to the height of the mixing pot and the amount of raw materials, which brings inconvenience to production operations.
[0004] On the other hand, the convenience of feeding and discharging in the seed coating agent preparation process needs to be improved. Existing equipment often lacks a reasonable feeding system, leading to confusion when feeding multiple raw materials and affecting the smoothness of the production process. During discharging, there may also be problems such as raw material residue and incomplete discharge, resulting in raw material waste and subsequent cleaning difficulties.
[0005] In addition, the sealing and stability of the mixing device also need to be improved. Poor sealing during mixing can easily lead to raw material leakage, wasting materials and affecting the production environment. Insufficient stability can cause the mixing device to shake or shift during operation, affecting the equipment's lifespan and production safety. Utility Model Content
[0006] Based on the above-mentioned technical problems, this utility model proposes a stirring device for preparing seed coating agents.
[0007] A stirring apparatus for preparing a seed coating agent, comprising: The base is fixed to the ground, with multiple vertical supports symmetrically arranged on both sides; The mixing pot is fixedly installed in the middle of the vertical frame, and the bottom is equipped with a feed pipe and an electrically controlled switch valve. A lifting platform is provided on the upper part of the vertical frame; Synchronous drive assembly: includes hydraulic rods and lifting rods. The upper end of the hydraulic rod is connected to the lifting plate, and its lower end is fixed to the cross brace between the vertical frames. The lifting rods are symmetrically arranged between the fixed frame and the lifting plate to achieve synchronous lifting. Mixing system: The mixing motor is located on the lifting plate and drives the mixing shaft to rotate. Multiple mixing blades are provided on the outside of the mixing shaft. Feeding system: The lifting plate is equipped with a feeding pipe and a reagent pipe.
[0008] Furthermore, a sealing ring is provided on the lower side of the lifting plate to press against the upper edge of the mixing pot.
[0009] Furthermore, symmetrical support rods are provided between the fixing frame and the base.
[0010] Furthermore, the stirring blade is arranged parallel to the stirring shaft, and its upper and lower ends are connected to the stirring shaft through connecting rods.
[0011] Furthermore, a longitudinal conveyor belt is provided in the middle of the base, and the material bucket is placed on the conveyor belt and moved to directly below the discharge pipe.
[0012] Beneficial effects: 1. Uniform and efficient mixing: The structure in which the mixing blades are arranged parallel to the mixing shaft and connected by a connecting rod allows the mixing blades to fully cover the mixing pot space, achieving uniform mixing of raw materials and improving the coating quality of seed coating agents; 2. Flexible lifting and sealing: The synchronous drive component enables stable and synchronous lifting of the lifting plate, which facilitates the adjustment of the relative position of the stirring shaft and the mixing pot to adapt to different production needs. The sealing ring on the lower side of the lifting plate can seal the mixing pot when the lifting plate is pressed down to prevent raw material leakage, ensure a clean production environment and full utilization of raw materials, and improve the sealing performance and reliability of the device. 3. Convenient feeding and discharging: The feeding pipes and reagent pipes of the feeding system are arranged in an orderly manner to realize the orderly feeding of various raw materials and avoid confusion. The longitudinal conveyor belt of the base, together with the discharge pipe, can automatically transport the material bucket to the designated position for receiving and transfer to the next stage, improving the convenience of feeding and discharging and the smoothness of the production process, and reducing the intensity of manual labor. 4. Stable and reliable structure: The reasonable arrangement of components such as the base, vertical frame, fixed frame and support rod ensures the overall structural stability of the device, making it less prone to shaking or displacement during operation, extending the service life of the equipment and ensuring production safety. Attached Figure Description
[0013] Figure 1 A schematic diagram of the structure of this utility model is shown. Figure 1 ; Figure 2 A schematic diagram of the structure of this utility model is shown. Figure 2 ; Figure 3 A schematic diagram of the stirring system is shown. Figure 1 ; Figure 4 A schematic diagram of the stirring system is shown. Figure 2 ; In the attached diagram, 10 is the base, 11 is the vertical frame, 12 is the horizontal support, 20 is the mixing pot, 201 is the feeding pipe, 30 is the lifting plate, 301 is the sealing ring, 302 is the slider, 401 is the hydraulic rod, 402 is the lifting rod, 50 is the fixed frame, 501 is the support rod, 110 is the chute, 111 is the sealing plate, 601 is the mixing motor, 602 is the mixing shaft, 603 is the mixing blade, 604 is the connecting rod, 701 is the feeding pipe, 702 is the reagent pipe, 80 is the conveyor belt, and 203 is the material bucket. Detailed Implementation
[0014] To better understand the above-mentioned objectives, features, and advantages of this utility model, the present utility model will be further described in detail below with reference to the accompanying drawings and specific embodiments. It should be noted that, unless otherwise specified, the embodiments and features described in these embodiments can be combined with each other.
[0015] like Figures 1-4 The mixing device for preparing seed coating agent shown consists of a base 10, a mixing pot 20, a lifting plate 30, a synchronous drive component, a mixing system, a feeding system, and related auxiliary structures.
[0016] The base 10 is fixed to the ground, providing a stable foundation support for the entire device. Multiple vertical frames 11 are symmetrically arranged on both sides of the base 10. The vertical frames 11 are used to install components such as the mixing pot 20 and the lifting plate 30. Their symmetrical arrangement ensures the stability of the device structure and the uniformity of the force.
[0017] The mixing pot 20 is fixedly installed in the middle of the vertical frame 11 and is the place for mixing the seed coating agent raw materials. The bottom of the mixing pot 20 is equipped with a discharge pipe 201 and an electrically controlled switch valve. The discharge pipe 201 is used to discharge the mixed seed coating agent. The electrically controlled switch valve can realize precise control of the discharge, which is convenient to control the timing and flow rate of the discharge according to production needs. For example, after the mixing is completed, the discharge pipe 201 is opened by the electrically controlled switch valve, so that the seed coating agent flows into the material bucket 203 below.
[0018] The upper part of the vertical frame 11 is equipped with a liftable lifting plate 30. The lifting plate 30 is used to install components such as the mixing system and the feeding system. A sealing ring 301 is provided on the lower side of the lifting plate 30. When the lifting plate 30 is lowered to a certain position, the sealing ring 301 can press against the upper edge of the mixing pot 20 to seal the mixing pot 20, prevent raw material leakage during the mixing process, and ensure the cleanliness of the production environment and the full utilization of raw materials.
[0019] When it is necessary to clean the mixing pot 20, the lifting plate 30 can be raised to carefully clean the inner wall of the mixing pot 20, so as to avoid the seed coating agent remaining on the inner wall of the mixing pot 20.
[0020] In addition, a slide 110 can be provided in the upper part of the vertical frame 11. The slide 110 provides a guide rail for the lifting plate 30 to rise and fall, ensuring that the lifting plate 30 can rise and fall stably and smoothly. A detachable sealing plate 111 is provided at the top of the slide 110. When the lifting plate 30 is adjusted to a suitable position, the detachable sealing plate 111 can close the upper opening of the slide 110 to prevent dust, debris and other objects from entering the slide 110 and affecting the normal operation of the lifting plate 30. A matching slider 302 is provided on the lifting plate 30. The slider 302 slides and engages with the slide 110 of the vertical frame 11, so that the lifting plate 30 can rise and fall stably along the slide 110, and achieve precise position adjustment in conjunction with the synchronous drive component.
[0021] The synchronous drive assembly includes a hydraulic rod 401 and a lifting rod 402. The upper end of the hydraulic rod 401 is connected to the lifting plate 30, providing power for the lifting of the lifting plate 30. Its lower end is fixed to the cross brace 12 between the vertical frames 11. The lifting rod 402 is symmetrically arranged between the fixed frame 50 and the lifting plate 30. When the hydraulic rod 401 drives the lifting plate 30 to rise and fall, the lifting rod 402 can play an auxiliary support and guiding role, ensuring that the lifting plate 30 rises and falls synchronously, preventing the lifting plate 30 from tilting or deviating, and improving the stability and reliability of the lifting process. Symmetrical support rods 501 are provided between the fixed frame 50 and the base 10. The support rods 501 can enhance the stability of the fixed frame 50, making the installation of the synchronous drive assembly and the lifting plate 30 more secure, and ensuring the structural stability of the entire device.
[0022] The stirring motor 601 of the stirring system is located on the lifting plate 30. The stirring motor 601 provides power for the rotation of the stirring shaft 602. When the stirring shaft 602 rotates, it drives the multiple stirring blades 603 on the outside to rotate, thereby mixing the raw materials in the mixing pot 20. The stirring blades 603 are arranged parallel to the stirring shaft 602, and their upper and lower ends are connected to the stirring shaft 602 through connecting rods 604. This structural design allows the stirring blades 603 to cover more space in the mixing pot 20 during the stirring process, improving the uniformity of the stirring, ensuring that the seed coating agent raw materials are fully mixed, and improving the coating quality of the seed coating agent.
[0023] The feed pipe 701 and the reagent pipe 702 of the feeding system are located on the lifting plate 30. The feed pipe 701 is used to transport the basic raw materials of the seed coating agent, and the reagent pipe 702 is used to transport various functional agents. The reagent pipe 702 can be connected to the middle of the feed pipe 701. While the basic raw materials are being transported, the agents are also being transported to improve the mixing effect. During the mixing process, raw materials can be added continuously or intermittently through the feed pipe 701 and the reagent pipe 702 according to production needs to ensure the continuity of mixing and the accuracy of the seed coating agent composition.
[0024] In addition, a longitudinal conveyor belt 80 can be installed in the middle of the base 10. The material bucket 203 is placed on the conveyor belt 80 and moves to the bottom of the discharge pipe 201. After the mixing is completed, the electric control switch valve is opened, and the seed coating agent flows into the material bucket 203 below through the discharge pipe 201. The conveyor belt 80 can transport the material bucket 203 filled with seed coating agent to the next production stage, such as the packaging stage, to realize automated material discharge and transfer, improve production efficiency, and reduce the labor intensity of manual operation.
[0025] The above description is merely a preferred embodiment of this utility model and is not intended to limit the utility model. Various modifications and variations can be made to this utility model by those skilled in the art. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this utility model should be included within the protection scope of this utility model.
Claims
1. A stirring apparatus for preparing a seed coating agent, characterized in that, include: The base (10) is fixed to the ground, and multiple vertical supports (11) are symmetrically arranged on both sides. The mixing pot (20) is fixedly installed in the middle of the vertical frame (11), and the bottom is equipped with a feed pipe (201) and an electrically controlled switch valve; Lifting plate (30), the upper part of the vertical frame (11) is equipped with a liftable lifting plate (30). Synchronous drive assembly: includes hydraulic rod (401) and lifting rod (402). The upper end of hydraulic rod (401) is connected to lifting plate (30), and its lower end is fixed on cross brace (12) between vertical frame (11). Lifting rod (402) is symmetrically arranged between fixed frame (50) and lifting plate (30) to achieve synchronous lifting. Stirring system: A stirring motor (601) is located on the lifting plate (30) to drive the stirring shaft (602) to rotate. Multiple stirring blades (603) are provided on the outside of the stirring shaft (602). Feeding system: The lifting plate (30) is equipped with a feeding pipe (701) and a reagent pipe (702).
2. The stirring apparatus for preparing seed coating agents according to claim 1, characterized in that, The lifting plate (30) is provided with a sealing ring (301) on the lower side to press the upper edge of the mixing pot (20).
3. The stirring apparatus for preparing seed coating agents according to claim 1, characterized in that, Symmetrical support rods (501) are provided between the fixed frame (50) and the base (10).
4. The stirring apparatus for preparing seed coating agents according to claim 1, characterized in that, The stirring blade (603) is arranged parallel to the stirring shaft (602), and its upper and lower ends are connected to the stirring shaft (602) through a connecting rod (604).
5. The stirring apparatus for preparing seed coating agents according to claim 1, characterized in that, The base (10) is provided with a longitudinal conveyor belt (80) in the middle, and the material bucket (203) is placed on the conveyor belt (80) and moved to the bottom of the discharge pipe (201).