Agricultural production with ingredients auger

CN224753462UActive Publication Date: 2026-09-15SHANDONG BAINONG SIDA BIOTECHNOLOGY CO LTD
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Patent Information

Application Number
CN202522382577.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-11-10
Publication Date
2026-09-15
Estimated Expiration
2035-11-10

AI Technical Summary

Technical Problem

[0003]在现有技术中,在对不同原料倒入配料绞龙内时,需要提前对不同原料的量进行配比,然后将不同配比的原料倒入配料绞龙内进行输送,同时,原料在长时间储存时,容易受到挤压或潮湿发生结团的情况;

Benefits of technology

1、本实用新型通过送料件,将不同原料倒入不同料筒内,通过破碎件将料筒内部的原料导流至输送筒内部,通过带动转杆进行旋转,同步带动螺旋叶旋转,利用螺旋叶的旋转将原料通过输送筒输送,然后将原料通过固定管导入固定罩内侧并向下导出,通过多个料筒内部倒入不同的原料,同时根据配料需求带动不同输送筒内部的转杆与螺旋叶旋转不同圈数,可以对不同的原料进行定量输送,便于对农药生产时自动进行配料操作。

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Abstract

The utility model relates to the technical field of pesticide production, concretely relates to a batching auger for pesticide production, including support spare, the bottom fixed mounting of support spare has a plurality of storage spare, each storage spare includes a material cylinder, the bottom fixed connection of a plurality of material cylinders has crushing spare, the bottom fixed connection of each crushing spare has a feeding spare, each feeding spare includes a conveying cylinder, each conveying cylinder and material cylinder are all through crushing spare intercommunication, crushing spare includes feeding pipeline, the inside rotatory installation of feeding pipeline has movable rod, the periphery fixed connection of movable rod has a plurality of crushing rod, both sides of feeding pipeline inner wall all fixed mounting have fixed rod, the inside rotatory joint of conveying cylinder has the rotating lever, through feeding spare, can carry out ration delivery to different raw materials, is convenient for to the automatic batching operation when pesticide production, is convenient for to the automatic crushing of the raw material of agglomeration, avoids the agglomeration raw material to cause the jam situation of feeding pipeline, conveying cylinder and fixed pipe.
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Description

Technical Field

[0001] This utility model relates to the field of pesticide production technology, specifically to a pesticide production feed auger. Background Technology

[0002] Pesticides are mixtures of one or more chemically synthesized or biologically derived substances and their formulations used to prevent, eliminate, or control diseases, insects, weeds, and other harmful organisms that endanger agriculture and forestry, as well as to purposefully regulate the growth of plants and insects. In the process of pesticide production, a batching auger is needed to transport different raw materials to a mixing device for mixing. A batching auger for pesticide production, also known as a screw conveyor or auger, is a mechanical device that uses rotating spiral blades to transport materials.

[0003] In the existing technology, when different raw materials are poured into the feeding auger, the amount of different raw materials needs to be proportioned in advance, and then the raw materials with different proportions are poured into the feeding auger for conveying. At the same time, when the raw materials are stored for a long time, they are prone to being squeezed or damp and clumping together. Currently, there are some shortcomings: in pesticide production, it is not convenient to automatically feed multiple raw materials in a quantitative manner. At the same time, when feeding raw materials, the batching auger is not convenient to break up clumps of raw materials, which can easily cause blockages in the batching auger and affect the quantitative feeding operation of the batching auger. Utility Model Content

[0004] In view of the above-mentioned shortcomings of the existing technology, the present invention provides a feed auger for pesticide production, which can effectively solve the problems mentioned in the background art.

[0005] To achieve the above objectives, this utility model provides the following technical solution: This utility model provides a feed auger for pesticide production, including a support member. Multiple storage members are fixedly installed at the bottom of the support member. Each storage member includes a material cylinder. A crushing member is fixedly connected to the bottom of each of the multiple material cylinders. A feeding member is fixedly connected to the bottom of each crushing member. Each feeding member includes a conveying cylinder. Each conveying cylinder and the material cylinder are connected through the crushing member. The crushing component includes a feeding pipe, a movable rod rotatably mounted on the inner side of the feeding pipe, multiple crushing rods fixedly connected to the periphery of the movable rod, fixed rods fixedly mounted on both sides of the inner wall of the feeding pipe, and a rotating rod rotatably connected inside the conveying cylinder.

[0006] Furthermore, the support includes a support plate, and a plurality of the material cylinders are fixedly connected to the bottom of the support plate, with the top of each material cylinder extending beyond the top of the support plate.

[0007] Furthermore, a support frame is fixedly installed at the bottom of the support plate, and multiple fixed columns are fixedly connected to the bottom of the support frame. A support bracket is fixedly installed on the inner side of the support frame.

[0008] Furthermore, a connecting cylinder is fixedly installed at the bottom of each of the material cylinders, and each of the feeding pipes is located at the bottom of a connecting cylinder and fixedly connected to the connecting cylinder. Each of the feeding pipes is connected to the material cylinder through a connecting cylinder.

[0009] Furthermore, one end of each of the multiple conveying cylinders is inclined upward and fixedly connected to a fixing pipe. Each fixing pipe is located at the bottom of a conveying cylinder, and a fixing cover is fixedly installed at one end of each of the multiple fixing pipes. Each conveying cylinder and the fixing cover are connected through the fixing pipe.

[0010] Furthermore, each of the rotating rods is fixedly equipped with a helical blade, one end of each rotating rod extends outward to the outer end of a conveying cylinder, and one end of each movable rod extends outward to the outer side of a feeding pipe. Furthermore, a servo motor is fixedly installed on one side of each of the feeding pipes, and the output end of each servo motor is connected to a rotating rod and a movable rod via a synchronous belt drive.

[0011] The technical solution provided by this utility model has the following advantages compared with the known prior art: 1. This utility model uses a feeding component to pour different raw materials into different material cylinders. A crushing component guides the raw materials inside the material cylinders to the inside of the conveying cylinder. By driving the rotating rod to rotate, the spiral blades are simultaneously rotated. The rotation of the spiral blades transports the raw materials through the conveying cylinders. Then, the raw materials are guided into the inside of the fixed cover through a fixed pipe and discharged downwards. By pouring different raw materials into multiple material cylinders, and simultaneously driving the rotating rods and spiral blades inside the different conveying cylinders to rotate a different number of times according to the batching requirements, different raw materials can be quantitatively conveyed, which is convenient for automatic batching operations in pesticide production.

[0012] 2. During the material conveying process via the rotating rod and spiral blade, the movable rod can rotate synchronously. When the material in the feed cylinder is guided downward through the feeding pipe, the fixed rod can intercept any clumps of material. As the movable rod rotates, it can drive the crushing rod to rotate synchronously, allowing the crushing rod to flip through the gap of the fixed rod. The crushing rod and the fixed rod can create a shearing effect, which can crush the material intercepted by the fixed rod. This facilitates the automatic crushing of clumps of material and prevents clumps from clogging the feeding pipe, conveying cylinder, and fixed pipe. Attached Figure Description

[0013] 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.

[0014] Figure 1 This is a first-view overall structural diagram of the present invention; Figure 2 This is a schematic diagram of the overall structure of the present invention from a second perspective; Figure 3 This is a partially enlarged structural diagram of the conveying cylinder of this utility model; Figure 4 This is a schematic diagram of the cross-sectional structure of the conveying cylinder of this utility model; Figure 5 For the present utility model Figure 4 Enlarged structural diagram of section A; Figure 6 This is a side view sectional diagram of the feeding pipe of this utility model.

[0015] The labels in the diagram represent: 1. Support component; 11. Support plate; 12. Support frame; 13. Support bracket; 14. Fixed column; 2. Storage component; 21. Material cylinder; 22. Connecting cylinder; 3. Feeding component; 31. Conveying cylinder; 32. Fixed pipe; 33. Fixed cover; 34. Rotating rod; 35. Spiral blade; 4. Crushing component; 41. Feeding pipe; 42. Servo motor; 43. Synchronous belt; 44. Movable rod; 45. Fixed rod; 46. Crushing rod. Detailed Implementation

[0016] To make the objectives, technical solutions, and advantages of the embodiments of this utility model clearer, the technical solutions of the embodiments of this utility model will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some, not all, of the embodiments of this utility model. All other embodiments obtained by those skilled in the art based on the embodiments of this utility model without creative effort are within the scope of protection of this utility model.

[0017] The present invention will be further described below with reference to the embodiments.

[0018] Example 1: Reference Figures 1 to 6This first embodiment of the present invention discloses a feed auger for pesticide production, including a support member 1. Multiple storage members 2 are fixedly installed at the bottom of the support member 1. Each storage member 2 includes a material cylinder 21. The bottom of each material cylinder 21 is fixedly connected to a crushing member 4. The bottom of each crushing member 4 is fixedly connected to a feeding member 3. Each feeding member 3 includes a conveying cylinder 31. Each conveying cylinder 31 is connected to the material cylinder 21 through the crushing member 4. The support member 1 supports and fixes the multiple material cylinders 21. By setting multiple material cylinders 21, different raw materials are poured into different material cylinders 21. The multiple feeding members 3 perform quantitative feeding operations on the raw materials in the multiple material cylinders 21, which facilitates quantitative feeding operations of raw materials during pesticide production. The crushing component 4 includes a feeding pipe 41, a movable rod 44 rotatably mounted on the inner side of the feeding pipe 41, and multiple crushing rods 46 fixedly connected to the outer periphery of the movable rod 44. Fixed rods 45 are fixedly mounted on both sides of the inner wall of the feeding pipe 41. A rotating rod 34 is rotatably connected inside the conveying cylinder 31. The raw material in the material cylinder 21 can be guided into the conveying cylinder 31 through the feeding pipe 41. The fixed rods 45 can intercept the agglomerated raw material. By driving the movable rod 44 to rotate automatically during the feeding process, the crushing rods 46 are rotated synchronously. With the help of the fixed rods 45, a shearing effect can be formed, which can fully crush the agglomerated raw material.

[0019] The support component 1 includes a support plate 11, and multiple material cylinders 21 are fixedly connected to the bottom of the support plate 11. The top of each material cylinder 21 extends beyond the top of the support plate 11. A support frame 12 is fixedly installed at the bottom of the support plate 11, and multiple fixing posts 14 are fixedly connected to the bottom of the support frame 12. A support frame 13 is fixedly installed on the inner side of the support frame 12. The support plate 11 can support and fix the multiple material cylinders 21, the support frame 12 and the fixing posts 14 can support and fix the support plate 11, and the support frame 13 can strengthen and fix the bottom of the support plate 11. At the same time, it can distinguish, isolate and support the multiple material cylinders 21 to prevent the support plate 11 from sinking downward.

[0020] Each material cylinder 21 has a connecting cylinder 22 fixedly installed at its bottom. Each feeding pipe 41 is located at the bottom of a connecting cylinder 22 and is fixedly connected to the connecting cylinder 22. Each feeding pipe 41 is connected to the material cylinder 21 through a connecting cylinder 22.

[0021] In this embodiment, during pesticide production, different raw materials are poured into different feed cylinders 21. The feed pipe 41 guides the raw materials into the conveying cylinder 31. The feed operation can be performed by rotating the rotating rod 34 inside the conveying cylinder 31. By controlling the number of rotations of the rotating rod 34 inside the different conveying cylinders 31, the feed operation of different raw materials can be quantitatively proportioned. When the raw materials are guided through the feed pipe 41, the movable rod 44 drives the crushing rod 46 to rotate. With the cooperation of the fixed rod 45, a shearing effect can be formed, which can automatically crush the agglomerated raw materials and avoid the agglomerated raw materials from clogging the feed auger, thus avoiding affecting the quantitative feeding operation.

[0022] Example 2: Reference Figures 2 to 6 This is the second embodiment of the present invention. The difference between this embodiment and the first embodiment is that: one end of the plurality of conveying cylinders 31 is inclined upward and fixedly connected to a fixing pipe 32. Each fixing pipe 32 is located at the bottom of a conveying cylinder 31. A fixing cover 33 is fixedly installed at one end of the plurality of fixing pipes 32. Each conveying cylinder 31 and the fixing cover 33 are connected through the fixing pipe 32.

[0023] Each rotating rod 34 is fixedly equipped with a spiral blade 35. One end of each rotating rod 34 extends outward from the outer end of a conveying cylinder 31. One end of each movable rod 44 extends outward from the outer side of a feeding pipe 41. A servo motor 42 is fixedly installed on one side of each feeding pipe 41. The output end of each servo motor 42 is connected to a rotating rod 34 and a movable rod 44 via a synchronous belt 43.

[0024] In this embodiment, by starting the servo motor 42 and using the synchronous belt 43 for transmission, the rotating rod 34 and the movable rod 44 can be driven to rotate synchronously. The servo motor 42 is model 130ST-M04025. When the raw material is fed through the conveying cylinder 31, the rotating rod 34 drives the spiral blade 35 to rotate. The rotation of the spiral blade 35 conveys the raw material. When the raw material is fed through the conveying cylinder 31, the raw material can be guided through the fixed pipe 32 to the fixed cover 33. The fixed cover 33 is used to uniformly discharge different raw materials downwards.

[0025] The workflow of this utility model is as follows: First, different raw materials are poured into different material cylinders 21. The crushing component 4 guides the raw materials inside the material cylinder 21 to the inside of the conveying cylinder 31. The material inside the material cylinder 21 can be guided to the inside of the conveying cylinder 31 through the connecting cylinder 22 and the feeding pipe 41. Then, start the servo motor 42 and use the synchronous belt 43 for transmission. The servo motor 42 can drive the rotating rod 34 and the movable rod 44 to rotate synchronously. The rotating rod 34 squeezes and drives the spiral blade 35 to rotate synchronously. The rotation of the spiral blade 35 is used to transport the raw material through the conveyor cylinder 31. The fixed pipe 32 allows the conveying cylinder 31 to transport the raw materials into the fixed cover 33. The fixed cover 33 then discharges the raw materials downwards. Different raw materials are poured into the multiple material cylinders 21. At the same time, according to the batching requirements, the rotating rod 34 and spiral blade 35 inside the different conveying cylinders 31 are rotated a different number of times. This allows for the quantitative conveying of different raw materials, facilitating automatic batching operations during pesticide production. Fixed rods 45 are fixed on both sides of the inner wall of the feeding pipe 41. The fixed rods 45 can intercept the agglomerated raw materials. The rotation of the movable rod 44 can drive the crushing rod 46 to rotate synchronously. The crushing rod 46 can flip through the gap of the fixed rod 45. The crushing rod 46 and the fixed rod 45 can form a shearing effect, which can crush the raw materials intercepted by the fixed rod 45. This facilitates the automatic crushing of agglomerated raw materials and avoids the agglomerated raw materials from clogging the feeding pipe 41, the conveying cylinder 31 and the fixed pipe 32.

[0026] The above embodiments are only used to illustrate the technical solutions of this utility model, and are not intended to limit it. Although this utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some of the technical features. Such modifications or substitutions will not cause the essence of the corresponding technical solutions to deviate from the protection scope of the technical solutions of the embodiments of this utility model.

Claims

1. A auger for pesticide production, characterized in that: The system includes a support member (1), and a plurality of storage members (2) are fixedly installed at the bottom of the support member (1). Each storage member (2) includes a material cylinder (21). The bottom of each of the plurality of material cylinders (21) is fixedly connected to a crushing member (4). The bottom of each crushing member (4) is fixedly connected to a feeding member (3). Each feeding member (3) includes a conveying cylinder (31). Each conveying cylinder (31) is connected to the material cylinder (21) through the crushing member (4). The crushing component (4) includes a feeding pipe (41), a movable rod (44) is rotatably installed on the inner side of the feeding pipe (41), a plurality of crushing rods (46) are fixedly connected to the outer periphery of the movable rod (44), a fixed rod (45) is fixedly installed on both sides of the inner wall of the feeding pipe (41), and a rotating rod (34) is rotatably connected inside the conveying cylinder (31).

2. The pesticide production feed auger according to claim 1, characterized in that, The support member (1) includes a support plate (11), and a plurality of the material cylinders (21) are fixedly connected to the bottom of the support plate (11), with the top of each material cylinder (21) extending out of the top of the support plate (11).

3. The pesticide production feed auger according to claim 2, characterized in that, A support frame (12) is fixedly installed at the bottom of the support plate (11), and a plurality of fixed columns (14) are fixedly connected to the bottom of the support frame (12). A support bracket (13) is fixedly installed on the inner side of the support frame (12).

4. The pesticide production feed auger according to claim 1, characterized in that, Each of the material cylinders (21) has a connecting cylinder (22) fixedly installed at its bottom. Each of the feeding pipes (41) is located at the bottom of a connecting cylinder (22) and is fixedly connected to the connecting cylinder (22). Each of the feeding pipes (41) and the material cylinder (21) are connected through a connecting cylinder (22).

5. The pesticide production feed auger according to claim 1, characterized in that, One end of each of the multiple conveying cylinders (31) is inclined upward and fixedly connected to a fixing pipe (32). Each fixing pipe (32) is located at the bottom of a conveying cylinder (31). One end of each of the multiple fixing pipes (32) is fixedly installed with a fixing cover (33). Each conveying cylinder (31) and the fixing cover (33) are connected through the fixing pipe (32).

6. The pesticide production feed auger according to claim 1, characterized in that, Each of the rotating rods (34) is fixedly equipped with a spiral blade (35) on its periphery. One end of each of the rotating rods (34) extends outward from the outer end of a conveying cylinder (31), and one end of each of the movable rods (44) extends outward from the outer side of a feeding pipe (41).

7. The pesticide production feed auger according to claim 1, characterized in that, A servo motor (42) is fixedly installed on one side of each of the feeding pipes (41), and the output end of each servo motor (42) is connected to a rotating rod (34) and a movable rod (44) by a synchronous belt (43).