High-efficiency stirring device for production of deep processing of starch products

CN224656542UActive Publication Date: 2026-08-21BEIJING GREAT NEW ENERGY TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202521481191.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-07-15
Publication Date
2026-08-21
Estimated Expiration
2035-07-15

AI Technical Summary

Technical Problem

[0005]为了克服装置搅拌液面较高的原料时可能会不均匀、不够高效,对一些粘稠原料可能会难以搅拌的问题

Benefits of technology

[0013]本实用新型的有益效果:通过摇动摇杆带动螺纹杆转动使移动件二移动,移动件二移动使转动连接的移动件一在限位框一内移动,从而带动筒体以固定件为轴倾斜,方便工人将原料从进料口导入筒体内,启动电机带动齿轮一和齿轮三转动,使齿轮二带动搅拌杆一让框式叶片对原料进行一个方向的搅拌,同时使齿轮三带动搅拌杆二让四叶型斜叶对原料进行逆向搅拌,搅拌完成后打开蝶阀将成品从出料口处取出,有助于解决装置搅拌液面较高的原料时可能会不均匀、不够高效,对一些粘稠原料可能会难以搅拌的问题。

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Abstract

The utility model relates to the technical field of stirring, especially to high -efficient stirring device for production is used in deep processing of starch product, including the cylinder, still including observation window and support component, the utility model discloses through the shaking rocker drive screw rod rotation makes mobile piece two removal, mobile piece two removal makes the mobile piece one in the limit frame one removal, thereby drive cylinder with fixed part as the axle tilt, the worker is convenient to the raw material from the feed port introduction cylinder, starts motor drive gear one and gear three rotation, makes gear two drive stirring rod one and lets frame formula vane to raw material to carry out one direction's stirring, simultaneously makes gear three drive stirring rod two and lets four leaf type oblique leaf to raw material carry out reverse stirring, opens butterfly valve after stirring and takes out the finished product from the discharge port, help to solve the device stirring liquid level higher raw material possibly uneven, not enough high -efficient, to some viscous raw material possibly difficult to stir the problem.
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Description

Technical Field

[0001] This utility model relates to the field of mixing technology, and in particular to a high-efficiency mixing device for the deep processing of starch products. Background Technology

[0002] A mixing device is a type of reaction material machinery used in multiple industries, primarily for mixing various mixtures. It works by rotating a bladed shaft within a cylinder or trough, thereby mixing multiple raw materials to create a mixture or a material of suitable consistency. Mixing devices come in a wide variety of types and are applicable to a broad range of scenarios.

[0003] According to the description in the high-efficiency stirring device published on the patent website (authorization announcement number: CN 220047789 U), "This utility model relates to the field of stirring technology, and in particular to a high-efficiency stirring device, including a main reaction tank and a bottom-mounted drive motor. A bottom stirring disc controlled by the bottom-mounted drive motor is movably mounted on the top surface of the main reaction tank. The high-efficiency stirring device of this utility model, by adopting a bottom-mounted structure design, can ensure full utilization of power and avoid energy waste; the design of fixed upper stirring blades and movably mounted on one side of the upper stirring blades can automatically adjust the length and height of the blades according to the rotation speed, making it more adaptable and more efficient in reaction."

[0004] Regarding the above description, the applicant believes that the following problems exist: When the device is in use, the bottom drive motor drives the bottom stirring plate to rotate. The rotation of the bottom stirring plate generates centrifugal force, which causes the flip-type lateral extension blades to flip outward to stir the raw materials in the main reaction tank. The stirring part of the device is mainly at the bottom, which may lead to uneven and inefficient stirring of raw materials with high liquid levels. At the same time, it may be difficult to stir some viscous raw materials. Utility Model Content

[0005] To overcome the problems that the device may not be uniform or efficient when stirring raw materials with high liquid levels, and may be difficult to stir some viscous materials.

[0006] The technical solution of this utility model is as follows: a high-efficiency stirring device for deep processing of starch products, including a cylinder; it also includes an observation window and a support assembly. The support assembly is fixedly connected to the outside of the cylinder, and the observation window is fixedly connected to the inside of the cylinder. A feed inlet is provided on the outside of the cylinder. A first outer shell is fixedly connected to the top of the cylinder. A second outer shell is fixedly connected to the outside of the first outer shell. A motor is fixedly connected to the inside of the first outer shell. A gear is fixedly connected to the output end of the motor. A gear is meshed with the bottom of the first gear. A stirring rod is fixedly connected to the bottom of the second gear. A frame-type blade is fixedly connected to the outside of the first stirring rod. A gear is meshed with the top of the first gear. A stirring rod is fixedly connected to the inside of the third gear. A four-leaf oblique blade is fixedly connected to the outside of the second stirring rod. A discharge port is fixedly connected to the top of the cylinder, and a butterfly valve is fixedly connected to the inside of the discharge port.

[0007] Preferably, holes are provided at the corresponding positions of the outer shell and the stirring rod, and the stirring rod is rotatably connected inside the outer shell.

[0008] Preferably, a through hole is provided at the corresponding position of stirring rod one and stirring rod two, and stirring rod two is rotatably connected to the inside of stirring rod one.

[0009] Preferably, the outer array of the stirring rod 2 is provided with three sets of four-bladed oblique blades, and the three sets of four-bladed oblique blades are arranged on the outside of the stirring rod 2.

[0010] Preferably, the support assembly includes a limiting frame 1, which is fixedly connected to the outside of the cylinder. A movable part 1 is slidably connected inside the limiting frame 1, and a movable part 2 is rotatably connected to the outside of the movable part 1. A threaded rod is engaged inside the movable part 2, and a rocker is fixedly connected to one side of the threaded rod. A limiting frame 2 is provided outside the threaded rod, and a support frame is fixedly connected to the outside of the limiting frame 2. A fixing part is rotatably connected inside the support frame.

[0011] Preferably, a sliding groove is provided at the corresponding position of the limiting frame 2 and the moving part 2, and the moving part 2 is slidably connected inside the limiting frame 2.

[0012] As a preferred option, the handle part of the joystick is made of PVC material, with striped anti-slip patterns on it.

[0013] The beneficial effects of this utility model are as follows: By shaking the rocker arm, the threaded rod rotates, causing the second moving part to move. The movement of the second moving part causes the first moving part, which is rotatably connected, to move within the first limiting frame, thereby causing the cylinder to tilt around the fixed part as the axis. This makes it convenient for workers to introduce raw materials into the cylinder from the feed port. The motor is started, which drives the first and third gears to rotate. The second gear drives the first stirring rod, causing the frame-type blades to stir the raw materials in one direction. At the same time, the third gear drives the second stirring rod, causing the four-bladed oblique blades to stir the raw materials in the opposite direction. After stirring is completed, the butterfly valve is opened to remove the finished product from the discharge port. This helps to solve the problems that the device may not be uniform or efficient when stirring raw materials with high liquid levels, and may be difficult to stir some viscous materials. Attached Figure Description

[0014] Figure 1 The diagram shown is a schematic representation of the overall structure of the high-efficiency stirring device for deep processing of starch products according to this utility model.

[0015] Figure 2 The diagram shown is a cross-sectional view of the high-efficiency stirring device for deep processing of starch products according to this utility model.

[0016] Figure 3 This invention presents a high-efficiency stirring device for the deep processing of starch products. Figure 2 Schematic diagram of the structure at point A;

[0017] Figure 4 The diagram shown is a schematic representation of the support assembly of the high-efficiency stirring device for deep processing of starch products according to this utility model.

[0018] Explanation of reference numerals in the attached drawings: 1. Cylinder; 201. Observation window; 202. Feed inlet; 203. Outer shell one; 204. Outer shell two; 205. Motor; 206. Gear one; 207. Gear two; 208. Stirring rod one; 209. Frame-type blade; 210. Gear three; 211. Stirring rod two; 212. Four-leaf oblique blade; 213. Discharge port; 214. Butterfly valve; 301. Limiting frame one; 302. Moving part one; 303. Moving part two; 304. Threaded rod; 305. Rocker arm; 306. Limiting frame two; 307. Support frame; 308. Fixing part. Detailed Implementation

[0019] The present invention will be further described below with reference to the accompanying drawings and embodiments.

[0020] Please see Figures 1-4This utility model provides an embodiment of a high-efficiency stirring device for deep processing of starch products, including a cylinder 1; it also includes an observation window 201 and a support assembly. The support assembly is fixedly connected to the outside of the cylinder 1, the observation window 201 is fixedly connected to the inside of the cylinder 1, a feed inlet 202 is provided on the outside of the cylinder 1, a first outer shell 203 is fixedly connected to the top of the cylinder 1, a second outer shell 204 is fixedly connected to the outside of the first outer shell 203, a motor 205 is fixedly connected inside the first outer shell 203, and a gear 206 is fixedly connected to the output end of the motor 205. Gear 207 is engaged at the bottom of cylinder 1. A stirring rod 208 is fixedly connected to the bottom of gear 207. A frame-type blade 209 is fixedly connected to the outside of stirring rod 208. Gear 3 210 is engaged at the top of gear 1. A stirring rod 211 is fixedly connected inside gear 3 210. A four-leaf oblique blade 212 is fixedly connected to the outside of stirring rod 211. A discharge port 213 is fixedly connected to the top of cylinder 1. A butterfly valve 214 is fixedly connected inside discharge port 213. Raw materials are introduced into cylinder 1 from inlet 202. The motor 205 is started to drive gear 206. 206 and gear 3 210 rotate, causing gear 2 207 to drive stirring rod 1 208, which in turn causes the frame blades 209 to stir the raw material in one direction. Simultaneously, gear 3 210 drives stirring rod 2 211, which in turn causes the four-bladed oblique blades 212 to stir the raw material in the opposite direction. After stirring is complete, butterfly valve 214 is opened to remove the finished product from outlet 213. Holes are provided in the outer shell 204 at positions corresponding to stirring rod 2 211. Stirring rod 2 211 is rotatably connected inside the outer shell 204. The outer shell 204 facilitates the movement of stirring rod 2 211. The movement is limited to provide stability; through holes are provided at corresponding positions of stirring rod 208 and stirring rod 211, and stirring rod 211 is rotatably connected inside stirring rod 208. By setting stirring rod 208, it is possible to rotate without affecting the rotation of stirring rod 211, and to provide stability for the rotation of stirring rod 211; three sets of four-leaf oblique blades 212 are arranged in an array on the outside of stirring rod 211. The arrangement of three sets of four-leaf oblique blades 212 on the outside of stirring rod 211, and the setting of four sets of four-leaf oblique blades 212, helps to fully mix the raw materials.

[0021] Please see Figure 4In this embodiment, the support assembly includes a limiting frame 301, which is fixedly connected to the outside of the cylinder 1. A movable component 302 is slidably connected inside the limiting frame 301, and a movable component 303 is rotatably connected outside the movable component 302. A threaded rod 304 is engaged inside the movable component 303, and a rocker arm 305 is fixedly connected to one side of the threaded rod 304. A limiting frame 306 is provided outside the threaded rod 304, and a support frame 307 is fixedly connected outside the limiting frame 306. A fixing component 308 is rotatably connected inside the support frame 307. By shaking the rocker arm 305, the threaded rod 304 is rotated, causing the movable component 303 to move. The movement of the second movable part 303 causes the first movable part 302, which is rotatably connected, to move within the first limiting frame 301, thereby causing the cylinder 1 to tilt around the fixed part 308 as the axis, making it convenient for workers to introduce raw materials into the cylinder 1 from the feed port 202; the second limiting frame 306 has a sliding groove at the corresponding position of the second movable part 303, and the second movable part 303 is slidably connected inside the second limiting frame 306. By setting the second limiting frame 306, it helps to limit the movement of the second movable part 303; the handle part of the rocker arm 305 is made of PVC material and has striped anti-slip patterns on it. By setting the striped anti-slip patterns, it helps the operator to use it more easily.

[0022] During operation, the rocker arm 305 drives the threaded rod 304 to rotate, causing the second movable part 303 to move. The movement of the second movable part 303 causes the first movable part 302, which is rotatably connected, to move within the first limiting frame 301, thereby causing the cylinder 1 to tilt around the fixed part 308 as the axis. This facilitates the worker to introduce the raw material into the cylinder 1 from the feed port 202. The motor 205 is started to drive the gear 1 206 and the gear 3 210 to rotate, causing the gear 2 207 to drive the stirring rod 1 208 to make the frame blade 209 stir the raw material in one direction. At the same time, the gear 3 210 drives the stirring rod 211 to make the four-leaf oblique blade 212 stir the raw material in the opposite direction. After the stirring is completed, the butterfly valve 214 is opened to take out the finished product from the discharge port 213.

[0023] Through the above steps, the rocker arm 305 drives the threaded rod 304 to rotate, causing the second moving part 303 to move. The movement of the second moving part 303 causes the first moving part 302, which is rotatably connected, to move within the first limiting frame 301, thereby causing the cylinder 1 to tilt around the fixed part 308 as the axis. This makes it easier for workers to introduce raw materials into the cylinder 1 from the feed port 202. The motor 205 is started to drive the gear 1 206 and the gear 3 210 to rotate, causing the gear 2 207 to drive the stirring rod 1 208 to make the frame blade 209 stir the raw materials in one direction. At the same time, the gear 3 210 drives the stirring rod 211 to make the four-leaf oblique blade 212 stir the raw materials in the opposite direction. After the stirring is completed, the butterfly valve 214 is opened to take out the finished product from the discharge port 213. This helps to solve the problems that the device may not be uniform or efficient when stirring raw materials with a high liquid level, and may be difficult to stir some viscous materials.

Claims

1. A high-efficiency stirring device for deep processing of starch products, comprising a cylinder (1); characterized in that: It also includes an observation window (201) and a support assembly. The support assembly is fixedly connected to the outside of the cylinder (1). The observation window (201) is fixedly connected to the inside of the cylinder (1). The feed inlet (202) is provided on the outside of the cylinder (1). The first outer shell (203) is fixedly connected to the top of the cylinder (1). The second outer shell (204) is fixedly connected to the outside of the first outer shell (203). The motor (205) is fixedly connected inside the first outer shell (203). The output end of the motor (205) is fixedly connected to the first gear (206). The bottom of the first gear (206) is engaged. There is a gear 2 (207), a stirring rod 1 (208) is fixedly connected to the bottom of the gear 2 (207), a frame blade (209) is fixedly connected to the outside of the stirring rod 1 (208), a gear 3 (210) meshes with the top of the gear 1 (206), a stirring rod 2 (211) is fixedly connected inside the gear 3 (210), a four-leaf oblique blade (212) is fixedly connected to the outside of the stirring rod 2 (211), a discharge port (213) is fixedly connected to the top of the cylinder (1), and a butterfly valve (214) is fixedly connected inside the discharge port (213).

2. The high-efficiency stirring device for deep processing of starch products according to claim 1, characterized in that: Holes are provided at the corresponding positions of the outer shell (204) and the stirring rod (211), and the stirring rod (211) is rotatably connected inside the outer shell (204).

3. The high-efficiency stirring device for deep processing of starch products according to claim 1, characterized in that: A through hole is provided at the corresponding position of stirring rod one (208) and stirring rod two (211), and stirring rod two (211) is rotatably connected inside stirring rod one (208).

4. The high-efficiency stirring device for deep processing of starch products according to claim 1, characterized in that: The stirring rod 2 (211) is equipped with three sets of four-bladed oblique blades (212) arranged on the outside of the stirring rod 2 (211).

5. The high-efficiency stirring device for deep processing of starch products according to claim 1, characterized in that: The support assembly includes a limiting frame 1 (301), which is fixedly connected to the outside of the cylinder (1). A movable part 1 (302) is slidably connected inside the limiting frame 1 (301). A movable part 2 (303) is rotatably connected outside the movable part 1 (302). A threaded rod (304) is engaged inside the movable part 2 (303). A rocker arm (305) is fixedly connected to one side of the threaded rod (304). A limiting frame 2 (306) is provided outside the threaded rod (304). A support frame (307) is fixedly connected outside the limiting frame 2 (306). A fixing part (308) is rotatably connected inside the support frame (307).

6. The high-efficiency stirring device for deep processing of starch products according to claim 5, characterized in that: A sliding groove is provided at the corresponding position of the second limiting frame (306) and the second moving part (303), and the second moving part (303) is slidably connected inside the second limiting frame (306).

7. The high-efficiency stirring device for deep processing of starch products according to claim 5, characterized in that: The handle part of the joystick (305) is made of PVC material and has a strip anti-slip pattern.

Citation Information

Patent Citations

  • Efficient stirring device

    CN220047789U