Feeding device for chemical processing production

By using servo motor-driven conveying and limiting components in chemical production, the problem of low material feeding efficiency in chemical production has been solved, realizing automated material feeding and convenient hopper cleaning, and reducing labor intensity.

CN223779214UActive Publication Date: 2026-01-09JIANGSU HUAER CHEM
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Patent Information

Application Number
CN202520425607.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-12
Publication Date
2026-01-09
Estimated Expiration
2035-03-12

AI Technical Summary

Technical Problem

The lack of efficient and automated feeding equipment in existing chemical production processes leads to low feeding efficiency and increases the labor intensity of workers.

Method used

The feeding device used in chemical processing and production includes a conveying component and a limiting component. It uses a servo motor to drive the conveying blades and spiral blades to rotate in opposite directions, automatically crushing agglomerated materials. The limiting component facilitates the disassembly and cleaning of the hopper.

Benefits of technology

It improves feeding efficiency, reduces the labor intensity of workers, prevents materials from clumping, and facilitates the cleaning and maintenance of the hopper.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the field of chemical production, in particular to a feeding device for chemical processing production, which comprises a connecting plate, a conveying assembly is fixed on the surface of the connecting plate, a limiting assembly is arranged on the surface of the conveying assembly, the conveying assembly comprises a Y-shaped frame fixed on the top surface of the connecting plate, and a shell is mounted on the inner side of the Y-shaped frame through a rotating shaft. A first bearing is fixed to the side surface of the shell, and conveying blades are fixedly mounted in the first bearing. The conveying assembly is provided with the shell, the first servo motor and the second servo motor, so that when a user starts the first servo motor and the second servo motor, the first servo motor and the second servo motor respectively drive the conveying blade and the spiral blade to rotate, the labor intensity of workers is reduced, and the working efficiency is improved. Due to the fact that the conveying blades and the spiral blades are arranged in a staggered mode, double-shaft reverse rotation is achieved through the first servo motor and the second servo motor, agglomerated materials are automatically smashed by the spiral blades, and agglomeration is avoided.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the field of chemical production especially relates to a feeding device for chemical processing production. BACKGROUND

[0002] Chemical engineering is the abbreviation of "chemical technology" and "chemical industry", all the technologies that use chemical methods to change the composition, structure or synthesize new substances belong to chemical production technology, that is, chemical technology, and the obtained products are called chemicals or chemical products; Chemical production refers to the production process of chemical processing of raw materials to obtain valuable products.

[0003] According to the related technology in the above, the inventor believes that there are the following defects: in the existing chemical production process, there are some problems to be solved when the staff performs the feeding task, because of the lack of efficient and automatic feeding equipment, the current feeding operation mainly depends on manual operation, which not only leads to low feeding efficiency, seriously affects the overall production progress, and greatly increases the labor intensity of the staff. UTILITY MODEL CONTENT

[0004] In order to improve the existing chemical production process, there are some problems to be solved when the staff performs the feeding task, because of the lack of efficient and automatic feeding equipment, the current feeding operation mainly depends on manual operation, which not only leads to low feeding efficiency, seriously affects the overall production progress, and greatly increases the labor intensity of the staff problem, the application provides a kind of feeding device for chemical processing production.

[0005] The application provides a kind of feeding device for chemical processing production adopts the following technical scheme: a kind of feeding device for chemical processing production, including connecting plate, the surface of connecting plate is fixed with conveying assembly, and the surface of conveying assembly is equipped with limiting assembly, the conveying assembly includes Y-shaped frame fixed on the top surface of connecting plate, and the inside of Y-shaped frame is installed with shell through shaft, the side surface of shell is fixed with bearing one, and the inside of bearing one is fixedly installed with conveying blade, the side surface of shell is fixed with bearing two, and the inside of bearing two is fixedly installed with spiral blade, the surface of spiral blade is fixed with cutting piece, the side surface of shell is fixed with servo motor one, and the surface of shell is fixed with servo motor two, the top surface of shell is fixed with connecting pipe, and the bottom surface of shell is fixed with discharge pipe, the bottom surface of shell is fixed with rotating block, and the surface of rotating block is installed with rotating seat through shaft, the bottom surface of rotating seat is fixed with air cylinder, the bottom surface of shell is fixed with recessed block, and the side surface of recessed block is fixed with sleeve one.

[0006] Further setting, the cylinder is fixed by bolt connection plate structure, the inner side of the recess block is provided with a guide plate through a rotating shaft, and a plurality of round holes are formed in the surface of the guide plate.

[0007] Further setting, the servo motor two is fixed with the spiral blade through a shaft coupling, and the rotating block is fixed with the shell through a bolt.

[0008] Further setting, the servo motor one is fixed with the conveying blade through a shaft coupling, and the conveying blade and the spiral blade are arranged in a staggered manner.

[0009] Further setting, the surface of the sleeve one is provided with a sliding groove one, the inside of the sleeve one is provided with a spring one, the inside of the sleeve one is movably connected with a convex column one, and the surface of the convex column one is fixed with a sliding column one.

[0010] Further setting, the limiting assembly comprises a hopper arranged on the surface of the connecting pipe, the surface of the hopper is fixed with a sleeve two, the surface of the sleeve two is provided with a sliding groove two, the inside of the sleeve two is provided with a spring two, the inside of the sleeve two is movably connected with a convex column two, and the surface of the convex column two is fixed with a sliding column two.

[0011] Further setting, the convex column two penetrates the hopper and the connecting pipe in sequence and extends to the inside, and the surface of the sliding column two is in contact with the inner wall of the sliding groove two.

[0012] Compared with the related art, the feeding device for chemical processing and production has the following beneficial effects:

[0013] The feeding device for chemical processing and production comprises a connecting plate, a conveying assembly, a servo motor one, a servo motor two, a shell, a spiral blade, a conveying blade, a sleeve one, a spring one, a convex column one, a sliding column one, a limiting assembly, a hopper, a sleeve two, a spring two, a convex column two and a sliding column two.

[0014] The feeding device for chemical processing and production comprises a connecting pipe, a limiting assembly, a hopper, a sleeve two, a spring two, a convex column two and a sliding column two. BRIEF DESCRIPTION OF DRAWINGS

[0015] Figure 1A schematic diagram of a preferred embodiment of a feeding device for chemical processing and production provided by this utility model;

[0016] Figure 2 This is the front view of the present utility model;

[0017] Figure 3 This is a side view of the present invention;

[0018] Figure 4 This is a rear sectional view of the present invention;

[0019] Figure 5 for Figure 3 Enlarged view of point A in the image.

[0020] The following components are labeled in the diagram: 1. Connecting plate; 2. Conveying assembly; 201. Y-shaped frame; 202. Housing; 203. Bearing 1; 204. Conveying blade; 205. Spiral blade; 206. Cutting blade; 207. Servo motor 1; 208. Servo motor 2; 209. Connecting pipe; 210. Discharge pipe; 211. Rotating block; 212. Rotating seat; 213. Cylinder; 214. Concave block; 215. Sleeve 1; 216. Bearing 2; 217. Guide plate; 218. Round hole; 219. Slide groove 1; 220. Spring 1; 221. Protrusion 1; 222. Slide column 1; 3. Limiting assembly; 301. Hopper; 302. Sleeve 2; 303. Slide groove 2; 304. Spring 2; 305. Protrusion 2; 306. Slide column 2. Detailed Implementation

[0021] To facilitate understanding of this utility model, a more comprehensive description will be provided below with reference to the accompanying drawings. The drawings show typical embodiments of this utility model.

[0022] Example 1:

[0023] like Figures 1-5As shown, this utility model discloses a feeding device for chemical processing and production, including a connecting plate 1. A conveying assembly 2 is fixed to the surface of the connecting plate 1, and a limiting assembly 3 is provided on the surface of the conveying assembly 2. The conveying assembly 2 includes a Y-shaped frame 201 fixed to the top surface of the connecting plate 1, and a housing 202 is mounted on the inner side of the Y-shaped frame 201 via a rotating shaft. A bearing 203 is fixed to the side surface of the housing 202, and a conveying blade 204 is fixedly installed inside the bearing 203. A bearing 216 is fixed to the side surface of the housing 202, and a spiral blade 205 is fixedly installed inside the bearing 216. A cutting blade 206 is fixed to the surface of housing 205. A servo motor 207 is fixed to the side surface of housing 202, and a servo motor 208 is fixed to the surface of housing 202. A connecting pipe 209 is fixed to the top surface of housing 202, and a discharge pipe 210 is fixed to the bottom surface of housing 202. A rotating block 211 is fixed to the bottom surface of housing 202, and a rotating seat 212 is mounted on the surface of rotating block 211 via a rotating shaft. A cylinder 213 is fixed to the bottom surface of rotating seat 212. A recess 214 is fixed to the bottom surface of housing 202, and a sleeve 215 is fixed to the side surface of recess 214.

[0024] like Figures 1-5 As shown, the cylinder 213 is fixed by bolt connecting plate 1, and the inner side of the concave block 214 is equipped with a guide plate 217 by a rotating shaft, and the surface of the guide plate 217 is provided with multiple sets of round holes 218.

[0025] like Figures 1-5 As shown, the servo motor 208 is fixed to the helical blade 205 via a coupling, and the rotating block 211 is fixed to the housing 202 via bolts.

[0026] like Figures 1-5 As shown, the servo motor 207 forms a fixed structure with the conveying blade 204 through a coupling, and the conveying blade 204 and the spiral blade 205 are staggered with each other.

[0027] like Figures 1-5 As shown, a groove 219 is provided on the surface of the sleeve 215, and a spring 220 is provided inside the sleeve 215. A protrusion 221 is movably connected inside the sleeve 215, and a sliding post 222 is fixed on the surface of the protrusion 221.

[0028] In practice, when servo motor 1 207 and servo motor 208 are started, they drive the conveying blade 204 and the spiral blade 205 to rotate, respectively, which improves the conveying efficiency. By using servo motor 1 207 and servo motor 208 to drive the conveying blade 204 and the spiral blade 205 to rotate in opposite directions, the agglomerated material is automatically crushed by the spiral blade 205, avoiding agglomeration during conveying. By sliding the sliding column 1 222, the sliding column 1 222 can drive the convex column 221 to slide, and at the same time rotate the guide plate 217 to rotate to a suitable position, so as to facilitate the adjustment of the angle of the guide plate 217.

[0029] Example 2:

[0030] like Figures 1-5 As shown, based on Embodiment 1, this utility model provides a technical solution: the limiting component 3 includes a hopper 301 disposed on the surface of the connecting pipe 209, a sleeve 302 fixed on the surface of the hopper 301, a sliding groove 303 opened on the surface of the sleeve 302, a spring 304 disposed inside the sleeve 302, a protrusion 305 movably connected inside the sleeve 302, and a sliding post 306 fixed on the surface of the protrusion 305.

[0031] like Figures 1-5 As shown, the second protrusion 305 passes through the hopper 301 and the connecting pipe 209 in sequence and extends into their interior, while the surface of the second sliding pillar 306 contacts the inner wall of the second sliding groove 303.

[0032] During implementation, when it is necessary to disassemble the cleaning hopper 301, the sliding column 306 can be slid to drive the protruding column 305 to slide, thereby separating the protruding column 305 from the connecting pipe 209. By sliding the hopper 301, the hopper 301 can be disassembled.

[0033] The advantages of this technical solution in practical applications include, but are not limited to, the following:

[0034] 1. The conveying assembly 2 is equipped with a housing 202, a servo motor 1 207 and a servo motor 208. When the user starts the servo motor 1 207 and the servo motor 208, the servo motor 1 207 and the servo motor 208 drive the conveying blade 204 and the spiral blade 205 to rotate respectively, which improves the conveying efficiency and reduces the labor intensity of the workers. Since the conveying blade 204 and the spiral blade 205 are staggered, and the dual-axis reverse rotation is achieved by the servo motor 1 207 and the servo motor 208, the agglomerated material is automatically crushed by the spiral blade 205, which prevents agglomeration during conveying.

[0035] 2. The limiting component 3 is provided with a hopper 301 and a sleeve 302. The sleeve 302 has a protrusion 305 inside. When the user slides the protrusion 305, the protrusion 305 moves, thereby separating the protrusion 305 from the connecting pipe 209, making it easy to disassemble the hopper 301 and clean it.

[0036] In this technical solution, when servo motor 1 207 and servo motor 208 are started, they drive the conveying blade 204 and the spiral blade 205 to rotate, respectively, thereby improving the conveying efficiency. By using servo motor 1 207 and servo motor 208 to drive the conveying blade 204 and the spiral blade 205 to rotate in opposite directions, the agglomerated material is automatically crushed by the spiral blade 205, avoiding agglomeration during conveying. By sliding the sliding column 1 222, the sliding column 1 222 can drive the sliding column 1 221 to slide, and at the same time, the guide plate 217 is rotated to a suitable position, so as to facilitate the adjustment of the angle of the guide plate 217. When it is necessary to disassemble the cleaning hopper 301, by sliding the sliding column 2 306, the sliding column 2 306 can drive the sliding column 2 305 to slide, thereby separating the column 2 305 from the connecting pipe 209. By sliding the hopper 301, the hopper 301 can be disassembled.

[0037] The above are merely exemplary embodiments of this disclosure and should not be construed as limiting the scope of this disclosure. Any equivalent changes and modifications made in accordance with the teachings of this disclosure shall still fall within the scope of this disclosure. This application is intended to cover any variations, uses, or adaptations of this disclosure that follow the general principles of this disclosure and include common knowledge or customary techniques in the art not described in this disclosure.

Claims

1. A feeding device for chemical processing and production, comprising a connecting plate (1), characterized in that: The surface of the connecting plate (1) is fixed with a conveying component (2), and the surface of the conveying component (2) is provided with a limiting component (3); The conveying assembly (2) includes a Y-shaped frame (201) fixed to the top surface of the connecting plate (1), and a housing (202) is mounted on the inner side of the Y-shaped frame (201) via a rotating shaft. A bearing (203) is fixed to the side surface of the housing (202), and a conveying blade (204) is fixedly installed inside the bearing (203). A bearing (216) is fixed to the side surface of the housing (202), and a spiral blade (205) is fixedly installed inside the bearing (216). A cutting blade (206) is fixed to the surface of the spiral blade (205). A servo motor is fixed to the side surface of the housing (202). Machine 1 (207), and a servo motor 2 (208) is fixed on the surface of the housing (202), a connecting pipe (209) is fixed on the top surface of the housing (202), and a discharge pipe (210) is fixed on the bottom surface of the housing (202), a rotating block (211) is fixed on the bottom surface of the housing (202), and a rotating seat (212) is mounted on the surface of the rotating block (211) via a rotating shaft, a cylinder (213) is fixed on the bottom surface of the rotating seat (212), a recess (214) is fixed on the bottom surface of the housing (202), and a sleeve 1 (215) is fixed on the side surface of the recess (214).

2. The feeding device for chemical processing and production according to claim 1, characterized in that, The cylinder (213) is fixed by bolt connecting plate (1), and a guide plate (217) is installed on the inner side of the concave block (214) by a rotating shaft, and multiple sets of round holes (218) are opened on the surface of the guide plate (217).

3. The feeding device for chemical processing and production according to claim 1, characterized in that, The servo motor (208) is fixed to the helical blade (205) via a coupling, and the rotating block (211) is fixed to the housing (202) via bolts.

4. The feeding device for chemical processing and production according to claim 1, characterized in that, The servo motor (207) is fixed to the conveying blade (204) via a coupling, and the conveying blade (204) and the spiral blade (205) are staggered.

5. The feeding device for chemical processing and production according to claim 1, characterized in that, The sleeve (215) has a sliding groove (219) on its surface and a spring (220) inside the sleeve (215). A protruding post (221) is movably connected inside the sleeve (215), and a sliding post (222) is fixed on the surface of the protruding post (221).

6. The feeding device for chemical processing and production according to claim 1, characterized in that, The limiting component (3) includes a hopper (301) disposed on the surface of the connecting pipe (209). A sleeve (302) is fixed on the surface of the hopper (301). A sliding groove (303) is opened on the surface of the sleeve (302). A spring (304) is provided inside the sleeve (302). A protruding post (305) is movably connected inside the sleeve (302). A sliding post (306) is fixed on the surface of the protruding post (305).

7. A feeding device for chemical processing and production according to claim 6, characterized in that, The second protruding post (305) passes through the hopper (301) and the connecting pipe (209) in sequence and extends into their interior. The surface of the second sliding post (306) is in contact with the inner wall of the second sliding groove (303).