Chemical raw material reaction kettle with built-in stirring mechanism

By designing a horizontally reciprocating stirring rod, the problem of fixed position of the stirring rod in the chemical raw material reactor was solved, realizing full mixing and efficient reaction of chemical raw materials.

CN223602505UActive Publication Date: 2025-11-28SHENYANG LONGDERUN TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202422736978.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-11
Publication Date
2025-11-28
Estimated Expiration
2034-11-11

AI Technical Summary

Technical Problem

Existing chemical raw material reactors with built-in stirring mechanisms have fixed stirring rod positions, resulting in incomplete chemical raw material reactions, especially since the freedom of movement of the inner and outer layers of chemical raw materials is restricted, affecting the reaction effect.

Method used

A stirring mechanism was designed, in which the stirring rod can move laterally and periodically during revolution. The lateral periodic movement of the stirring rod is achieved by the reciprocating drive mechanism, thereby enhancing the mixing effect of the inner and outer layers of chemical raw materials.

Benefits of technology

It improves the reaction efficiency of chemical raw materials, making the chemical raw materials more fully mixed in the reactor, and achieving efficient stirring of chemical raw materials in the inner and outer layers.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a chemical raw material reaction kettle with a built-in stirring mechanism. The chemical raw material reaction kettle comprises a reaction bin and a reciprocating driving mechanism, the upper end of the reaction bin is connected with a bin top through evenly distributed bolts, a rotating column is rotationally connected between the middle of the bin top and the center of the bottom wall of the reaction bin, a stirring mechanism is arranged in the middle of the rotating column and comprises fixing frames, sliding openings and stirring rods, and the fixing frames are fixedly connected to the upper end and the lower end of the outer surface of the rotating column respectively; the sliding openings are uniformly formed in the fixing frame, and a stirring rod is connected between every two vertically adjacent sliding openings in a sliding manner; the reciprocating driving mechanism is used for transversely and periodically driving the stirring rod, the stirring mechanism further comprises a sliding seat and a stirring blade, the chemical raw material reaction kettle with the built-in stirring mechanism can realize transverse and periodic reciprocating movement of the stirring rod in the revolution process, the mixing effect of chemical raw materials on the inner layer and the outer layer is greatly improved, and the practicability is high. The reaction of chemical raw materials is more sufficient.
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Description

TECHNICAL FIELD

[0001] The utility model relates to chemical raw material processing technical field, concretely is a kind of chemical raw material reaction kettle of built-in stirring mechanism. BACKGROUND

[0002] Chemical raw material reaction kettle of built-in stirring mechanism is the equipment commonly used in chemical production, and its structural design and working principle are crucial to the full reaction and production efficiency of chemical raw materials, and chemical raw material reaction kettle of built-in stirring mechanism is widely used in the production process of chemical, pharmaceutical, pesticide, dye, paint and other industries;

[0003] The existing part of chemical raw material reaction kettle of built-in stirring mechanism adopts the fixed position of stirring rod, and carries out one-way single-layer stirring of chemical raw materials, and such chemical raw material reaction kettle of built-in stirring mechanism has some problems, such as the fixed position of stirring rod, the freedom of the inner and outer layers of chemical raw materials is limited, which limits the stirring effect of chemical raw materials and affects the reaction effect of chemical raw materials. UTILITY MODEL CONTENTS

[0004] The technical problem to be solved by the utility model is to overcome the defects of the prior art, provide a chemical raw material reaction kettle of built-in stirring mechanism, which can realize the horizontal periodic reciprocating movement of stirring rod in the revolution process, greatly improve the mixing effect of inner and outer layers of chemical raw materials, make the chemical raw material reaction more sufficient, and effectively solve the problems in the background art.

[0005] To achieve the above object, the utility model provides the following technical scheme: a chemical raw material reaction kettle of built-in stirring mechanism, comprising a reaction bin and a reciprocating drive mechanism.

[0006] Reaction bin: the upper end is connected with bin top through evenly distributed bolts, the middle part of bin top is rotationally connected with the center of the bottom wall of reaction bin, the middle part of rotating column is provided with stirring mechanism, the fixed frame is fixedly connected to the upper and lower ends of the outer surface of rotating column respectively, the sliding port is evenly arranged in the inside of fixed frame, and the stirring rod is slidably connected between the vertically adjacent two sliding ports.

[0007] Reciprocating drive mechanism: it is used for the horizontal periodic driving of stirring rod, can realize the horizontal periodic reciprocating movement of stirring rod in the revolution process, greatly improves the mixing effect of inner and outer layers of chemical raw materials, and makes the chemical raw material reaction more sufficient.

[0008] Further, the stirring mechanism further comprises sliding seat and stirring blade, the sliding seat is symmetrically slidably connected to the outer surface of stirring rod, and the stirring blade is fixedly connected to the end away from the center of reaction bin of sliding seat, to improve the stirring performance of stirring rod.

[0009] Further, the reciprocating drive mechanism comprises a fixed seat, a connecting rod one, a connecting rod two and a drive seat, the fixed seat is symmetrically fixedly connected to the middle part of the rotating column, the inside of the fixed seat is rotatably connected with the uniformly distributed connecting rod one, the end of the connecting rod one away from the center of the reaction bin is rotatably connected with the lower end of the transversely adjacent sliding seat, the drive seat is slidably connected to the upper and lower ends of the outer surface of the rotating column, the inside of the drive seat is rotatably connected with the uniformly distributed connecting rod two, the end of the connecting rod two close to the center of the reaction bin is rotatably connected with the upper end of the transversely adjacent sliding seat, and the transverse periodic movement of the stirring rod is realized.

[0010] Further, the reciprocating drive mechanism further comprises a support plate, a sliding ball and a wave-shaped guide rail, the wave-shaped guide rail is arranged at the upper and lower ends of the reaction bin, the inside of the wave-shaped guide rail is slidably connected with four sliding balls, the middle part of the drive seat is fixedly connected with the support plate, and the end of the support plate away from the center of the reaction bin is slidably connected with the transversely adjacent sliding ball, so that the transverse periodic movement of the stirring rod is guided.

[0011] Further, the lower end of the outer surface of the reaction bin is fixedly connected with a support, and the front end of the support is provided with a control switch group; the input end of the control switch group is electrically connected with an external power supply, and the control switch group controls each electric appliance.

[0012] Further, the upper end of the bin top is provided with a motor bin, the inside of the motor bin is provided with a motor, the lower end of the output shaft of the motor is fixedly connected with the upper end of the rotating column, the input end of the motor is electrically connected with the output end of the control switch group, and the motor provides driving force for the rotation of the rotating column.

[0013] Further, the upper end of the bin top is provided with a feeding pipe, and the lower end of the reaction bin is provided with a discharging pipe; the middle part of the discharging pipe is provided with an electric valve, and the input end of the electric valve is electrically connected with the output end of the control switch group, so as to provide an access channel for the chemical raw materials and control the discharging work of the chemical raw materials after reaction.

[0014] Compared with the prior art, the chemical raw material reaction kettle with the built-in stirring mechanism has the following advantages:

[0015] The rotating column drives the stirring rod to revolve through the fixed frame, and the sliding balls slide in the corresponding wave-shaped guide rails, so that the vertical periodic movement of the drive seat is realized, and then the stirring rod is pulled between the sliding openings through the connecting rod mechanism to realize the transverse periodic reciprocating movement, so that the chemical raw materials in the inner and outer layers of the reaction kettle are efficiently mixed, the various chemical raw materials are fully reacted, and the reaction efficiency of the chemical raw materials is greatly improved. BRIEF DESCRIPTION OF DRAWINGS

[0016] Fig. 1 It is a structural schematic view of the utility model;

[0017] Fig. 2The utility model discloses an internal section structure schematic view.

[0018] In the drawing: 1 reaction bin, 2 bin top, 3 rotating column, 4 stirring mechanism, 41 fixed frame, 42 sliding port, 43 stirring rod, 44 sliding seat, 45 stirring piece, 5 reciprocating drive mechanism, 51 fixed seat, 52 connecting rod one, 53 connecting rod two, 54 drive seat, 55 support plate, 56 sliding ball, 57 wave-shaped guide rail, 6 motor, 7 motor bin, 8 feed pipe, 9 discharge pipe, 10 electric valve, 11 support, 12 control switch group. DETAILED DESCRIPTION

[0019] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model and not all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the utility model.

[0020] Please refer to Figs. 1-2 The embodiment provides a kind of technical scheme: a chemical raw material reaction kettle of built-in stirring mechanism, including reaction bin 1 and reciprocating drive mechanism 5;

[0021] Reaction bin 1: its upper end is connected with bin top 2 by evenly distributed bolt, the middle part of bin top 2 and the bottom wall center of reaction bin 1 are rotationally connected with rotating column 3, and rotating column 3 middle part is provided with stirring mechanism 4, and stirring mechanism 4 includes fixed frame 41, sliding port 42 and stirring rod 43, fixed frame 41 is fixedly connected to the upper and lower ends of the outer surface of rotating column 3 respectively, sliding port 42 is evenly arranged in the inside of fixed frame 41, and stirring rod 43 is slidably connected between every two sliding ports 42 vertically adjacent, and stirring mechanism 4 further includes sliding seat 44 and stirring piece 45, sliding seat 44 is symmetrically slidably connected to the outer surface of stirring rod 43, and the end, away from the center of reaction bin 1, of sliding seat 44 is fixedly connected with stirring piece 45, the lower end of the outer surface of reaction bin 1 is fixedly connected with support 11, the front end of support 11 is provided with control switch group 12, the input end of control switch group 12 is electrically connected with external power supply, the upper end of bin top 2 is provided with motor bin 7, motor bin 7 is provided with motor 6 in the inside, and the lower end of the output shaft of motor 6 is fixedly connected with the upper end of rotating column 3, and the input end of motor 6 is electrically connected with the output end of control switch group 12;

[0022] The reciprocating drive mechanism 5 is used for the transverse periodic driving of the stirring rods 43, and comprises a fixed seat 51, a connecting rod one 52, a connecting rod two 53 and a drive seat 54. The fixed seat 51 is symmetrically fixedly connected to the middle part of the rotating column 3, and the inner part of the fixed seat 51 is rotatably connected with the uniformly distributed connecting rod ones 52. The one end of the connecting rod one 52 away from the center of the reaction bin 1 is rotatably connected with the lower end of the transversely adjacent sliding seat 44. The drive seat 54 is slidably connected to the upper and lower ends of the outer surface of the rotating column 3, and the inner part of the drive seat 54 is rotatably connected with the uniformly distributed connecting rod twos 53. The one end of the connecting rod two 53 close to the center of the reaction bin 1 is rotatably connected with the upper end of the transversely adjacent sliding seat 44. The reciprocating drive mechanism 5 further comprises a support plate 55, a sliding ball 56 and a wave-shaped guide rail 57. The wave-shaped guide rail 57 is arranged at the upper and lower ends of the reaction bin 1, and the inner part of the wave-shaped guide rail 57 is slidably connected with four sliding balls 56. The middle part of the drive seat 54 is fixedly connected with the support plate 55, and the one end of the support plate 55 away from the center of the reaction bin 1 is slidably connected with the transversely adjacent sliding ball 56. The motor 6 is controlled to rotate through the control switch group 12. The output shaft of the motor 6 drives the rotating column 3 to rotate, the rotating column 3 drives the two fixed frames 41 to rotate, and further drives the four stirring rods 43 to rotate around the central axis of the rotating column 3. At the same time, the stirring rod 43 drives the vertically adjacent sliding seat 44 to rotate around the central axis of the rotating column 3. The sliding seat 44 drives the transversely adjacent stirring blade 45 to rotate around the central axis of the rotating column 3. The sliding seat 44 drives the drive seat 54 through the connecting rod two 53, so that the drive seat 54 rotates with the rotating column 3. The drive seat 54 drives the corresponding sliding ball 56 through the transversely adjacent support plate 55 to rotate, and at the same time, the sliding ball 56 slides in the corresponding wave-shaped guide rail 57. Further, the drive seat 54 moves vertically and periodically under the action of the sliding ball 56. When the drive seat 54 moves towards the center of the reaction bin 1, the drive seat 54 drives the one end of the vertically adjacent connecting rod two 53 away from the center of the reaction bin 1 to move towards the center of the reaction bin 1. At the same time, the connecting rod one 52 rotates outward under the action of the corresponding fixed seat 51. Under the auxiliary action of the connecting rod one 52, the one end of the connecting rod two 53 away from the center of the reaction bin 1 pushes the corresponding stirring rod 43 through the transversely adjacent sliding seat 44, and slides in the direction away from the center of the reaction bin 1 between the vertically adjacent two sliding ports 42. When the drive seat 54 moves away from the center of the reaction bin 1, the drive seat 54 drives the one end of the vertically adjacent connecting rod two 53 away from the center of the reaction bin 1 to move away from the center of the reaction bin 1. At the same time, the connecting rod one 52 rotates inward under the action of the corresponding fixed seat 51. Under the auxiliary action of the connecting rod one 52, the one end of the connecting rod two 53 away from the center of the reaction bin 1 pulls the corresponding stirring rod 43 through the transversely adjacent sliding seat 44, and slides in the direction close to the center of the reaction bin 1 between the vertically adjacent two sliding ports 42.With the vertical periodic movement of the driving seat 54, the stirring rod 43 is periodically moved horizontally, and the internal and external chemical raw materials in the reaction bin 1 are efficiently stirred and mixed.

[0023] The upper end of the bin top 2 is provided with a feeding pipe 8, the lower end of the reaction bin 1 is provided with a discharging pipe 9, the middle part of the discharging pipe 9 is provided with an electric valve 10, the input end of the electric valve 10 is electrically connected with the output end of the control switch group 12, the electric valve 10 is operated through the control switch group 12, the electric valve 10 is opened, and the reacted chemical raw materials are removed through the discharging pipe 9.

[0024] The working principle of the chemical raw material reaction kettle with the built-in stirring mechanism is as follows: in working, personnel first stably place the support 11, the reaction bin 1 and other mechanisms in a horizontal working area, after stable placement, the personnel add various chemical raw materials into the reaction bin 1 through the feeding pipe 8, then the personnel realize the rotation of the motor 6 through the control switch group 12, the output shaft of the motor 6 drives the rotation of the rotating column 3, the rotating column 3 drives the rotation of the two fixed frames 41, and then drives the rotation of the four stirring rods 43 around the central axis of the rotating column 3, at the same time, the rotation of the stirring rod 43 drives the rotation of the vertically adjacent sliding seats 44 around the central axis of the rotating column 3, the rotation of the sliding seat 44 drives the rotation of the transversely adjacent stirring blades 45 around the central axis of the rotating column 3, and the rotation of the sliding seat 44 drives the rotation of the driving seat 54 through the connecting rod two 53, so that the driving seat 54 rotates with the rotating column 3, the rotation of the driving seat 54 drives the rotation of the corresponding sliding ball 56 through the transversely adjacent support plate 55, at the same time, the sliding ball 56 slides in the corresponding wave-shaped guide rail 57, and then drives the driving seat 54 to move vertically and periodically under the action of the sliding ball 56, when the driving seat 54 moves towards the center of the reaction bin 1, the movement of the driving seat 54 towards the center of the reaction bin 1 drives the movement of the vertically adjacent connecting rod two 53 away from one end of the reaction bin 1 towards the center of the reaction bin 1, at the same time, the connecting rod one 52 rotates outward under the action of the corresponding fixed seat 51, under the auxiliary action of the connecting rod one 52, the one end of the connecting rod two 53 away from the center of the reaction bin 1 pushes the corresponding stirring rod 43 through the transversely adjacent sliding seat 44, and slides in the direction away from the center of the reaction bin 1 between the vertically adjacent two sliding ports 42, when the driving seat 54 moves away from the center of the reaction bin 1, the movement of the driving seat 54 away from the center of the reaction bin 1 drives the movement of the vertically adjacent connecting rod two 53 away from one end of the reaction bin 1 away from the center of the reaction bin 1, at the same time, the connecting rod one 52 rotates inward under the action of the corresponding fixed seat 51, under the auxiliary action of the connecting rod one 52, the one end of the connecting rod two 53 away from the center of the reaction bin 1 pulls the corresponding stirring rod 43 through the transversely adjacent sliding seat 44, and slides in the direction towards the center of the reaction bin 1 between the vertically adjacent two sliding ports 42, along with the vertical and periodic movement of the driving seat 54, the stirring rod 43 moves horizontally and periodically, and the chemical raw materials in the reaction bin 1 are efficiently stirred and mixed, when the chemical raw material reaction is completed, the personnel realize the operation of the electric valve 10 through the control switch group 12, the electric valve 10 is opened, and the reacted chemical raw materials are removed through the discharge pipe 9.

[0025] It is worth noting that the control switch group 12 disclosed in the above embodiment is provided with a control button corresponding to and controlling the switch of the motor 6 and the electric valve 10.

[0026] The above merely illustrates the embodiments of the present application, and does not limit the patent scope of the present application, and any equivalent structure or equivalent process transformation, or direct or indirect application in other related technical fields, which are made by using the content of the present application specification and drawings, are also included in the patent protection scope of the present application.

Claims

1. A chemical raw material reaction vessel with a built-in stirring mechanism, characterized in that: It comprises reaction bin (1) and reciprocating drive mechanism (5); Reaction bin (1): the upper end of which is connected with bin top (2) through uniformly distributed bolts, the middle part of bin top (2) is rotationally connected with rotating column (3) between the bottom wall center of reaction bin (1), the middle part of rotating column (3) is provided with stirring mechanism (4), and stirring mechanism (4) comprises fixed frame (41), sliding port (42) and stirring rod (43); the upper and lower ends of fixed frame (41) are respectively fixedly connected to the outer surface of rotating column (3); sliding port (42) is uniformly arranged in the inside of fixed frame (41); and stirring rod (43) is slidingly connected between every two vertically adjacent sliding ports (42). Reciprocating drive mechanism (5): which is used for transverse periodic driving of stirring rod (43).

2. The chemical raw material reaction kettle with built-in stirring mechanism according to claim 1, characterized in that: Stirring mechanism (4) further comprises sliding seat (44) and stirring blade (45); sliding seat (44) is symmetrically slidingly connected to the outer surface of stirring rod (43); and one end of sliding seat (44) away from the center of reaction bin (1) is fixedly connected with stirring blade (45).

3. The chemical raw material reaction kettle with built-in stirring mechanism according to claim 2, characterized in that: Reciprocating drive mechanism (5) comprises fixed seat (51), connecting rod one (52), connecting rod two (53) and drive seat (54); fixed seat (51) is symmetrically fixedly connected to the middle part of rotating column (3); fixed seat (51) is rotationally connected with uniformly distributed connecting rod one (52) in the inside; one end of connecting rod one (52) away from the center of reaction bin (1) is rotationally connected with the lower end of sliding seat (44) transversely adjacent; drive seat (54) is slidingly connected to the upper and lower ends of the outer surface of rotating column (3); drive seat (54) is rotationally connected with uniformly distributed connecting rod two (53) in the inside; one end of connecting rod two (53) close to the center of reaction bin (1) is rotationally connected with the upper end of sliding seat (44) transversely adjacent.

4. The chemical raw material reaction kettle with built-in stirring mechanism according to claim 3, characterized in that: Reciprocating drive mechanism (5) further comprises supporting plate (55), sliding ball (56) and wave-shaped guide rail (57); wave-shaped guide rail (57) is arranged at the upper and lower ends of reaction bin (1); four sliding balls (56) are slidingly connected in the inside of wave-shaped guide rail (57); the middle part of drive seat (54) is fixedly connected with supporting plate (55); one end of supporting plate (55) away from the center of reaction bin (1) is slidingly connected with sliding ball (56) transversely adjacent.

5. The chemical raw material reaction kettle with built-in stirring mechanism according to claim 1, characterized in that: The lower end of the outer surface of reaction bin (1) is fixedly connected with support (11); the front end of support (11) is provided with control switch group (12); the input end of control switch group (12) is electrically connected with external power supply.

6. The chemical raw material reaction kettle with built-in stirring mechanism according to claim 5, characterized in that: The upper end of bin top (2) is provided with motor bin (7); motor bin (7) is provided with motor (6) in the inside; the lower end of the output shaft of motor (6) is fixedly connected with the upper end of rotating column (3); the input end of motor (6) is electrically connected with the output end of control switch group (12).

7. The chemical raw material reaction kettle with built-in stirring mechanism according to claim 5, characterized in that: The upper end of bin top (2) is provided with feeding pipe (8); the lower end of reaction bin (1) is provided with discharging pipe (9); the middle part of discharging pipe (9) is provided with electric valve (10); the input end of electric valve (10) is electrically connected with the output end of control switch group (12).