CN223846764U - Corrosion-resistant double-planetary vacuum stirrer - Google Patents

Corrosion-resistant double-planetary vacuum stirrer

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Publication number
CN223846764U
CN223846764U CN202520278856.9U CN202520278856U CN223846764U CN 223846764 U CN223846764 U CN 223846764U CN 202520278856 U CN202520278856 U CN 202520278856U CN 223846764 U CN223846764 U CN 223846764U
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CN
China
Prior art keywords
stirring
vacuum
barrel
assembly
driving
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CN202520278856.9U
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Chinese (zh)
Inventor
何忠伟
孟双双
孟凡坤
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Shenzhen Meiruizhida Technology Co ltd
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Shenzhen Meiruizhida Technology Co ltd
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Priority to CN202520278856.9U priority Critical patent/CN223846764U/en
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Abstract

The utility model relates to the technical field of mixers and discloses an anti-corrosion double-planetary vacuum mixer, which comprises a frame, a mixing driving assembly, a dispersing driving assembly and a vacuum assembly, wherein the mixing driving assembly and the dispersing driving assembly are respectively arranged in the frame, an upper barrel is arranged on one side of the frame, the mixing assembly is arranged in the upper barrel, the vacuum assembly comprises a vacuum pump support, a vacuum pump, a vacuum meter and a pressure transmitter, the vacuum pump support is arranged at the bottom end of the frame, and the unique double-planetary mixing structure ensures the omnibearing coverage of the mixing process, has no mixing dead angle, ensures the materials to be fully mixed and improves the mixing uniformity. The high-quality SUS304 stainless steel is selected and manufactured, so that the high-quality SUS304 stainless steel has excellent acid and alkali corrosion resistance, effectively prolongs the service life of equipment and is suitable for various complex chemical environments. According to different materials and process requirements, the stirring rotation speed and time of each section can be accurately set, and refined stirring control is realized.

Description

Corrosion-resistant double-planetary vacuum stirrer
Technical Field
The utility model relates to the technical field of mixers, in particular to an anti-corrosion double-planetary vacuum mixer.
Background
The planetary stirrer is a novel efficient dead-point-free mixing stirring device, and has a unique and novel stirring mode, wherein two or 3 multi-layer blade stirrers and 1-2 automatic scrapers are arranged in a kettle, and the stirrer revolves around the axis of the kettle body and rotates at different rotating speeds at high speed around the axis of the stirrer, so that the materials do complex movement in the kettle body. The traditional planetary mixer mostly consists of two low-speed stirring paddles, also called double planetary mixer. However, as the demand increases, other agitators, such as various types of dispersing blades, emulsifiers, etc., are also added to the planetary mixer. The multifunctional application is increased, and the application range is widened.
The Chinese patent with the publication number of CN208839470U discloses a double-planet stirrer, which comprises a frame, an electric box, an operation panel, a stirring barrel and stirring paddles, wherein the electric box is installed on one side of the frame, the operation panel is installed on the electric box, a lifting sliding rail is further arranged on the frame, a lifting seat is installed on the lifting sliding rail, the stirring barrel is installed on the lifting seat, the stirring paddles are correspondingly arranged at the upper port of the stirring barrel, the stirring paddles are connected onto a pipeline through the stirring paddle installation seat, a vacuum valve, an observation view mirror opening and an illumination view mirror opening are installed on the pipeline, the pipeline is installed on the frame, an illumination lamp is installed on one side of the frame, a vacuum pump is further arranged below one side of the frame, and a pressure gauge is installed on the vacuum pump. The stirrer completes grinding and stirring simultaneously, and completes stirring with different degrees.
But still there is the problem, how to design stirring structure to ensure that the stirring process can be covered in all directions in the double-planetary vacuum stirrer, eliminate stirring dead angles, make the materials fully mixed, improve stirring uniformity?
How to realize a multi-speed operation mode in a double-planetary vacuum mixer so as to accurately set the stirring rotation speed and time of each section according to different materials and process requirements, thereby achieving the effect of refined stirring control?
For this purpose, an anti-corrosion double planetary vacuum stirrer is proposed.
Disclosure of utility model
The utility model aims to provide an anti-corrosion double-planetary vacuum stirrer, which aims to solve the problems that how to design a stirring structure in the prior art can ensure that the stirring process in the double-planetary vacuum stirrer is covered in all directions, eliminate stirring dead angles, fully mix materials and improve stirring uniformity.
In order to achieve the purpose, the utility model provides the following technical scheme that the anti-corrosion double-planetary vacuum stirrer comprises:
the stirring device comprises a frame, a stirring driving assembly, a dispersing driving assembly and a vacuum assembly, wherein the stirring driving assembly and the dispersing driving assembly are respectively arranged in the frame;
The utility model discloses a stirring device for a vacuum pump of a water heater, including a frame, a stirring assembly, a vacuum pump support, a vacuum gauge and a pressure transmitter, wherein the upper barrel is installed on one side of the frame, the stirring assembly is installed in the upper barrel, the vacuum assembly comprises a vacuum pump support, a vacuum pump, a vacuum gauge and a pressure transmitter, the vacuum pump support is installed at the bottom end of the frame, the vacuum pump is connected with the top surface of the vacuum pump support in a threaded manner, the vacuum gauge is radially installed on one side of the upper barrel, the bottom of the pressure transmitter penetrates through one side wall of the upper barrel, and the stirring assembly and the dispersing assembly are respectively connected with the input end of the stirring assembly in a transmission manner, and the stirring barrel is adapted to the bottom of the upper barrel.
Further preferably, the stirring assembly comprises a revolution bearing seat, a driven belt wheel, a rotation main shaft, a driven sprocket wheel, a revolution main shaft, a sun gear, a planetary gear, a stirring shaft, a stirring paddle, a driving synchronous wheel, a driven synchronous wheel, a synchronous belt and a dispersing shaft;
the inside rotation of revolution bearing frame is connected with revolution main shaft, the outside top-down of revolution main shaft has set gradually driven sprocket and sun gear, the inside of revolution main shaft is provided with the rotation main shaft, the top fixedly connected with driven pulley of rotation main shaft, the both sides mutual symmetrical meshing of sun gear is connected with the planetary gear, the inside fixedly connected with (mixing) shaft of planetary gear, the bottom fixedly connected with stirring rake of (mixing) shaft, the bottom fixedly connected with initiative synchronizing wheel of rotation main shaft, the outside mutual symmetry of initiative synchronizing wheel is connected with the passive synchronizing wheel through the hold-in range transmission, the inside fixedly connected with dispersion axle of passive synchronizing wheel.
Further preferably, the stirring driving assembly comprises a first servo motor, a speed reducer, a stirring motor seat, a speed reducer adjusting block, a driving sprocket and a chain, wherein the speed reducer is connected with the top output shaft of the first servo motor in a transmission manner, the speed reducer is arranged on the bottom surface of the stirring motor seat, the speed reducer adjusting block is arranged on one side of the stirring motor seat, the speed reducer adjusting block is electrically connected with the speed reducer, the output shaft of the speed reducer is fixedly connected with the inside of the driving sprocket, and the outer side of the driving sprocket is in transmission connection with the driven sprocket through the chain.
Further preferably, the dispersion driving assembly comprises a second servo motor, a dispersion motor seat, a driving belt pulley and a triangular belt, wherein the driving belt pulley and the second servo motor are respectively arranged on the upper side and the lower side of the dispersion motor seat, an output shaft of the second servo motor penetrates through the inside of the dispersion motor seat to be in transmission connection with the driving belt pulley, and the outside of the driving belt pulley is in transmission connection with the driven belt pulley through the triangular belt.
Further preferably, the lifting assembly comprises a lifting speed reducer, a screw rod, a bearing seat, a barrel supporting arm, a barrel supporting seat and a guide rail;
The lifting speed reducer, the screw rod, the bearing seat and the barrel supporting arm are arranged on one side of the inside of the frame, the barrel supporting seat and the guide rail are positioned on one side of the outside of the frame, and the lifting speed reducer drives the barrel supporting arm to drive the barrel supporting seat to move up and down on the surface of the guide rail through the screw rod.
It is further preferable that the outer side of the stirring barrel, which is close to one side of the barrel supporting arm, is provided with mutually symmetrical positioning pins, the bottom of the stirring barrel is provided with a manual ball valve, two sides of the bottom of the stirring barrel are symmetrically provided with moving seats, and one side of the stirring barrel is provided with a hydraulic quick connector.
It is further preferable that the two sides of the upper barrel are symmetrically provided with perspective mirrors, and quick-mounting pneumatic valves are arranged above the perspective mirrors.
Compared with the prior art, the technical scheme provided by the utility model has the following technical effects:
The stirring has no dead angle, a unique double-planetary stirring structure ensures the omnibearing coverage of the stirring process, has no stirring dead angle, ensures the materials to be fully mixed and improves the stirring uniformity.
The high-quality SUS304 stainless steel material is selected for manufacturing, so that the high-quality SUS304 stainless steel material has excellent acid and alkali corrosion resistance, effectively prolongs the service life of equipment and is suitable for various complex chemical environments.
The multi-stage speed accurate operation supports a multi-stage speed operation mode, and the stirring rotation speed and time of each stage can be accurately set according to different materials and process requirements, so that the refined stirring control is realized.
The stirring tank automatically lifts, and the inching operation is supported, the operation process is stable and smooth, and the material loading and unloading and the equipment maintenance are convenient.
Real-time temperature monitoring, namely, the slurry temperature detection function is carried out, the slurry temperature can be monitored in real time, accurate temperature data is provided for the production process, and the product quality is ensured to be stable.
The equipment creates a vacuum environment, effectively eliminates bubbles generated in the stirring process, has good vacuum maintaining effect, and ensures the high quality and stability of products.
Drawings
In order to more clearly illustrate the embodiments of the application or the technical solutions in the prior art, the drawings that are required in the embodiments or the description of the prior art will be briefly described, it being obvious that the drawings in the following description are only some embodiments of the application, and that other drawings may be obtained according to these drawings without inventive effort for a person skilled in the art.
FIG. 1 is a schematic diagram of the overall structure of the present utility model;
FIG. 2 is a schematic diagram of the overall internal structure of the present utility model;
FIG. 3 is a schematic diagram of a stirring mechanism according to the present utility model;
FIG. 4 is a schematic diagram of a stirring mechanism according to the second embodiment of the present utility model;
FIG. 5 is a schematic view of the internal structure of the stirring assembly of the present utility model;
FIG. 6 is a schematic front view of the stirring mechanism of the present utility model;
Fig. 7 is a schematic view showing the bottom structure of the stirring mechanism of the present utility model.
The reference numerals indicate that 1, a frame;
2. A lifting assembly; 20, a lifting speed reducer, 21, a screw rod, 22, a bearing and a bearing seat, 23, a barrel supporting arm, 24, a barrel supporting seat, 25 and a guide rail;
3. A stirring drive assembly; 30 parts of a first servo motor, 31 parts of a speed reducer, 32 parts of a stirring motor base, 33 parts of a speed reducer adjusting block, 34 parts of a driving sprocket, 35 parts of a chain;
4. A dispersion drive assembly; 40, a second servo motor, 41, a dispersion motor seat, 42, a driving belt pulley, 43 and a V-belt;
5. The vacuum assembly, 50, a vacuum pump bracket, 51, a vacuum pump, 52, a vacuum meter, 53 and a pressure transmitter;
6. Stirring assembly, 60, revolution bearing seat, 61, driven belt wheel, 62, rotation main shaft, 63, driven chain wheel, 64, revolution main shaft, 65, sun gear, 66, planetary gear, 67, stirring shaft, 68, stirring paddle, 69, driving synchronous wheel, 610, driven synchronous wheel, 611, synchronous belt, 612, dispersion shaft;
70. the upper barrel, 71, a perspective mirror, 72, a quick-mounting pneumatic valve;
80. mixing drum 81, locating pin 82, manual ball valve 83, movable seat 84, hydraulic quick connector.
Detailed Description
The following description of the embodiments of the present utility model will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present utility model, but not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
It should be understood that the structures, proportions, sizes, etc. shown in the drawings are for the purpose of understanding and reading the disclosure, and are not intended to limit the scope of the application, which is defined by the claims, but rather by the claims, unless otherwise indicated, and that any structural modifications, proportional changes, or dimensional adjustments, which would otherwise be apparent to those skilled in the art, would be made without departing from the spirit and scope of the application.
Examples
Referring to FIGS. 1-7, the utility model provides a technical scheme that an anti-corrosion double-planetary vacuum mixer comprises:
The stirring and dispersing device comprises a frame 1, a stirring and driving assembly 3, a dispersing and driving assembly 4 and a vacuum assembly 5, wherein the stirring and driving assembly 3 and the dispersing and driving assembly 4 are respectively arranged in the frame 1;
The upper barrel 70 is installed to one side of the frame 1, stirring assembly 6 is installed in the upper barrel 70, vacuum assembly 5 includes vacuum pump support 50, vacuum pump 51, vacuum gauge 52 and pressure transmitter 53, vacuum pump support 50 install in the inside bottom of frame 1, the top surface threaded connection of vacuum pump support 50 has vacuum pump 51, vacuum gauge 52 radially installs in upper barrel 70 one side, the bottom of pressure transmitter 53 run through in an upper barrel 70 lateral wall, stirring drive assembly 3 and dispersion drive assembly 4 respectively with stirring assembly 6 input transmission is connected, the bottom of upper barrel 70 is adapted with stirring barrel 80.
The frame 1 is used as a basic support to provide installation space for the stirring driving assembly 3 and the dispersing driving assembly 4, so that the whole stability of the equipment is ensured.
And the stirring driving assembly 3 is in transmission connection with the input end of the stirring assembly 6 and provides power for stirring, so that stirring revolution is realized, and materials are fully mixed.
And the dispersing driving assembly 4 is also connected with the stirring assembly 6 to provide dispersing power so as to realize stirring rotation and assist in uniformly dispersing materials.
The vacuum assembly 5 is used for exhausting the vacuum pump 51 to form vacuum and eliminating bubbles, the vacuum gauge 52 is used for displaying the vacuum degree, and the pressure transmitter 53 is used for monitoring the pressure to ensure the stability of the vacuum.
The upper barrel 70 and the stirring barrel 80 are assembled into a stirring mechanism, a stirring assembly is arranged in the upper barrel for stirring, the stirring barrel is adapted to the bottom of the upper barrel for containing materials, and the stirring assembly are matched to finish stirring work.
The stirring process is carried out by adopting high-quality SUS304 stainless steel, resisting acid and alkali corrosion, carrying out multi-stage speed operation and setting the stirring rotating speed and time of each stage;
the stirring tank has the automatic lifting function, can be operated in a inching way, and is stable in operation;
The slurry temperature detection function is carried out, and the slurry temperature is monitored in real time;
and the vacuum environment effectively eliminates bubbles generated in the stirring process, and the vacuum maintaining effect is good.
In this embodiment, the stirring assembly 6 includes a revolution bearing seat 60, a driven pulley 61, a rotation main shaft 62, a driven sprocket 63, a revolution main shaft 64, a sun gear 65, a planetary gear 66, a stirring shaft 67, a stirring paddle 68, a driving synchronizing wheel 69, a driven synchronizing wheel 610, a synchronous belt 611 and a dispersing shaft 612;
the inside rotation of revolution bearing frame 60 is connected with revolution main shaft 64, the outside top-down of revolution main shaft 64 has set gradually driven sprocket 63 and sun gear 65, the inside of revolution main shaft 64 is provided with rotation main shaft 62, the top fixedly connected with driven pulley 61 of rotation main shaft 62, the both sides mutual symmetrical meshing of sun gear 65 is connected with planetary gear 66, the inside fixedly connected with (mixing) shaft 67 of planetary gear 66, the bottom fixedly connected with (mixing) paddle 68 of (mixing) shaft 67), the bottom fixedly connected with initiative synchronizing wheel 69 of rotation main shaft 62, the outside mutual symmetry of initiative synchronizing wheel 69 is connected with driven synchronizing wheel 610 through the hold-in range 611 transmission, the inside fixedly connected with dispersion axle 612 of driven synchronizing wheel 610, revolution and rotation mechanism: revolution bearing frame 60 supports revolution main shaft 64 rotation, driven sprocket 63 drives revolution main shaft, makes sun gear 65 produce revolution motion. Meanwhile, the rotation main shaft 62 rotates inside the revolution main shaft 64, and the top driven pulley 61 receives external power to realize rotation.
The stirring and dispersing actions are that the sun gear 65 is meshed with planetary gears 66 on two sides to drive the stirring shaft 67 and the stirring paddles 68 at the bottom to do planetary motion, so that the omnibearing stirring is realized, and the stirring dead angle is eliminated. The active synchronizing wheel 69 at the bottom of the rotation main shaft 62 is connected with the passive synchronizing wheel 610 through a synchronizing belt 611 to drive a dispersing shaft 612 to assist in dispersing materials, so that the stirring uniformity is further improved.
In this embodiment, the stirring driving assembly 3 includes a first servo motor 30, a speed reducer 31, a stirring motor base 32, a speed reducer adjusting block 33, a driving sprocket 34 and a chain 35, wherein the top output shaft of the first servo motor 30 is in transmission connection with the speed reducer 31, the speed reducer 31 is mounted on the bottom surface of the stirring motor base 32, the speed reducer adjusting block 33 is mounted on one side of the stirring motor base 32, the speed reducer adjusting block 33 is electrically connected with the speed reducer 31, an output shaft of the speed reducer 31 is fixedly connected with the inside of the driving sprocket 34, the outer side of the driving sprocket 34 is in transmission connection with the driven sprocket 63 through the chain 35, and the power output is that the first servo motor 30 provides original power, the top output shaft of the first servo motor is in transmission connection with the speed reducer 31, the speed reducer 31 can adjust the motor rotation speed, and output proper rotation speeds, so as to meet the requirements of different materials for rotation speeds.
Accurate adjustment, namely, a speed reducer adjusting block 33 arranged on one side of a stirring motor seat 32 is electrically connected with a speed reducer 31, and an operator can accurately adjust the speed reducer 31 through the speed reducer adjusting block, so that the accurate control of stirring rotating speed is realized, and the requirement on accurate setting of the rotating speed in 'multistage speed accurate operation' is met.
And the power transmission is that the output shaft of the speed reducer 31 drives the driving chain wheel 34, the driving chain wheel 34 is in transmission connection with the driven chain wheel 63 in the stirring assembly 6 through the chain 35, the power is transmitted to the stirring assembly, and the stirring paddles are driven to perform revolution stirring, so that the materials are fully mixed.
In this embodiment, the dispersion driving assembly 4 includes a second servo motor 40, a dispersion motor base 41, a driving pulley 42, and a v-belt 43, wherein the driving pulley 42 and the second servo motor 40 are respectively mounted on the upper and lower sides of the dispersion motor base 41, an output shaft of the second servo motor 40 penetrates through the inside of the dispersion motor base 41 and is in transmission connection with the driving pulley 42, the outside of the driving pulley 42 is in transmission connection with the driven pulley 61 through the v-belt 43, and power is provided by using the second servo motor 40 as a power source to provide necessary power for dispersion work. The output shaft penetrates through the dispersion motor seat 41 to drive the driving belt pulley 42 to rotate.
And the driving belt wheel 42 is in transmission connection with a driven belt wheel 61 in the stirring assembly 6 through a V-belt 43, and the power of the second servo motor 40 is efficiently transmitted to a rotation main shaft 62 of the stirring assembly 6, so that the stirring assembly 6 realizes rotation.
And the stirring assembly 6 is driven to rotate and is matched with the revolution realized by the stirring driving assembly 3 to perform multi-angle and omnibearing dispersing stirring on materials by the stirring paddles and the dispersing shaft, so that no dead angle is further ensured in stirring, and the uniformity of material mixing is improved.
In this embodiment, the lifting assembly 2 includes a lifting reducer 20, a screw 21, a bearing seat 22, a barrel supporting arm 23, a barrel supporting seat 24, and a guide rail 25;
The lifting speed reducer 20, the screw rod 21, the bearing seat 22 and the bucket supporting arm 23 are arranged on one side of the interior of the frame 1, the bucket supporting seat 24 and the guide rail 25 are positioned on one side of the exterior of the frame 1, the lifting speed reducer 20 drives the bucket supporting arm 23 to drive the bucket supporting seat 24 to move up and down on the surface of the guide rail 25 through the screw rod 21, and lifting drive is that the lifting speed reducer 20 is a core component and provides power for lifting of the stirring bucket through rotation of the screw rod 21.
The support and guide are that the bearing and the bearing seat 22 support the screw rod 21 to ensure the stable rotation, the barrel supporting arm 23 moves under the drive of the screw rod 21 to drive the barrel supporting seat 24, and the guide rail 25 provides the guide of the up-and-down movement for the barrel supporting seat 24 to ensure the accuracy of the movement track.
The material loading and unloading are convenient, namely the stirring barrel is lifted by driving the barrel supporting seat 24 to move up and down, so that the loading and unloading operation of the material is convenient, the convenience of operation and the use efficiency of equipment are improved, and the functional characteristics of automatic lifting, inching operation and stable operation of the product stirring tank are realized.
In this embodiment, specifically, a symmetrical positioning pin 81 is disposed on one side of the outer side of the stirring barrel 80, which is close to the barrel supporting arm 23, a manual ball valve 82 is mounted at the bottom of the stirring barrel 80, movable seats 83 are symmetrically mounted on two sides of the bottom of the stirring barrel 80, and a hydraulic quick connector 84 is mounted on one side of the stirring barrel 80.
In this embodiment, specifically, the two sides of the upper barrel 70 are symmetrically provided with perspective mirrors 71, and a fast-assembling pneumatic valve 72 is disposed above the perspective mirrors 71.
The stirring driving assembly 3 is started by the first servo motor 30, and after the speed of the power is changed by the speed reducer 31, the power is transmitted to the driven sprocket 63 on the revolution main shaft 64 of the stirring assembly 6 through the driving sprocket 34 and the chain 35, so that the revolution main shaft 64 is driven to rotate, and the sun gear 65 is driven to rotate.
The second servo motor 40 operates, the driving belt wheel 42 is driven by the dispersion motor seat 41, and the driven belt wheel 61 at the top of the rotation main shaft 62 of the stirring assembly 6 is driven to rotate by the transmission of the V-belt 43, so that the rotation main shaft 62 is driven to rotate.
The stirring assembly 6 operates by the revolution main shaft 64 driving the sun gear 65 to revolve, the sun gear 65 is meshed with the planetary gears 66 on two sides, so that the planetary gears 66 rotate while revolving, and the stirring shaft 67 and the bottom stirring paddles 68 are driven to stir materials. The rotation main shaft 62 is connected with the passive synchronous wheel 610 through the active synchronous wheel 69 and the synchronous belt 611 to drive the dispersing shaft 612 to assist in dispersing materials.
Vacuum treatment, namely, a vacuum pump 51 is arranged on a vacuum pump bracket 50, is connected with an upper barrel 70 through a pipeline after being opened, and pumps out air in the upper barrel 70 to form a vacuum environment. The vacuum gauge 52 is installed at one side of the upper tub 70 to display the internal vacuum in real time. The bottom of the pressure transmitter 53 penetrates through the side wall of the upper barrel 70, so that the internal pressure change is monitored, and the stability of the vacuum environment and the safety of equipment are ensured.
Lifting and loading and unloading a stirring barrel:
The lifting assembly is used for driving the screw rod 21 to rotate by the lifting speed reducer 20 to drive the bucket supporting arm 23, so that the bucket supporting seat 24 moves up and down on the guide rail 25, and the stirring bucket 80 is lifted.
And (3) material loading and unloading, namely lifting the stirring barrel 80, stirring after being matched with the upper barrel 70, and lowering after the completion. The locating pin in the outside of agitator 80 is used for accurate location, and the manual ball valve 82 in bottom control material discharge removes the seat 83 and is convenient for agitator 80 removes, and hydraulic pressure quick-operation joint 84 is convenient to connect other equipment. The perspective mirrors 71 on both sides of the upper barrel 70 are convenient for observing the condition of the internal materials, and the fast-assembling pneumatic valve 72 can be used for feeding or exhausting and other operations.
Those skilled in the art will appreciate that the features recited in the various embodiments of the utility model and/or in the claims may be combined in various combinations and/or combinations, even if such combinations or combinations are not explicitly recited in the utility model. In particular, the features recited in the various embodiments of the utility model and/or in the claims can be combined in various combinations and/or combinations without departing from the spirit and teachings of the utility model. All such combinations and/or combinations fall within the scope of the utility model.

Claims (5)

1. An anti-corrosion double-planetary vacuum mixer, comprising:
The stirring device comprises a frame, a lifting assembly, a stirring driving assembly, a dispersing driving assembly and a vacuum assembly, wherein the stirring driving assembly and the dispersing driving assembly are respectively arranged in the frame;
An upper barrel is arranged on one side of the frame, a stirring assembly is arranged in the upper barrel, the vacuum assembly comprises a vacuum pump bracket, a vacuum pump, a vacuum gauge and a pressure transmitter, the vacuum pump bracket is arranged at the bottom end of the frame, the vacuum pump is connected with the top surface of the vacuum pump bracket in a threaded manner, the vacuum gauge is radially arranged on one side of the upper barrel, the bottom of the pressure transmitter penetrates through one side wall of the upper barrel, the stirring driving assembly and the dispersing driving assembly are respectively in transmission connection with the input end of the stirring assembly, the bottom of the upper barrel is provided with the stirring barrel in a matching manner,
The stirring assembly comprises a revolution bearing seat, a driven belt wheel, a rotation main shaft, a driven chain wheel, a revolution main shaft, a sun gear, a planetary gear, a stirring shaft, a stirring paddle, a driving synchronous wheel, a driven synchronous wheel, a synchronous belt and a dispersing shaft, wherein the revolution main shaft is connected to the inside rotation of the revolution bearing seat, the driven chain wheel and the sun gear are sequentially arranged outside the revolution main shaft from top to bottom, the rotation main shaft is internally provided with the rotation main shaft, the top of the rotation main shaft is fixedly connected with the driven belt wheel, two sides of the sun gear are mutually symmetrically meshed and connected with the planetary gear, the inside of the planetary gear is fixedly connected with the stirring shaft, the bottom of the stirring shaft is fixedly connected with the stirring paddle, the bottom of the rotation main shaft is fixedly connected with the driving synchronous wheel, the outside of the driving synchronous wheel is symmetrically connected with the driven synchronous wheel through the synchronous belt, the dispersing shaft is fixedly connected to the inside of the driven synchronous wheel, the stirring driving assembly comprises a first servo motor, a speed reducer, a motor seat, a speed reducer adjusting block, a driving chain and a speed reducer are connected to the top output shaft of the first servo motor, the speed reducer is in transmission connection with the driven chain, and the driving chain is fixedly connected to the bottom of the motor and the motor through the motor seat.
2. The anti-corrosion double-planet vacuum mixer disclosed in claim 1, wherein the dispersion driving assembly comprises a second servo motor, a dispersion motor seat, a driving belt pulley and a V-belt, the driving belt pulley and the second servo motor are respectively arranged on the upper side and the lower side of the dispersion motor seat, an output shaft of the second servo motor penetrates through the inside of the dispersion motor seat to be in transmission connection with the driving belt pulley, and the outside of the driving belt pulley is in transmission connection with the driven belt pulley through the V-belt.
3. The anti-corrosion double-planetary vacuum mixer according to claim 1, wherein the lifting assembly comprises a lifting speed reducer, a screw rod, a bearing seat, a barrel supporting arm, a barrel supporting seat and a guide rail;
The lifting speed reducer, the screw rod, the bearing seat and the barrel supporting arm are arranged on one side of the inside of the frame, the barrel supporting seat and the guide rail are positioned on one side of the outside of the frame, and the lifting speed reducer drives the barrel supporting arm to drive the barrel supporting seat to move up and down on the surface of the guide rail through the screw rod.
4. The anti-corrosion double-planetary vacuum stirrer according to claim 3, wherein the outer side of the stirring barrel is provided with mutually symmetrical positioning pins on one side close to the barrel supporting arm, the bottom of the stirring barrel is provided with a manual ball valve, two sides of the bottom of the stirring barrel are symmetrically provided with movable seats, and one side of the stirring barrel is provided with a hydraulic quick connector.
5. The anti-corrosion double-planet vacuum stirrer according to claim 1, wherein the two sides of the upper barrel are symmetrically provided with perspective mirrors, and quick-mounting pneumatic valves are arranged above the perspective mirrors.
CN202520278856.9U 2025-02-21 2025-02-21 Corrosion-resistant double-planetary vacuum stirrer Active CN223846764U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202520278856.9U CN223846764U (en) 2025-02-21 2025-02-21 Corrosion-resistant double-planetary vacuum stirrer

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202520278856.9U CN223846764U (en) 2025-02-21 2025-02-21 Corrosion-resistant double-planetary vacuum stirrer

Publications (1)

Publication Number Publication Date
CN223846764U true CN223846764U (en) 2026-01-30

Family

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN202520278856.9U Active CN223846764U (en) 2025-02-21 2025-02-21 Corrosion-resistant double-planetary vacuum stirrer

Country Status (1)

Country Link
CN (1) CN223846764U (en)

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