Anti-corrosion double-planet vacuum mixer
By employing a unique dual-planetary mixing structure and multi-speed operation mode in the dual-planetary vacuum mixer, combined with mixing drive components, dispersion drive components, and vacuum components, the problems of mixing dead zones and uneven mixing are solved, achieving all-round coverage and fine control, improving mixing uniformity and equipment corrosion resistance, and featuring automatic lifting and real-time monitoring functions.
Patent Information
- Application Number
- CN202520278856.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-21
- Publication Date
- 2026-01-30
- Estimated Expiration
- 2035-02-21
AI Technical Summary
Existing dual planetary vacuum mixers have dead zones during the mixing process, making it difficult to achieve full coverage. They also lack multi-speed operation modes to precisely control the mixing speed and time, resulting in uneven mixing of materials.
It adopts a unique dual planetary stirring structure, combining stirring drive components and dispersion drive components. Through the combination of revolution and rotation, it eliminates stirring dead zones. It also features multi-speed operation modes to precisely set the stirring speed and time for each stage. It is equipped with a vacuum component to eliminate air bubbles, uses high-quality SUS304 stainless steel to resist corrosion, and features automatic lifting of the mixing tank and slurry temperature detection.
It achieves all-round, dead-angle-free mixing, improves the uniformity of material mixing, adapts to complex chemical environments, supports multi-speed precise operation, ensures the smooth lifting and lowering of the mixing tank, facilitates material loading and unloading, and has real-time temperature monitoring and efficient vacuum defoaming functions.
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Figure CN223846764U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to agitator technical field, concretely is a kind of anticorrosion double planetary vacuum agitator. BACKGROUND
[0002] Planetary agitator is a new type of high-efficiency dead-point-free mixing and stirring equipment, which has a unique and novel stirring form. There are two or three multi-layer impeller stirrers and one or two automatic scrapers in the kettle. The stirrer revolves around the axis of the kettle body while rotating at different speeds around its own axis, causing the material to move complexly in the kettle body. Traditional planetary agitators are mostly composed of two low-speed stirring paddles, also known as double planetary agitators. However, with the increasing demand, planetary agitators have also added other stirrers, such as various types of dispersing paddles, emulsifiers, etc. This increases the multifunctional application and expands the usage range.
[0003] Chinese patent with publication number CN208839470U discloses a double planetary agitator, which includes a rack, an electric box, an operation panel, a stirring barrel and a stirring paddle. The electric box is installed on one side of the rack, and the operation panel is installed on the electric box. The rack is also provided with a lifting slide rail, and the lifting slide rail is installed with a lifting seat. The stirring barrel is installed on the lifting seat, and the upper end of the stirring barrel is provided with a stirring paddle. The stirring paddle is connected to the pipeline through a stirring paddle mounting seat. The pipeline is installed with a vacuum valve, an observation sight glass and an illumination sight glass. The pipeline is installed on the rack, and the rack is installed with a lighting lamp on one side. A vacuum pump is also provided below the side of the rack, and a pressure gauge is installed on the vacuum pump. The agitator simultaneously completes grinding and stirring, and completes different degrees of stirring.
[0004] However, there are still problems. How to design the stirring structure to ensure that the stirring process is fully covered in the double planetary vacuum agitator, eliminate the stirring dead angle, fully mix the materials and improve the stirring uniformity?
[0005] How to realize multi-section speed operation mode in the double planetary vacuum agitator, so as to accurately set the stirring speed and time of each section according to different materials and process requirements, so as to achieve the effect of fine stirring control?
[0006] Therefore, an anticorrosion double planetary vacuum agitator is proposed. UTILITY MODEL CONTENTS
[0007] The utility model aims to provide an anticorrosion double planetary vacuum agitator to solve the problem of how to design the stirring structure to ensure that the stirring process is fully covered in the double planetary vacuum agitator, eliminate the stirring dead angle, fully mix the materials and improve the stirring uniformity as mentioned in the background.
[0008] To achieve the above object, the utility model provides the following technical scheme: an anticorrosive double planetary vacuum mixer,
[0009] The rack is internally provided with a stirring drive assembly and a dispersion drive assembly;
[0010] One side of the rack is provided with an upper barrel, the inside of the upper barrel is provided with a stirring assembly, 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 inner bottom end of the rack, the top surface of the vacuum pump support is threadedly connected with the vacuum pump, 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, the stirring drive assembly and the dispersion drive assembly are respectively drivingly connected with the input end of the stirring assembly, and the bottom of the upper barrel is adapted with a stirring barrel.
[0011] Further preferably, the stirring assembly comprises a revolution bearing seat, a driven belt pulley, a rotation main shaft, a driven sprocket, a revolution main shaft, a sun gear, a planetary gear, a stirring shaft, a stirring paddle, a driving synchronous pulley, a driven synchronous pulley, a synchronous belt and a dispersion shaft;
[0012] The revolution main shaft is externally provided, from top to bottom, with the driven sprocket and the sun gear, the revolution main shaft is internally provided with the rotation main shaft, the top of the rotation main shaft is fixedly connected with the driven belt pulley, the sun gear is symmetrically meshed on both sides with the planetary gear, the planetary gear is internally 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 pulley, the driving synchronous pulley is externally symmetrically connected with the driven synchronous pulley through the synchronous belt, and the driven synchronous pulley is internally fixedly connected with the dispersion shaft.
[0013] Further preferably, the stirring drive assembly comprises a first servo motor, a speed reducer, a stirring motor base, a speed reducer adjusting block, a driving sprocket and a chain, the top output shaft of the first servo motor is drivingly connected with the speed reducer, the speed reducer is installed at the bottom surface of the stirring motor base, one side of the stirring motor base is provided with the speed reducer adjusting block, 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 outside of the driving sprocket is drivingly connected with the driven sprocket through the chain.
[0014] Further preferably, the dispersion driving assembly comprises a second servo motor, a dispersion motor base, a driving pulley and a V-belt, the upper and lower sides of the dispersion motor base are respectively provided with the driving pulley and the second servo motor, the output shaft of the second servo motor penetrates the inside of the dispersion motor base and is in transmission connection with the driving pulley, and the outside of the driving pulley is in transmission connection with the driven pulley through the V-belt.
[0015] Further preferably, the lifting assembly comprises a lifting speed reducer, a lead screw, a bearing and a bearing seat, a bucket arm, a bucket seat and a guide rail.
[0016] The lifting speed reducer, the lead screw, the bearing and the bearing seat and the bucket arm are installed on one side of the inside of the frame, the bucket seat and the guide rail are located on one side of the outside of the frame, and the lifting speed reducer drives the bucket arm to drive the bucket seat to move up and down on the surface of the guide rail through the lead screw.
[0017] Further preferably, the outside of the stirring barrel near one side of the bucket arm is provided with positioning pins that are symmetrical to each other, the bottom of the stirring barrel is provided with a manual ball valve, the bottom of the stirring barrel is provided with moving seats that are symmetrical to each other, and one side of the stirring barrel is provided with a hydraulic quick connector.
[0018] Further preferably, the two sides of the upper barrel are provided with perspective mirrors that are symmetrical to each other, and the upper sides of the perspective mirrors are provided with quick-mount pneumatic valves.
[0019] Compared with the prior art, the above technical scheme has the following technical effects:
[0020] No dead angle in stirring: the unique double-planetary stirring structure ensures full coverage in the stirring process, and there is no stirring dead angle, so that the materials can be fully mixed and the stirring uniformity is improved.
[0021] High-quality materials: made of high-quality SUS304 stainless steel material, which has excellent acid and alkali corrosion resistance, effectively prolongs the service life of the equipment, and adapts to various complex chemical environments.
[0022] Multi-speed precise operation: supports multi-speed operation mode, can accurately set the stirring speed and time of each section according to different materials and process requirements, and realizes fine stirring control.
[0023] Automatic lifting of the stirring tank: equipped with automatic lifting function of the stirring tank, and supports point operation, the running process is stable and smooth, and it is convenient for material loading and unloading and equipment maintenance.
[0024] Real-time temperature monitoring: self-contained slurry temperature detection function, which can monitor the slurry temperature in real time, provide accurate temperature data for the production process, and ensure stable product quality.
[0025] High-efficiency vacuum defoaming: the device creates a vacuum environment, effectively eliminates the bubbles generated in the stirring process, and the vacuum maintaining effect is good, guaranteeing the high quality and stability of the product. BRIEF DESCRIPTION OF DRAWINGS
[0026] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the drawings needed to be used in the embodiments or prior art description will be briefly introduced. Obviously, the drawings in the following description are only some embodiments of the present application, and other drawings can be obtained by those skilled in the art without creative labor.
[0027] Figure 1 It is a whole structure schematic view of the utility model;
[0028] Figure 2 It is a whole internal structure schematic view of the utility model;
[0029] Figure 3 It is a stirring mechanism structure schematic view of the utility model Figure 1 ;
[0030] Figure 4 It is a stirring mechanism structure schematic view of the utility model Figure 2 ;
[0031] Figure 5 It is a stirring assembly internal structure schematic view of the utility model;
[0032] Figure 6 It is a stirring mechanism front view schematic view of the utility model;
[0033] Figure 7 It is a stirring mechanism bottom view schematic view of the utility model.
[0034] Explanation of reference numerals: 1, rack;
[0035] 2, lifting assembly; 20, lifting speed reducer; 21, screw rod; 22, bearing and bearing seat; 23, bucket supporting arm; 24, bucket supporting seat; 25, guide rail;
[0036] 3, stirring drive assembly; 30, first servo motor; 31, speed reducer; 32, stirring motor seat; 33, speed reducer adjusting block; 34, driving sprocket; 35, chain;
[0037] 4, dispersion drive assembly; 40, second servo motor; 41, dispersion motor seat; 42, driving pulley; 43, triangular belt;
[0038] 5, vacuum assembly; 50, vacuum pump support; 51, vacuum pump; 52, vacuum gauge; 53, pressure transmitter;
[0039] 6, stirring assembly; 60, revolving bearing seat; 61, driven pulley; 62, rotating main shaft; 63, driven sprocket; 64, revolving main shaft; 65, sun gear; 66, planetary gear; 67, stirring shaft; 68, stirring paddle; 69, driving sprocket; 610, driven synchronous pulley; 611, synchronous belt; 612, dispersion shaft;
[0040] 70, upper barrel; 71, perspective mirror; 72, quick-mount pneumatic valve;
[0041] 80, stirring barrel; 81, positioning pin; 82, manual ball valve; 83, moving seat; 84, hydraulic quick connector. DETAILED DESCRIPTION
[0042] The technical solutions in the embodiments of the present application will be described clearly and completely below in conjunction with the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all the other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.
[0043] It should be understood that the structures, proportions, sizes, etc. shown in the drawings of the present application are only used to cooperate with the disclosed content of the present application, to be understood and read by those skilled in the art, and do not define the limiting conditions for the implementation of the present application, and therefore do not have technical substantive significance. Any modification of the structure, change of the proportion relationship or adjustment of the size, without affecting the effects and purposes that can be achieved by the present application, should still fall within the scope of the technical content disclosed by the present application.
[0044] EMBODIMENT
[0045] Please refer to Figures 1-7 The present application provides a technical solution: an anti-corrosion double-planetary vacuum mixer, comprising:
[0046] A rack 1, a stirring drive assembly 3, a dispersion drive assembly 4 and a vacuum assembly 5, the inner part of the rack 1 is respectively provided with the stirring drive assembly 3 and the dispersion drive assembly 4;
[0047] One side of the frame 1 is provided with an upper barrel 70, an inside of the upper barrel 70 is provided with a stirring assembly 6, the vacuum assembly 5 comprises a vacuum pump support 50, a vacuum pump 51, a vacuum gauge 52 and a pressure transmitter 53, the vacuum pump support 50 is installed at the inside bottom end of the frame 1, the top surface of the vacuum pump support 50 is threadedly connected with the vacuum pump 51, the vacuum gauge 52 is radially installed at one side of the upper barrel 70, the bottom of the pressure transmitter 53 penetrates through one side wall of the upper barrel 70, the stirring drive assembly 3 and the dispersion drive assembly 4 are respectively in transmission connection with the input end of the stirring assembly 6, and the bottom of the upper barrel 70 is adapted with a stirring barrel 80.
[0048] The frame 1 serves as a basic support, provides mounting spaces for the stirring drive assembly 3 and the dispersion drive assembly 4, and ensures the stability of the whole device.
[0049] The stirring drive assembly 3 is in transmission connection with the input end of the stirring assembly 6, provides power for stirring, realizes the revolution of stirring, and enables materials to be fully mixed.
[0050] The dispersion drive assembly 4 is also connected with the stirring assembly 6, provides dispersion power, realizes the rotation of stirring, and assists in uniformly dispersing materials.
[0051] The vacuum assembly 5 comprises the vacuum pump 51, the vacuum gauge 52 and the pressure transmitter 53, the vacuum pump 51 forms a vacuum by pumping air, the vacuum gauge 52 displays the vacuum degree, and the pressure transmitter 53 monitors the pressure to ensure the stability of the vacuum.
[0052] The upper barrel 70 and the stirring barrel 80 are assembled into a stirring mechanism, the upper barrel is provided with the stirring assembly 6 for stirring, the stirring barrel is adapted to the bottom of the upper barrel for containing materials, and the two cooperate to complete the stirring work.
[0053] Specifically, the stirring is without dead angle; high-quality SUS304 stainless steel is adopted, which is resistant to acid and alkali corrosion, and can be operated in multiple stages, and the stirring speed and time of each stage can be set;
[0054] The stirring tank has an automatic lifting function, can be operated in a point-by-point mode, and runs stably;
[0055] The slurry temperature detection function is provided, and the slurry temperature is monitored in real time;
[0056] The vacuum environment effectively eliminates the air bubbles generated in the stirring process, and the vacuum maintaining effect is good.
[0057] In the embodiment, specifically, the stirring assembly 6 comprises 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 synchronous pulley 69, a driven synchronous pulley 610, a synchronous belt 611 and a dispersion shaft 612.
[0058] The inner rotation of the revolution bearing seat 60 is connected with the revolution main shaft 64, the outer part of the revolution main shaft 64 is sequentially provided with the driven sprocket 63 and the sun gear 65 from top to bottom, the inner part of the revolution main shaft 64 is provided with the rotation main shaft 62, the top of the rotation main shaft 62 is fixedly connected with the driven pulley 61, the two sides of the sun gear 65 are symmetrically meshed with the planetary gear 66, the inner part of the planetary gear 66 is fixedly connected with the stirring shaft 67, the bottom of the stirring shaft 67 is fixedly connected with the stirring paddle 68, the bottom of the rotation main shaft 62 is fixedly connected with the driving synchronous wheel 69, the outer part of the driving synchronous wheel 69 is symmetrically connected with the driven synchronous wheel 610 through the synchronous belt 611, the inner part of the driven synchronous wheel 610 is fixedly connected with the dispersion shaft 612, the revolution and rotation mechanism: the revolution bearing seat 60 supports the revolution of the revolution main shaft 64, the driven sprocket 63 drives the revolution main shaft to make the sun gear 65 produce revolution movement. At the same time, the rotation main shaft 62 rotates in the revolution main shaft 64, and the top driven pulley 61 receives external power to realize rotation.
[0059] The stirring and dispersion action: the sun gear 65 is meshed with the two planetary gears 66, drives the stirring shaft 67 and the bottom stirring paddle 68 to do planetary motion, realizes omnidirectional stirring, and eliminates the stirring dead angle. The bottom driving synchronous wheel 69 of the rotation main shaft 62 is connected with the driven synchronous wheel 610 through the synchronous belt 611, drives the dispersion shaft 612, assists the dispersion of the material, and further improves the stirring uniformity.
[0060] In this embodiment, specifically: 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, the top output shaft of the first servo motor 30 is drivingly connected with the speed reducer 31, the speed reducer 31 is installed on the bottom surface of the stirring motor base 32, the stirring motor base 32 is installed with the speed reducer adjusting block 33 on one side, the speed reducer adjusting block 33 is electrically connected with the speed reducer 31, the output shaft of the speed reducer 31 is fixedly connected with the driving sprocket 34, the outer side of the driving sprocket 34 is drivingly connected with the driven sprocket 63 through the chain 35, power output: the first servo motor 30 provides original power, the top output shaft thereof is drivingly connected with the speed reducer 31, the speed reducer 31 can adjust the motor speed, output appropriate speed, meet the needs of different materials for stirring speed.
[0061] Precise adjustment: the speed reducer adjusting block 33 installed on one side of the stirring motor base 32 is electrically connected with the speed reducer 31, the operator can accurately adjust the speed reducer 31 through it, and then realize accurate control of the stirring speed, which meets the requirements of accurate setting of the speed in the "multi-speed precise operation".
[0062] Power transmission: the output shaft of the second servo motor 40 drives the driving pulley 42 to rotate, and the driving pulley 42 drives the driven pulley 61 through the V-belt 43, so that the power of the second servo motor 40 is transmitted to the rotation main shaft 62 of the stirring assembly 6, and the stirring assembly 6 is driven to rotate.
[0063] In this embodiment, specifically: 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, the upper and lower sides of the dispersion motor base 41 are respectively provided with the driving pulley 42 and the second servo motor 40, the output shaft of the second servo motor 40 penetrates the inside of the dispersion motor base 41 and is in transmission connection with the driving pulley 42, and the outside of the driving pulley 42 is in transmission connection with the driven pulley 61 through the V-belt 43; power supply: the second servo motor 40 serves as a power source to provide necessary power for dispersion work. The output shaft thereof penetrates the dispersion motor base 41 and drives the driving pulley 42 to rotate.
[0064] Power transmission: the output shaft of the second servo motor 40 drives the driving pulley 42 to rotate, and the driving pulley 42 drives the driven pulley 61 through the V-belt 43, so that the power of the second servo motor 40 is transmitted to the rotation main shaft 62 of the stirring assembly 6, and the stirring assembly 6 is driven to rotate.
[0065] Auxiliary dispersion stirring: by driving the stirring assembly 6 to rotate, and cooperating with the revolution of the stirring driving assembly 3, the stirring paddle and the dispersion shaft can perform multi-angle and omnidirectional dispersion stirring on the material, so as to further ensure that there is no dead angle in stirring and improve the uniformity of material mixing.
[0066] In this embodiment, specifically: the lifting assembly 2 includes a lifting reducer 20, a lead screw 21, a bearing and bearing seat 22, a bucket supporting arm 23, a bucket supporting seat 24 and a guide rail 25.
[0067] The lifting reducer 20, the lead screw 21, the bearing and the bearing seat 22 and the bucket supporting arm 23 are installed on one side of the inside of the rack 1, and the bucket supporting seat 24 and the guide rail 25 are located on one side of the outside of the rack 1. The lifting 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. Lifting drive: the lifting reducer 20 is a core component, which provides power for the lifting of the stirring bucket through the rotation of the lead screw 21.
[0068] Support and guide: the bearing and bearing seat 22 support the lead screw 21 to ensure stable rotation; the bucket supporting arm 23 moves under the drive of the lead screw 21 to drive the bucket supporting seat 24, and the guide rail 25 provides guidance for the up-down movement of the bucket supporting seat 24 to ensure the accuracy of the movement track.
[0069] Convenient loading and unloading: the stirring barrel is lifted by driving the upper and lower movements of the barrel seat 24, facilitating the loading and unloading operations, improving the convenience of operation and the use efficiency of the equipment, and helping to realize the functions of automatic lifting, point operation and stable operation of the product stirring tank.
[0070] In this embodiment, specifically: the outside of the stirring barrel 80 is provided with positioning pins 81 which are symmetrical to each other on one side close to the barrel arm 23, the bottom of the stirring barrel 80 is provided with a manual ball valve 82, and the bottom of the stirring barrel 80 is provided with moving seats 83 which are symmetrical to each other on both sides, and the stirring barrel 80 is provided with a hydraulic quick connector 84 on one side.
[0071] In this embodiment, specifically: the upper barrel 70 is provided with perspective mirrors 71 which are symmetrical to each other on both sides, and the perspective mirrors 71 are provided with quick-mount pneumatic valves 72 above.
[0072] Working principle or structural principle: stirring drive assembly 3: the first servo motor 30 is started, the power is changed in speed through the speed reducer 31, the power is transmitted to the driven sprocket 63 on the revolving main shaft 64 of the stirring assembly 6 through the driving sprocket 34 and the chain 35, the revolving main shaft 64 is driven to rotate, and then the sun gear 65 is driven to rotate.
[0073] Dispersing drive assembly 4: the second servo motor 40 is operated, the driving pulley 42 is driven through the dispersing motor seat 41, the stirring assembly 6 is driven to rotate through the driven pulley 61 on the top of the rotating main shaft 62 of the stirring assembly 6 through the triangular belt 43, so that the rotating main shaft 62 is driven to rotate.
[0074] Stirring assembly 6 operation: the revolving main shaft 64 drives the sun gear 65 to revolve, the sun gear 65 is engaged with the two planetary gears 66, the planetary gears 66 revolve and rotate at the same time, the stirring shaft 67 and the bottom stirring paddle 68 are driven to stir the material. The dispersing shaft 612 is connected through the driving synchronous wheel 69, the synchronous belt 611 and the driven synchronous wheel 610, and the dispersing shaft 612 is driven to assist the dispersion of the material.
[0075] Vacuum treatment: the vacuum pump 51 is installed on the vacuum pump support 50, and is connected with the upper barrel 70 through the pipeline after being started, so as to extract the air in the upper barrel 70 to form a vacuum environment. The vacuum gauge 52 is installed on one side of the upper barrel 70, and displays the internal vacuum degree in real time. The pressure transmitter 53 penetrates through the side wall of the upper barrel 70 at the bottom, monitors the internal pressure change, and guarantees the stability of the vacuum environment and the safety of the equipment.
[0076] Stirring barrel lifting and material loading and unloading:
[0077] Lifting assembly: the lifting speed reducer 20 drives the screw rod 21 to rotate, drives the barrel arm 23, and makes the barrel seat 24 move up and down on the guide rail 25, so as to realize the lifting of the stirring barrel 80.
[0078] Material handling: the stirring barrel 80 rises and matches with the upper barrel 70 to stir, and falls after completion. The positioning pin outside the stirring barrel 80 is used for accurate positioning, the manual ball valve 82 at the bottom controls material discharge, the moving seat 83 facilitates the stirring barrel 80 to move, and the hydraulic quick connector 84 facilitates connection with other equipment. The perspective mirrors 71 on the two sides of the upper barrel 70 facilitate observation of the internal material condition, and the quick-mount pneumatic valve 72 can be used for feeding or exhaust operation.
[0079] It can be understood by those skilled in the art that the features recorded in various embodiments and / or claims of the present application can be combined or / and combined in various ways, even if such combinations or combinations are not explicitly recorded in the present application. In particular, the features recorded in various embodiments and / or claims of the present application can be combined and / or combined in various ways without departing from the spirit and teachings of the present application. All these combinations and / or combinations fall within the scope of the present application.
Claims
1. An anticorrosive double-planetary vacuum mixer characterized by comprising: Include: Rack, lifting assembly, stirring drive assembly, dispersion drive assembly and vacuum assembly, the inner part of the rack is respectively installed with stirring drive assembly and dispersion drive assembly; One side of the rack is installed with upper barrel, the inside of the upper barrel is installed with stirring assembly, the vacuum assembly includes vacuum pump support, vacuum pump, vacuum gauge and pressure transmitter, the vacuum pump support is installed at the inner bottom end of the rack, the top surface of the vacuum pump support is threadedly connected with vacuum pump, 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, the stirring drive assembly and the dispersion drive assembly are respectively drivingly connected with the input end of the stirring assembly, the bottom of the upper barrel is adapted with stirring barrel, The stirring assembly includes revolving bearing seat, driven pulley, revolving main shaft, driven sprocket, revolving main shaft, sun gear, planetary gear, stirring shaft, stirring paddle, driving synchronous pulley, driven synchronous pulley, synchronous belt and dispersion shaft, the inside of the revolving bearing seat is rotatably connected with revolving main shaft, the outside of the revolving main shaft is sequentially provided from top to bottom with driven sprocket and sun gear, the inside of the revolving main shaft is provided with revolving main shaft, the top of the revolving main shaft is fixedly connected with driven pulley, the two sides of the sun gear are symmetrically meshed with planetary gears, the inside of the planetary gear is fixedly connected with stirring shaft, the bottom of the stirring shaft is fixedly connected with stirring paddle, the bottom of the revolving main shaft is fixedly connected with driving synchronous pulley, the outside of the driving synchronous pulley is symmetrically drivingly connected with driven synchronous pulley through synchronous belt, the inside of the driven synchronous pulley is fixedly connected with dispersion shaft, the stirring drive assembly includes first servo motor, speed reducer, stirring motor base, speed reducer adjusting block, driving sprocket and chain, the output shaft of the top of the first servo motor is drivingly connected with speed reducer, the speed reducer is installed on the bottom surface of the stirring motor base, the speed reducer adjusting block is installed on one side of the stirring motor base, the speed reducer adjusting block is electrically connected with the speed reducer, the output shaft of the speed reducer is fixedly connected with driving sprocket, the outside of the driving sprocket is drivingly connected with driven sprocket through chain.
2. The anti-corrosion dual-planet vacuum blender of claim 1, wherein: The dispersion drive assembly includes second servo motor, dispersion motor base, driving pulley and V-belt, the upper and lower sides of the dispersion motor base are respectively installed with driving pulley and second servo motor, the output shaft of the second servo motor penetrates through the inside of the dispersion motor base and is drivingly connected with driving pulley, the outside of the driving pulley is drivingly connected with driven pulley through V-belt.
3. The anti-corrosion dual-planet vacuum blender of claim 1, wherein: The lifting assembly includes lifting speed reducer, lead screw, bearing and bearing seat, barrel supporting arm, barrel supporting seat and guide rail; The lifting speed reducer, lead screw, bearing and bearing seat and barrel supporting arm are installed on one side of the inside of the rack, the barrel supporting seat and guide rail are located on one side of the outside of the rack, 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 lead screw.
4. The anti-corrosion dual-planetary vacuum mixer according to claim 3, wherein: The outer side of the stirring barrel is provided with positioning pins which are symmetrical to each other, the bottom of the stirring barrel is provided with a manual ball valve, the bottom of the stirring barrel is provided with moving seats which are symmetrical to each other, and one side of the stirring barrel is provided with a hydraulic quick connector.
5. The anti-corrosion dual-planet vacuum blender of claim 1, wherein: The upper barrel is provided with perspective mirrors which are symmetrical to each other, and the upper part of each perspective mirror is provided with a quick-mount pneumatic valve.
Citation Information
Patent Citations
Double-planet stirrer
CN208839470U