Mixer is used in production of high-pressure real power type lithium manganate
Technical Field
The utility model relates to a blendor technical field specifically is a blendor is used in production of high-compaction power type lithium manganate.
Background
The lithium manganate is mainly spinel lithium manganate which is a cathode material with a three-dimensional lithium ion channel prepared by foreigners in 1981, so far, the spinel lithium manganate is greatly concerned by many scholars and researchers at home and abroad, and has the advantages of low price, high potential, environmental friendliness, high safety performance and the like as an electrode material, and is a cathode material which is hopeful to replace lithium cobaltate to become a new generation of lithium ion battery.
Disclosure of Invention
The to-be-solved technical problem of the utility model is to overcome current defect, provide a blendor is used in production of high-compaction power type lithium manganate, simple structure, it is easy and simple to handle, not only make to mix quicker, make the mixed effect better moreover, can effectively solve the problem in the background art.
In order to achieve the above object, the utility model provides a following technical scheme: the utility model provides a blendor is used in production of high-pressure real power type lithium manganate, includes compounding subassembly, inside compounding subassembly, supporting component and compounding bucket, the supporting component includes supporting baseplate, and the upper surface of supporting baseplate is equipped with four supporting legs, is equipped with the compounding bucket between the upper end of four supporting legs, and the inside of compounding bucket is equipped with inside compounding subassembly to the right-hand member opening part of compounding bucket is equipped with the connecting cover, and the centre of connecting cover is equipped with the compounding subassembly, the upper surface of supporting baseplate is equipped with the control switch to device control.
Further, the compounding bucket includes the staving, is equipped with the feed column in the middle of the upper end of staving, and the upper end of feed column is the toper structure, and the lower extreme of staving is equipped with ejection of compact post, is equipped with discharge valve on the ejection of compact post, and the right-hand member outside of staving is equipped with flange, can be with inside the leading-in staving of raw materials through the feed column, opens through discharge valve and to derive the raw materials that can mix staving inside for it is more convenient to derive the raw materials.
Further, inside compounding subassembly is including setting up the connection pad at the inside left end of staving, the edge of connection pad evenly be equipped with the staving inner wall on the connection scraper blade of laminating, the left end of staving is equipped with and drives connection pad pivoted motor two, and the output of motor two's input electricity connection control switch can drive the connection pad through motor two and rotate, can drive the connection scraper blade through the connection pad and rotate, can stir the mixture to the raw materials through the connection scraper blade for it is more convenient to mix.
Further, the connecting cover comprises a cover plate, a sealing ring is arranged on one side of the cover plate, the outer side of the sealing ring corresponds to the inner side of the barrel body, one end of the barrel body can be sealed through the connecting cover, and the connecting cover and the barrel body are connected more tightly through the sealing ring.
Further, the compounding subassembly is including inlaying the connection shell of covering in the connection, and the left end of connection shell is located the inside of staving, and connects the shell and be the cuboid structure, and one side that the connection shell is located the staving inside evenly is equipped with the (mixing) shaft of rotation connection, and the (mixing) shaft is located the inside one end of connection shell and is equipped with gear one, the one end side that the connection shell is located the staving outside is equipped with motor one, and the output shaft of motor one is located and connects shell one end and be equipped with gear two, is equipped with the chain between gear two and the gear one, and the output of the input electric connection control switch of motor one can drive gear two through motor one and rotate, drives the (mixing) shaft through gear two, chain and the transmission of gear one and rotates, makes the compounding.
Compared with the prior art, the beneficial effects of the utility model are that: this blendor is used in production of high-compaction power type lithium manganate has following benefit:
1. the utility model discloses on set up the feed column, can be with the leading-in staving inside of raw materials through the feed column, open through ejection of compact valve and to derive the raw materials that can mix staving inside for it is more convenient to derive the raw materials, can drive the connection pad through motor two and rotate, can drive the connection scraper blade through the connection pad and rotate, can stir the mixture to the raw materials through the connection scraper blade, makes and mixes more convenient.
2. The utility model discloses on set up the connection lid, can seal the one end of staving through connecting the lid, make connection lid and staving connect more closely through the sealing ring.
3. The utility model discloses on set up motor one, can drive gear two through motor one and rotate, drive the (mixing) shaft through gear two, chain and gear transmission and rotate, make the compounding effect better through the (mixing) shaft, for people provide convenience, this blendor is used in the production of high-pressure real power type lithium manganate, simple structure, it is easy and simple to handle, not only make to mix quicker, make moreover to mix the effect better.
Drawings
FIG. 1 is a schematic structural view of the present invention;
FIG. 2 is a schematic side view of the present invention;
FIG. 3 is a schematic view of the internal structure of the mixing barrel of the present invention;
figure 4 is the utility model discloses compounding subassembly inner structure sketch map.
In the figure: 1 mixing component, 11 gear I, 12 stirring shafts, 13 connecting shell, 14 chain, 15 gear II, 16 motor I, 2 internal mixing component, 21 motor II, 22 connecting disc, 23 connecting scraper, 3 control switch, 4 supporting component, 41 supporting legs, 42 supporting base plate, 5 mixing barrel, 51 discharging valve, 52 barrel body, 53 feeding column, 54 connecting flange, 6 connecting cover, 61 sealing ring and 62 cover plate.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
Referring to fig. 1-4, the present invention provides a technical solution: a high-pressure power type mixer for producing lithium manganate comprises a mixing component 1, an internal mixing component 2, a supporting component 4 and a mixing barrel 5, wherein the supporting component 4 comprises a supporting base plate 42, the upper surface of the supporting base plate 42 is provided with four supporting legs 41, the mixing barrel 5 is arranged between the upper ends of the four supporting legs 41, the internal mixing component 2 is arranged inside the mixing barrel 5, a connecting cover 6 is arranged at the opening at the right end of the mixing barrel 5, the mixing component 1 is arranged in the middle of the connecting cover 6, the upper surface of the supporting base plate 42 is provided with a control switch 3 for controlling the device, the mixing barrel 5 comprises a barrel body 52, a feeding column 53 is arranged in the middle of the upper end of the barrel body 52, the upper end of the feeding column 53 is of a conical structure, the lower end of the barrel body 52 is provided with a discharging column, the discharging valve 51 is arranged on the discharging column, the outer side of the right end of the barrel, the raw materials mixed in the barrel body 52 can be led out by opening the discharge valve 51, so that the raw materials can be led out more conveniently, the internal mixing component 2 comprises a connecting disc 22 arranged at the left end in the barrel body 52, the edge of the connecting disc 22 is uniformly provided with a connecting scraper 23 attached to the inner wall of the barrel body 52, the left end of the barrel body 52 is provided with a motor II 21 driving the connecting disc 22 to rotate, the input end of the motor II 21 is electrically connected with the output end of the control switch 3, the motor II 21 can drive the connecting disc 22 to rotate, the connecting scraper 23 can be driven to rotate through the connecting disc 22, the raw materials can be stirred and mixed through the connecting scraper 23, so that the mixing is more convenient, the connecting cover 6 comprises a cover plate 62, one side of the cover plate 62 is provided with a sealing ring 61, the outer side of the sealing ring 61 corresponds to the inner side of the barrel body 52, one end of the, the mixing component 1 comprises a connecting shell 13 embedded on a connecting cover 6, the left end of the connecting shell 13 is positioned inside a barrel body 52, the connecting shell 13 is of a cuboid structure, a rotatably connected mixing shaft 12 is uniformly arranged on one side of the connecting shell 13 positioned inside the barrel body 52, a first gear 11 is arranged at one end of the mixing shaft 12 positioned inside the connecting shell 13, a first motor 16 is arranged on the side surface of one end of the connecting shell 13 positioned outside the barrel body 52, a second gear 15 is arranged at one end of an output shaft of the first motor 16 positioned at one end of the connecting shell 13, a chain 14 is arranged between the second gear 15 and the first gear 11, the input end of the first motor 16 is electrically connected with the output end of a control switch 3, the second gear 15 can be driven to rotate by the first motor 16, the mixing shaft 12 is driven to rotate by the second gear 15, the chain 14 and the first gear 11, this blendor is used in production of high-pressure real power type lithium manganate, simple structure, it is easy and simple to handle, not only make the mixture faster, make the mixed effect better moreover.
When in use: can be leading-in to staving 52 inside with the raw materials through feed column 53, open through discharge valve 51 and to derive the raw materials that can mix staving 52 inside, it is more convenient to make to derive the raw materials, can drive connection pad 22 through motor two 21 and rotate, can drive connection scraper 23 through connection pad 22 and rotate, can stir the mixture to the raw materials through connection scraper 23, can seal the one end of staving 52 through connecting lid 6, it is inseparabler to make connecting lid 6 and staving 52 connect through sealing ring 61, can drive two 15 rotations of gear through motor one 16, through two 15 gears, chain 14 and 11 transmission drive (mixing) shaft 12 rotations of gear one, it is better to make the compounding effect through (mixing) shaft 12.
Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims and their equivalents.