Raw material mixing device for preparing chemical products
Technical Field
The utility model relates to the technical field of chemical raw material mixing devices, in particular to a raw material mixing device for preparing chemical products.
Background
Chemical industry is a shorthand form of terms such as "chemical process", "chemical industry" and "chemical engineering". Any technology that uses chemical means to change the composition, structure, or create new materials is classified as chemical production technology, i.e., chemical processes, and the output is named chemical or chemical product. In the process of processing chemical products, chemical raw material mixing devices are commonly used.
The existing chemical raw material mixing device is often only provided with a stirring rod, so that chemical raw materials are not thoroughly mixed, and materials are easy to remain on the inner wall of the device in the use process and difficult to clean.
Disclosure of utility model
In order to solve the defects in the prior art, the utility model provides a raw material mixing device for preparing chemical products.
The utility model adopts the technical scheme that a raw material mixing device for preparing chemical products,
The further improvement to above-mentioned scheme is, including blending tank and mount, mount and blending tank top fixed connection, blending tank one side is provided with defeated material passageway, be provided with the motor on the defeated material passageway, the motor output is provided with the spiral pivot, be provided with defeated material auger in the spiral pivot, the spiral pivot is terminal to run through the mount, the spiral pivot rotates with the mount to be connected, be provided with main helical gear on the spiral pivot end, mount bottom rotates and is connected with stirring pivot one, stirring pivot one runs through the mount, stirring pivot one top is provided with down the helical gear, lower helical gear and main helical gear meshing are connected, be provided with a plurality of equidistance distribution's puddler one on the stirring pivot one.
The further improvement to above-mentioned scheme does, the mount top rotates and is connected with main pivot, main pivot runs through the mount, main pivot bottom is provided with the helical gear, it is connected with main helical gear meshing to go up the helical gear, be provided with the action wheel in the main pivot, be provided with four circumference equidistance stirring pivot second in the mixing drum, stirring pivot second all rotates with mixing drum top and is connected, all be provided with from the driving wheel in the stirring pivot second, all be connected with the action wheel meshing from the driving wheel, all be provided with a plurality of equidistance puddler second of distribution on the stirring pivot second.
The stirring rod I and the stirring rod II are arranged in a staggered mode, the length of the stirring rod I is equal to that of the stirring rod II, and the distance between the stirring rotating shaft I and the stirring rotating shaft II is greater than that of the stirring rod I and the stirring rod II.
The stirring device is characterized in that a scraping rod is arranged at the bottom of the stirring rotating shaft, and the scraping rod is clung to the bottom and the side face of the mixing barrel.
The technical scheme is further improved in that a discharging pipe is arranged at the bottom of the mixing barrel, and a valve is arranged on the discharging pipe.
A further improvement of the scheme is that a funnel is arranged on the material conveying channel.
The scheme is further improved in that a plurality of support columns are arranged on the outer side of the bottom of the mixing drum.
Compared with the prior art, the utility model has the beneficial effects that:
According to the first aspect, through the meshing transmission of the main bevel gear and the lower bevel gear, the meshing transmission of the upper bevel gear and the main bevel gear and the meshing transmission of the driving wheel and the driven wheel, the stirring rod I and the stirring rod II rotate in two phases, the stirring effect is better, and chemical raw materials are fully mixed.
In the second aspect, the chemical raw materials are conveyed, mixed and stirred and the cleaning work of the inner wall of the mixing drum is realized through the same motor, and the structural design is simple, stable, reasonable and ingenious and has strong practicability.
Drawings
The accompanying drawings are included to provide a further understanding of the utility model and are incorporated in and constitute a part of this specification, illustrate the utility model and together with the embodiments of the utility model, serve to explain the utility model. In the drawings:
FIG. 1 is a schematic diagram of the structure of the present utility model;
FIG. 2 is a schematic diagram of the cooperation structure of the driving wheel and the driven wheel;
FIG. 3 is an enlarged schematic view of the portion A in FIG. 2;
In the figure, a mixing drum 1, a fixing frame 2, a material conveying channel 3, a motor 4, a spiral rotating shaft 5, a material conveying auger 6, a main bevel gear 7, a stirring rotating shaft 8, a lower bevel gear 9, a stirring rod 10, a main rotating shaft 11, an upper bevel gear 12, a driving wheel 13, a stirring rotating shaft 14, a driven wheel 15, a stirring rod 16, a scraping rod 17, a discharging pipe 18, a valve 19, a funnel 20 and a supporting column 21.
Detailed Description
The preferred embodiments of the present utility model will be described below with reference to the accompanying drawings, it being understood that the preferred embodiments described herein are for illustration and explanation of the present utility model only, and are not intended to limit the present utility model.
The utility model provides a raw materials mixing arrangement is used in chemical industry product preparation, includes mixing drum 1 and mount 2, mount 2 and mixing drum 1 top fixed connection, mixing drum 1 one side is provided with defeated material passageway 3, be provided with motor 4 on the defeated material passageway 3, motor 4 output is provided with spiral pivot 5, be provided with defeated material auger 6 in the spiral pivot 5, spiral pivot 5 end runs through mount 2, spiral pivot 5 rotates with mount 2 to be connected, be provided with main helical gear 7 on the spiral pivot 5 end, mount 2 bottom rotates and is connected with stirring pivot one 8, stirring pivot one 8 runs through mount 2, stirring pivot one 8 top is provided with helical gear 9 down, helical gear 9 and main helical gear 7 meshing are connected down, be provided with a plurality of equidistance distribution's puddler one 10 on the stirring pivot one 8. The chemical raw materials are added into the material conveying channel 3, the motor 4 is started, the material conveying auger 6 conveys the chemical raw materials into the mixing barrel 1, the chemical raw materials are prevented from remaining in the material conveying channel 3, the stirring rotating shaft I8 rotates through the meshing transmission of the main bevel gear 7 and the lower bevel gear 9, and the stirring rod I10 on the stirring rotating shaft I8 stirs the chemical raw materials in the mixing barrel 1.
The stirring device comprises a fixing frame 2, a main rotating shaft 11 penetrates through the fixing frame 2, an upper bevel gear 12 is arranged at the bottom of the main rotating shaft 11, the upper bevel gear 12 is connected with a main bevel gear 7 in a meshed mode, a driving wheel 13 is arranged on the main rotating shaft 11, stirring rotating shafts II 14 distributed at equal intervals on four circumferences are arranged in a mixing barrel 1, the stirring rotating shafts II 14 are all rotationally connected with the top of the mixing barrel 1, driven wheels 15 are arranged on the stirring rotating shafts II 14, the driven wheels 15 are connected with the driving wheel 13 in a meshed mode, and stirring rods II 16 distributed at equal intervals are arranged on the stirring rotating shafts II 14. The main rotating shaft 11 is rotated through the meshing transmission of the upper bevel gear 12 and the main bevel gear 7, the four driven wheels 15 are rotated through the meshing transmission of the driving wheel 13 and the driven wheels 15, so that the four stirring rotating shafts II 14 are rotated, the stirring rods II 16 on the stirring rotating shafts II 14 stir chemical raw materials in the mixing drum 1, and the stirring rods I10 and the stirring rods II 16 rotate oppositely due to the fact that the rotation directions of the main rotating shaft 11 and the stirring rotating shaft I8 are opposite, the stirring effect is better, and the chemical raw materials are fully mixed.
The stirring rod I10 and the stirring rod II 16 are arranged in a staggered mode, the length of the stirring rod I10 is equal to that of the stirring rod II 16, and the distance between the stirring rotating shaft I8 and the stirring rotating shaft II 14 is greater than that of the stirring rod I10 and the stirring rod II 16. The dislocation arrangement prevents the first stirring rod 10 from colliding with the second stirring rod 16, the first stirring rotating shaft 8 from colliding with the second stirring rod 16, and the second stirring rotating shaft 14 from colliding with the first stirring rod 10.
Wherein, the bottom of the first stirring rotating shaft 8 is provided with a scraping rod 17, and the scraping rod 17 is clung to the bottom and the side surface of the mixing drum 1. When the stirring rotating shaft I8 rotates, the scraping rod 17 rotates along with the stirring rotating shaft I8 to scrape the bottom and the side wall of the mixing barrel 1, and the residual materials on the inner wall of the mixing barrel 1 are discharged.
The bottom of the mixing barrel 1 is provided with a discharging pipe 18, and a valve 19 is arranged on the discharging pipe 18. When the chemical raw materials are mixed, the valve 19 is opened to collect the chemical raw materials through the discharging pipe 18.
Wherein, the material conveying channel 3 is provided with a funnel 20. The chemical raw materials are conveniently added into the material conveying channel 3 by workers.
Wherein, a plurality of support columns 21 are arranged on the outer side of the bottom of the mixing drum 1.
Working principle:
When in use, a plurality of groups of chemical raw materials are added into the material conveying channel 3 through the funnel 20, and the motor 4 is started. The chemical raw materials are conveyed into the mixing barrel 1 by the conveying auger 6, are prevented from remaining in the conveying channel 3, and are meshed and driven with the lower bevel gear 9 through the main bevel gear 7, so that the stirring rotating shaft I8 rotates, and the stirring rod I10 on the stirring rotating shaft I8 stirs the chemical raw materials in the mixing barrel 1. The main rotating shaft 11 is rotated through the meshing transmission of the upper bevel gear 12 and the main bevel gear 7, the four driven wheels 15 are rotated through the meshing transmission of the driving wheel 13 and the driven wheels 15, so that the four stirring rotating shafts II 14 are rotated, the stirring rods II 16 on the stirring rotating shafts II 14 stir chemical raw materials in the mixing drum 1, and the stirring rods I10 and the stirring rods II 16 rotate oppositely due to the fact that the rotation directions of the main rotating shaft 11 and the stirring rotating shaft I8 are opposite, the stirring effect is better, and the chemical raw materials are fully mixed. The scraping rod 17 rotates along with the stirring rotating shaft I8 to scrape the bottom and the side wall of the mixing drum 1 and discharge the residual materials on the inner wall of the mixing drum 1.
In the description of the present utility model, it should be noted that, unless otherwise indicated, the meaning of "a plurality" means two or more, and the orientation or positional relationship indicated by the terms "upper", "lower", "left", "right", "inner", "outer", "top", "bottom", etc. are based on the orientation or positional relationship shown in the drawings, are merely for convenience of describing the present utility model and simplifying the description, and do not indicate or imply that the apparatus or elements referred to must have a specific orientation, be constructed and operated in a specific orientation, and thus should not be construed as limiting the present utility model.
While the present utility model has been described in detail through the foregoing description of the preferred embodiment, it should be understood that the foregoing description is not to be considered as limiting the utility model. Many modifications and substitutions of the present utility model will become apparent to those of ordinary skill in the art upon reading the foregoing. Accordingly, the scope of the utility model should be limited only by the attached claims.