Cobalt sulfate extraction device
Technical Field
The utility model relates to the technical field related to cobalt sulfate extraction, in particular to a cobalt sulfate extraction device.
Background
Cobalt sulfate extraction devices are generally used for extracting cobalt with higher purity from cobalt sulfate solution, but the existing cobalt sulfate extraction devices have certain defects in use, such as;
For example, the cobalt sulfate crystallization device with the publication number of CN206138777U realizes the automatic adjustment of the temperature in the crystallization tank and can be positioned in the optimal temperature range of cobalt sulfate crystallization through the cooperation of the refrigeration device, the temperature sensor and the controller, has high intelligent degree, and the stirring paddle of the crystallization device is sequentially provided with a top paddle, a propeller blade, a small U-shaped paddle, a large U-shaped paddle and a bottom paddle from top to bottom, so that the stirring of cobalt sulfate can be ensured to be sufficient, the cobalt sulfate can be crystallized uniformly, and meanwhile, the phenomenon that cobalt sulfate crystals block a feed inlet is avoided.
However, the cobalt sulfate crystallization device still has the following defects in the actual use process:
Through stirring rake from last to having set gradually top paddle, screw blade, little U type paddle, big U type paddle and end paddle down, can guarantee to stir abundant to the cobalt sulfate, in the in-service use, the multiple different paddle designs of use can increase the complexity of agitator for holistic energy consumption increases, has reduced energy efficiency, not only probably influences stirring effect and product quality, can increase the work load and the degree of difficulty of maintaining and changing the part moreover, thereby leads to equipment cost increase and the complexity of maintaining and maintaining rise.
Aiming at the problems, innovative design is urgently needed on the basis of the original cobalt sulfate extraction device, so that the cobalt sulfate extraction device can be well solved.
Disclosure of utility model
The utility model aims to provide a cobalt sulfate extraction device, which aims to solve the problems that in the prior market, a top blade, a propeller blade, a small U-shaped blade, a large U-shaped blade and a bottom blade are sequentially arranged from top to bottom through stirring paddles, so that the stirring of cobalt sulfate can be ensured to be sufficient, in the actual use process, the complexity of a stirrer can be increased by using a plurality of different blade designs, the overall energy consumption is increased, the energy efficiency is reduced, the stirring effect and the product quality can be influenced, the workload and difficulty of maintenance and replacement of components can be increased, and the equipment cost and the complexity of maintenance and repair are increased.
In order to achieve the aim, the utility model provides the following technical scheme that the cobalt sulfate extraction device comprises a base;
The base upper end is provided with the heating member, the mixing box is installed to the heating member upper end, be provided with biax motor on the mixing box, biax motor first output is connected with stirring subassembly, stirring subassembly is including connecting the dwang at biax motor first output, dwang through-connection is inside the mixing box, the dwang outside is provided with the puddler, the puddler end connection has the scraper blade, stirs through the cooperation of puddler with the scraper blade.
Preferably, a hopper is arranged at the top of the mixing box, and a first pipeline is arranged at the bottom of the hopper.
Preferably, the first pipeline is provided with a metering valve, the first pipeline is connected inside the mixing box in a penetrating way, and a feed inlet is arranged below the first pipeline.
Preferably, the second output end of the double-shaft motor is connected with a driving assembly, the driving assembly comprises a driving shaft connected to the second output end of the double-shaft motor, a first belt pulley is arranged on the driving shaft, and the first belt pulley is in a transmission structure with the second belt pulley through a driving belt.
Preferably, the inside pivot of second belt pulley is connected on the delivery pump, the delivery pump output is connected inside the mixing box, the delivery pump input is connected with the second pipeline, second pipeline through connection is inside the liquid storage cavity, the liquid storage cavity is seted up inside the auxiliary tank, the auxiliary tank is installed at mixing box side.
Preferably, the auxiliary box is internally provided with a heat storage cavity, a fan is arranged in the heat storage cavity, the input end of the fan is connected with a first conveying pipe, and the first conveying pipe is connected with the side end of the heating element.
Preferably, the first conveying pipe is provided with a through groove, the output end of the fan is connected with a second conveying pipe, the second conveying pipe is connected with a heating plate through a conveying pipeline, and the heating plate is arranged at the bottom of the liquid storage cavity.
Preferably, the end part of the second conveying pipe is connected with a heating pipeline, the heating pipeline is arranged inside the storage tank, the storage tank is arranged inside the mixing box, and an insulating layer is arranged inside the heat storage cavity.
Compared with the prior art, the cobalt sulfate extraction device has the beneficial effects that the stirring rod outside the stirring rod is used for stirring materials in the mixing box through the rotation of the stirring rod of the stirring assembly, so that the problems that the complexity of the stirrer is increased due to the arrangement of a plurality of different paddles are reduced, the overall mixing efficiency is improved through the arrangement of the scraping plates, the problem of cost increase caused by the use of more parts for mixing is reduced, and the maintenance time and cost are reduced, and the concrete contents are as follows:
(1) The stirring rod and the scraping plate of the stirring assembly are matched for use, so that the problem that the complexity of the stirrer is increased due to the arrangement of a plurality of different paddles is solved, the problem of cost increase caused by the use of more parts for mixing is solved, and the maintenance time and cost are reduced;
(2) The cobalt powder required by extracting the cobalt sulfate is poured into the hopper, and is guided into the mixing box through the cooperation of the first pipeline and the feed inlet, the volume of the cobalt powder is conveniently known through the metering valve, the inconvenience caused by pouring the weighed cobalt powder is reduced, and the overall extraction efficiency is improved;
(3) The driving shaft of the driving assembly drives the first belt pulley to rotate, so that the second belt pulley is conveniently driven by the cooperation of the first belt pulley and the driving belt, the rotating shaft inside the second belt pulley drives the conveying pump, and the problem of cost increase caused by the need of arranging more driving structures is solved;
(4) The fan is convenient to convey the air with higher temperature in the heating part to the inside of the heat storage cavity, and the heat insulation layer is arranged in the heat storage cavity, so that the hot air is convenient to store in a heat insulation way, the later use is convenient, and the problem of resource waste is reduced;
(5) The fan is with hot air transmission to the hot plate for the hot plate heats the inside sulfuric acid solution of stock solution chamber, has reduced the lower extraction efficiency that leads to of sulfuric acid solution temperature and has reduced the problem that the extraction efficiency reduces, through the fan with hot air transmission to heating pipeline inside, has reduced the whole heating efficiency that only leads to through bottom heating.
Drawings
FIG. 1 is a schematic diagram of the overall structure of the present utility model;
FIG. 2 is a schematic view of the internal structure of the mixing box of the present utility model;
FIG. 3 is a schematic view of the connection structure of the first pipeline and the metering valve according to the present utility model;
FIG. 4 is a schematic diagram of the connection structure of the rotating rod and the stirring rod;
FIG. 5 is an enlarged schematic view of the structure of FIG. 2A according to the present utility model;
FIG. 6 is a schematic view of the overall cut-away structure of the present utility model;
fig. 7 is an enlarged view of the structure of fig. 6B according to the present utility model.
The device comprises a base, a heating element, a mixing box, a hopper, a first pipeline, a metering valve, a 7, a feeding port, a 8, a double-shaft motor, a 9, a rotating rod, a 10, a stirring rod, a 11, a scraping plate, a 12, a driving shaft, a 13, a first belt pulley, a 14, a driving belt, a 15, a second belt pulley, a 16, a conveying pump, a 17, a second pipeline, a 18, an auxiliary box, a 19, a liquid storage cavity, a 20, a fan, a 21, a first conveying pipe, a 22, a through groove, a 23, a heat storage cavity, a 24, a second conveying pipe, a 25, a conveying pipe, a 26, a heating plate, a 27, a storage groove, a 28, a heating pipe, a 29 and a heat insulation layer.
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.
Embodiment one:
In this embodiment, in order to improve the overall mixing efficiency, the stirring assembly is used, in order to reduce the problem that the complexity of the stirrer is increased by arranging a plurality of different paddles, as shown in fig. 1-4, the technical scheme comprises a base 1, a heating element 2 is arranged at the upper end of the base 1, a mixing box 3 is arranged at the upper end of the heating element 2, a double-shaft motor 8 is arranged on the mixing box 3, a stirring assembly is connected at a first output end of the double-shaft motor 8, the stirring assembly comprises a rotating rod 9 connected at the first output end of the double-shaft motor 8, the rotating rod 9 is connected inside the mixing box 3 in a penetrating way, a stirring rod 10 is arranged at the outer side of the rotating rod 9, a scraping plate 11 is connected at the end part of the stirring rod 10, the stirring rod 11 is matched with the stirring plate 11 for stirring, a hopper 4 is arranged at the top of the mixing box 3, a first pipeline 5 is arranged at the bottom of the hopper 4, the first pipeline 5 is provided with the metering valve 6, the first pipeline 5 is connected inside the mixing box 3 in a penetrating way, the feeding port 7 is arranged below the first pipeline 5, the heating piece 2 on the base 1 is opened, the mixing box 3 is conveniently heated, the later extraction operation is conveniently carried out, cobalt powder required by extracting cobalt sulfate is poured into the hopper 4, at the moment, the cobalt powder is led into the mixing box 3 through the cooperation of the first pipeline 5 and the feeding port 7, the metering valve 6 is arranged on the first pipeline 5, so that the volume of the cobalt powder led into the mixing box 3 can be known, the mixing can be conveniently carried out according to the requirement, the overall operation efficiency is improved, the inconvenience problem caused by pouring the cobalt powder after weighing is reduced, the overall extraction efficiency is improved, the double-shaft motor 8 is opened at the moment, the rotary rod 9 is driven to rotate through the first output end of the double-shaft motor 8, make puddler 10 in dwang 9 outside stir the operation, reduced and set up the complexity problem that multiple different paddles increased the agitator for the whole energy consumption that is convenient for reduce, and the scraper blade 11 that sets up improves whole efficiency that mixes, has reduced the problem that the cost that uses more parts to mix to lead to increases, and makes things convenient for later maintenance operation, has improved holistic life, has reduced the time and the cost of maintaining.
Embodiment two:
In this embodiment, in order to improve the overall feeding efficiency, the feeding device is used by a driving assembly, in order to reduce the problem of cost increase caused by the need of arranging more driving structures, particularly as shown in fig. 2 and 5, a second output end of the dual-shaft motor 8 is connected with the driving assembly, the driving assembly comprises a driving shaft 12 connected with the second output end of the dual-shaft motor 8, a first belt pulley 13 is arranged on the driving shaft 12, the first belt pulley 13 and a second belt pulley 15 are in a transmission structure through a driving belt 14, an internal rotating shaft of the second belt pulley 15 is connected with a conveying pump 16, an output end of the conveying pump 16 is connected inside a mixing box 3, an input end of the conveying pump 16 is connected with a second pipeline 17, the second pipeline 17 is connected inside a liquid storage cavity 19 in a penetrating manner, the liquid storage cavity 19 is arranged inside an auxiliary box 18, the auxiliary box 18 is installed at the mixing box 3 side, when biax motor 8 uses, its second output drives drive shaft 12 and rotates, make the epaxial first belt pulley 13 of drive rotate of drive, facilitate the use first belt pulley 13 and drive belt 14's cooperation drives second belt pulley 15, facilitate the use the inside pivot of second belt pulley 15 drives delivery pump 16, the problem that the cost increase that needs to set up more drive structure to lead in has been reduced, into the liquid storage cavity 19 inside of auxiliary box 18 sulfuric acid solution, and delivery pump 16 conveniently conveys the inside sulfuric acid of auxiliary box 18 through second pipeline 17, the convenience is led into inside and cobalt powder of hopper 4 with sulfuric acid and is mixed the operation, the efficiency of whole extraction has been improved.
Embodiment III:
In this embodiment, in order to improve the utilization rate of the whole resources, the hot air is conveyed by the blower 20, in order to reduce the problem of lower whole heating efficiency caused by bottom heating only, specifically, as shown in fig. 6 and 7, a heat storage cavity 23 is provided inside the auxiliary box 18, the blower 20 is installed inside the heat storage cavity 23, the input end of the blower 20 is connected with a first conveying pipe 21, the first conveying pipe 21 is connected with the side end of the heating element 2, the first conveying pipe 21 is provided with a through groove 22, the output end of the blower 20 is connected with a second conveying pipe 24, the second conveying pipe 24 is connected with a heating plate 26 through a conveying pipe 25, the heating plate 26 is installed at the bottom of the liquid storage cavity 19, the end of the second conveying pipe 24 is connected with a heating pipe 28, the heating pipe 28 is installed inside the object placing groove 27, the object placing groove 27 is provided inside the mixing box 3, the cavity 23 is internally provided with a heat preservation layer 29, the fan 20 is turned on, the air with higher temperature inside the heating element 2 is conveyed through the first conveying pipe 21, and is led into the heat storage cavity 23 through the through groove 22 formed in the first conveying pipe 21, the heat insulation layer 29 is arranged inside the heat storage cavity 23, so that hot air is conveniently stored, the later conveying operation is convenient, the problem of resource waste caused by temperature rise from room temperature is reduced, the hot air is conveniently conveyed through the second conveying pipe 24, the hot air is conveniently conveyed onto the heating plate 26 through the conveying pipe 25, the sulfuric acid solution inside the liquid storage cavity 19 is conveniently heated through the heating plate 26, the problem of extraction efficiency reduction caused by lower temperature of the sulfuric acid solution is reduced, the conveying pipe 25 conveys the hot air into the heating pipe 28 of the storage groove 27, the heating pipe 28 is convenient for heating the mixing box 3, the problem of lower overall heating efficiency caused by bottom heating only is reduced, the mixing box 3 is convenient to heat up rapidly, the overall service life is prolonged, and the contents which are not described in detail in the specification belong to the prior art known to the expert in the field.
Although the present utility model has been described with reference to the foregoing embodiments, it will be apparent to those skilled in the art that modifications may be made to the embodiments described, or equivalents may be substituted for elements thereof, and any modifications, equivalents, improvements and changes may be made without departing from the spirit and principles of the present utility model.