High-efficient powder desiccator
Technical Field
The utility model relates to the technical field of powder dryers, in particular to a high-efficiency powder dryer.
Background
The powder dryer is a device for drying industrial powder, is one of the most main processing and drying devices at present by matching a feeding machine, a dryer, hot air and the like into a professional powder dryer device according to different powder characteristics, is applied to a plurality of production fields, comprises structures of a professional rotary dryer, a three-cylinder dryer, a single-cylinder dryer and the like, is different in design and application according to different processed material internal structures and matched devices, has certain defects when the conventional powder dryer is used, hot air flows from one side to the other side when the powder is dried, is not uniform enough, is in a wet state before being dried, is easy to agglomerate and adhere to the inner wall of a dryer main body, is not uniform and thorough, is required to separate the powder from the hot air through a filter screen after the powder is dried, is easy to be blocked by the powder after being used for a long time, and is easy to detach and clean.
Disclosure of utility model
The utility model mainly aims to provide a high-efficiency powder dryer which can effectively solve the problems in the background technology.
In order to achieve the above purpose, the technical scheme adopted by the utility model is as follows:
The utility model provides a high-efficient powder desiccator, includes the desiccator main part, the air heater is inlayed and is installed to one side surface of desiccator main part, the opposite side surface of desiccator main part is inlayed and is installed dry structure, the surface of desiccator main part is located one side fixedly connected with collecting box, one side surface of collecting box is inlayed and is installed clean structure.
In a preferred embodiment, the dryer main body comprises a feed inlet, a shell and a conveying pipe, wherein the feed inlet is embedded and installed on one side of the surface of the shell, and the conveying pipe is embedded and installed on the other side of the surface of the shell.
In a preferred embodiment, the drying structure comprises a through hole, an air pipe, a driving motor, a motor shaft, scraping plates and connecting shafts, wherein the motor shaft is fixedly arranged on one side surface of the driving motor, the air pipe is fixedly arranged on one side surface of the motor shaft, the through holes are formed in the surface of the air pipe, the plurality of groups of through holes are formed in the surface of the air pipe, the connecting shafts are fixedly arranged on the surface of the air pipe, the connecting shafts are two groups, and the scraping plates are fixedly connected between the connecting shafts.
In a preferred embodiment, the air heater is embedded and installed on one side surface of the shell and embedded and installed in the air duct, the motor shaft is embedded and installed on the other side surface of the shell, and the scraping plate is in contact with the inner wall of the shell.
In a preferred embodiment, the cleaning structure comprises a cleaning brush, a cylinder, a hydraulic rod, a cross rod and a connecting rod, wherein the hydraulic rod is fixedly installed on one side surface of the cylinder, the connecting rod is fixedly installed on one side of the surface of the hydraulic rod, the cross rod is fixedly installed on the upper surface of the connecting rod, the cleaning brushes are fixedly installed on the upper surface of the cross rod at two side positions, and the cleaning brushes are two groups.
In a preferred embodiment, the collection box comprises a filter screen, a box body, a triangular plate, an air outlet and a discharge hole, wherein the air outlet is embedded and arranged on one side surface of the box body above, the discharge hole is arranged on one side surface of the box body below, the triangular plate is embedded and arranged on the inner side of the box body below, and the filter screen is embedded and arranged on the inner side of the box body above.
In a preferred embodiment, the cleaning structure and the collecting box are embedded and arranged between the air outlet and the discharge hole on one side surface of the box body through the hydraulic rod, and the conveying pipe is embedded and arranged below the filter screen on the other side surface of the box body.
In summary, due to the adoption of the technical scheme, the beneficial effects of the application are as follows:
According to the utility model, through the air pipes and the through holes, hot air conveyed by the air heater can be uniformly distributed in the shell through the through holes, so that uniformity of dry powder in the shell is improved, through the arranged driving motor, the scraping plate can be driven by the motor shaft to rotate, so that the scraping plate is contacted and rubbed with the inner wall of the shell, powder caking is prevented, the powder is adhered to the inner wall of the shell, and through the arranged cleaning brush, the air cylinder and the hydraulic rod, the hydraulic rod can drive the cleaning brush to move through the transverse rod, so that the cleaning brush rubs and cleans the filter screen, and the filter screen is prevented from being blocked by the powder.
Drawings
FIG. 1 is a schematic diagram of the overall structure of a high-efficiency powder dryer according to the present utility model;
FIG. 2 is a schematic view of the inside of a housing of a high efficiency powder dryer according to the present utility model;
FIG. 3 is a detailed view of a drying structure of a high-efficiency powder dryer according to the present utility model;
FIG. 4 is a schematic view of the inside of a tank of a high efficiency powder dryer according to the present utility model;
Fig. 5 is a detailed view of a cleaning structure of a high-efficiency powder dryer according to the present utility model.
The air dryer comprises a dryer body, a feeding hole, a 202, a shell, a 203, a conveying pipe, a 3, a drying structure, a 301, a through hole, a 302, an air pipe, a 303, a driving motor, a 304, a motor shaft, a 305, a scraper, a 306, a connecting shaft, a4, a cleaning structure, a 401, a cleaning brush, a 402, an air cylinder, a 403, a hydraulic rod, a 404, a cross rod, a 405, a connecting rod, a 5, a collecting box, a 501, a filter screen, a 502, a box, a 503, a triangular plate, a 504, an air outlet, a 505 and a discharging hole.
Detailed Description
For the purpose of making the objects, technical solutions and advantages of the embodiments of the present application more apparent, the technical solutions in the embodiments of the present application will be clearly and completely described in the following in conjunction with the embodiments of the present application, and it is apparent that the described embodiments are some embodiments of the present application, but not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the application without making any inventive effort, are intended to be within the scope of the application.
Referring to fig. 1 to 5, a high-efficiency powder dryer comprises a dryer main body 2, wherein a hot air blower 1 is embedded and installed on one side surface of the dryer main body 2, the hot air blower 1 is provided with a cool air inlet and a hot air outlet, the hot air blower is embedded and installed in an air pipe 302 through the hot air outlet, so that hot air is conveyed into the air pipe 302, a drying structure 3 is embedded and installed on the other side surface of the dryer main body 2, a collecting box 5 is fixedly connected on one side of the surface of the dryer main body 2, and a cleaning structure 4 is embedded and installed on one side surface of the collecting box 5;
The dryer main body 2 comprises a feed inlet 201, a shell 202 and a conveying pipe 203, wherein the feed inlet 201 is embedded and arranged on one side of the surface of the shell 202, and the conveying pipe 203 is embedded and arranged on the other side of the surface of the shell 202; the drying structure 3 comprises a through hole 301, an air pipe 302, a driving motor 303, a motor shaft 304, scraping plates 305 and connecting shafts 306, wherein the motor shaft 304 is fixedly arranged on one side surface of the driving motor 303, the air pipe 302 is fixedly arranged on one side surface of the motor shaft 304, the through holes 301 are formed in the surface of the air pipe 302, a plurality of groups of through holes 301 are formed in the surface of the air pipe 302, the connecting shafts 306 are fixedly arranged on the surface of the air pipe 302, the connecting shafts 306 are two groups, the scraping plates 305 are fixedly connected between the connecting shafts 306, and one corner is in contact with the inner wall of the shell 202; the air heater 1 is embedded and arranged on one side surface of the shell 202 and is embedded and arranged in the air pipe 302, the motor shaft 304 is embedded and arranged on the other side surface of the shell 202, the scraping plate 305 is in contact with the inner wall of the shell 202, the cleaning structure 4 comprises a cleaning brush 401, an air cylinder 402, a hydraulic rod 403, a cross rod 404 and a connecting rod 405, the hydraulic rod 403 is fixedly arranged on one side surface of the air cylinder 402, the connecting rod 405 is fixedly arranged on one side of the surface of the hydraulic rod 403, the cross rod 404 is fixedly arranged on the upper surface of the connecting rod 405, the cleaning brush 401 is fixedly arranged on the two sides of the upper surface of the cross rod 404, the cleaning brush 401 is divided into two groups, the collecting box 5 comprises a filter screen 501, a box body 502, a triangular plate 503, an air outlet 504 and a discharge port 505, the upper side surface of the box body 502 is embedded and provided with the air outlet 504 can be connected with a cool air inlet of the air heater 1, thereby waste heat is utilized, resources are saved, the lower side surface of the box body 502 is provided with the discharge port 505, and the discharge port 505 is in a closed state during collection, the inside of the box 502 is provided with a triangular plate 503 in an embedded manner, the inside of the box 502 is provided with a filter screen 501 in an embedded manner, the cleaning structure 4 and the collecting box 5 are provided with a hydraulic rod 403 in an embedded manner, one side surface of the box 502 is positioned between the air outlet 504 and the discharge port 505, and the other side surface of the box 502 is positioned below the filter screen 501 in an embedded manner by the conveying pipe 203.
The embodiment of the application relates to a high-efficiency powder dryer, which is implemented by putting dry powder into a dryer main body 2, drying the dry powder under the combined action of a hot air blower 1 and a drying structure 3, collecting the dried powder in a collecting box 5, cleaning the powder by a cleaning structure 4, inputting the powder into a shell 202 through a feeding hole 201, starting the hot air blower 1, blowing air into an air pipe 302 by the hot air blower 1, blowing the air into the air pipe 302 by a through hole 301, starting a driving motor 303, driving the air pipe 302 to rotate by the driving motor 303 through a motor shaft 304, driving a scraper 305 to rotate by a connecting shaft 306, thereby rubbing the inner wall of the shell 202, discharging the dried powder and the air into the inside of a box 502 through a conveying pipe 203, discharging the powder on a triangular plate 503 under the action of self gravity by a filter screen 501, discharging the air through an air outlet 504, starting an air cylinder 402, driving a hydraulic rod 403 to stretch and retract by the air cylinder 402, driving a cleaning brush 401 to move by a connecting rod 405 and preventing the filter screen from being blocked.
The foregoing embodiments are merely for illustrating the technical solution of the present application, but not for limiting the same, and although the present application has been described in detail with reference to the foregoing embodiments, it will be understood by those skilled in the art that modifications may be made to the technical solution described in the foregoing embodiments or equivalents may be substituted for parts of the technical features thereof, and that such modifications or substitutions do not depart from the spirit and scope of the technical solution of the embodiments of the present application in essence.