Auxiliary device for gallium oxide single crystal particle production
Technical Field
The utility model relates to the technical field of material processing and treatment, in particular to an auxiliary device for gallium oxide single crystal particle production.
Background
Gallium oxide, which is a wide bandgap semiconductor material, has great potential in the fields of power electronics, optoelectronics, high temperature sensors, and the like due to its excellent electrical, optical, and thermal properties. The production of gallium oxide single crystal particles involves complex chemical reactions and physical treatments, where washing and drying are key steps to ensure product quality. The cleaning aims at removing impurities, and the drying aims at removing water, so that the stability and consistency of subsequent treatment are ensured. However, the existing devices remain to be improved in efficiency and effect.
The traditional drying equipment adopts a static drying mode, and when in operation, workers need to manually put the cleaned gallium oxide single crystal particles into a drying chamber, then close a chamber door, start a heating system and dry the particles through hot air or hot air circulation. The whole drying process needs a certain time, workers need to finish the drying in a waiting period, after reaching a preset drying degree, the doors are opened manually, and the dried particles are taken out.
The core problem of the existing equipment is that the blanking and discharging processes of the existing equipment cannot be carried out simultaneously, so that the idle time of the equipment is increased, and the production efficiency is low. The static drying mode also has the problem of uneven drying, and partial particles can not be sufficiently dried due to poor positions, so that the quality of a final product is affected.
Disclosure of utility model
In order to overcome the defects of low production efficiency and uneven drying, the utility model provides an auxiliary drying device for gallium oxide single crystal particle production.
The utility model provides an auxiliary device that gallium oxide monocrystalline particle production was used, which comprises a frame, the stoving bucket, first flitch, the second flitch, the scraper blade, the drive frame, a motor, the flitch, stirring subassembly and exhauster, the frame internal connection has the stoving bucket, stoving bucket top fixedly connected with first flitch, the motor is installed to the frame bottom, the stoving bucket internal rotation is connected with the drive frame, the drive frame bottom passes the stoving bucket, with the output shaft of motor, the drive frame top is connected with the second flitch, the frame top is connected with the exhauster, pass first flitch in the middle of the exhauster, the bottom is connected with the scraper blade, the scraper blade is located between first flitch and the second flitch, the drive frame lower extreme is connected with the flitch, stoving bucket bottom is provided with the discharge gate, be provided with the stirring subassembly that is used for stirring the raw materials that wait to dry in the stoving bucket.
Further, the stirring assembly comprises a stirring frame, stirring blades and an inclined shovel plate, the stirring frame is connected to the transmission frame, the stirring blades and the inclined shovel plate are connected to the stirring frame, and the inclined shovel plate is in contact with the inner wall of the drying barrel.
Further, still include first baffle and bolt, sliding connection has first baffle on the frame, sliding connection has the bolt on the stoving bucket, is provided with on the first baffle with bolt complex through-hole.
Further, the dryer also comprises a material guiding plate, the upper part of the drying barrel is connected with the material guiding plate, a through hole is arranged in the middle of the material guiding plate.
Further, the blanking device further comprises a second baffle, and the second baffle is connected to the opening of the first blanking plate.
Further, the device also comprises an adjusting foot, and the bottom of the frame is connected with an adjusting foot with adjustable height.
Compared with the prior art, the utility model has the beneficial effects that:
1. through the rotation of motor drive transmission frame and second flitch, realized the continuous even unloading of raw materials, cooperation pivoted flitch and the promotion effect of scraper blade realize continuous ejection of compact to reach the purpose of automatic business turn over.
2. The stirring frame, the stirring blade and the inclined shovel plate in the stirring assembly are matched, so that the raw materials are fully stirred and changed in position in the drying process, the raw materials are ensured to be subjected to uniform hot air in the drying barrel, and the drying effect and the product quality are improved.
Drawings
Fig. 1 is a schematic diagram of the overall structure of the present utility model.
Fig. 2 is a perspective structural sectional view of the drying tub of the present utility model.
FIG. 3 is a schematic diagram of the connection structure of the transmission frame, the discharge plate and the discharge port of the present utility model.
The drawing comprises a frame 1, a drying barrel 2, a first blanking plate 3, a second blanking plate 4, a scraping plate 5, a transmission frame 6, a motor 7, a discharging plate 8, a discharging hole 9, a first baffle 10, a stirring frame 11, stirring blades 12, an inclined shovel plate 13, a bolt 14, a material guiding plate 15, a second baffle 16, an adjusting foot 17 and an exhauster 18.
Detailed Description
Embodiments of the present utility model will be described below with reference to the drawings.
The embodiment of the auxiliary device for producing gallium oxide single crystal particles is shown in the figures 1-3, and comprises a frame 1, a drying barrel 2, a first blanking plate 3, a second blanking plate 4, a scraping plate 5, a transmission frame 6, a motor 7, a discharging plate 8, a stirring assembly and an exhauster 18, wherein the drying barrel 2 is connected in the frame 1, a heating system is arranged in the drying barrel 2, the first blanking plate 3 is fixedly connected to the top of the drying barrel 2, a feeding pipe is connected to the frame 1, the bottom of the feeding pipe is aligned with an opening of the first blanking plate 3, the motor 7 is arranged at the bottom of the frame 1, the transmission frame 6 is rotationally connected with the transmission frame 6, the bottom of the transmission frame 6 penetrates through the drying barrel 2 and is connected with an output shaft of the motor 7, the top of the transmission frame 6 is fixedly connected with the bottom of the second blanking plate 4, the top of the frame 1 is connected with the exhauster 18, the middle of the exhauster 18 penetrates through the first blanking plate 3, the bottom of the scraper plate 5 is connected with the bottom of the scraper plate 3 and the second blanking plate 4, the discharging plate 8 is connected to the lower end of the transmission frame 6, the opening of the discharging plate 8 coincides with the bottom of the drying barrel 2, and the opening 9 of the drying assembly is arranged at the bottom of the drying barrel 2, and is used for drying the raw materials to be dried.
As shown in fig. 2, the stirring assembly comprises a stirring frame 11, stirring blades 12 and an inclined shovel plate 13, the stirring frame 11 is connected to the transmission frame 6, the stirring blades 12 and the inclined shovel plate 13 are connected to the stirring frame 11, the stirring blades 12 are made of flexible rubber materials, and the inclined shovel plate 13 is in contact with the inner wall of the drying barrel 2.
The staff opens motor 7 and exhauster 18, exhaust gas in the stoving bucket 2 is purified to exhauster 18, the raw materials that wait to dry accomplish the feeding through the inlet pipe that is connected on frame 1, fall on second blanking plate 4, motor 7 drives second blanking plate 4 through drive frame 6 and rotates, part raw materials is stopped on second blanking plate 4, when the trompil of second blanking plate 4 rotates to the position that aligns with the inlet pipe, the raw materials just falls into second blanking plate 4 through this trompil, when second blanking plate 4 trompil passes through scraper blade 5, fixed scraper blade 5 can also push the raw materials that originally stops in the stoving bucket 2, stoving bucket 2 heats the stoving through heating system to the raw materials in the bucket, and the raw materials contacts with flexible stirring leaf 12 when falling, thereby obtain the buffering, and the stirring frame 11 stirs the raw materials of bottom, because the discharge plate 8 follows drive frame 6 and rotates, only when the trompil of discharge plate 8 and stoving bucket 2 bottom trompil overlap, the raw materials just can pass through discharge gate 9 ejection of compact, thereby guarantee stoving effect, the scraper blade 13 can be with the raw materials that the stoving bucket edge is difficult to be moved, the intermediate position is moved to the stirring leaf 12, the whole raw materials of collecting device is placed outside, the automatic position of the stoving is closed, the raw materials is accomplished to the automatic device is finished.
As shown in fig. 1 and 2, the drying drum further comprises a first baffle 10 and a bolt 14, the frame 1 is slidably connected with the first baffle 10, the drying drum 2 is slidably connected with the bolt 14, and the first baffle 10 is provided with a through hole matched with the bolt 14.
If the collecting device needs to be replaced during discharging, or after the collecting device is filled, the bolt 14 is pulled out, the first baffle plate 10 is put down, the discharging hole 9 is blocked, discharging is stopped, after the collecting device is replaced, the first baffle plate 10 is pulled out upwards, and the collecting device is fixed on the outer wall of the drying barrel 2 through the bolt 14, and the discharging hole 9 is discharged again.
As shown in fig. 2, the drying drum further comprises a material guiding plate 15, the upper part of the drying drum 2 is connected with the material guiding plate 15, a through hole is formed in the middle of the material guiding plate 15, and the material guiding plate 15 is positioned below the second blanking plate 4.
After passing through the second blanking plate 4, the raw materials fall onto the material guide plate 15, then fall through the opening in the middle of the material guide plate 15, so that the falling position of the raw materials is positioned in the middle of the drying barrel 2, and the stirring frame 11 is used for drying in the outward pushing process, so that the situation that the raw materials fall directly through the material discharge plate 8 and enter the material discharge port 9 to discharge is avoided, the accidental discharge of the raw materials is reduced, and the drying effect is further ensured.
As shown in fig. 2, the first blanking plate 3 further comprises a second baffle 16, and the second baffle 16 is connected to the opening of the first blanking plate 3.
The second baffle 16 increases the opening edge of the first blanking plate 3, and reduces the flying-out of raw materials.
As shown in fig. 1, the device also comprises an adjusting foot 17, and the bottom of the frame 1 is connected with the adjusting foot 17 with adjustable height.
Three movable adjusting feet 17 can make stoving bucket 2 keep away from ground, also can assist the different mounting environment of frame 1 adaptation simultaneously, better reply uneven ground.
The raw material first enters the device through the feed pipe and falls on the first blanking plate 3 with the second baffle 16 to prevent splashing. Along with the rotation of the transmission frame 6, the raw materials are uniformly distributed on the second blanking plate 4 fixedly connected with the transmission frame 6, and all the raw materials can be ensured to smoothly enter the drying barrel 2 through the pushing action of the scraping plate 5. The heating system is arranged in the drying barrel 2 to heat and dry the raw materials, and meanwhile, the stirring frame 11, the flexible stirring blade 12 and the inclined shovel 13 in the stirring assembly continuously stir the raw materials, change the positions of the stirring frames and the flexible stirring blade 13 and ensure uniform drying. During the drying process, the exhauster 18 is responsible for purifying the exhausted gases. When the opening of the discharging plate 8 at the lower end of the transmission frame 6 coincides with the discharging hole 9 at the bottom of the drying barrel 2, the dried raw materials are automatically discharged and fall into a collecting device below. In addition, the stock guide 15 guides the raw materials to fall into the center of the drying barrel 2, so that the accidental is reduced, and the drying effect is further ensured.
While the application has been described in detail and with reference to specific examples thereof, the principles and embodiments of the application are described herein, and the above examples are provided to assist in understanding the method and core concepts of the application, and further, to those skilled in the art, in light of the teachings of the application, the application should not be construed as limited in scope to the specific embodiments and applications described herein.