CN223669813U - Waste collection structure of brown corundum air washer - Google Patents

Waste collection structure of brown corundum air washer

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Publication number
CN223669813U
CN223669813U CN202422963177.3U CN202422963177U CN223669813U CN 223669813 U CN223669813 U CN 223669813U CN 202422963177 U CN202422963177 U CN 202422963177U CN 223669813 U CN223669813 U CN 223669813U
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China
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wall
wind
fixed shell
waste collection
collecting box
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CN202422963177.3U
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Chinese (zh)
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李雷雷
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Luoyang Jumo New Material Co ltd
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Luoyang Jumo New Material Co ltd
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Abstract

The utility model discloses a waste collection structure of a brown alumina wind washer, and belongs to the technical field of waste collection of brown alumina wind washers. The utility model provides a brown fused alumina wind washes waste collection structure of machine, including the collecting box, the fixed shell inner wall is provided with the sieve and moves the subassembly, the fixed shell inner wall still is provided with the wind and washes the subassembly, fixed shell opposite side outer wall is provided with controller and supersonic generator, can effectively prevent to cause impurity to collect incomplete problem because of earth adhesion, greatly improved the integrality that impurity was collected, usable electric putter promotes the stripper plate slowly moving moreover, extrude the operation to impurity, make originally loose impurity become tight under the extrusion, when follow-up transport from the collecting box is gone out like this, the impurity is difficult for scattering, not only transport operation is more convenient high-efficient, moreover can effectively reduce the risk because of impurity is loose to initiate secondary raise dust pollution in the transfer process, operational environment's cleanness and safety have been ensured.

Description

Waste collection structure of brown corundum air washer
Technical Field
The utility model relates to the technical field of waste collection of brown alumina wind washers, in particular to a waste collection structure of a brown alumina wind washer.
Background
Brown alumina is a man-made abrasive prepared by smelting bauxite and coke serving as main raw materials in an electric arc furnace at high temperature, the main component is alumina, the content of the alumina is about 94.5% -97%, the brown alumina is brown, the brown alumina has the physical characteristics of high hardness (about 9 in Mohs hardness), density of 3.9-4.1 g/cm 3 and various granularity, the brown alumina has wide application in the industrial field, particularly in the abrasive industry, the brown alumina can be used for manufacturing grinding tools such as grinding wheels, coarse particles are used for rust removal coarse grinding of large-scale metal structures, and fine particles are used for precision grinding and polishing.
The waste collecting structure of the wind washer generally comprises various forms, such as a dust collection type, a grid type, a screw conveying type and a scraping plate type, wherein dust and the like generated by wind washing are sucked into a collecting container through a dust suction pump, the grid type is used for enabling waste to fall into a collecting area below through a grid plate with holes or gaps, the waste is continuously conveyed to a designated place through the screw conveying type, the scraping plate type is used for pushing the waste to the collecting place through the movement of the scraping plate device, and the structures can effectively separate and collect impurities, particles and attachments which do not meet the granularity requirement and the like in the wind washing process of brown corundum.
In the actual production and processing flow of brown corundum, the wind washing link faces a plurality of troublesome problems, a large amount of soil is often adhered to the surface of the brown corundum before wind washing, the adhesion of the soil and the brown corundum is extremely firm, the existing wind washing equipment is worry about handling the situation, and the soil is difficult to thoroughly peel off from the surface of the brown corundum and effectively collect by only relying on a single wind flow washing mode, so that the wind washing process of the brown corundum is seriously hindered, the smooth development of waste collection work is greatly influenced, and great trouble is brought to the whole production link.
In addition, although the existing waste collection device can absorb and collect impurities and dust generated in the air washing process, obvious defects are exposed when collected objects are taken out later, and because the collected dust and impurities are loose in structure, fine particles are very easy to fly into the air when unified treatment and transfer operation is carried out, so that secondary dust emission pollution phenomenon is caused, the production environment is adversely affected, the physical health of operators is possibly endangered, and the environment protection requirement is not met.
In view of this, we propose a waste collection structure of brown alumina wind washer.
Disclosure of utility model
1. Technical problem to be solved
The utility model aims to provide a waste collection structure of a brown fused alumina wind washer, which aims to solve the problems in the background technology.
2. Technical proposal
The utility model provides a brown corundum wind washes waste collection structure of machine, includes the collecting box, collecting box the place ahead outer wall is provided with and blocks the dirt net, collecting box top has seted up the collection mouth, first and second of cavity has been seted up to the collecting box inside, collecting box top is provided with the fixed shell, fang Waibi utilize the round pin hub connection to have the sliding door before the fixed shell, fixed shell rear outer wall is provided with dust absorption pump and fan, the fixed shell top is provided with gear motor and feeder hopper, gear motor output is connected with the gear, the fixed shell inner wall is provided with the screen motion subassembly, the screen motion subassembly includes the mount, the fixed shell inner wall still is provided with the wind and washes the subassembly, the wind washes the subassembly and includes the wind and washes the bucket, the collecting box lateral wall is provided with sealing door one, the fixed shell outer wall still is provided with sealing door two, fixed shell opposite side outer wall is provided with controller and supersonic generator.
Preferably, an electric push rod is arranged on the inner wall of the first cavity, and an extrusion plate is connected after the output end of the electric push rod extends to the second cavity.
Preferably, the outer walls of the two sides of the fixing frame are provided with baffles, an ultrasonic vibration rod electrically connected with the ultrasonic generator is arranged inside the fixing frame, and the top of the fixing frame is also clamped with a sieve plate.
Preferably, the outer wall of the left side of the wind washing barrel is rotationally connected with a rotary gear ring, and the circumferential outer wall of the gear is meshed with the rotary gear ring after extending into the fixed shell
Preferably, the inner wall of the rotary gear ring is connected with a fixed rod, a plurality of fixed rods are connected with stirring rods at the tail ends, and stirring blades are further arranged on the circumferential outer wall of each stirring rod.
Preferably, the circumference outer wall of the wind washing barrel is provided with a first metal pore plate, a second metal pore plate and a third metal pore plate, the outer wall of the first metal pore plate is provided with a dust collection box, and the outer wall of the third metal pore plate is provided with a gas transmission box.
Preferably, a plurality of dust suction ends of the dust suction pumps are connected with dust suction pipes, a plurality of tail ends of the dust suction pipes are connected with the outer wall of the dust suction box, a plurality of tail ends of the dust discharge ends of the dust suction pumps are connected with dust discharge pipes, the tail ends of the dust discharge pipes are connected with the side wall of the collecting box and are communicated with the cavity II, the output end of the fan is provided with an air conveying pipe, and the air conveying pipe is connected with the outer wall of the air conveying box.
3. Advantageous effects
Compared with the prior art, the utility model has the advantages that: when the device is used, brown corundum is slowly poured into a feed hopper and falls on a sieve plate, at the moment, a plurality of ultrasonic vibration rods can be started, so that the generated vibration force can promote the sieve plate to vibrate at high frequency, the adhered soil on the surface of the brown corundum starts to fall off under the strong vibration, meanwhile, the tiny brown corundum which does not meet the specification is also separated from a brown corundum main body, the separated soil and tiny brown corundum can permeate the sieve plate and fall on the top of a collecting box, the top of the collecting box is inclined, waste and soil can slide down to the inside of the collecting box along an inclined plane under the action of gravity, the brown corundum subjected to primary cleaning can enter a wind washing barrel, at the moment, a gear at the output end of the gear motor can drive a rotary gear ring to rotate stably, a stirring rod and a stirring blade connected with the gear ring can stir the brown corundum thoroughly, at the same time, an external fan continuously blows, under the double actions of stirring and wind power, the residual dust and impurities on the surface of the brown corundum are further removed, the impurities and the dust generated by wind washing are strongly pumped by a plurality of pumps and transferred into the collecting box, and the metal corundum under the wind washing barrel is completely separated, and the second metal corundum is completely separated, and the impurities are completely and well separated, and the impurities are completely and cannot be completely separated due to the fact that the impurities are completely and are completely separated;
The follow-up treatment of impurity in the collecting box also has corresponding design, and electric putter promotes the stripper plate slowly to remove, extrudes the operation to impurity, and loose impurity originally becomes tight under the extrusion, like this when follow-up transport from the collecting box, and the impurity is difficult for scattering, and not only transport operation is more convenient high-efficient, can effectively reduce moreover because of the impurity is loose to initiate the risk that secondary raise dust pollutes in the transfer process, has ensured operational environment's cleanness and safety, also is favorable to follow-up centralized processing and the environmental protection of impurity to handle.
Drawings
FIG. 1 is a schematic diagram of the overall structure of the present utility model;
FIG. 2 is a schematic rear view of the present utility model;
FIG. 3 is a schematic view of the internal structure of the present utility model;
FIG. 4 is a schematic view of a screen assembly according to the present utility model;
FIG. 5 is a schematic view of a wind washing assembly according to the present utility model;
The reference numerals in the drawing indicate 100, a collecting box, 110, a dust blocking net, 120, a first cavity, 130, an electric push rod, 140, a squeezing plate, 150, a second cavity, 160, a first sealing door, 170, a collecting port, 200, a fixed shell, 210, a sliding door, 220, a second sealing door, 230, a gear motor, 240, a gear, 250, a feeding hopper, 260, a dust suction pump, 270, a fan, 280, a controller, 290, an ultrasonic generator, 300, a fixed frame, 310, a baffle, 320, a sieve plate, 330, an ultrasonic vibration rod, 400, a wind washing bucket, 410, a rotating gear ring, 411, a fixed rod, 412, a stirring rod, 413, a stirring blade, 420, a first metal pore plate, 421, a dust suction box, 430, a second metal pore plate, 440, a third metal pore plate, 450 and a gas transmission box.
Detailed Description
In the description of the present utility model, it should be understood that the terms "center", "longitudinal", "lateral", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", etc. indicate orientations or positional relationships based on the orientations or positional relationships shown in the drawings are merely for convenience in 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 configured and operated in a specific orientation, and thus should not be construed as limiting the present utility model.
In the description of the present utility model, the meaning of "a plurality" is two or more, unless explicitly defined otherwise.
In the description of the present utility model, unless explicitly specified and limited otherwise, the terms "mounted," "configured to," "engaged with," "connected to," and the like are to be construed broadly, and include, for example, "connected to," whether fixedly connected to, detachably connected to, or integrally connected to, mechanically connected to, electrically connected to, directly connected to, indirectly connected to, and in communication with each other via an intermediate medium. The specific meaning of the above terms in the present utility model will be understood in specific cases by those of ordinary skill in the art.
Referring to fig. 1-5, the present utility model provides a technical solution:
The utility model provides a brown fused alumina wind washer's waste collection structure, including collecting box 100, collecting box 100 the place ahead outer wall is provided with and blocks dirt net 110, collecting box 100 top has offered collection mouth 170, collecting box 100 inside has offered first 120 and second 150 of cavity, collecting box 100 top is provided with fixed shell 200, fixed shell 200 the place ahead outer wall utilizes the round pin hub connection to have sliding door 210, fixed shell 200 the place ahead outer wall is provided with dust absorption pump 260 and fan 270, fixed shell 200 top is provided with gear motor 230 and feeder hopper 250, gear motor 230 output is connected with gear 240;
The gear motor 230 is convenient to drive the rotary gear ring 410 carrying the stirring rod 412 and the stirring blade 413 to rotate.
The inner wall of the fixed shell 200 is provided with a screening component, the screening component comprises a fixed frame 300, the inner wall of the fixed shell 200 is also provided with a wind washing component, the wind washing component comprises a wind washing barrel 400, the side wall of the collecting box 100 is provided with a first sealing door 160, the outer wall of the fixed shell 200 is also provided with a second sealing door 220, and the outer wall of the other side of the fixed shell 200 is provided with a controller 280 and an ultrasonic generator 290.
In some embodiments, the ultrasonic generator 290 is comprised primarily of power amplification, oscillation, matching, control, and other circuits. When the ultrasonic vibration rod 330 is driven by the high-frequency electric signal generated by the ultrasonic generator 290, the internal piezoelectric ceramic element of the ultrasonic vibration rod generates telescopic vibration to drive the metal rod body connected with the ultrasonic vibration rod to vibrate, and the ultrasonic vibration rod belongs to the prior art and further shakes off soil on the surface of brown corundum.
Specifically, the inner wall of the first cavity 120 is provided with an electric push rod 130, and an extrusion plate 140 is connected after the output end of the electric push rod 130 extends to the inside of the second cavity 150, so that loose impurities can be extruded and compacted conveniently.
Further, baffle plates 310 are arranged on the outer walls of the two sides of the fixing frame 300, an ultrasonic vibration rod 330 electrically connected with the ultrasonic generator 290 is arranged inside the fixing frame 300, and a screen plate 320 is clamped at the top of the fixing frame 300, so that fine unqualified brown corundum and soil can be conveniently screened out.
Still further, a rotary gear ring 410 is rotatably coupled to the left outer wall of the tub 400, and the circumferential outer wall of the gear 240 is engaged with the rotary gear ring 410 after extending into the inside of the stationary case 200.
Further, the inner wall of the rotary gear ring 410 is connected with a fixed rod 411, the tail ends of the fixed rods 411 are connected with stirring rods 412, and the circumferential outer wall of each stirring rod 412 is also provided with stirring blades 413, so that brown fused alumina can be conveniently stirred.
It should be noted that, the circumferential outer wall of the wind washing barrel 400 is provided with a first metal orifice 420, a second metal orifice 430 and a third metal orifice 440, the outer wall of the first metal orifice 420 is provided with a dust collection box 421, and the outer wall of the third metal orifice 440 is provided with a gas transmission box 450.
It is noted that the dust collection ends of the dust collection pumps 260 are connected with dust collection pipes, the tail ends of the dust collection pipes are connected to the outer wall of the dust collection box 421, the dust discharge ends of the dust collection pumps 260 are connected with dust discharge pipes, the tail ends of the dust discharge pipes are connected to the side wall of the collection box 100 and are communicated with the cavity II 150, the output ends of the fans 270 are provided with air conveying pipes, the air conveying pipes are connected to the outer wall of the air conveying box 450, the cleaned impurities are conveniently collected by the dust collection pumps 260, the fans 270 can wind-wash the surface of brown corundum, and the fans 270 can be arranged in plurality, so that the effect of strong wind washing is conveniently achieved.
In some embodiments, the device may use an external conventional power source using power.
In addition, the present utility model relates to circuits, electronic components and modules in the prior art, and those skilled in the art can fully implement the present utility model, and needless to say, the protection of the present utility model does not relate to improvement of the internal structure and method.
Working principle: when in use, firstly, brown corundum is slowly poured into the feed hopper 250, then falls on the sieve plate 320, at this time, a plurality of ultrasonic vibration rods 330 can be started, so that the vibration force generated by the ultrasonic vibration rods can promote the sieve plate to vibrate at high frequency, the earth adhered to the surface of the brown corundum starts to fall off under the strong vibration, meanwhile, the tiny brown corundum which does not meet the specification is also separated from the brown corundum main body, the separated earth and tiny brown corundum can permeate the sieve plate 320 and fall on the top of the collecting box 100, the top of the collecting box 100 is inclined, waste and earth can slide into the collecting box 100 along the inclined plane under the action of gravity, the brown corundum which is subjected to primary cleaning enters the wind washing barrel 400, at this time, a gear motor 230 can be started, a gear 240 at the output end of the gear motor can drive a rotary gear ring 410 to rotate stably, and a stirring rod 412 and a stirring blade 413 connected with the gear ring 410 stir the rotary gear ring to the rotary ring, the brown corundum thoroughly, meanwhile, the external fan 270 continuously blows air, under the dual actions of stirring and wind power, the dust and impurities remained on the surface of brown alumina are further removed, the impurities and dust generated by wind washing are forcefully extracted by a plurality of dust absorption pumps 260 and transferred into the collecting box 100, the second metal pore plate 430 under the wind washing barrel 400 plays a screening role, the unqualified fine brown alumina is screened out and accurately falls into the collecting box 100, the problem of incomplete impurity collection caused by adhesion of soil is effectively prevented, the integrity of impurity collection is greatly improved, the subsequent treatment of impurities in the collecting box 100 is also correspondingly designed, the electric push rod 130 pushes the extruding plate 140 to slowly move to extrude the impurities, the originally loose impurities become compact under extrusion, so that the impurities are not easy to scatter when the impurities are subsequently transported out of the collecting box 100, the handling operation is more convenient and efficient, the risk of secondary dust pollution caused by loosening of impurities in the transferring process can be effectively reduced, the cleaning and safety of the working environment are guaranteed, and the follow-up centralized treatment and environmental protection treatment of the impurities are facilitated.
The foregoing has shown and described the basic principles, principal features and advantages of the utility model. It will be understood by those skilled in the art that the present utility model is not limited to the above-described embodiments, and that the above-described embodiments and descriptions are only preferred embodiments of the present utility model, and are not intended to limit the utility model, and that various changes and modifications may be made therein without departing from the spirit and scope of the utility model as claimed. The scope of the utility model is defined by the appended claims and equivalents thereof.

Claims (7)

1. The utility model provides a waste collection structure of brown alumina wind washer, includes collecting box (100), its characterized in that collecting box (100) the place ahead outer wall is provided with and blocks dirt net (110), collecting box (100) top has seted up collecting port (170), collecting box (100) inside has seted up first (120) of cavity and second (150) of cavity, collecting box (100) top is provided with fixed shell (200), fixed shell (200) the place ahead outer wall utilizes the round pin hub connection to have sliding door (210), fixed shell (200) the place ahead outer wall is provided with dust absorption pump (260) and fan (270), fixed shell (200) top is provided with gear motor (230) and feeder hopper (250), gear motor (230) output is connected with gear (240), fixed shell (200) inner wall is provided with the screen motion subassembly, the screen motion subassembly includes mount (300), fixed shell (200) inner wall still is provided with the wind wash subassembly, the wind wash subassembly includes wind wash bucket (400), collecting box (100) the lateral wall is provided with first (160) and second (220) the outer wall (280) take place, and second (220) the outer wall is provided with ultrasonic wave generator (290).
2. The waste collection structure of the brown fused alumina wind washing machine of claim 1, wherein an electric push rod (130) is arranged on the inner wall of the first cavity (120), and an extrusion plate (140) is connected after the output end of the electric push rod (130) extends into the second cavity (150).
3. The waste collection structure of a brown fused alumina wind washer according to claim 2, wherein baffles (310) are arranged on the outer walls of two sides of the fixing frame (300), an ultrasonic vibration rod (330) electrically connected with an ultrasonic generator (290) is arranged inside the fixing frame (300), and a sieve plate (320) is further clamped at the top of the fixing frame (300).
4. A waste collection structure of a brown alumina wind washing machine according to claim 3, wherein a rotary gear ring (410) is rotatably connected to the left outer wall of the wind washing barrel (400), and the circumferential outer wall of the gear (240) is meshed with the rotary gear ring (410) after extending into the fixed shell (200).
5. The waste collection structure of a brown fused alumina wind washer according to claim 4, wherein the inner wall of the rotary gear ring (410) is connected with a fixed rod (411), the tail ends of a plurality of the fixed rods (411) are connected with stirring rods (412), and the circumferential outer wall of the stirring rods (412) is also provided with stirring blades (413).
6. The waste collection structure of a brown fused alumina wind washer according to claim 5, wherein a first metal pore plate (420), a second metal pore plate (430) and a third metal pore plate (440) are arranged on the circumferential outer wall of the wind washing barrel (400), a dust collection box (421) is arranged on the outer wall of the first metal pore plate (420), and a gas transmission box (450) is arranged on the outer wall of the third metal pore plate (440).
7. The waste collection structure of a brown fused alumina wind washer according to claim 6, wherein dust collection ends of the dust collection pumps (260) are connected with dust collection pipes, tail ends of the dust collection pipes are connected to the outer wall of the dust collection box (421), dust discharge ends of the dust collection pumps (260) are connected with dust discharge pipes, tail ends of the dust discharge pipes are connected to the side wall of the collection box (100) and communicated with the second cavity (150), and an output end of the fan (270) is provided with an air conveying pipe which is connected to the outer wall of the air conveying box (450).
CN202422963177.3U 2024-12-03 2024-12-03 Waste collection structure of brown corundum air washer Active CN223669813U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202422963177.3U CN223669813U (en) 2024-12-03 2024-12-03 Waste collection structure of brown corundum air washer

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202422963177.3U CN223669813U (en) 2024-12-03 2024-12-03 Waste collection structure of brown corundum air washer

Publications (1)

Publication Number Publication Date
CN223669813U true CN223669813U (en) 2025-12-16

Family

ID=97980203

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202422963177.3U Active CN223669813U (en) 2024-12-03 2024-12-03 Waste collection structure of brown corundum air washer

Country Status (1)

Country Link
CN (1) CN223669813U (en)

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