CN216262212U - A dust collector for aluminum alloy door and window processing - Google Patents
A dust collector for aluminum alloy door and window processing Download PDFInfo
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- CN216262212U CN216262212U CN202122568692.8U CN202122568692U CN216262212U CN 216262212 U CN216262212 U CN 216262212U CN 202122568692 U CN202122568692 U CN 202122568692U CN 216262212 U CN216262212 U CN 216262212U
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Abstract
The utility model discloses a dust removal device for processing aluminum alloy doors and windows, which comprises a first U-shaped frame, wherein the opening of the first U-shaped frame faces downwards, the first U-shaped frame comprises two side plates and a connecting plate which are parallel to each other, supporting seats are arranged right below the two side plates of the first U-shaped frame, an electric telescopic rod is connected between each supporting seat and the first U-shaped frame, and a dust removal mechanism and an auxiliary dust collection mechanism are arranged on the first U-shaped frame; the multiple cleaning brush layers of the dust removal mechanism rotate and clean the surfaces of the aluminum alloy doors and windows, so that the cleaning effect is improved, and meanwhile, dust raised during cleaning is strongly absorbed from the multiple first dust collecting covers and is recycled into the first recycling box; and then the auxiliary dust collection mechanism is utilized to suck a small amount of escaping dust from the second dust collection cover and recycle the dust into the second recycling box, so that the dust raised while being dedusted by the dedusting mechanism is effectively prevented from escaping from the front and rear open ends of the first U-shaped frame.
Description
Technical Field
The utility model relates to the technical field of paper and plastic, in particular to a dust removal device for processing aluminum alloy doors and windows.
Background
Aluminum alloy door and window is used mostly to modern most family's door and window, and aluminum alloy door and window has difficult rusty, the processing of being convenient for, and at the end of the price ratio, light in weight, advantage such as transport is convenient, and people also attach attention to the privacy of oneself now in addition very much, and aluminum alloy door and window still has fine syllable-dividing effect, also protects the privacy of oneself when completely cutting off certain noise.
At present in the course of working to aluminum alloy door and window, often can be because cutting and polishing produce many piece and dust, the piece can fall end aluminum alloy door and window's machining efficiency with the gradual accumulation of dust, can cause the short circuit of electrical apparatus in dust and the piece entering electrical apparatus moreover to shorten the life of processing equipment, there is the problem that is not convenient for remove dust to aluminum alloy door and window, therefore we have proposed a dust collector for aluminum alloy door and window processing and are used for solving above-mentioned problem.
SUMMERY OF THE UTILITY MODEL
The technical problem to be solved by the utility model is to overcome the existing defects and provide a dust removal device for processing aluminum alloy doors and windows, wherein a plurality of mounting plates and cleaning brush layers on the mounting plates rotate and clean the surfaces of the aluminum alloy doors and windows under the simultaneous action of a first motor and a first air suction pump in a dust removal mechanism, so that the cleaning effect is improved, and dust raised during cleaning is strongly sucked from a plurality of first dust hoods and is recycled into a first recycling box; and then the auxiliary dust collection mechanism is utilized to suck a small amount of escaping dust from the second dust collection cover and recycle the dust into the second recovery box, so that the dust raised while being removed by the dust removal mechanism is effectively prevented from escaping from the front and rear open ends of the first U-shaped frame, and the problems in the background art can be effectively solved.
In order to achieve the purpose, the utility model provides the following technical scheme: a dust removal device for processing aluminum alloy doors and windows comprises a first U-shaped frame, wherein an opening of the first U-shaped frame faces downwards, the first U-shaped frame comprises two side plates and a connecting plate which are parallel to each other, supporting seats are arranged right below the two side plates of the first U-shaped frame, an electric telescopic rod is connected between each supporting seat and the first U-shaped frame, and a dust removal mechanism and an auxiliary dust collection mechanism are arranged on the first U-shaped frame; the first U-shaped frame is driven to lift through the electric telescopic rod.
Further, the central point of connecting plate puts and has seted up the mounting hole, install the bearing in the mounting hole, dust removal mechanism includes the dwang, the middle part of dwang with the bearing rotates to be connected, the inside of dwang is provided with the air flue, the carousel is connected to the bottom of dwang, the bottom of carousel sets up a plurality of mounting panel, is provided with the cleaning brush layer on the mounting panel, and the inside of carousel runs through and sets up a plurality of strong straw, and the bottom of strong straw all sets up first dust cage, and annular air disk is connected at the top of strong straw, and the inside of annular air disk is provided with the air chamber, and the inner wall of annular air disk and the outer wall welding of dwang, and dwang and annular air disk welding department have seted up a plurality of gas pocket, are linked together between strong straw, air chamber, gas pocket and the air flue, the outside on upper portion of dwang is connected with driven gear, and the top of connecting plate is provided with first motor, The air exhaust device comprises a first air exhaust pump and a first recovery box, wherein an output shaft end at the top of a first motor is connected with a driving gear, the driving gear is meshed with a driven gear, an air exhaust opening of the first air exhaust pump is connected with one end of an air exhaust pipe, the other end of the air exhaust pipe is connected with an air passage through an air slip ring, an air exhaust opening of the air exhaust pipe is connected with one end of a first air exhaust pipe, and the other end of the first air exhaust pipe is connected with the first recovery box; drive the driving gear through first motor and rotate, and then drive driven gear, the dwang, the rotating disc, the cleaning brush layer on mounting panel and the mounting panel rotates, can clean the aluminum alloy door and window surface at rotatory in-process, improve the effect of cleaning, when cleaning, utilize the air-bleed effect of first aspiration pump, the dust of raising when will cleaning from a plurality of first dust cage departments carries out the brute force and absorbs and retrieve to first recovery incasement.
Furthermore, the number of the auxiliary dust suction mechanisms is two, the two auxiliary dust suction mechanisms are symmetrically arranged on the left side and the right side of the first U-shaped frame, each auxiliary dust suction mechanism comprises two second suction pumps, two second recovery boxes, a first inlet pipe, a second outlet pipe, two U-shaped frames, a rotating shaft, a second motor, a T-shaped rotating rod, two auxiliary suction pipes, a second dust collection cover and a second exhaust pipe, the two second U-shaped frames are symmetrically arranged on the front side and the rear side of the connecting plate, the rotating shaft is rotationally connected in the second U-shaped frames, one end of each T-shaped rotating rod is connected with the rotating shaft, the plurality of auxiliary suction pipes are arranged at the other end of each T-shaped rotating rod in a penetrating manner, the second suction pumps and the second recovery boxes are arranged at the top of the supporting seat, the second suction pumps are connected with the second recovery boxes through the second exhaust pipes, and the inlet ends of the first inlet pipes are connected with the suction ports of the second suction pumps, the number of the one-inlet multi-outlet pipes is two, one end of the auxiliary suction pipe is connected with a plurality of outlet ends of the one-inlet multi-outlet pipe, and the other end of the auxiliary suction pipe is provided with a second dust collection cover; because both sides are open structure around first U-shaped frame, dust escape is inevitable to the in-process that removes dust, utilize the second motor to drive T shape dwang and rotate in the pivot repeatedly, and the opening of both sides around the first U-shaped frame of second dust cage subtend, when the pivoted, utilize the air-bleed effect of second aspiration pump, the dust that makes a small amount of escapes inhales and retrieves to the second collection box in from the second dust cage, just so effectively avoid the dust that raises when utilizing dust removal mechanism to remove dust escaping from both sides open end around first U-shaped frame.
Furthermore, the outlet ends of the one-inlet-multiple-outlet pipes in each auxiliary dust suction mechanism are the same in number and correspond to the auxiliary suction pipes one by one.
Further, both sides all are provided with the universal wheel around the bottom of supporting seat, set up the universal wheel and be convenient for this device freely to remove, will remove this device when using and make aluminum alloy processingequipment be located this device, remove this device to the position that does not hinder when not using.
Furthermore, a gauze is connected between the supporting seat and the first U-shaped frame and is foldable, the gauze is unfolded or folded along with the electric telescopic rod when the electric telescopic rod is lifted, dust is filtered by the gauze, and the dust is prevented from escaping.
Furthermore, the inner wall of the first U-shaped frame is provided with an active carbon screen plate, and the active carbon screen plate further adsorbs diffused dust in the air physically.
Compared with the prior art, the utility model has the beneficial effects that: the first U-shaped frame and the dust removal device are driven to lift through the electric telescopic rod, the dust removal device is located right above the aluminum alloy door and window, the driving gear is driven to rotate through the first motor, the driven gear, the rotating rod, the rotating disc, the mounting plate and the cleaning brush layer on the mounting plate are further driven to rotate, the surface of the aluminum alloy door and window can be cleaned in the rotating process, the cleaning effect is improved, and meanwhile, dust raised in cleaning is sucked in a powerful mode from the first dust collection covers and is recycled into the first recycling box through the air suction effect of the first air suction pump; utilize the second motor to drive T shape dwang and rotate in the pivot repeatedly, and the opening of both sides around the first U-shaped frame of second dust cage subtend, in the pivoted, utilize the effect of bleeding of second aspiration pump, the dust that makes a small amount of escape inhales from the second dust cage and retrieves to the second collection box in, just so effectively avoid utilizing dust removal mechanism to remove dust the dust and simultaneously raise up the dust and escape from both sides open end around first U-shaped frame, and the gauze is collapsible, expand or fold along with it when electric telescopic handle goes up and down, utilize the gauze to filter the dust, avoid the dust to escape, diffuse dust physical adsorption and air purification in the further air of active carbon otter board in addition.
Drawings
FIG. 1 is a schematic structural view of the present invention;
FIG. 2 is a left side view of the present invention;
FIG. 3 is a schematic view of a part of the dust removing mechanism of the present invention;
fig. 4 is a partial structural schematic view of the auxiliary dust suction mechanism of the present invention.
In the figure: 1. the device comprises a first U-shaped frame, a second support seat, a third U-shaped frame, a fourth U-shaped frame, a fifth U-shaped frame, a sixth frame, a.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
In the description of the present invention, it is to be understood that the terms "upper", "lower", "left", "right", "front", "rear", "top", "bottom", "inner", "outer", and the like, indicate orientations or positional relationships based on those shown in the drawings, are used only for convenience of description of the present invention, and do not indicate or imply that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, and thus, should not be construed as limiting the present invention.
Referring to fig. 1-4, the present invention provides a technical solution: a dust removal device for processing aluminum alloy doors and windows comprises a first U-shaped frame 1, wherein an opening of the first U-shaped frame 1 faces downwards, the first U-shaped frame 1 comprises two side plates and a connecting plate which are parallel to each other, a supporting seat 2 is arranged right below each of the two side plates of the first U-shaped frame 1, an electric telescopic rod 3 is connected between each supporting seat 2 and the corresponding first U-shaped frame 1, and a dust removal mechanism 5 and an auxiliary dust collection mechanism 6 are arranged on the first U-shaped frame 1; the first U-shaped frame 1 is driven to lift through the electric telescopic rod 3.
The central point of connecting plate puts and has seted up the mounting hole, install bearing 10 in the mounting hole, dust removal mechanism 5 includes dwang 501, the middle part of dwang 501 with bearing 10 rotates and connects, the inside of dwang 501 is provided with the air flue, carousel 502 is connected to the bottom of dwang 501, the bottom of carousel 502 sets up a plurality of mounting panel 503, be provided with cleaning brush layer 500 on the mounting panel 503, the inside of carousel 502 runs through and sets up a plurality of strong straw 504, the bottom of strong straw 504 all sets up first dust cage 505, annular air disk 506 is connected at the top of strong straw 504, the inside of annular air disk 506 is provided with the air chamber, the inner wall of annular air disk 506 and the outer wall welding of dwang 501, and dwang 501 and annular air disk 506 welding department have seted up a plurality of gas pocket, be linked together between strong straw 504, air chamber, gas pocket and the air flue, the outside on upper portion of dwang 501 is connected with driven gear 507, the top of the connecting plate is provided with a first motor 508, a first air suction pump 510 and a first recovery box 511, the output shaft end of the top of the first motor 508 is connected with a driving gear 509, the driving gear 509 is meshed with a driven gear 507, the air suction port of the first air suction pump 510 is connected with one end of an air suction pipe 512, the other end of the air suction pipe 512 is connected with the air passage through an air slip ring 513, the air exhaust port of the air suction pipe 512 is connected with one end of a first air exhaust pipe 514, and the other end of the first air exhaust pipe 514 is connected with the first recovery box 511; drive driving gear 509 through first motor 508 and rotate, and then drive driven gear 507, dwang 501, rotating disc 502, cleaning brush layer 500 on mounting panel 503 and the mounting panel 503 rotates, can clean the surface of aluminum alloy door and window at rotatory in-process, improve the effect of cleaning, when cleaning, utilize the air pumping effect of first aspiration pump 510, carry out powerful absorption and retrieve to first collection box 511 in the dust of raising when will cleaning from a plurality of first dust cage 505 departments.
The number of the auxiliary dust suction mechanisms 6 is two, the two auxiliary dust suction mechanisms 6 are symmetrically arranged at the left side and the right side of the first U-shaped frame 1, each auxiliary dust suction mechanism 6 comprises a second suction pump 600, a second recovery box 601, a first inlet pipe 603 and a second outlet pipe 603, a second U-shaped frame 604, a rotating shaft 605, a second motor 606, a T-shaped rotating rod 607, an auxiliary suction pipe 608, a second dust collection hood 609 and a second exhaust pipe 610, the number of the second U-shaped frames 604 is two, the two second U-shaped frames 604 are symmetrically arranged at the front side and the rear side of the connecting plate, the rotating shaft 605 is rotatably connected in the second U-shaped frames 604, one end of the T-shaped rotating rod 607 is connected with the rotating shaft 605, the other end of the T-shaped rotating rod 607 is provided with a plurality of auxiliary suction pipes 608 in a penetrating manner, the second suction pump 600 and the second recovery box 601 are arranged at the top of the supporting base 2, the second suction pump 600 and the second recovery box 601 are connected through the second exhaust pipe 610, the inlet end of the one-inlet multi-outlet pipe 603 is connected with the air suction port of the second air suction pump 600, the number of the one-inlet multi-outlet pipes 603 is two, one end of the auxiliary suction pipe 608 is connected with a plurality of outlet ends of the one-inlet multi-outlet pipe 603, and the other end of the auxiliary suction pipe 608 is provided with a second dust collection cover 609; because the front side and the rear side of the first U-shaped frame 1 are both open structures, dust is inevitably escaped in the dust removal process, the second motor 606 is utilized to drive the T-shaped rotating rod 607 to rotate repeatedly on the rotating shaft 605, and the second dust collection hood 609 faces the openings at the front side and the rear side of the first U-shaped frame 1, and at the same time of rotation, the air suction effect of the second air suction pump 600 is utilized to suck a small amount of escaped dust from the second dust collection hood 609 and recycle the dust into the second recycling box 601, so that the escape of the dust which is lifted while the dust removal mechanism 5 is utilized to remove dust is effectively avoided from the open ends at the front side and the rear side of the first U-shaped frame 1.
The outlet ends of the one-inlet-multiple-outlet pipes 603 in each auxiliary dust suction mechanism 6 are the same as the auxiliary suction pipes 608 in number and correspond to one another.
The front and back both sides of the bottom of supporting seat 2 all are provided with universal wheel 7, set up universal wheel 7 and be convenient for this device freely to remove, will remove this device when using and make aluminum alloy processingequipment be located this device, remove this device to the position that does not hinder when not using.
The supporting seat 2 with still be connected with gauze 8 between the first U-shaped frame 1, gauze 8 is collapsible, expandes or folds along with it when electric telescopic handle 3 goes up and down, utilizes gauze 8 to filter the dust, avoids the dust to escape.
The inner wall of the first U-shaped frame 1 is provided with an active carbon screen plate 9, and the active carbon screen plate 9 is used for further physical adsorption of dust diffused in the air.
When in use: firstly, universal wheels 7 are arranged to facilitate free movement of the device, the device is moved to enable an aluminum alloy processing device to be located in the device when in use, a dust removal device 5 is located right above an aluminum alloy door window, an electric telescopic rod 3 drives a first U-shaped frame 1 and the dust removal device 5 to ascend and descend, a first motor 508 drives a driving gear 509 to rotate, and further drives a driven gear 507, a rotating rod 501, a rotating disc 502, a mounting plate 503 and a cleaning brush layer 500 on the mounting plate 503 to rotate, the surface of the aluminum alloy door window can be cleaned in the rotating process, the cleaning effect can be effectively improved, and when cleaning is carried out, dust raised in cleaning is powerfully absorbed from a plurality of first dust collecting hoods 505 and is recycled into a first recycling box 511 by means of air suction of a first air suction pump 510; utilize second motor 606 to drive T shape dwang 607 and rotate on pivot 605 repeatedly, and second dust cage 609 subtend the opening of first U-shaped frame 1 front and back both sides, when rotating, utilize the air extraction effect of second aspiration pump 600, make a small amount of dust that escapes inhale from second dust cage 609 and retrieve to second collection box 601 in, just so effectively avoid utilizing dust removal mechanism 5 to remove dust simultaneously the dust and raise the dust and escape from first U-shaped frame 1 front and back both sides open end, and gauze 8 is collapsible, it is folding with its expansion when electric telescopic handle 3 goes up and down, utilize gauze 8 to filter the dust, avoid the dust to escape, in addition the further dust physical adsorption and the air purification that diffuse in the air of active carbon otter board 9.
Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the utility model, the scope of which is defined in the appended claims and their equivalents.
Claims (7)
1. The utility model provides a dust collector for aluminum alloy door and window processing, includes first U-shaped frame, the opening of first U-shaped frame is down, first U-shaped frame includes two curb plates and a connecting plate that are parallel to each other, its characterized in that: supporting seats are arranged under the two side plates of the first U-shaped frame, an electric telescopic rod is connected between the supporting seats and the first U-shaped frame, and a dust removing mechanism and an auxiliary dust collecting mechanism are arranged on the first U-shaped frame.
2. The dust removing device for the processing of the aluminum alloy doors and windows according to claim 1, characterized in that: the central point of connecting plate puts and has seted up the mounting hole, install the bearing in the mounting hole, dust removal mechanism includes the dwang, the middle part of dwang with the bearing rotates to be connected, the inside of dwang is provided with the air flue, the carousel is connected to the bottom of dwang, the bottom of carousel sets up a plurality of mounting panel, is provided with the cleaning brush layer on the mounting panel, the inside of carousel runs through and sets up a plurality of strong straw, the bottom of strong straw all sets up first dust cage, annular gas disc is connected at the top of strong straw, the inside of annular gas disc is provided with the air chamber, the inner wall of annular gas disc and the outer wall welding of dwang, and dwang and annular gas disc welding department have seted up a plurality of gas pocket, be linked together between strong straw, air chamber, gas pocket and the air flue, the outside on upper portion of dwang is connected with driven gear, the top of connecting plate is provided with first motor, The air exhaust device comprises a first air exhaust pump and a first recovery box, wherein the output shaft end at the top of a first motor is connected with a driving gear, the driving gear is meshed with a driven gear, an air exhaust opening of the first air exhaust pump is connected with one end of an air exhaust pipe, the other end of the air exhaust pipe is connected with an air passage through an air slip ring, an air exhaust opening of the air exhaust pipe is connected with one end of a first air exhaust pipe, and the other end of the first air exhaust pipe is connected with the first recovery box.
3. The dust removing device for the processing of the aluminum alloy doors and windows according to claim 2, characterized in that: the auxiliary dust collection mechanisms are two in number and are symmetrically arranged on the left side and the right side of the first U-shaped frame, each auxiliary dust collection mechanism comprises two second air pumps, two second recovery boxes, a plurality of inlet pipes, a plurality of outlet pipes, two U-shaped frames, a rotating shaft, a second motor, a T-shaped rotating rod, auxiliary suction pipes, a second dust hood and a second exhaust pipe, the two second U-shaped frames are symmetrically arranged on the front side and the rear side of the connecting plate, the rotating shaft is rotationally connected in the second U-shaped frames, one end of the T-shaped rotating rod is connected with the rotating shaft, the other end of the T-shaped rotating rod is provided with a plurality of auxiliary suction pipes in a penetrating manner, the second air pumps and the second recovery boxes are arranged on the top of the supporting seat and are connected through the second exhaust pipes, the inlet ends of the inlet pipes and the outlet pipes are connected with the air pumping ports of the second air pumps, and the number of the inlet pipes and the outlet pipes is two, one end of the auxiliary suction pipe is connected with a plurality of outlet ends of the one-inlet-multi-outlet pipe, and the other end of the auxiliary suction pipe is provided with a second dust collection cover.
4. The dust removing device for the processing of the aluminum alloy doors and windows according to claim 3, characterized in that: the outlet ends of the one-inlet and multi-outlet pipes in each auxiliary dust suction mechanism are the same in number and correspond to the auxiliary suction pipes one by one.
5. The dust removing device for the processing of the aluminum alloy doors and windows according to claim 1, characterized in that: the front side and the rear side of the bottom of the supporting seat are provided with universal wheels.
6. The dust removing device for the processing of the aluminum alloy doors and windows according to claim 1, characterized in that: and a gauze is further connected between the supporting seat and the first U-shaped frame.
7. The dust removing device for the processing of the aluminum alloy doors and windows according to claim 1, characterized in that: the inner wall of the first U-shaped frame is provided with an activated carbon screen plate.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202122568692.8U CN216262212U (en) | 2021-10-25 | 2021-10-25 | A dust collector for aluminum alloy door and window processing |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN202122568692.8U CN216262212U (en) | 2021-10-25 | 2021-10-25 | A dust collector for aluminum alloy door and window processing |
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CN216262212U true CN216262212U (en) | 2022-04-12 |
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CN202122568692.8U Active CN216262212U (en) | 2021-10-25 | 2021-10-25 | A dust collector for aluminum alloy door and window processing |
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2021
- 2021-10-25 CN CN202122568692.8U patent/CN216262212U/en active Active
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