CN114178961B - Building profile recycling, separating and winnowing device and using method thereof - Google Patents

Building profile recycling, separating and winnowing device and using method thereof Download PDF

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Publication number
CN114178961B
CN114178961B CN202111394730.0A CN202111394730A CN114178961B CN 114178961 B CN114178961 B CN 114178961B CN 202111394730 A CN202111394730 A CN 202111394730A CN 114178961 B CN114178961 B CN 114178961B
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Prior art keywords
dust collecting
dust collection
pipe
dust
base
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CN114178961A (en
Inventor
杨绅
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Jiangsu Qianxi Environmental Protection Technology Co ltd
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Jiangsu Qianxi Environmental Protection Technology Co ltd
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B24GRINDING; POLISHING
    • B24BMACHINES, DEVICES, OR PROCESSES FOR GRINDING OR POLISHING; DRESSING OR CONDITIONING OF ABRADING SURFACES; FEEDING OF GRINDING, POLISHING, OR LAPPING AGENTS
    • B24B27/00Other grinding machines or devices
    • B24B27/033Other grinding machines or devices for grinding a surface for cleaning purposes, e.g. for descaling or for grinding off flaws in the surface
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B24GRINDING; POLISHING
    • B24BMACHINES, DEVICES, OR PROCESSES FOR GRINDING OR POLISHING; DRESSING OR CONDITIONING OF ABRADING SURFACES; FEEDING OF GRINDING, POLISHING, OR LAPPING AGENTS
    • B24B41/00Component parts such as frames, beds, carriages, headstocks
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B24GRINDING; POLISHING
    • B24BMACHINES, DEVICES, OR PROCESSES FOR GRINDING OR POLISHING; DRESSING OR CONDITIONING OF ABRADING SURFACES; FEEDING OF GRINDING, POLISHING, OR LAPPING AGENTS
    • B24B41/00Component parts such as frames, beds, carriages, headstocks
    • B24B41/04Headstocks; Working-spindles; Features relating thereto
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B24GRINDING; POLISHING
    • B24BMACHINES, DEVICES, OR PROCESSES FOR GRINDING OR POLISHING; DRESSING OR CONDITIONING OF ABRADING SURFACES; FEEDING OF GRINDING, POLISHING, OR LAPPING AGENTS
    • B24B47/00Drives or gearings; Equipment therefor
    • B24B47/10Drives or gearings; Equipment therefor for rotating or reciprocating working-spindles carrying grinding wheels or workpieces
    • B24B47/12Drives or gearings; Equipment therefor for rotating or reciprocating working-spindles carrying grinding wheels or workpieces by mechanical gearing or electric power
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B24GRINDING; POLISHING
    • B24BMACHINES, DEVICES, OR PROCESSES FOR GRINDING OR POLISHING; DRESSING OR CONDITIONING OF ABRADING SURFACES; FEEDING OF GRINDING, POLISHING, OR LAPPING AGENTS
    • B24B55/00Safety devices for grinding or polishing machines; Accessories fitted to grinding or polishing machines for keeping tools or parts of the machine in good working condition
    • B24B55/06Dust extraction equipment on grinding or polishing machines
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B24GRINDING; POLISHING
    • B24BMACHINES, DEVICES, OR PROCESSES FOR GRINDING OR POLISHING; DRESSING OR CONDITIONING OF ABRADING SURFACES; FEEDING OF GRINDING, POLISHING, OR LAPPING AGENTS
    • B24B55/00Safety devices for grinding or polishing machines; Accessories fitted to grinding or polishing machines for keeping tools or parts of the machine in good working condition
    • B24B55/12Devices for exhausting mist of oil or coolant; Devices for collecting or recovering materials resulting from grinding or polishing, e.g. of precious metals, precious stones, diamonds or the like

Abstract

The invention discloses a building section recycling, separating and winnowing device which comprises a self-adaptive stirring type unpowered full-angle inner dust collecting device, a dust collecting roller rotating base assembly, a grinding power driving device, a closed grinding and separating box body and a supporting and feeding device. The invention belongs to the technical field of building section bar recovery, and particularly relates to a building section bar recovery, separation and winnowing device and a using method thereof; the invention realizes the technical effects of directional blast dust collection from a cutting position and absorption of impurity fragments polished from a polishing position by a polishing driving force mode through the self-adaptive stirring type unpowered full-angle internal dust collection device under the condition of no independent driving unit; and common grinding burrs are designed into a structure consisting of a flexible rubber pipe and a rigid cutting pipe, and a cutting edge is arranged at the end part of the cutting pipe, so that the rigidity of the cutting pipe is further improved, and the technical problem that a tool bit for grinding and cutting cannot be too soft or too hard is effectively solved.

Description

Building profile recycling, separating and winnowing device and using method thereof
Technical Field
The invention belongs to the technical field of building section recycling, and particularly relates to a building section recycling, separating and winnowing device and a using method thereof.
Background
A lot of recyclable metal materials such as steel bars, angle iron, steel pipes and the like exist in the construction waste, and can be smelted and recycled again through simple impurity removal treatment; when the recyclable profiles are used, the recyclable profiles are mostly exposed to air or buried in concrete, the concrete buried part generally needs to be crushed by a crushing device such as a jaw crusher, but a small amount of concrete scraps still adhere to the crushed and separated profiles, and rust and dust adhere to the profiles like the recycled profiles exposed to air.
The common removal mode of impurities such as rust, concrete, dust and the like is polishing and grinding, but a large amount of dust is generated in the process, and great threat is generated to the working environment and the human health.
At present, some grinding auxiliary devices which enclose a grinding area into a closed space or actively extract dust by using a dust suction device appear in the market, but a general closed grinding device only encloses the grinding area into a closed space by using a protective cover so as to prevent dust from diffusing, or air mixed with dust in the grinding area is continuously extracted from one side or the bottom of the protective cover by using an external dust suction device; however, the dust suction port of this dust suction manner is far from the cutting position, and a large amount of dust cannot fall into the dust suction port, so that the dust is deposited at the dead angle of the flow of the dust collection airflow, and is difficult to clean, and the dust suction effect is greatly reduced.
Based on the above discussion, the invention mainly provides the winnowing dust collection device which can continuously collect dust at the cutting position without waiting for dust sedimentation.
Disclosure of Invention
In order to overcome the defects of the prior art, the invention provides a construction section recycling, separating and winnowing device which is used for recycling metal sections such as steel bars, steel pipes and angle irons in construction waste and can clean and collect impurities such as rust, concrete residues and dust on the surface of the sections, and a using method thereof; in order to realize the technical effects of directional blowing and air flow pushing, and further simplify the structure and reduce the cost, the invention creatively provides a self-adaptive stirring type unpowered full-angle internal dust collection device based on a multipurpose principle and a self-service principle, realizes the technical effect of directional blowing dust collection from a cutting position by means of a grinding driving force under the condition of no independent driving unit, and simultaneously avoids dust sedimentation.
In order to overcome the technical contradiction that the cutter head for grinding and cutting can not be too soft (the air inlet is easy to deform to cause blockage) or too hard (the cutter head is easy to break by itself or large chips are cut from a section bar), the invention designs the common grinding burr into a structure consisting of two parts, namely a flexible rubber pipe and a rigid cutting pipe on the basis of a division principle, and arranges a cutting edge at the end part of the cutting pipe, thereby further improving the rigidity of the cutting pipe and effectively solving the technical problem that the cutter head for grinding and cutting can not be too soft or too hard; in order to avoid the problem that a small amount of dust and impurities which are not extracted in time are deposited at the bottom of the box body and are far away from the dust suction port, the invention creatively provides an external unpowered air blowing device with a redundant function based on a multipurpose principle.
The technical scheme adopted by the invention is as follows: the invention provides a building section recycling, separating and winnowing device which comprises a self-adaptive stirring type unpowered full-angle inner dust collecting device, a dust collecting roller rotating base component, a polishing power driving device, a closed polishing and separating box body and a supporting and feeding device, wherein the self-adaptive stirring type unpowered full-angle inner dust collecting device is rotatably arranged on the dust collecting roller rotating base component, the self-adaptive stirring type unpowered full-angle inner dust collecting device is a main execution component, two groups of self-adaptive stirring type unpowered full-angle inner dust collecting devices are symmetrically arranged, the dust collecting roller rotating base component is arranged on the closed polishing and separating box body, the dust collecting roller rotating base component has a supporting function, the polishing power driving device is arranged on the closed polishing and separating box body, the polishing power driving device has driving and transmission functions, the supporting and feeding device is arranged on the closed polishing and separating box body, the supporting and feeding device is an assembly independent from equipment, and the feeding mode is manual feeding.
Further, the self-adaptive stirring type unpowered full-angle internal dust collecting device comprises an outer unpowered air blowing device, an active capillary polishing dust collecting device and an inner unpowered air blowing device, wherein the outer unpowered air blowing device, the active capillary polishing dust collecting device and the inner unpowered air blowing device are symmetrically arranged on the rotary base component of the dust collecting drum, the outer unpowered air blowing device can stir air in a sealed space, the polished chips flow along with the air in the space to prevent the deposition of the chips and dust, the active capillary polishing dust collecting device is arranged on the outer unpowered air blowing device, the active capillary polishing dust collecting device can absorb outside air when the air flows, the inner unpowered air blowing device is arranged on the active capillary polishing dust collecting device, and the inner unpowered air blowing device can realize the unidirectional flow effect of the blown air by virtue of the driving force of polishing without any driving unit; the unpowered air-blast device of outside includes that bottom rotates support bearing, bottom collection dirt sloping pipe and outside blast wheel, bottom rotation support bearing block is located in collection dirt cylinder rotating base subassembly, be equipped with sloping pipe bottom straight tube on the collection dirt sloping pipe of bottom, bottom collection dirt sloping pipe is equipped with straight tube ka tai one on sloping pipe bottom straight tube, bottom collection dirt sloping pipe is located on the bottom rotation support bearing through straight tube ka tai block, be equipped with sloping pipe top straight tube on the collection dirt sloping pipe of bottom, bottom collection dirt sloping pipe is equipped with straight tube ka tai two on sloping pipe top straight tube, the outside of bottom collection dirt sloping pipe is located to outside blast wheel block, the annular equipartition is equipped with the formula of hanging down slope blade on the outside blast wheel, and the formula of hanging down slope blade can stir surrounding air when high-speed rotation, prevents that the dust from falling and depositing.
Preferably, the active capillary polishing dust collecting device comprises a cylindrical dust collecting roller body and a flexible polishing head, the cylindrical dust collecting roller body is clamped on the straight pipe clamping table II, dust collecting roller side round holes are annularly distributed in the cylindrical dust collecting roller body, an elastic rubber hollow base is arranged at the root of the flexible polishing head, the flexible polishing head is clamped in the dust collecting roller side round holes through the rubber hollow base, the flexible polishing head and the cylindrical dust collecting roller body are fixedly connected in a hot melting mode, the flexible polishing head is provided with a high-rigidity metal polishing head on the rubber hollow base, the high-rigidity metal polishing head can bounce within a certain range through connection of the rubber hollow base, so that the high-rigidity metal polishing head is prevented from being broken, the flexible polishing head is annularly and provided with lotus-shaped micro cutting edges for cutting, the hardness of the lotus-shaped micro cutting edges is high, rust, dust, concrete residues and the like on the surface of a polished object can be removed through polishing and cutting modes, a dust collecting hole is formed in the hollow flexible polishing head, and air can be allowed to pass through.
As a further preferred aspect of the present invention, the internal unpowered blower includes a spiral air auger, a dust collecting drum top sealing plate, a drum top connecting rod and a drum driving gear, the spiral air auger is fastened to the inner wall of the cylindrical dust collecting drum body, the spiral air auger is fixedly connected to the cylindrical dust collecting drum body, the two sets of internal unpowered blowers rotate in the same direction, the spiral air auger generates a downward airflow when rotating, the spiral air auger is provided with a hollow connecting pipe, the dust collecting drum top sealing plate is fastened to the top of the cylindrical dust collecting drum body, the dust collecting drum top sealing plate has a dust blocking function, the drum top connecting rod is fastened to the hollow connecting pipe, and the drum driving gear is fastened to the drum top connecting rod.
Further, collection dirt cylinder rotates the base subassembly and includes bottom bearing support sleeve, cylinder rotation collection dirt base, base tip block and forked type dust collecting pipe, the cylinder rotates and is equipped with the base shoulder on the collection dirt base, bottom bearing support sleeve locates on the base shoulder, the bottom rotates during support bearing block locates bottom bearing support sleeve, and bottom bearing support sleeve plays the supporting role, the cylinder rotates the symmetry on the collection dirt base and is equipped with the circular interface in base bottom, base tip block is located one of them group of the circular interface in base bottom, forked type dust collecting pipe block is located in the other a set of the circular interface in base bottom, and the air that has impurity can flow, assemble along forked type dust collecting pipe.
Further, the polishing power driving device comprises a supporting assembly and a driving assembly, the supporting assembly is arranged on the closed polishing separation box body, the driving assembly is arranged in the supporting assembly, the supporting assembly comprises a driving supporting frame and a roller top supporting bearing, the driving supporting frame is arranged on the closed polishing separation box body, a supporting frame center avoiding hole is formed in the driving supporting frame, supporting frame end part round holes are symmetrically formed in the driving supporting frame, the roller top supporting bearing is clamped in the supporting frame end part round holes, a roller top connecting rod is clamped in the roller top supporting bearing, and the supporting frame end part round holes can support the self-adaptive stirring type unpowered all-angle inner dust collecting device from the top.
Preferably, the driving assembly comprises a driving motor, an original driving gear and a transmission toothed belt, the driving motor is arranged on the driving support frame and provides driving force for polishing, an output shaft of the driving motor is located in a center clearance hole of the support frame, the original driving gear is clamped on the output shaft of the driving motor, the transmission toothed belt is meshed with the original driving gear, the transmission toothed belt is meshed with the roller driving gear, and the transmission toothed belt plays a transmission role.
Furthermore, the closed type grinding and separating box body comprises a main body bottom plate, a closed type protective box body, a flexible brush type semi-sealed window, a top cover plate and a dust collecting and filtering device, the closed type grinding and separating box body encloses a grinding and polishing area into a relatively closed space, the closed type protective box body is arranged on the main body bottom plate, box end windowsills are symmetrically arranged on the closed type protective box body, the flexible brush type semi-sealed window is clamped in the box end windowsills, the flexible brush type semi-sealed window can keep good dust blocking effects when passing through objects to be polished in different shapes and different sizes, the top cover plate is clamped at the top of the closed type protective box body, the top cover plate has the effect of enclosing the space in the closed type protective box body into a closed space, cover plate avoiding holes are symmetrically arranged on the top cover plate, the driving supporting frame is arranged on the top cover plate, the roller top connecting rod is arranged in the cover plate avoiding holes, the dust collecting and filtering device is arranged on the main body bottom plate, and the bifurcated dust collecting and filtering device is arranged on the dust collecting and filtering device.
Further, support feeding device including supporting main shaft, supporting roller, section bar body, rings body and wire rope, the both ends of closed protection box are located to the supporting main shaft block, the supporting roller rotates to be located on the supporting main shaft, and the supporting roller plays the supporting role, can reduce the resistance of manual feed, the section bar body is arranged in closed protection box, the both ends of section bar body are equipped with rings mounting hole, the rings body passes rings mounting hole, wire rope locates on the rings body, wire rope rolls and locates on the supporting roller, wire rope is arranged in flexible brush hair formula semi-sealed window.
The scheme also discloses a use method of the building section recycling, separating and winnowing device, which comprises the following steps:
the method comprises the following steps: one group of the steel wire ropes penetrates into the flexible bristle type semi-sealed window, so that one end of the profile body is just positioned between the two groups of cylindrical dust collecting roller bodies, and then a driving motor is started;
step two: the driving motor drives the cylindrical dust collecting roller body to rotate at a high speed through the driving assembly and the internal unpowered air blowing device, and when the cylindrical dust collecting roller body rotates at a high speed, impurities such as rust, concrete residues, dust and the like on the outer surface of the profile body are polished to fall off through the lotus-shaped miniature cutting edge;
step three: the fallen fine powdery debris flows in a suspended manner along with the air in the closed protective box under the stirring of the external air blast impeller and cannot be naturally deposited and laid on the bottom plate of the main body;
step four: the spiral air auger can generate downward moving airflow when rotating at high speed, so that a larger negative pressure is generated inside the cylindrical dust collecting roller body, and air containing impurities such as dust and the like inside the closed protective box body, outside the cylindrical dust collecting roller body and flowing into the cylindrical dust collecting roller body through the hollow dust collecting holes under the action of the negative pressure inside the cylindrical dust collecting roller body;
step five: the air with dust in the cylindrical dust collecting roller body rotates the dust collecting base along the roller to enter the dust collecting and filtering device to complete filtering, filter the dust and discharge clean air.
The invention with the structure has the following beneficial effects: the invention provides a recycling, separating and winnowing device for building section bars, which is used for recycling metal section bars such as steel bars, steel pipes, angle irons and the like in building garbage and can clean and collect impurities such as rust, concrete residues, dust and the like on the surface of the section bars, and a using method thereof; the invention discloses a general closed type grinding device, which is characterized in that a grinding area is only enclosed into a closed space by a protective cover, so that dust is prevented from diffusing, or air in the grinding area is continuously extracted by an external dust suction device, a dust suction port of the dust suction mode is far away from a cutting position, a large amount of dust cannot fall into the dust suction port, and the dust cannot be deposited at a dead flowing corner of dust collection airflow and is difficult to clean.
In order to overcome the technical contradiction that the cutter head for grinding and cutting can not be too soft (the air inlet is easy to deform to cause blockage) or too hard (the cutter head is easy to break by itself or large chips are cut from a section bar), the invention designs the common grinding burr into a structure consisting of two parts, namely a flexible rubber pipe and a rigid cutting pipe on the basis of a division principle, and arranges a cutting edge at the end part of the cutting pipe, thereby further improving the rigidity of the cutting pipe and effectively solving the technical problem that the cutter head for grinding and cutting can not be too soft or too hard; in order to avoid the problem that a small amount of dust and impurities which are not extracted in time are deposited at the bottom of the box body and are too far away from the dust suction port, the invention creatively provides an external part unpowered air blowing device with a redundancy function based on a multipurpose principle, and under the condition that no independent driving unit is arranged, air in the closed type protection box body is stirred by means of a grinding driving force, so that the technical effects that dust keeps in a suspension flowing state and does not deposit are realized.
Drawings
FIG. 1 is a perspective view of a recovering, separating and winnowing device for building section bars according to the present invention;
FIG. 2 is a front view of a recovering, separating and winnowing device for architectural section bars according to the present invention;
fig. 3 is a top view of a recovering, separating and winnowing device for architectural section bars according to the present invention;
FIG. 4 isbase:Sub>A cross-sectional view taken along section line A-A of FIG. 2;
FIG. 5 is a cross-sectional view taken along section line B-B of FIG. 4;
FIG. 6 is a schematic structural view of the adaptive stirring type unpowered full-angle internal dust collector of the present invention;
FIG. 7 is a schematic structural view of a dust collecting roller rotating base assembly of the air separation device for recycling architectural section bars according to the present invention;
fig. 8 is a schematic structural view of a polishing power driving device of the architectural profile recycling, separating and winnowing device provided by the invention;
fig. 9 is a schematic structural view of a closed grinding and separating box body of the architectural profile recycling, separating and winnowing device provided by the invention;
fig. 10 is a schematic structural view of a supporting and feeding device of the construction section recycling, separating and air separating device according to the present invention;
FIG. 11 is an enlarged view of a portion of FIG. 4 at I;
FIG. 12 is an enlarged view of a portion of FIG. 5 at II;
fig. 13 is a partial enlarged view of fig. 4 at iii.
Wherein, 1, self-adapting stirring type unpowered full-angle inner dust collecting device, 2, a dust collecting roller rotating base component, 3, a grinding power driving device, 4, a closed grinding and separating box body, 5, a supporting and feeding device, 6, an outer part unpowered air blowing device, 7, an active capillary grinding and dust collecting device, 8, an inner unpowered air blowing device, 9, a bottom rotating and supporting bearing, 10, a bottom dust collecting slope pipe, 11, an outer air blowing impeller, 12, a cylindrical dust collecting roller body, 13, a flexible grinding head, 14, a spiral air auger, 15, a dust collecting roller top sealing plate, 16, a roller top connecting rod, 17, a roller driving gear, 18, a slope pipe bottom straight pipe, 19, a straight pipe clamping platform I, 20, a slope pipe top straight pipe, 21, a straight pipe clamping platform II, 22, a vertical slope blade, 23, a dust collecting roller side circular hole, 24, a rubber hollow base, 25, a high-rigidity metal polishing head, 26, a lotus-shaped micro cutting edge, 27, a hollow dust collecting hole, 28, a hollow connecting pipe, 29, a bottom bearing supporting sleeve, 30, a roller rotating dust collecting base, 31, a base end sealing cap, 32, a forked dust collecting pipe, 33, a base shoulder, 34, a base bottom circular interface, 35, a supporting component, 36, a driving component, 37, a driving supporting frame, 38, a roller top supporting bearing, 39, a driving motor, 40, a primary driving gear, 41, a transmission toothed belt, 42, a supporting frame center clearance hole, 43, a supporting frame end circular hole, 44, a main body bottom plate, 45, a closed type protective box body, 46, a flexible brush hair type semi-sealed window, 47, a top cover plate, 48, a dust collecting and filtering device, 49, a box body end window platform, 50, a cover plate clearance hole, 51, a supporting main shaft, 52, a supporting roller, 53 and a section body, 54. the hoisting ring comprises a hoisting ring body 55, a steel wire rope 56 and a hoisting ring mounting hole.
The accompanying drawings, which are included to provide a further understanding of the invention and are incorporated in and constitute a part of this specification, illustrate embodiments of the invention and together with the description serve to explain the principles of the invention and not to limit the invention.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the accompanying 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 obtained by a person skilled in the art without making any creative effort based on the embodiments in the present invention, belong to the protection scope of the present invention.
In the description of the present invention, it is to be understood that the terms "upper", "lower", "front", "rear", "left", "right", "top", "bottom", "inner", "outer", and the like, indicate orientations or positional relationships based on the orientations or positional relationships shown in the drawings, and are only for convenience in describing the present invention and simplifying the description, but do not indicate or imply that the device or element referred to must have a particular orientation, be constructed in a particular orientation, and be operated, and thus should not be construed as limiting the present invention.
As shown in fig. 1, the invention provides a building section recycling, separating and winnowing device, which comprises a self-adaptive stirring type unpowered full-angle inner dust collecting device 1, a dust collecting roller rotating base component 2, a grinding power driving device 3, a closed grinding and separating box body 4 and a supporting and feeding device 5, wherein the self-adaptive stirring type unpowered full-angle inner dust collecting device 1 is rotatably arranged on the dust collecting roller rotating base component 2, the self-adaptive stirring type unpowered full-angle inner dust collecting device 1 is a main execution component, two groups of self-adaptive stirring type unpowered full-angle inner dust collecting devices 1 are symmetrically arranged, the dust collecting roller rotating base component 2 is arranged on the closed grinding and separating box body 4, the dust collecting roller rotating base component 2 has a supporting function, the grinding power driving device 3 is arranged on the closed grinding and separating box body 4, the supporting and feeding device 5 is a component independent of equipment, and the feeding mode is manual feeding.
As shown in fig. 1, 2, 3, and 9, the closed type polishing and separating box 4 includes a main body bottom plate 44, a closed type protective box 45, a flexible bristle type semi-sealed window 46, a top cover plate 47, and a dust collecting and filtering device 48, the closed type polishing and separating box 4 encloses a relatively closed space with a polishing area, the closed type protective box 45 is disposed on the main body bottom plate 44, box end windowsills 49 are symmetrically disposed on the closed type protective box 45, the flexible bristle type semi-sealed window 46 is clamped in the box end windowsills 49, the flexible bristle type semi-sealed window 46 can keep a good dust-blocking effect when passing through objects to be polished of different shapes and sizes, the top cover plate 47 is clamped on the top of the closed type protective box 45, the top cover plate 47 has an effect of enclosing the space in the closed type protective box 45 into a closed space, cover plate clearance holes 50 are symmetrically disposed on the top cover plate 47, and the dust collecting and filtering device 48 is disposed on the main body bottom plate 44.
As shown in fig. 1, 4, 7 and 12, the dust collecting drum rotating base assembly 2 includes a bottom bearing support sleeve 29, a drum rotating dust collecting base 30, a base end sealing cap 31 and a branched dust collecting pipe 32, the drum rotating dust collecting base 30 is provided with a base shoulder 33, the bottom bearing support sleeve 29 is arranged on the base shoulder 33, the bottom bearing support sleeve 29 is used for supporting, the drum rotating dust collecting base 30 is symmetrically provided with a base bottom circular connector 34, the base end sealing cap 31 is clamped on one group of the base bottom circular connectors 34, the branched dust collecting pipe 32 is clamped on the other group of the base bottom circular connectors 34, air with impurities can flow and converge along the branched dust collecting pipe 32, and the branched dust collecting pipe 32 is arranged on the dust collecting filter 48.
As shown in fig. 1, 4, 5, 6, 11 and 13, the adaptive stirring type unpowered full-angle internal dust collecting device 1 comprises an external unpowered air blowing device 6, an active capillary polishing dust collecting device 7 and an internal unpowered air blowing device 8, wherein the external unpowered air blowing device 6 is symmetrically arranged on a dust collecting drum rotating base component 2, the external unpowered air blowing device 6 can stir air in a sealed space, polished debris flows in the space along with the air, and the deposition of the debris and dust is prevented, the active capillary polishing dust collecting device 7 is arranged on the external unpowered air blowing device 6, the active capillary polishing dust collecting device 7 can absorb outside air when the air flows, the internal unpowered air blowing device 8 is arranged on the active capillary polishing dust collecting device 7, and the internal unpowered air blowing device 8 can realize the effect of unidirectional flow of the blown air by virtue of the driving force of polishing without any driving unit; the external unpowered air blowing device 6 comprises a bottom rotating support bearing 9, a bottom dust collection slope pipe 10 and an external air blowing impeller 11, wherein the bottom rotating support bearing 9 is clamped in a bottom bearing support sleeve 29, a slope pipe bottom straight pipe 18 is arranged on the bottom dust collection slope pipe 10, a straight pipe clamping table I19 is arranged on the slope pipe bottom straight pipe 18 of the bottom dust collection slope pipe 10, the bottom dust collection slope pipe 10 is clamped on the bottom rotating support bearing 9 through the straight pipe clamping table I19, a slope pipe top straight pipe 20 is arranged on the bottom dust collection slope pipe 10, a straight pipe clamping table II 21 is arranged on the slope pipe top straight pipe 20 of the bottom dust collection slope pipe 10, the external air blowing impeller 11 is clamped on the outer side of the bottom dust collection slope pipe 10, vertical slope blades 22 are annularly distributed on the external air blowing impeller 11, and the vertical slope blades 22 can stir surrounding air during high-speed rotation to prevent dust from falling and depositing; the active capillary polishing dust collecting device 7 comprises a cylindrical dust collecting roller body 12 and a flexible polishing head 13, wherein the cylindrical dust collecting roller body 12 is clamped on a straight pipe clamping table II 21, dust collecting roller side circular holes 23 are annularly and uniformly distributed on the cylindrical dust collecting roller body 12, an elastic rubber hollow base 24 is arranged at the root part of the flexible polishing head 13, the flexible polishing head 13 is clamped in the dust collecting roller side circular holes 23 through the rubber hollow base 24, the flexible polishing head 13 and the cylindrical dust collecting roller body 12 are fixedly connected in a hot melting mode, the flexible polishing head 13 is provided with a high-rigidity metal polishing head 25 on the rubber hollow base 24, through the connection of the rubber hollow base 24, the high-rigidity metal polishing head 25 can bounce within a certain range, so that the high-rigidity metal polishing head 25 is prevented from being broken, the flexible polishing head 13 is provided with a lotus-shaped micro cutting edge 26 for cutting on the high-rigidity metal polishing head 25 in an annular mode, the lotus-shaped micro cutting edge 26 has high hardness, and can remove rust marks, dust, concrete residues and other impurities on the surface of a hollow polished object in a flexible polishing mode, the flexible polishing head 13 is provided with a dust collecting hole 27 which allows air to pass through the dust collecting hole; the unpowered air-blast device of inside 8 includes spiral air auger 14, collect dirt cylinder top shrouding 15, cylinder top connecting rod 16 and cylinder drive gear 17, spiral air auger 14 block is located on the inner wall of cylindrical collection dirt cylinder body 12, spiral air auger 14 and cylindrical collection dirt cylinder body 12 rigid coupling, the direction of rotation of two sets of unpowered air-blast devices of inside 8 is the same, spiral air auger 14 can produce decurrent air current when rotatory, be equipped with hollow connecting pipe 28 on the spiral air auger 14, cylindrical collection dirt cylinder body 12's top is located to collect dirt cylinder top shrouding 15 block, collect dirt cylinder top shrouding 15 has the effect of keeping off the dirt, cylinder top connecting rod 16 block is located in hollow connecting pipe 28, cylinder drive gear 17 block is located on cylinder top connecting rod 16, cylinder top connecting rod 16 is located apron clearance hole 50.
As shown in fig. 1, 3 and 8, the polishing power driving device 3 includes a supporting component 35 and a driving component 36, the driving component 36 is disposed in the supporting component 35, the supporting component 35 includes a driving supporting frame 37 and a roller top supporting bearing 38, the driving supporting frame 37 is disposed on a top cover plate 47, a supporting frame center clearance hole 42 is disposed on the driving supporting frame 37, supporting frame end circular holes 43 are symmetrically disposed on the driving supporting frame 37, the roller top supporting bearing 38 is clamped in the supporting frame end circular holes 43, the roller top connecting rod 16 is clamped in the roller top supporting bearing 38, and the supporting frame end circular holes 43 can support the self-adaptive stirring type unpowered all-angle internal dust collecting device 1 from the top; the driving assembly 36 comprises a driving motor 39, an original driving gear 40 and a transmission toothed belt 41, the driving motor 39 is arranged on the driving support frame 37, the driving motor 39 provides driving force for polishing, an output shaft of the driving motor 39 is located in a central clearance hole 42 of the support frame, the original driving gear 40 is clamped on the output shaft of the driving motor 39, the transmission toothed belt 41 is meshed with the original driving gear 40, the transmission toothed belt 41 is meshed with the roller driving gear 17, and the transmission toothed belt 41 plays a transmission role.
As shown in fig. 4 and 10, the supporting and feeding device 5 includes a supporting main shaft 51, supporting rollers 52, a profile body 53, a hanging ring body 54 and a steel wire rope 55, the supporting main shaft 51 is fastened to two ends of the enclosed protective box 45, the supporting rollers 52 are rotatably disposed on the supporting main shaft 51, the supporting rollers 52 support to reduce the resistance of manual feeding, the profile body 53 is disposed in the enclosed protective box 45, hanging ring mounting holes 56 are disposed at two ends of the profile body 53, the hanging ring body 54 passes through the hanging ring mounting holes 56, the steel wire rope 55 is disposed on the hanging ring body 54, the steel wire rope 55 rolls on the supporting rollers 52, and the steel wire rope 55 is disposed in the flexible brush hair type semi-sealed window 46.
When the flexible brush type semi-sealed window is used, a user firstly needs to penetrate one group of the steel wire ropes 55 into the flexible brush type semi-sealed window 46 to enable one end of the section bar body 53 to be just positioned between the two groups of cylindrical dust collecting roller bodies 12, and then the driving motor 39 is started; the driving motor 39 drives the cylindrical dust collecting roller body 12 to rotate at high speed through the driving assembly 36 and the internal unpowered air blowing device 8, and when the cylindrical dust collecting roller body 12 rotates at high speed, impurities such as rust, concrete residues and dust on the outer surface of the profile body 53 are polished to fall off through the lotus-shaped miniature cutting edge 26; the fallen fine powder debris flows in the closed protective box 45 in a suspended manner with air under the stirring of the external air blast impeller 11 and is not naturally deposited and laid on the main body bottom plate 44; the spiral air auger 14 can generate downward moving air flow when rotating at high speed, so that a large negative pressure is generated inside the cylindrical dust collecting roller body 12, and air containing impurities such as dust and the like inside the closed protective box body 45, outside the cylindrical dust collecting roller body 12 and flowing into the cylindrical dust collecting roller body 12 through the hollow dust collecting hole 27 under the action of the negative pressure inside the cylindrical dust collecting roller body 12; the air with dust in the cylindrical dust collecting roller body 12 enters the dust collecting and filtering device 48 along the roller rotating dust collecting base 30 to be filtered, the dust is filtered, and the clean air is discharged, which is the whole working process of the present invention, and the steps are repeated when the dust collecting roller is used next time.
The actual operation process is simple and easy to implement, and only comprises the following steps: firstly, one group of the steel wire ropes 55 penetrates into the flexible brush hair type semi-sealed window 46, and then the driving motor 39 is started; when the cylindrical dust collecting roller body 12 rotates at a high speed, rust and concrete residues on the outer surface of the profile body 53 are polished to fall off by the lotus-shaped micro cutting edge 26; the fallen powder-like debris flows in suspension with the air in the closed-type shielding box 45 under the agitation of the external blower impeller 11; the spiral air auger 14 generates downward air flow when rotating, and air flows into the cylindrical dust collecting roller body 12 through the hollow dust collecting hole 27 under the action of internal negative pressure; the air with dust in the drum rotation dust collecting base 30 enters the dust collecting filter unit 48 to be filtered, and the dust is filtered and the clean air is discharged.
It is noted that, herein, relational terms such as first and second, and the like may be used solely to distinguish one entity or action from another entity or action without necessarily requiring or implying any actual such relationship or order between such entities or actions. Also, the terms "comprises," "comprising," or any other variation thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but may include other elements not expressly listed or inherent to such process, method, article, or apparatus.
Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims and their equivalents.
The present invention and its embodiments have been described above, and the description is not intended to be limiting, and the drawings show only one embodiment of the present invention, and the actual structure is not limited thereto. In summary, those skilled in the art should appreciate that they can readily use the disclosed conception and specific embodiments as a basis for designing or modifying other structures for carrying out the same purposes of the present invention without departing from the spirit and scope of the invention as defined by the appended claims.

Claims (7)

1. The utility model provides a separation wind selector is retrieved to architectural shape which characterized in that: the self-adaptive stirring type unpowered all-angle internal dust collection device comprises a self-adaptive stirring type unpowered all-angle internal dust collection device (1), a dust collection roller rotating base component (2), a grinding power driving device (3), a closed grinding separation box body (4) and a supporting and feeding device (5), wherein the self-adaptive stirring type unpowered all-angle internal dust collection device (1) is rotatably arranged on the dust collection roller rotating base component (2), the dust collection roller rotating base component (2) is arranged on the closed grinding separation box body (4), the grinding power driving device (3) is arranged on the closed grinding separation box body (4), and the supporting and feeding device (5) is arranged on the closed grinding separation box body (4);
the self-adaptive stirring type unpowered full-angle inner dust collection device (1) comprises an outer unpowered air blowing device (6), an active capillary polishing dust collection device (7) and an inner unpowered air blowing device (8), wherein the outer unpowered air blowing devices (6) are symmetrically arranged on a dust collection roller rotating base component (2), the active capillary polishing dust collection device (7) is arranged on the outer unpowered air blowing device (6), and the inner unpowered air blowing device (8) is arranged on the active capillary polishing dust collection device (7); the external unpowered air blowing device (6) comprises a bottom rotating support bearing (9), a bottom dust collection slope pipe (10) and an external air blowing impeller (11), wherein the bottom rotating support bearing (9) is clamped in the dust collection roller rotating base component (2), a slope pipe bottom straight pipe (18) is arranged on the bottom dust collection slope pipe (10), a straight pipe clamping table I (19) is arranged on the slope pipe bottom straight pipe (18) of the bottom dust collection slope pipe (10), the bottom dust collection slope pipe (10) is clamped on the bottom rotating support bearing (9) through the straight pipe clamping table I (19), a slope pipe top straight pipe (20) is arranged on the bottom dust collection slope pipe (10), a straight pipe clamping table II (21) is arranged on the slope pipe top straight pipe (20) of the bottom dust collection slope pipe (10), the external air blowing impeller (11) is clamped on the outer side of the bottom dust collection slope pipe (10), and vertical slope blades (22) are uniformly distributed on the external air blowing impeller (11) in an annular mode;
the active capillary tube polishing dust collecting device (7) comprises a cylindrical dust collecting roller body (12) and a flexible polishing head (13), the cylindrical dust collecting roller body (12) is clamped on a straight tube clamping platform II (21), circular dust collecting roller side round holes (23) are uniformly distributed on the cylindrical dust collecting roller body (12), an elastic rubber hollow base (24) is arranged at the root of the flexible polishing head (13), the flexible polishing head (13) is clamped in the circular dust collecting roller side round holes (23) through the rubber hollow base (24), the flexible polishing head (13) and the cylindrical dust collecting roller body (12) are fixedly connected in a hot melting mode, the flexible polishing head (13) is provided with a high-rigidity metal polishing head (25) on the rubber hollow base (24), the flexible polishing head (13) is provided with lotus-shaped micro cutting edges (26) for cutting on the high-rigidity metal polishing head (25) in an annular mode, and the flexible polishing head (13) is provided with a hollow dust collecting hole (27);
the unpowered air-blowing device (8) of inside includes spiral air auger (14), collection dirt cylinder top shrouding (15), cylinder top connecting rod (16) and cylinder drive gear (17), spiral air auger (14) block is located on the inner wall of cylindrical collection dirt cylinder body (12), spiral air auger (14) and cylindrical collection dirt cylinder body (12) rigid coupling, be equipped with cavity connecting pipe (28) on spiral air auger (14), the top of cylindrical collection dirt cylinder body (12) is located to collection dirt cylinder top shrouding (15) block, cylinder top connecting rod (16) block is located in cavity connecting pipe (28), cylinder drive gear (17) block is located on cylinder top connecting rod (16).
2. The building profile recycling, separating and winnowing device as claimed in claim 1, wherein: dust collection roller rotates base subassembly (2) and includes bottom bearing support sleeve (29), cylinder rotation dust collection base (30), base tip block (31) and branching formula dust collecting pipe (32), the cylinder rotates and is equipped with base shoulder (33) on dust collection base (30), base shoulder (33) are located to bottom bearing support sleeve (29), bottom rotation support bearing (9) block is located in bottom bearing support sleeve (29), the cylinder rotates and is equipped with base bottom circular interface (34) on dust collection base (30) symmetry, base tip block (31) block is located on one of them group of base bottom circular interface (34), branching formula dust collecting pipe (32) block is located in another group of base bottom circular interface (34).
3. The building profile recycling, separating and winnowing device as claimed in claim 2, wherein: polishing power drive arrangement (3) include supporting component (35) and drive assembly (36), supporting component (35) are located on the closed separation box (4) of polishing, drive assembly (36) are located in supporting component (35), supporting component (35) are including drive support frame (37) and cylinder top support bearing (38), drive support frame (37) are located on the closed separation box (4) of polishing, it keeps away a hole (42) to be equipped with the support frame center on drive support frame (37), the symmetry is equipped with support frame tip round hole (43) on drive support frame (37), cylinder top support bearing (38) block is located in support frame tip round hole (43), cylinder top connecting rod (16) block is located in cylinder top support bearing (38).
4. The recycling, separating and winnowing device for the building profiles as claimed in claim 3, characterized in that: the driving assembly (36) comprises a driving motor (39), an original driving gear (40) and a transmission toothed belt (41), the driving motor (39) is arranged on a driving support frame (37), an output shaft of the driving motor (39) is positioned in a center clearance hole (42) of the support frame, the original driving gear (40) is clamped on the output shaft of the driving motor (39), the transmission toothed belt (41) is meshed with the original driving gear (40), and the transmission toothed belt (41) is meshed with the roller driving gear (17).
5. The building profile recycling, separating and winnowing device as claimed in claim 4, wherein: closed separation box (4) of polishing includes main body bottom plate (44), closed protection box (45), flexible brush hair formula semi-sealed window (46), top apron (47) and collection dirt filter equipment (48), closed protection box (45) are located on main body bottom plate (44), the symmetry is equipped with box tip windowsill (49) on closed protection box (45), flexible brush hair formula semi-sealed window (46) block is located in box tip windowsill (49), the top of closed protection box (45) is located to top apron (47) block, the symmetry is equipped with apron clearance hole (50) on top apron (47), drive support frame (37) are located on top apron (47), cylinder top connecting rod (16) are located apron clearance hole (50), collection dirt filter equipment (48) are located on main body bottom plate (44), bifurcated dust collection pipe (32) are located on collection dirt filter equipment (48).
6. The recycling, separating and winnowing device for the building profiles as claimed in claim 5, characterized in that: support feeding device (5) including supporting main shaft (51), support roller (52), section bar body (53), rings body (54) and wire rope (55), support main shaft (51) block and locate the both ends of closed protection box (45), support roller (52) and rotate and locate on supporting main shaft (51), section bar body (53) are arranged in closed protection box (45), the both ends of section bar body (53) are equipped with rings mounting hole (56), rings body (54) pass rings mounting hole (56), wire rope (55) are located rings body (54), wire rope (55) roll is arranged on supporting roller (52), wire rope (55) are arranged in flexible brush hair formula semi-sealed window (46).
7. The use method of the building section recycling, separating and winnowing device according to claim 6 is characterized by comprising the following steps:
the method comprises the following steps: one group of the steel wire ropes (55) penetrates into the flexible bristle type semi-sealed window (46), and then the driving motor (39) is started;
step two: when the cylindrical dust collecting roller body (12) rotates at a high speed, rust and concrete residues on the outer surface of the profile body (53) are polished to fall off through the lotus-shaped micro cutting edge (26);
step three: the fallen powder debris flows in a suspended manner with air in the closed protective box body (45) under the stirring of the external air blowing impeller (11);
step four: the spiral air auger (14) can generate downward moving air flow when rotating, and air flows into the cylindrical dust collecting roller body (12) through the hollow dust collecting hole (27) under the action of internal negative pressure;
step five: the air with dust in the rotary dust collecting base (30) of the roller enters a dust collecting and filtering device (48) to be filtered, the dust is filtered, and clean air is discharged.
CN202111394730.0A 2021-11-23 2021-11-23 Building profile recycling, separating and winnowing device and using method thereof Active CN114178961B (en)

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