Round cage type cashmere dust removal device
By combining a conveying cylinder, a dispersing cylinder, and a dust collection cylinder, and utilizing the design of the dispersing components and the dust-collecting sponge column, the problem of incomplete separation of impurities and dust in cashmere is solved, achieving a highly efficient dust removal effect.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-27
- Publication Date
- 2026-03-31
AI Technical Summary
Existing dust removal units are unable to effectively separate clumps of impurities and suspended small dust particles from cashmere, resulting in poor impurity separation and unsatisfactory dust removal performance.
The device employs a combined structure of a conveying cylinder, a dispersing cylinder, and a dust removal cylinder. By utilizing the reverse rotation of the dispersing component, the design of the spiral conveying component, and the dust-collecting sponge column, it can disperse, tumble, and remove dust from cashmere. Impurities and dust are removed through a waste removal screen and an adsorption device.
It achieves complete separation and removal of impurities and dust from cashmere, improves dust removal efficiency, and reduces the labor intensity of workers and production costs.
Smart Images

Figure CN224062959U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a dust collector, concretely is a cashmere round cage type dust collector and belongs to cashmere dust removal technical field. BACKGROUND
[0002] Cashmere is a high-grade textile fiber, but cashmere is processed from raw cashmere into no-pile cashmere that can be woven, and needs to go through the processes of sorting, loosening, and washing, drying, carding and forming no-pile cashmere. Therefore, the cashmere in lumps needs to be spread out, and the impurities such as weeds and dust in it need to be removed as much as possible.
[0003] In the prior art, such as the automatic cashmere round cage type dust removal machine unit disclosed in the announcement No. CN216237383U, a conveying pipe is provided with a spiral conveyor at one end, the spiral conveyor penetrates into the inside of the conveying pipe at one end, the upper and lower surfaces of the conveying pipe are embeddedly installed with air nets, the surface of the conveying pipe is installed with a cleaning mechanism, the two air nets are communicated with the cleaning mechanism, and the surface of the spiral conveyor is installed with a driving mechanism connected with the cleaning mechanism. When the wind wheel rotates, the wind wheel can deliver a large amount of wind into the inside of the conveying pipe, so that the wind blows the cashmere quickly while passing through the cashmere, blows out and carries away the solid impurities mixed in the cashmere, effectively reduces the probability of rework by the workers in the later stage, reduces the labor intensity of the workers, and improves the quality of cashmere processing. However, in actual use, the existing dust removal machine unit directly flips the cashmere through the spiral conveyor to separate some impurities in the cashmere. However, since the impurities carried by the cashmere are mainly soil, and the soil is often adhered to the cashmere, the soil impurities cannot be completely separated from the cashmere by flipping. Moreover, since the cashmere is in a lump shape, the lump cashmere cannot be spread out by only using the flipping method, and the impurities in the lump cashmere cannot be completely separated, that is, the better impurity separation effect cannot be achieved. In addition, during the cashmere impurity separation process, the cashmere is blown by the wind at only one place of the conveying pipe, which cannot ensure that the separated impurities are completely blown away, and a large amount of floating small particle dust is generated during the flipping process of the cashmere. However, the existing dust removal machine unit cannot remove the suspended small particle dust, which also leads to poor dust removal effect. SUMMARY
[0004] The utility model provides a cashmere round cage type dust collector to solve the problem that the existing dust removal machine unit cannot achieve better impurity separation effect and has poor dust removal effect.
[0005] The utility model discloses a cashmere round cage type dust collector which comprises a conveying cylinder, a scattering cylinder and a dust removal cylinder.
[0006] The scattering cylinder is connected to the top of the cylinder body of the conveying cylinder, and the cylinder body of the scattering cylinder is communicated with the dust removal cylinder.
[0007] A spiral conveying assembly is rotatably arranged in the conveying cylinder, and the bottom end of the cylinder body of the conveying cylinder is provided with a sorting opening.
[0008] The upper end of the dust removal cylinder is connected with a cylinder cover which is communicated with a wind guide pipe.
[0009] As a further scheme of the utility model, the scattering assembly comprises a scattering rotating rod and a scattering lever, the scattering lever is arranged in a plurality of numbers, and is connected to the rod body of each scattering rotating rod in a uniform distribution mode.
[0010] As a further scheme of the utility model, the scattering lever is rotatably connected to the rod body of the scattering rotating rod, and a plurality of scattering protrusions are connected to the rod body of the scattering lever.
[0011] As a further scheme of the utility model, one end of the scattering cylinder is provided with a gear set shell, two groups of transmission gears are rotatably connected in the gear set shell, the transmission gears are meshingly connected, and the two transmission gears are coaxially and fixedly connected to the rod body of the scattering rotating rod.
[0012] As a further scheme of the utility model, the spiral conveying assembly comprises a conveying rotating rod and a conveying spiral blade, the conveying rotating rod is rotatably connected in the conveying cylinder, the conveying spiral blade is fixedly connected to the rod body of the conveying rotating rod in the conveying cylinder, the inclined bottom end of the conveying cylinder is connected with a conveying motor, and the rotating shaft of the conveying motor is coaxially and fixedly connected to one end of the conveying rotating rod on the outer side of the conveying cylinder.
[0013] As a further scheme of the utility model, the bottom part of the cylinder body of the inclined upper end of the conveying cylinder is communicated with a discharge pipe, the discharge pipe is located above the sorting opening in an inclined mode, and the lower part of the cylinder body of the conveying cylinder is further connected with a sorting pipe.
[0014] As a further scheme of the utility model: the outer wall of the barrel body of the conveying cylinder is connected with side clamping seats, and the side clamping seats are arranged on the two sides of the impurity discharging port, and the two side edges of the impurity screen are movably clamped in the side clamping seats.
[0015] As a further scheme of the utility model: the side of the inclined lower end of the conveying cylinder is further fixedly connected with a driving shell, one end of the conveying rotating rod located on the outer side of the conveying cylinder penetrates through the driving shell, a driving bevel gear, a driven bevel gear, a transmission connecting rod and a rotating wheel are arranged in the driving shell, the driving bevel gear is fixedly sleeved on the shaft of the conveying rotating rod, the driven bevel gear and the rotating wheel are connected at the two ends of the transmission connecting rod respectively, a locating bearing is rotatably connected on the shaft of the transmission connecting rod, the outer ring of the locating bearing is fixedly connected with the inner wall of the driving shell, the driven bevel gear is meshingly connected with the driving bevel gear, a swing pull rod is arranged between the rotating wheel and the impurity screen, one end of the swing pull rod is pivotally connected with the impurity screen, and the other end of the swing pull rod is pivotally connected with the outer side edge part of the rotating wheel.
[0016] As a further scheme of the utility model: the dust removal cylinder is threadedly connected with the cylinder cover, a suction pump is mounted on the pipe body of the air duct, the bottom end of the dust removal cylinder is connected with a screen, and the screen is in an arc shape and is matched with the rotating outer contour of the scattering assembly.
[0017] As a further scheme of the utility model: the barrel body of the conveying cylinder is fixedly connected with supporting feet on both sides, and the supporting feet are respectively located at the two ends of the conveying cylinder.
[0018] The utility model has the advantages of:
[0019] 1、The utility model discloses a conveying cylinder, a scattering cylinder and a dust removal cylinder are arranged, can realize that cashmere is scattered first, and then is dusted, to ensure that dusting is thorough.
[0020] 2、The scattering cylinder is provided with two scattering assemblies, and the two scattering assemblies are reversely rotated, can convey the cashmere to be handled to the scattering cylinder through the feeding hopper, and then under the rotating action of the two scattering assemblies, the cashmere gathered together can be scattered and then fall into the conveying cylinder, and in the process of scattering the cashmere, some earth impurities attached to the cashmere can be separated.
[0021] 3. The conveying cylinder is rotationally provided with a spiral conveying assembly, the bottom end of the cylinder body of the conveying cylinder is provided with a impurity discharge port, the outer wall of the cylinder body of the conveying cylinder is movably connected with an impurity discharge screen, the spiral conveying assembly can continuously turn and forwardly convey the dispersed cashmere, and the impurities in the cashmere can be shaken out in the turning process of the cashmere, the impurities can be quickly discharged through the impurity discharge screen under the double actions of gravity and shaking of the impurity discharge screen, and even the large block-shaped soil impurities can be further broken into small particles under the shaking action of the impurity discharge screen, and the same can be discharged through the impurity discharge screen, so that the solid particle impurities of the cashmere are removed;
[0022] 4. The upper end of the dispersing cylinder is communicated with an air duct, and a plurality of dust absorption sponge columns are arranged in the dust removal cylinder. Since a large amount of dust impurities are generated in the dispersing process of the cashmere, when the dispersing cylinder is exhausted through the air duct, the gas in the dispersing cylinder also enters the conveying cylinder, so that the dust generated in the dispersing process of the cashmere cannot overflow from the feeding hopper, and when the gas containing dust is discharged through the dust removal cylinder, the dust particles in the gas can be absorbed by the dust absorption sponge columns, so that the dust generated in the production process of the cashmere is removed. BRIEF DESCRIPTION OF DRAWINGS
[0023] Figure 1 It is a whole structure schematic view of the utility model;
[0024] Figure 2 It is a whole section structure schematic view of the utility model;
[0025] Figure 3 It is a front view section structure schematic view of the conveying cylinder of the utility model;
[0026] Figure 4 It is a side view section structure schematic view of the conveying cylinder of the utility model;
[0027] Figure 5 It is a conveying rotating rod and impurity discharge screen linkage state structure schematic view of the utility model;
[0028] Figure 6 It is a dispersing cylinder end section structure schematic view of the utility model;
[0029] Figure 7 It is a front view section structure schematic view of the dispersing cylinder of the utility model;
[0030] Figure 8 It is a whole structure schematic view of the utility model Figure 7 It is a structure schematic view of A in the utility model;
[0031] Figure 9 It is the internal structure schematic view of the gear set shell of the utility model;
[0032] Figure 10 It is the cross section structure schematic view of the dust removal cylinder of the utility model.
[0033] In the figure: 1, conveying cylinder, 11, conveying motor, 12, impurity discharge pipe, 13, discharge pipe, 14, conveying rotating rod, 15, conveying spiral blade, 16, impurity discharge port, 17, impurity discharge screen, 18, side clamping seat, 19, drive housing, 110, drive bevel gear, 111, driven bevel gear, 112, transmission connecting rod, 113, rotating wheel, 114, swing pull rod, 115, positioning bearing, 2, scattering cylinder, 21, scattering motor, 22, scattering rotating rod, 23, scattering push rod, 24, gear set shell, 25, feed hopper, 26, scattering protruding block, 27, transmission gear, 3, dust removal cylinder, 31, cylinder cover, 32, dust absorption sponge column, 33, air guide pipe, 34, air suction pump, 35, separation net, 4, supporting leg. DETAILED DESCRIPTION
[0034] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the protection scope of the utility model.
[0035] Embodiment one
[0036] As shown in Figure 1 , Figure 2 , Figure 3 , Figure 7 and Figure 10 , a cashmere round cage type dust removal device, comprising a conveying cylinder 1, a scattering cylinder 2 and a dust removal cylinder 3, the scattering cylinder 2 is connected above the cylinder body of the conveying cylinder 1, the cylinder body of the scattering cylinder 2 is communicated with the dust removal cylinder 3, the conveying cylinder 1 is arranged in an upwardly inclined shape along the conveying direction, and the scattering cylinder 2 is communicated with the cylinder body part of the conveying cylinder 1 at the front end of conveying;
[0037] Two groups of scattering assemblies are arranged in the scattering cylinder 2, and the two groups of scattering assemblies rotate in opposite directions, the cylinder body of the scattering cylinder 2 is communicated with a feed hopper 25, the cashmere to be treated can be conveyed into the scattering cylinder 2 through the feed hopper 25, and then the cashmere agglomerated together can be scattered and then dropped into the conveying cylinder 1 under the rotating action of the two groups of scattering assemblies, and some soil impurities attached to the cashmere can be separated during the scattering of the cashmere;
[0038] The spiral conveying assembly is arranged in rotation in the conveying cylinder 1. The bottom end of the cylinder body of the conveying cylinder 1 is provided with a foreign matter discharging port 16. The outer wall of the cylinder body of the conveying cylinder 1 is movably connected with a foreign matter discharging screen 17, and the foreign matter discharging screen 17 is attached to the foreign matter discharging port 16. The spiral conveying assembly can continuously turn and convey the pilled cashmere by rotating, and can further shake off the impurities in the cashmere during the turning process. The impurities are deposited on the foreign matter discharging screen 17 at the bottom end of the conveying cylinder 1. Since the conveying cylinder 1 is arranged in an inclined manner and the foreign matter discharging screen 17 is movably connected with the conveying cylinder 1, the impurities can be quickly discharged through the foreign matter discharging screen 17 under the double actions of gravity and shaking of the foreign matter discharging screen 17. Even the large block of soil impurities can be further broken into small particles under the shaking action of the foreign matter discharging screen 17 and discharged through the foreign matter discharging screen 17, so as to remove the solid particle impurities from the cashmere.
[0039] The upper end of the dust removal cylinder 3 is connected with a cylinder cover 31. The cylinder cover 31 is communicated with an air guide pipe 33. A plurality of dust absorption sponge columns 32 are arranged in the cylinder of the dust removal cylinder 3. Since a large amount of dust impurities are generated during the pilling process of the cashmere, the gas in the pilling cylinder 2 is also introduced into the conveying cylinder 1 when the air is sucked through the air guide pipe 33, so that the dust generated during the pilling process of the cashmere does not overflow from the feeding hopper 25. When the gas containing dust is discharged through the dust removal cylinder 3, the dust particles in the gas can be absorbed by the dust absorption sponge columns 32, so as to remove the dust generated during the production of the cashmere.
[0040] Example Two
[0041] Based on the improvement of Example One:
[0042] As shown in Figure 1 , Figure 2 , Figure 6 , Figure 7 , Figure 8 and Figure 9 , the pilling assembly includes a pilling rotating rod 22 and a pilling stirring rod 23. The pilling stirring rod 23 is arranged in a plurality of uniform distribution modes on the rod body of each pilling rotating rod 22. The pilling rotating rod 22 is rotationally connected in the pilling cylinder 2. The pilling stirring rods 23 connected on the rod bodies of the two pilling rotating rods 22 are arranged in a staggered mode, so as to drive the pilling stirring rod 23 to rotate when the pilling rotating rod 22 rotates, and further stir the cashmere raw material conveyed into the pilling cylinder 2 through the pilling stirring rod 23. The pilling stirring rods 23 on the two pilling rotating rods 22 are arranged in a staggered mode, so as to improve the stirring range of the cashmere and achieve the complete pilling of the cashmere raw material.
[0043] Further, the dispersing rod 23 is rotatably connected to the dispersing rod 22, and a plurality of dispersing protrusions 26 are connected to the rod of the dispersing rod 23. When the dispersing rod 23 is used to stir the cashmere raw materials, the dispersing rod 23 can rotate and self-rotate, thereby avoiding hooking the cashmere raw materials on the rod of the dispersing rod 23, and the dispersing protrusions 26 can hit the soil particles in the cashmere raw materials to break the larger soil particles into smaller particles.
[0044] Further, the dispersing cylinder 2 is provided with a gear set housing 24, two sets of transmission gears 27 are rotatably connected in the gear set housing 24, the transmission gears 27 are meshingly connected, and the two transmission gears 27 are coaxially and fixedly connected to the rod of the dispersing rod 22. The gear set housing 24 is fixedly connected to the outside of the gear set housing 24, and the dispersing motor 21 is coaxially and fixedly connected to one of the dispersing rods 22. The dispersing motor 21 can provide driving force to drive one of the dispersing rods 22 to rotate in the dispersing cylinder 2, and the other dispersing rod 22 can be driven to rotate in the opposite direction in the dispersing cylinder 2 under the meshing action of the two transmission gears 27, so as to disperse the cashmere raw materials conveyed into the dispersing cylinder 2. It should be noted that the dispersing motor 21 is electrically connected to the external power source.
[0045] As shown in Figure 1 、 Figure 2 、 Figure 3 、 Figure 4 、 Figure 5 and Figure 10 , the spiral conveying assembly includes a conveying rod 14 and a conveying spiral blade 15. The conveying rod 14 is rotatably connected in the conveying cylinder 1, and the conveying spiral blade 15 is fixedly connected to the rod of the conveying rod 14 in the conveying cylinder 1. The conveying motor 11 is connected to the inclined bottom end of the conveying cylinder 1, and the rotating shaft of the conveying motor 11 is coaxially and fixedly connected to one end of the conveying rod 14 outside the conveying cylinder 1. The conveying motor 11 can provide driving force to drive the conveying rod 14 to rotate, and in turn drive the conveying spiral blade 15 to rotate in the conveying cylinder 1, so as to convey the cashmere that falls in the conveying cylinder 1 after being dispersed, and to stir the cashmere to further shake out the impurities in the cashmere. It should be noted that the conveying motor 11 is electrically connected to the external power source.
[0046] Further, the bottom of the inclined upper end of the conveying cylinder 1 is communicated with a discharging pipe 13, the discharging pipe 13 is located above the inclined upper end of the impurity discharging port 16, and the lower end of the conveying cylinder 1 is further connected with an impurity discharging pipe 12, the impurity discharging port of the impurity discharging pipe 12 is located at the inclined lower end of the conveying cylinder 1, and the connection position of the impurity discharging pipe 12 is located at the impurity discharging port 16 of the conveying cylinder 1, so that the conveyed cashmere can be guided out of the conveying cylinder 1 through the communicated discharging pipe 13, and during the conveying process of the cashmere, the impurities discharged through the impurity discharging screen 17 can fall into the impurity discharging pipe 12, so that the discharged impurities can be discharged along the impurity discharging pipe 12, and the discharging position of the impurities and the discharging position of the treated cashmere are respectively located at the two ends of the conveying cylinder 1, so that the impurities can be prevented from being mixed into the cashmere again.
[0047] Further, the outer wall of the bottom of the conveying cylinder 1 is connected with a side clamping seat 18, and the side clamping seat 18 is arranged on both sides of the impurity discharging port 16, and the two side edges of the impurity discharging screen 17 are clamped in the side clamping seat 18, so that the impurity discharging screen 17 can be tightly clamped on the outer wall of the bottom of the conveying cylinder 1, and the impurity discharging screen 17 can move along the two side clamping seats 18, so that the impurity discharging screen 17 can perform reciprocating shaking action, so that the impurities can be quickly discharged through the impurity discharging screen 17, and it can be ensured that the discharged impurities can fall into the impurity discharging pipe 12.
[0048] Further, one side of the inclined lower end of the conveying cylinder 1 is further fixedly connected with a driving shell 19, the conveying rotating rod 14 penetrates through the driving shell 19 at one end of the outer side of the conveying cylinder 1, the driving shell 19 is provided with a driving bevel gear 110, a driven bevel gear 111, a transmission connecting rod 112 and a rotating wheel 113, the driving bevel gear 110 is fixedly sleeved on the rod body of the conveying rotating rod 14, the driven bevel gear 111 and the rotating wheel 113 are respectively connected at the two ends of the transmission connecting rod 112, the rod body of the transmission connecting rod 112 is rotatably connected with a positioning bearing 115, the outer ring of the positioning bearing 115 is fixedly connected with the inner wall of the driving shell 19, the driven bevel gear 111 is meshingly connected with the driving bevel gear 110, the rotating wheel 113 is provided with a swing pull rod 114 between the rotating wheel 113 and the impurity discharging screen 17, one end of the swing pull rod 114 is pivotally connected with the impurity discharging screen 17, the other end of the swing pull rod 114 is pivotally connected with the outer side edge position of the rotating wheel 113, so that when the conveying rotating rod 14 rotates, the rotating wheel 113 can be driven to rotate through the meshing action of the driven bevel gear 111 and the driving bevel gear 110, so that the swing pull rod 114 can reciprocally push and pull the impurity discharging screen 17, that is, the impurity discharging screen 17 can perform reciprocating shaking action.
[0049] Further, the dust removal cylinder 3 is threadedly connected with the cylinder cover 31, the air duct 33 is provided with an air suction pump 34, the bottom end of the dust removal cylinder 3 is connected with a screen 35, the screen 35 is in an arc shape, the screen 35 is matched with the rotating outer contour of the scattering assembly, through the screen 35, the dust absorption sponge column 32 can be supported, so that the dust absorption sponge column 32 can be stably placed in the dust removal cylinder 3, and the thread detachable connection of the cylinder cover 31 and the dust removal cylinder 3 is convenient for replacing the dust absorption sponge column 32, and the air suction pump 34 can suck the gas in the conveying cylinder 1, so as to realize the dust removal and impurity removal treatment of the gas in the conveying cylinder 1, and when the scattering assembly rotates, the cashmere adhered to the surface of the screen 35 can be scraped, that is, the cashmere adhered to the surface of the screen 35 can be prevented from causing blockage, and it should be noted that the air suction pump 34 is electrically connected with an external power supply.
[0050] Further, the conveying cylinder 1 is fixedly connected with support legs 4 on both sides of the cylinder body, and the support legs 4 are respectively located at both ends of the conveying cylinder 1, so as to stably support the conveying cylinder 1, that is, the dust removal device can be stably placed and used.
[0051] Working principle: the cashmere to be treated is conveyed into the scattering cylinder 2 through the feeding hopper 25, and then under the rotating action of the two groups of scattering assemblies, the cashmere gathered together is scattered and then falls into the conveying cylinder 1, and in the process of scattering the cashmere, some soil impurities adhered to the cashmere are separated, the scattered cashmere is constantly turned and conveyed forward through the rotation of the screw conveying assembly, and in the process of turning the cashmere, the impurities in the cashmere are further shaken out, and the impurities are deposited on the impurity discharge screen 17 at the bottom end of the conveying cylinder 1, and since the conveying cylinder 1 is arranged in an inclined manner and the impurity discharge screen 17 is movably connected with the conveying cylinder 1, under the double actions of the self-weight and the shaking of the impurity discharge screen 17, the impurities can quickly pass through the impurity discharge screen 17 and be discharged, so as to remove the solid particle impurities of the cashmere; when the air duct 33 sucks the air of the scattering cylinder 2, the gas in the scattering cylinder 2 also enters the conveying cylinder 1, so that the dust generated in the process of scattering the cashmere cannot overflow from the feeding hopper 25, and when the gas containing dust is discharged through the dust removal cylinder 3, the dust particles in the gas can be absorbed by the dust absorption sponge column 32, so as to remove the dust generated in the process of producing the cashmere.
[0052] It is apparent for a person skilled in the art that the present application is not limited to the details of the above-described exemplary embodiments, but that it can be implemented in other concrete forms without departing from the spirit or the essential characteristics of the present application. Therefore, the embodiments should be considered as exemplary and non-limiting, the scope of the present application being defined by the claims appended hereto rather than by the above description, and all the changes which fall within the meaning and the scope of the equivalent elements of the claims are intended to be embraced therein. Any reference signs in the claims should not be construed as limiting the claims to the figures in which the reference signs are used.
[0053] Furthermore, it should be understood that although the present specification describes exemplary embodiments, not every embodiment contains only one independent technical solution, and the present specification is described in this way only for the sake of clarity, and a person skilled in the art should consider the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that a person skilled in the art can understand.
Claims
1. A pashmina round cage type dust removing device comprising a conveying cylinder (1), a scattering cylinder (2) and a dust removing cylinder (3), characterized in that: The dispersing cylinder (2) is connected above the cylinder body of the conveying cylinder (1). The dust removal cylinder (3) is connected to the cylinder body of the dispersing cylinder (2). The conveying cylinder (1) is set in an upward inclined position along the conveying direction. The dispersing cylinder (2) is connected to the cylinder body of the conveying cylinder (1) at the front end of the conveying process. The dispersing cylinder (2) is provided with two sets of dispersing components, and the two sets of dispersing components rotate in opposite directions. The upper end of the cylinder body of the dispersing cylinder (2) is connected to the feed hopper (25). The conveying cylinder (1) is rotatably equipped with a spiral conveying assembly. The bottom end of the conveying cylinder (1) is provided with a discharge port (16). The outer wall of the conveying cylinder (1) is movably connected with a discharge screen (17), and the discharge screen (17) is placed at the discharge port (16). The dust collector (3) is connected to a cover (31) at the upper opening, and the cover (31) is connected to an air duct (33). Several dust-absorbing sponge columns (32) are placed inside the dust collector (3).
2. The cashmere round cage type dust removal device according to claim 1, characterized in that: The dispersing assembly includes a dispersing rotating rod (22) and a dispersing lever (23). There are several dispersing levers (23), and the dispersing levers (23) are evenly distributed and connected to the rod of each dispersing rotating rod (22). The dispersing rotating rod (22) is rotatably connected inside the dispersing cylinder (2), and the dispersing levers (23) connected to the rods of two dispersing rotating rods (22) are staggered.
3. The cashmere round cage type dust removal device according to claim 2, characterized in that: The dispersing lever (23) is rotatably connected to the body of the dispersing lever (22), and a number of dispersing protrusions (26) are connected to the body of the dispersing lever (23).
4. The cashmere round cage type dust removal device according to claim 3, characterized in that: One end of the dispersing cylinder (2) is provided with a gear set housing (24). Two sets of transmission gears (27) are rotatably connected inside the gear set housing (24). The transmission gears (27) are meshed with each other, and the two transmission gears (27) are respectively fixedly connected to the rod body of the dispersing rotating rod (22) on the same axis. The outer side of the gear set housing (24) is fixedly connected with a dispersing motor (21). The rotating shaft of the dispersing motor (21) is fixedly connected to one of the dispersing rotating rods (22) on the same axis.
5. The cashmere round cage type dust removal device according to claim 1, characterized in that: The spiral conveying assembly includes a conveying rod (14) and a conveying spiral blade (15). The conveying rod (14) is rotatably connected inside the conveying cylinder (1). The conveying spiral blade (15) is fixedly connected to the rod of the conveying rod (14) located inside the conveying cylinder (1). A conveying motor (11) is connected to one side of the inclined bottom end of the conveying cylinder (1). The rotating shaft of the conveying motor (11) is coaxially fixedly connected to one end of the conveying rod (14) located outside the conveying cylinder (1).
6. The cashmere round cage type dust removal device according to claim 5, characterized in that: The bottom of the inclined upper end of the conveying cylinder (1) is connected to the discharge pipe (13), the discharge pipe (13) is located above the discharge port (16), and the lower part of the conveying cylinder (1) is also connected to the discharge pipe (12), the discharge port of the discharge pipe (12) is located at the inclined lower end of the conveying cylinder (1), and the connection position of the discharge pipe (12) is located at the discharge port (16) opened in the conveying cylinder (1).
7. The cashmere round cage type dust removal device according to claim 6, characterized in that: The outer wall of the bottom barrel of the conveying cylinder (1) is connected with side clamping seats (18), and the side clamping seats (18) are arranged on the two sides of the impurity discharging port (16), and the two side edges of the impurity discharging screen (17) are clamped in the side clamping seats (18).
8. The cashmere round cage type dust removal device according to claim 7, characterized in that: The oblique lower end of the conveying cylinder (1) is further fixedly connected with a driving shell (19), one end of the conveying rotating rod (14) outside the conveying cylinder (1) penetrates the driving shell (19), the driving shell (19) is provided with a driving bevel gear (110), a driven bevel gear (111), a transmission connecting rod (112) and a rotating wheel (113), the driving bevel gear (110) is fixedly sleeved on the rod body of the conveying rotating rod (14), the driven bevel gear (111) and the rotating wheel (113) are connected at the two ends of the transmission connecting rod (112) respectively, the rod body of the transmission connecting rod (112) is rotatably connected with a positioning bearing (115), the outer ring of the positioning bearing (115) is fixedly connected with the inner wall of the driving shell (19), the driven bevel gear (111) is meshingly connected with the driving bevel gear (110), the rotating wheel (113) is provided with a swing pull rod (114) between the rotating wheel (113) and the impurity discharging screen (17), one end of the swing pull rod (114) is pivotally connected with the impurity discharging screen (17), the other end of the swing pull rod (114) is pivotally connected with the outer side edge part of the rotating wheel (113).
9. The cashmere round cage type dust removing device according to claim 8, characterized in that: The dust removal cylinder (3) is threadedly connected with the cylinder cover (31), the air pump (34) is installed on the pipe body of the air duct (33), the bottom end of the dust removal cylinder (3) is connected with a separation net (35), the separation net (35) is in an arc shape, and the separation net (35) is matched with the rotating outer contour of the scattering assembly.
10. The cashmere round cage type dust removing device according to claim 1, characterized in that: The barrel body of the conveying cylinder (1) is fixedly connected with support feet (4) on both sides, and the support feet (4) are respectively located at the two ends of the conveying cylinder (1).
Citation Information
Patent Citations
Automatic cashmere round cage type dust removal unit
CN216237383U