CN214529403U - Itinerant dust removal device of chenille machine - Google Patents

Itinerant dust removal device of chenille machine Download PDF

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Publication number
CN214529403U
CN214529403U CN202023136593.4U CN202023136593U CN214529403U CN 214529403 U CN214529403 U CN 214529403U CN 202023136593 U CN202023136593 U CN 202023136593U CN 214529403 U CN214529403 U CN 214529403U
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China
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dust removal
fan
chenille machine
chenille
hose
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CN202023136593.4U
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Chinese (zh)
Inventor
龚江帆
黄仁豹
陆建华
张仪
张华易
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Jiangsu New Victor Industrial Co ltd
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Jiangsu New Victor Industrial Co ltd
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Abstract

The utility model discloses a chenille machine's tour dust collector, including chenille machine body, chenille machine body's both sides all are provided with electric cabinet base, and top one side of electric cabinet base all is provided with the guide rail, and electric cabinet base's top opposite side all is provided with the rack, and electric cabinet base's top all is provided with the dust removal mechanism with guide rail and rack matched with, and chenille machine body's inside is provided with down dust absorption wind channel with dust removal mechanism matched with, and the one end in lower dust absorption wind channel is connected with the fan case that is located chenille machine body one end. Through the use of dust removal mechanism for servo transmission unit can drive the dust removal subassembly and move on the electricity cabinet base on patrol, thereby can clear away the fly flower and the filoplume that form when retrieving chenille machine spinning effectively, reduces the concentration of suspension granule in the air, improves the operational environment in spinning workshop, reduces the risk of workshop conflagration, ensures enterprise and staff's the security of the lives and property.

Description

Itinerant dust removal device of chenille machine
Technical Field
The utility model relates to a spinning auxiliary assembly technical field particularly, relates to a dust collector that tours of chenille machine.
Background
The chenille yarn is also named as corduroy, is a novel pattern yarn, and is spun by taking two plied yarns as core yarns and clamping down yarns in the middle through twisting. At present, the known chenille machine spinning chenille wool has the main yarn forming principle that: the knitting wool raw materials (yarns, threads, long threads and the like) pass through a hollow rotary head upright post and a rotary disc connected with the rotary head upright post and then are wound on a distance cutting sheet, and the rotary disc is driven by a rotary motor to rotate at a high speed through a belt pulley; the rotary left and right delivery rollers are pressed by a swing arm tension spring mechanism and then abut against the distance cutting piece, the wool tightly wound on the distance cutting piece is stripped downwards by the left and right delivery rollers, and then the wool is divided into two parts by a blade below the distance cutting piece. The core yarn wound on the left and right delivery rollers and the two core yarns which penetrate through the left and right cutting distance pieces respectively clamp the wool which is cut into two parts by the blade, and then the two strands of chenille wool are manufactured by twisting.
At present, the chenille machine is easy to form flying flowers and hairiness in the production of chenille yarns, and in order to ensure the production quality of the chenille yarns, the flying flowers and the hairiness are required to be removed. An effective solution to the problems in the related art has not been proposed yet.
SUMMERY OF THE UTILITY MODEL
To the problem among the correlation technique, the utility model provides a chenille machine's circuit dust collector to overcome the above-mentioned technical problem that current correlation technique exists.
Therefore, the utility model discloses a specific technical scheme as follows:
a circulating dust removal device of a chenille machine comprises a chenille machine body, wherein electric cabinet bases are arranged on two sides of the chenille machine body, guide rails are arranged on one side of the top of each electric cabinet base, racks are arranged on the other side of the top of each electric cabinet base, dust removal mechanisms matched with the guide rails and the racks are arranged on the top of each electric cabinet base, a lower dust suction air duct matched with the dust removal mechanisms is arranged inside the chenille machine body, one end of the lower dust suction air duct is connected with a fan box positioned at one end of the chenille machine body, each dust removal mechanism comprises guide wheel assemblies respectively arranged on the guide rails and the racks, a bottom plate is arranged between the tops of the guide wheel assemblies, a moving box body is arranged on the top of the bottom plate, a servo transmission unit is arranged on one side of the inner bottom of the moving box body, and the bottom end of an output shaft on the servo transmission unit penetrates through the bottom plate and is connected with a gear positioned inside the guide wheel assemblies, and one side of the gear is meshed with the rack, and one side in the movable box body is provided with a dust removal assembly.
As a preferred scheme, in order to effectively realize the removal and recovery of the flying flowers and the hairiness formed during the chenille machine spinning, the dust removal component comprises a fan cabinet arranged on one side inside the movable box body, a centrifugal fan is arranged on the fan cabinet, an upper air outlet pipe is arranged at the top of the fan cabinet, a lower air outlet pipe is arranged at the bottom of the fan cabinet, and one ends of the lower air outlet pipe and the upper air outlet pipe, which are far away from the movable box body, extend to the outer side of the movable box body.
As an optimal scheme, in order to play direction and location effect to the removal of bottom plate, the leading wheel subassembly all includes the mounting bracket, and the vertical symmetry in one side of mounting bracket is provided with two sets of bearings, and the middle part of bearing all alternates and is provided with matched with pivot with it, and the one end of pivot is passed through the nut and is connected with the mounting bracket.
As an optimal scheme, in order to facilitate the installation and the fixation of the bearing, the rotating shaft is provided with gaskets on two sides of the bearing, and one end of the rotating shaft, which is close to the nut, is provided with an external thread matched with the nut.
As a preferred scheme, in order to achieve the effect of collecting the generated flying cotton and the generated filoplume, a roller cotton cleaning device is arranged on one side of the inner bottom of a fan box, one side of the roller cotton cleaning device is connected with a negative pressure cabin, a vortex air pump is arranged on one side of the inner top of the fan box, a first hose is arranged at an air outlet of the vortex air pump, the other end of the first hose is connected with the negative pressure cabin, a second hose is arranged at an air inlet of the vortex air pump, the other end of the second hose is connected with a cotton collection box connector, the cotton collection box connector is further connected with the negative pressure cabin through a third hose, and a negative pressure fan connected with the negative pressure cabin is arranged on one side of the vortex air pump.
The utility model has the advantages that: through the use of dust removal mechanism for servo transmission unit can drive the dust removal subassembly and move on the electricity cabinet base on patrol, thereby can clear away the fly flower and the filoplume that form when retrieving chenille machine spinning effectively, reduces the concentration of suspension granule in the air, improves the operational environment in spinning workshop, reduces the risk of workshop conflagration, ensures enterprise and staff's the security of the lives and property.
Drawings
Fig. 1 is a schematic structural diagram of a circulating dust removing device of a chenille machine according to an embodiment of the invention;
FIG. 2 is an enlarged view of a portion of the structure at A in FIG. 1;
fig. 3 is a schematic structural diagram of a dust removing mechanism in a circulating dust removing device of a chenille machine according to an embodiment of the present invention;
FIG. 4 is an enlarged view of the structure according to B in FIG. 3;
fig. 5 is a schematic structural view of a guide wheel assembly in a circulating dust removing device of a chenille machine according to an embodiment of the present invention;
fig. 6 is an internal structure schematic diagram of a fan case in a circulating dust removal device of a chenille machine according to an embodiment of the present invention.
In the figure:
1. a chenille machine body; 2. an electric cabinet base; 3. a guide rail; 4. a rack; 5. a dust removal mechanism; 6. a lower dust collection air duct; 7. a fan box; 8. a guide wheel assembly; 9. a base plate; 10. moving the box body; 11. a servo transmission unit; 12. a gear; 13. a fan cabinet; 14. a centrifugal fan; 15. an air outlet pipe is arranged; 16. a lower air outlet pipe; 17. a mounting frame; 18. a bearing; 19. a rotating shaft; 20. a nut; 21. a gasket; 22. a roller blowing device; 23. a negative pressure cabin; 24. a vortex air pump; 25. a first hose; 26. a second hose; 27. a cotton collecting box connector; 28. a third hose; 29. a negative pressure fan.
Detailed Description
Now combine the attached drawings and the detailed description to right the utility model discloses further explain, as shown in fig. 1-6, according to the utility model discloses chenille machine's circuit dust collector, including chenille machine body 1, chenille machine body 1's both sides all are provided with electric cabinet base 2, and top one side of electric cabinet base 2 all is provided with guide rail 3, and electric cabinet base 2's top opposite side all is provided with rack 4, and electric cabinet base 2's top all is provided with guide rail 3 and rack 4 matched with dust removal mechanism 5, and chenille machine body 1's inside be provided with dust removal mechanism 5 matched with dust absorption wind channel 6 down, and the one end of dust absorption wind channel 6 down is connected with the fan case 7 that is located chenille machine body 1 one end.
Dust removal mechanism 5 is including installing guide wheel subassembly 8 on guide rail 3 and rack 4 respectively, be provided with bottom plate 9 between guide wheel subassembly 8's the top, the top of bottom plate 9 is provided with removes box 10, interior bottom one side of removing box 10 is provided with servo drive unit 11, and servo drive unit 11 (servo motor) goes up the bottom of output shaft and runs through bottom plate 9 and be connected with the gear 12 that is located guide wheel subassembly 8 inside, and one side and the rack 4 of gear 12 mesh mutually, the inside one side of removing box 10 is provided with the dust removal subassembly. Through the use of the dust removal mechanism 5, the flying flowers and the hairiness formed during the spinning of the chenille machine can be effectively removed and recovered, the concentration of suspended particles in the air is reduced, the working environment of a spinning workshop is improved, the risk of fire in the workshop is reduced, and the life and property safety of enterprises and staff is guaranteed.
The dust removal component comprises a fan cabinet 13 arranged on one side inside the movable box body 10, a centrifugal fan 14 is arranged on the fan cabinet 13, an upper air outlet pipe 15 is arranged at the top of the fan cabinet 13, a lower air outlet pipe 16 is arranged at the bottom of the fan cabinet 13, and the lower air outlet pipe 16 and one end, far away from the movable box body 10, of the upper air outlet pipe 15 all extend to the outer side of the movable box body 10. Through the use of the dust removal component, the flying cotton and the hairiness formed during the spinning of the chenille machine can be effectively removed and recovered.
The guide wheel assembly 8 comprises an installation frame 17, two groups of bearings 18 are symmetrically arranged on one side of the installation frame 17 in a vertical mode, the middle portions of the bearings 18 are provided with rotating shafts 19 matched with the bearings in a penetrating mode, and one ends of the rotating shafts 19 are connected with the installation frame 17 through nuts 20. Through the use of the guide wheel assembly 8, the guide and positioning effects on the movement of the bottom plate 9 can be achieved.
The rotating shaft 19 is provided with gaskets 21 on two sides of the bearing 18, and one end of the rotating shaft 19 close to the nut 20 is provided with an external thread matched with the nut 20, so that the bearing 18 is convenient to mount and fix.
The cotton cleaning device comprises a fan box 7, a roller cotton cleaning device 22 is arranged on one side of the inner bottom of the fan box 7, one side of the roller cotton cleaning device 22 is connected with a negative pressure cabin 23, a vortex air pump 24 is arranged on one side of the inner top of the fan box 7, a first hose 25 is arranged at an air outlet of the vortex air pump 24, the other end of the first hose 25 is connected with the negative pressure cabin 23, a second hose 26 is arranged at an air inlet of the vortex air pump 24, the other end of the second hose 26 is connected with a cotton collecting box connector 27, the cotton collecting box connector 27 is further connected with the negative pressure cabin 23 through a third hose 28, and a negative pressure fan 29 connected with the negative pressure cabin 23 is arranged on one side of the vortex air pump 24. By using the fan box 7, the generated flying flowers and hairiness can be collected.
When the air conditioner is used, the servo transmission unit 11 is only needed to be started to drive the gear 12 to rotate, the gear 12 and the rack 4 are used for transmission, and the rack 4 is fixed on the electric cabinet base 2, so that the gear 12 drives the guide wheel assembly 8, the bottom plate 9, the movable box body 10, the centrifugal fan 14, the fan cabinet 13, the upper air outlet pipe 15 and the lower air outlet pipe 16 to do linear motion. Meanwhile, the centrifugal fan 14 sucks air from the outside, after the air is filtered by the filter screen, the air flows from the fan cabinet 13 to the upper air outlet pipe 15 and the lower air outlet pipe 16, and at the moment, the air speed in the pipe is increased due to the change of the sectional area of the air pipe. The high air speed at the air outlet of the upper air outlet pipe 15 can blow the flying flowers and hairiness in the upper spindle spinning area of the machine to the lower dust collection air duct 6 in the machine, and the high air speed at the air outlet of the lower air outlet pipe 16 can blow the flying flowers and hairiness in the ring spindle area of the lower spindle of the machine to the lower dust collection air duct 6 in the machine. The negative pressure fan 29 inside the fan box 7 causes a strong negative pressure to form inside the lower dust suction duct 6 connected to the fan box, so that the fly and hairs suspended inside the machine are sucked into the duct and flow towards the rear fan box 7. The flying flowers and the hairiness finally reach a closed negative pressure cabin in the fan box, a roller blowing device 22 is arranged in the cabin, the flying flowers and the hairiness are adsorbed on a filter screen of the device, and a scraper motor arranged in the device drives a scraper to rotate to scrape the flying flowers and the hairiness from the filter screen. The vortex air pump 24 has an air inlet and an air outlet, the two air inlets are respectively connected with one ends of a first hose 25 and a second hose 26, the other end of the first hose 25 is connected with the negative pressure chamber 23, the other end of the second hose 26 is connected with a cotton collection box connector 27, one end of a third hose 28 is connected with the cotton collection box connector 27, and the other end is connected with the negative pressure chamber 23. The vortex air pump 24, the first hose 25, the second hose 26, the third hose 28 and the cotton collecting box connector 27 form a circulation loop. The vortex air pump 24 forms a negative pressure higher than that of the negative pressure fan 29, the first hose 25 is connected with an air inlet and can suck flying flowers and hairiness in the negative pressure cabin into the cotton collecting box connector 27 together with the cotton collecting box connector 27 and the third hose 28, a filter screen is arranged in the cotton collecting box connector 27 and can adsorb the flying flowers and the hairiness on the filter screen, meanwhile, the air outlet at the other end of the vortex air pump 24 can discharge sucked air into the negative pressure cabin 23 through the first hose 25, the flying flowers and the hairiness collected in the cotton collecting box connector 27 can be completely collected by a small door outside a cotton collecting box of a worker, and finally the purpose of dust removal of the machine is achieved.
The above description is only a preferred embodiment of the present invention, and should not be taken as limiting the invention, and any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention should be included in the protection scope of the present invention.

Claims (5)

1. A circulating dust removal device of a chenille machine comprises a chenille machine body and is characterized in that electric cabinet bases are arranged on two sides of the chenille machine body, guide rails are arranged on one side of the top of each electric cabinet base, racks are arranged on the other side of the top of each electric cabinet base, dust removal mechanisms matched with the guide rails and the racks are arranged on the tops of the electric cabinet bases, a lower dust suction air duct matched with the dust removal mechanisms is arranged inside the chenille machine body, one end of the lower dust suction air duct is connected with a fan box arranged at one end of the chenille machine body, each dust removal mechanism comprises guide wheel assemblies respectively arranged on the guide rails and the racks, a bottom plate is arranged between the tops of the guide wheel assemblies, a movable box body is arranged on the top of the bottom plate, a servo transmission unit is arranged on one side of the inner bottom of the movable box body, and the bottom end of an output shaft on the servo transmission unit penetrates through the bottom plate and is connected with a gear positioned inside the guide wheel assemblies, and one side of the gear is meshed with the rack, and one side in the movable box body is provided with a dust removal assembly.
2. The device of claim 1, wherein the dust removing assembly comprises a fan cabinet installed on one side inside the movable box body, the fan cabinet is provided with a centrifugal fan, the top of the fan cabinet is provided with an upper air outlet pipe, the bottom of the fan cabinet is provided with a lower air outlet pipe, and the ends of the lower air outlet pipe and the upper air outlet pipe, which are far away from the movable box body, extend to the outside of the movable box body.
3. The device of claim 2, wherein the guide wheel assemblies each comprise a mounting frame, two sets of bearings are vertically and symmetrically arranged on one side of the mounting frame, rotating shafts matched with the bearings are inserted into the middle of the bearings, and one ends of the rotating shafts are connected with the mounting frame through nuts.
4. The circulating dust removal device for chenille machines according to claim 3, wherein the rotating shaft is provided with gaskets at both sides of the bearing, and one end of the rotating shaft close to the nut is provided with external threads matched with the nut.
5. The itinerant dust removing device of a chenille machine according to claim 1, wherein a roller blowing device is arranged on one side of the inner bottom of the fan box, one side of the roller blowing device is connected with the negative pressure cabin, a vortex air pump is arranged on one side of the inner top of the fan box, a first hose is arranged at an air outlet of the vortex air pump, the other end of the first hose is connected with the negative pressure cabin, a second hose is arranged at an air inlet of the vortex air pump, the other end of the second hose is connected with a cotton collecting box combining member, the cotton collecting box combining member is further connected with the negative pressure cabin through a third hose, and a negative pressure fan connected with the negative pressure cabin is arranged on one side of the vortex air pump.
CN202023136593.4U 2020-12-23 2020-12-23 Itinerant dust removal device of chenille machine Active CN214529403U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202023136593.4U CN214529403U (en) 2020-12-23 2020-12-23 Itinerant dust removal device of chenille machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202023136593.4U CN214529403U (en) 2020-12-23 2020-12-23 Itinerant dust removal device of chenille machine

Publications (1)

Publication Number Publication Date
CN214529403U true CN214529403U (en) 2021-10-29

Family

ID=78295712

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202023136593.4U Active CN214529403U (en) 2020-12-23 2020-12-23 Itinerant dust removal device of chenille machine

Country Status (1)

Country Link
CN (1) CN214529403U (en)

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