CN113293489A - Weaving dust collector that durability is strong - Google Patents
Weaving dust collector that durability is strong Download PDFInfo
- Publication number
- CN113293489A CN113293489A CN202110502146.6A CN202110502146A CN113293489A CN 113293489 A CN113293489 A CN 113293489A CN 202110502146 A CN202110502146 A CN 202110502146A CN 113293489 A CN113293489 A CN 113293489A
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- Prior art keywords
- dust
- bag
- air
- textile
- check block
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- D—TEXTILES; PAPER
- D03—WEAVING
- D03J—AUXILIARY WEAVING APPARATUS; WEAVERS' TOOLS; SHUTTLES
- D03J1/00—Auxiliary apparatus combined with or associated with looms
- D03J1/002—Climatic conditioning or removing lint or dust
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- D—TEXTILES; PAPER
- D01—NATURAL OR MAN-MADE THREADS OR FIBRES; SPINNING
- D01H—SPINNING OR TWISTING
- D01H11/00—Arrangements for confining or removing dust, fly or the like
- D01H11/005—Arrangements for confining or removing dust, fly or the like with blowing and/or suction devices
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- D—TEXTILES; PAPER
- D04—BRAIDING; LACE-MAKING; KNITTING; TRIMMINGS; NON-WOVEN FABRICS
- D04B—KNITTING
- D04B35/00—Details of, or auxiliary devices incorporated in, knitting machines, not otherwise provided for
- D04B35/32—Devices for removing lint or fluff
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- Engineering & Computer Science (AREA)
- Textile Engineering (AREA)
- Mechanical Engineering (AREA)
- Filtering Of Dispersed Particles In Gases (AREA)
Abstract
The invention discloses a textile dust removal device with strong durability, which comprises a textile dust removal device and is characterized in that: the dust removal device for the textile comprises a base, wherein the base is divided into an upper part and a lower part, the upper part and the lower part are connected through a base bearing, a dust suction cylinder is welded on the upper end face of the base, a plurality of dust suction ports are uniformly formed in one side of the dust suction cylinder, the bottom end of the dust suction cylinder is connected with a suction machine through a pipeline, a plurality of dust suction bags are uniformly arranged in the dust suction cylinder, a plurality of pipelines are sleeved between every two dust suction bags, every two dust suction bags are connected through a pipeline from top to bottom, the dust suction bags at the top end are fixed to the top end in the dust suction cylinder, and the lower part of the inner bearing of the base is fixedly connected with a first rotating shaft and a second rotating shaft.
Description
Technical Field
The invention relates to the technical field of textile dust removal, in particular to a textile dust removal device with high durability.
Background
The textile raw materials comprise cotton, cashmere, wool, silkworm cocoon silk, chemical fiber, feather, down feather and the like. The raw materials of the textile mainly comprise downstream industries of textile industry, such as clothing industry, household textile, industrial textile and the like. The textile industry is subdivided to include cotton, chemical fiber, hemp, wool, silk, textile knitting, printing and dyeing, etc. The production process of textile factories can be divided into dry production and wet production. The spinning process of cotton, wool, hemp and silk and the spinning process of terylene and chinlon belong to dry production (a small amount of wet workshops are also provided); the dry method production workshop has the advantages of dense machines and personnel, large heat dissipation capacity and much dust. In the dry process workshop, the textile machine is mostly the inline, therefore, the dust between two textile machines and the spinning flying wadding that dances in the air are the most, current dust collector for weaving can only adjust same power and remove dust in to the workshop, easily cause the extravagant increase loss of power, current dust collector for weaving suction opening easily blocks up simultaneously, in case can only use the manpower to dismantle the mediation after blockking up, consequently, the design is to the dust, fly the wadding subsection condition and carry out the dust collector for weaving that a durability is strong to the dust absorption prevents blockking up by oneself simultaneously is very necessary.
Disclosure of Invention
The invention aims to provide a textile dust removal device with high durability so as to solve the problems in the background technology.
In order to solve the technical problems, the invention provides the following technical scheme: the utility model provides a dust collector for weaving that durability is strong, includes dust collector for weaving, its characterized in that: dust collector for weaving includes the base, the base divide into two parts from top to bottom, two parts from top to bottom the base bearing is connected, the up end welding of base has a suction drum, one side of suction drum evenly is provided with a plurality of dust absorption mouths, the dust absorption mouth divide into two parts, two parts the dust absorption mouth slides each other and cup joints, there is the suction machine bottom of suction drum through the tube coupling.
According to the technical scheme, a plurality of dust absorption bags are evenly arranged inside the dust absorption barrel, the dust absorption opening is connected with a dust absorption bag bearing, every two dust absorption bags are connected through a pipeline, the top is the dust absorption bag is fixed with the top end of the inside of the dust absorption barrel, and a short rod is arranged between one side of each dust absorption bag and the outer side of the dust absorption opening.
According to the technical scheme, the lower part of the inner bearing of the base is connected with a first rotating shaft and a second rotating shaft, a half gear is fixed on the outer side of the first rotating shaft, a bevel gear is connected to the outer bearing of the first rotating shaft, one side of the bevel gear is connected with one side of the half gear through a pull rope, a large gear is fixed on the outer side of the second rotating shaft, the large gear is meshed with the half gear and the bevel gear, the second rotating shaft penetrates through the upper end face of the base and is welded with a dust suction cylinder, and one side of the first rotating shaft is electrically connected with a motor.
According to the technical scheme, the inside welding of dust absorption mouth has dog I, dog I is hollow, there are three horn mouths on the right side of dog I through the tube coupling, the left end of three horn mouths is located the pipeline of dog one right-hand member, the inside sliding connection who is located the dust absorption mouth in the below of dog I has dog II, be fixed with the bag of keeping in between dog I and the dog II, the bag of keeping in is close to one side of dust absorption bag and has seted up the through-hole, be provided with the pressure valve on the through-hole, the inside welding that is located dog II of dust absorption mouth has the gas chamber, the inside sliding connection of gas chamber has the gas holder, the bottom welding of dog II has the push rod, the push rod runs through the top of gas chamber and is fixed with the gas holder, the bottom of gas chamber has annular bag through the tube coupling, the annular bag is located the outside.
According to the technical scheme, a plurality of air holes are formed in one part of the surface, located inside a pipeline at one right end of the stop block, of the triangular opening, an air film is fixed on the outer surface of the triangular opening, the length of the air film is smaller than the arrangement length of the air holes, trapezoidal magnetic blocks are connected to two sides of the air film in a bearing mode, a spherical magnetic block is arranged between the two trapezoidal magnetic blocks, and the spherical magnetic block is connected with one trapezoidal magnetic block rope.
According to the technical scheme, one side of a dust suction tube is provided with a shell, the inside of the shell is fixed with a plurality of collecting boxes from top to bottom, and is a plurality of conical ports are welded at the bottom of the inside of each collecting box and are connected with the collecting boxes below through pipelines, flexible bags are arranged on the inner sides of the conical ports, air bags are arranged inside the flexible bags, a gas box is welded inside the shell, hydrogen is arranged inside the gas box, a push plate is connected to the inside of the gas box in a sliding mode, a main gas pipe is sleeved at the top end of the gas box, a plurality of slave gas pipes are sleeved on the outside of the main gas pipe, the slave gas pipes are sleeved with the air bags, and each slave gas pipe is provided with an opening and closing valve.
According to the technical scheme, the top end of each collecting box is provided with the air hole, and one side of each collecting box connected with the slave air conveying pipe is flexible.
According to the technical scheme, the outside of pivot one is provided with annular iron stand, the inboard welding of annular iron stand has a plurality of connecting rods, the one end and the first welding of pivot of connecting rod, the connecting rod runs through annular iron stand, the connecting rod is provided with the arc recess with the junction of annular iron stand, and is a plurality of sliding connection has a plurality of groups arc resistance strip on the connecting rod, the bottom welding of arc resistance strip has the balancing weight, a plurality of groups the resistance of arc resistance strip reduces gradually, the weight of balancing weight increases gradually.
According to the technical scheme, annular baffle plates are fixed between the top end of the first stop block, the bottom end of the air bin and the dust collection port.
According to the technical scheme, the annular bag is made of rubber.
Compared with the prior art, the invention has the following beneficial effects: the rotary dust collection device is provided with the first rotating shaft, the dust collection port, the annular bag and other parts, so that the rotary speed of the device is reduced if more dust in a certain range flies in the rotary dust collection process of the device, and dust collection in the range is facilitated; through being provided with parts such as annular iron stand, a plurality of arc resistance strip of group, carry out adjusting device's dust absorption dynamics to the scope that the dust flying wadding was kept, it is great to the more scope dust absorption dynamics of dust flying wadding, and the less scope dust absorption dynamics of dust flying wadding is less.
Drawings
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. In the drawings:
FIG. 1 is a schematic overall elevational cross-sectional structural view of the present invention;
FIG. 2 is a perspective view of a portion of the internal components of the base of the present invention;
FIG. 3 is a front sectional view of the inside of the vacuum cleaner nozzle according to the present invention;
FIG. 4 is a schematic sectional view of the inside of the triangular opening in front view according to the present invention;
FIG. 5 is a schematic view of the annular iron frame and the suction machine circuit connection of the present invention;
FIG. 6 is a perspective view of the suction bag and suction opening of the present invention;
in the figure: 1. a dust suction cylinder; 2. a base; 21. a first rotating shaft; 210. an annular bladder; 211. an annular iron frame; 212. a connecting rod; 213. arc-shaped resistor strips; 22. a second rotating shaft; 23. a half gear; 24. a bevel gear; 25. a bull gear; 3. a dust suction port; 31. a triangular opening; 311. a gas film; 312. a trapezoidal magnetic block; 313. a spherical magnetic block; 32. a first stop block; 33. a second stop block; 34. temporarily storing the bags; 35. a gas bin; 36. an air plate; 4. a dust collection bag; 5. a suction machine; 6. a housing; 7. a gas box; 71. a push plate; 8. a main gas delivery pipe; 9. a collection box; 10. a flexible bladder; 11. an air bag.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
Referring to fig. 1-6, the present invention provides the following technical solutions: the utility model provides a dust collector for weaving that durability is strong, includes dust collector for weaving, its characterized in that: the dust removal device for spinning comprises a base 2, wherein the base 2 is divided into an upper part and a lower part, the upper part and the lower part are connected through a bearing of the base 2, a dust suction cylinder 1 is welded on the upper end surface of the base 2, a plurality of dust suction ports 3 are uniformly arranged on one side of the dust suction cylinder 1, the dust suction ports 3 are divided into two parts, the two parts of the dust suction ports 3 are mutually sleeved in a sliding mode, and the bottom end of the dust suction cylinder 1 is connected with a suction machine 5 through a pipeline; place this device between two weaving machines, start the suction machine, the dust flying wadding of suction machine in to the outside air sucks, and the dust flies the wadding and passes through in a plurality of dust absorption mouth entering device, and the base divide into two parts, and the base can drive the device and rotate, need not to carry the device and can realize removing dust on a large scale.
A plurality of dust absorption bags 4 are uniformly arranged in the dust absorption barrel 1, the dust absorption openings 3 are in bearing connection with the dust absorption bags 4, every two dust absorption bags 4 are connected through a pipeline, the topmost dust absorption bag 4 is fixed with the top end in the dust absorption barrel 1, and a short rod is arranged between one side of each dust absorption bag 4 and the outer side of each dust absorption opening 3; it can be known from the above steps that when the suction machine is started to suck the flying dust in the workshop through a plurality of dust suction ports, as can be seen from fig. 1, the suction machine is connected with the dust suction bag at the bottommost end, the suction force in the dust suction port on the right side of the dust suction bag at the bottommost end is the largest, namely, a part of suction force is used by the dust suction port on the right side of the dust suction bag at the bottommost end, and so on, the suction force of the dust suction port far away from the ground is smaller, the dust flying dust in the workshop is sucked, and the flying dust can gradually precipitate in the air due to certain weight of the flying dust, the suction force of the dust suction port near the ground is larger, the suction force of the dust suction port far away from the ground is smaller, the flying precipitation condition of the flying dust is aimed at the suction, the power of the suction machine is reasonably utilized, and meanwhile, the dust flying dust enters the dust suction bag through the suction port, so that the dust suction bag expands, as can be seen from fig. 6, the dust suction bag expands to pull the dust suction ports through the short rod, so that the dust suction ports which are slidably sleeved with each other are pulled apart, the absorption range of the dust suction ports is increased, and more dust flocs can be absorbed.
The inner bearing of the lower part base 2 is connected with a first rotating shaft 21 and a second rotating shaft 22, a half gear 23 is fixed on the outer side of the first rotating shaft 21, a bevel gear 24 is connected with the outer bearing of the first rotating shaft 21, one side of the bevel gear 24 is connected with one side of the half gear 23 through a pull rope, a large gear 25 is fixed on the outer side of the second rotating shaft 22, the large gear 25 is meshed with the half gear 23 and the bevel gear 24, the second rotating shaft 22 penetrates through the upper end face of the base 2 and is welded with the dust suction cylinder 1, and one side of the first rotating shaft 21 is electrically connected with a motor; starting a motor to drive a first rotating shaft to rotate, a half gear to rotate along with the first rotating shaft, driving a big gear to rotate when the half gear is meshed with the big gear, driving a second rotating shaft and a dust suction cylinder at the top end of the second rotating shaft to rotate by the big gear, linking with the steps, enabling the device to absorb dust flying in a workshop while rotating, improving dust suction efficiency, when a bevel gear is meshed with the big gear, as a bevel gear is connected with a bearing of the rotating shaft, the big gear does not rotate at the moment, namely the device stops rotating, as can be seen from figure 2, the half gear is a semicircle, namely after the half gear drives the big gear to rotate 180 degrees, the bevel gear is meshed with the big gear, the device stops rotating, placing the device between two textile machines, stopping dust suction for a large amount of flying cotton and dust flying in the textile machines at two sides, and rotationally absorbing a small amount of dust flying cotton outside the two textile machines, when the half gear is meshed with the large gear again, the pull rope contracts to pull back the bevel gear to be attached to one side of the half gear again.
A first check block 32 is welded inside the dust collection port 3, the first check block 32 is hollow, the right side of the first check block 32 is connected with a triangular port 31 through a pipeline, the left end of the triangular port 31 is located in the pipeline at the right end of the first check block 32, a second check block 33 is slidably connected inside the dust collection port 3 below the first check block 32, a temporary storage bag 34 is fixed between the first check block 32 and the second check block 33, a through hole is formed in one side, close to the dust collection bag 4, of the temporary storage bag 34, a pressure valve is arranged on the through hole, an air chamber 35 is welded below the second check block 33 inside the dust collection port 3, an air plate 36 is slidably connected inside the air chamber 35, a push rod is welded at the bottom end of the second check block 33, the push rod penetrates through the top end of the air chamber 35 and is fixed with the air plate 36, the bottom end of the air chamber 35 is connected with an annular bag 210 through a pipeline, and the annular bag 210 is located outside the first rotating shaft 21; from the above steps, when dust begins to be sucked, the dust flying wadding enters the dust suction port, as can be seen from fig. 3, the dust in the dust suction port enters the triangular port and enters the temporary storage bag between the first stop block and the second stop block through the pipeline, the temporary storage bag expands along with the increase of the dust flying wadding to push the push rod and the air plate, the air plate slides and moves downwards in the air chamber to extrude the gas in the air chamber into the annular bag through the pipeline, the gas in the annular bag increases and expands, the through hole is stretched, when the second stop block drives the air plate to slide to the bottom end in the air chamber, the through hole is stretched to the maximum, the tension applied to the pressure valve is maximum at the moment so as to open, the dust flying wadding accumulated in the temporary storage bag can be led out, when the annular bag expands, the contact area with the first rotating shaft is increased, the rotating speed of the first rotating shaft is slowed, and if the annular bag expands less, the rotating resistance to the first rotating shaft is small, the rotating speed change of the automatic real-time adjusting device for the quantity of the dust flying cotton entering the triangular opening at present is realized, if the quantity of the dust flying cotton entering the triangular opening at present is large, the expansion speed of the temporary storage bag is large, the time required by opening the pressure valve is short, the speed for discharging the dust flying cotton in the temporary storage bag after the temporary storage bag is full is high, the rotating speed change of the first rotating shaft is high (firstly, the rotating speed is quickly reduced and then quickly changed to the original speed), the rotating speed change of the driving device is high, if the quantity of the dust flying cotton is small, the time for the temporary storage bag to be full to discharge the dust flying cotton is long, the annular bag continuously expands, the rotating speed of the rotating shaft is gradually reduced and then restored, but the reducing speed is low, the rotating speed is adjusted according to two different conditions, and the rotating speed is quickly changed when the quantity of the dust is large, improve work efficiency, slowly change to the less condition of dust, carry out the complete suction around the weaving machine, avoid appearing because the dust flies the wadding less, the moving range that the dust flies the wadding is wider and the phenomenon that the hourglass was inhaled appears.
A part of the surface of the triangular opening 31, which is positioned inside a pipeline at the right end of the first stopper 32, is provided with a plurality of air holes, an air film 311 is fixed on the outer surface of the triangular opening 31, the length of the air film 311 is smaller than the arrangement length of the air holes, trapezoidal magnetic blocks 312 are respectively connected to two sides of the air film 311 through bearings, a spherical magnetic block 313 is arranged between the two trapezoidal magnetic blocks 312, and the spherical magnetic block 313 is connected with one trapezoidal magnetic block 312 through a rope; it can be known from the above steps that when the dust flying wadding in the workshop is sucked, the dust flying wadding enters into the dust suction port, as can be seen from fig. 3, the part in the dust suction port does not completely close the dust suction port, so that both the inside and the outside of the triangular port have suction force (the internal suction force is the suction force of the suction machine which passes through the through hole on one side of the temporary storage bag and generates suction force on the inside of the triangular port through the pipeline on the right side of the stop block, the external suction force is the suction force directly generated on the dust suction port by the suction machine, the part in the dust suction port does not block the dust suction port in the above steps, the external suction force is generated from the gap), aiming at the internal suction force, if more dust flying wadding outside at the moment enters into the dust flying wadding in the triangular port, so that the triangular port is blocked, as can be seen from fig. 3-4, the left end of the triangular port is positioned in the pipeline, and when the part is blocked, the outside of the left end of the triangular port still has suction force, then the air film is by tensile inflation this moment, can know by figure 4, when the air film inflation to a certain position, two trapezoidal magnetic path are forced to part, and spherical magnetic path is thrown away by inertia, carries on spacingly by the rope between spherical magnetic path and the trapezoidal magnetic path, and spherical magnetic path rotates around the junction, strikes the outside of triangle-shaped mouth for the triangle-shaped mouth shakes, makes to produce the clearance between the inside flying cotton dust of triangle-shaped mouth that blocks up, dredges the inside of triangle-shaped mouth.
A shell 6 is arranged on one side of the dust collection barrel 1, a plurality of collecting boxes 9 are fixed in the shell 6 from top to bottom, tapered openings are welded at the bottom ends of the interiors of the collecting boxes 9, the bottom end of each collecting box 9 is connected with the collecting box 9 below through a pipeline, a flexible bag 10 is arranged on the inner side of each tapered opening, an air bag 11 is arranged in each flexible bag 10, a gas box 7 is welded in the shell 6, hydrogen is arranged in each gas box 7, a push plate 71 is slidably connected in each gas box 7, a main gas pipe 8 is sleeved at the top end of each gas box 7, a plurality of auxiliary gas pipes are sleeved on the outer side of each main gas pipe 8, the auxiliary gas pipes are sleeved with the air bags 11, and each auxiliary gas pipe is provided with an opening and closing valve; as shown in figure 1, the suction machine is started, external dust is absorbed through flying catkins and then is guided into the topmost collection box in the shell through a pipeline, after the topmost collection box is fully loaded, the opening and closing valve on the air pipe on one side in the topmost collection box is manually opened at the moment, hydrogen in the gas box is pushed by the push plate and enters the air bag in the topmost collection box through the main air pipe, the air bag expands, the hydrogen rises in the flexible bag due to the fact that the hydrogen is fully filled in the flexible bag, upward thrust is generated on the flexible bag, the flexible bag does not block the bottom end part of the flexible bag, which is in contact with the collection box, the topmost collection box is communicated with the pipeline between the collection boxes below the flexible bag, the steps are repeated, the collection boxes are recycled, and the next collection box is started to be collected after the first collection box is fully loaded.
The top end of each collecting box 9 is provided with an air hole, and one side of each collecting box 9 connected with the slave gas pipe is flexible; this step optimizes above-mentioned step, when beginning to lead into the dust flying wadding in the topmost collecting box, the air of leading into it is derived from the ventilation hole, only leave the dust flying wadding and pile up in the collecting box, when topmost collecting box is full load, because it is flexible with the one side of being connected from the gas-supply pipe, then the flexible one side of collecting box is extruded the expansion, promote the valve that opens and shuts, make hydrogen can lead to in the gasbag, make the pipeline between topmost collecting box and its below collecting box lead with, below collecting box treatment step is the same with this step, when having realized just launching next collecting box after full load, realized that self-starting need not manpower control.
An annular iron frame 211 is arranged on the outer side of the first rotating shaft 21, a plurality of connecting rods 212 are welded on the inner side of the annular iron frame 211, one ends of the connecting rods 212 are welded with the first rotating shaft 21, the connecting rods 212 penetrate through the annular iron frame 211, arc-shaped grooves are formed in the connecting positions of the connecting rods 212 and the annular iron frame 211, a plurality of groups of arc-shaped resistor strips 213 are connected onto the connecting rods 212 in a sliding mode, balancing weights are welded at the bottom ends of the arc-shaped resistor strips 213, the resistance values of the arc-shaped resistor strips 213 are gradually reduced, and the weight of the balancing weights is gradually increased; when the motor is started and the first rotating shaft rotates, the connecting rods outside the first rotating shaft and the annular iron frame are driven to rotate, the arc-shaped resistor strips on the connecting rods slide outwards on the connecting rods under the action of inertia, and are linked with the steps, if less external dust flies, the rotating speed of the first rotating shaft is higher, three arc-shaped resistor strips are thrown, the arc-shaped resistor strip closest to the first rotating shaft has the largest resistance value and the largest weight of the balancing weight at the bottom end of the first rotating shaft, after the three arc-shaped resistor strips are thrown, the other two arc-shaped resistor strips are thrown out of the annular iron frame, the arc-shaped resistor strip closest to the first rotating shaft is positioned in the arc-shaped groove, the circuit is communicated at the moment, the resistance value in the circuit is the largest, the current flowing through the motor is the smallest, the power of the motor is the smallest, if more external dust flies, the rotating speed of the first rotating shaft is slower, and the weight of the bottom end of the arc-shaped resistor strip farthest from the first rotating shaft is the lightest, the resistance is minimum, then only this arc resistance strip is thrown and is got into the arc recess, the circuit switches on the back, the electric current is the biggest, motor power is the biggest, this step has realized linking with above-mentioned step, to how much of external dust flying cotton, if the dust flying cotton is more, then the device is when slowly rotating, increases the suction, carry out vigorously the suction to a large amount of dust flying cotton, if the dust flying cotton is less, then the device is when quick rotation, reduces the suction, when realizing absorbing external dust flying cotton, can not cause the waste of power.
An annular baffle plate is fixed between the top end of the first stop block 32, the bottom end of the air bin 35 and the dust collection port 3; the annular baffle plate has the function that the suction force in the dust suction port completely passes through the through hole and the pipeline, and the dust entering the dust suction port is absorbed by the triangular port to fly.
The annular bladder 210 is made of rubber; the rubber material has good wear resistance and prolongs the service life of the annular bag.
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.
Finally, it should be noted that: although the present invention has been described in detail with reference to the foregoing embodiments, it will be apparent to those skilled in the art that changes may be made in the embodiments and/or equivalents thereof without departing from the spirit and scope of the invention. Any modification, equivalent replacement, or improvement made within the spirit and principle of the present invention should be included in the protection scope of the present invention.
Claims (10)
1. The utility model provides a dust collector for weaving that durability is strong, includes dust collector for weaving, its characterized in that: dust collector for weaving includes base (2), base (2) divide into upper and lower two parts, upper and lower two parts base (2) bearing is connected, the up end welding of base (2) has suction tube (1), one side of suction tube (1) evenly is provided with a plurality of dust absorption mouth (3), dust absorption mouth (3) divide into two parts, two parts dust absorption mouth (3) slip each other and cup joint, there is suction machine (5) bottom of suction tube (1) through the tube coupling.
2. The dust removing device for textile with strong durability as claimed in claim 1, wherein: the inside of suction tube (1) evenly is provided with a plurality of dust absorption bag (4), dust absorption mouth (3) are connected with dust absorption bag (4) bearing, per two through the tube coupling between dust absorption bag (4), the top dust absorption bag (4) are fixed with the inside top of suction tube (1), be provided with the quarter butt between the outside of one side of dust absorption bag (4) and dust absorption mouth (3).
3. The dust removing device for textile with strong durability as claimed in claim 2, wherein: lower part the inner bearing of base (2) is connected with pivot one (21) and pivot two (22), the outside of pivot one (21) is fixed with half gear (23), the outside bearing of pivot one (21) is connected with bevel gear (24), one side of bevel gear (24) is passed through the stay cord and is connected with one side of half gear (23), the outside of pivot two (22) is fixed with gear wheel (25), gear wheel (25) and half gear (23), bevel gear (24) meshing, the up end and the suction drum (1) welding that base (2) were run through to pivot two (22), one side electricity of pivot one (21) is connected with the motor.
4. The dust removing device for textile with strong durability as claimed in claim 3, wherein: the dust collection bag is characterized in that a first check block (32) is welded inside the dust collection port (3), the first check block (32) is hollow, the right side of the first check block (32) is connected with a third angle port (31) through a pipeline, the left end of the third angle port (31) is positioned in the pipeline at the right end of the first check block (32), a second check block (33) is slidably connected inside the dust collection port (3) below the first check block (32) and the second check block (33), a temporary storage bag (34) is fixed between the first check block (32) and the second check block (33), a through hole is formed in one side, close to the dust collection bag (4), of the temporary storage bag (34), a pressure valve is arranged on the through hole, an air chamber (35) is welded below the second check block (33) inside the dust collection port (3), an air plate (36) is slidably connected inside the air chamber (35), a push rod is welded at the bottom end of the second check block (33), and the push rod penetrates through the top end of the air chamber (35) and is fixed with the air plate (36), the bottom end of the gas bin (35) is connected with an annular bag (210) through a pipeline, and the annular bag (210) is located on the outer side of the first rotating shaft (21).
5. The dust removing device for textile with strong durability as claimed in claim 4, wherein: a plurality of air holes are formed in the part of the surface, located inside a pipeline at the right end of the first check block (32), of the triangular opening (31), an air film (311) is fixed on the outer surface of the triangular opening (31), the length of the air film (311) is smaller than the arrangement length of the air holes, trapezoidal magnetic blocks (312) are connected to two sides of the air film (311) in a bearing mode, spherical magnetic blocks (313) are arranged between the trapezoidal magnetic blocks (312), and the spherical magnetic blocks (313) are connected with one trapezoidal magnetic block (312) in a rope mode.
6. The dust removing device for textile with strong durability as claimed in claim 5, wherein: a shell (6) is arranged on one side of the dust collection barrel (1), a plurality of collecting boxes (9) are fixed in the shell (6) from top to bottom, conical openings are welded at the bottom ends of the inner parts of the collecting boxes (9), the bottom end of each collecting box (9) is connected with the collecting box (9) below through a pipeline, flexible bags (10) are arranged on the inner sides of the conical openings, air bags (11) are arranged in the flexible bags (10), a gas box (7) is welded in the shell (6), hydrogen is arranged in the gas box (7), a push plate (71) is connected in the gas box (7) in a sliding mode, a main gas pipe (8) is sleeved at the top end of the gas box (7), a plurality of auxiliary gas pipes are sleeved on the outer side of the main gas pipe (8), and the auxiliary gas pipes are sleeved with the air bags (11), each slave gas transmission pipe is provided with an opening and closing valve.
7. The dust removing device for textile with strong durability as claimed in claim 6, wherein: air holes are formed in the top end of each collecting box (9), and one side, connected with the air conveying pipe, of each collecting box (9) is flexible.
8. The dust removing device for textile with strong durability as claimed in claim 7, wherein: the outside of pivot (21) is provided with annular iron stand (211), the inboard welding of annular iron stand (211) has a plurality of connecting rods (212), the one end and the welding of pivot (21) of connecting rod (212), connecting rod (212) run through annular iron stand (211), connecting rod (212) are provided with the arc recess with the junction of annular iron stand (211), and are a plurality of sliding connection has a plurality of groups arc resistance strip (213) on connecting rod (212), the bottom welding of arc resistance strip (213) has the balancing weight, a plurality of groups the resistance of arc resistance strip (213) reduces gradually, the weight of balancing weight increases gradually.
9. The dust removing device for textile with strong durability as claimed in claim 8, wherein: an annular baffle is fixed between the top end of the first stop block (32), the bottom end of the air bin (35) and the dust collection port (3).
10. The dust removing device for textile with strong durability as claimed in claim 9, wherein: the annular bag (210) is made of rubber.
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CN202110502146.6A CN113293489A (en) | 2021-05-08 | 2021-05-08 | Weaving dust collector that durability is strong |
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CN202110502146.6A CN113293489A (en) | 2021-05-08 | 2021-05-08 | Weaving dust collector that durability is strong |
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Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN114232185A (en) * | 2021-12-29 | 2022-03-25 | 潘月 | Flying wadding collecting device of textile machine for spinning |
CN115262115A (en) * | 2022-08-30 | 2022-11-01 | 上海龙头纺织科技有限公司 | Textile garment blanking machine |
-
2021
- 2021-05-08 CN CN202110502146.6A patent/CN113293489A/en active Pending
Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN114232185A (en) * | 2021-12-29 | 2022-03-25 | 潘月 | Flying wadding collecting device of textile machine for spinning |
CN115262115A (en) * | 2022-08-30 | 2022-11-01 | 上海龙头纺织科技有限公司 | Textile garment blanking machine |
CN115262115B (en) * | 2022-08-30 | 2023-11-21 | 上海龙头纺织科技有限公司 | Textile garment blanking machine |
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