Self-cleaning type textile processing dust remover

The self-cleaning textile processing dust collector's combined structure of filter screen, scraping roller and squeezing roller solves the problem of difficult separation of spinning and dust in the dust removal device of the textile workshop, and achieves efficient automatic cleaning and dust removal effects.

CN120618147AInactive Publication Date: 2025-09-12江苏晋泽纺织品有限公司
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Patent Information

Application Number
CN202510709410.1
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-05-29
Publication Date
2025-09-12
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

In existing dust removal devices in textile workshops, the filter screen is prone to adhesion of yarn and dust, resulting in low ventilation rate and difficulty in cleaning. In addition, civilian air purifiers have difficulty in effectively separating yarn and dust after purification.

Method used

A self-cleaning textile processing dust collector is used, which utilizes a combination structure of filter mesh, scraping roller and squeezing roller to separate the yarn and dust through the filter mesh. The sliding of the scraping roller and squeezing roller and the adhesion of the silicone sticky strip can realize automatic separation and cleaning of the yarn, and the dust can be collected and purified through the cooperation of the return water pipe and the atomizing plate.

Benefits of technology

It achieves efficient separation and automatic cleaning of spinning and dust, improves ventilation rate, reduces filter clogging, simplifies the cleaning process, and improves dust removal efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the field of self-cleaning dust removal, in particular to a self-cleaning textile processing dust remover which comprises a filtering tank, the inner side wall face of the bottom of the filtering tank is movably sleeved with a filter gauze plate, an air inlet pipe is arranged on the surface of one side of the filtering tank, and a limiting sleeve is arranged on the inner side wall face of the bottom of the filtering tank. A motor is arranged on the surface of the top of the limiting sleeve, and a yarn scraping roller and an extrusion roller are arranged at the output end of the motor. Indoor air is poured into the filtering tank through the air inlet pipe, the arc inside the filtering tank is utilized, the air is guided by taking the arc-shaped inner wall surface as a guiding layer, and spinning and dust impurities are roughly separated by utilizing the weight of the spinning and the dust impurities along with continuous arc-shaped flowing of the air. Spinning yarn is filtered through the yarn filtering screen plate, and dust and impurities penetrate through the yarn filtering screen plate to enter the limiting sleeve through large holes in the surface of the yarn filtering screen plate.
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Description

Technical Field

[0001] The invention belongs to the technical field of self-cleaning dust removal, in particular to a self-cleaning dust remover for textile processing. Background Art

[0002] Textile workshops contain a large number of materials and products such as silk threads, cloth, and fluff. During processing or transportation, dust adhering to the surface will be blown up and pollute the working environment. Static electricity is easily generated, and dust also poses a risk of explosion and fire. Dust removal in textile workshops is crucial to safe production. Civilian air purifiers, also known as "air cleaners" or air fresheners, are products that can absorb, decompose or transform various air pollutants (generally including dust, pollen, odors, bacteria, allergens, and decoration pollution such as formaldehyde), effectively improving air cleanliness. They mainly use household and commercial air purifiers to remove indoor air pollution.

[0003] Patent publication number CN118341192A discloses a dust removal device for a textile workshop. The device comprises a first enclosed box, an inner box, a conveyor belt, a fiber stripping assembly, and a first drive unit. The inner box is fixedly connected to the interior of the first enclosed box. The conveyor belt comprises at least two conveyor rollers and a flexible mesh belt, which are rotatably connected to the first enclosed box, one of which is connected to the first drive unit. A first input pipe and a first output pipe are connected to the front side of the inner box. The left long side of the conveyor belt extends from top to bottom through the inner box, separating the first input pipe and the first output pipe into two spaces on the left and right sides of the inner box. The fiber stripping assembly comprises a brush roller, which is located below the lower short side of the conveyor belt and is in transmission connection with the first drive unit. First bristles are fixedly connected to the outer side of the brush roller, with the ends of the first bristles contacting and cooperating with the lower short side of the conveyor belt. The brush roller rotates counterclockwise during operation.

[0004] In the current existing technology, civilian air purifiers are used inside existing spinning workshops. After the air purifier purifies the gas, it will absorb dust, foreign particles and broken yarns into the civilian air purifier. Since the holes and filter mesh inside the filter device are relatively fine, this will result in the filter mesh filtering the dust and impurities together when filtering the yarn. The single-layer filter mesh will adhere to a large amount of yarn and dust impurities, resulting in a relatively low subsequent ventilation rate. Moreover, the yarn has a certain hygroscopicity. Under the continuous extraction of the wind source, moisture will condense the dust adhered to the surface of the yarn, so that when it is disassembled later, it is not easy to disassemble and clean the yarn and the dust, and manual cleaning is prone to breaking the yarn.

[0005] To this end, the present invention provides a self-cleaning textile processing dust remover. Summary of the Invention

[0006] In order to make up for the deficiencies of the prior art, at least one technical problem raised in the background technology is solved.

[0007] The technical solution adopted by the present invention to solve its technical problem is as follows: a self-cleaning textile processing dust collector described in the present invention includes a filter tank, a filter mesh plate is movably sleeved on the inner wall surface of the bottom of the filter tank, an air inlet pipe is provided on one side surface of the filter tank, a limiting sleeve is provided on the inner wall surface of the bottom of the filter tank, a motor is provided on the top surface of the limiting sleeve, a scraping roller and an extrusion roller are respectively provided on the output end of the motor, an extrusion rubber strip is fixedly installed on the outer surface of the extrusion roller, and a silicone adhesive strip is provided on the outer surface of the scraping roller; An indented groove is provided on the outer surface of the filter mesh plate, a filter mesh is provided on the inner wall surface of the indented groove, and the scraping roller and the squeezing roller are movably sleeved on both side surfaces of the filter mesh plate.

[0008] Preferably, a rectangular groove is provided on the outer surface of the sunken groove, and convex corners are provided on the inner wall surfaces on both sides of the rectangular groove.

[0009] Preferably, the outer surface of the extruded rubber strip is movably sleeved on the inner wall surface of the rectangular groove, and the outer surface of the silicone adhesive strip is movably sleeved on the inner wall surface of the sunken groove.

[0010] Preferably, a closing cover 2 is provided on the top surface of the filter tank, the outer surface of the motor is fixedly mounted on the bottom surface of the closing cover 2, a clamping disk is fixedly connected to the output end of the motor, the bottom surface of the motor is movably overlapped on the top inner wall of the limiting sleeve, and the top ends of the scraping roller and the squeezing roller are arranged on the bottom surface of the clamping disk.

[0011] Preferably, a scraper is fixedly connected to the outer surface of the output end of the motor, the outer surface of the scraper is movably sleeved on the inner back side of the limiting sleeve, an air duct is fixedly connected to the bottom surface of the filter tank, and a return water pipe is suspended on the inner wall of the air duct.

[0012] Preferably, one end of the return water pipe extends to the inner wall of the limiting sleeve, and the end of the return water pipe extending to the inner wall of the limiting sleeve is fixedly connected to an atomizing plate, the position of the atomizing plate is set on the inner wall of the scraper, and a support frame is fixedly installed on the bottom surface of the filter tank.

[0013] Preferably, a dust filter is provided on the outer surface of the limiting sleeve and at the middle position, a drainage arc strip is provided on the outer surface of the limiting sleeve and at the bottom edge position of the dust filter, an ultra-dense dust filter cartridge is movably connected to the inner wall surface of the bottom of the limiting sleeve, and the outer surface of the ultra-dense dust filter cartridge is movably connected to the outer surface of the return water pipe.

[0014] Preferably, a civilian indoor air purifier is fixedly mounted on the outer surface of the support frame, an exhaust hole is provided on one side surface of the civilian indoor air purifier, a snap-on window is fixedly mounted on the other side surface of the civilian indoor air purifier, a closing cover 1 is provided on the top surface of the civilian indoor air purifier, and a wind shield is provided on the top surface of the closing cover 1.

[0015] Preferably, a vent is provided on one side surface of the snap-fit ​​window, and a limited height strip is provided on the upper and lower inner wall surfaces of the snap-fit ​​window and at the edge position of one side of the vent, and an electric motor is fixedly installed on the upper and lower inner wall surfaces of the snap-fit ​​window.

[0016] Preferably, a threaded rod is fixedly connected to the output end of the electric motor, a slider is threadedly movably sleeved on the outer surface of the threaded rod, a slide is fixedly connected to the outer surface of the slider, and the slide is positioned on the inner wall of the air vent.

[0017] The beneficial effects of the present invention are as follows: 1. The self-cleaning textile processing dust collector described in the present invention infuses indoor air into the interior of a filter tank through an air inlet pipe, and utilizes the arc shape of the interior of the filter tank so that the air is guided and processed using the arc inner wall surface as a guide layer. As the air continues to flow in the arc, the yarn and dust impurities are roughly separated by the difference in weight between the two, and the yarn is filtered through the filter mesh plate. The dust impurities pass through the filter mesh plate through the larger holes on the surface of the filter mesh plate and enter the interior of the limiting sleeve, thereby achieving the effect of separating and storing the dust and yarn. 2. The self-cleaning textile processing dust collector described in the present invention, when the gas passes through the filter mesh plate, the gas will enter the interior of the sunken groove, and filter the yarn through the filter mesh inside the sunken groove, and make the yarn accumulate inside the sunken groove and on the inner wall surface, at this time, the motor is coordinated to rotate the yarn scraping roller and the squeezing roller, and make the yarn scraping roller and the squeezing roller slide on the two side surfaces of the filter mesh plate, during the sliding process, the squeezing rubber strip and the silicone adhesive strip will be inserted into the outer surface and inner wall surface of the sunken groove, and cooperate with the silicone adhesive strip to adhere to the yarn inside the sunken groove, and the yarn is pulled out from the inside of the sunken groove under the sliding of the yarn scraping roller; 3. In the self-cleaning textile processing dust remover described in the present invention, when the silicone adhesive strip enters the inner recessed groove, the surface of the silicone adhesive strip is deformed under the pressure of the silicone adhesive strip. The deformed silicone adhesive strip can increase the adhesion and contact surface between the silicone adhesive strip and the yarn. At this time, the adhesion and anti-slip properties of the silicone adhesive strip are utilized to perform contact and adhesion treatment on the yarn inside the recessed groove, so that the yarn adheres to the surface of the silicone adhesive strip. The silicone adhesive strip is pulled back under the continuous rotation of the yarn scraping roller. At this time, the surface of the silicone adhesive strip is squeezed at a certain inclined angle between the inner wall surface of the recessed groove, and the yarn is pulled out of the inner recessed groove under the drag of the silicone adhesive strip. 4. In the self-cleaning textile processing dust remover described in the present invention, when the silicone adhesive strip enters the interior of the sunken groove, the extruded rubber strip on the outer surface of the extrusion roller will squeeze the outer surface of the sunken groove. At the same time, the trapezoidal state on the surface of the extruded rubber strip is used to squeeze the protruding corners on the outer surface of the sunken groove, and the sunken groove is shrunk inwardly due to the extrusion of the extruded rubber strip, and the inner wall surface of the sunken groove is tightly attached to the outer surface of the silicone adhesive strip, so that the yarn inside the sunken groove can be greatly attached to the surface of the silicone adhesive strip. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] The present invention will be further described below with reference to the accompanying drawings.

[0019] Figure 1 is a perspective view of the present invention; Figure 2 This is an expanded perspective view of the civilian indoor air purifier of the present invention; Figure 3 It is a sectional perspective view of the internal structure of the filter tank in the present invention; Figure 4 It is a cutaway perspective view of the filter tank in the present invention; Figure 5 It is a three-dimensional diagram of the motor in the present invention; Figure 6 It is a three-dimensional diagram of the scraping roller and the squeezing roller in the present invention; Figure 7 It is a sectional perspective view of the scraping roller, squeezing roller and filter screen plate in the present invention; Figure 8 It is a cutaway perspective view of the snap-in window in the present invention.

[0020] In the figure: 11, civil indoor air purifier; 111, snap-on window; 112, air vent; 113, electric motor; 114, threaded rod; 115, slider; 116, slide plate; 117, limiter height bar; 118, closure cover 1; 119, wind deflector; 12, support frame; 121, filter tank; a1, limiter sleeve; a2, dust filter; a3, super dense dust filter cartridge; a4, guide Flow arc strip; 122, air inlet pipe; 123, air guide pipe; 124, closing cover 2; 125, motor; 126, snap-on disc; 127, scraping roller; c1, extrusion roller; c2, extrusion rubber strip; c3, silicone adhesive strip; c4, recessed groove; c5, filter screen; 128, filter screen plate; 129, return water pipe; 1210, atomizing plate; 1211, scraper; 13, exhaust hole. DETAILED DESCRIPTION

[0021] In order to make the technical means, creative features, objectives and effects achieved by the present invention easier to understand, the present invention is further described below in conjunction with specific implementation methods.

[0022] like Figures 1 to 7 As shown, a self-cleaning textile processing dust collector according to an embodiment of the present invention includes a filter tank 121, a filter mesh plate 128 is movably sleeved on the inner wall surface of the bottom of the filter tank 121, an air inlet pipe 122 is provided on one side surface of the filter tank 121, a limiting sleeve a1 is provided on the inner wall surface of the bottom of the filter tank 121, a motor 125 is provided on the top surface of the limiting sleeve a1, a yarn scraping roller 127 and an extrusion roller c1 are respectively provided on the output end of the motor 125, an extrusion rubber strip c2 is fixedly mounted on the outer surface of the extrusion roller c1, and a silicone adhesive strip c3 is provided on the outer surface of the yarn scraping roller 127; An indented groove c4 is provided on the outer surface of the filter screen 128, and a filter screen c5 is provided on the inner wall of the indented groove c4. The scraping roller 127 and the squeezing roller c1 are movably sleeved on both sides of the filter screen 128. The air in the room is infused into the interior of the filter tank 121 through the air inlet pipe 122, and the arc shape of the interior of the filter tank 121 is used to guide the air with the arc inner wall surface as a guide layer. As the air continues to flow in the arc shape, the yarn and dust impurities are roughly separated by the difference in weight between the two. The yarn is filtered out by the filter mesh plate 128, and the dust impurities pass through the filter mesh plate 128 through the larger holes on the surface of the filter mesh plate 128 and enter the interior of the limiting sleeve a1, thereby achieving the effect of separating and storing the dust and yarn. When the gas passes through the filter mesh plate 128, the gas will enter the interior of the sunken groove c4, and filter the yarn through the filter mesh c5 inside the sunken groove c4, and the yarn will be accumulated inside and on the inner wall surface of the sunken groove c4. At this time, the motor 125 is cooperated to rotate the yarn scraping roller 127 and the squeezing roller c1, and the yarn scraping roller 127 and the squeezing roller c1 are made to slide on the two side surfaces of the filter mesh plate 128. During the sliding process, the squeezing rubber strip c2 and the silicone adhesive strip c3 are inserted into the outer surface and inner wall surface of the sunken groove c4, and cooperate with the silicone adhesive strip c3 to adhere to the yarn inside the sunken groove c4, and the yarn is pulled out from the inside of the sunken groove c4 under the sliding of the yarn scraping roller 127. When the silicone adhesive strip c3 enters the inner part of the sunken groove c4, the surface of the silicone adhesive strip c3 is deformed under the pressure of the silicone adhesive strip c3. The deformed silicone adhesive strip c3 can increase the adhesion and contact surface between the silicone adhesive strip c3 and the yarn. At this time, the adhesion and anti-slip properties of the silicone adhesive strip c3 are used to contact and fit the yarn inside the sunken groove c4, so that the yarn adheres to the surface of the silicone adhesive strip c3. Under the continuous rotation of the yarn scraping roller 127, the silicone adhesive strip c3 is pulled back. At this time, the surface of the silicone adhesive strip c3 is squeezed at a certain inclined angle between the inner wall surface of the sunken groove c4, and under the drag of the silicone adhesive strip c3, the yarn is pulled out of the inner part of the sunken groove c4. When the silicone adhesive strip c3 enters the inner part of the sunken groove c4, the extruded rubber strip c2 on the outer surface of the extrusion roller c1 will squeeze the outer surface of the sunken groove c4. At the same time, the trapezoidal state on the surface of the extruded rubber strip c2 will be used to squeeze the protruding corners on the outer surface of the sunken groove c4, so that the sunken groove c4 is retracted under the extrusion of the extruded rubber strip c2, and the inner wall surface of the sunken groove c4 is tightly fitted on the outer surface of the silicone adhesive strip c3, so that the yarn inside the sunken groove c4 can be greatly fitted on the surface of the silicone adhesive strip c3.

[0023] like Figures 2 to 5 and Figure 7As shown, a rectangular groove is provided on the outer surface of the sunken groove c4, and convex corners are provided on the inner wall surfaces of both sides of the rectangular groove. The outer surface of the extruded rubber strip c2 is movably sleeved on the inner wall surface of the rectangular groove, and the outer surface of the silicone adhesive strip c3 is movably sleeved on the inner wall surface of the sunken groove c4. A closing cover 2 124 is provided on the top surface of the filter tank 121, and the outer surface of the motor 125 is fixedly mounted on the bottom surface of the closing cover 2 124. A clamping disk 126 is fixedly connected to the output end of the motor 125, and the bottom surface of the motor 125 is movably overlapped on the top inner wall surface of the limiting sleeve a1, and the top ends of the scraping roller 127 and the extruding roller c1 are provided on the bottom surface of the clamping disk 126. A scraper 1211 is fixedly connected to the outer surface of the output end of the motor 125, and the outer surface of the scraper 1211 is movably sleeved on the inner back surface of the limiting sleeve a1. An air guide pipe 123 is fixedly connected to the bottom surface of the filter tank 121, and a return water pipe 129 is suspended on the inner wall of the air guide pipe 123; one end of the return water pipe 129 extends to the inner wall of the limiting sleeve a1, and one end of the return water pipe 129 extending to the inner wall of the limiting sleeve a1 is fixedly connected to an atomizing plate 1210, and the position of the atomizing plate 1210 is set on the inner wall of the scraper 1211, and a support frame 12 is fixedly installed on the bottom surface of the filter tank 121, and a dust filter net a2 is provided on the outer surface of the limiting sleeve a1 and at the middle position, and a drainage arc strip a4 is provided on the outer surface of the limiting sleeve a1 and at the bottom edge position of the dust filter net a2, and an ultra-dense dust filter cartridge a3 is movably sleeved on the inner wall of the bottom of the limiting sleeve a1, and the outer surface of the ultra-dense dust filter cartridge a3 is movably sleeved on the outer surface of the return water pipe 129.

[0024] After the dust and impurities are separated and filtered from the yarn, the return water pipe 129 is used to inject clean water into the interior of the atomizing plate 1210. Under the atomization spray of the atomizing plate 1210, the water source condenses on the surface of the dust filter a2. As the humidity continues to increase, the gradually liquefied water droplets will slide downwards carrying the dust and impurities on the surface of the dust filter a2, and the water droplets and dust impurities will be collected by the ultra-dense dust filter water cylinder a3. The air guide tube 123 is used to absorb the gas inside the limiting sleeve a1. Under the traction of the airflow, the water source inside the ultra-dense dust filter water cylinder a3 permeates through the ultra-dense dust filter water cylinder a3 and is discharged, while the impurities and dust are left inside the ultra-dense dust filter water cylinder a3. With the absorption of the gas, the gas inside the filter tank 121 will continue to enter the interior of the limiting sleeve a1, which can greatly reduce the effect of dust, impurities and water vapor inside the limiting sleeve a1 penetrating through the dust filter net a2.

[0025] like Figure 1 To Iron Chair 2 and Figure 8As shown, a civilian indoor air purifier 11 is fixedly installed on the outer surface of the support frame 12, an exhaust hole 13 is provided on one side surface of the civilian indoor air purifier 11, a snap-in window 111 is fixedly installed on the other side surface of the civilian indoor air purifier 11, a closing cover 118 is provided on the top surface of the civilian indoor air purifier 11, a wind shield 119 is provided on the top surface of the closing cover 118, an air vent 112 is provided on one side surface of the snap-in window 111, and a limited height-limiting hanging strip 117 is provided on the upper and lower inner wall surfaces of the snap-in window 111 and on one side edge position of the air vent 112, an electric motor 113 is fixedly installed on the upper and lower inner wall surfaces of the snap-in window 111, a threaded rod 114 is fixedly connected to the output end of the electric motor 113, a slider 115 is threadedly movably sleeved on the outer surface of the threaded rod 114, a slide plate 116 is fixedly connected to the outer surface of the slide plate 115, and the position of the slide plate 116 is set on the inner wall surface of the air vent 112.

[0026] Cooperate with the electric motor 113 to rotate the limit height bar 117, and make the slider 115 slide on the outer surface of the limit height bar 117, and make the slide plate 116 move away from the outer surface of the air vent 112, so that the air vent 112 is in a ventilation state. When the air purification is stopped subsequently, the slide plate 116 is reclosed at the entrance of the air vent 112, so that the interior of the civilian indoor air purifier 11 is in a sealed state, which can greatly avoid the dust inside the civilian indoor air purifier 11 and the effect of spinning back through the air vent 112.

[0027] Working principle: The indoor gas is infused into the interior of the filter tank 121 through the air inlet pipe 122, and the arc shape inside the filter tank 121 is used to guide the gas with the arc inner wall surface as the guide layer. As the gas continues to flow in the arc shape, the yarn and dust impurities are roughly separated by the weight difference between the two. The yarn is filtered through the filter mesh plate 128, and the dust impurities pass through the filter mesh plate 128 through the larger holes on the surface of the filter mesh plate 128 to enter the interior of the limiting sleeve a1, thereby separating and storing the dust and yarn. When the gas passes through the filter mesh plate 128, the gas will enter the interior of the sunken groove c4, and filter the yarn through the filter mesh c5 inside the sunken groove c4, and the yarn will be accumulated inside and on the inner wall surface of the sunken groove c4. At this time, the motor 125 is cooperated to rotate the yarn scraping roller 127 and the squeezing roller c1, and the yarn scraping roller 127 and the squeezing roller c1 are made to slide on the two side surfaces of the filter mesh plate 128. During the sliding process, the squeezing rubber strip c2 and the silicone adhesive strip c3 are inserted into the outer surface and inner wall surface of the sunken groove c4, and cooperate with the silicone adhesive strip c3 to adhere to the yarn inside the sunken groove c4, and the yarn is pulled out from the inside of the sunken groove c4 under the sliding of the yarn scraping roller 127. When the silicone adhesive strip c3 enters the inner part of the sunken groove c4, the surface of the silicone adhesive strip c3 is deformed under the pressure of the silicone adhesive strip c3. The deformed silicone adhesive strip c3 can increase the adhesion and contact surface between the silicone adhesive strip c3 and the yarn. At this time, the adhesion and anti-slip properties of the silicone adhesive strip c3 are used to contact and fit the yarn inside the sunken groove c4, so that the yarn adheres to the surface of the silicone adhesive strip c3. Under the continuous rotation of the yarn scraping roller 127, the silicone adhesive strip c3 is pulled back. At this time, the surface of the silicone adhesive strip c3 is squeezed at a certain inclined angle between the inner wall surface of the sunken groove c4, and under the drag of the silicone adhesive strip c3, the yarn is pulled out of the inner part of the sunken groove c4. When the silicone adhesive strip c3 enters the inner part of the sunken groove c4, the extruded rubber strip c2 on the outer surface of the extrusion roller c1 squeezes the outer surface of the sunken groove c4. At the same time, the trapezoidal shape of the extruded rubber strip c2 is used to squeeze the protruding corners on the outer surface of the sunken groove c4, so that the sunken groove c4 shrinks under the extrusion of the extruded rubber strip c2, and the inner wall surface of the sunken groove c4 is tightly attached to the outer surface of the silicone adhesive strip c3, so that the yarn inside the sunken groove c4 can be greatly attached to the surface of the silicone adhesive strip c3. After the dust and impurities are separated and filtered from the yarn, the return water pipe 129 is used to inject clean water into the interior of the atomizing plate 1210. Under the atomization spray of the atomizing plate 1210, the water source condenses on the surface of the dust filter a2. As the humidity continues to increase, the gradually liquefied water droplets will slide downwards carrying the dust and impurities on the surface of the dust filter a2, and the water droplets and dust impurities will be collected by the ultra-dense dust filter water cylinder a3. The air guide tube 123 is used to absorb the gas inside the limiting sleeve a1. Under the traction of the airflow, the water source inside the ultra-dense dust filter water cylinder a3 permeates through the ultra-dense dust filter water cylinder a3 and is discharged, while the impurities and dust are left inside the ultra-dense dust filter water cylinder a3. With the absorption of the gas, the gas inside the filter tank 121 will continue to enter the interior of the limiting sleeve a1, which can greatly reduce the effect of dust, impurities and water vapor inside the limiting sleeve a1 penetrating through the dust filter net a2.

[0028] The basic principles, main features, and advantages of the present invention are shown and described above. Those skilled in the art should understand that the present invention is not limited to the foregoing embodiments. The foregoing embodiments and descriptions are merely illustrative of the principles of the present invention. Various changes and modifications may be made to the present invention without departing from the spirit and scope of the present invention. Such changes and modifications are intended to fall within the scope of the present invention. The scope of protection claimed in the present invention is defined by the appended claims and their equivalents.

Claims

1. A self-cleaning textile processing dust collector, comprising a filter tank (121), characterized in that: A filter screen (128) is movably sleeved on the inner wall surface of the bottom of the filter tank (121), an air inlet pipe (122) is provided on one side surface of the filter tank (121), a limiting sleeve (a1) is provided on the inner wall surface of the bottom of the filter tank (121), a motor (125) is provided on the top surface of the limiting sleeve (a1), a scraping roller (127) and an extrusion roller (c1) are provided on the output end of the motor (125), an extrusion rubber strip (c2) is fixedly mounted on the outer surface of the extrusion roller (c1), and a silicone adhesive strip (c3) is provided on the outer surface of the scraping roller (127); An indented groove (c4) is provided on the outer surface of the filter mesh plate (128), a filter mesh (c5) is provided on the inner wall surface of the indented groove (c4), and the scraping roller (127) and the squeezing roller (c1) are movably sleeved on both side surfaces of the filter mesh plate (128).

2. A self-cleaning textile processing dust collector according to claim 1, characterized in that: A rectangular groove is provided on the outer surface of the indented groove (c4), and convex corners are provided on the inner wall surfaces on both sides of the rectangular groove.

3. The self-cleaning textile processing dust collector according to claim 2, characterized in that: The outer surface of the extruded rubber strip (c2) is movably sleeved on the inner wall surface of the rectangular groove, and the outer surface of the silicone adhesive strip (c3) is movably sleeved on the inner wall surface of the sunken groove (c4).

4. A self-cleaning textile processing dust collector according to claim 3, characterized in that: A second closing cover (124) is provided on the top surface of the filter tank (121), the outer surface of the motor (125) is fixedly mounted on the bottom surface of the second closing cover (124), a clamping disk (126) is fixedly connected to the output end of the motor (125), the bottom surface of the motor (125) is movably overlapped on the top inner wall surface of the limiting sleeve (a1), and the top ends of the scraping roller (127) and the squeezing roller (c1) are provided on the bottom surface of the clamping disk (126).

5. The self-cleaning textile processing dust collector according to claim 4, characterized in that: A scraper (1211) is fixedly connected to the outer surface of the output end of the motor (125), and the outer surface of the scraper (1211) is movably sleeved on the inner back surface of the limiting sleeve (a1). An air guide pipe (123) is fixedly connected to the bottom surface of the filter tank (121), and a return water pipe (129) is suspended and supported on the inner wall surface of the air guide pipe (123).

6. The self-cleaning textile processing dust collector according to claim 5, characterized in that: One end of the return water pipe (129) extends to the inner wall surface of the limiting sleeve (a1), and one end of the return water pipe (129) extending to the inner wall surface of the limiting sleeve (a1) is fixedly connected to an atomizing plate (1210), and the atomizing plate (1210) is positioned on the inner wall surface of the scraper (1211). A support frame (12) is fixedly mounted on the bottom surface of the filter tank (121).

7. The self-cleaning textile processing dust collector according to claim 6, characterized in that: A dust filter (a2) is provided on the outer surface of the limiting sleeve (a1) and at a middle position, a drainage arc strip (a4) is provided on the outer surface of the limiting sleeve (a1) and at a bottom edge position of the dust filter (a2), an ultra-dense dust filter cartridge (a3) ​​is movably sleeved on the inner wall surface of the bottom of the limiting sleeve (a1), and the outer surface of the ultra-dense dust filter cartridge (a3) ​​is movably sleeved on the outer surface of the return water pipe (129).

8. The self-cleaning textile processing dust collector according to claim 7, characterized in that: A civilian indoor air purifier (11) is fixedly mounted on the outer surface of the support frame (12), an exhaust hole (13) is provided on one side surface of the civilian indoor air purifier (11), a snap-on window (111) is fixedly mounted on the other side surface of the civilian indoor air purifier (11), a closing cover (118) is provided on the top surface of the civilian indoor air purifier (11), and a windshield (119) is provided on the top surface of the closing cover (118).

9. The self-cleaning textile processing dust collector according to claim 8, characterized in that: A vent (112) is provided on one side surface of the snap-fit ​​window (111), and a limited height-lifting strip (117) is provided on the upper and lower inner wall surfaces of the snap-fit ​​window (111) and at an edge position on one side of the vent (112). An electric motor (113) is fixedly mounted on the upper and lower inner wall surfaces of the snap-fit ​​window (111).

10. The self-cleaning textile processing dust collector according to claim 9, characterized in that: A threaded rod (114) is fixedly connected to the output end of the electric motor (113); a slider (115) is threadedly movably sleeved on the outer surface of the threaded rod (114); a slide plate (116) is fixedly connected to the outer surface of the slide plate (115); and the slide plate (116) is positioned on the inner wall surface of the air vent (112).

Citation Information

Patent Citations

  • Textile workshop dust removal device

    CN118341192A