Dust removal equipment for textile production workshop
The dust removal equipment, which combines spray and ventilation components, solves the problem of dust being difficult to remove during textile processing, effectively reducing dust in the air, protecting worker health, and extending equipment life.
Patent Information
- Application Number
- CN202422450901.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-10
- Publication Date
- 2025-11-07
- Estimated Expiration
- 2034-10-10
AI Technical Summary
Dust generated during the processing of existing textile equipment is difficult to clean effectively, affecting worker health and equipment lifespan.
The dust removal equipment, which combines a spray component and a ventilation component, sprays atomized liquid that combines with dust in the air and causes it to fall. The airflow is used to accelerate the removal of dust and directly absorb the dust generated by textile equipment.
It effectively reduces the amount of dust in the air, protects worker health, and extends equipment life.
Smart Images

Figure CN223517201U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to textile processing technical field, specifically, relate to a dust removal equipment of textile production workshop. BACKGROUND
[0002] Textile refers to the multi-scale structure processing technology of fiber or fiber aggregate, that is, the processing and manufacturing of three materials of wool, hemp and cotton into daily use fabric. However, the existing textile technology will produce a large amount of dust when processing into fabric, and a large amount of dust inhaled by people will greatly harm human health. Secondly, the dust in the air for a long time will cause the dust to enter the textile processing equipment, thereby causing damage to the equipment. Therefore, the content of dust in the air needs to be reduced during the textile process.
[0003] The existing dust prevention is usually through air flow, that is, a fan is added at the textile production line, the indoor air flow is driven by the rotation of the fan, so as to blow the indoor air to the outdoor, and the outdoor air is brought into the indoor, so as to reduce the content of dust in the air. However, due to the obstruction of artificial or processing equipment, the dust generated during the textile process cannot be well blown to the outdoor. Secondly, an air extractor can also be used, so that the dust is cleaned by the air extractor when it is manufactured. However, dust will continue to be generated during textile processing, and the air extractor cannot well absorb the dust.
[0004] For example, the patent document CN212582065U discloses a dust cover for textile equipment, which comprises a base, the base is a hollow structure, a textile machine working frame is fixedly installed on the top of the base, a first machine cover is slidably installed on the inner wall of the top of the base, a first fan is rotatably installed in the first machine cover, a first bevel gear is fixedly installed on the driving shaft of the first fan, a second bevel gear is engaged with the first bevel gear, a square rod is fixedly installed on the second bevel gear, an electric motor is fixedly installed on one side of the textile machine working frame, one end of a rotating shaft is fixedly installed on the output shaft of the electric motor, two third bevel gears are fixedly installed on the rotating shaft, a fourth bevel gear is engaged with the two third bevel gears, two second machine covers are fixedly installed on one side of the textile machine working frame, a second fan is rotatably installed in each of the two second machine covers, the driving shaft of the second fan is fixedly connected with the fourth bevel gear, a fifth bevel gear is fixedly installed on the rotating shaft, a sixth bevel gear is engaged with the fifth bevel gear, a square slot rotating rod is fixedly installed on the sixth bevel gear, the square slot rotating rod is slidably connected with the square rod, a rotating disc is fixedly installed on the other end of the rotating shaft, an L-shaped rod is slidably installed on the rotating disc, and the L-shaped rod is fixedly connected with the first machine cover. It absorbs the dust outside the textile machine working frame by the first fan to reduce the dust. However, due to the relatively wide indoor space, the pressure change at the suction port of the fan is not large, so the amount of dust sucked is also small, and the dust content in the air cannot be efficiently reduced.
[0005] Therefore, there is still a need for a device to clean the dust generated during the operation of textile equipment to better protect workers and production equipment. Invention content
[0006] Therefore, in order to solve the problem of dust generated during the operation of textile equipment, the utility model provides a dust removal equipment for textile production workshop, and the specific technical scheme is as follows:
[0007] A dust removal equipment for textile production workshop, comprising:
[0008] A treatment box is provided with a first opening and a second opening at the top, and a third opening is provided at the side;
[0009] A first mechanism comprising a spraying assembly and a first guide, the first guide is arranged at the first opening, and the spraying assembly is arranged inside the treatment box; the blowing end of the spraying assembly corresponds to the first opening, and is used for spraying atomized liquid through the first guide;
[0010] A second mechanism comprising an air exchange assembly and a second guide, the second guide is arranged at the second opening, and the air exchange assembly is arranged inside the treatment box, and the air exchange assembly is used for blowing air through the third opening and the second opening in sequence.
[0011] Further, the first guide is hollow, comprising a first upper opening and a first lower opening, the first lower opening corresponds to the first opening, and the side of the first lower opening of the first guide is provided with a ventilation opening.
[0012] Further, the inner diameter of the first upper opening is larger than that of the first lower opening.
[0013] Further, the spraying assembly comprises:
[0014] A first blowing part is arranged inside the first guide, and is closer to the first upper opening relative to the ventilation opening, and the blowing direction of the first blowing part is towards the first upper opening;
[0015] A plurality of first atomizers are uniformly arranged on the inner side of the first guide, and are located at the first blowing part;
[0016] A liquid storage tank is arranged inside the processing tank and is provided with a first liquid inlet, a first spray pipeline and a first liquid outlet. The first liquid inlet is arranged at the top of the liquid storage tank and is used to inject liquid into the liquid storage tank. The first spray pipeline is used to connect the inside of the liquid storage tank and the plurality of first atomizers. The first liquid outlet is arranged at the bottom of the liquid storage tank and is used to discharge the liquid in the inside of the liquid storage tank.
[0017] Further, the second guide includes a second upper opening and a second lower opening, and is arranged in a hollow manner. The second lower opening corresponds to the second through opening. The second guide is arranged in an inclined manner relative to the first guide.
[0018] The air exchange assembly includes an air exchange tank, a second air blowing member and a third air blowing member. Two side openings of the air exchange tank are arranged and correspond to the second through opening and the third through opening, respectively.
[0019] The second air blowing member is arranged inside the second guide. The air blowing direction of the second air blowing member is towards the second upper opening.
[0020] The third air blowing member is arranged at the side of the processing tank and corresponds to the third through opening. The air blowing direction of the third air blowing member is towards the inside of the air exchange tank.
[0021] Further, the side of the air exchange tank is also provided with a switching opening and a second liquid outlet. The second mechanism further includes:
[0022] A filter is inserted into the inside of the air exchange tank through the switching opening.
[0023] A second atomizer is arranged on the inner side wall of the air exchange tank and is away from the second through opening and the switching opening.
[0024] A second spray pipeline is connected to the inside of the liquid storage tank at one end and is connected to the spray assembly at the other end.
[0025] A liquid accumulation tank is arranged inside the processing tank. The liquid accumulation tank is provided with a second liquid inlet and a third liquid outlet. The second liquid inlet is connected to the second liquid outlet and is used to discharge the liquid in the air exchange tank into the liquid accumulation tank. The third liquid outlet is used to discharge the liquid in the liquid accumulation tank.
[0026] Further, the second mechanism, the second through opening and the third through opening are provided with a plurality of each. Each of the second mechanism corresponds to the second through opening and the third through opening.
[0027] Furthermore, the dustproof device also includes a mounting plate, which is disposed at the bottom of the processing tank. The mounting plate has a first groove and a second groove, the first groove being used to fix the liquid storage tank and the second groove being used to fix the liquid accumulation tank.
[0028] Furthermore, the bottom of the processing box is provided with multiple casters and driving components, each of the driving components is connected to one of the casters, and the driving component is used to drive the caster to rotate.
[0029] Furthermore, the dustproof equipment also includes a cleaning assembly, which includes a first rotating component and a cleaning component. One end of the first rotating component is fixed to the bottom of the processing box, and the other end is movably connected to the cleaning component. The cleaning surface of the cleaning component is at the same level as the caster.
[0030] The beneficial effects of this solution are as follows: the first mechanism blows atomized liquid into the room, which combines with dust in the air, causing the dust to fall to the ground, thus reducing the amount of dust in the air. Furthermore, the ventilation system accelerates indoor air circulation, further reducing the amount of dust. Additionally, because the third inlet is located on both sides of the treatment box, it can directly absorb dust generated by the textile equipment, reducing the amount of dust around the equipment and thus cleaning up dust at its source. Attached Figure Description
[0031] Figure 1 This is a schematic diagram of the structure of a dust removal device in a textile production workshop according to an embodiment of the present invention;
[0032] Figure 2 This is a schematic diagram of the structure of a dust removal device in a textile production workshop according to an embodiment of the present invention from another perspective;
[0033] Figure 3 This is a schematic diagram of the structure of a dust removal device in a textile production workshop according to an embodiment of the present invention from another perspective;
[0034] Figure 4 This is a cross-sectional structural schematic diagram of an air exchange box according to an embodiment of the present utility model;
[0035] Figure 5 This is a schematic diagram of the cleaning component according to an embodiment of the present invention.
[0036] Explanation of reference numerals in the attached figures:
[0037] 1, processing box; 11, first port; 12, second port; 13, third port; 2, first mechanism; 21, spray assembly; 211, first blowing piece; 212, first atomizer; 213, liquid storage tank; 2131, first liquid inlet; 2132, first liquid outlet; 22, first guide; 221, first upper opening; 222, first lower opening; 223, ventilation port; 3, second mechanism; 31, air exchange assembly; 311, air exchange box; 3111, switching port; 3112, second liquid outlet; 312, second blowing piece; 313, third blowing piece; 32, second guide; 321, second upper opening; 322, second lower opening; 33, filter; 34, second atomizer; 35, second spray pipeline; 36, liquid accumulation tank; 361, second liquid inlet; 362, third liquid outlet; 4, mounting plate; 5, caster; 6, driving piece; 7, cleaning assembly; 71, first rotating piece; 72, cleaning piece. DETAILED DESCRIPTION
[0038] In order to make the purpose, technical scheme and advantages of the utility model more clearly, the following will be further described in detail in combination with the embodiments of the utility model. It should be understood that the specific embodiments described herein are only used to explain the utility model, and do not limit the protection scope of the utility model.
[0039] It should be noted that when an element is referred to as being "fixed" to another element, it can be directly on the other element or there can be intervening elements. When an element is referred to as being "connected" to another element, it can be directly connected to the other element or intervening elements can be present. As used herein the terms "vertical", "horizontal", "left", "right", and the like are used for explanation only and are not intended to limit the present utility model.
[0040] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which the utility model belongs. The terminology used in the description of the utility model herein is for the purpose of describing particular embodiments only and is not intended to be limiting of the utility model. As used herein, the term "and / or" includes any and all combinations of one or more of the associated listed items.
[0041] In the utility model, "first", "second" do not represent the specific number and order, just for the name of the distinction.
[0042] A dust removal equipment for a textile production workshop, comprising:
[0043] A processing box 1 is provided with a first port 11 and a second port 12 at the top, and a third port 13 is arranged on the side;
[0044] The first mechanism 2 comprises a spraying assembly 21 and a first guide 22, the first guide 22 is arranged at the first opening 11, and the spraying assembly 21 is arranged inside the processing box 1, the blowing end of the spraying assembly 21 corresponds to the first opening 11, and the spraying assembly 21 is used for spraying atomized liquid through the first guide 22;
[0045] The second mechanism 3 comprises an air exchange assembly 31 and a second guide 32, the second guide 32 is arranged at the second opening 12, and the air exchange assembly 31 is arranged inside the processing box 1, and the air exchange assembly 31 is used for sequentially blowing through the third opening 13 and the second opening 12.
[0046] In some embodiments, the spraying assembly 21 converts liquid into atomized liquid, and then sprays the atomized liquid, so that a large amount of atomized liquid is dispersed in the room. The atomized liquid can combine with dust in the air and fall to the ground, thereby reducing the dust content in the air to achieve the purpose of dust prevention.
[0047] The first guide 22 can ensure that the atomized liquid sprayed by the spraying assembly 21 is directed to the upper space of the room.
[0048] The air exchange assembly 31 can accelerate the air flow in the room by sucking air in the room from the third opening 13 and then discharging the air from the second opening 12. The accelerated air flow in the room will result in a wider range of atomized liquid dispersion, and the movement speed of dust in the air will also accelerate with the accelerated air flow, so that the dust in the air combines with the atomized liquid more quickly. In addition, the second guide 32 guides the air exchange assembly 31 to blow air to the upper space of the room, so that the atomized liquid is diffused in a wider range.
[0049] Specifically, since the first opening 11 and the second opening 12 are arranged at the top of the processing box 1, the first guide 22 and the second guide 32 are arranged on the tabletop of the processing box 1. When the spraying assembly 21 sprays atomized liquid through the guidance of the first guide 22, the atomized liquid will move to the upper space of the room under the action of the wind force. At this time, the air exchange assembly 31 blows air to the upper space of the room through the guidance of the second guide 32, so that the atomized liquid falls again and is blown to the upper space of the room, and diffuses in the upper space of the room. Since the third opening 13 is arranged on the side of the processing box 1, that is, the third opening 13 is aligned with the textile equipment, when the textile equipment generates dust, the dust will be directly sucked into the processing box 1 through the third opening 13 by the air exchange assembly 31 and then discharged through the second opening 12.
[0050] As shown in FIG. 1, Figure 1 ˉ Figure 5 In some embodiments, the first guide 22 is hollow, comprising a first upper opening 221 and a first lower opening 222, the first lower opening 222 corresponds to the first opening 11, and the side of the first lower opening 222 of the first guide 22 is provided with a vent 223.
[0051] In one of the embodiments, since the spraying assembly 21 comprises a fan, in order to make the fan better cut the air to generate wind, a vent 223 is formed at the bottom of the first guide 22, so that the air enters the first guide 22 from the vent 223.
[0052] As shown in the drawings, in some of the embodiments, the inner diameter of the first upper opening 221 is greater than the inner diameter of the first lower opening 222. Figure 1 ˉ Figure 5 As shown in the drawings, in some of the embodiments, the inner diameter of the first upper opening 221 is greater than the inner diameter of the first lower opening 222.
[0053] In one of the embodiments, since it is needed to diffuse the atomized liquid in the air above the room, so that the atomized liquid is spread in a wider range, the first guide 22 is arranged in an inverted circular table type, when the atomized liquid is blown out of the first guide 22, its range will continue to move along the inclined surface of the first guide 22, that is, the movement range of the atomized liquid is enlarged.
[0054] As shown in the drawings, in some of the embodiments, the spraying assembly 21 comprises: Figure 1 ˉ Figure 5 As shown in the drawings, in some of the embodiments, the spraying assembly 21 comprises:
[0055] A first blowing member 211, which is arranged inside the first guide 22 and is closer to the first upper opening 221 relative to the vent 223, and the blowing direction of the first blowing member 211 is towards the first upper opening 221;
[0056] A plurality of first atomizers 212, which are uniformly arranged at the inner circumferential side of the first guide 22 and are located at the first blowing member 211;
[0057] A liquid storage tank 213, which is arranged inside the treatment tank 1 and is provided with a first liquid inlet 2131, a first spraying pipeline and a first liquid outlet 2132, the first liquid inlet 2131 is arranged at the top of the liquid storage tank 213 and is used for injecting liquid into the liquid storage tank 213; the first spraying pipeline is used for connecting the inside of the liquid storage tank 213 and the plurality of first atomizers 212; and the first liquid outlet 2132 is arranged at the bottom of the liquid storage tank 213 and is used for discharging the liquid in the inside of the liquid storage tank 213.
[0058] In one of the embodiments, since the bottom of the first guide 22 is provided with the vent 223, when the first blowing member 211 blows, the air will enter the first guide 22 from the vent 223 and be cut by the first blowing member 211, so as to form the airflow blowing out of the end of the first upper opening 221 of the first guide 22. And the first atomizers 212 can spray the atomized liquid, which is blown to the air above the room by the first blowing member 211.
[0059] The liquid storage tank 213 is fixedly installed inside the processing tank 1. The first spray pipe is hidden in the inner wall of the liquid storage tank 213. The two ends of the first spray pipe are connected to the first atomizer 212 and the inside of the liquid storage tank 213, respectively, so as to transfer the liquid stored in the liquid storage tank 213 to the first atomizer 212.
[0060] The first outlet 2132 is normally closed. However, in special circumstances, the liquid in the first outlet 2132 can be diverted to the outside of the storage tank 213. For example, if the liquid in the storage tank 213 becomes cloudy after a long period of disuse, the liquid in the storage tank 213 needs to be drained, and liquid needs to be injected through the first inlet 2131. Repeating this process of injecting and draining liquid into the storage tank 213 multiple times will achieve the purpose of cleaning the storage tank 213.
[0061] like Figure 1 ˉ Figure 5 As shown, in some embodiments, the second guide 32 includes a second upper opening 321 and a second lower opening 322, and is hollow. The second lower opening 322 corresponds to the second through opening 12, and the second guide 32 is inclined relative to the first guide 22.
[0062] The air exchange assembly 31 includes an air exchange box 311, a second air blower 312 and a third air blower 313. The air exchange box 311 has openings on two adjacent sides, which are respectively connected to the second port 12 and the third port 13.
[0063] The second blower 312 is disposed inside the second guide 32, and the air blower 312 blows towards the second upper opening 321;
[0064] The third air blower 313 is located on the periphery of the processing box 1, corresponding to the third port 13, and the air blowing direction of the third air blower 313 is towards the inside of the air exchange box 311.
[0065] In one embodiment, the second blower 312 is disposed in the second guide 32, and the third blower 313 is disposed at the third opening 13. The third blower 313 draws air from the third opening 13 and discharges it into the air exchange box 311. The second blower 312 then blows the air along the second guide 32 toward the upper part of the room, thereby accelerating the air flow.
[0066] Furthermore, the second guide 32 is inclined away from the first guide 22, and the blowing direction of the inclined second guide 32 will also be inclined to the blowing direction of the first guide 22. When the first guide 22 blows the atomized liquid into the indoor air, the blowing of the second guide 32 can make the diffusion range of the atomized liquid wider.
[0067] The two ends of the air exchange box 311 are communicated with the second through port 12 and the third through port 13 respectively, so that the air flows in the air exchange box 311. Since the air enters from the third through port 13, and the third through port 13 is arranged on the side of the treatment box 1, i.e. the third through port 13 faces the textile equipment, at this time a large amount of dust will enter the air exchange box 311 through the third through port 13. If the air exchange box 311 is not arranged, the dust will be spread in the treatment box 1.
[0068] The inner diameter of the first guide 22 is greater than the inner diameter of the second guide 32. Since the second guide 32 mainly functions to accelerate the air flow speed in the acceleration chamber, and secondarily to increase the diffusion range of the atomized liquid, the greater the inner diameter of the first guide 22, the more atomized liquid is sprayed. Therefore, in order to save the space use efficiency of the table top of the treatment box 1, the inner diameter and the outer diameter of the second guide 32 are smaller than the inner diameter and the outer diameter of the first guide 22.
[0069] As shown in FIG. 1, in some embodiments, the side of the air exchange box 311 is also provided with a switching port 3111 and a second liquid outlet 3112. Figure 1 ˉ Figure 5 As shown in FIG. 1, in some embodiments, the side of the air exchange box 311 is also provided with a switching port 3111 and a second liquid outlet 3112.
[0070] The filter 33 is inserted into the inside of the air exchange box 311 through the switching port 3111.
[0071] The second atomizer 34 is arranged on the inner side wall of the air exchange box 311 away from the second through port 12 and the switching port 3111.
[0072] The second spray pipeline 35 is communicated with the inside of the liquid storage tank 213 at one end, and is connected with the spray assembly 21 at the other end.
[0073] The liquid accumulation tank 36 is arranged in the treatment box 1, and the liquid accumulation tank 36 is provided with a second liquid inlet 361 and a third liquid outlet 362. The second liquid inlet 361 is communicated with the second liquid outlet 3112, and is used to discharge the liquid in the air exchange box 311 into the liquid accumulation tank 36. The third liquid outlet 362 is used to discharge the liquid in the liquid accumulation tank 36. In one embodiment, the filter 33 is inserted into the inside of the air exchange box 311 through the switching port 3111, so as to filter the dust in the air extracted by the third air blowing piece 313.
[0074] In one embodiment, the two ends of the filter 33 are slidingly connected with the two ends of the switching port 3111, and the contact surface between the filter 33 and the switching port 3111 is provided with a sealing strip, so as to prevent the air in the air exchange box 311 from escaping from the switching port 3111. The second atomizer 34 sprays the atomized liquid towards the inside of the air exchange box 311, so as to combine with the dust in the air extracted by the third air blowing piece 313.
[0075] The third blower 313 draws air from the third port 13 into the air exchange box 311. The second atomizer 34 sprays atomized liquid, which combines with dust in the air. Some of the atomized liquid combined with dust adheres to the inner wall of the air exchange box 311. As the second atomizer 34 continues to spray atomized liquid, some of the atomized liquid combined with dust will collect into droplets, which then flow into the collection tank 36 through the second liquid outlet 3112. The remaining atomized liquid combined with dust passes through the filter 33 and is blown into the upper part of the room by the second blower 312. Since the filter 33 filters both the atomized liquid and dust, the air blown out by the second blower 312 does not contain dust, thus reducing the dust content in the room.
[0076] The second spray pipe 35 is used to connect the liquid storage tank 213 and the second atomizer 34, meaning that both the second atomizing liquid and the first atomizer 212 are supplied with liquid by the liquid storage tank 213.
[0077] The second liquid outlet 3112 is located at the bottom of the air exchange box 311, and the third liquid outlet 362 is located at the top of the liquid collection tank 36, with the second liquid outlet 3112 and the third liquid outlet 362 corresponding vertically. This allows liquid droplets in the air exchange box 311 to flow directly into the liquid collection tank 36.
[0078] The second atomizer 34 is positioned below the switching port 3111, meaning it is closer to the bottom of the air exchange box 311 than the switching port 3111. Therefore, the air drawn in by the third blower 313 first comes into contact with the atomizing liquid and then passes through the filter 33, ensuring that the air blown out by the second blower 312 is dry and clean. Since the second guide 32 is inclined relative to the first guide 22, the second blower 312 blows air towards the oblique side of the processing box 1. The oblique side of the processing box 1 is where textile equipment and personnel are located, thus ensuring that the textile equipment accumulates less dust (dust falling onto the textile equipment is blown back into the indoor air by the second blower 312).
[0079] like Figure 1 ˉ Figure 5 As shown, in some embodiments, there are multiple second mechanisms 3, second ports 12 and third ports 13, with each second mechanism 3 corresponding to a second port 12 and a third port 13.
[0080] In one embodiment, the second mechanism 3 is provided with multiple mechanisms to accelerate indoor airflow, thereby improving dust removal.
[0081] like Figure 1 ˉ Figure 5 As shown, in some embodiments, a mounting plate 4 is also included. The mounting plate 4 is disposed at the bottom of the processing tank 1. The mounting plate 4 has a first groove and a second groove. The first groove is used to fix the liquid storage tank 213, and the second groove is used to fix the liquid accumulation tank 36.
[0082] In one embodiment, the mounting plate 4 is mainly used to fix the liquid storage tank 213 and the liquid accumulation tank 36, so that the treatment tank 1 will not shake during movement.
[0083] like Figure 1 ˉ Figure 5 As shown, in some embodiments, the bottom of the processing box 1 is provided with a plurality of casters 5 and a drive member 6, each drive member 6 being connected to a caster 5 and the drive member 6 being used to drive the caster 5 to rotate.
[0084] In one embodiment, the caster 5 has anti-slip textures on its surface to prevent slippage caused by droplets of atomized liquid accumulating on the ground. The drive unit 6 can then move the caster 5 between the two textile devices.
[0085] like Figure 1 ˉ Figure 5 As shown, in some embodiments, a cleaning assembly 7 is also included. The cleaning assembly 7 includes a first rotating member 71 and a cleaning member 72. One end of the first rotating member 71 is fixed to the bottom of the processing box 1, and the other end is movably connected to the cleaning member 72. The cleaning surface of the cleaning member 72 is at the same level as the caster 5.
[0086] In one embodiment, the first rotating member 71 can drive the cleaning member 72 to rotate. Specifically, the first rotating member 71 is equipped with a motor, and the driving end of the motor is connected to the cleaning member 72, thereby driving the cleaning member 72 to rotate.
[0087] The treatment box 1 can move under the drive of the drive unit 6. When the treatment box 1 turns, the sweeping unit 72 also rotates, thereby ensuring that the sweeping unit 72 can better clean the ground.
[0088] For example, when the processing box 1 moves between two textile machines, the dust on the ground will be gradually swept away by the cleaning component 72 and accumulate on one side of the cleaning component 72. When the processing box 1 turns, the dust will fall off from both sides of the cleaning component 72. Therefore, when the processing box 1 turns, the cleaning component 72 also rotates relative to it, causing the dust to concentrate in the middle of the cleaning component 72.
[0089] The technical features of the above embodiments can be combined in any way. For the sake of brevity, not all possible combinations of the technical features in the above embodiments are described. However, as long as there is no contradiction in the combination of these technical features, they should be considered to be within the scope of this specification.
[0090] The above embodiments only express several implementation manners of the utility model, the description is more specific and detailed, but can not therefore be understood as the limitation of the utility model patent range. It should be pointed out that for ordinary skilled person in the art, without departing from the utility model concept, several modifications and improvements can be made, which belong to the protection range of the utility model. Therefore, the protection range of the utility model patent should be subject to the appended claims.
Claims
1. A dust removal apparatus for a textile production plant, characterized in that, The utility model relates to a processing box, top is provided with first through mouth and second through mouth, and the side is provided with third through mouth; First mechanism, including spray subassembly and first guide, first guide is arranged at first through mouth, spray subassembly is arranged inside processing box, and the blowing end of spray subassembly corresponds with first through mouth, is used for spraying atomized liquid through first guide; Second mechanism, including air exchange subassembly and second guide, second guide is arranged at second through mouth, air exchange subassembly is arranged inside processing box, and air exchange subassembly is used to blow air to pass through third through mouth and second through mouth in turn. The first guide is hollowly arranged, including first upper opening and first lower opening, the first lower opening corresponds with the first through mouth, and the side of the first lower opening of the first guide is provided with a ventilation opening.
2. A textile production plant dedusting apparatus according to claim 1, characterized in that, The inner diameter of the first upper opening is larger than the inner diameter of the first lower opening.
3. A textile production plant dedusting apparatus according to claim 2, characterised in that, The spray subassembly includes:
4. The textile production plant dedusting apparatus according to claim 2, characterized in that, First blowing part, the first blowing part is arranged inside the first guide, and is closer to the first upper opening relative to the ventilation opening, and the blowing direction of the first blowing part is towards the first upper opening; A plurality of first atomizers are uniformly arranged on the inner side of the first guide and located at the first blowing part; A liquid storage tank is arranged inside the processing box and is provided with a first liquid inlet, a first spray pipeline, and a first liquid outlet. The first liquid inlet is arranged on the top side of the liquid storage tank and is used for injecting liquid into the liquid storage tank. The first spray pipeline is used to connect the inside of the liquid storage tank and the plurality of first atomizers. The first liquid outlet is arranged on the bottom side of the liquid storage tank and is used to discharge liquid inside the liquid storage tank. The second guide includes a second upper opening and a second lower opening, and is hollowly arranged. The second lower opening corresponds with the second through mouth, and the second guide is arranged obliquely relative to the first guide.
5. A textile production plant dedusting apparatus according to claim 4, characterized in that, The air exchange subassembly includes an air exchange tank, a second blowing part, and a third blowing part. The two side openings of the air exchange tank are arranged to communicate with the second through mouth and the third through mouth, respectively. The second blowing part is arranged inside the second guide, and the blowing direction of the second blowing part is towards the second upper opening. The third blowing part is arranged on the side of the processing box and corresponds with the third through mouth. The blowing direction of the third blowing part is towards the inside of the air exchange tank. The side of the air exchange tank is also provided with a switching opening and a second liquid outlet. The second mechanism further includes:
6. A textile production plant dedusting apparatus according to claim 5, characterized in that, A filter is inserted into the inside of the air exchange tank through the switching opening. A second atomizer is arranged on the inner side wall of the air exchange tank away from the second through mouth and the switching opening. A second spray pipeline is connected with the inside of the liquid storage tank at one end and is connected with the spray subassembly at the other end. A liquid accumulation tank is arranged inside the processing box. The liquid accumulation tank is provided with a second liquid inlet and a third liquid outlet. The second liquid inlet communicates with the second liquid outlet and is used to discharge liquid in the air exchange tank into the liquid accumulation tank. The third liquid outlet is used to discharge liquid in the liquid accumulation tank. 7. The textile production plant dedusting apparatus according to claim 1, characterized in that, The second mechanism, the second through hole and the third through hole are provided in plurality, each of the second mechanism corresponds to the second through hole and the third through hole.
8. A textile production plant dedusting apparatus according to claim 6, characterized in that, The installation plate is arranged at the bottom of the processing box, the installation plate is provided with a first recess and a second recess, the first recess is used for fixing the liquid storage tank, and the second recess is used for fixing the liquid accumulation tank.
9. The textile production plant dedusting apparatus according to claim 1, characterized in that, The bottom of the processing box is provided with a plurality of casters and driving members, each of the driving members is connected with one of the casters, and the driving members are used for driving the casters to rotate.
10. A textile production plant dedusting apparatus according to claim 9, characterized in that, The cleaning assembly comprises a first rotating member and a cleaning member, one end of the first rotating member is fixed to the bottom of the processing box, the other end is movably connected with the cleaning member, and the cleaning surface of the cleaning member is located at the same horizontal plane as the casters.
Citation Information
Patent Citations
Dust cover for textile equipment
CN212582065U