Air conditioning and humidifying device for textile mill

By using a motor-driven cleaning mechanism and atomization system, the high cost and filter clogging problems of air conditioning equipment in textile workshops have been solved, achieving efficient humidification and air purification while reducing the difficulty of equipment maintenance.

CN121089162BActive Publication Date: 2026-01-09南通欣颐家纺有限公司
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Patent Information

Application Number
CN202511630190.X
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-11-09
Publication Date
2026-01-09
Estimated Expiration
2045-11-09

AI Technical Summary

Technical Problem

Existing air conditioning equipment in textile workshops is costly, has low humidification efficiency, and its filters are prone to clogging and difficult to clean.

Method used

It employs a motor-driven cleaning mechanism and a uniform exhaust mechanism, combined with a guide tube and an impact ball atomization system, to automatically remove fibers and dust from the filter screen, and achieve humidification and air purification through atomized water flow.

Benefits of technology

It reduces equipment maintenance costs, improves humidification efficiency and air purification effect, reduces filter clogging, and simplifies cleaning.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application belongs to the technical field of textile processing, and particularly relates to an air conditioning and humidifying device for a textile workshop, which comprises a base, a box body fixed on the base, the box body being composed of side plates on two sides and a filter screen cylinder in a cylindrical shape in the middle part, a fan and a water pump being respectively fixed on the two sides of the box body, a partition plate being rotatably connected to the inner wall of the box body, a cleaning mechanism for cleaning the inner wall of the filter screen cylinder being arranged on the partition plate, an air inlet mechanism being further arranged on the partition plate, and the output end of the fan being in communication with the air inlet mechanism. The ash discharge groove can be driven by the motor to rotate along the inner wall of the filter screen cylinder, the fiber and dust on the inner wall of the filter screen cylinder can be automatically scraped by the scraper and collected into the ash discharge groove, the fiber and dust after being wetted are difficult to remove, the high-speed liquid film or liquid drop formed by the collision between the water flow and the impact ball is collided with the air flow discharged by the arc-shaped air guide pipe to produce atomization, and finally, fine mist droplets are formed, so that no additional atomization device needs to be arranged, and the cost is reduced.
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Description

TECHNICAL FIELD

[0001] The present application belongs to the technical field of textile processing, and particularly relates to an air conditioning and humidifying device for a textile workshop. BACKGROUND

[0002] There are a large number of fibers in the textile workshop, and the fibers will fly with the vibration of the textile equipment, so air conditioning equipment needs to be provided in the textile workshop to ensure the air quality in the textile workshop, and the humidity of the air is too low, the textile fabric is easy to generate static electricity when rubbing, which is not conducive to the production.

[0003] In the prior art, an air humidifier is usually installed in the air supply equipment to realize humidification in the textile workshop, however, a large amount of textile fibers and dust in the air will affect the service life of the humidifier, and the equipment cost and maintenance cost are high, some use the way of accelerating air flow to promote water evaporation to realize the effect of humidification and cooling, however, the water evaporation speed is difficult to meet the humidification needs of the textile workshop with a large space; the textile fibers and dust in the air will accumulate at the filter screen, and the fibers and dust are more likely to adhere to the surface of the filter screen after being wetted, thereby affecting the air outlet efficiency of the air conditioning equipment, and the filter screen needs to be manually disassembled and cleaned regularly, which is a large workload. SUMMARY

[0004] The present application aims to solve the problems of high cost, low humidification efficiency and difficult cleaning of the filter screen in the prior art, and provides an air conditioning and humidifying device for a textile workshop.

[0005] To achieve the above-mentioned purpose, the following technical scheme is adopted: an air conditioning and humidifying device for a textile workshop, comprising a base, a box body fixed on the base, the box body being composed of side plates on both sides and a filter screen cylinder in the middle, a fan and a water pump being fixed on both sides of the box body respectively, a partition plate being rotatably connected to the inner wall of the box body, a cleaning mechanism for cleaning the inner wall of the filter screen cylinder being arranged on the partition plate, an air inlet mechanism being further arranged on the partition plate, and the output end of the fan being in communication with the air inlet mechanism.

[0006] The cleaning mechanism comprises a mounting seat fixed on the partition plate, a motor fixed on the mounting seat, a rotating shaft connected to the output shaft of the motor, a gear fixed on the rotating shaft, an inner tooth ring fixed on the inner wall of the filter screen cylinder, the gear and the inner tooth ring being meshed with each other, an ash discharge groove fixed on the partition plate, a scraper fixed on the side wall of the ash discharge groove, and an auger blade extending into the ash discharge groove and fixed on the rotating shaft.

[0007] The air inlet mechanism comprises a sealing disc fixed in the box body, a plurality of arc-shaped air guide pipes are fixed through the sealing disc, the plurality of arc-shaped air guide pipes are arranged in a ring array, and the output directions of the plurality of arc-shaped air guide pipes are opposite to each other, the output end of the fan is communicated with an air inlet pipe, the air inlet pipe penetrates the partition plate, and the output end of the air inlet pipe is rotatably connected to the sealing disc, when the partition plate drives the air inlet pipe to rotate, the air inlet pipe is communicated with each arc-shaped air guide pipe in turn, and uniform exhaust in each direction is realized.

[0008] Further, the dust discharge groove is fixed with a dust collecting hopper at one end away from the partition plate, and the upper end opening of the dust collecting hopper is communicated with the inside of the dust discharge groove.

[0009] Further, the two side plates are fixed with mounting rings on the side walls close to each other, the two ends of the filter screen cylinder are sleeved on the mounting rings, and fixing bolts are arranged on the mounting rings.

[0010] Further, a flow guide pipe is fixed in the box body, the output end of the water pump is communicated with the flow guide pipe, the inside of the flow guide pipe adopts a conical structure, and the diameter of the output end of the flow guide pipe is smaller than that of the input end.

[0011] Further, two air cylinders are fixed on the base, and the upper ends of the two air cylinders are fixed with the two side plates respectively.

[0012] Further, fixed seats are fixed between the plurality of arc-shaped air guide pipes, impact balls are connected to the fixed seats through vibration springs, and the impact balls are opposite to the output end of the flow guide pipe.

[0013] Further, a connecting rod is fixed on the side plate close to the water pump, and the sealing disc is fixed on the side plate through the connecting rod.

[0014] Further, a sealing ring is fixed at the output end of the air inlet pipe, an annular groove is arranged on the surface of the sealing disc, the sealing ring is rotatably connected in the annular groove, and the input end of the arc-shaped air guide pipe extends into the annular groove.

[0015] The present application has the following advantages:

[0016] The motor, gear, inner tooth ring, dust discharge groove, scraper and auger blade are arranged, the motor can drive the dust discharge groove to rotate along the inner wall of the filter screen cylinder, the fibers and dust on the inner wall of the filter screen cylinder are automatically scraped off by the scraper and collected into the dust discharge groove, the problem of difficult removal of fibers and dust after being wetted and causing the filter screen cylinder to be blocked is avoided, and the possibility of the blocking problem occurring is further reduced.

[0017] The application realizes uniform air exhaust to the inner wall of the filter screen cylinder in all directions, guarantees uniform air conditioning in the workshop, and reduces the cleaning difficulty by arranging the arc-shaped air guide pipes and the baffle.

[0018] The application can accelerate the water flow speed at the output end of the flow guide pipe, make the water flow acceleratedly sprayed from the output end of the flow guide pipe, form the broken high-speed liquid film or liquid drop after the water flow collides with the impact ball according to the Lennard effect, and produce atomization after the secondary collision with the air flow discharged from the arc-shaped air guide pipe, finally form fine mist drops.

[0019] The application can accelerate the water flow speed at the output end of the flow guide pipe, make the water flow acceleratedly sprayed from the output end of the flow guide pipe, form the broken high-speed liquid film or liquid drop after the water flow collides with the impact ball according to the Lennard effect, and produce atomization after the secondary collision with the air flow discharged from the arc-shaped air guide pipe, finally form fine mist drops. BRIEF DESCRIPTION OF DRAWINGS

[0020] Figure 1 is a structural schematic view of the air conditioning and humidifying equipment for the textile workshop provided by the application;

[0021] Figure 2 is Figure 1 is an enlarged view of A in figure 1;

[0022] Figure 3 is Figure 1 is an enlarged view of B in figure 1;

[0023] Figure 4 is a structural schematic view of the air conditioning and humidifying equipment for the textile workshop provided by the application;

[0024] Figure 5 is a side structural schematic view of the gear and the inner tooth ring in the air conditioning and humidifying equipment for the textile workshop provided by the application;

[0025] Figure 6 is a structural schematic view of the dust collecting hopper in the air conditioning and humidifying equipment for the textile workshop provided by the application;

[0026] Figure 7It is a kind of textile workshop air conditioning humidification equipment in the sealing disc side structure schematic view provided by the application;

[0027] Figure 8 It is a kind of textile workshop air conditioning humidification equipment in the sealing disc side structure schematic view provided by the application;

[0028] In the figure, 1 base, 2 box, 3 side plate, 4 filter screen cylinder, 5 fan, 6 water pump, 7 partition, 8 mounting seat, 9 motor, 10 rotating shaft, 11 gear, 12 inner tooth ring, 13 ash chute, 14 scraper, 15 auger blade, 16 sealing disc, 17 arc-shaped air guide pipe, 18 air inlet pipe, 19 dust hopper, 20 mounting ring, 21 fixing bolt, 22 flow guide pipe, 23 air cylinder, 24 fixing seat, 25 vibration spring, 26 impact ball, 27 connecting rod, 28 sealing ring, 29 annular groove. DETAILED DESCRIPTION

[0029] As Figures 1-8 shown, a kind of textile workshop air conditioning humidification equipment, including a kind of textile workshop air conditioning humidification equipment, including base 1, base 1 is fixed with box 2, box 2 is formed by the filter screen cylinder 4 of two sides side plate 3 and middle part is cylindrical, the two sides of box 2 are respectively fixed with fan 5 and water pump 6, the inner wall of box 2 is rotatably connected with partition 7, partition 7 is provided with cleaning mechanism for cleaning the inner wall of filter screen cylinder 4, partition 7 is also provided with air inlet mechanism, the output end of fan 5 is communicated with air inlet mechanism;

[0030] Cleaning mechanism includes mounting seat 8 fixed on partition 7, motor 9 is fixed on mounting seat 8, the output shaft of motor 9 is connected with rotating shaft 10, rotating shaft 10 is fixed with gear 11, the inner wall of filter screen cylinder 4 is fixed with inner tooth ring 12, gear 11 and inner tooth ring 12 are engaged with each other, rotating shaft 10 is rotatably connected to partition 7, and partition 7 is fixed with ash chute 13, and the side wall of ash chute 13 is fixed with scraper 14, and rotating shaft 10 extends to ash chute 13 and is fixed with auger blade 15;

[0031] The end of ash chute 13 away from partition 7 is fixed with dust hopper 19, and the upper end opening of dust hopper 19 is communicated with the inside of ash chute 13, the ash chute 13 can be driven to rotate along the inner wall of filter screen cylinder 4 by motor 9, the fiber and dust on the inner wall of filter screen cylinder 4 are automatically scraped off by scraper 14 and collected into ash chute 13, so that the problem of fiber and dust being difficult to remove after being wetted and causing filter screen cylinder 4 to be blocked is avoided, and the possibility of the problem of blocking is further reduced by pushing the fiber and dust in ash chute 13 into dust hopper 19 for collection.

[0032] The air inlet mechanism comprises a sealing disc 16 fixed in the box body 2, a plurality of arc-shaped air guide pipes 17 are fixed on the sealing disc 16 in a penetrating manner, the plurality of arc-shaped air guide pipes 17 are arranged in a ring array, and the output directions of the plurality of arc-shaped air guide pipes 17 are opposite to each other, the output end of the fan 5 is communicated with an air inlet pipe 18, the air inlet pipe 18 penetrates the partition plate 7, and the output end of the air inlet pipe 18 is rotatably connected to the sealing disc 16, when the partition plate 7 drives the air inlet pipe 18 to rotate, the air inlet pipe 18 is communicated with each arc-shaped air guide pipe 17 in turn, uniform air exhaust in each direction is realized, when the partition plate 7 drives the air inlet pipe 18 to rotate, the air inlet pipe 18 is communicated with each arc-shaped air guide pipe 17 in turn, uniform air exhaust in each direction on the inner wall of the filter screen cylinder 4 is realized, uniform air conditioning in the workshop is ensured, and the fibers and dust are uniformly distributed in each place on the inner wall of the filter screen cylinder 4, so that the cleaning difficulty is reduced.

[0033] The mounting ring 20 is fixed on the side wall of the two side plates 3 close to each other, the two ends of the filter screen cylinder 4 are sleeved on the mounting ring 20, the mounting ring 20 is provided with a fixing bolt 21, the side plates 3 on the two sides of the filter screen cylinder 4 can be disassembled and taken down through the fixing bolt 21, and the dust hopper 1 is convenient to take out and clean.

[0034] The flow guide pipe 22 is fixed in the box body 2, the output end of the water pump 6 is communicated with the flow guide pipe 22, the flow guide pipe 22 is in a conical structure inside, and the diameter of the output end of the flow guide pipe 22 is smaller than that of the input end, because the diameter of the flow guide pipe 22 gradually decreases.

[0035] The two air cylinders 23 are fixed on the base 1, the upper ends of the two air cylinders 23 are fixed with the two side plates 3 respectively, and the air cylinder 23 is used for adjusting the height of the box body 2, so that the box body 2 can be used in different workshop environments.

[0036] The fixed seat 24 is fixed between the plurality of arc-shaped air guide pipes 17, the impact ball 26 is connected to the fixed seat 24 through the vibration spring 25, the impact ball 26 is opposite to the output end of the flow guide pipe 22, according to the Leonard effect, after the water flow collides with the impact ball 26, a broken high-speed liquid film or liquid drop is formed, and then the liquid film or liquid drop collides with the air flow discharged from the arc-shaped air guide pipe 17 to produce atomization, finally forming fine mist droplets, and the water collision atomization produces negative ions, the atomized water is discharged with the air flow, plays a humidifying role, and the generated negative ions can condense dust and other substances in the air into clusters, so that the textile fibers and dust can be filtered out, and the air purification effect is further improved, without the need to set up additional atomization equipment, and the cost is reduced.

[0037] Further, when the airflow is discharged at high speed by the arc-shaped air guide pipe, according to the principle of fluid mechanics, the pressure at the opening of the arc-shaped air guide pipe 17 is suddenly reduced, so that the impact ball 26 is close to the arc-shaped air guide pipe 17, and when the airflow is discharged by each arc-shaped air guide pipe 17 in turn, the impact ball 26 reciprocates between each arc-shaped air guide pipe 17, further increasing the contact probability of the impact ball 26 and the water flow, improving the atomization effect of the water and the generation of negative ions.

[0038] The side plate 3 close to the water pump 6 is fixed with a connecting rod 27, and the sealing disc 16 is fixed to the side plate 3 through the connecting rod 27.

[0039] The output end of the air inlet pipe 18 is fixed with a sealing ring 28, the surface of the sealing disc 16 is provided with an annular groove 29, the sealing ring 28 is rotationally connected in the annular groove 29, and the input end of the arc-shaped air guide pipe 17 extends into the annular groove 29, and the sealing ring 28 is used to improve the air tightness when the air inlet pipe 18 and the arc-shaped air guide pipe 17 are communicated.

[0040] When the device is used, the device is carried to the textile workshop, the box body 2 is raised to the working height through the air cylinder 23, the fan 5 is started to send air to the inside of the box body 2, the dust and textile fibers are filtered out after the air passes through the filter screen cylinder, and then the air is discharged into the textile workshop, air purification is realized, the motor 9 is started to run, the motor 9 drives the rotating shaft 10 and the gear 11 to rotate, since the gear 11 is engaged with the inner ring of the inner tooth ring 12, the gear 11 can walk along the inner ring of the inner tooth ring 12 and rotate, and then the baffle 7 can be driven to rotate in the filter screen cylinder 4, so that the ash discharge groove 13 rotates along the inner wall of the filter screen cylinder 4, the fibers and dust on the inner wall of the filter screen cylinder 4 are automatically scraped off by the scraper 14 and collected into the ash discharge groove 13, so that the fibers and dust are difficult to remove after being wetted, and the problem of clogging the filter screen cylinder 4 is avoided, and the rotating shaft 10 drives the auger blade 15 to rotate, the fibers and dust in the ash discharge groove 13 are pushed into the dust hopper 19 for collection, and the possibility of clogging is further reduced.

[0041] When the baffle 7 drives the air inlet pipe 18 to rotate, the air inlet pipe 18 is communicated with each arc-shaped air guide pipe 17 in turn, uniform air discharge to the inner wall of the filter screen cylinder 4 in each direction is realized, uniform air conditioning in the workshop is ensured, and the fibers and dust are uniformly distributed on the inner wall of the filter screen cylinder 4, and the cleaning difficulty is reduced.

[0042] By water pump 6 to the box 2 into the water flow, water flow by guide pipe 22 high-speed jet and hit the impact ball 26 surface, according to the effect of Leonard, water flow and impact ball 26 collision after the formation of the high-speed liquid film or liquid drop, and then with the arc-shaped air duct 17 discharge gas flow secondary collision produces atomization, eventually form small droplets, and, water collision atomization will produce negative ions, atomized water will be discharged with airflow, play a role in humidification, and, the negative ions generated can be condensed into a group of dust and other substances in the air, easy to filter out the textile fiber and dust dust, further improve the air purification effect, without setting additional atomization equipment, reduce cost;

[0043] In the air flow by the arc-shaped air duct high-speed discharge, according to the principle of fluid mechanics, the pressure of the arc-shaped air duct 17 mouth drops, so that the impact ball 26 will be close to the arc-shaped air duct 17, then the air flow by each arc-shaped air duct 17 in turn discharge, so that the impact ball 26 reciprocating vibration between each arc-shaped air duct 17, further increase the contact probability of impact ball 26 and water flow, improve the atomization effect of water and the production of negative ions.

Claims

1. An air conditioning and humidification device for textile workshops, comprising a base (1), characterized in that, A housing (2) is fixed on the base (1). The housing (2) consists of side plates (3) on both sides and a cylindrical filter cylinder (4) in the middle. A fan (5) and a water pump (6) are fixed on both sides of the housing (2). A partition (7) is rotatably connected to the inner wall of the housing (2). A cleaning mechanism for cleaning the inner wall of the filter cylinder (4) is provided on the partition (7). An air intake mechanism is also provided on the partition (7). The output end of the fan (5) is connected to the air intake mechanism. The cleaning mechanism includes a mounting seat (8) fixed on the partition (7). A motor (9) is fixed on the upper part of the filter cylinder (4). A rotating shaft (10) is connected to the output shaft of the motor (9). A gear (11) is fixed on the rotating shaft (10). An internal gear ring (12) is fixed on the inner wall of the filter cylinder (4). The gear (11) and the internal gear ring (12) mesh with each other. The rotating shaft (10) passes through and is rotatably connected to the partition plate (7). A ash discharge trough (13) is fixed on the partition plate (7). A scraper (14) is fixed on the side wall of the ash discharge trough (13). The rotating shaft (10) extends into the ash discharge trough (13) and is fixed with an auger blade (15). The air intake... The mechanism includes a sealing disc (16) fixed inside the housing (2), through which several arc-shaped air guide pipes (17) are fixed. The arc-shaped air guide pipes (17) are arranged in a circular array, and the output directions of the arc-shaped air guide pipes (17) are opposite to each other. The output end of the fan (5) is connected to an air inlet pipe (18). The air inlet pipe (18) passes through the partition (7), and the output end of the air inlet pipe (18) is rotatably connected to the sealing disc (16). When the partition (7) drives the air inlet pipe (18) to rotate, the air inlet pipe (18) rotates. The pump (6) is connected to each of the arc-shaped air guide pipes (17) in sequence to achieve uniform exhaust in all directions. The housing (2) is fixed with a guide pipe (22). The output end of the water pump (6) is connected to the guide pipe (22). The guide pipe (22) has a conical structure inside and the output end diameter of the guide pipe (22) is smaller than the input end diameter. A fixed seat (24) is fixed between several arc-shaped air guide pipes (17). An impact ball (26) is connected to the fixed seat (24) through a vibration spring (25). The impact ball (26) is directly opposite to the output end of the guide pipe (22).

2. The air conditioning and humidification equipment for textile workshops according to claim 1, characterized in that, The ash discharge trough (13) is fixed with an ash collection hopper (19) at the end away from the partition (7), and the upper opening of the ash collection hopper (19) is connected to the inside of the ash discharge trough (13).

3. The air conditioning and humidification equipment for textile workshops according to claim 1, characterized in that, Mounting rings (20) are fixed on the side walls of the two side plates (3) that are close to each other. The two ends of the filter cylinder (4) are fitted onto the mounting rings (20). Fixing bolts (21) are provided on the mounting rings (20).

4. The air conditioning and humidification equipment for textile workshops according to claim 1, characterized in that, Two cylinders (23) are fixed on the base (1), and the upper ends of the two cylinders (23) are respectively fixed to two side plates (3).

5. The air conditioning and humidification equipment for textile workshops according to claim 1, characterized in that, A connecting rod (27) is fixed on the side plate (3) near the water pump (6), and the sealing disc (16) is fixed to the side plate (3) by the connecting rod (27).

6. The air conditioning and humidification equipment for textile workshops according to claim 1, characterized in that, The output end of the air inlet pipe (18) is fixed with a sealing ring (28), and the surface of the sealing disc (16) is provided with an annular groove (29). The sealing ring (28) is rotatably connected in the annular groove (29), and the input end of the arc-shaped air guide pipe (17) extends into the annular groove (29).

Citation Information

Patent Citations

  • Air purification device for textile workshop

    CN115183372A

  • Air dedusting and purifying environment-friendly equipment

    CN210772528U