Automatic drying and dedusting system for dust-free cloth
The automatic drying and dust removal system for cleanroom wipes employs a collaborative design of conveying and diversion components and drying control components, combined with a three-stage cleaning process involving alignment components and dust removal devices. This solves the problems of uneven drying and incomplete dust removal of cleanroom wipes, achieving efficient and stable drying and dust removal results.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- SUZHOU COLLINS ULTRA CLEAN TECH CO LTD
- Filing Date
- 2026-03-04
- Publication Date
- 2026-04-10
AI Technical Summary
Traditional cleanroom cloth drying methods suffer from uneven hot air distribution, localized overheating leading to cloth surface damage, incomplete dust removal and easy shifting, affecting quality and efficiency. Existing technologies lack coordinated control.
Design an automatic drying and dust removal system for lint-free cloths. The system achieves uniform hot air distribution through the coordinated setting of the conveying and diversion components and the drying control components. It also prevents misalignment by combining the alignment components and adopts a three-stage cleaning process for the dust removal device, including static electricity neutralization, brush cleaning and airflow washing, in conjunction with the upper and lower dust suction chambers for comprehensive cleaning.
It achieves deep drying and synchronous conveying of cleanroom cloths, prevents deviation, improves drying efficiency and uniformity, ensures dust removal effect, and enhances product quality stability and continuous operation capability.
Smart Images

Figure CN121829064A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of dust-free cloth drying and dust removal, and more particularly to an automatic dust-free cloth drying and dust removal system. BACKGROUND
[0002] In the production process of dust-free cloth, the cut and washed dust-free cloth needs to be dried and dusted to ensure the surface cleanliness. The traditional drying method mostly adopts static hot air circulation, which has the risk of uneven hot air distribution and local overheating leading to cloth surface damage, and low drying efficiency. The dust removal link often causes dust residue due to electrostatic adsorption, and the conventional mechanical brushing is easy to damage the cloth surface, while the single airflow blowing is difficult to completely remove the small particles adsorbed by static electricity. In addition, the dust-free cloth is easy to deviate during the conveying process, affecting the positioning accuracy of the subsequent process, leading to uneven dust removal or secondary pollution. In the prior art, the drying and dust removal processes are mostly designed independently, with poor coordination and difficult to realize efficient continuous operation. Moreover, there is a lack of coordinated control of static neutralization and mechanical cleaning, leading to unstable dust removal effect and affecting the final quality of the dust-free cloth. Therefore, it is necessary to provide an automatic dust-free cloth drying and dust removal system to solve the problems in the background art. SUMMARY
[0003] To achieve the above-mentioned purpose, the present application provides the following technical scheme: an automatic dust-free cloth drying and dust removal system, comprising:
[0004] A conveying platform is provided with two control consoles symmetrically distributed in front and back, and the control consoles are adjacent to the output end.
[0005] A plurality of conveying rollers are linearly distributed and synchronously rotated on the conveying platform.
[0006] A plurality of drying devices are linearly distributed and arranged on the conveying platform corresponding to the conveying rollers.
[0007] A drying cavity is fixed on the conveying platform and located above the drying devices.
[0008] Two alignment assemblies are symmetrically distributed in front and back and fixed on the side of the conveying platform.
[0009] A plurality of dust removal devices are linearly distributed and arranged at intervals with the conveying rollers, each group is symmetrically distributed in upper and lower positions, and the top of the lower dust removal device and the top of the conveying roller are at the same horizontal plane.
[0010] Two dust suction cavities are symmetrically distributed in upper and lower positions with respect to the dust removal devices and are fixed on the upper and lower sides of the conveying platform.
[0011] Further, as a preferred, the drying device comprises:
[0012] Connecting disc, two are symmetrically arranged, and inner sides of the two connecting discs are fixed to inner sides of the conveying platform;
[0013] Conveying and distributing assembly, one end of the conveying and distributing assembly is connected to the driving mechanism in the conveying platform through the corresponding connecting disc and the inner wall of the conveying platform, and the other end of the conveying and distributing assembly is rotatably connected to the corresponding connecting disc;
[0014] Drying control assembly, one end of the drying control assembly is rotatably connected to the end of the conveying and distributing assembly, and the other end of the drying control assembly is fixedly connected to the hot air pipeline in the conveying platform.
[0015] Further, as a preferred, the conveying and distributing assembly comprises:
[0016] Connecting table body, two are symmetrically arranged, and the connecting table body is rotatably connected to the inner side of the corresponding connecting disc;
[0017] Hollow cylinder, fixed between the connecting table bodies, and the inner wall of the hollow cylinder is matched with the outer wall of the drying control assembly;
[0018] Rotating shaft, fixedly connected to one end of the connecting table body, and the rotating shaft is connected to the driving mechanism in the conveying platform through the connecting disc.
[0019] Further, as a preferred, the drying control assembly comprises:
[0020] Fixed arc body, the fixed arc body is a three-quarter arc body, and the fixed arc body is arranged in the conveying and distributing assembly with an upward opening;
[0021] Conveying shaft, fixed to one end of the fixed arc body away from the rotating shaft in the conveying and distributing assembly, and the conveying shaft is fixedly connected to the hot air pipeline in the conveying platform through the connecting disc;
[0022] Limiting arc surface, the limiting arc surface is fixedly connected to the inner wall of the opening of the fixed arc body on both sides, and a plurality of groups of airflow holes are arranged on the limiting arc surface in a straight line, and each group of airflow holes is arranged in an arc shape.
[0023] Further, as a preferred, the alignment assembly comprises:
[0024] Adjusting assembly, fixed to the side of the conveying platform;
[0025] Moving rod, arranged in a longitudinal direction, and arranged on the adjusting assembly;
[0026] Adjusting plate, arranged vertically, fixed to the end of the moving rod, and the bottom of the adjusting plate is matched with the top of the conveying roller.
[0027] Further, as a preferred, the dust removal device comprises:
[0028] Fixed shaft, two are symmetrically arranged, and the fixed shaft is fixed to the inner wall of the conveying platform;
[0029] Positioning disc, corresponding to the fixed shaft is arranged, fixed in the inner side of the fixed shaft;
[0030] Conveying and dust removal assembly, rotationally arranged between the positioning discs, and the two ends penetrating through the fixed shaft, respectively rotationally connected with the ion wind pipe and the air blowing pipe;
[0031] Dust removal brush assembly, rotationally arranged inside the conveying and dust removal assembly, and the end penetrating through the end of the conveying and dust removal assembly.
[0032] Further, as preferred, the conveying and dust removal assembly comprises:
[0033] Connecting sleeve ring, two are symmetrically arranged, hollow structure, rotationally connected with the center of the positioning disc and the fixed shaft, and respectively rotationally connected with the ion wind pipe and the air blowing pipe;
[0034] Conveying support, two groups are arranged corresponding to the connecting sleeve ring, and each group is annularly arranged with a plurality of, fixed on the outer wall of the connecting sleeve ring;
[0035] Dust removal air pipe, corresponding to the conveying support, connecting the corresponding conveying support at both ends, and the dust removal air pipe is a double-layer structure, corresponding to the ion wind pipe and the air blowing pipe respectively;
[0036] Air port, two groups are symmetrically arranged with respect to the dust removal air pipe, and each group is linearly arranged with a plurality of, fixed on the side of the dust removal air pipe.
[0037] Further, as preferred, the dust removal brush assembly comprises:
[0038] Control shaft, rotationally arranged in the center of the conveying and dust removal assembly;
[0039] Connecting cylinder, fixed on the control shaft, and located between the connecting sleeve rings;
[0040] Brush group, annularly arranged with a plurality of groups, fixed on the side wall of the connecting cylinder, and the brush group is arranged on the inner wall of the same ring surface with the dust removal air pipe.
[0041] Compared with the prior art, the beneficial effects of the present application are:
[0042] In the present application, through the cooperative arrangement of the conveying and shunting assembly and the drying control assembly in the drying device, the hot air is uniformly distributed, the effect of dust-free cloth deep drying and synchronous conveying is achieved, and the drying efficiency and cloth surface uniformity are improved;
[0043] Through the full coverage design of the drying cavity, the directional control of the hot air curtain is realized, the heat energy is reduced, and the drying effect is enhanced;
[0044] Through the symmetrical alignment assembly arrangement, the position correction effect in the dust-free cloth conveying process is achieved, the deviation is prevented, and the accurate positioning of the subsequent dust removal process is ensured;
[0045] By setting the dust removal components and dust removal brush components to rotate in opposite directions in the dust removal device, a three-stage cleaning process of "static neutralization - brush cleaning - airflow washing" is achieved. Combined with the continuous dust collection of the upper and lower dust collection chambers, the static electricity residue on the surface of the lint-free cloth is eliminated and dust is efficiently removed. At the same time, the flexible brush design avoids damage to the cloth surface.
[0046] By using a clamping conveying structure with conveyor rollers and a dust removal device, stable conveying of the clean cloth and comprehensive surface cleaning are achieved, improving the system's continuous operation capability and product quality stability. Attached Figure Description
[0047] Figure 1 This is a schematic diagram of the overall structure of an automatic drying and dust removal system for cleanroom cloths.
[0048] Figure 2 This is a schematic diagram of the alignment component structure;
[0049] Figure 3 This is a schematic diagram of the drying device.
[0050] Figure 4 A schematic diagram of the conveyor diversion component and the drying control component;
[0051] Figure 5 This is a schematic diagram showing the distribution of the dust removal device and conveyor rollers;
[0052] Figure 6 This is a schematic diagram of the dust removal device.
[0053] Figure 7 A schematic diagram of the conveying dust removal component and dust removal brush component;
[0054] Figure 8 This is a schematic diagram of the cross-sectional structure of the dust removal device;
[0055] In the diagram: 1. Conveying platform; 2. Conveying roller; 3. Drying device; 4. Drying chamber; 5. Alignment assembly; 6. Dust removal device; 7. Dust suction chamber; 11. Control console; 31. Connecting plate; 32. Conveying diversion assembly; 33. Drying control assembly; 51. Adjusting assembly; 52. Moving rod; 53. Adjusting plate; 61. Fixed shaft; 62. Positioning plate; 63. Conveying dust removal assembly; 64. Dust removal brush assembly; 321. Connecting platform; 322. Hollowed-out cylinder; 323. Rotating shaft; 331. Fixed arc body; 332. Conveying shaft; 333. Restricting arc surface; 631. Connecting collar; 632. Conveying support column; 633. Dust removal duct; 634. Air outlet; 641. Control shaft; 642. Connecting cylinder; 643. Brush assembly. Detailed Implementation
[0056] Please see Figures 1-8In this embodiment of the invention, an automatic drying and dust removal system for cleanroom wipes includes:
[0057] The conveying platform 1 has two symmetrically distributed control consoles 11 on its top, with the control consoles 11 adjacent to the output end;
[0058] Multiple conveyor rollers 2 are arranged in a straight line and rotate synchronously on the conveyor platform 1.
[0059] Multiple drying devices 3 are arranged in a straight line and are set on the conveyor platform 1, corresponding to the conveyor rollers 2;
[0060] The drying chamber 4 is fixed on the conveyor platform 1 and located above the drying device 3;
[0061] Alignment components 5 are provided in two sets, symmetrically distributed front and back, and fixed to the side of the conveyor platform 1;
[0062] The dust removal device 6 is arranged in multiple groups in a straight line, spaced apart from the conveyor roller 2. Each group has two units symmetrically distributed vertically and is rotatably mounted on the conveyor platform 1. The top of the lower dust removal device 6 is at the same horizontal plane as the top of the conveyor roller 2.
[0063] The dust suction chamber 7 has two chambers symmetrically distributed around the dust removal device 6, which are fixed on the upper and lower sides of the conveying platform 1.
[0064] In this embodiment, the drying device 3 includes:
[0065] Two connecting plates 31 are symmetrically distributed front and back, fixing the inner side of the conveying platform 1;
[0066] The conveying and diverting component 32 has one end passing through the corresponding connecting plate 31 and the inner wall of the conveying platform 1 and connected to the internal drive mechanism of the conveying platform 1, and the other end is rotatably connected to the corresponding connecting plate 31.
[0067] The drying control component 33 is rotatably connected at one end to the end of the conveying and diverting component 32, and at the other end passes through the corresponding connecting plate 31 and is fixedly connected to the hot air duct inside the conveying platform 1.
[0068] In other words, the drying device 3 consists of two symmetrically distributed connecting discs 31, a conveying and diverting component 32, and a drying control component 33. The connecting discs 31 are fixed to the inside of the conveying platform 1 as structural support. Under the action of the conveying platform 1, the conveying and diverting component 32 is driven to rotate synchronously with the conveying roller 2 to convey the cleanroom cloth. The drying control component 33 is fixed to the conveying platform 1 and continuously injects hot air through an external hot air pipe. The hot air is then formed by the drying control component 33 into a directional hot air curtain. Under the diversion of the conveying and diverting component 32, the cleanroom cloth is dried at close range and depth. Then, under the coverage of the drying chamber 4, the surface of the cleanroom cloth is dried in a coordinated manner. At the same time, the rotation of the conveying and diverting component 32 synchronously completes the conveying of the cleanroom cloth, improving the drying efficiency and uniformity.
[0069] In this embodiment, the conveying and diversion component 32 includes:
[0070] Two connecting platforms 321 are symmetrically distributed at the front and back, and are rotatably connected to the inner side of the corresponding connecting plate 31;
[0071] The hollow cylinder 322 is fixed between the connecting platform bodies 321, and its inner wall is in contact with the outer wall of the drying control component 33;
[0072] The rotating shaft 323 is fixedly connected to the connecting platform 321 at one end, and passes through the connecting plate 31 to connect to the drive mechanism in the conveying platform 1.
[0073] In other words, the drive mechanism in the conveying platform 1 drives the hollow cylinder 322 to rotate through the rotating shaft 323. The hollow structure forms a dynamic hot air channel during rotation. In conjunction with the airflow holes of the drying control component 33, hot air is diverted and conveyed synchronously with the cleanroom cloth, avoiding local overheating and improving conveying stability. After the cleanroom cloth passes through multiple drying devices 3, the hollow part of the hollow cylinder 322 of the conveying diversion component 32 in the multiple drying devices 3 can completely cover the entire cleanroom cloth, achieving comprehensive and deep drying.
[0074] In this embodiment, the drying control component 33 includes:
[0075] The fixed arc body 331 is a three-quarter arc body with an upward opening, and is set inside the conveying and diverting assembly 32;
[0076] The conveying shaft 332 is fixed at one end of the fixed arc body 331 away from the rotating shaft 323 in the conveying and diverting assembly 32, and the conveying shaft 332 passes through the connecting plate 31 and is fixedly connected to the hot air pipe inside the conveying platform 1.
[0077] The limiting arc surface 333 is fixedly connected to the inner wall of the opening of the fixed arc body 331 on both sides, and the limiting arc surface 333 is provided with multiple sets of linearly distributed airflow holes, and each set of airflow holes is provided with multiple arc-shaped distributions.
[0078] In other words, after the hot air is conveyed into the fixed arc body 331 via the conveyor shaft 332, a uniform hot air curtain is formed through the airflow holes of the restricted arc surface 333. Then, under the restriction of the fixed arc body 331, the hot air is output through the perforated part of the hollow cylinder 322 that contacts the cleanroom cloth, reducing the loss of hot air. The hot air contacts the cleanroom cloth and deeply dries it. The drying chamber 4 achieves full coverage drying of the cleanroom cloth surface, effectively improving the heat energy utilization rate and drying effect.
[0079] In this embodiment, the alignment component 5 includes:
[0080] Adjustment component 51 is fixed to the side of conveyor platform 1;
[0081] The movable lever 52 is set vertically and its movement is set on the adjustment assembly 51;
[0082] The adjusting plate 53 is vertically set and fixed to the end of the moving rod 52, and the bottom of the adjusting plate 53 is in contact with the top of the conveying roller 2.
[0083] In other words, when the cleanroom cloth is dried and re-enters the conveyor roller 2 area, the adjustment component 51 drives the adjustment plate 53 to move longitudinally through the drive rod 52 to correct the position of the cleanroom cloth, prevent deviation during the conveying process, ensure accurate positioning of subsequent dust removal processes, and improve the stability of system operation.
[0084] In this embodiment, the dust removal device 6 includes:
[0085] Two fixed shafts 61 are symmetrically distributed front and back and fixed to the inner wall of the conveying platform 1;
[0086] Positioning disc 62 is provided corresponding to fixed shaft 61 and fixed on the inner side of fixed shaft 61;
[0087] The conveying dust removal component 63 is rotatably mounted between the positioning plates 62, and its two ends pass through the fixed shaft 61 and are rotatably connected to the ion air pipe and the blowing pipe respectively.
[0088] The dust removal brush assembly 64 is rotatably disposed inside the conveying dust removal assembly 63, and its end passes through the end of the conveying dust removal assembly 63.
[0089] In other words, as the conveyor roller 2 continues to convey the cleanroom cloth, after being aligned by the alignment component 5, the cleanroom cloth enters the dust collection chamber 7. At the same time, on the conveyor roller 2, the cleanroom cloth passes between the upper and lower conveyor dust removal devices 6 in the same group. The upper and lower conveyor dust removal devices 6 are controlled by the conveyor platform 1 and the control console 11 respectively. The lower conveyor dust removal component 63, which rotates in the same direction as the conveyor roller 2, and the upper conveyor dust removal component 63, which rotates in the opposite direction, position and convey the cleanroom cloth. The dust removal brush component 64, which rotates in the opposite direction to the conveyor dust removal component 63, continuously brushes and cleans the surface of the cleanroom cloth. That is, the conveyor dust removal component 63 in the upper and lower dust removal devices 6, together with the conveyor roller 2, forms a clamping and conveying structure for the cleanroom cloth. Under the continuous rotation of the dust removal brush component 64, the stable conveying and surface cleaning of the cleanroom cloth are achieved.
[0090] In this embodiment, the conveying dust removal assembly 63 includes:
[0091] Two connecting collars 631 are symmetrically distributed and have a hollow structure. They are rotatably connected to the center of the positioning disk 62 and the fixed shaft 61, and are rotatably connected to the ion air pipe and the blowing pipe, respectively.
[0092] The conveying support column 632 is provided in two sets corresponding to the connecting collar 631. Each set has multiple columns arranged in a ring and is fixed on the outer wall of the connecting collar 631.
[0093] Dust removal duct 633 is provided corresponding to conveying support column 632, and is connected to the corresponding conveying support column 632 at both ends. The dust removal duct 633 has a double-layer structure, which corresponds to the ion duct and the air blowing duct respectively.
[0094] Air vents 634 are symmetrically distributed in two groups with multiple air vents in each group, fixed to the side of the dust removal duct 633.
[0095] In other words, the outer end of the connecting collar 631 is rotated by a drive mechanism, and the ion air duct and the air blowing pipe are rotatably connected to the two connecting collars 631 through annular pipes. Each double-layer dust removal duct 633 is provided with an ion air channel and an airflow channel. The ion air channel is connected to the connecting collar 631 connected to the ion air duct, and the airflow channel is connected to the connecting collar 631 connected to the air blowing pipe. Taking the lower dust removal device 6 as an example, when the cleaning area between the two dust removal ducts 633 is cleaned by the dust removal brush assembly 64 contacting the lint-free cloth, the two dust removal ducts 633 on the left and right sides contact the lint-free cloth and clamp and transport it. At this time, during the rotation of the dust removal device 6, the right dust removal duct 633 of the cleaning area contacts the lint-free cloth first, that is, the right dust removal duct 633 adjacent to the cleaning area... The area's channel is an ion air channel. The channel adjacent to this cleaning area in the left dust removal duct 633 is an airflow channel. Then, the ion air channel of the right dust removal duct 633 blows air carrying charged ions onto the cleanroom cloth through the air outlet 634, neutralizing the static electricity on the cleanroom cloth and preventing dust from continuing to adhere to it due to static electricity. Then, the dust removal brush assembly 64 cleans it. Next, the airflow channel of the left dust removal duct 633 blows airflow onto the cleanroom cloth through the air outlet 634, dispersing the cleaned dust. The linear distribution design of the air outlets 634 ensures uniform coverage of the cleanroom cloth surface, achieving a synergistic effect of static electricity neutralization and dust blowing. Finally, the dust is sucked away by the suction chamber 7. The upper and lower dust removal devices 6 thoroughly clean the upper and lower parts of the cleanroom cloth, and the cleaning in conjunction with the suction chamber 7 ensures the quality of the cleanroom cloth.
[0096] In this embodiment, the dust removal brush assembly 64 includes:
[0097] The control shaft 641 is rotatably positioned at the center of the conveying and dust removal assembly 63;
[0098] The connecting cylinder 642 is fixed on the control shaft 641 and located between the connecting collars 631;
[0099] Multiple bristle groups 643 are arranged in a ring and fixed on the side wall of the connecting cylinder 642. The top of the bristles of the bristle group 643 is on the inner wall of the same ring surface as the dust removal duct 633.
[0100] In other words, during operation, the dust removal brush assembly 64 rotates in opposite directions to the corresponding conveying dust removal assembly 63. The bristle group 643 mechanically cleans the surface of the cleanroom cloth. Combined with the ion wind and airflow of the conveying dust removal assembly 63, a three-stage cleaning process of "static neutralization - bristle cleaning - airflow washing" is achieved. At the same time, the upper and lower dust suction chambers 7 continuously suck up dust, ensuring that there is no static electricity residue on the surface of the cleanroom cloth and that the dust is efficiently removed. It should be noted that the tip of the bristles of the bristle group 643 is made of flexible material. When the bristle group 643 passes through the dust removal duct 633, it will automatically bend. This prevents the dust removal duct 633 from damaging the bristle group 643 and also effectively prevents the bristle group 643 from damaging the cleanroom cloth.
[0101] In practice, the cleanroom cloth, after being cut, washed, and dehydrated, is first laid flat on the conveyor rollers 2 of the conveyor platform 1. Under the synchronous rotation of the conveyor rollers 2, it enters the drying station, where multiple linearly distributed drying devices 3, corresponding to the conveyor rollers 2, are located. The conveyor platform 1 drives the conveyor diversion component 32 to rotate via the rotating shaft 323, conveying the cleanroom cloth. The conveyor shaft 332 of the drying control component 33 is connected to a hot air duct. Hot air passes through the fixed arc body 331 and then through multiple sets of arc-shaped airflow holes on the limiting arc surface 333 to form a uniform hot air curtain. This hot air curtain, under the rotation of the hollow cylinder 322, forms a dynamic hot air channel, deeply drying the cleanroom cloth. The drying chamber 4 fully covers and dries the cleanroom cloth. After drying, the cleanroom cloth enters the alignment station, where two sets of symmetrical alignment components 5, driven by the adjusting component 51, move the moving rod 52, causing the bottom of the adjusting plate 53 to move longitudinally against the top of the conveyor roller 2, correcting the position of the cleanroom cloth and preventing displacement. The corrected cleanroom cloth then enters the dust removal station, where multiple sets of... The dust removal device 6 and the dust collection chamber 7 are separated. Each set of two symmetrical dust removal devices 6 are fixed by a fixed shaft 61 and a positioning plate 62. The top of the lower dust removal device 6 is flush with the top of the conveying roller 2, forming a clamping and conveying structure with the upper dust removal device 6. The connecting collar 631 of the conveying dust removal assembly 63 is rotatably connected to the ion air duct and the air blowing pipe. The ion air channel and the airflow channel of the double-layer dust removal air duct 633 blow out ion air and airflow respectively through the air outlet 634. Under the continuous rotation of the conveying dust removal assembly 63, The dust removal duct 633 first sprays out ion air to neutralize the static electricity of the cleanroom cloth. The control shaft 641 of the dust removal brush assembly 64 drives the ring-shaped bristle group 643 to rotate in the opposite direction to the corresponding conveying dust removal assembly 63 for mechanical cleaning. The next dust removal duct 633 then sprays air to disperse the dust. The upper and lower dust suction chambers 7 continuously suck up the dust, and finally complete the three-stage cleaning process of "static electricity neutralization - bristle cleaning - airflow washing" to ensure that there is no static electricity residue on the surface of the cleanroom cloth and that the dust is efficiently removed. The cleaned cleanroom cloth is output by the conveying roller 2.
[0102] The above description is merely a preferred embodiment of the present invention, but the scope of protection of the present invention is not limited thereto. Any equivalent substitutions or modifications made by those skilled in the art within the scope of the technology disclosed in the present invention, based on the technical solution and inventive concept of the present invention, should be covered within the scope of protection of the present invention.
Claims
1. An automatic drying and dust removal system for cleanroom wipes, characterized in that: include: The conveying platform (1) has two control consoles (11) symmetrically distributed at the top, and the control consoles (11) are adjacent to the output end; Multiple conveyor rollers (2) are arranged in a straight line and rotate synchronously on the conveyor platform (1); The drying device (3) is arranged in a straight line, and is set on the conveying platform (1) and is set in correspondence with the conveying roller (2); The drying chamber (4) is fixed on the conveying platform (1) and located above the drying device (3); Alignment components (5) are provided in two sets, symmetrically distributed front and back, and fixed on the side of the conveying platform (1); The dust removal device (6) is arranged in multiple groups in a straight line, spaced apart from the conveyor roller (2). Each group has two units arranged symmetrically above and below, and is rotatably mounted on the conveyor platform (1). The top of the lower dust removal device (6) is on the same horizontal plane as the top of the conveyor roller (2). The dust collection chamber (7) is provided with two dust removal devices (6) symmetrically distributed on the upper and lower sides of the conveying platform (1).
2. The automatic drying and dust removal system for cleanroom wipes according to claim 1, characterized in that: The drying device (3) includes: Two connecting discs (31) are symmetrically distributed at the front and back, fixing the inner side of the conveying platform (1); The conveying and diverting component (32) has one end passing through the inner wall of the corresponding connecting plate (31) and the conveying platform (1) and connected to the internal drive mechanism of the conveying platform (1), and the other end is rotatably connected to the corresponding connecting plate (31). The drying control component (33) is rotatably connected at one end to the end of the conveying and diverting component (32), and at the other end passes through the corresponding connecting plate (31) and is fixedly connected to the hot air duct inside the conveying platform (1).
3. The automatic drying and dust removal system for cleanroom cloths according to claim 2, characterized in that: The conveying and diversion assembly (32) includes: Two connecting platforms (321) are symmetrically distributed at the front and back, and are rotatably connected to the inner side of the corresponding connecting plate (31); The hollow cylinder (322) is fixed between the connecting platform (321), and its inner wall is in contact with the outer wall of the drying control component (33); The rotating shaft (323) is fixedly connected to the platform body (321) at one end, and passes through the connecting plate (31) to connect to the drive mechanism in the conveying platform (1).
4. The automatic drying and dust removal system for cleanroom cloths according to claim 3, characterized in that: The drying control component (33) includes: The fixed arc body (331) is a three-quarter arc body with an upward opening and is set inside the conveying and diverting assembly (32); The conveying shaft (332) is fixed at one end of the fixed arc body (331) away from the rotating shaft (323) in the conveying diversion assembly (32), and the conveying shaft (332) passes through the connecting plate (31) and is fixedly connected to the hot air duct inside the conveying platform (1); The limiting arc surface (333) is fixedly connected to the inner wall of the opening of the fixed arc body (331) on both sides, and the limiting arc surface (333) is provided with multiple sets of linearly distributed airflow holes, and each set of airflow holes is provided with multiple arc-shaped distributions.
5. The automatic drying and dust removal system for cleanroom cloth according to claim 1, characterized in that: The alignment component (5) includes: Adjustment component (51) is fixed to the side of conveyor platform (1); The moving rod (52) is set longitudinally and is moved on the adjusting assembly (51); An adjusting plate (53) is vertically set and fixed to the end of the moving rod (52), and the bottom of the adjusting plate (53) is in contact with the top of the conveying roller (2).
6. The automatic drying and dust removal system for cleanroom wipes according to claim 1, characterized in that: The dust removal device (6) includes: Two fixed shafts (61) are symmetrically distributed front and back and fixed on the inner wall of the conveying platform (1); The positioning plate (62) is set in correspondence with the fixed shaft (61) and fixed on the inner side of the fixed shaft (61); The conveying dust removal component (63) is rotatably set between the positioning plates (62), and its two ends pass through the fixed shaft (61) and are rotatably connected to the ion air pipe and the blowing pipe respectively; The dust removal brush assembly (64) is rotatably disposed inside the conveying dust removal assembly (63), and its end passes through the end of the conveying dust removal assembly (63).
7. The automatic drying and dust removal system for cleanroom cloth according to claim 6, characterized in that: The conveying dust removal assembly (63) includes: Two connecting collars (631) are symmetrically distributed and are hollow. They are rotatably connected to the center of the positioning plate (62) and the fixed shaft (61), and are rotatably connected to the ion air pipe and the blowing pipe, respectively. The conveying support column (632) is provided in two sets corresponding to the connecting collar (631), with multiple sets arranged in a ring and fixed on the outer wall of the connecting collar (631); The dust removal duct (633) is correspondingly provided with the conveying support column (632) and connected to the corresponding conveying support columns (632) at both ends. The dust removal duct (633) has a double-layer structure and corresponds to the ion duct and the blowing duct respectively. The air outlet (634) is symmetrically distributed in two groups with respect to the dust removal duct (633). Each group has multiple outlets arranged in a straight line and fixed to the side of the dust removal duct (633).
8. The automatic drying and dust removal system for cleanroom cloth according to claim 7, characterized in that: The dust removal brush assembly (64) includes: The control shaft (641) is rotatably positioned at the center of the conveying dust removal assembly (63); The connecting cylinder (642) is fixed on the control shaft (641) and located between the connecting collars (631); Multiple brush bristle groups (643) are arranged in a ring and fixed on the side wall of the connecting cylinder (642). The top of the brush bristles of the brush bristle group (643) and the dust removal duct (633) are on the inner wall of the same ring surface.