An odor removal device for glass fiber cloth production

By combining ventilation, leveling, and absorption mechanisms, the problem of deformation and wrinkling of fiberglass cloth during odor removal is solved, achieving efficient odor removal and air purification.

CN117488492BActive Publication Date: 2025-12-19CHANGZHOU PRO-TECH IND CO LTD
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Patent Information

Application Number
CN202311482523.X
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-11-09
Publication Date
2025-12-19
Estimated Expiration
2043-11-09

AI Technical Summary

Technical Problem

In existing technologies, direct wind action on fiberglass cloth can easily cause it to deform and wrinkle, and it is difficult to effectively remove odors, resulting in low work efficiency.

Method used

It adopts a combination design of air exchange mechanism, leveling mechanism, air suction mechanism and absorption mechanism, including upper cylinder and lower cylinder. It uses the first fan and the second fan to work together. The air force absorbs odors through leveling roller and activated carbon particles, ensuring uniform air force distribution and effective absorption.

Benefits of technology

It effectively prevents fiberglass cloth from deforming and wrinkling, improves odor removal efficiency, reduces odors entering the work environment, and protects the health of workers.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The application discloses a peculiar smell removing device for glass fiber cloth production, which comprises an outer box body, a feeding roller and a discharging roller arranged in the inner part of the outer box body, and an air exchange mechanism arranged on the outer box body and comprising an upper cylinder inlaid on the upper end of the outer box body and a first fan arranged on the upper end of the upper cylinder, wherein the lower end of the upper cylinder is fixedly provided with a baffle, the baffle is slidably provided with a first sleeve, the lower end of the first sleeve is communicatively provided with a first air outlet cylinder, air outlets are formed on the two sides of the lower end of the first air outlet cylinder, and an avoiding hole is formed in the middle part of the lower end of the first air outlet cylinder. The peculiar smell removing device for glass fiber cloth production blows air and sucks air at the same time, accelerates the air circulation in the outer box body, has high working efficiency, and blows out and sucks in the air in the range around the glass fiber cloth, is targeted, and reduces the peculiar smell from entering the working environment of workers.
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Description

TECHNICAL FIELD

[0001] The application relates to the technical field of glass fiber cloth production, and particularly relates to a peculiar smell removing device for glass fiber cloth production. BACKGROUND

[0002] The glass fiber cloth is also called glass fiber geotextile. The glass fiber cloth is an inorganic non-metallic material with excellent performance. A large amount of peculiar smell is generated on the surface of the glass fiber cloth during the processing and production of the glass fiber cloth. Therefore, the peculiar smell of the glass fiber cloth is removed in advance during the production of the glass fiber cloth. The peculiar smell of the glass fiber cloth is treated during the conveying of the glass fiber cloth in a sealed box. However, the peculiar smell discharged from the glass fiber cloth is not treated during the treatment, and thus the peculiar smell directly flows into the working environment, thereby causing harm to the health of the workers.

[0003] For example, the peculiar smell removing device for glass fiber cloth processing and production disclosed in CN114517364A comprises a box body, two conveying rollers are installed on the two side walls of the box body through supports, glass fiber cloth is arranged between the two conveying rollers, the glass fiber cloth penetrates through the two side walls of the box body, a heating plate is installed at the bottom of the box body, a fixed ring is fixedly connected to the upper end of the box body, a connecting plate is fixedly connected to the inner wall of the fixed ring, a plurality of negative pressure impellers are rotatably connected to the side wall of the connecting plate through vertical rods, two filter screens are fixedly connected to the inner wall of the fixed ring, and activated carbon is arranged between the side walls of the two filter screens and the inner wall of the fixed ring. The peculiar smell in the box body can be extracted through the rotation of the plurality of negative pressure impellers, and then the peculiar smell flows out through the activated carbon. At this time, the activated carbon can absorb the peculiar smell, thereby ensuring the cleanliness of the discharged gas.

[0004] The above-mentioned patent still has the following defects: only a unidirectional fan is arranged, the wind directly acts on the glass fiber cloth, the glass fiber cloth is easily blown up, the glass fiber cloth is deformed and wrinkled, it is still difficult to remove the peculiar smell on the glass fiber cloth, and the working efficiency is low. Therefore, the peculiar smell removing device for glass fiber cloth production is proposed to solve the above-mentioned problems. SUMMARY

[0005] The application aims to provide a peculiar smell removing device for glass fiber cloth production, so as to solve the problem that the wind directly acts on the glass fiber cloth, the glass fiber cloth is easily blown up, the glass fiber cloth is deformed and wrinkled, it is still difficult to remove the peculiar smell on the glass fiber cloth, and the working efficiency is low.

[0006] To achieve the above-mentioned purpose, the application provides the following technical scheme: a peculiar smell removing device for glass fiber cloth production, comprising an outer box body, an inlet roller and an outlet roller are arranged in the inner part of the outer box body;

[0007] Further comprising:

[0008] The air exchange mechanism is arranged on the outer box body, and comprises an upper cylinder body inlaid on the upper end of the outer box body and a first fan arranged on the upper end of the upper cylinder body.

[0009] The leveling mechanism comprises a first leveling roller rotatably installed in the avoiding hole.

[0010] The air suction mechanism comprises a lower cylinder body and a second fan arranged on the lower end of the lower cylinder body.

[0011] The absorption mechanism is arranged in the lower cylinder body, and comprises activated carbon particles.

[0012] Preferably, support legs are fixedly installed at both ends of the outer box body, and stable plates are fixedly installed at both ends of the inner side wall of the outer box body, both ends of the feeding roller and the discharging roller are rotatably connected with the stable plates, a limiting plate is installed on the bottom wall of the outer box body, a first elastic member is slidably installed at one end of the limiting plate, a ventilation opening is arranged at the bottom of the outer box body, and the position of the ventilation opening corresponds to the second fan.

[0013] Preferably, the air exchange mechanism further comprises a piston plate slidably installed in the upper cylinder body, the piston plate is fixedly installed at the upper end of the first sleeve, an air inlet is further formed in the upper end of the piston plate and communicates with the first sleeve, and a second elastic member is jointly installed between the piston plate and the baffle.

[0014] Preferably, a driving mechanism is jointly connected between the upper cylinder body and the lower cylinder body, the driving mechanism comprises first threaded blocks fixedly installed at both ends of the upper cylinder body and a second threaded block slidably installed at the lower end of the lower cylinder body, a bidirectional threaded lead screw is threadedly installed between the first threaded blocks and the second threaded block, a motor is connected to the upper end of the bidirectional threaded lead screw, and the motor is fixedly installed at the upper end of the outer box body.

[0015] Preferably, the air suction mechanism further comprises a stable sleeve fixedly installed on the outer periphery of the lower cylinder body, a rack plate is fixedly installed at one end of the stable sleeve, both ends of the stable sleeve are fixedly connected with the first elastic members, and a sliding groove is formed in the side wall of the lower cylinder body.

[0016] Preferably, the driving mechanism further comprises an incomplete gear fixedly installed at the lower end of the bidirectional screw rod, a rotating rod rotatably installed at the lower end of the incomplete gear and a sliding block fixedly installed at one end of the second threaded block, the incomplete gear is in meshing connection with the rack plate, the rotating rod is fixedly installed on the bottom wall of the outer box body and the sliding block is slidingly installed in the sliding groove.

[0017] Preferably, the flattening mechanism is further arranged in the lower cylinder, the flattening mechanism further comprises a first rotating shaft rotatably installed in the first sleeve and a first rotating fan blade rotatably installed at the outer periphery of the first rotating shaft, the first air outlet cylinder is rotatably installed with a second rotating shaft at the inside, the second rotating shaft is fixedly connected with one end of the first flattening roller, a belt pulley is fixedly installed on the first rotating shaft and the second rotating shaft, and a first belt body is jointly connected between the two belt pulleys.

[0018] Preferably, a second sleeve and a second air outlet cylinder in communication with the second sleeve are fixedly installed on the air suction mechanism, a through hole is formed in the second air outlet cylinder, and a second flattening roller is rotatably installed in the through hole.

[0019] Preferably, the absorbing mechanism comprises a third rotating shaft rotatably installed on the second air outlet cylinder and a fourth rotating shaft rotatably installed on the second sleeve, a second belt body is jointly connected between the third rotating shaft and the fourth rotating shaft, a plurality of retainer holders are installed on the second belt body, and the activated carbon particles are installed on the corresponding retainer holders.

[0020] Preferably, the absorbing mechanism further comprises a guide plate fixedly installed on the second belt body, a second rotating fan blade is further rotatably installed in the second sleeve, and a third belt body is jointly connected between the fourth rotating shaft and the second rotating fan blade.

[0021] Compared with the prior art, the present application has the following beneficial effects:

[0022] 1. Fiberglass cloth is held between the first and second leveling rollers. Air is blown out from the air outlets by the first fan, located on both sides of the first leveling roller. The blown air diffuses obliquely to both ends, maintaining a certain distance between the air outlets and the fiberglass cloth to prevent the cloth from being caught in multiple air vents. This effectively prevents vent blockage and damage to the fiberglass cloth. With the combined action of the first and second fans, blowing and suction occur simultaneously, accelerating air circulation within the outer casing, resulting in high work efficiency. Furthermore, the blowing and suction range is targeted around the fiberglass cloth, reducing the entry of odors into the workers' work environment and minimizing harm. As one end of the fiberglass cloth is slowly transported, odors are removed from the entire cloth, ensuring smooth operation. This solves the problems of the prior art where direct airflow onto the fiberglass cloth easily blows it up, causing deformation and wrinkles, and is also difficult to remove odors, resulting in low work efficiency.

[0023] 2. The piston plate, air inlet, second elastic element, first sleeve and first air outlet work together to buffer the wind force. The up and down movement of the piston plate provides time for the first fan to adjust the wind force, which greatly reduces the sudden impact of wind force on the fiberglass cloth and prevents irreversible damage to the fiberglass cloth. The effect is good.

[0024] 3. Adjustment of the distance between the first and second leveling rollers: When the first and second leveling rollers are clamped at the upper and lower ends of the fiberglass cloth, the lower cylinder can be driven to reciprocate left and right during the adjustment of the distance between the first and second threaded blocks through the cooperation of the stabilizing sleeve, rack plate, slide groove, incomplete gear, rotating rod, and slider. This increases the suction range of the second fan, so that the fiberglass cloth can be swept left and right during loading and unloading. This not only removes dust inside the box, but also expands the deodorization range on the fiberglass cloth, greatly ensuring that the beginning and end of the fiberglass cloth can be deodorized, and greatly improving work efficiency.

[0025] 4. Under the action of the upper cylinder, the first rotating fan blade, the first rotating shaft, the first belt body, the second rotating shaft, and the second leveling roller, the first rotating fan blade rotates and the first leveling roller rotates synchronously. Similarly, the second leveling roller inside the lower cylinder rotates. The rotation directions of the first leveling roller and the second leveling roller are not the same, which makes it easier to drive the fiberglass cloth between them to move, further playing a leveling role on the fiberglass cloth and making it less prone to wrinkles.

[0026] 5. The second fan generates suction, the second rotating fan blades rotate, and the activated carbon particles rotate on the second belt body. The circulating activated carbon particles can achieve the maximum absorption range. The guide plate rotates with the inner wall of the second sleeve, which greatly purifies the air and reduces air pollution. Attached Figure Description

[0027] Figure 1 It is the overall structure schematic view of the present application;

[0028] Figure 2 It is the overall plan view of the present application;

[0029] Figure 3 It is the overall structure schematic view of the present application; Figure 2 The section view at A-A;

[0030] Figure 4 It is the first sleeve structure schematic view of the present application;

[0031] Figure 5 It is the air exchange mechanism, air suction mechanism structure schematic view of the present application;

[0032] Figure 6 It is the outer box body bottom view of the present application;

[0033] Figure 7 It is the leveling mechanism structure schematic view of the present application;

[0034] Figure 8 It is the overall structure schematic view of the present application; Figure 3 The enlarged view at B.

[0035] In the figure: 1, outer box body; 11, support leg; 12, stabilizing plate; 13, limiting plate; 14, first elastic member; 15, ventilation opening; 2, feeding roller; 3, discharging roller; 4, air exchange mechanism; 41, upper cylinder; 46, first fan; 42, baffle; 43, piston plate; 431, air inlet; 44, first sleeve; 45, second elastic member; 47, first air outlet cylinder; 48, air outlet; 49, avoiding hole; 5, air suction mechanism; 51, lower cylinder; 52, stabilizing sleeve; 53, rack plate; 54, sliding groove; 55, second sleeve; 56, second air outlet cylinder; 57, second leveling roller; 58, through hole; 59, second fan; 6, driving mechanism; 61, first threaded block; 62, second threaded block; 63, bidirectional threaded screw; 64, motor; 65, incomplete gear; 66, rotating rod; 67, sliding block; 7, leveling mechanism; 71, first rotating shaft; 72, first rotating fan blade; 73, pulley; 74, first belt body; 75, second rotating shaft; 76, first leveling roller; 8, absorption mechanism; 81, third rotating shaft; 82, fourth rotating shaft; 83, second belt body; 84, retainer; 85, activated carbon particles; 86, second rotating fan blade; 87, guide plate; 88, third belt body. DETAILED DESCRIPTION

[0036] Clearly, the embodiments described are only a part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments of the present application, all other embodiments obtained by a person of ordinary skill in the art without creative effort belong to the scope of protection of the present application.

[0037] Embodiment one: please refer to Figures 1-7 The present application provides a technical solution: an odor removal device for glass fiber cloth production, comprising an outer box body 1, the inside of the outer box body 1 is provided with an inlet roller 2 and an outlet roller 3, the glass fiber cloth passes through the inlet roller 2 and the outlet roller 3 in turn, and the odor removal treatment is carried out in the outer box body 1.

[0038] It also includes an air exchange mechanism 4, a leveling mechanism 7, a suction mechanism 5 and an absorption mechanism 8.

[0039] The air exchange mechanism 4 is arranged on the outer box body 1, and the air exchange mechanism 4 includes an upper cylinder 41 inlaid on the upper end of the outer box body 1 and a first fan 46 arranged on the upper end of the upper cylinder 41, the lower end of the upper cylinder 41 is fixedly installed with a baffle 42, the baffle 42 is slidably installed with a first sleeve 44, the lower end of the first sleeve 44 is communicatively installed with a first air outlet cylinder 47, air outlets 48 are formed on both sides of the lower end of the first air outlet cylinder 47, an avoiding hole 49 is formed in the middle part of the lower end of the first air outlet cylinder 47, and the first fan 46 is opened. When the air outlet 48 blows air towards the glass fiber cloth, it is beneficial to carry away the surface odor and toxic gas.

[0040] The leveling mechanism 7 includes a first leveling roller 76 rotatably installed in the avoiding hole 49, the first leveling roller 76 rolls on the glass fiber cloth, which helps to level the glass fiber cloth and reduce the marks of wind blowing.

[0041] The suction mechanism 5 includes a lower cylinder 51 and a second fan 59 arranged on the lower end of the lower cylinder 51, the second fan 59 generates suction after being opened, which exhausts the odor and toxic gas in the inner part of the outer box body 1 outside the box.

[0042] The absorption mechanism 8 is arranged in the inner part of the lower cylinder 51, and the absorption mechanism 8 includes active carbon particles 85, a plurality of active carbon particles 85 are arranged, and the suction generated by the second fan 59 causes the air to pass through the active carbon particles 85 and be exhausted outward, which helps to absorb and purify the odor and toxic gas in the inner part of the outer box body 1.

[0043] In the embodiment, the glass fiber cloth passes through the feeding roller 2, the first air outlet cylinder 47 and the discharging roller 3 in sequence, is clamped between the first leveling roller 76 and the second leveling roller 57, the first fan 46 is turned on, the air outside is brought into the upper cylinder 41, and then is blown out from the first sleeve 44, the first air outlet cylinder 47 and the air outlet 48, the air outlet 48 is located on the two sides of the first leveling roller 76, the blown air spreads to both ends in an inclined manner, the air outlet 48 is a certain distance from the glass fiber cloth, and the glass fiber cloth will not be rolled into the multiple air outlets, so that the air outlet 48 is effectively prevented from being blocked and the glass fiber cloth is prevented from being damaged, the second fan 59 is turned on, air in the box body and on the surface of the glass fiber cloth is sucked into the lower cylinder 51, is purified by the activated carbon particles 85 in the lower cylinder 51, and is finally discharged outside the box.

[0044] The first sleeve 44 and the first air outlet cylinder 47 are arranged in the upper cylinder 41, air is concentrated, the glass fiber cloth is accurately deodorized, the length of the first sleeve 44 and the first air outlet cylinder 47 is consistent with the length of the glass fiber cloth, and the deodorization range is large.

[0045] Under the cooperation of the first fan 46 and the second fan 59, blowing and suction are simultaneously performed, air circulation in the outer box body 1 is accelerated, the blowing and suction ranges are both around the glass fiber cloth, the air is targeted, the harmfulness of the odor to the workers is reduced, the odor on the entire glass fiber cloth can be removed when one end of the glass fiber cloth is slowly transported, and the work flow is ensured.

[0046] Embodiment two: please refer to Figures 1-4 The two ends of the outer box body 1 are fixedly provided with support legs 11, the two ends of the side wall in the outer box body 1 are fixedly provided with stable plates 12, the two ends of the feeding roller 2 and the discharging roller 3 are rotationally connected with the stable plates 12, a limiting plate 13 is arranged on the bottom wall of the outer box body 1, one end of the limiting plate 13 is slidably provided with a first elastic member 14, the lowermost end of the support leg 11 is lower than the lowermost end of the outer box body 1, the support leg 11 supports the outer box body 1, the feeding roller 2 and the discharging roller 3 are both provided with two, the glass fiber cloth is transported between the two feeding rollers 2 and the two discharging rollers 3, and the bottom of the outer box body 1 is provided with a ventilation opening 15, the position of the ventilation opening 15 corresponds to the second fan 59.

[0047] The air changing mechanism 4 further includes a piston plate 43 slidably arranged in the upper cylinder 41, the piston plate 43 is fixedly arranged on the upper end of the first sleeve 44, the upper end of the piston plate 43 is further provided with an air inlet 431 in communication with the first sleeve 44, and the piston plate 43 and the baffle 42 are jointly provided with a second elastic member 45.

[0048] In the embodiment, when the wind force generated by the first fan 46 is too large, the wind speed blown out from the air outlet 48 is larger, the wind-driven piston plate 43 moves downward, the piston plate 43 presses the second elastic member 45, the space inside the upper cylinder 41 at the upper end of the piston plate 43 is expanded, and the wind force is buffered. After the staff adjusts the first fan 46 and the wind force of the first fan 46 is reduced, the piston plate 43 is reset under the action of the second elastic member 45, and the normal flow rate of the wind in the first sleeve 44 and the first air outlet cylinder 47 is ensured.

[0049] The cooperation between the piston plate 43, the air inlet 431, the second elastic member 45, the first sleeve 44 and the first air outlet cylinder 47 buffers the wind force, the up-and-down movement of the piston plate 43 provides an adjustment time for the wind force of the first fan 46, and the irreversible damage of the glass fiber cloth caused by the sudden impact of the wind force on the glass fiber cloth is greatly reduced, and the use effect is good.

[0050] Embodiment three: please refer to Figures 1-5 The driving mechanism 6 is commonly connected between the upper cylinder 41 and the lower cylinder 51, the driving mechanism 6 comprises a first threaded block 61 fixedly installed at both ends of the upper cylinder 41 and a second threaded block 62 slidably installed at the lower end of the lower cylinder 51, a bidirectional threaded screw rod 63 is threadedly installed between the first threaded block 61 and the second threaded block 62, the upper end of the bidirectional threaded screw rod 63 is connected with a motor 64, the motor 64 is fixedly installed at the upper end of the outer box body 1, the threads at the upper and lower ends of the bidirectional threaded screw rod 63 are oppositely arranged, and the upper and lower ends are threadedly connected with the first threaded block 61 and the second threaded block 62.

[0051] The air suction mechanism 5 further comprises a stabilizing sleeve 52 fixedly installed at the outer periphery of the lower cylinder 51, one end of the stabilizing sleeve 52 is fixedly installed with a rack plate 53, both ends of the stabilizing sleeve 52 are fixedly connected with the first elastic member 14, and a sliding groove 54 is formed in the side wall of the lower cylinder 51.

[0052] The driving mechanism 6 further comprises an incomplete gear 65 fixedly installed at the lower end of the bidirectional threaded screw rod 63, a rotating rod 66 rotatably installed at the lower end of the incomplete gear 65 and a sliding block 67 fixedly installed at one end of the second threaded block 62, the incomplete gear 65 is in meshing connection with the rack plate 53, the rotating rod 66 is fixedly installed on the bottom wall of the outer box body 1, the sliding block 67 is slidably installed in the sliding groove 54, and only half a circle of gear teeth is arranged on the incomplete gear 65.

[0053] In the embodiment, the motor 64 is fixed on the outer box body 1. After being turned on, the bidirectional screw rod 63 rotates, and the first threaded block 61 and the second threaded block 62 rotate simultaneously inward or outward, so that the force and the distance of the wind acting on the glass fiber cloth can be adjusted. The staff adjusts the first threaded block 61 and the second threaded block 62, so that the first leveling roller 76 and the second leveling roller 57 at the upper and lower ends are in contact with the glass fiber cloth, the flat running of the glass fiber cloth is ensured, the air outlet 431 near the glass fiber cloth can directly facilitate the removal of the peculiar smell on the glass fiber cloth, and the first threaded block 61 and the second threaded block 62 need to be adjusted when the glass fiber cloth is fed or discharged, so that the glass fiber cloth is clamped and operated conveniently, use is convenient, the flatness of the glass fiber cloth is ensured, and deformation is not easy to occur.

[0054] During the rotation of the second threaded block 62, the incomplete gear 65 rotates synchronously, the half-tooth on the incomplete gear 65 is engaged with the rack plate 53, and the rack plate 53, the stable sleeve 52 and the lower cylinder 51 slide about the sliding block 67. One side of the stable sleeve 52 extrudes the first elastic member 14. When the end of the incomplete gear 65 without teeth is turned to the rack plate 53, the rack plate 53, the stable sleeve 52 and the lower cylinder 51 are reset under the action of the first elastic member 14. The lower cylinder 51 can be reciprocated left and right by repeating the operation. When the first leveling roller 76 and the second leveling roller 57 are clamped at the upper and lower ends of the glass fiber cloth, the end of the incomplete gear 65 without teeth is turned to the rack plate 53. At this time, the second threaded block 62 is in the reset state, which is convenient for subsequent odor removal work.

[0055] Through the cooperation between the stable sleeve 52, the rack plate 53, the sliding groove 54, the incomplete gear 65, the rotating rod 66 and the sliding block 67, the lower cylinder 51 can be driven to reciprocate left and right during the adjustment of the distance between the first threaded block 61 and the second threaded block 62, the air suction range of the second fan 59 is increased, the glass fiber cloth can be swept left and right when feeding or discharging, dust in the outer box body 1 can be removed, the odor removal range on the glass fiber cloth is expanded, and the first and last positions on the glass fiber cloth can be deodorized.

[0056] Embodiment four: please refer to Figure 3 、 Figure 7 The leveling mechanism 7 is further arranged in the lower cylinder 51. The leveling mechanism 7 further comprises a first rotating shaft 71 rotatably arranged in the first sleeve 44 and a first rotating fan blade 72 rotatably arranged on the outer periphery of the first rotating shaft 71. The first air outlet cylinder 47 is rotatably arranged with a second rotating shaft 75. The second rotating shaft 75 is fixedly connected with one end of the first leveling roller 76. The first rotating shaft 71 and the second rotating shaft 75 are both fixedly arranged with a belt pulley 73. The two belt pulleys 73 are jointly connected with a first belt body 74.

[0057] The suction mechanism 5 is fixedly installed with a second sleeve 55 and a second air outlet 56 connected to the second sleeve 55. The second air outlet 56 has a through hole 58, and a second leveling roller 57 is rotatably installed in the through hole 58.

[0058] In this embodiment, after the first fan 46 is turned on, the air flows into the upper cylinder 41, driving the first rotating fan blade 72 to rotate. The first rotating shaft 71 on one side of the first rotating fan blade 72 is rotatably connected to the second rotating shaft 75 through the first belt body 74. Therefore, the first leveling roller 76 connected to the second rotating shaft 75 rotates synchronously. Similarly, the second leveling roller 57 inside the lower cylinder 51 rotates, which plays a role in leveling and pushing the fiberglass cloth. The first leveling roller 76 and the second leveling roller 57 rotate in opposite directions, which facilitates the movement of the fiberglass cloth between them, and plays a role in leveling the fiberglass cloth, making it less prone to wrinkles.

[0059] Example 5: Please refer to Figure 3 , Figure 8 The absorption mechanism 8 includes a third rotating shaft 81 rotatably mounted on the second air outlet duct 56 and a fourth rotating shaft 82 rotatably mounted on the second sleeve 55. The third rotating shaft 81 and the fourth rotating shaft 82 are connected together by a second belt body 83. Multiple retainers 84 are installed on the second belt body 83, and multiple activated carbon particles 85 are respectively installed on the corresponding retainers 84.

[0060] The absorption mechanism 8 also includes a guide plate 87 fixedly installed on the second belt body 83, a second rotating fan blade 86 rotating inside the second sleeve 55, and a third belt body 88 connected together between the fourth rotating shaft 82 and the second rotating fan blade 86.

[0061] In this embodiment, after the second fan 59 is turned on, it generates suction, and the second rotating fan blade 86 rotates under the action of the wind. The second belt body 83 rotates, and the retainer 84, activated carbon particles 85, and guide plate 87 rotate about the second belt body 83. Dust and odorous gases enter from the through hole 58 into the second air outlet 56 and the second sleeve 55, and are blown over the surface of multiple activated carbon particles 85. The activated carbon particles 85 absorb the odors and toxic gases, and finally are discharged from the second fan 59 and the vent 15, thus completing the entire operation.

[0062] The circulating activated carbon granules 85 can achieve the maximum absorption range, and the rotation of the guide plate 87 and the inner wall of the second sleeve 55 greatly purifies the air and reduces air pollution.

[0063] The contents not described in detail in this specification are existing technologies known to those skilled in the art.

[0064] Although the present application has been described in detail with reference to the foregoing embodiments, the technical solutions recorded in the foregoing embodiments can be modified, or some of the technical features can be replaced by equivalent features, by those skilled in the art, any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present application shall be included in the protection scope of the present application.

Claims

1. An odor removal device for glass cloth production, comprising an outer box body (1), the inside of the outer box body (1) is provided with an inlet roller (2) and an outlet roller (3); characterized in that Further comprising: an air exchange mechanism (4) provided on the outer box body (1), the air exchange mechanism (4) comprises an upper cylinder (41) inlaid on the upper end of the outer box body (1) and a first fan (46) provided on the upper end of the upper cylinder (41), the lower end of the upper cylinder (41) is fixedly installed with a baffle (42), the baffle (42) is slidably installed with a first sleeve (44), the lower end of the first sleeve (44) is communicatively installed with a first air outlet cylinder (47), the lower end of the first air outlet cylinder (47) is provided with air outlets (48) on both sides, and the lower end of the first air outlet cylinder (47) is provided with an avoiding hole (49) in the middle part; a leveling mechanism (7) comprising a first leveling roller (76) rotatably installed in the avoiding hole (49); an air suction mechanism (5) comprising a lower cylinder (51) and a second fan (59) provided on the lower end of the lower cylinder (51); the air exchange mechanism (4) further comprises a piston plate (43) slidably installed in the upper cylinder (41), the piston plate (43) is fixedly installed on the upper end of the first sleeve (44), the upper end of the piston plate (43) is further provided with an air inlet (431) in communication with the first sleeve (44), and the piston plate (43) and the baffle (42) are jointly installed with a second elastic element (45); the leveling mechanism (7) is further provided in the lower cylinder (51), and the leveling mechanism (7) further comprises a first rotating shaft (71) rotatably installed in the first sleeve (44) and a first rotating fan blade (72) rotatably installed on the outer periphery of the first rotating shaft (71), a second rotating shaft (75) is rotatably installed in the first air outlet cylinder (47), one end of the second rotating shaft (75) is fixedly connected with the first leveling roller (76), and a belt pulley (73) is fixedly installed on the first rotating shaft (71) and the second rotating shaft (75), and a first belt body (74) is jointly connected between the two belt pulleys (73); the air suction mechanism (5) is fixedly installed with a second sleeve (55) and a second air outlet cylinder (56) communicated with the second sleeve (55), the second air outlet cylinder (56) is provided with a through hole (58), and a second leveling roller (57) is rotatably installed in the through hole (58).

2. The odor removal device for glass fabric production according to claim 1, characterized in that: Further comprising: An absorption mechanism (8) is arranged inside the lower cylinder (51), and the absorption mechanism (8) comprises activated carbon particles (85); the absorption mechanism (8) comprises a third rotating shaft (81) rotatably arranged on the second air outlet cylinder (56) and a fourth rotating shaft (82) rotatably arranged on the second sleeve (55), and a second belt body (83) is commonly connected between the third rotating shaft (81) and the fourth rotating shaft (82), a plurality of retainer holders (84) are arranged on the second belt body (83), and the activated carbon particles (85) are arranged on the corresponding retainer holders (84); The absorption mechanism (8) further comprises a guide plate (87) fixedly arranged on the second belt body (83), and a second rotating fan blade (86) is rotatably arranged in the second sleeve (55), and a third belt body (88) is commonly connected between the fourth rotating shaft (82) and the second rotating fan blade (86).

3. The odor removing device for glass fabric production according to claim 2, characterized in that, A driving mechanism (6) is commonly connected between the upper cylinder (41) and the lower cylinder (51), the driving mechanism (6) comprises first threaded blocks (61) fixedly arranged at both ends of the upper cylinder (41) and a second threaded block (62) slidingly arranged at the lower end of the lower cylinder (51), a bidirectional threaded screw rod (63) is threadedly arranged between the first threaded blocks (61) and the second threaded block (62), and an upper end of the bidirectional threaded screw rod (63) is connected with a motor (64), and the motor (64) is fixedly arranged at the upper end of the outer box body (1).

4. The odor removing device for glass fabric production according to claim 3, characterized in that, The air suction mechanism (5) further comprises a stable sleeve (52) fixedly arranged on the outer periphery of the lower cylinder (51), a rack plate (53) is fixedly arranged at one end of the stable sleeve (52), both ends of the stable sleeve (52) are fixedly connected with first elastic members (14), and a sliding groove (54) is arranged on the side wall of the lower cylinder (51). The driving mechanism (6) further comprises an incomplete gear (65) fixedly arranged at the lower end of the bidirectional threaded screw rod (63), a rotating rod (66) rotatably arranged at the lower end of the incomplete gear (65), and a sliding block (67) fixedly arranged at one end of the second threaded block (62), the incomplete gear (65) is in meshing connection with the rack plate (53), the rotating rod (66) is fixedly arranged on the bottom wall of the outer box body (1), and the sliding block (67) is slidingly arranged in the sliding groove (54).

5. The odor removing device for glass fabric production according to claim 4, characterized in that, Both ends of the outer box body (1) are fixedly arranged with supporting legs (11), both ends of the inner side wall of the outer box body (1) are fixedly arranged with stable plates (12), both ends of the feeding roller (2) and the discharging roller (3) are rotatably connected with the stable plates (12), a limiting plate (13) is arranged on the bottom wall of the outer box body (1), one end of the limiting plate (13) is slidingly arranged with the first elastic members (14), a ventilation opening (15) is arranged at the bottom of the outer box body (1), and the position of the ventilation opening (15) corresponds to the second fan (59).

Citation Information

Patent Citations

  • Odor removal device for glass fabric processing and production

    CN114517364A

  • Odor eliminating device for non-woven fabric production

    CN211199759U