Fiber base cloth winding equipment based on rubber blanket production

By introducing air-cooled and water-cooled components into the fiber-based cloth winding equipment, the slack problem caused by excessive humidity during winding is solved, and a higher quality winding effect and more environmentally friendly equipment operation is achieved.

CN120024731AInactive Publication Date: 2025-05-23CHANGZHOU NEW DISTRICT SHENGHUI TEXTILE CO LTD
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Patent Information

Application Number
CN202510514220.4
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-23
Publication Date
2025-05-23
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

The existing fiber-based cloth winding equipment cannot effectively control the humidity and temperature of the fiber-based cloth, causing the fiber-based cloth to relax during winding, affecting the winding quality.

Method used

A fiber-based cloth winding device including air-cooled components and water-cooled components is designed, and the fiber-based cloth is cooled and cooled through an air-cooled box and a water-cooled roller to ensure that it reaches appropriate humidity and temperature before winding.

Benefits of technology

It effectively prevents the slack problem caused by excessive humidity during rolling of the fiber base cloth, and improves the winding quality of the fiber base cloth and the environmental protection performance of the equipment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses fiber base cloth winding equipment based on rubber blanket production, and relates to the technical field of rubber blanket production. Vertical plates are fixedly connected to the two sides of the machine tool, mounting frames are fixedly connected to the vertical plates on the two sides, rotating rods are rotationally mounted on the mounting frames on the two sides, winding rollers are fixedly connected to the rotating rods, and a hot air drying assembly is arranged on the machine tool. The hot air drying assembly comprises a drying pipe, fixing rings are fixedly connected to the two sides of the machine tool, the two ends of the drying pipe are inserted into the fixing rings on the two sides correspondingly, one end of the drying pipe is connected with the air inlet pipe through a pipeline, and the other end of the drying pipe is connected with the air return pipe through a pipeline. And through the hot air drying assembly arranged before winding, the dryness of the fiber base cloth during winding can be further improved, the situation that the fiber base cloth absorbs water in the winding process is effectively prevented, and the winding quality of the fiber base cloth is improved.
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Description

Technical Field

[0001] The invention relates to the technical field of rubber cloth production, in particular to a fiber-based cloth winding device based on rubber cloth production. Background Art

[0002] The rubber blanket is the covering of the transfer cylinder on the offset printing press; a component of the lining. The rubber blanket is a composite product consisting of a rubber coating and a base material (such as fabric). In indirect lithography, it is used to transfer ink from the printing plate to the substrate.

[0003] Most of the existing fiber-based cloth winding equipment used for rubber cloth production utilizes a winding roller driven by a motor to wind up the fiber-based cloth used in production.

[0004] The fiber-based fabric needs to be dried and cooled before winding. The purpose of drying is to prevent the fiber-based fabric from absorbing moisture and expanding, which leads to looseness during winding. The main purpose of cooling is to prevent the temperature inside the coil from being too high, which leads to the accumulation of thermal stress. However, the existing winding equipment for fiber-based fabrics generally does not have the function of drying the fiber-based fabrics when winding them, so the fiber-based fabrics absorb moisture and expand, which makes the fiber-based fabrics loose during winding. This phenomenon has also become a problem that people in this field need to solve urgently. Summary of the invention

[0005] The object of the present invention is to provide a fiber-based cloth winding device based on rubber cloth production to solve the problems raised in the above background technology.

[0006] In order to solve the above technical problems, the present invention provides the following technical solutions: a fiber-based cloth winding device based on rubber cloth production, comprising a machine tool and a controller; both sides of the machine tool are fixedly connected with vertical plates, both sides of the vertical plates are fixedly connected with mounting frames, both sides of the mounting frames are rotatably mounted with rotating rods, one end of the rotating rod is fixedly connected with a winding driving member, and the rotating rod is fixedly connected with a winding roller; A fixing plate is fixedly connected between the vertical plates on both sides, a first mounting rod and a second mounting rod are fixedly connected to the fixing plate, a water cooling assembly is fixedly connected to the first mounting rod, and an air cooling assembly is fixedly connected to the second mounting rod; the air cooling assembly is used to cool down the dried fiber-based cloth, and comprises an air cooling box, the air cooling box is fixedly connected to the second mounting rod, a drying detection plate is fixedly connected to the air cooling box via a vertical rod, and a hot air drying assembly is provided on the machine tool; The hot air drying assembly includes a drying tube, and fixing rings are fixedly connected to both sides of the machine tool. Both ends of the drying tube are respectively inserted into the fixing rings on both sides. One end of the drying tube is connected to the pipeline between the air inlet pipe, and the other end of the drying tube is connected to the pipeline between the air return pipe. A drying chamber is provided inside the drying tube, and a vent is provided on the drying chamber. The fixing rings on both sides are fixedly connected with sleeves, the interior of the sleeves is provided with a receiving cavity, the receiving cavity is slidably connected with an adjusting tube, the adjusting tube is in sliding contact with the drying tube, a multi-stage electric push rod is fixedly installed on the fixing ring, the fixed end of the multi-stage electric push rod is fixedly connected to the fixing ring, and the output end of the multi-stage electric push rod is fixedly connected to the adjusting tube; The fixing rings on both sides are fixedly connected with vertical plates, and a sliding driving member is fixedly connected to the vertical plate on one side. The output end of the sliding driving member is fixedly connected with a threaded rod through a coupling, and the end of the threaded rod away from the sliding driving member is rotatably connected to the vertical plate on the other side through a bearing. A sliding block is threadedly connected to the threaded rod, and a sleeve is fixedly connected to the sliding block. The sleeve is slidably mounted on the drying tube, and the sliding block slides through a limit rod, and both ends of the limit rod are respectively fixedly connected to the vertical plates on both sides.

[0007] According to the above technical scheme, the air cooling component also includes a through groove and an air pump, the through groove is used for the fiber-based cloth to pass through it, an air cavity is opened inside the air cooling box, and an air cooling port is opened on the air cavity; the air pump is fixedly installed on the machine tool, and the air outlet of the air pump is fixedly connected to an air inlet pipe, the air inlet pipe and the air cooling box are connected by a pipeline, the other end of the air cooling box is connected to a return air duct, a return air pump is fixedly installed on the return air duct, and air stop valves are fixedly installed on both the air inlet pipe and the return air duct.

[0008] According to the above technical solution, the water-cooling component is used for secondary cooling of the fiber-based cloth after air cooling, and includes a water-cooling roller, which is installed on a first mounting rod. Two groups of water-cooling rollers are provided, and a water temperature sensor is fixedly installed inside the water-cooling roller. A space for the fiber-based cloth to pass through is left between the two groups of water-cooling rollers, and the two sides of the fiber-based cloth are in sliding contact with the surfaces of the two water-cooling rollers respectively.

[0009] According to the above technical solution, a fixing block is fixedly connected to the first mounting rod, the two water-cooling rollers are sleeved on the fixing block, the fixing block is fixedly connected to a connecting rod, and the connecting rod is fixedly connected to a temperature detection plate.

[0010] According to the above technical solution, a warm water drying mechanism is provided on the machine tool, and the warm water drying mechanism includes a drying roller, the interior of the drying roller is a hollow structure, one end of the drying roller is connected to a water inlet pump through a second rotary joint pipe, and the other end of the drying roller is connected to a return water pump through another set of second rotary joint pipes.

[0011] According to the above technical solution, a rotating driving member is fixedly installed on the vertical plate, and a transmission disk is fixedly connected to the output end of the rotating driving member. A transmission groove is provided on the drying roller, and a rectangular groove is provided on the fixed plate. A belt is sleeved on the transmission groove and the transmission disk.

[0012] According to the above technical scheme, the outlet pipe of the water inlet pump is connected to the water inlet pipe, and the other end of the water inlet pipe is connected to the first water inlet pipe and the second water inlet pipe in sequence, the first water inlet pipe is fixedly installed with a first water stop valve, the second water inlet pipe is fixedly installed with a second water stop valve, the first water inlet pipe and the second water inlet pipe are respectively connected to the water-cooled roller pipe through a first rotating joint, the other end of the water-cooled roller is connected to the first water outlet pipe and the second water outlet pipe through another group of first rotating joint pipes, the first water outlet pipe and the second water outlet pipe are respectively fixedly installed with a third water stop valve and a fourth water stop valve, the first water outlet pipe and the second water outlet pipe are both connected to a drain pipe through pipes, the drain pipe is connected to the return water pump pipe, and the outlet end of the return water pump is connected to the drying roller through a pipe.

[0013] According to the above technical solution, an auxiliary drying component is provided in the air cooling box, and the auxiliary drying includes a drying driving member, the output end of the drying driving member is fixedly connected with a driving gear, the driving gear is meshed with a driven gear, and the driven gear and the driving gear are both arranged in an air cavity, the mounting rod on the driven gear is rotatably connected to the inner wall of the air cavity, the driven gear is fixedly connected to the mounting rod, a rotating tube is fixedly connected to the mounting rod, an air guide duct is connected to the pipe on the rotating tube, the air guide duct and the return air duct are connected by a pipe, a circular hole is provided on the inner bottom surface of the rotating tube, a wind plate is fixedly connected to the bottom of the rotating tube, and an air guide hole is provided on the inner bottom surface of the wind plate.

[0014] According to the above technical solution, a movable tube is sleeved on the outside of the rotating tube, an adjusting drive member is fixedly connected to the inner side wall of the through groove, the output end of the adjusting drive member is horizontally arranged and fixedly connected to the movable tube, the movable tube is a hollow structure, retaining rings are slidably connected on both sides of the movable tube, the open ends of the retaining rings on both sides are fixedly connected to pull plates, and guide rods are slidably penetrated on the pull plates on both sides.

[0015] According to the above technical solution, the two ends of the guide rod are respectively fixedly connected to the two inner side surfaces of the through groove, a square plate is fixedly connected to the side wall of the movable tube, a first driving member is fixedly connected to the left side of the square plate, an output end of the first driving member is fixedly connected to the left pull plate, a second driving member is fixedly connected to the right side of the square plate, an output end of the second driving member is fixedly connected to the right pull plate.

[0016] Compared with the prior art, the beneficial effects achieved by the present invention are as follows: the present invention, by arranging a drying component before the winding process of the winding roller, can detect the moisture content and the temperature inside the fiber-based cloth while winding the fiber-based cloth, and can prevent the fiber-based cloth from becoming loose due to excessive moisture content and excessive humidity during winding, thereby affecting the winding quality of the fiber-based cloth. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] The accompanying drawings are used to provide a further understanding of the present invention and constitute a part of the specification. Together with the embodiments of the present invention, they are used to explain the present invention and do not constitute a limitation of the present invention. In the accompanying drawings: Figure 1 It is a schematic diagram of the overall structure of the present invention; Figure 2 It is a schematic diagram of a partial three-dimensional structure of the present invention; Figure 3 It is a schematic diagram of the cross-sectional structure of the water-cooling roller of the present invention; Figure 4 It is a schematic diagram of the three-dimensional structure of the drying roller of the present invention; Figure 5 It is a schematic diagram of the partial cross-sectional structure of the drying tube of the present invention; Figure 6 The present invention Figure 2 A schematic diagram of the enlarged structure of the middle part A; Figure 7 The present invention Figure 2 A magnified schematic diagram of the structure of the middle B section; Figure 8 It is a schematic diagram of the three-dimensional structure of the air cooling box of the present invention; Fig. 9 It is a schematic diagram of the cross-sectional structure of the air-cooling box of the present invention; Fig.10 The present invention Fig. 9 Enlarged schematic diagram of the structure of the middle C section; Fig.11 The present invention Fig. 9 A magnified schematic diagram of the structure of the middle D section; Fig.12 It is a schematic diagram of the installation position of the return water pump of the present invention; Fig.13 It is a schematic diagram of the water circulation pipeline of the present invention.

[0018] In the figure: 1. Machine tool; 2. Mounting frame; 21. Winding drive member; 22. Rotating rod; 23. Winding roller; 3. Vertical plate; 4. Water inlet pump; 41, first rotary joint; 411, first water inlet pipe; 4111, first water stop valve; 412, first water outlet pipe; 4121, third water stop valve; 42. Water-cooled roller; 421, second water inlet pipe; 4211, second water stop valve; 422, second water outlet pipe; 4221, fourth water stop valve; 43. Water inlet pipe; 44. Drain pipe; 45. Drying roller; 451. Transmission groove; 452. Second rotary joint; 46. ​​Belt; 47. Rotating drive member; 471. Transmission plate; 48. Water temperature sensor; 49. Return water pump; 5. Controller; 6. Air cooling box; 61, through slot; 611, air cavity; 6111, air cooling port; 62. Air inlet pipe; 63. Air return pipe; 64. Air stop valve; 65. Air return pump; 66. Air pump; 67. Drying tube; 671, drying chamber; 6711, ventilation opening; 672, sleeve; 6721, adjusting tube; 6722, multi-stage electric push rod; 673, fixing ring; 6731, vertical plate; 6732, sliding drive member; 6733, threaded rod; 6734, slider; 6735, limit rod; 6736, sleeve; 68, rotating tube; 681, wind plate; 682, round hole; 683, air guide hole; 684, drying drive member; 6841, driving gear; 6842, driven gear; 685, moving tube; 6851, retaining ring; 6852, square plate; 6853, pulling plate; 6854, guide rod; 6855, first driving member; 6856, second driving member; 69. Air duct; 7. Drying detection board; 8. Temperature detection board; 10. Fixing plate; 101. First mounting rod; 1011. Fixing block; 1012. Connecting rod; 102. Second mounting rod; 103. Rectangular groove. DETAILED DESCRIPTION

[0019] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.

[0020] See also Figure 1-13 The present invention provides a technical solution: a fiber-based cloth winding device based on rubber cloth production, comprising a machine tool 1 and a controller 5; the controller 5 is fixedly installed on the machine tool 1, both sides of the machine tool 1 are fixedly connected with vertical plates 3, both sides of the vertical plates 3 are fixedly connected with mounting frames 2, both sides of the mounting frames 2 are rotatably installed with rotating rods 22 through clamps, one end of the rotating rod 22 is fixedly connected with a winding driving member 21, and the rotating rod 22 is fixedly connected with a winding roller 23; A fixing plate 10 is fixedly connected between the vertical plates 3 on both sides, a first mounting rod 101 and a second mounting rod 102 are fixedly connected to the fixing plate 10, a water cooling assembly is fixedly connected to the first mounting rod 101, and an air cooling assembly is fixedly connected to the second mounting rod 102; The air cooling component is used to cool the dried fiber-based fabric, including: The air cooling box 6 is fixedly connected to the second mounting rod 102. The air cooling box 6 is provided with a through slot 61 for the fiber-based cloth to pass through. The air cooling box 6 is provided with an air cavity 611 inside, and an air cooling port 6111 is provided on the air cavity 611. An air pump 66 is fixedly mounted on the machine tool 1. An air outlet of the air pump 66 is fixedly connected to an air inlet pipe 62. The air inlet pipe 62 is connected to the air cooling box 6 through a pipeline. The other end of the air cooling box 6 is connected to a return air pipe 63 through a pipeline. A return air pump 65 is fixedly mounted on the return air pipe 63. Air check valves 64 are fixedly mounted on both the air inlet pipe 62 and the return air pipe 63. The water cooling component is used to perform secondary cooling on the fiber-based fabric after air cooling, including: The water-cooled roller 42 is mounted on the first mounting rod 101. Two groups of water-cooled rollers 42 are provided. A water temperature sensor 48 is fixedly installed inside the water-cooled roller 42. A space for the fiber-based cloth to pass through is reserved between the two groups of water-cooled rollers 42. The two sides of the fiber-based cloth are in sliding contact with the surfaces of the two water-cooled rollers 42 respectively.

[0021] It should be noted that the winding drive component 21 can be a motor.

[0022] It should be added that the water temperature sensor 48 is a prior art, which is electrically connected to the controller 5 through a wire and is used to detect the temperature of the cooling water in the water-cooled roller 42. This application will not go into details.

[0023] refer to Figure 1 , Figure 2 and Figure 3 After the fiber-based cloth is produced from the machine tool 1, the winding roller 23 is driven to rotate by the rotation of the output end of the winding driving member 21. When the winding roller 23 rotates, the fiber-based cloth produced by the machine tool 1 is wound up. During the winding process of the fiber-based cloth, the fiber-based cloth passes through the air cooling box 6 and the water-cooling roller 42 in sequence. When the fiber-based cloth passes through the air cooling box 6, the air pump 66 fixedly installed on the air inlet pipe 62 pumps the low-temperature air into the air cavity 611, and blows it to the surface of the fiber-based cloth through the air cooling port 6111 for air cooling.

[0024] When the air-cooled fiber-based cloth passes between the two water-cooled rollers 42, it is cooled for a second time by using the low-temperature cooling water in the water-cooled rollers 42, so that its internal temperature can be cooled when the fiber-based cloth is rolled up. This can further prevent the internal temperature of the fiber-based cloth from being too high when the winding roller 23 is rolling up the fiber-based cloth, causing internal thermal stress accumulation and affecting the use effect of the fiber-based cloth.

[0025] A fixing block 1011 is fixedly connected to the first mounting rod 101 , and the two water-cooling rollers 42 are sleeved on the fixing block 1011 . A connecting rod 1012 is fixedly connected to the fixing block 1011 , and a temperature detection plate 8 is fixedly connected to the connecting rod 1012 .

[0026] refer to Figure 1 , Figure 2 and Figure 7 The fixed block 1011 can be used to fix and install the two water-cooled rollers 42. At the same time, the temperature detection plate 8 is a long rectangular block. A through hole is provided inside the temperature detection plate 8. A temperature sensor 1 (not shown in the figure) is fixedly installed on the inner top surface and the inner bottom surface of the through hole.

[0027] It should be noted that the temperature sensor (not shown in the figure) is electrically connected to the controller 5 and is used to detect the temperature of the fiber-based cloth before it is rolled up. The temperature sensor 1 is a prior art and will not be described in detail in this application.

[0028] The air cooling box 6 is fixedly connected to the top of the second mounting rod 102 , and a drying detection plate 7 is fixedly connected to the air cooling box 6 via a vertical rod.

[0029] refer to Figure 1 and Figure 2 The drying detection plate 7 is a rectangular structure, a through hole is opened inside the drying detection plate 7, humidity sensors (not shown in the figure) are fixedly installed on the inner top surface and inner bottom surface of the through hole, and three groups of humidity sensors are arranged in the horizontal direction of the inner top surface and inner bottom surface of the through hole, and the three groups of humidity sensors are respectively located in the left section, the middle section and the right section of the drying detection plate 7.

[0030] It should be noted that the humidity sensor (not shown in the figure) is electrically connected to the controller 5 and is used to detect the humidity of the fiber-based cloth before it is rolled up. The humidity sensor is a prior art and will not be described in detail in this application.

[0031] The machine tool 1 is provided with a drying assembly, which includes a hot air drying mechanism and a warm water drying mechanism; The hot air drying mechanism includes a drying tube 67, and fixed rings 673 are fixedly connected on both sides of the machine tool 1. The two ends of the drying tube 67 are respectively inserted into the fixed rings 673 on both sides. One end of the drying tube 67 is connected to the pipeline between the air inlet pipe 62, and the other end of the drying tube 67 is connected to the pipeline between the return air pipe 63. A drying chamber 671 is opened inside the drying tube 67, and a ventilation port 6711 is opened on the drying chamber 671.

[0032] It should be noted that a temperature sensor 2 (not shown in the figure) is fixedly installed inside the drying tube 67. The temperature sensor is electrically connected to the controller 5. The temperature sensor 2 is used to detect the temperature of the dry air inside the drying tube 67. The temperature sensor 2 is a prior art and will not be described in detail in this application.

[0033] refer to Figure 1 , Figure 2 and Figure 5 , the hot air is pumped into the air inlet pipe 62 through the air pump 66, and the air stop valve 64 on the air inlet pipe 62 and the return air pipe 63 is closed. At this time, the hot air is pumped into the drying chamber 671 inside the drying pipe 67 through the air inlet pipe 62, and the hot air in the drying chamber 671 is blown onto the fiber-based cloth through the vent 6711 to dry the moisture inside it.

[0034] The fixing rings 673 on both sides are fixedly connected with sleeves 672, and an accommodating cavity is opened inside the sleeve 672. An adjusting tube 6721 is slidably connected in the accommodating cavity. The adjusting tube 6721 is in sliding contact with the drying tube 67, and a multi-stage electric push rod 6722 is fixedly installed on the fixing ring 673. The fixed end of the multi-stage electric push rod 6722 is fixedly connected to the fixing ring 673, and the output end of the multi-stage electric push rod 6722 is fixedly connected to the adjusting tube 6721.

[0035] It should be noted that the multi-stage electric push rod 6722 is a prior art and will not be described in detail in this application.

[0036] refer to Figure 5 The multi-stage electric push rod 6722 drives the regulating tube 6721 to slide in the horizontal direction of the drying tube 67 through the extension and contraction of the output end, so that the regulating tube 6721 can block the unused ventilation opening 6711, which can further improve the utilization rate of the dry air inside the drying tube 67.

[0037] The fixing rings 673 on both sides are fixedly connected with vertical plates 6731, and a sliding drive member 6732 is fixedly connected to the vertical plate 6731 on one side. The output end of the sliding drive member 6732 is fixedly connected with a threaded rod 6733 through a coupling, and the end of the threaded rod 6733 away from the sliding drive member 6732 is rotatably connected to the vertical plate 6731 on the other side through a bearing. A slider 6734 is threadedly connected to the threaded rod 6733, and a sleeve 6736 is fixedly connected to the slider 6734. The sleeve 6736 is slidably mounted on the drying tube 67, and a limit rod 6735 is slidably penetrated on the slider 6734, and both ends of the limit rod 6735 are respectively fixedly connected to the vertical plates 6731 on both sides.

[0038] It should be noted that the sliding drive member 6732 can be a motor.

[0039] It should be supplemented that the diameter of the sleeve 6736 is larger than the diameter of the adjusting tube 6721 , and the sleeve 6736 can be slidably mounted on the adjusting tube 6721 .

[0040] refer to Figure 5 The sliding drive member 6732 drives the threaded rod 6733 to rotate by rotating the output shaft. The rotation of the threaded rod 6733 indirectly drives the slider 6734 to slide in the horizontal direction of the threaded rod 6733, thereby driving the sleeve 6736 to slide in the horizontal direction of the drying tube 67, which is used to control the effective drying range of the drying tube 67. The limit rod 6735 is used to prevent the slider 6734 from rotating when moving with the threaded rod 6733.

[0041] The controller 5 has a built-in position identification module. When the dried fiber-based cloth passes through the drying detection plate 7, the built-in position identification module in the controller 5 and the humidity sensor arranged inside the drying detection plate 7 detect the dryness of the fiber-based cloth at different positions on the same horizontal line. The humidity sensor sends the undried and qualified parts to the controller 5 through the position identification module.

[0042] The fiber-based cloth is divided into a left section, a middle section and a right section at different positions on the same horizontal line. At this time, the detection conditions of the fiber-based cloth by the drying detection plate 7 are roughly divided into the following conditions: When the fiber-based cloth is not dried to the qualified position on the same horizontal line, there is only one section: When the unqualified position of drying is located at the left section of the fiber-based cloth, the winding action of the winding roller 23 on the fiber-based cloth is stopped, and the left regulating tube 6721 is moved to the leftmost side of the drying tube 67 through the multi-stage electric push rod 6722, and at the same time, the sliding drive member 6732 is started to drive the threaded rod 6733 to rotate, and the sleeve 6736 is driven to move to the middle section of the drying tube 67, and then the right regulating tube 6721 is driven to move to the left side through the multi-stage electric push rod 6722 until it contacts the right end of the sleeve 6736, and the vent 6711 on the left drying tube 67 is used to dry the unqualified position on the left section of the fiber-based cloth separately; When the unqualified position of drying is located at the right section of the fiber-based cloth, the winding action of the winding roller 23 on the fiber-based cloth is stopped, and the adjusting tube 6721 on the right is moved to the rightmost side of the drying tube 67 through the multi-stage electric push rod 6722, and at the same time, the sliding drive member 6732 is started to drive the threaded rod 6733 to rotate, driving the sleeve 6736 to move to the middle section of the drying tube 67, and then the left multi-stage electric push rod 6722 drives the adjusting tube 6721 on the left to move to the right until it contacts the left end of the sleeve 6736, and the vent 6711 on the right drying tube 67 is used to dry the unqualified position on the right section of the fiber-based cloth separately; When the unqualified position of drying is located in the middle section of the fiber-based cloth, the winding action of the winding roller 23 on the fiber-based cloth is suspended, and the adjusting tube 6721 on the right is moved to the left to the right side of the middle section of the drying tube 67 through the multi-stage electric push rod 6722, and at the same time, the sliding drive part 6732 is started to drive the threaded rod 6733 to rotate, driving the sleeve 6736 to move to the rightmost side of the drying tube 67, and then the multi-stage electric push rod 6722 on the left drives the adjusting tube 6721 on the left to move to the right to the left side of the middle section of the drying tube 67, and the vent 6711 on the middle section of the drying tube 67 is used to dry the unqualified position in the middle section of the fiber-based cloth separately.

[0043] When the fiber-based cloth is not dried properly on the same horizontal line, there are two sections: When the two sections that have not been dried and qualified are located at the left section and the right section of the fiber-based cloth respectively, the winding action of the winding roller 23 on the fiber-based cloth is stopped at this time, and the left regulating tube 6721 is moved to the leftmost side of the drying tube 67 through the multi-stage electric push rod 6722, and the right regulating tube 6721 is moved to the rightmost side of the drying tube 67 through the multi-stage electric push rod 6722, and at the same time, the sliding driving member 6732 is started to drive the threaded rod 6733 to rotate, and the sleeve 6736 is driven to move to the middle section of the drying tube 67, and then the vents 6711 on the left section and the right section of the drying tube 67 are used to dry the left section and the right section of the fiber-based cloth separately; When the two sections that have not been dried and are qualified are located at the left section and the middle section of the fiber-based cloth respectively, the winding action of the winding roller 23 on the fiber-based cloth is stopped at this time, and the adjusting tube 6721 on the left is moved to the leftmost side of the drying tube 67 through the multi-stage electric push rod 6722, and at the same time, the sliding drive member 6732 is started to drive the threaded rod 6733 to rotate, and the sleeve 6736 is driven to move rightward to the rightmost section of the drying tube 67, and the adjusting tube 6721 on the right is moved to the right side of the middle section of the drying tube 67 through the multi-stage electric push rod 6722, and then the ventilation holes 6711 on the left section and the middle section of the drying tube 67 are used to dry the left section and the middle section of the fiber-based cloth separately; When the two sections that have not been dried and qualified are respectively located in the right section and the middle section of the fiber-based cloth, the winding action of the winding roller 23 on the fiber-based cloth is suspended at this time, and the adjusting tube 6721 on the right is moved to the rightmost side of the drying tube 67 through the multi-stage electric push rod 6722, and at the same time, the sliding drive part 6732 is started to drive the threaded rod 6733 to rotate, driving the sleeve 6736 to move to the left to the leftmost section of the drying tube 67, and the adjusting tube 6721 on the left is moved to the left side of the middle section of the drying tube 67 through the multi-stage electric push rod 6722, and then the vents 6711 on the right section and the middle section of the drying tube 67 are used to dry the left section and the middle section of the fiber-based cloth separately.

[0044] When the dryness of the left section, the middle section and the right section of the fiber-based cloth on the same horizontal line is not up to standard, the drying element inside the drying tube 67 is damaged and needs to be shut down for maintenance.

[0045] The warm water drying mechanism includes a drying roller 45, the interior of which is a hollow structure. One end of the drying roller 45 is connected to the water inlet pump 4 through a second rotary joint 452 pipeline, and the other end of the drying roller 45 is connected to the return pump 49 through another set of second rotary joints 452 pipelines.

[0046] It should be noted that a temperature sensor three (not shown in the figure) is fixedly installed inside the drying roller 45. The temperature sensor is electrically connected to the controller 5. The temperature sensor three is used to detect the temperature of the drying water inside the drying roller 45. The temperature sensor three is a prior art and will not be described in detail in this application.

[0047] A rotating driving member 47 is fixedly mounted on the vertical plate 3, and a transmission disk 471 is fixedly connected to the output end of the rotating driving member 47. A transmission groove 451 is provided on the drying roller 45, and a rectangular groove 103 is provided on the fixed plate 10. A belt 46 is sleeved on the transmission groove 451 and the transmission disk 471.

[0048] It should be noted that the rotating driving member 47 may be a motor.

[0049] refer to Figure 1 , Figure 2 , Figure 4 and Figure 6 The rotating driving member 47 drives the transmission disc 471 to rotate by rotating the output shaft, and the transmission disc 471 indirectly drives the drying roller 45 to rotate through the belt 46 set on the transmission groove 451, which can further improve the drying effect of the high-temperature drying water inside the drying roller 45 on the fiber-based cloth.

[0050] The water outlet pipe of the water inlet pump 4 is connected to the water inlet pipe 43, and the other end of the water inlet pipe 43 is connected to the first water inlet pipe 411 and the second water inlet pipe 421 in sequence, the first water inlet pipe 411 is fixedly installed with a first water stop valve 4111, and the second water inlet pipe 421 is fixedly installed with a second water stop valve 4211, the first water inlet pipe 411 and the second water inlet pipe 421 are respectively connected to the water-cooled roller 42 through a first rotating joint 41, and the other end of the water-cooled roller 42 is connected to the first water outlet pipe 412 and the second water outlet pipe 422 through another group of first rotating joints 41, and the first water outlet pipe 412 and the second water outlet pipe 422 are respectively fixedly installed with a third water stop valve 4121 and a fourth water stop valve 4221, the first water outlet pipe 412 and the second water outlet pipe 422 are both connected to the drain pipe 44 through a pipe, the drain pipe 44 is connected to the return water pump 49 through a pipe, and the water outlet end of the return water pump 49 is connected to the drying roller 45 through a pipe.

[0051] It should be noted that the first water stop valve 4111 , the second water stop valve 4211 and the external valve (not numbered in the figure) are all existing technologies, and are all electrically connected to the controller 5 .

[0052] refer to Figure 2 , Figure 7 , Fig.12 and Fig.13 The water temperature sensor 48 detects a temperature value suitable for cooling the fiber-based cloth through its internal electronic components and sets it to a. When the water temperature sensor 48 inside the water-cooled roller 42 detects that the cooling water temperature inside it is higher than the set value a, the third water stop valve 4121 and the fourth water stop valve 4221 connected to the first water outlet pipe 412 and the second water outlet pipe 422 on one side of the water-cooled roller 42 are opened, and then the cooling water heated up due to heat dissipation inside the water-cooled roller 42 is pumped into the drying roller 45 by the return water pump 49 fixedly installed on the drain pipe 44, and then the third water stop valve 4121 and the fourth water stop valve 4221 are closed, the first water stop valve 4111 and the second water stop valve 4211 are opened, and the drying water cooled down due to drying in the drying roller 45 is pumped into the water-cooled roller 42 by the water inlet pump 4 for continued use in cooling the fiber-based cloth. By recycling the liquids with different temperatures in the water-cooled roller 42 and the drying roller 45, the energy used for drying and cooling the fiber-based cloth during winding can be further reduced, thereby improving the environmental performance of the equipment.

[0053] An auxiliary drying component is provided in the air cooling box 6, and the auxiliary drying includes a drying driving member 684. The output end of the drying driving member 684 is fixedly connected with a driving gear 6841, and the driving gear 6841 is meshed with a driven gear 6842. The driven gear 6842 and the driving gear 6841 are both arranged in the wind cavity 611. The mounting rod on the driven gear 6842 is rotatably connected to the inner wall of the wind cavity 611. The driven gear 6842 and the mounting rod are fixedly connected. A rotating tube 68 is fixedly connected to the mounting rod. The rotating tube 68 is connected with an air guide duct 69. The air guide duct 69 is connected to the return air duct 63 through a pipeline. A circular hole 682 is provided on the inner bottom surface of the rotating tube 68. A wind plate 681 is fixedly connected to the bottom of the rotating tube 68. An air guide hole 683 is provided on the inner bottom surface of the wind plate 681.

[0054] It should be noted that the drying drive component 684 can be a motor.

[0055] refer to Figure 1 , Figure 8 , Fig. 9 and Fig.10 The dry detection plate 7 detects the qualified dryness of the fiber-based fabric through the humidity sensor inside the dry detection plate 7 and sets it to b, and the qualified dryness setting value b is built in the controller 5. When the fiber-based fabric reaches the position of the dry detection plate 7 during winding, the humidity sensor inside the dry detection plate 7 detects that the dryness value in the fiber-based fabric is lower than the qualified dryness setting value b, and reduces the winding speed of the winding roller 23, and at the same time closes the air stop valve 64 on the air inlet pipe 62 and the return air pipe 63, and uses the return air pump 65 to pass the drying air through the air guide pipe 69. The dry drive member 684 drives the driving gear 6841 to rotate through the rotation of the output end, and the driving gear 6841 indirectly drives the driven gear 6842 to rotate through the meshing action, and the driven gear 6842 indirectly drives the rotating tube 68 and the wind plate 681 to rotate, and the air guiding direction of the air guide hole 683 opened on the wind plate 681 is directed toward the slowly wound fiber-based cloth with unqualified dryness to dry, so that the fiber-based cloth with unqualified dryness can be dried for a second time before winding.

[0056] A moving tube 685 is sleeved on the outside of the rotating tube 68, and an adjusting driving member (not shown in the figure) is fixedly connected to the inner side wall of the through groove 61. The output end of the adjusting driving member is horizontally arranged and fixedly connected to the moving tube 685. The moving tube 685 is a hollow structure. Retaining rings 6851 are slidably connected to both sides of the moving tube 685. Pull plates 6853 are fixedly connected to the open ends of the retaining rings 6851 on both sides. Guide rods 6854 are slidably penetrated through the pull plates 6853 on both sides. The two ends of the guide rods 6854 are respectively fixedly connected to the two inner side surfaces of the through groove 61. A square plate 6852 is fixedly connected to the side wall of the moving tube 685. A first driving member 6855 is fixedly connected to the left side of the square plate 6852. The output end of the first driving member 6855 is fixedly connected to the left pull plate 6853. A second driving member 6856 is fixedly connected to the right side of the square plate 6852. The output end of the second driving member 6856 is fixedly connected to the right pull plate 6853.

[0057] It should be noted that the adjusting drive member can be a cylinder, whose fixed end is rotatably set on the inner wall of the through groove 61 through a rotating seat (not shown in the figure), and whose output end is rotatably set between the rotating seat (not shown in the figure) and the movable tube 685.

[0058] It should be supplemented that the first driving member 6855 and the second driving member 6856 can be cylinders.

[0059] refer to Fig. 9 and Fig.11 The adjusting driving member (not shown in the figure) drives the moving tube 685 to move in the horizontal direction along the rotating tube 68 by extending and retracting the output end, the first driving member 6855 drives the left pull plate 6853 to slide in the horizontal direction by extending and retracting the output end thereof, and the second driving member 6856 drives the right pull plate 6853 to slide in the horizontal direction by extending and retracting the output end thereof, thereby performing secondary drying on different positions of the fiber-based fabric that are not dried to the standard; When the humidity sensor built into the drying detection plate 7 detects the dryness of the fiber-based cloth passing through its position, the fiber-based cloth is divided into left, middle and right sections at different positions on the same horizontal line. At this time, the detection conditions of the fiber-based cloth by the drying detection plate 7 are roughly divided into the following conditions: When the fiber-based cloth is not dried to the qualified position on the same horizontal line, there is only one section: When the undried qualified position is located at the left section of the fiber-based cloth, the winding action of the winding roller 23 on the fiber-based cloth is suspended, and the drying driving member 684 is started to drive the driving gear 6841 to rotate. The driving gear 6841 indirectly drives the driven gear 6842 to rotate through the meshing with the driven gear 6842. When the driven gear 6842 rotates, it drives the rotating tube 68 to rotate, so that the blowing angle of the air guide hole 683 on the wind plate 681 is adjusted to be inclined to blow toward the undried fiber-based cloth. At this time, the adjusting driving member is started to drive the moving tube 685 to move to the most On the right side, the first driving member 6855 on the left side is started to drive the left side pulling plate 6853 to be pulled out from the inside of the moving tube 685 to the left side of the middle section of the fiber-based cloth, and then the hot air in the drying tube 67 is pumped to the rotating tube 68 through the air guide duct 69 by the return air pump 65. At this time, the cooling component in the air cooling box 6 is closed, and the air guide holes 683 on the right section and the middle section of the air plate 681 are blocked to dry the unqualified left section of the fiber-based cloth separately. After drying, the return air pump 65 is turned off, and the cooling unit in the air cooling box 6 is started to cool it. When the undried qualified position is located at the right section of the fiber-based cloth, the winding action of the winding roller 23 on the fiber-based cloth is stopped, and the drying driving member 684 is started to drive the driving gear 6841 to rotate. The driving gear 6841 indirectly drives the driven gear 6842 to rotate through the meshing with the driven gear 6842. When the driven gear 6842 rotates, it drives the rotating tube 68 to rotate, so that the blowing angle of the air guide hole 683 on the wind plate 681 is adjusted to be inclined to blow toward the undried fiber-based cloth. At this time, the adjusting driving member is started to drive the moving tube 685 to move to the most On the left side, the first driving member 6855 on the right side is started to drive the right side pulling plate 6853 to be pulled out from the inside of the moving tube 685 to the right side to the right side of the middle section of the fiber-based cloth, and then the hot air in the drying tube 67 is pumped to the rotating tube 68 through the air guide duct 69 by the return air pump 65. At this time, the cooling component in the air cooling box 6 is closed, and the air guide holes 683 on the left and middle sections of the air plate 681 are blocked to dry the unqualified right section of the fiber-based cloth separately. After the drying is completed, the return air pump 65 is turned off, and the cooling unit in the air cooling box 6 is started to cool it; When the undried qualified position is located in the middle section of the fiber-based cloth, the winding action of the winding roller 23 on the fiber-based cloth is suspended, and the drying drive member 684 is started to drive the active gear 6841 to rotate, and the active gear 6841 indirectly drives the driven gear 6842 to rotate through the meshing with the driven gear 6842. When the driven gear 6842 rotates, it drives the rotating tube 68 to rotate, so as to adjust the blowing angle of the air guide hole 683 on the wind plate 681 to obliquely blow toward the undried fiber-based cloth. At this time, the adjusting drive member is started to drive the moving tube 685 to move to the leftmost side of the air cooling box 6, and then the first drive member 6855 on the right is started to drive the right pull plate 6853 to move from The interior of the movable tube 685 is pulled out to the right to the right side of the middle section of the fiber-based cloth. At this time, the baffle ring 6851 fixedly connected to the pulling plate 6853 is pulled out from the interior of the movable tube 685 to its outside, and the right section of the baffle ring 6851 after being pulled out contacts the rightmost end of the air-cooling box 6. Then, the hot air in the drying tube 67 is pumped into the rotating tube 68 through the air guide duct 69 by the return air pump 65. At this time, the cooling component in the air-cooling box 6 is closed, and the air guide holes 683 on the left and right sections of the air plate 681 are blocked to dry the unqualified middle section of the fiber-based cloth separately. After drying, the return air pump 65 is turned off, and the cooling unit in the air-cooling box 6 is started to cool it.

[0060] When the fiber-based cloth is not dried properly on the same horizontal line, there are two sections: When the two sections that are not dried and qualified are located at the left section and the right section of the fiber-based cloth respectively, the winding action of the winding roller 23 on the fiber-based cloth is stopped, and the drying driving member 684 is started to drive the driving gear 6841 to rotate. The driving gear 6841 indirectly drives the driven gear 6842 to rotate through the meshing with the driven gear 6842. When the driven gear 6842 rotates, it drives the rotating tube 68 to rotate, so that the blowing angle of the air guide hole 683 on the wind plate 681 is adjusted to be inclined to blow toward the undried Fiber-based cloth, at this time, the adjusting driving member is started to drive the moving tube 685 to move to the middle section of the air cooling box 6, and then the hot air in the drying tube 67 is pumped to the rotating tube 68 through the air guide tube 69 by the return air pump 65. At this time, the cooling component in the air cooling box 6 is closed, and the air guide hole 683 on the middle section of the air plate 681 is blocked to dry the left and right sections of the fiber-based cloth that are not dried and qualified separately. After drying, the return air pump 65 is turned off, and the cooling unit in the air cooling box 6 is started to cool it; When the two sections that are not dried and qualified are located at the left section and the middle section of the fiber-based cloth respectively, the winding action of the winding roller 23 on the fiber-based cloth is stopped, and the drying driving member 684 is started to drive the driving gear 6841 to rotate. The driving gear 6841 indirectly drives the driven gear 6842 to rotate through the meshing with the driven gear 6842. When the driven gear 6842 rotates, it drives the rotating tube 68 to rotate, so that the blowing angle of the air guide hole 683 on the wind plate 681 is adjusted to be inclined to blow toward the undried Fiber-based cloth, at this time, the adjusting driving member is started to drive the moving tube 685 to move to the right section of the air cooling box 6, and then the hot air in the drying tube 67 is pumped to the rotating tube 68 through the air guide pipe 69 by the return air pump 65. At this time, the cooling component in the air cooling box 6 is closed, and the air guide hole 683 on the right section of the air plate 681 is blocked to dry the left section and the middle section of the fiber-based cloth that are not dried and qualified separately. After drying, the return air pump 65 is turned off, and the cooling unit in the air cooling box 6 is started to cool it; When the two sections that are not dried and qualified are located at the right section and the middle section of the fiber-based cloth respectively, the winding action of the winding roller 23 on the fiber-based cloth is stopped, and the drying driving member 684 is started to drive the driving gear 6841 to rotate. The driving gear 6841 indirectly drives the driven gear 6842 to rotate through the meshing with the driven gear 6842. When the driven gear 6842 rotates, it drives the rotating tube 68 to rotate, so that the blowing angle of the air guide hole 683 on the wind plate 681 is adjusted to be inclined to blow toward the undried Fiber-based cloth, at this time, the adjusting driving member is started to drive the moving tube 685 to move to the left section of the air cooling box 6, and then the hot air in the drying tube 67 is pumped to the rotating tube 68 through the air guide pipe 69 by the return air pump 65. At this time, the cooling component in the air cooling box 6 is closed, and the air guide hole 683 on the left section of the air plate 681 is blocked to dry the right section and the middle section of the fiber-based cloth that are not dried and qualified separately. After drying, the return air pump 65 is turned off, and the cooling unit in the air cooling box 6 is started to cool it; When the dryness of the left, middle and right sections of the fiber-based cloth on the same horizontal line is not up to standard, the machine needs to be stopped for maintenance.

[0061] The present invention provides a drying component before the winding process of the winding roller 23, so that the moisture content and the temperature inside the fiber-based cloth can be detected while the fiber-based cloth is being wound, thereby preventing the fiber-based cloth from being loosened due to excessive moisture content during winding, thereby affecting the winding quality of the fiber-based cloth.

[0062] It should be noted that, in this article, relational terms such as first and second, etc. are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Moreover, the terms "include", "comprise" or any other variants thereof are intended to cover non-exclusive inclusion, so that a process, method, article or device including a series of elements includes not only those elements, but also other elements not explicitly listed, or also includes elements inherent to such process, method, article or device.

[0063] Finally, it should be noted that the above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Although the present invention has been described in detail with reference to the aforementioned embodiments, those skilled in the art can still modify the technical solutions described in the aforementioned embodiments or replace some of the technical features therein by equivalents. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present invention shall be included in the protection scope of the present invention.

Claims

1. A fiber-based cloth winding device for producing rubber cloth, comprising a machine tool (1) and a controller (5), characterized in that: Both ends of the outer side of the machine tool (1) are provided with mounting frames (2), and a rotatable winding roller (23) is provided between the mounting frames (2) on both sides; The machine tool (1) is provided with a drying detection plate (7), and the drying detection plate (7) is used to detect the dryness of the fiber-based cloth; The machine tool (1) is provided with a hot air drying component, the hot air drying component comprising a drying tube (67), the drying tube (67) being installed on the machine tool (1), a drying chamber (671) being provided inside the drying tube (67), and a vent (6711) being provided on the drying chamber (671); A fixing ring (673) is fixedly installed on both sides of the machine tool (1), and a vertical plate (6731) is fixedly connected to the fixing rings (673) on both sides. A slidable sleeve (6736) is provided between the vertical plates (6731) on both sides, and the sleeve (6736) is slidably sleeved on the drying tube (67); The fixing rings (673) on both sides are fixedly connected with sleeves (672), and a receiving cavity is provided inside the sleeve (672). An adjusting tube (6721) is slidably connected in the receiving cavity, and the adjusting tube (6721) is slidably sleeved with the drying tube (67).

2. The fiber-based cloth winding device based on rubber cloth production according to claim 1, characterized in that: The machine tool (1) is provided with a warm water drying mechanism, the warm water drying mechanism comprising a drying roller (45), the drying roller (45) being provided on the machine tool (1) for guiding and drying the fiber-based cloth, the interior of the drying roller (45) being a hollow structure, one end of the drying roller (45) being connected to a water inlet pump (4) via a second rotary joint (452) pipeline, and the other end of the drying roller (45) being connected to a water return pump (49) via another set of second rotary joint (452) pipelines.

3. The fiber-based cloth winding device based on rubber cloth production according to claim 2, characterized in that: The water outlet pipe of the water inlet pump (4) is connected to a water inlet pipe (43); the other end of the water inlet pipe (43) is connected to a first water inlet pipe (411) and a second water inlet pipe (421) in sequence; a first water stop valve (4111) is fixedly mounted on the first water inlet pipe (411); a second water stop valve (4211) is fixedly mounted on the second water inlet pipe (421); the first water inlet pipe (411) and the second water inlet pipe (421) are respectively connected to the water cooling roller (42) through a first rotating joint (41); the other end of the water cooling roller (42) is connected to a first water stop valve (4111) and a second water stop valve (4211) are fixedly mounted on the second water inlet pipe (421); the first water inlet pipe (411) and the second water inlet pipe (421) are respectively connected to the water cooling roller (42) through a first rotating joint (41); The first end of the water outlet pipe (412) and the second water outlet pipe (422) are connected to the first water outlet pipe (412) and the second water outlet pipe (422) through another set of first rotating joints (41) pipelines; a third water stop valve (4121) and a fourth water stop valve (4221) are fixedly mounted on the first water outlet pipe (412) and the second water outlet pipe (422) respectively; the first water outlet pipe (412) and the second water outlet pipe (422) are both connected to a drainage pipe (44) through pipelines; the drainage pipe (44) is connected to a return water pump (49) through a pipeline; and the water outlet end of the return water pump (49) is connected to a drying roller (45) through a pipeline.

4. The fiber-based cloth winding device based on rubber cloth production according to claim 2, characterized in that: Both sides of the machine tool (1) are fixedly connected with vertical plates (3), a fixed plate (10) is fixedly connected between the vertical plates (3) on both sides, a rotating drive member (47) is fixedly mounted on the vertical plates (3), an output end of the rotating drive member (47) is fixedly connected with a transmission disk (471), a transmission groove (451) is provided on the drying roller (45), a rectangular groove (103) is provided on the fixed plate (10), and a belt (46) is sleeved on the transmission groove (451) and the transmission disk (471).

5. The fiber-based cloth winding device based on rubber cloth production according to claim 4, characterized in that: The fixing plate (10) is fixedly connected to a second mounting rod (102), the second mounting rod (102) is fixedly connected to an air cooling assembly, the air cooling assembly comprising an air cooling box (6) fixedly connected to the second mounting rod (102), an air cavity (611) being provided inside the air cooling box (6), an air cooling port (6111) being provided on the air cavity (611), the air cooling assembly further comprising a through slot (61) and an air pump (66), the through slot (61) being used for the fiber-based cloth to pass therethrough, the air cooling box (6) being provided inside with an air cavity (6111) and an air cooling port (6111). An air cavity (611) is provided, and an air cooling port (6111) is opened on the air cavity (611); the air pump (66) is fixedly mounted on the machine tool (1); the air outlet of the air pump (66) is fixedly connected to an air inlet pipe (62); the air inlet pipe (62) is connected to an air cooling box (6) by a pipeline; the other end of the air cooling box (6) is connected to a return air pipe (63); a return air pump (65) is fixedly mounted on the return air pipe (63); and air stop valves (64) are fixedly mounted on both the air inlet pipe (62) and the return air pipe (63).

6. The fiber-based cloth winding device based on rubber cloth production according to claim 5, characterized in that: A first mounting rod (101) is fixedly connected to the fixing plate (10), and a water cooling assembly is arranged on the first mounting rod (101). The water cooling assembly comprises a water cooling roller (42), and the water cooling roller (42) is mounted on the first mounting rod (101). Two groups of water cooling rollers (42) are arranged, and a water temperature sensor (48) is fixedly installed inside the water cooling roller (42). A space for a fiber-based cloth to pass through is reserved between the two groups of water cooling rollers (42), and two surfaces of the fiber-based cloth are in sliding contact with the surfaces of the two water cooling rollers (42) respectively.

7. The fiber-based cloth winding device based on rubber cloth production according to claim 6, characterized in that: A fixing block (1011) is fixedly connected to the first mounting rod (101), the two water-cooling rollers (42) are sleeved on the fixing block (1011), the fixing block (1011) is fixedly connected to a connecting rod (1012), and the connecting rod (1012) is fixedly connected to a temperature detection plate (8).

8. The fiber-based cloth winding device based on rubber cloth production according to claim 5, characterized in that: An auxiliary drying assembly is provided in the air cooling box (6), and the auxiliary drying comprises a drying driving member (684), an output end of the drying driving member (684) is fixedly connected to a driving gear (6841), the driving gear (6841) is meshed with a driven gear (6842), the driven gear (6842) and the driving gear (6841) are both provided in the air cavity (611), and a mounting rod on the driven gear (6842) is rotatably connected to the inner wall of the air cavity (611). In the embodiment, the driven gear (6842) is fixedly connected to the mounting rod, a rotating tube (68) is fixedly connected to the mounting rod, an air guide tube (69) is connected to the rotating tube (68), the air guide tube (69) is connected to the return air tube (63) by a pipeline, a circular hole (682) is provided on the inner bottom surface of the rotating tube (68), a wind plate (681) is fixedly connected to the bottom of the rotating tube (68), and an air guide hole (683) is provided on the inner bottom surface of the wind plate (681).

9. The fiber-based cloth winding device based on rubber cloth production according to claim 8, characterized in that: The rotating tube (68) is sleeved with a moving tube (685) on its outer side, an adjusting driving member is fixedly connected to the inner side wall of the through slot (61), an output end of the adjusting driving member is horizontally arranged and fixedly connected to the moving tube (685), the moving tube (685) is a hollow structure, retaining rings (6851) are slidably connected to both sides of the moving tube (685), the open ends of the retaining rings (6851) on both sides are fixedly connected to pull plates (6853), and guide rods (6854) are slidably passed through the pull plates (6853) on both sides.

10. The fiber-based cloth winding device based on rubber cloth production according to claim 9, characterized in that: The two ends of the guide rod (6854) are respectively fixedly connected to the two inner side surfaces of the through groove (61); a square plate (6852) is fixedly connected to the side wall of the movable tube (685); a first driving member (6855) is fixedly connected to the left side of the square plate (6852); an output end of the first driving member (6855) is fixedly connected to the left side pull plate (6853); a second driving member (6856) is fixedly connected to the right side of the square plate (6852); an output end of the second driving member (6856) is fixedly connected to the right side pull plate (6853).

Citation Information

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