Dehydration device for fiber cloth production

By introducing a centrifugal dewatering mechanism and a water storage chamber design into the fiber fabric production device, and combining the effects of extrusion and centrifugation, the problem of poor dewatering effect of existing devices has been solved, and a highly efficient dual dewatering effect has been achieved.

CN223705990UActive Publication Date: 2025-12-23SUZHOU GUOYUAN NEW FIBER TEXTILE TECH CO LTD
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Patent Information

Application Number
CN202422885743.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-26
Publication Date
2025-12-23
Estimated Expiration
2034-11-26

AI Technical Summary

Technical Problem

In the existing fiber fabric production process, simple extrusion roller dewatering devices are difficult to effectively remove moisture from fabrics with high moisture content or special fiber structures, resulting in poor dewatering effect.

Method used

A centrifugal dewatering mechanism is added to the extrusion dewatering device. Combining extrusion and centrifugal action, water is gradually extruded and thrown out by the centrifugal drum through multiple extrusion dewatering mechanisms. The inclined design of the water storage chamber facilitates water collection and discharge.

Benefits of technology

This technology enables dual dehydration of fiber fabrics, significantly improving dehydration effect and efficiency, and ensuring the drying quality and production efficiency of the fabrics.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a dewatering device for fiber cloth production, which comprises a workbench, one end of the top of the workbench is provided with an extrusion dewatering mechanism, the other end of the top of the workbench is provided with a centrifugal dewatering mechanism, the centrifugal dewatering mechanism comprises a centrifugal roller, one side of the centrifugal roller is provided with a feeding port, and the other side of the centrifugal roller is provided with a discharging port. The feeding port is communicated with the interior of the centrifugal roller, sliding rollers are rotationally connected to the inner top face and the inner bottom face of the feeding port, a winding shaft is rotationally connected to the interior of the centrifugal roller, a driving motor is installed on the back face of the centrifugal roller, and one end of the winding shaft is in transmission connection with the driving motor. The centrifugal dewatering mechanism is additionally arranged on the basis of an extrusion dewatering structure, after cloth is preliminarily extruded and dewatered, residual water in the cloth is further thrown out by the aid of centrifugal force generated by the centrifugal dewatering mechanism, the double dewatering mode is favorable for further removing the water in the cloth, and dewatering effect is improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to cloth production equipment technical field, concretely relates to a dewatering device for fiber cloth production. BACKGROUND

[0002] In the production process of fiber cloth, dewatering is a crucial link. After dyeing, printing or other wet treatment processes, fiber cloth often contains a large amount of water, which not only increases the difficulty of subsequent drying and finishing, but also may cause problems such as deformation, shrinkage or uneven color of the cloth. Therefore, efficient and stable dewatering device is of great significance to ensure the quality and efficiency of fiber cloth production.

[0003] The patent discloses a cloth dewatering machine, which comprises a rack, a squeezing wheel set is arranged on the rack, the squeezing wheel set comprises an upper squeezing roller and a lower squeezing roller, an extrusion gap is formed between the upper squeezing roller and the lower squeezing roller, when the cloth passes through the extrusion gap, it will be extruded by the upper squeezing roller and the lower squeezing roller, so as to achieve the purpose of dewatering.

[0004] Although the above-mentioned cloth dewatering device realizes the dewatering function of cloth to a certain extent and has the ability to adapt to cloth of different thickness to a certain extent, there are still some deficiencies, which limit the further improvement of the dewatering effect. The device mainly relies on the gap between the extrusion rollers to extrude the cloth to realize dewatering. Although this method is simple and direct, for some cloth with high water content or special fiber structure, simple extrusion may not be able to completely remove the water, resulting in poor dewatering effect.

[0005] Therefore, it is necessary to invent a dewatering device for fiber cloth production to solve the above problems. CONTENT OF THE UTILITY MODEL

[0006] The utility model aims at providing a dewatering device for fiber cloth production to solve the problems in the above-mentioned technology.

[0007] In order to realize the above-mentioned purpose, the utility model provides the following technical scheme: a dewatering device for fiber cloth production, comprising a workbench, an extrusion dewatering mechanism is arranged at one end of the top of the workbench, a centrifugal dewatering mechanism is arranged at the other end of the top of the workbench, the centrifugal dewatering mechanism comprises a centrifugal roller, a feeding port is formed in one side of the centrifugal roller, the feeding port is connected with the inside of the centrifugal roller, sliding rollers are rotatably connected to the inner top surface and the inner bottom surface of the feeding port, a winding shaft is rotatably connected to the inside of the centrifugal roller, a driving motor is installed on the back surface of the centrifugal roller, one end of the winding shaft is drivingly connected with the driving motor, a sealed hatch is installed on the front surface of the centrifugal roller, and water infiltration holes are formed in the inner bottom surface of the centrifugal roller.

[0008] By adding a centrifugal dewatering mechanism on the basis of the extrusion dewatering structure, double dewatering treatment of the fiber cloth is realized, and the dewatering effect is improved.

[0009] Preferably, a water storage cavity is formed in the workbench, and a first opening and a second opening are formed in the top of the workbench, and the first opening and the second opening are connected with the inside of the water storage cavity.

[0010] The water storage cavity is formed in the workbench, and the first opening and the second opening are connected with the dewatering mechanism, so that the water generated in the dewatering process is effectively collected and stored for subsequent processing.

[0011] Preferably, the extrusion dewatering mechanism is arranged above the first opening, the centrifugal dewatering mechanism is arranged above the second opening, and the water permeable hole is connected with the second opening.

[0012] The water removed by extrusion dewatering falls into the water storage cavity through the first opening, and the water removed by centrifugal dewatering also falls into the water storage cavity through the water permeable hole and the second opening.

[0013] Preferably, the inner bottom surface of the water storage cavity is inclined, a drain port is formed in the side of the workbench close to the lowest part of the inner bottom surface of the water storage cavity, a drain pipe is installed on one side of the workbench, and one end of the drain pipe is connected with the drain port.

[0014] Because the inner bottom surface of the water storage cavity is inclined, the water will naturally gather towards the drain port and finally be discharged out of the device through the drain pipe.

[0015] Preferably, the number of extrusion dewatering mechanisms is multiple, the multiple extrusion dewatering mechanisms are arranged in a straight line array, and a blower is installed between any two adjacent extrusion dewatering mechanisms.

[0016] Multiple extrusion dewatering mechanisms are arranged in a straight line array, and a blower is installed between any two adjacent mechanisms, which improves the dewatering efficiency and effect, and the blower can also help to remove part of the water on the surface of the cloth.

[0017] Preferably, the extrusion dewatering mechanism comprises a loading support, a water scraping plate, an upper extrusion roller, a lower extrusion roller and an electric push rod, the loading support is installed on the top of the first opening, the water scraping plate is arranged below the loading support, the electric push rod is installed on the top of the loading support, and the bottom end of the electric push rod penetrates through the loading support and is fixedly connected with the top of the water scraping plate.

[0018] The electric push rod can drive the water scraping plate to rise and fall, so as to adjust the distance between the upper extrusion roller and the lower extrusion roller.

[0019] Preferably, the upper extrusion roller is rotationally connected to the bottom of the wiper, and the lower extrusion roller is rotationally connected to the inside of the water storage cavity, and the lower extrusion roller is arranged directly below the upper extrusion roller.

[0020] The cloth is pressed by the upper extrusion roller and the lower extrusion roller to a certain extent, so that the water in the cloth is squeezed out.

[0021] Preferably, two telescopic rods are arranged between the loading support and the wiper, and the two telescopic rods are symmetrically distributed about the center line of the wiper.

[0022] The telescopic rods are arranged to improve the stability of the wiper during lifting.

[0023] In the above technical solution, the technical effects and advantages of the utility model are provided:

[0024] 1. The cloth is gradually extruded by the plurality of extrusion dehydration mechanisms, and the pressure difference between the upper extrusion roller and the lower extrusion roller is utilized to effectively remove most of the water in the cloth. After the cloth is preliminarily extruded and dehydrated, the centrifugal force generated by the centrifugal dehydration mechanism is utilized to further throw out the residual water in the cloth. This double dehydration method is beneficial to further removing the water in the cloth and improves the dehydration effect.

[0025] 2. By designing the inner bottom surface of the water storage cavity to be inclined, the water removed during the dehydration process flows naturally to the lowest part of the water storage cavity after entering the water storage cavity, and is finally smoothly discharged out of the device through the drain pipe and enters the subsequent water treatment or recycling process. BRIEF DESCRIPTION OF DRAWINGS

[0026] Figure 1 It is a first perspective overall structure schematic view of the utility model;

[0027] Figure 2 It is a second perspective overall structure schematic view of the utility model;

[0028] Figure 3 It is a structure schematic view of the centrifugal dehydration mechanism of the utility model;

[0029] Figure 4 It is a partial structure schematic view of the extrusion dehydration mechanism of the utility model;

[0030] Figure 5 It is a structure sectional view of the workbench of the utility model.

[0031] EXPLANATION OF REFERENCE NUMBERS:

[0032] 1, workbench; 2, extrusion dewatering mechanism; 3, centrifugal dewatering mechanism; 4, centrifugal drum; 5, slide roller; 6, winding shaft; 7, drive motor; 8, sealed hatch; 9, water seepage hole; 10, No. 1 opening; 11, No. 2 opening; 12, drain; 13, drain pipe; 14, air blower; 15, load support; 16, squeegee; 17, upper extrusion roller; 18, lower extrusion roller; 19, electric push rod; 20, telescopic rod. DETAILED DESCRIPTION

[0033] In order for those skilled in the art to better understand the technical scheme of the utility model, the utility model will be further described in detail below in combination with the drawings.

[0034] The utility model provides a kind of dewatering device for fiber cloth production as shown in Figures 1-5 The utility model provides a kind of dewatering device for fiber cloth production as shown in

[0035] In one aspect of the embodiment, the workbench 1 is internally provided with a water storage cavity, the top of the workbench 1 is provided with a first opening 10 and a second opening 11, the first opening 10 and the second opening 11 are both connected with the inside of the water storage cavity, the extrusion dehydration mechanism 2 is arranged above the first opening 10, the centrifugal dehydration mechanism 3 is arranged above the second opening 11, the water seepage hole 9 is connected with the second opening 11, the bottom surface of the water storage cavity is arranged to be inclined, the workbench 1 is provided with a water outlet 12 near the lowest part of the bottom surface of the water storage cavity, the workbench 1 is provided with a drain pipe 13, one end of the drain pipe 13 is connected with the water outlet 12, the number of the extrusion dehydration mechanism 2 is multiple, the multiple extrusion dehydration mechanisms 2 are arranged in a straight line array, a blower 14 is arranged between every two adjacent extrusion dehydration mechanisms 2, the extrusion dehydration mechanism 2 comprises a loading support 15, a water scraping plate 16, an upper extrusion roller 17, a lower extrusion roller 18 and an electric push rod 19, the loading support 15 is arranged on the top of the first opening 10, the water scraping plate 16 is arranged below the loading support 15, the electric push rod 19 is arranged on the top of the loading support 15, the bottom end of the electric push rod 19 penetrates through the loading support 15 and is fixedly connected with the top of the water scraping plate 16, the upper extrusion roller 17 is rotatably connected with the bottom of the water scraping plate 16, the lower extrusion roller 18 is rotatably connected with the inside of the water storage cavity, the lower extrusion roller 18 is arranged directly below the upper extrusion roller 17, two telescopic rods 20 are arranged between the loading support 15 and the water scraping plate 16, and the two telescopic rods 20 are symmetrically arranged about the center line of the water scraping plate 16.

[0036] The working principle of the utility model:

[0037] According to the description attached Figures 1-5 In use of the utility model, first, one end of the fiber cloth to be dehydrated is sequentially arranged through all the extrusion dehydration mechanisms 2, so that the cloth can smoothly pass between the upper extrusion roller 17 and the lower extrusion roller 18 of each mechanism, then, the one end of the cloth is guided to the feeding port of the centrifugal dehydration mechanism 3 and enters the inside of the centrifugal roller 4 through the feeding port, in the inside of the centrifugal roller 4, the starting point of the cloth is wound on the winding shaft 6, so that the cloth can be gradually wound with the rotation of the winding shaft 6;

[0038] The driving motor 7 is started to drive the winding shaft 6 to rotate at a slow speed, so that the cloth is slowly pulled into the inside of the centrifugal roller 4 and gradually wound, in the process, the cloth sequentially passes through all the extrusion dehydration mechanisms 2;

[0039] The electric push rods 19 of the multiple extrusion dehydration mechanisms 2 are started one by one, the water scraping plate 16 is pressed down through the pushing force of the electric push rod 19, the cloth is clamped between the upper extrusion roller 17 and the lower extrusion roller 18, according to the moisture content and thickness of the cloth, the telescopic amount of the electric push rod 19 is adjusted, the roller spacing of each extrusion dehydration mechanism 2 is gradually reduced, so that the water in the cloth is more effectively squeezed out, at the same time, it is also ensured that the movement of the cloth is not affected;

[0040] In the process of cloth passing through multiple extrusion dehydration mechanisms 2, the air blower 14 is started at the same time to blow the cloth surface to help remove part of the water;

[0041] When the cloth passes through all the extrusion dehydration mechanisms 2 and completes the preliminary dehydration, the cloth is completely entered into the centrifugal drum 4 and is wound on the winding shaft 6, the speed of the driving motor 7 is adjusted to drive the winding shaft 6 and the cloth to rotate at a faster speed, and the residual water in the cloth is thrown out by using the centrifugal force;

[0042] After the centrifugal dehydration is completed, the driving motor 7 is closed, the centrifugal drum 4 is waited to stop rotating, the sealing cabin door 8 is opened, the dehydrated cloth is taken off from the winding shaft 6, and subsequent processing or storage is carried out;

[0043] In the whole dehydration process, the water removed by the extrusion dehydration falls into the water storage cavity through the first opening 10, the water removed by the centrifugal dehydration also falls into the water storage cavity through the water seepage hole 9 and the second opening 11, and since the inner bottom surface of the water storage cavity is inclined, the water will naturally converge to the water outlet 12 and finally be discharged out of the device through the drain pipe 13.

Claims

1. A dewatering device for fiber fabric production, comprising a workbench (1), characterized in that: The top end of the workbench (1) is provided with a squeezing dehydration mechanism (2), and the other end of the top of the workbench (1) is provided with a centrifugal dehydration mechanism (3). The centrifugal dehydration mechanism (3) includes a centrifugal drum (4). A feed inlet is provided on one side of the centrifugal drum (4). The feed inlet is connected to the inside of the centrifugal drum (4). The inner top surface and inner bottom surface of the feed inlet are rotatably connected with a sliding roller (5). A winding shaft (6) is rotatably connected inside the centrifugal drum (4). A drive motor (7) is installed on the back of the centrifugal drum (4). One end of the winding shaft (6) is connected to the drive motor (7) for transmission. A sealed door (8) is installed on the front of the centrifugal drum (4). A seepage hole (9) is provided on the inner bottom surface of the centrifugal drum (4).

2. The dewatering device for fiber fabric production according to claim 1, characterized in that: The workbench (1) has a water storage cavity inside. The top of the workbench (1) has a first opening (10) and a second opening (11), both of which are connected to the inside of the water storage cavity.

3. The dewatering device for fiber fabric production according to claim 2, characterized in that: The extrusion dehydration mechanism (2) is located above the first opening (10), the centrifugal dehydration mechanism (3) is located above the second opening (11), and the bottom of the seepage hole (9) is connected to the second opening (11).

4. The dewatering device for fiber fabric production according to claim 2, characterized in that: The bottom surface of the water storage cavity is inclined, and a drain outlet (12) is provided at the lowest point of the bottom surface of the water storage cavity on one side of the workbench (1). A drain pipe (13) is installed on one side of the workbench (1), and one end of the drain pipe (13) is connected to the drain outlet (12).

5. The dewatering device for fiber fabric production according to claim 2, characterized in that: The number of the extrusion dehydration mechanism (2) is set to multiple, and the multiple extrusion dehydration mechanisms (2) are arranged in a linear array. A blower (14) is installed between each two adjacent extrusion dehydration mechanisms (2).

6. The dewatering device for fiber fabric production according to claim 5, characterized in that: The extrusion dehydration mechanism (2) includes a loading bracket (15), a scraper (16), an upper extrusion roller (17), a lower extrusion roller (18), and an electric push rod (19). The loading bracket (15) is installed on the top of the first opening (10), the scraper (16) is located below the loading bracket (15), and the electric push rod (19) is installed on the top of the loading bracket (15). The bottom end of the electric push rod (19) passes through the loading bracket (15) and is fixedly connected to the top of the scraper (16).

7. The dewatering device for fiber fabric production according to claim 6, characterized in that: The upper squeezing roller (17) is rotatably connected to the bottom of the scraper (16), and the lower squeezing roller (18) is rotatably connected to the inside of the water storage cavity. The lower squeezing roller (18) is located directly below the upper squeezing roller (17).

8. A dewatering device for fiber fabric production according to claim 6, characterized in that: Two telescopic rods (20) are installed between the loading bracket (15) and the wiper blade (16), and the two telescopic rods (20) are symmetrically distributed about the center line of the wiper blade (16).

Citation Information

Patent Citations

  • Cloth dewatering machine

    CN212771425U