CN215638619U - High-hydroscopicity grey cloth dewatering equipment - Google Patents

High-hydroscopicity grey cloth dewatering equipment Download PDF

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Publication number
CN215638619U
CN215638619U CN202121223732.9U CN202121223732U CN215638619U CN 215638619 U CN215638619 U CN 215638619U CN 202121223732 U CN202121223732 U CN 202121223732U CN 215638619 U CN215638619 U CN 215638619U
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Prior art keywords
dewatering
roller
hot air
cloth
low
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CN202121223732.9U
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Chinese (zh)
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曹峰
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Jiangsu Baoruilai Textile Co ltd
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Jiangsu Baoruilai Textile Co ltd
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Abstract

The utility model provides high-water-absorption water removing equipment for grey cloth, and particularly relates to the field of cloth production devices. The utility model can remove the water of the blank cloth at a low temperature, thereby not only ensuring the water removal efficiency, but also ensuring the quality of the blank cloth.

Description

High-hydroscopicity grey cloth dewatering equipment
Technical Field
The utility model belongs to the field of cloth production devices, and particularly relates to high-water-absorptivity white gray cloth dewatering equipment.
Background
The dewatering operation is needed in the production process of the high-water-absorptivity white gray cloth, most of the existing dewatering equipment is high-temperature heating treatment, and although the method is high in efficiency, the white gray cloth is deformed probably due to the overhigh temperature, so that the quality of the white gray cloth is influenced.
In view of the above disadvantages, there is a need for a high water absorption white gray cloth dewatering device, which can remove water from white gray cloth at low temperature, not only ensure dewatering efficiency, but also ensure white gray cloth quality.
SUMMERY OF THE UTILITY MODEL
The utility model aims to provide a high-water-absorptivity gray cloth dewatering device which can remove water of gray cloth at a low temperature, can ensure dewatering efficiency and can ensure the quality of the gray cloth.
The utility model provides the following technical scheme:
the utility model provides a white embryo cloth dewatering equipment of super absorbent quality, includes blowing roller and receipts material roller, first dewatering roller and second dewatering roller between blowing roller and the receipts material roller, first dewatering roller and second dewatering roller top-down set gradually, and white embryo cloth passes from the gap between first dewatering roller and the second dewatering roller, and the outside cladding of first dewatering roller and second dewatering roller has the layer that absorbs water.
Preferably, the first dewatering roll is also provided with a first drying device for drying the water absorbing layer; the second dewatering roller is provided with a second drying device for drying the water absorbing layer.
Preferably, the first drying device is positioned on the side part of the first dewatering roll and is provided with a hot air outlet, and the hot air direction of the hot air outlet is parallel to the movement direction of the blank cloth; the second drying device is positioned on the side part of the second dewatering roll and is provided with a hot air outlet, and the hot air direction of the hot air outlet is parallel to the moving direction of the blank cloth.
Preferably, the hot air outlet is of an arc-shaped structure, and the hot air outlet is matched with the outer profiles of the first dewatering roll and the second dewatering roll.
Preferably, the first drying device is provided with at least 3 first hot air inlets; the second drying device is provided with at least 3 second hot air inlets.
Preferably, a low-temperature pre-dewatering device and a low-temperature final dewatering device are respectively arranged on two sides of the first dewatering roller and the second dewatering roller;
preferably, the low-temperature pre-dewatering devices are provided with two devices from top to bottom, and the low-temperature final dewatering devices are provided with two devices from top to bottom; the blank cloth passes through the low-temperature pre-dewatering device and the low-temperature final dewatering device in sequence.
Preferably, the discharging roller and the receiving roller are both provided with correcting rollers.
The utility model has the beneficial effects that:
the water absorbing layer is coated outside the first dewatering roll and the second dewatering roll to absorb water in the grey cloth, and the first dewatering roll is also provided with a first drying device for drying the water absorbing layer; the second dewatering roller is provided with a second drying device used for drying the water absorbing layer, and the water absorbing layer is dried by using the water in the water absorbing layer, so that the continuous work of the water absorbing layer is ensured, the water of the blank cloth is removed at a low temperature state, the dewatering efficiency can be ensured, and the quality of the blank cloth is ensured.
Drawings
The accompanying drawings, which are included to provide a further understanding of the utility model and are incorporated in and constitute a part of this specification, illustrate embodiments of the utility model and together with the description serve to explain the principles of the utility model and not to limit the utility model. In the drawings:
FIG. 1 is a block diagram of the present invention;
labeled as: 1. a discharge roller; 2. a material receiving roller; 3. a first drying device; 4. a second drying device; 5. a first hot air inlet; 6. a second hot air inlet; 7. a first dewatering roll; 8. a second dewatering roll; 9. a low-temperature pre-dewatering device; 10. a low temperature final water removal unit; 11. a leveling roller; 12. white gray cloth.
Detailed Description
As shown in fig. 1, a high water absorption white blank cloth dewatering device comprises a discharging roller 1 and a receiving roller 2, a first dewatering roller 7 and a second dewatering roller 8 are arranged between the discharging roller 1 and the receiving roller 2, the first dewatering roller 7 and the second dewatering roller 8 are sequentially arranged from top to bottom, a white blank cloth 12 penetrates through a gap between the first dewatering roller 7 and the second dewatering roller 8, a water absorption layer is coated outside the first dewatering roller 7 and the second dewatering roller 8, the thickness of the water absorption layer is determined according to actual requirements, the water absorption layer can be made of cotton, the water absorption layer and the dewatering rollers are combined through a heat covering process, and water in the white blank cloth 12 can be absorbed into the water absorption layer through extrusion of the first dewatering roller 7 and the second dewatering roller 8; the first dewatering roll 7 is also provided with a first drying device 3 for drying the water absorbing layer; the second dewatering roll 8 is provided with a second drying device 4 for drying the water absorbing layer, and the first drying device 3 and the second drying device 4 are used for drying the water in the water absorbing layer to ensure the continuous work of the water absorbing layer; in order to ensure the drying quality, the first drying device 3 and the second drying device 4 adopt high-temperature hot air at 260 ℃; the first drying device 3 is positioned on the side part of the first dewatering roll 7, the first drying device 3 is provided with a hot air outlet, the hot air direction of the hot air outlet is parallel to the movement direction of the white gray cloth 12, hot air is prevented from blowing to the white gray cloth, and the phenomenon that the deformation of the white gray cloth 12 is affected by overhigh temperature is ensured; the second drying device 4 is positioned at the side part of the second dewatering roll 8, the second drying device 4 is provided with a hot air outlet, and the hot air direction of the hot air outlet is parallel to the moving direction of the white blank cloth 12. The hot air outlet is of a quarter-circle arc-shaped structure, and the hot air outlet is matched with the outer profiles of the first dewatering roller 7 and the second dewatering roller 8, so that the drying efficiency is ensured. The first drying device 3 is provided with at least 3 first hot air inlets 5; the second drying device 4 is provided with at least 3 second hot air inlets 6, so that the uniformity of hot air drying can be ensured, and the drying efficiency is improved. A low-temperature pre-dewatering device 9 and a low-temperature final dewatering device 10 are respectively arranged on two sides of the first dewatering roller 7 and the second dewatering roller 8, the low-temperature pre-dewatering device 9 is used for preliminary dewatering of the white gray cloth 12, hot air at 90 ℃ is adopted, and the low-temperature final dewatering device 10 is used for final dewatering, and hot air at 90 ℃ is adopted; thereby ensuring the water removal effect; the low-temperature pre-dewatering devices 9 are provided with two devices from top to bottom, and the low-temperature final dewatering devices 10 are provided with two devices from top to bottom; the blank cloth 12 passes through the low-temperature pre-dewatering device 9 and the low-temperature final dewatering device 12 in sequence, so that the dewatering effect is ensured, and the air inlet and the air outlet of the low-temperature pre-dewatering device 9 and the low-temperature final dewatering device 10 can be seen in attached figure 1. The discharging roller 1 and the receiving roller 2 are both provided with a correcting roller 11, and the correcting roller 11 is used for leading to discharging and discharging directions, so that the stable work of the discharging roller 1 and the receiving roller 2 is ensured.
Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art will understand that various changes, modifications and substitutions can be made without departing from the spirit and scope of the utility model as defined by the appended claims. Any modification, equivalent replacement, or improvement made within the spirit and principle of the present invention should be included in the protection scope of the present invention.

Claims (7)

1. The utility model provides a high hydroscopicity grey cloth dewatering equipment which characterized in that: including blowing roller and receipts material roller, first dewatering roller and second dewatering roller between blowing roller and the receipts material roller, first dewatering roller and second dewatering roller top-down set gradually, and white embryo cloth passes between the gap of first dewatering roller and second dewatering roller, and the outside cladding of first dewatering roller and second dewatering roller has the layer that absorbs water.
2. The high water absorption white gray cloth dewatering equipment according to claim 1, characterized in that: the first dewatering roller is also provided with a first drying device for drying the water absorbing layer; the second dewatering roller is provided with a second drying device for drying the water absorbing layer.
3. The high water absorption white gray cloth dewatering equipment according to claim 2, characterized in that: the first drying device is positioned on the side part of the first dewatering roll and is provided with a hot air outlet, and the hot air direction of the hot air outlet is parallel to the moving direction of the white grey cloth; the second drying device is positioned on the side part of the second dewatering roll and is provided with a hot air outlet, and the hot air direction of the hot air outlet is parallel to the moving direction of the blank cloth.
4. The high water absorption white gray cloth dewatering equipment according to claim 3, characterized in that: the hot air outlet is of an arc-shaped structure and is matched with the outer contours of the first dewatering roller and the second dewatering roller.
5. The high water absorption white gray cloth dewatering equipment according to claim 4, characterized in that: the first drying device is provided with at least 3 first hot air inlets; the second drying device is provided with at least 3 second hot air inlets.
6. The water removing device for the high water absorption white gray cloth according to claim 5, characterized in that: and a low-temperature pre-dewatering device and a low-temperature final dewatering device are respectively arranged on two sides of the first dewatering roller and the second dewatering roller.
7. The de-watering apparatus for the highly absorbent gray cloth according to claim 6, wherein: the low-temperature pre-dewatering devices are provided with two devices from top to bottom, and the low-temperature final dewatering devices are provided with two devices from top to bottom; the blank cloth passes through the low-temperature pre-dewatering device and the low-temperature final dewatering device in sequence; the discharging roller and the receiving roller are both provided with correcting rollers.
CN202121223732.9U 2021-06-02 2021-06-02 High-hydroscopicity grey cloth dewatering equipment Active CN215638619U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202121223732.9U CN215638619U (en) 2021-06-02 2021-06-02 High-hydroscopicity grey cloth dewatering equipment

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202121223732.9U CN215638619U (en) 2021-06-02 2021-06-02 High-hydroscopicity grey cloth dewatering equipment

Publications (1)

Publication Number Publication Date
CN215638619U true CN215638619U (en) 2022-01-25

Family

ID=79940911

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202121223732.9U Active CN215638619U (en) 2021-06-02 2021-06-02 High-hydroscopicity grey cloth dewatering equipment

Country Status (1)

Country Link
CN (1) CN215638619U (en)

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