Non-woven fabric surface treatment device

By designing the non-woven surface treatment device, using limit rollers, impurity cleaning mechanisms and drying components, the problem of the non-woven surface adhesion impurities affecting the oiling effect is solved, and the clean oiling and efficient drying of the non-woven surface is achieved, and the quality and convenience of the non-woven fabric are improved.

CN223003145UActive Publication Date: 2025-06-20HUBEI ZHONGSHENG HUAXIANG IND CO LTD
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Patent Information

Application Number
CN202421772215.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-24
Publication Date
2025-06-20
Estimated Expiration
2034-07-24

AI Technical Summary

Technical Problem

The surface of non-woven fabrics is prone to adhere to impurities during the oil treatment process, resulting in poor oiling effect, and it is difficult to clean the impurities and oil mix, which affects the operation.

Method used

A nonwoven surface treatment device is designed, including a treatment shell, an impurity cleaning mechanism and a drying assembly. The limit roller, guide roller and extrusion roller are installed in the treatment shell. The impurity cleaning mechanism cleans up impurities through cleaning brushes and vacuuming components, and the drying components are dried on both sides through the fan and the heating wire.

Benefits of technology

The non-woven fabric is stabilized by the limit roller, and the impurity cleaning mechanism effectively cleans the impurities on both sides of the surface. The drying components improve the drying efficiency of the non-woven fabric, ensure the oiling effect, reduce the impact of impurities adhesion, and improve the convenience of the non-woven fabric.

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Abstract

The utility model provides a non-woven fabric surface treatment device which comprises a treatment shell, a limiting roller is installed on the inner wall of the bottom end of the treatment shell, a guide roller is arranged on the top of the left side of an inner cavity of the treatment shell, and an extrusion roller is installed in an inner cavity of the top of the right side of the treatment shell. The impurity cleaning mechanism is installed on the surface of the left side of the treatment shell, non-woven fabric penetrates through the impurity cleaning mechanism, and the non-woven fabric sequentially passes through the surfaces of a guide roller, a limiting roller and an extrusion roller; and the drying assembly is installed on the surface of the right side of the processing shell, and the drying assembly is used for drying the penetrating non-woven fabric. The non-woven fabric is treated through the impurity cleaning mechanism, impurities on the surfaces of the two sides of the non-woven fabric are cleaned, cleanliness of the surfaces of the non-woven fabric is guaranteed, the oiling effect of the surfaces of the non-woven fabric is guaranteed, the oiling quality of the non-woven fabric is improved, under the action of the drying assembly, double-face drying of the oiled non-woven fabric is facilitated, the drying efficiency of the non-woven fabric is improved, and time is saved.
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Description

Technical Field

[0001] The utility model relates to a non-woven fabric surface treatment device, in particular to a non-woven fabric surface treatment device. Background Art

[0002] Non-woven fabric, also called non-woven material, non-woven cloth, or non-woven fabric, is made of fibers arranged in a directional or random manner through friction, entanglement, adhesion, or a combination of these methods. The essence lies in "non-weaving". Non-woven fabric exists in the form of fibers in the cloth, while the woven cloth exists in the form of yarns in the cloth. This is also a main feature that distinguishes non-woven fabric from other fabrics. No single thread can be pulled out from non-woven fabric.

[0003] Currently, in the oiling treatment of non-woven fabric surfaces, a large amount of impurities will adhere to the non-woven fabric surface. These impurities are easily mixed with the liquid in the oiling device, affecting the oiling effect on the non-woven fabric surface. At the same time, the mixture of impurities and oil liquid is not convenient for subsequent workers to clean, affecting the oiling operation. Content of the Utility Model

[0004] In order to solve the technical problems that in the current oiling treatment of non-woven fabric surfaces, a large amount of impurities will adhere to the non-woven fabric surface, these impurities are easily mixed with the liquid in the oiling device, affecting the oiling effect on the non-woven fabric surface, and at the same time, the mixture of impurities and oil liquid is not convenient for subsequent workers to clean, affecting the oiling operation, the utility model provides a non-woven fabric surface treatment device.

[0005] The utility model solves the above technical problems through the following technical solutions:

[0006] The utility model provides a non-woven fabric surface treatment device, which includes:

[0007] A processing shell, wherein a limiting roller is installed on the inner wall of the bottom end of the processing shell, a guiding roller is arranged at the top left of the inner cavity of the processing shell, and a squeezing roller is installed in the inner cavity at the top right of the processing shell;

[0008] An impurity cleaning mechanism, which is installed on the left surface of the processing shell. The non-woven fabric passes through the impurity cleaning mechanism, and the non-woven fabric sequentially passes through the surfaces of the guiding roller, the limiting roller, and the squeezing roller;

[0009] A drying assembly, which is installed on the right surface of the processing shell and is used for drying the non-woven fabric passing through.

[0010] Further, a drain pipe is fixedly communicated with the right surface of the bottom end of the processing shell, and a valve is installed on the right end surface of the drain pipe.

[0011] Further, the number of the extrusion rollers is two, the two extrusion rollers are arranged in parallel, and a non-woven fabric is rollingly attached between the two extrusion rollers.

[0012] Further, the impurity cleaning mechanism includes a cleaning shell, a fixed seat, an airbag, a cleaning brush and a dust suction component. The cleaning shell is fixedly installed on the left surface of the processing shell. A fixed seat is fixedly installed on the inner wall of the cleaning shell. An airbag is fixedly installed on the side surface of the fixed seat. A cleaning brush is installed on the side surface of the airbag. The cleaning brush is attached to the surface of the non-woven fabric, and a dust suction component for absorbing impurities is arranged on the bottom side of the cleaning brush.

[0013] Further, an air charging pipe is fixedly communicated with the bottom side surface of the airbag, and an air charging valve is installed on the bottom side surface of the air charging pipe.

[0014] Further, the number of the cleaning brushes is two, the two cleaning brushes are located on opposite sides of the non-woven fabric, and the bristled ends of the cleaning brushes are attached to the side surfaces of the non-woven fabric.

[0015] Further, the dust suction component includes a dust collector, a dust suction pipe, a three-way pipe, a connecting pipe and a dust suction hood. The dust collector is fixedly installed on the front surface of the cleaning shell. The input end of the dust collector is fixedly communicated with the dust suction pipe. The end of the dust suction pipe is fixedly communicated with the three-way pipe. The three-way pipe is communicated with the connecting pipe, and a dust suction hood is fixedly installed on the end side surface of the connecting pipe.

[0016] Further, the number of the connecting pipes is two, the connecting pipes are arranged on the bottom side of the fixed seat, and the dust suction hoods installed on the side surfaces of the connecting pipes are equidistantly distributed.

[0017] Further, the drying component includes a drying shell, a blower, drying holes, a drying cavity and heating wires. The drying shell is fixedly installed on the top side surface of the processing shell. The drying shell is communicated with a through hole opened on the side surface of the processing shell. Drying cavities are opened in both the top side and the bottom side inside the drying shell. The blower installed on the surface of the drying shell is communicated with the drying cavity. Heating wires are installed in the drying cavity, and the drying cavity is communicated with the drying holes opened on the inner wall of the drying shell.

[0018] Further, the number of the drying holes is several, and the several drying holes are evenly distributed on the inner walls of the top side and the bottom side of the drying shell.

[0019] On the basis of conforming to the common knowledge in the art, the above preferred conditions can be combined arbitrarily to obtain various preferred examples of the present invention.

[0020] The positive and progressive effects of the present invention are as follows:

[0021] The above-mentioned non-woven fabric surface treatment device limits the non-woven fabric through the limiting rollers to ensure that the non-woven fabric passes through the inner cavity at the bottom of the treatment shell stably, facilitating the uniform oiling operation on the surface of the non-woven fabric. At the same time, the non-woven fabric entering the treatment shell is processed by the impurity cleaning mechanism to clean the impurities on both sides of the non-woven fabric, ensuring the cleanliness of the non-woven fabric surface and avoiding the problem that subsequent impurity adhesion affects the mixing of impurities in the liquid in the treatment shell and is not conducive to the oiling effect, ensuring the oiling effect on the non-woven fabric surface, improving the oiling quality of the non-woven fabric. The oil on the surface of the oiled non-woven fabric is squeezed out by the squeezing rollers, effectively removing the excess oil liquid on the non-woven fabric surface and reducing the problem of random spilling that is not convenient for subsequent treatment. Under the action of the drying component, it is convenient to double-sided dry the oiled non-woven fabric, improving the drying efficiency of the non-woven fabric, saving the drying time of the non-woven fabric, and facilitating the use of the non-woven fabric. Description of the Drawings

[0022] Figure 1 Fig. is a schematic three-dimensional structure diagram of a non-woven fabric surface treatment device of the present utility model.

[0023] Figure 2 Fig. is a schematic front cross-sectional structure diagram of a non-woven fabric surface treatment device of the present utility model.

[0024] Figure 3 Fig. is a schematic connection structure diagram of a communicating pipe and a dust suction hood of a non-woven fabric surface treatment device of the present utility model.

[0025] Description of the Reference Numerals

[0026] 1. Treatment shell; 2. Drain pipe; 3. Limiting roller; 4. Squeezing roller; 5. Through hole; 6. Guide roller; 7. Impurity cleaning mechanism; 71. Cleaning shell; 72. Fixed seat; 73. Airbag; 74. Cleaning brush; 75. Inflatable pipe; 76. Dust suction component; 761. Vacuum cleaner; 762. Dust suction pipe; 763. Communicating pipe; 764. Three-way pipe; 765. Dust suction hood; 8. Drying component; 81. Drying shell; 82. Electric heating wire; 83. Fan; 84. Drying hole; 9. Non-woven fabric. Detailed Embodiments

[0027] The present utility model will be further described below by way of examples, but the present utility model is not limited to the scope of the described examples.

[0028] As Figures 1-3 shown, the non-woven fabric surface treatment device includes:

[0029] A treatment shell 1, with a limiting roller 3 installed on the inner wall at the bottom of the treatment shell 1, a guide roller 6 at the top left of the inner cavity of the treatment shell 1, and a squeezing roller 4 installed in the inner cavity at the top right of the treatment shell 1;

[0030] An impurity cleaning mechanism 7 is installed on the left surface of the processing shell 1. A non-woven fabric 9 passes through the impurity cleaning mechanism 7, and the non-woven fabric 9 sequentially passes over the surfaces of a guide roller 6, a limiting roller 3, and a squeezing roller 4;

[0031] A drying assembly 8 is installed on the right surface of the processing shell 1, and the drying assembly 8 is used to dry the passing non-woven fabric 9.

[0032] The non-woven fabric 9 is limited by the limiting roller 3 to ensure that the non-woven fabric 9 stably passes through the inner cavity at the bottom end of the processing shell 1, facilitating the uniform oiling operation on the surface of the non-woven fabric 9. At the same time, the non-woven fabric 9 entering the processing shell 1 is processed by the impurity cleaning mechanism 7 to clean the impurities on both surfaces of the non-woven fabric 9, ensuring the cleanliness of the surface of the non-woven fabric 9 and avoiding the problem that subsequent impurity adhesion affects the mixing of impurities in the liquid in the processing shell 1 and is not conducive to the oiling effect. The oiling effect on the surface of the non-woven fabric 9 is ensured, and the oiling quality of the non-woven fabric 9 is improved. After oiling, the oil on the surface of the non-woven fabric 9 is squeezed out by the squeezing roller 4, effectively removing the excess oil liquid on the surface of the non-woven fabric 9 and reducing the problem of random spilling and inconvenience for subsequent processing. Under the action of the drying assembly 8, it is convenient to double-sided dry the oiled non-woven fabric 9, improving the drying efficiency of the non-woven fabric 9, saving the drying time of the non-woven fabric 9, and facilitating the use of the non-woven fabric 9.

[0033] A drain pipe 2 is fixedly communicated with the right surface at the bottom end of the processing shell 1, and a valve is installed on the right end surface of the drain pipe 2.

[0034] The number of the squeezing rollers 4 is two, the two squeezing rollers 4 are placed in parallel, and the non-woven fabric 9 is in rolling contact between the two squeezing rollers 4.

[0035] The impurity cleaning mechanism 7 includes a cleaning shell 71, a fixed seat 72, an airbag 73, a cleaning brush 74, and a dust suction assembly 76. The cleaning shell 71 is fixedly installed on the left surface of the processing shell 1. A fixed seat 72 is fixedly installed on the inner wall of the cleaning shell 71. An airbag 73 is fixedly installed on the side surface of the fixed seat 72. A cleaning brush 74 is installed on the side surface of the airbag 73, and the cleaning brush 74 is in contact with the surface of the non-woven fabric 9. A dust suction assembly 76 for impurity absorption is arranged at the bottom side of the cleaning brush 74.

[0036] The impurities on the surface of the non-woven fabric 9 are cleaned by the cleaning brush 74 to ensure the cleanliness of the surface of the non-woven fabric 9. At the same time, with the cooperation of the dust suction assembly 76, under the action of the dust suction assembly 76, it is convenient to process the impurity dust during the cleaning process of the impurity cleaning mechanism 7, improve the surrounding environmental quality, and at the same time achieve the cleanliness of the surface of the non-woven fabric 9, facilitating the subsequent oiling operation of the non-woven fabric 9.

[0037] An air charging pipe 75 is fixedly communicated with the bottom side surface of the airbag 73, and an air charging valve is installed on the bottom end side surface of the air charging pipe 75.

[0038] The number of the cleaning brushes 74 is two. The two cleaning brushes 74 are located on the opposite sides of the non-woven fabric 9, and the bristle ends of the cleaning brushes 74 are all attached to the side surface of the non-woven fabric 9.

[0039] The dust suction assembly 76 includes a vacuum cleaner 761, a dust suction pipe 762, a three-way pipe 764, a connecting pipe 763 and a dust suction hood 765. The vacuum cleaner 761 is fixedly installed on the front side surface of the cleaning shell 71. The input end of the vacuum cleaner 761 is fixedly communicated with the dust suction pipe 762. The end of the dust suction pipe 762 is fixedly communicated with the three-way pipe 764. The three-way pipe 764 is communicated with the connecting pipe 763. The dust suction hood 765 is fixedly installed on the side surface of the end of the connecting pipe 763.

[0040] When the vacuum cleaner 761 works, the vacuum cleaner 761 sucks air through the dust suction pipe 762. The dust suction hood 765 adsorbs the generated dust gas into the connecting pipe 763. The connecting pipe 763 injects the dust gas into the vacuum cleaner 761 through the three-way pipe 764 and the dust suction pipe 762. The dust gas is filtered by the vacuum cleaner 761 to realize the treatment of the dust gas.

[0041] The number of the connecting pipes 763 is two. The connecting pipes 763 are arranged on the bottom side of the fixed seat 72, and the dust suction hoods 765 installed on the side surface of the connecting pipes 763 are equidistantly distributed.

[0042] The drying assembly 8 includes a drying shell 81, a blower 83, drying holes 84, a drying cavity and a heating wire 82. The drying shell 81 is fixedly installed on the top side surface of the processing shell 1. The drying shell 81 is communicated with the through hole 5 opened on the side surface of the processing shell 1. Drying cavities are opened on the top side and the bottom side inside the drying shell 81. The blower 83 installed on the surface of the drying shell 81 is communicated with the drying cavity. The heating wire 82 is installed in the drying cavity. The drying cavity is communicated with the drying holes 84 opened on the inner wall of the drying shell 81.

[0043] When the blower 83 is started, the heating wire 82 heats and works. The blower 83 injects gas into the drying cavity, and the gas heated by the heating wire 82 is discharged through the drying holes 84. The discharged hot gas dries the surface of the passing non-woven fabric 9, improves the drying efficiency of the surface of the non-woven fabric 9, saves the drying time, ensures the drying effect and meets the use requirements.

[0044] The number of the drying holes 84 is several. The several drying holes 84 are evenly distributed on the inner walls of the top side and the bottom side of the drying shell 81.

[0045] The present utility model is not limited to the above-mentioned embodiments. No matter what changes are made in its shape or structure, they all fall within the protection scope of the present utility model. The protection scope of the present utility model is defined by the appended claims. Those skilled in the art can make various changes or modifications to these embodiments without departing from the principle and essence of the present utility model, but these changes and modifications all fall within the protection scope of the present utility model.

Claims

1. A nonwoven fabric surface treatment device, characterized in that: The nonwoven fabric surface treatment device comprises: A processing shell (1), wherein a limiting roller (3) is installed on the inner wall of the bottom end of the processing shell (1), a guide roller (6) is installed on the top of the left side of the inner cavity of the processing shell (1), and an extrusion roller (4) is installed on the top of the inner cavity of the right side of the processing shell (1); An impurity cleaning mechanism (7), the impurity cleaning mechanism (7) being installed on the left side surface of the processing shell (1), a non-woven fabric (9) running through the impurity cleaning mechanism (7), and the non-woven fabric (9) passing through the surfaces of the guide roller (6), the limit roller (3) and the squeezing roller (4) in sequence; A drying component (8), the drying component (8) is installed on the right side surface of the processing shell (1), and the drying component (8) is used to dry the penetrating non-woven fabric (9).

2. The nonwoven fabric surface treatment device according to claim 1, characterized in that: The right side surface of the bottom end of the processing shell (1) is fixedly connected to a drainage pipe (2), and a valve is installed on the right end surface of the drainage pipe (2).

3. The nonwoven fabric surface treatment device according to claim 1, characterized in that: There are two squeezing rollers (4), which are placed in parallel, and a non-woven fabric (9) is rolled and laminated between the two squeezing rollers (4).

4. A nonwoven fabric surface treatment device as claimed in claim 1, characterized in that: The impurity cleaning mechanism (7) comprises a cleaning shell (71), a fixing seat (72), an air bag (73), a cleaning brush (74) and a dust collecting component (76); the cleaning shell (71) is fixedly mounted on the left side surface of the processing shell (1); the fixing seat (72) is fixedly mounted on the inner wall of the cleaning shell (71); the air bag (73) is fixedly mounted on the side surface of the fixing seat (72); the cleaning brush (74) is mounted on the side surface of the air bag (73); the cleaning brush (74) is in contact with the surface of the non-woven fabric (9); and the bottom side of the cleaning brush (74) is provided with a dust collecting component (76) for absorbing impurities.

5. A nonwoven fabric surface treatment device as claimed in claim 4, characterized in that: The bottom side surface of the air bag (73) is fixedly connected to an inflation tube (75), and the bottom end side surface of the inflation tube (75) is equipped with an inflation valve.

6. The nonwoven fabric surface treatment device according to claim 4, characterized in that: There are two cleaning brushes (74), which are located on opposite sides of the non-woven fabric (9), and the bristle ends of the cleaning brushes (74) are in contact with the side surfaces of the non-woven fabric (9).

7. The nonwoven fabric surface treatment device according to claim 4, characterized in that: The dust collection assembly (76) comprises a dust collector (761), a dust collection pipe (762), a three-way pipe (764), a connecting pipe (763) and a dust collection hood (765); the dust collector (761) is fixedly mounted on the front surface of the cleaning shell (71); the input end of the dust collector (761) is fixedly connected to the dust collection pipe (762); the end of the dust collection pipe (762) is fixedly connected to the three-way pipe (764); the three-way pipe (764) is connected to the connecting pipe (763); and the dust collection hood (765) is fixedly mounted on the side surface of the end of the connecting pipe (763).

8. A nonwoven fabric surface treatment device as claimed in claim 7, characterized in that: The number of the connecting pipes (763) is two, and the connecting pipes (763) are arranged on the bottom side of the fixing seat (72), and the dust collecting covers (765) installed on the side surfaces of the connecting pipes (763) are evenly distributed.

9. The nonwoven fabric surface treatment device according to claim 1, characterized in that: The drying assembly (8) comprises a drying shell (81), a fan (83), a drying hole (84), a drying chamber and an electric heating wire (82); the drying shell (81) is fixedly mounted on the top side surface of the processing shell (1); the drying shell (81) is connected to a through hole (5) provided on the side surface of the processing shell (1); a drying chamber is provided in the top side and the bottom side of the drying shell (81); the fan (83) mounted on the surface of the drying shell (81) is connected to the drying chamber; an electric heating wire (82) is installed in the drying chamber; and the drying chamber is connected to the drying hole (84) provided on the inner wall of the drying shell (81).

10. The nonwoven fabric surface treatment device according to claim 9, characterized in that: The number of the drying holes (84) is several, and the several drying holes (84) are evenly distributed on the top inner wall and the bottom inner wall of the drying shell (81).