CN223342973U - Sanding treatment equipment for ultrathin ultraviolet-resistant cotton fabric - Google Patents

Sanding treatment equipment for ultrathin ultraviolet-resistant cotton fabric

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Publication number
CN223342973U
CN223342973U CN202421899790.7U CN202421899790U CN223342973U CN 223342973 U CN223342973 U CN 223342973U CN 202421899790 U CN202421899790 U CN 202421899790U CN 223342973 U CN223342973 U CN 223342973U
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China
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rotating
filter
protective shell
fixedly connected
filter box
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CN202421899790.7U
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Chinese (zh)
Inventor
丁其磊
杨秀凯
严培道
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Jiangsu Jurun Textile Technology Co ltd
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Jiangsu Jurun Textile Technology Co ltd
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Priority to CN202421899790.7U priority Critical patent/CN223342973U/en
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Abstract

本实用新型涉及磨毛处理技术领域,具体涉及一种用于超薄抗紫外线棉织物面料的磨毛处理设备,包括固定底座和磨毛机体,还包括过滤组件,过滤组件包括防护外壳、转动底座、转动门、吸尘罩、连接管道、过滤箱、过滤架、安装板、出风管道、进风管道和排气扇,通过排气扇的驱动能够使得防护外壳内带有纤维粉尘的空气通过吸尘罩和连接管道进入到过滤箱中,通过过滤箱中的过滤网能够对防护外壳内吸入的空气中的纤维粉尘进行过滤净化,最后过滤箱中过滤的空气再通过出风管道排出,从而避免了磨毛机体加工作业时产生的纤维粉尘飞扬在周围环境中被人体吸入而对人体健康造成影响。

The utility model relates to the technical field of sanding treatment, and specifically relates to a sanding treatment device for ultra-thin anti-ultraviolet cotton fabrics, comprising a fixed base and a sanding machine body, and also comprising a filter assembly, wherein the filter assembly comprises a protective shell, a rotating base, a rotating door, a dust hood, a connecting pipe, a filter box, a filter frame, a mounting plate, an air outlet pipe, an air inlet pipe and an exhaust fan. The exhaust fan is driven to allow air with fiber dust in the protective shell to enter the filter box through the dust hood and the connecting pipe, and the fiber dust in the air inhaled in the protective shell can be filtered and purified by the filter mesh in the filter box. Finally, the filtered air in the filter box is discharged through the air outlet pipe, thereby preventing fiber dust generated during the sanding machine body processing operation from flying in the surrounding environment and being inhaled by human bodies, thereby affecting human health.

Description

Sanding treatment equipment for ultrathin ultraviolet-resistant cotton fabric
Technical Field
The utility model belongs to the technical field of roughening treatment, and particularly relates to roughening treatment equipment for ultrathin ultraviolet-resistant cotton fabric.
Background
In the production of the ultrathin ultraviolet-resistant cotton fabric, the ultrathin ultraviolet-resistant cotton fabric needs to be subjected to roughening processing, roughening is a process in the textile industry, a layer of short fluff layer is formed on the surface of the fabric through friction, roughening equipment is equipment for roughening operation on the fabric, a traditional roughening machine is used, a plurality of fluff can be hooked from the fabric by a roughening roller in the roughening process of the fabric, the fluff can be wound on bristles of the roughening roller to obstruct contact between the roughening roller and the fabric, the cutting effect of subsequent fabric of the roughening roller is reduced, and the fabric is further non-uniform, so that the product quality is affected.
The application discloses CN214496829U, which relates to the technical field of textile, and discloses sanding treatment equipment for ultrathin ultraviolet-resistant cotton fabric, which comprises a frame, wherein a cloth pressing plate and a fixed plate are arranged on the frame, a plurality of groups of first brushes are arranged on the side wall of the fixed plate, which faces the cloth pressing plate, a first movable plate is arranged on one side of the cloth pressing plate, which is close to the first brushes, the side wall of the first movable plate is provided with first through holes for penetrating and inserting each group of first brushes, each group of first brushes is correspondingly provided with a first clamping piece for clamping the first brushes, a first driving piece for driving the first clamping pieces to clamp or release the first brushes is arranged on the first movable plate, and a first driving cylinder for driving the first movable plate to slide along the height direction of the first brushes is arranged on the fixed plate.
However, the prior roughening equipment can wear and break cotton fibers to a certain extent in the use process. Some broken fine fibers may be emitted into the air in the form of dust, thereby being inhaled by operators in the surrounding environment and affecting the health of the human body.
Disclosure of utility model
The utility model aims to provide a roughening treatment device for ultrathin ultraviolet-resistant cotton fabric, and aims to solve the problem that cotton fibers are worn and broken to a certain extent in the using process of the conventional roughening device. Some broken fine fibers may be emitted into the air in the form of dust, thereby being inhaled by operators in the surrounding environment and causing problems of influence on human health.
In order to achieve the technical aim, the utility model adopts the following technical proposal that the utility model comprises a fixed base and a sanding machine body, wherein the sanding machine body is arranged on the fixed base and is positioned at one side of the fixed base,
Also comprises a filtering component which is provided with a plurality of filtering holes,
The filter assembly comprises a protective shell, a rotating base, a rotating door, a dust hood, a connecting pipeline, a filter box, a filter frame, a mounting plate, an air outlet pipeline, an air inlet pipeline and an exhaust fan, wherein the protective shell is fixedly connected with the fixed base and is positioned on one side of the fixed base, the rotating base is fixedly connected with the protective shell and is positioned on one side of the protective shell, the rotating door is rotationally connected with the rotating base and is positioned on one side of the rotating base, which is close to the protective shell, the dust hood is connected with the protective shell and is positioned on one side of the protective shell, the connecting pipeline is connected with the dust hood and is positioned on one side of the dust hood, the filter box is fixedly connected with the protective shell and is positioned on one side of the connecting pipe, the filter frame is arranged on the filter box and is positioned on one side of the filter box, the mounting plate is fixedly connected with the filter box and is positioned on one side of the filter box, the air outlet pipeline is connected with the mounting plate and is positioned on one side of the air inlet pipeline and is connected with the air inlet pipeline.
The exhaust fan comprises a mounting frame, rotary fan blades and a driving member, wherein the mounting frame is fixedly connected with the air outlet pipeline and is positioned on one side of the air outlet pipeline, the rotary fan blades are connected with the mounting frame through the driving member and are positioned on one side, close to the air outlet pipeline, of the mounting frame, and the driving member is arranged on the mounting frame and is connected with the rotary fan blades.
The driving component comprises a rotating motor and a rotating shaft, wherein the rotating motor is fixedly connected with the mounting frame and is positioned on one side of the mounting frame, and the rotating shaft is connected with the output end of the rotating motor, is fixedly connected with the rotating fan blade and is positioned on one side, close to the rotating fan blade, of the rotating motor.
The filter assembly further comprises an observation window which is fixedly connected with the rotary door and is positioned on one side of the rotary door.
The filter assembly further comprises a blocking member, the blocking member comprises a protective net and a filter screen, the protective net is fixedly connected with the air outlet pipeline and is located at one side of the air outlet pipeline, and the filter screen is fixedly connected with the air inlet pipeline and is located at one side of the air inlet pipeline.
According to the sanding treatment equipment for the ultrathin ultraviolet-resistant cotton fabric, when the sanding Mao Jiti runs, the rotary door on the protective shell is rotated and closed, so that the space in the protective shell is closed, when the sanding machine body works, air with fiber dust in the protective shell can enter the filter box through the dust hood and the connecting pipeline by virtue of the driving of the exhaust fan, the fiber dust in the air sucked in the protective shell can be filtered and purified by virtue of the filter screen in the filter box, and finally, the air filtered in the filter box is discharged by virtue of the air outlet pipeline, so that the influence on human health caused by the fact that the fiber dust generated during the sanding machine body works flies in the surrounding environment and is sucked by a human body is avoided.
Drawings
The utility model may be further illustrated by means of non-limiting examples given in the accompanying drawings.
Fig. 1 is a schematic structural view of a sanding treatment device for ultra-thin ultraviolet-resistant cotton fabric according to a first embodiment of the present utility model.
Fig. 2 is a schematic view of a filter assembly according to a first embodiment of the present utility model.
Fig. 3 is a schematic structural view of a sanding treatment device for ultra-thin uv resistant cotton fabric according to a second embodiment of the present utility model.
Fig. 4 is a schematic structural view of a blocking member according to a second embodiment of the present utility model.
In the figure, a fixed base, a 102-sanding machine body, a 103-protective shell, a 104-rotating base, a 105-rotating door, a 106-dust hood, a 107-connecting pipeline, a 108-filter box, a 109-filter frame, a 110-mounting plate, a 111-air outlet pipeline, a 112-air inlet pipeline, a 113-observation window, a 114-mounting frame, 115-rotating fan blades, a 116-rotating motor, a 117-rotating shaft, a 201-protective net and a 202-filter net are arranged.
Detailed Description
In order that those skilled in the art will better understand the present utility model, the following technical scheme of the present utility model will be further described with reference to the accompanying drawings and examples.
Embodiment one:
Fig. 1 to 2 are schematic views showing a sanding treatment apparatus for ultra-thin uv resistant cotton fabric according to a first embodiment of the present utility model. Fig. 2 is a schematic view of a filter assembly according to a first embodiment of the present utility model.
The utility model provides a roughening treatment device for ultrathin ultraviolet-resistant cotton fabric, which comprises a fixed base 101, a roughening machine body 102 and a filtering assembly, wherein the filtering assembly comprises a protective shell 103, a rotating base 104, a rotating door 105, a dust hood 106, a connecting pipeline 107, a filter box 108, a filter frame 109, a mounting plate 110, an air outlet pipeline 111, an air inlet pipeline 112, an exhaust fan and an observation window 113, the exhaust fan comprises a mounting frame 114, a rotating fan blade 115 and a driving member, and the driving member comprises a rotating motor 116 and a rotating shaft 117. The technical scheme solves the problem that cotton fibers are worn and broken to a certain extent in the using process of the conventional sanding equipment. Some broken fine fibers may be emitted into the air in the form of dust and thus inhaled by operators in the surrounding environment and affect the health of the human body, and it is understood that the above-described scheme may be used in a case where the fibrous dust generated during processing is prevented from being inhaled by the human body.
In this embodiment, the roughening machine body 102 is disposed on the fixing base 101, and the roughening treatment can be performed on the ultrathin anti-ultraviolet cotton fabric by using the roughening machine body 102, and the structure of the roughening machine body 102 is recorded in the CN214496829U in the prior art, which is not described herein.
Wherein the protective housing 103 is fixedly connected with the fixed base 101 and is positioned at one side of the fixed base 101, the rotary base 104 is fixedly connected with the protective housing 103 and is positioned at one side of the protective housing 103, the rotary door 105 is rotatably connected with the rotary base 104 and is positioned at one side of the rotary base 104 close to the protective housing 103, the dust hood 106 is connected with the protective housing 103 and is positioned at one side of the protective housing 103, the connecting pipeline 107 is connected with the dust hood 106 and is positioned at one side of the dust hood 106, the filter box 108 is fixedly connected with the protective housing 103 and is connected with the connecting pipeline 107 and is positioned at one side of the protective housing 103 close to the connecting pipe, the filter frame 109 is arranged on the filter box 108 and is positioned at one side of the filter box 108, the mounting plate 110 is fixedly connected with the filter box 108 and is positioned at one side of the filter box 108, the air outlet pipeline 111 is connected with the mounting plate 110 and is positioned at one side of the mounting plate 110, the air inlet pipeline 112 is connected with the protective housing 103 and is positioned at one side of the protective housing 103, the air outlet pipeline 111 is arranged on the air outlet pipeline, the protective housing 103 is welded on the fixed base 101, eight rotating bases 104 are welded on the front side and the rear side of the protective housing 103, four rotating doors 105 are rotatably connected on the corresponding eight rotating bases 104, the rotating bases 104 can be used for carrying out connection support on the rotation of the rotating doors 105, the space environment of the sanding machine body 102 during operation can be sealed through the rotating doors 105 and the protective housing 103, simultaneously, the four rotary switches of the rotary door 105 are convenient for operators to carry out feeding and discharging of the sanding machine body 102 and operation treatment of the sanding machine body, the dust hood 106 is welded above the protective housing 103 and is communicated with the space in the protective housing 103, the connecting pipeline 107 is welded on the dust hood 106 and is communicated with the space in the protective housing 103, the filter box 108 is welded on the protective housing 103 and the connecting pipeline 107 and is communicated with the connecting pipeline 107, the filter frame 109 is fixedly arranged in the filter box 108 through bolts of the filter frame 109, dust in passing air can be absorbed and filtered through the filter frame 109, the mounting plate 110 is fixedly arranged on the filter box 108 through bolts of the mounting plate 110, the air outlet pipeline 111 is welded on the mounting plate 110 and is communicated with the filter box 108, the air inlet pipeline 112 is welded on the protective housing 103 and is communicated with the space in the protective housing 103, the air outlet pipeline 111 is arranged on the air outlet pipeline 103, thereby the filter box 102 can be closed through the filter box 108 when the filter box 103 is rotated through the filter box 108 in the filter housing 103, the filter box 102 is closed when the filter box 102 is closed through the filter box 108 in the filter box 103, the filter box is closed when the filter box is in the filter box 102 through the filter box is closed through the filter frame 103, through the drive of air discharge fan can make the air that has the fibre dust in the guard casing 103 pass through the suction hood 106 with connecting tube 107 gets into in the rose box 108, through in the rose box 108 filter screen 202 can be right the fibre dust in the air of inhaling in the guard casing 103 filters the purification, finally in the rose box 108 filterable air rethread air outlet tube 111 discharges to the fibre dust that produces when having avoided the sanding organism 102 processing operation flies upward and is inhaled by the human body in the surrounding environment and cause the influence to human health.
The air-out pipeline is characterized in that the mounting frame 114 is fixedly connected with the air-out pipeline 111 and is positioned on one side of the air-out pipeline 111, the rotary fan blades 115 are connected with the mounting frame 114 through the driving members and are positioned on one side, close to the air-out pipeline 111, of the mounting frame 114, the driving members are arranged on the mounting frame 114 and are connected with the rotary fan blades 115, the mounting frame 114 is in a plurality of welding mode, a plurality of mounting frames 114 are welded in the air-out pipeline 111, the rotary fan blades 115 are in a plurality of welding mode, the rotary fan blades 115 are connected with the mounting frame 114 through the driving members, and the rotary fan blades 115 can be driven to rotate through driving output of the driving members, so that air generated through rotation of the rotary fan blades 115 flows to achieve the purpose of exhausting air in the filter box 108, the connecting pipeline 107 and the dust hood 106.
The rotary shaft 117 is connected with the output end of the rotary motor 116, is fixedly connected with the rotary fan blades 115 and is positioned on one side of the rotary motor 116 close to the rotary fan blades 115, the rotary motor 116 is fixedly arranged on a plurality of the mounting frames 114 through bolts, the rotary shaft 117 is connected to the output end of the rotary motor 116, the rotary shaft 117 can be driven to rotate through the driving output of the rotary motor 116, and a plurality of the rotary fan blades 115 are welded on the rotary shaft 117, so that the rotary fan blades 115 are driven to rotate through the rotation of the rotary shaft 117.
Finally, the observation windows 113 are fixedly connected with the rotary door 105 and are located at one side of the rotary door 105, four observation windows 113 are adhered to the rotary door 105, and an operator can observe the running condition of the sanding machine body 102 in the protective housing 103 conveniently through the observation windows 113.
When the sanding treatment equipment for the ultrathin ultraviolet-resistant cotton fabric is used, when the sanding machine body 102 runs, the rotary door 105 on the protective shell 103 is rotated and closed, so that the space in the protective shell 103 is closed, when the sanding machine body 102 works, air with fiber dust in the protective shell 103 can enter the filter box 108 through the dust hood 106 and the connecting pipeline 107 through the driving of the exhaust fan, the fiber dust in the air sucked in the protective shell 103 can be filtered and purified through the filter screen 202 in the filter box 108, and finally, the air filtered in the filter box 108 is discharged through the air outlet pipeline 111, so that the influence on human health caused by the fact that the fiber dust flying in the surrounding environment is sucked by a human body during the working of the sanding machine body 102 is avoided.
The second embodiment of the application is:
Referring to fig. 3 and 4 on the basis of the first embodiment, fig. 3 is a schematic structural view of a sanding treatment device for ultra-thin uvioresistant cotton fabric according to a second embodiment of the present utility model. Fig. 4 is a schematic structural view of a blocking member according to a second embodiment of the present utility model.
The utility model provides sanding treatment equipment for ultrathin ultraviolet-resistant cotton fabric, which also comprises a blocking member, wherein the blocking member comprises a protective net 201 and a filter screen 202.
The protection net 201 is fixedly connected with the air outlet pipeline 111 and is positioned at one side of the air outlet pipeline 111, the filter screen 202 is fixedly connected with the air inlet pipeline 112 and is positioned at one side of the air inlet pipeline 112, the protection net 201 is welded on the air outlet pipeline 111, a plurality of ventilation holes are formed in the protection net 201, the protection net 201 can shield and protect the rotating fan blades 115 rotating at high speed in the air outlet pipeline 111, operators are prevented from directly contacting the rotating fan blades 115 rotating at high speed, the filter screen 202 is welded on the air inlet pipeline 112, fiber dust in the protection shell 103 can be blocked and adsorbed through the filter screen 202, and the fiber dust in the protection shell 103 is prevented from flowing out through the air inlet pipeline 112.
The above embodiments are merely illustrative of the principles of the present utility model and its effectiveness, and are not intended to limit the utility model. Modifications and variations may be made to the above-described embodiments by those skilled in the art without departing from the spirit and scope of the utility model. Accordingly, it is intended that all equivalent modifications and variations of the utility model be covered by the claims of this utility model, which are within the skill of those skilled in the art, can be made without departing from the spirit and scope of the utility model disclosed herein.

Claims (5)

1. The sanding treatment equipment for the ultrathin ultraviolet-resistant cotton fabric comprises a fixed base and a sanding machine body, wherein the sanding machine body is arranged on the fixed base and is positioned on one side of the fixed base,
Also comprises a filtering component which is provided with a plurality of filtering holes,
The filter assembly comprises a protective shell, a rotating base, a rotating door, a dust hood, a connecting pipeline, a filter box, a filter frame, a mounting plate, an air outlet pipeline, an air inlet pipeline and an exhaust fan, wherein the protective shell is fixedly connected with the fixed base and is positioned on one side of the fixed base, the rotating base is fixedly connected with the protective shell and is positioned on one side of the protective shell, the rotating door is rotationally connected with the rotating base and is positioned on one side of the rotating base, which is close to the protective shell, the dust hood is connected with the protective shell and is positioned on one side of the protective shell, the connecting pipeline is connected with the dust hood and is positioned on one side of the dust hood, the filter box is fixedly connected with the protective shell and is positioned on one side of the connecting pipe, the filter frame is arranged on the filter box and is positioned on one side of the filter box, the mounting plate is fixedly connected with the filter box and is positioned on one side of the filter box, the air outlet pipeline is connected with the mounting plate and is positioned on one side of the air inlet pipeline and is connected with the air inlet pipeline.
2. The sanding treatment device for ultra-thin ultraviolet resistant cotton fabric as defined in claim 1, it is characterized in that the method comprises the steps of,
The exhaust fan comprises a mounting frame, a rotary fan blade and a driving member, wherein the mounting frame is fixedly connected with the air outlet pipeline and is positioned on one side of the air outlet pipeline, the rotary fan blade is connected with the mounting frame through the driving member and is positioned on one side, close to the air outlet pipeline, of the mounting frame, and the driving member is arranged on the mounting frame and is connected with the rotary fan blade.
3. The sanding treatment device for ultra-thin ultraviolet resistant cotton fabric as defined in claim 2, it is characterized in that the method comprises the steps of,
The driving component comprises a rotating motor and a rotating shaft, wherein the rotating motor is fixedly connected with the mounting frame and is positioned on one side of the mounting frame, and the rotating shaft is connected with the output end of the rotating motor, is fixedly connected with the rotating fan blade and is positioned on one side, close to the rotating fan blade, of the rotating motor.
4. The sanding treatment device for ultra-thin ultraviolet resistant cotton fabric as defined in claim 1, it is characterized in that the method comprises the steps of,
The filter assembly further comprises an observation window which is fixedly connected with the rotary door and is positioned on one side of the rotary door.
5. The sanding treatment device for ultra-thin ultraviolet resistant cotton fabric as defined in claim 1, it is characterized in that the method comprises the steps of,
The filter assembly further comprises a blocking member, the blocking member comprises a protective net and a filter screen, the protective net is fixedly connected with the air outlet pipeline and is positioned on one side of the air outlet pipeline, and the filter screen is fixedly connected with the air inlet pipeline and is positioned on one side of the air inlet pipeline.
CN202421899790.7U 2024-08-07 2024-08-07 Sanding treatment equipment for ultrathin ultraviolet-resistant cotton fabric Active CN223342973U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202421899790.7U CN223342973U (en) 2024-08-07 2024-08-07 Sanding treatment equipment for ultrathin ultraviolet-resistant cotton fabric

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202421899790.7U CN223342973U (en) 2024-08-07 2024-08-07 Sanding treatment equipment for ultrathin ultraviolet-resistant cotton fabric

Publications (1)

Publication Number Publication Date
CN223342973U true CN223342973U (en) 2025-09-16

Family

ID=97014719

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202421899790.7U Active CN223342973U (en) 2024-08-07 2024-08-07 Sanding treatment equipment for ultrathin ultraviolet-resistant cotton fabric

Country Status (1)

Country Link
CN (1) CN223342973U (en)

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