Fabric surface dust removal device for fabric processing
Patent Information
- Application Number
- CN202522079413.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-26
- Publication Date
- 2026-10-09
- Estimated Expiration
- 2035-09-26
AI Technical Summary
常见种类 在服装大世界里,服装的面料五花八门,日新月异,在对面料进行加工时,需要用到除尘装置对面料的表面进行除尘,但是传统面料加工用面料表面除尘装置对面料的除尘效果差,除尘手段单一,从而无法将面料表面的灰尘快速完全去除,进而易使面料因灰尘附着而影响后续加工效果,会直接降低后续面料的加工质量,且会同步提高次品率
[0011]本实用新型的有益效果是:本实用新型通过设置辅清组件,可预先对面料进行持续性敲打,使其上附着灰尘震离面料,且配合吸附结构,可将震离的灰尘快速抽离,且后续可对面料的顶部和底部进行持续性负压吸附除尘,此时利用多种除尘方式,可将面料上的灰尘快速去除,极大的提高了装置对面料的除尘效果,从而可避免面料易因灰尘附着而影响后续加工效果,且可避免降低后续面料的加工质量。
Smart Images

Figure CN224833295U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of fabric processing technology, and in particular relates to a fabric surface dust removal device for fabric processing. Background Technology
[0002] Fabric is the material used to make clothing. As one of the three essential elements of clothing, fabric not only interprets the style and characteristics of clothing but also directly influences the color and shape of the garment. Common types of fabrics are incredibly diverse and constantly evolving in the world of clothing. When processing fabrics, dust removal devices are needed to clean the surface. However, traditional fabric surface dust removal devices are ineffective and rely on limited methods, failing to quickly and completely remove dust from the fabric surface. This dust adhesion can negatively impact subsequent processing, directly reducing the quality of later fabric processing and simultaneously increasing the defect rate. Utility Model Content
[0003] The purpose of this invention is to provide a fabric surface dust removal device for fabric processing. It employs an auxiliary cleaning component to continuously beat the fabric beforehand, shaking off any dust adhering to it. Combined with an adsorption structure, the shaken dust can be quickly extracted. Furthermore, continuous negative pressure adsorption can be applied to the top and bottom of the fabric for dust removal. By utilizing multiple dust removal methods, dust on the fabric can be quickly removed, greatly improving the device's dust removal effect. This prevents dust from easily affecting subsequent processing and avoids reducing the quality of subsequent fabric processing, thus solving the aforementioned technical problems.
[0004] The technical solution of this utility model to solve the above-mentioned technical problems is as follows: A fabric surface dust removal device for fabric processing includes a base frame and a first box and a second box symmetrically fixed on the base frame in the left-right direction. An adsorption box is fixed on the front of the base frame. The first box and the second box are provided with through slots for the fabric to pass through on both sides. An auxiliary cleaning component for removing dust from the fabric is provided in the first box, the second box and the adsorption box. The auxiliary cleaning component includes a vibrating frame that is slidably disposed in the first box and whose bottom sides are attached to the fabric. An electric push rod is fixed on the top of the first box and the piston rod of the electric push rod is fixed on the top of the vibrating frame. Multiple sets of T-shaped rods are inserted sequentially in the front-back direction on the left side of the top and the right side of the bottom of the second box. Adjacent sets of T-shaped rods are located in the second box. One end of the adsorption box is fixed with an adsorption frame for use with the fabric. The two sets of adsorption frames are arranged in an alternating and opposite manner. Each set of T-shaped rods is wound with a spring, and the two ends of the spring are fixed to the protruding end of the T-shaped rod and the second box. The side of the adsorption frames that are far apart from each other is connected to an air pipe. The two sides of the top back of the adsorption box are connected to a connecting frame and an L-shaped tube with one end closed, respectively, along the left and right directions. One end of the air pipe passes through the second box and is connected to the L-shaped tube. The two ends of the connecting frame that are far away from the adsorption box are connected to the first box. The end of the air pipe that is close to the adsorption frame is a telescopic tube structure. An air pump is fixed to the front of the top of the adsorption box. The air inlet of the air pump passes through an auxiliary pipe into the adsorption box. A filter screen is fixed to the front of the inner cavity of the adsorption box to block the auxiliary pipe.
[0005] Preferably, a strip-shaped soft pad is fixed to the side of the adsorption frame closest to the fabric, and the side of the strip-shaped soft pad away from the adsorption frame is attached to the fabric.
[0006] Preferably, a sliding plate is fixed to the side of the T-shaped rod, and each set of sliding plates is slidably provided with a slide rail fixed on the side wall of the second box at the end away from the T-shaped rod.
[0007] Preferably, both the L-shaped tube and the connecting frame are equipped with auxiliary solenoid valves at the ends near the adsorption box.
[0008] Preferably, each set of adsorption frames has at least four sets of T-shaped rods and springs.
[0009] Preferably, both sides of the first and second boxes are provided with guide rollers for use with the fabric.
[0010] Preferably, the contact area between the shock frame and the fabric is a long, cylindrical structure.
[0011] The beneficial effects of this utility model are as follows: By setting up an auxiliary cleaning component, the fabric can be continuously beaten in advance to shake off the dust adhering to it. With the adsorption structure, the shaken dust can be quickly extracted. Furthermore, the top and bottom of the fabric can be continuously adsorbed and dusted afterward. At this time, by using multiple dust removal methods, the dust on the fabric can be quickly removed, which greatly improves the dust removal effect of the device on the fabric. This can prevent the fabric from being easily affected by dust adhesion and thus avoid reducing the processing effect of the subsequent fabric.
[0012] This invention, by setting a strip-shaped soft pad, can protect the contact area between the adsorption frame and the fabric, thus preventing the adsorption frame from damaging the fabric.
[0013] This invention, by setting up a sliding plate and a sliding rail, utilizes the sliding connection between the two to slide and limit the T-shaped rod and the adsorption frame, thereby improving the stability of the adsorption frame during movement, preventing tilting, and thus improving the adsorption and dust removal effect on the fabric.
[0014] This invention, by setting an auxiliary solenoid valve, can control the closed state of the L-shaped tube and the bottom of the connecting frame, so that the adsorption box can be quickly drawn into a negative pressure state in the initial state.
[0015] This invention limits the number of T-shaped rods and springs on the adsorption frame to provide sufficient pushing force to allow it to maintain continuous contact with the fabric through the strip-shaped soft pad, thereby improving the dust removal effect on the fabric.
[0016] This invention, by setting guide rollers, can guide the fabric and prevent the fabric from directly contacting the edges of the side grooves of the first and second housings, thus avoiding wear and tear on the fabric.
[0017] This invention, by limiting the shape of the bottom of the shock frame, avoids sharp points from damaging the fabric during up-and-down shocks. Attached Figure Description
[0018] The advantages of the present invention, as described above and / or in the following detailed description in conjunction with the accompanying drawings, will become clearer and more readily understood. These drawings are merely illustrative and do not limit the scope of the present invention. Figure 1 This is a schematic diagram of the overall structure of this utility model; Figure 2 This is a rear-view, bottom-view view of the overall structure of this utility model; Figure 3 This is a partial sectional view of the structure of the first housing of this utility model; Figure 4 This is a partial sectional view of the structure of the second housing of this utility model; Figure 5This is a partial cross-sectional view of the adsorption box of this utility model.
[0019] In the diagram: 1. Base frame; 2. First chamber; 3. Second chamber; 4. Adsorption box; 5. Guide roller; 6. Vibration frame; 7. Electric push rod; 8. T-shaped rod; 9. Spring; 10. Adsorption frame; 11. Strip pad; 12. Sliding plate; 13. Slide rail; 14. Air pipe; 15. Connecting frame; 16. L-shaped pipe; 17. Auxiliary solenoid valve; 18. Air pump; 19. Filter screen. Detailed Implementation
[0020] In the following description, an embodiment of a fabric surface dust removal device for fabric processing according to the present invention will be described with reference to the accompanying drawings.
[0021] The embodiments described herein are specific implementations of this utility model, used to illustrate the concept of this utility model. They are all illustrative and exemplary, and should not be construed as limiting the implementation methods or scope of this utility model. In addition to the embodiments described herein, those skilled in the art can employ other obvious technical solutions based on the content disclosed in the claims and specification of this application. These technical solutions include those that make any obvious substitutions and modifications to the embodiments described herein.
[0022] Appendix to this instruction manual Figure 1-5 The figures are schematic diagrams to illustrate the concept of this utility model, showing the shapes of the various parts and their interrelationships. Please note that, to clearly demonstrate the structure of the components in the embodiments of this utility model, the figures are not drawn to the same scale. The same reference numerals are used to indicate the same parts.
[0023] Example 1: A fabric surface dust removal device for fabric processing includes a base frame 1 and a first box 2 and a second box 3 symmetrically fixed on the base frame 1 in the left-right direction. An adsorption box 4 is fixed to the front of the base frame 1. Passageways for fabric to pass through are opened on both sides of the first box 2 and the second box 3. A controller is provided on the front of the second box 3. A cleaning auxiliary assembly for removing dust from the fabric is installed inside the first box 2, the second box 3, and the adsorption box 4. The cleaning auxiliary assembly includes a vibrating frame 6 slidably disposed inside the first box 2 and with its bottom sides attached to the fabric. An electric push rod 7 is fixed to the top of the first box 2, and the piston rod of the electric push rod 7 is fixed to the top of the vibrating frame 6. Multiple sets of T-shaped rods 8 are sequentially inserted along the front-back direction on the left side of the top and the right side of the bottom of the second box 3. One end of each adjacent set of T-shaped rods 8 inside the second box 3 is fixed with a... The adsorption frame 10 used in conjunction with the fabric has two sets of adsorption frames 10 arranged in an alternating and opposite manner. Each set of T-shaped rods 8 is wound with a spring 9, and the two ends of the spring 9 are fixed to the protruding end of the T-shaped rod 8 and the second box 3. The side of the adsorption frame 10 that is far away from each other is connected to an air pipe 14. The two sides of the top back of the adsorption box 4 are respectively connected to a connecting frame 15 and an L-shaped tube 16 with one end closed in the left and right direction. One end of the air pipe 14 passes through the second box 3 and is connected to the L-shaped tube 16. The two ends of the connecting frame 15 that are far away from the adsorption box 4 are connected to the first box 2. The end of the air pipe 14 that is close to the adsorption frame 10 has a telescopic tube structure. An air pump 18 is fixed on the front of the top of the adsorption box 4. The air inlet of the air pump 18 passes through an auxiliary pipe into the adsorption box 4. A filter screen 19 that blocks the auxiliary pipe is fixed on the front of the inner cavity of the adsorption box 4.
[0024] Specifically, this invention, by setting up an auxiliary cleaning component, utilizes a shocking frame 6 and an electric push rod 7 with a preset reciprocating stroke to continuously beat the fabric up and down, shaking off the dust adhering to the fabric. The design of the air pump 18, the adsorption box 4, and the filter screen 19 forms a negative pressure traction adsorption structure, so that the shaken dust can be quickly extracted through the connecting frame 15. The design of the spring 9 and the T-shaped rod 8 forms a continuous pushing structure for the adsorption frame 10, so that the two sets of adsorption frames 10 arranged in opposite directions can fit against the top and bottom of the fabric. In conjunction with the above-mentioned negative pressure traction adsorption structure, the top and bottom of the fabric can be continuously adsorbed and dusted by negative pressure. At this time, by using multiple dust removal methods, the dust on the fabric can be quickly removed, which greatly improves the dust removal effect of the device on the fabric. This can prevent the fabric from being easily affected by dust adhesion and thus avoid reducing the processing quality of the subsequent fabric.
[0025] A strip-shaped soft pad 11 is fixed to the side of the adsorption frame 10 closest to the fabric, and the side of the strip-shaped soft pad 11 away from the adsorption frame 10 is attached to the fabric.
[0026] Specifically, the design of the strip-shaped soft pad 11 facilitates the protection of the contact area between the adsorption frame 10 and the fabric, preventing the hard adsorption frame 10 from damaging the fabric.
[0027] A sliding plate 12 is fixed to the side of the T-shaped rod 8, and a slide rail 13 fixed on the side wall of the second box 3 is slidably provided at the end of each sliding plate 12 away from the T-shaped rod 8.
[0028] Specifically, by utilizing the sliding connection between the sliding plate 12 and the slide rail 13, the T-shaped rod 8 and the adsorption frame 10 can be slidably limited, which improves the stability of the adsorption frame 10 when it moves and avoids tilting, thereby improving the adsorption and dust removal effect on the fabric.
[0029] Both the L-shaped tube 16 and the connecting frame 15 are equipped with auxiliary solenoid valves 17 at the ends near the adsorption box 4.
[0030] Specifically, the design of the auxiliary solenoid valve 17 can control the closed state of the L-shaped tube 16 and the bottom of the connecting frame 15, so as to seal the inside of the auxiliary adsorption box 4 and facilitate the rapid formation of a negative pressure state in the auxiliary adsorption box 4.
[0031] Each set of adsorption frames 10 has at least four sets of T-shaped rods 8 and springs 9.
[0032] Specifically, the number of T-shaped rods 8 and springs 9 on the adsorption frame 10 is limited in order to provide sufficient pushing force to the adsorption frame 10 so that the adsorption frame 10 can maintain continuous contact with the fabric through the strip pad 11, thereby improving the dust removal effect on the fabric.
[0033] Both sides of the first box 2 and the second box 3 are equipped with guide rollers 5 for use with the fabric.
[0034] Specifically, the design of the guide roller 5 can guide the fabric and prevent the fabric from directly contacting the edge of the side groove of the first box 2 and the second box 3, thus avoiding wear on the fabric.
[0035] The contact area between the shock frame 6 and the fabric is a long, cylindrical structure.
[0036] Specifically, the limitation on the bottom shape of the shock frame 6 can effectively prevent sharp points from damaging the fabric during up-and-down shocks, and can reduce the contact area with the fabric, thereby improving the shock effect.
[0037] The specific usage process is as follows: In the initial state, the elastic rebound of spring 9 continuously provides a pushing force to T-shaped rod 8 and adsorption frame 10, causing the two sets of adsorption frames 10, which are arranged in opposite directions, to adhere to the top and bottom of the fabric through the strip soft pad 11. Then, the user turns on the electric push rod 7 and air pump 18 through the controller and presets the reciprocating stroke of electric push rod 7. At this time, electric push rod 7 can drive the shock frame 6 to move up and down reciprocally, thereby knocking the fabric, which is moving at a uniform speed, up and down reciprocally. The two ends of the fabric are connected to the external take-up and unwind drums, shaking the dust attached to the fabric away from the fabric. At the same time, air pump 18 extracts the air from the adsorption box 4, making its interior a negative pressure state, which can form a negative pressure pull. The adsorption structure allows the user to open the auxiliary solenoid valve 17 via the controller, releasing the closure of the connecting frame 15 and the L-shaped tube 16. The connecting frame 15 then quickly extracts the shaken dust from the first chamber 2, thus performing preliminary dust removal on the fabric. The pre-dust-removed fabric is then conveyed to the second chamber 3. In conjunction with the aforementioned negative pressure traction adsorption structure, the adsorption frame 10 continuously applies negative pressure to the top and bottom of the fabric for dust removal. The adsorbed dust is then transported to the adsorption chamber 4 via the air pipe 14 and the L-shaped tube 16. At this time, the filter screen 19 isolates the dust to prevent damage to the air pump 18. Utilizing multiple dust removal methods, dust on the fabric can be quickly removed. This invention, through the inclusion of an auxiliary cleaning component... By utilizing the shock frame 6 and the electric push rod 7 with a preset reciprocating stroke, the fabric can be continuously tapped up and down beforehand, causing dust to be shaken off the fabric. The design of the air pump 18, adsorption box 4, and filter screen 19 forms a negative pressure traction adsorption structure, allowing the shaken dust to be quickly extracted through the connecting frame 15. The design of the spring 9 and T-shaped rod 8 forms a continuous pushing structure for the adsorption frame 10, allowing the two sets of adsorption frames 10, arranged in opposite directions, to adhere to the top and bottom of the fabric. Combined with the aforementioned negative pressure traction adsorption structure, continuous negative pressure adsorption and dust removal can be performed on the top and bottom of the fabric. At this time, using multiple dust removal methods, dust on the fabric can be quickly removed, greatly improving the efficiency of the fabric. The design of the strip-shaped soft pad 11 protects the contact area between the adsorption frame 10 and the fabric, preventing the hard adsorption frame 10 from damaging the fabric. The sliding connection of the sliding plate 12 and the slide rail 13 limits the sliding movement of the T-shaped rod 8 and the adsorption frame 10, improving the stability of the adsorption frame 10 during movement and preventing tilting, thereby improving the adsorption and dust removal effect on the fabric. The design of the auxiliary solenoid valve 17 controls the sealing state of the L-shaped tube 16 and the bottom of the connecting frame 15, so as to assist the sealing of the adsorption box 4 and facilitate the rapid formation of a negative pressure state in the adsorption box 4.The limitation on the number of T-shaped rods 8 and springs 9 on the adsorption frame 10 ensures sufficient pushing force, allowing the adsorption frame 10 to maintain continuous contact with the fabric through the strip-shaped soft pad 11, thus improving the dust removal effect on the fabric. The design of the guide roller 5 guides the fabric, preventing it from directly contacting the edges of the side grooves of the first and second housings 2 and 3, thus avoiding fabric abrasion. The limitation on the bottom shape of the vibration frame 6 effectively prevents sharp points from damaging the fabric during up-and-down vibrations, and reduces the contact area with the fabric, improving the vibration effect.
[0038] In summary, this fabric surface dust removal device for fabric processing employs an auxiliary cleaning component that allows for continuous pre-beating of the fabric to shake off dust. Combined with an adsorption structure, the shaken dust is quickly extracted. Furthermore, continuous negative pressure adsorption is applied to the top and bottom of the fabric for dust removal. By utilizing multiple dust removal methods, the device can rapidly remove dust from the fabric, significantly improving its dust removal efficiency. This prevents dust from easily affecting subsequent processing and maintains the quality of the processed fabric.
[0039] The technical features disclosed above are not limited to the combinations of the disclosed features with other features. Those skilled in the art can also make other combinations of the technical features according to the purpose of the utility model in order to achieve the purpose of the utility model.
Claims
1. A fabric surface dust removal device for fabric processing, comprising a base frame (1) and a first housing (2) and a second housing (3) symmetrically fixed on the base frame (1) in the left-right direction, characterized in that: The base frame (1) is fixed with an adsorption box (4) on the front. The first box (2) and the second box (3) are provided with through slots for the fabric to pass through. The first box (2), the second box (3) and the adsorption box (4) are provided with auxiliary cleaning components for removing dust from the fabric. The auxiliary cleaning component includes a shocking frame (6) that is slidably disposed inside a first housing (2) and attached to the fabric on both sides of its bottom. An electric push rod (7) is fixed to the top of the first housing (2), and the piston rod of the electric push rod (7) is fixed to the top of the shocking frame (6). Multiple sets of T-shaped rods (8) are inserted sequentially along the front-back direction on the left side of the top and the right side of the bottom of the second housing (3). One end of each set of T-shaped rods (8) inside the second housing (3) is fixed with an adsorption frame (10) for use with the fabric. The two sets of adsorption frames (10) are arranged in an alternating and opposite manner. A spring (9) is wound around each set of T-shaped rods (8), and the two ends of the spring (9) are fixed to the protruding end of the T-shaped rod (8) and the second housing (3). (10) A gas pipe (14) is connected to the side that is far apart from each other. A connecting frame (15) and an L-shaped tube (16) with one end closed are connected to the two sides of the top back of the adsorption box (4) in the left and right directions, respectively. One end of the gas pipe (14) passes through the second box (3) and is connected to the L-shaped tube (16). The two ends of the connecting frame (15) that are far away from the adsorption box (4) are connected to the first box (2). The end of the gas pipe (14) that is close to the adsorption frame (10) is a telescopic tube structure. An air pump (18) is fixed on the front of the top of the adsorption box (4). The air inlet of the air pump (18) passes through the auxiliary tube into the adsorption box (4). A filter screen (19) that blocks the auxiliary tube is fixed on the front of the inner cavity of the adsorption box (4).
2. The fabric surface dust removal device for fabric processing according to claim 1, characterized in that: The adsorption frame (10) has a strip-shaped pad (11) fixed on the side closest to the fabric, and the side of the strip-shaped pad (11) away from the adsorption frame (10) is attached to the fabric.
3. The fabric surface dust removal device for fabric processing according to claim 1, characterized in that: The side of the T-shaped rod (8) is fixed with a sliding plate (12), and each set of sliding plates (12) is slidably provided with a slide rail (13) fixed on the side wall of the second box (3) at the end away from the T-shaped rod (8).
4. The fabric surface dust removal device for fabric processing according to claim 1, characterized in that: The L-shaped tube (16) and the connecting frame (15) are both equipped with auxiliary solenoid valves (17) at the end near the adsorption box (4).
5. A fabric surface dust removal device for fabric processing according to claim 1, characterized in that: The number of T-shaped rods (8) and springs (9) on each adsorption frame (10) is at least four.
6. The fabric surface dust removal device for fabric processing according to claim 1, characterized in that: The first box (2) and the second box (3) are each provided with guide rollers (5) for use with the fabric.
7. The fabric surface dust removal device for fabric processing according to claim 1, characterized in that: The contact area between the shock frame (6) and the fabric is a long, cylindrical structure.