Embossing cleaning device for roving frame
By adopting a duckbill-shaped suction nozzle and regulating tube design on the roving frame, the problems of floating waste not being easily blown away and the fixed position of the suction nozzle are solved, realizing efficient absorption and transmission of floating waste, improving the production environment and increasing the stability and service life of the device.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- 安庆新维智能纺织科技有限公司
- Filing Date
- 2025-04-18
- Publication Date
- 2026-04-10
AI Technical Summary
On existing roving frames, floating lint is not easily blown away by the blower, causing it to accumulate on the table and affecting the quality of yarn. The nozzle installation position is fixed and cannot be adjusted, and the connection mechanism is unstable, affecting the normal operation of the cleaning device.
Featuring a duckbill-shaped suction nozzle and adjustable tube design, the nozzle's installation position is adjustable. Connected by a rotating ring and support, it ensures a secure connection between the nozzle and the blower, achieving efficient absorption and transfer of floating debris.
It improves the absorption efficiency of floating debris, reduces the accumulation of debris around the machine, improves the production environment, and ensures the stability and service life of the cleaning device.
Smart Images

Figure CN224106014U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of roving frame technology, specifically to a roving frame floating debris cleaning device. Background Technology
[0002] In the textile production process, the roving frame is one of the key spinning equipment, and its operating status directly affects the quality of the yarn and production efficiency. During the operation of the roving frame, upper and lower cleaners continuously clean the inside of the machine to remove impurities such as loose fibers and short lint adhering to the machine parts.
[0003] However, if these cleaned-out floating fibers are not cleaned up in a timely and effective manner, they will scatter and accumulate around the machine, not only affecting the production environment of the workshop and increasing the difficulty and labor intensity of cleaning work, but also potentially being sucked back into the machine, causing a decline in yarn quality, such as yarn defects and increased fuzz. In severe cases, it may even affect the normal operation of the roving frame and reduce the service life of the equipment.
[0004] The existing equipment has the following drawbacks: The existing nozzles responsible for blowing and suction on the table are cylindrical nozzles with a shower head at the front. During production, the floating lint on the table is not easily blown away by the blower, resulting in lint accumulation. The floating lint carried into the yarn directly affects the yarn quality. In addition, if the installation position of the suction nozzle is fixed, it cannot be adjusted according to actual needs, affecting the absorption effect of floating lint. The connection mechanism is not stable enough and is prone to loosening during equipment operation, which in turn affects the normal operation of the entire cleaning device.
[0005] Therefore, this application proposes a roving frame floating debris cleaning device to solve the above-mentioned problems. Utility Model Content
[0006] The purpose of this invention is to provide a roving frame floating waste cleaning device to solve the problems of floating waste accumulation on the table surface being difficult to be blown away by the blower, resulting in flying waste accumulation on the table surface. The floating waste brought into the yarn directly affects the yarn quality. In addition, if the installation position of the suction nozzle is fixed, it cannot be adjusted according to actual needs, affecting the absorption effect of floating waste; the connection mechanism is not stable enough, and it is easy to loosen during the operation of the equipment, thus affecting the normal operation of the entire cleaning device.
[0007] To achieve the above objectives, this utility model provides the following technical solution: a roving frame floating debris cleaning device, comprising:
[0008] The absorption mechanism includes a duckbill-shaped suction nozzle mounted on the blower for absorbing the floating debris cleaned by the upper and lower cleaners of the roving frame, and an adjustment tube mounted on the side of the suction nozzle near the blower for adjusting the installation position of the suction nozzle.
[0009] The connecting mechanism comprises a rotating ring arranged on the absorbing mechanism and used for connecting the absorbing mechanism with a connecting pipe on the blowing and sucking fan, and a supporting piece arranged inside the rotating ring and used for supporting the adjusting pipe.
[0010] The absorbing mechanism further comprises:
[0011] An absorbing pipe is arranged between the suction nozzle and the adjusting pipe.
[0012] A connecting disc is arranged on the side of the adjusting pipe close to the connecting pipe and abuts against the side of the supporting piece close to the connecting pipe, and is used for connecting the adjusting pipe with the supporting piece.
[0013] The supporting piece comprises:
[0014] A supporting ring is arranged inside the rotating ring, and the adjusting pipe is arranged inside the supporting ring.
[0015] An abutting ring is arranged on the side of the supporting ring close to the adjusting pipe and is used for supporting the connecting disc.
[0016] A sliding block is circularly designed on the supporting ring and is slidingly connected inside the rotating ring, and a sliding groove is formed in the rotating ring and is used for sliding the sliding block.
[0017] The outer side of the connecting disc is provided with equiangularly arranged limiting blocks, and limiting grooves are formed in the supporting ring and are used for mounting the limiting blocks.
[0018] The outer side of the rotating ring is provided with anti-skid grooves.
[0019] The inner side of the rotating ring is provided with a threaded groove close to the connecting pipe, and the rotating ring is threadedly connected with the connecting pipe.
[0020] Compared with the prior art, the beneficial effects of the utility model are:
[0021] The device absorbing mechanism is provided with a duckbill-shaped suction nozzle, and the special-shaped suction nozzle can more effectively gather and absorb the lint cleaned by the upper and lower cleaners of the roving frame, improves the lint absorption efficiency, and simultaneously, the installation position of the suction nozzle can be conveniently adjusted through the adjusting pipe, so that the suction nozzle can be flexibly adjusted according to the actual lint generation position and distribution condition, the best absorption effect is ensured, the lint is greatly reduced in the scattering and accumulation around the machine, the production environment of the workshop is improved, the connecting mechanism ensures that the absorbing mechanism can continuously and stably work, and the reliability and service life of the device are improved. BRIEF DESCRIPTION OF DRAWINGS
[0022] Figure 1 It is a main structure schematic view in an embodiment of the utility model.
[0023] Figure 2 It is the structure schematic view of the front view in an embodiment of the utility model;
[0024] Figure 3 It is the structure schematic view of the section view in an embodiment of the utility model;
[0025] Figure 4 It is the structure schematic view of the absorption mechanism in an embodiment of the utility model;
[0026] Figure 5 It is the structure schematic view of the explosion in an embodiment of the utility model;
[0027] Figure 6 It is the structure schematic view of the support in an embodiment of the utility model;
[0028] Figure 7 It is the structure schematic view of the angle of the adjusting pipe to the suction nozzle in an embodiment of the utility model;
[0029] Figure 8 It is the structure schematic view of the A part in the figure. Figure 3
[0030] Fig. 1, blower fan; 2, connecting pipe; 3, absorption mechanism; 31, suction pipe; 32, suction nozzle; 33, adjusting pipe; 34, connecting disc; 341, limit block; 4, connecting mechanism; 41, rotating ring; 4101, sliding groove; 411, anti-skid groove; 412, screw groove; 42, support; 421, support ring; 42101, limit groove; 422, abutting ring; 423, sliding block. DETAILED DESCRIPTION
[0031] The technical scheme in the embodiments of the utility model will be described clearly and completely below in conjunction with the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the protection scope of the utility model.
[0032] Please refer to Figures 1-8 The utility model provides a kind of technical scheme: roving machine float cleaning device, comprising: absorption mechanism 3, including being set on duckbill type for the suction nozzle 32 of absorption mechanism 3 for the float of roving machine upper and lower cleaner clean out and be used to adjust the adjusting pipe 33 of suction nozzle 32 installation position in the side close to blower fan 1;Connecting mechanism 4, including being set on absorption mechanism 3 for the rotating ring 41 of absorption mechanism 3 and blower fan 1 on connecting pipe 2 is connected, setting is used to support adjusting pipe 33 in rotating ring 41 inside support 42.
[0033] It should be noted that in operation, the suction nozzle 32 is inserted from the inside of the rotating ring 41, and the width of the suction nozzle 32 is greater than the gear of the rotating ring 41, so that the suction nozzle 32 can be inserted obliquely, and then the adjusting pipe 33 is pulled to move inside the rotating ring 41, so that one side of the adjusting pipe 33 abuts against the support 42, and then the rotating ring 41 is connected with the connecting pipe 2 on the blowing and suction fan 1, completing the fixing work of the suction mechanism 3 with the blowing and suction fan 1, and then the position of the suction nozzle 32 is adjusted by the adjusting pipe 33 according to the position of the lint and flock cleaned out, so that the suction nozzle 32 is more fitted to the position of the lint and flock, and when the blowing and suction fan 1 works, negative pressure is generated, so that the lint and flock enter the inside of the connecting pipe 2 from the suction nozzle 32 and then are discharged, and by setting the duckbill-shaped suction nozzle 32 of the suction mechanism 3, the special-shaped suction nozzle 32 can more effectively gather and absorb the lint cleaned out by the upper and lower cleaners of the roving frame, improving the absorption efficiency of the lint, and at the same time, the installation position of the suction nozzle 32 can be conveniently adjusted by the adjusting pipe 33, so that the suction nozzle 32 can be flexibly adjusted according to the actual position and distribution of the lint, ensuring the best absorption effect, thereby greatly reducing the scattering and accumulation of the lint around the machine, improving the production environment of the workshop, and the connecting mechanism 4 ensures that the suction mechanism 3 can work continuously and stably, improving the reliability and service life of the device.
[0034] In an embodiment, the suction mechanism 3 further comprises: a suction pipe 31 arranged between the suction nozzle 32 and the adjusting pipe 33; and a connecting disc 34 arranged on the side of the adjusting pipe 33 close to the connecting pipe 2 and abutting against the side of the support 42 close to the connecting pipe 2, for connecting the adjusting pipe 33 with the support 42.
[0035] In this way, referring to Figures 4-7 , the suction pipe 31 is arranged between the suction nozzle 32 and the adjusting pipe 33, which plays a good transition connection role, and it enables the lint sucked from the suction nozzle 32 to be smoothly transmitted to the adjusting pipe 33 and then to the subsequent cleaning system, and in the installation of the suction mechanism 3, the suction nozzle 32 is inserted into the rotating ring 41, and then the connecting disc 34 abuts against the support 42, completing the fixing work of the suction mechanism 3 with the connecting mechanism 4, and the design of the connecting disc 34 makes the installation and disassembly of the suction mechanism 3 more convenient, and in the installation process, the connecting disc 34 and the support 42 are docked, so that the adjusting pipe 33 and the support 42 can be quickly and accurately connected.
[0036] In one embodiment, the support member 42 includes: a support ring 421 disposed inside the rotating ring 41, with the adjusting tube 33 passing through the inside of the support ring 421; an abutment ring 422 disposed on the side of the support ring 421 near the adjusting tube 33, for supporting the connecting plate 34; and a slider 423, which is annularly designed and disposed on the support ring 421 and slidably connected inside the rotating ring 41, with a sliding groove 4101 on the rotating ring 41 for the slider 423 to slide.
[0037] This design is for reference. Figures 4-7 After installing the absorption mechanism 3 inside the rotating ring 41, align the rotating ring 41 with the connecting pipe 2. Then, adjust the position of the suction nozzle 32 to a suitable point, hold the adjusting pipe 33, and rotate the rotating ring 41 to fix it with the connecting pipe 2. The position of the suction nozzle 32 will not change during the rotation of the rotating ring 41. This design ensures that the adjusting pipe 33 maintains a fixed position within the suction nozzle 32, preventing the suction nozzle 32 from shifting when the rotating ring 41 is fixed with the connecting pipe 2. This guarantees the efficient absorption and transfer of floating debris by the suction nozzle 32. The slider 423 is fixed to the support ring 421 and slidably connected inside the rotating ring 41. The rotating ring 41 has a sliding groove 4101 for the slider 423 to slide, allowing the support member 42 to rotate and adjust flexibly inside the rotating ring 41, enabling the suction nozzle 32 to move more accurately. The slider 423 is precisely aligned with the location where the floating debris is generated, improving the cleaning effect. The design of the slider 423 and the sliding groove 4101 ensures the smooth rotation of the support 42 inside the rotating ring 41. The sliding groove 4101 provides a clear movement trajectory for the slider 423, enabling the slider 423 to maintain a stable movement state during sliding, reducing equipment failure and poor cleaning effect caused by unstable rotation. The abutment ring 422 is located on the side of the support ring 421 near the adjusting tube 33 to support the connecting plate 34. It provides a stable support surface for the connecting plate 34, ensuring that the connecting plate 34 remains flat and stable when connected with the adjusting tube 33 and the support 42, preventing the connecting plate 34 from deforming or loosening due to uneven force, and ensuring the reliability of the connection between the adjusting tube 33 and the support 42.
[0038] In one embodiment, a limiting block 341 is provided at an equal angle on the outer side of the connecting plate 34, and a limiting groove 42101 for installing the limiting block 341 is provided on the support ring 421.
[0039] This design is for reference. Figure 4 ,as well as Figure 5The cooperation between the limiting block 341 and the limiting groove 42101 realizes the accurate positioning between the connecting disc 34 and the support 42. During the installation process, the limiting block 341 can be accurately embedded in the limiting groove 42101, ensuring the accurate relative position of the connecting disc 34 and the support 42, which helps to ensure the coaxiality between the adjusting pipe 33 and the support 42, so that the airflow can smoothly pass through the adjusting pipe 33 and the support 42, avoiding the problems of poor airflow and poor floating flower cleaning effect caused by installation deviation.
[0040] In an embodiment, the outer side of the rotating ring 41 is provided with an anti-skid groove 411.
[0041] In this way, referring to Figures 4-7 During the installation, debugging or maintenance of the floating flower cleaning device of the roving frame, the operator may need to manually rotate the rotating ring 41 to adjust the angle and position of the absorption mechanism 3. The presence of the anti-skid groove 411 increases the friction between the fingers and the rotating ring 41, so that the operator can more easily hold and rotate the rotating ring 41.
[0042] In an embodiment, a threaded groove 412 is formed in the inner side of the rotating ring 41 near the connecting pipe 2, and the rotating ring 41 is threadedly connected with the connecting pipe 2.
[0043] In this way, referring to Figures 4-6 , and Figure 8 The threaded connection makes the installation process of the rotating ring 41 and the connecting pipe 2 simple and fast. The operator only needs to align the rotating ring 41 with the connecting pipe 2, and then rotate the rotating ring 41 so that the threaded groove 412 and the thread on the connecting pipe 2 cooperate with each other, and the installation can be easily completed.
Claims
1. A roving machine float cleaning device characterized in that, The utility model relates to a kind of blowing and sucking fan cleaning device, including: Absorption mechanism (3), including being arranged on the duckbill type suction nozzle (32) for absorbing float that blowing and sucking fan (1) is cleaned out by upper and lower cleaner of roving machine, adjusting pipe (33) for adjusting the installation position of suction nozzle (32) is arranged on the side of suction nozzle (32) close to blowing and sucking fan (1); Connecting mechanism (4), including rotating ring (41) for being connected with the connecting pipe (2) on blowing and sucking fan (1) for connecting absorption mechanism (3) with blowing and sucking fan (1) is arranged on absorption mechanism (3), support (42) for supporting adjusting pipe (33) is arranged in rotating ring (41) inside.
2. The roving machine lint cleaning device of claim 1, wherein: The absorption mechanism (3) further includes: Suction pipe (31), it is arranged between suction nozzle (32) and the adjusting pipe (33); Connecting disc (34), it is arranged on the side of adjusting pipe (33) close to connecting pipe (2) and abuts on the side of support (42) close to connecting pipe (2), for connecting the adjusting pipe (33) with the support (42).
3. The roving machine lint cleaning device of claim 2, wherein: The support (42) includes: Support ring (421), it is arranged in rotating ring (41) inside, and adjusting pipe (33) is arranged in the inside of support ring (421); Abutting ring (422), it is arranged on the side of support ring (421) close to adjusting pipe (33), for supporting connecting disc (34); Slider (423), circular ring type design is set on support ring (421) and is slidably connected in rotating ring (41) inside, and sliding groove (4101) for the slider (423) sliding is formed in rotating ring (41).
4. The roving machine lint cleaning device of claim 3, wherein: Limiting block (341) is equiangularly arranged on the outside of connecting disc (34), and limiting groove (42101) for installing the limiting block (341) is formed in support ring (421).
5. The roving machine lint cleaning device of claim 1, wherein: Antiskid groove (411) is formed on the outside of rotating ring (41).
6. The roving machine lint cleaning device of claim 1, wherein: Threaded groove (412) is formed in the position of rotating ring (41) close to connecting pipe (2) inside, and rotating ring (41) is threadedly connected with connecting pipe (2).