A winding device for a circular loom
Patent Information
- Application Number
- CN202522161890.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-13
- Publication Date
- 2026-09-01
- Estimated Expiration
- 2035-10-13
AI Technical Summary
[0005]本实用新型所要达到的目的就是提供一种圆织机用收卷装置,解决布料收卷过程中未被剖开的一侧边形成明显折痕而影响布料后续的加工效果的问题,将被剖开的布料展开成单侧后再进行收卷,避免未被剖开的一侧布料在收卷后形成明显折痕,进而有效避免折痕的存在影响布料的后续加工效果
[0007]采用上述技术方案后,本实用新型具有如下优点:在机架上设置输送辊和收卷辊,通过输送辊将圆织机纺织成型的布料向外输送,并通过收卷辊将布料进行收卷,方便布料的收纳,布料被收卷后,布料不会由于堆叠而出现较多压痕,布料从输送辊向收卷辊输送过程中,通过剖布组件将布料的一侧剖开,使得筒状的布料具有能展开成单层铺开的趋势,便于后续对布料进行展开收卷;布料被剖布组件剖开后,在收卷前,通过展布组件将布料展开,使得布料在收卷时是单层的,虽然未被剖开的一侧在展开和收卷后仍然具有较浅的折痕的印迹,但是展开后的单层收卷使得布料上的明显折痕被明显弱化,有效降低明显折痕对布料后续加工的影响,与现有技术CN202221531107.5中剖开而未被展开的布料相比较而言,避免未剖开的一侧在布料收卷后被挤压形成明显折痕,进而有效避免布料收卷后由于布料上具有明显折痕而影响布料的后续加工效果。
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Figure CN224704078U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the technical field of circular looms, and in particular to a winding device for circular looms. Background Technology
[0002] A circular loom is an industrial device used for weaving tubular fabric. The circular loom has many spindles on its warp frame. A specified number of warp yarns are used based on the width of the fabric and the width of the flat yarn. Before entering the circular loom, the warp yarns are crossed by the hem frame. The weft shuttle moves in a circular motion through these openings, weaving the fabric into tubular shapes. To facilitate the storage of the tubular fabric, a take-up roller is typically used to wind the fabric. During the winding process, to facilitate subsequent processing, the tubular fabric is usually cut open before winding.
[0003] The prior art CN202221531107.5 discloses a single-section circular loom, including a frame, a lifting assembly, and a winding assembly. The lifting assembly is connected to the frame and is used to lift a cylindrical woven bag. The winding assembly is used to wind up and store the cylindrical woven bag after it has been lifted by the lifting assembly. It also includes a cutting assembly for cutting the cylindrical woven bag. The cutting assembly includes a cutting blade. The cutting blade is mounted on the frame and contacts the cylindrical woven bag. By the cutting blade contacting the cylindrical woven bag and cooperating with the lifting assembly to drive the cylindrical woven bag to move, the cylindrical woven bag is cut into an unfolded woven fabric, reducing the steps required to process the unfolded woven fabric and effectively improving the processing efficiency of the fabric.
[0004] Although the prior art CN202221531107.5 reduces the number of steps required for processing unfolded woven fabric by splitting the fabric, effectively improving the processing efficiency of the fabric, it can be seen from the prior art CN202221531107.5 that after the fabric is split, it is directly wound around the roller. The unsplit side is squeezed by the continuously wound fabric after the fabric is wound, forming obvious creases on the fabric. The creases formed are difficult to eliminate in subsequent processing, thus affecting the subsequent processing effect of the fabric. Utility Model Content
[0005] The purpose of this invention is to provide a winding device for a circular loom, which solves the problem that obvious creases form on the un-slit side of the fabric during the winding process, thus affecting the subsequent processing effect of the fabric. The slit fabric is unfolded into one side before winding, which avoids obvious creases forming on the un-slit side of the fabric after winding, thereby effectively preventing the presence of creases from affecting the subsequent processing effect of the fabric.
[0006] To achieve the above objectives, the present invention adopts the following technical solution: a winding device for a circular loom, comprising a frame, wherein a conveying roller and a winding roller are provided on the frame, the conveying roller is located at the first end of the frame, and the winding roller is located at the last end of the frame, wherein the frame is provided with a fabric cutting assembly and a fabric spreading assembly for cutting the fabric from the side, the cut fabric is spread out by the fabric spreading assembly during the downward conveying process, the fabric cutting assembly and the fabric spreading assembly are located between the conveying roller and the winding roller, and the winding roller is used to wind up the fabric spread out by the fabric spreading assembly.
[0007] After adopting the above technical solution, this utility model has the following advantages: A conveying roller and a take-up roller are set on the frame. The conveying roller transports the fabric woven by the circular loom outwards, and the take-up roller takes the fabric up, facilitating fabric storage. After being taken up, the fabric will not have many indentations due to stacking. During the process of conveying the fabric from the conveying roller to the take-up roller, the fabric splitting component splits one side of the fabric, giving the tubular fabric a tendency to unfold into a single layer, facilitating subsequent unfolding and winding. After the fabric is split by the splitting component, before winding, it is spread by the unfolding component... The fabric is unfolded so that it is a single layer when rolled up. Although the un-slit side still has shallow creases after unfolding and rolling, the single-layer roll after unfolding significantly weakens the obvious creases on the fabric, effectively reducing the impact of obvious creases on the subsequent processing of the fabric. Compared with the fabric that is slit but not unfolded in the existing technology CN202221531107.5, this method avoids the un-slit side being squeezed and forming obvious creases after the fabric is rolled up, thus effectively preventing the fabric from being affected by obvious creases after rolling up and affecting the subsequent processing effect of the fabric.
[0008] Furthermore, the fabric spreading assembly includes a separating part, a spreading frame, and a guide roller. The spreading frame is mounted on the machine frame and extends upward. The separating part is located at the top of the spreading frame. The fabric cut by the fabric spreading assembly is separated by the separating part and conveyed downward along the spreading frame for spreading. The guide roller is rotatably mounted on the machine frame and located at the bottom of the spreading frame. The guide roller conveys the spread fabric to the take-up roller.
[0009] Using the aforementioned technical solution, after one side of the fabric is cut open by the fabric-cutting component, during the process of the fabric being conveyed downwards to the take-up roller, the separating part abuts against the side of the fabric that has not been cut open, separating the fabric. As the fabric continues to be conveyed downwards, the fabric-spreading frame unfolds the fabric. The unfolded fabric passes under the guide roller and is conveyed to the take-up roller. After being cut open, the fabric is unfolded by the fabric-spreading frame and then rolled up by the take-up roller. By wrapping the fabric around the take-up roller, it is convenient to store the fabric. Moreover, the unfolded fabric is less likely to be squeezed and have obvious indentations after being rolled up, thus effectively avoiding obvious creases caused by double-layer winding of the fabric, which would affect the subsequent processing effect of the fabric.
[0010] Furthermore, the display frame includes a first display rod and a second display rod, and the distance between the first display rod and the second display rod gradually increases from top to bottom.
[0011] By adopting the aforementioned technical solution, the fabric spreading frame is set up in the form of a first fabric spreading rod and a second fabric spreading rod, and the distance between the first fabric spreading rod and the second fabric spreading rod gradually increases during the downward conveying of the fabric, so as to ensure that the fabric can be spread open by the first fabric spreading rod and the second fabric spreading rod during the downward conveying of the fabric, thereby unfolding the split fabric and ensuring that the rolled-up fabric is a single layer, thereby weakening the creases that appear on the unsplit side of the fabric due to folding.
[0012] Furthermore, the tops of the first and second spreading rods are inclined toward the take-up roller, such that the guide roller is located in the area where the first and second spreading rods are projected vertically downwards.
[0013] Using the aforementioned technical solution, the fabric is first placed on the separating part, so that the separating part abuts against one side of the uncut fabric. The first and second spreading rods are inclined, and the guide roller is located in the area where the first and second spreading rods are vertically projected downwards. This ensures that the separated fabric contacts the first and second spreading rods as much as possible, so that the fabric is unfolded during the conveying process to the take-up roller. The inclined setting and the position setting of the guide roller ensure that the fabric is gradually unfolded by the first and second spreading rods during the conveying process to the guide roller.
[0014] Furthermore, the separating part has an abutting part that contacts the fabric, and the abutting part is arc-shaped.
[0015] By adopting the aforementioned technical solution, the contact part on the separating part is set as an arc, which reduces the wear on the fabric when the separating part contacts the fabric, thereby reducing the possibility of the fabric being torn and damaged during the unfolding process.
[0016] Furthermore, the fabric splitting assembly includes a support rod and a splitting blade. The support rod is mounted on the frame and is used to support the fabric. The support rod is located between the conveying roller and the fabric spreading assembly. The cutting edge of the splitting blade faces the fabric to split the fabric during conveying.
[0017] By adopting the aforementioned technical solution, the fabric cutting assembly is configured as a support rod and a cutting blade. The support rod supports the fabric, ensuring that the fabric passes over the support rod during the conveying process. At the same time, the cutting blade is set on the support rod, and the cutting blade cuts the fabric along the side of the fabric as it passes over the support rod. This facilitates the subsequent unfolding assembly to unfold the fabric and the winding roller to wind the fabric. The unfolded and wound fabric after cutting further weakens the creases on the uncut side of the fabric and improves the flatness of the fabric surface after winding. The cutting blade configuration allows the fabric cutting and winding to be completed on the same equipment, improving the production efficiency of the fabric.
[0018] Furthermore, the frame is provided with an adjusting rod and a driving component. The adjusting rod is located below the support rod. The cutting blade is threadedly connected to the adjusting rod and slidably connected to the support rod. The driving component is located on the frame and drives the adjusting rod to rotate so that the cutting blade slides relative to the support rod.
[0019] By adopting the aforementioned technical solution, the adjusting rod is placed on the lower side of the support rod to avoid obstructing the fabric conveying. A drive unit that can drive the support rod to rotate is set on the frame. The drive unit drives the support rod to rotate, thereby causing the slitting blade to slide relative to the support rod. When the fabric width is different, the position of the slitting blade is adjusted to ensure that the fabric can be cut by the slitting blade when passing through, which facilitates the subsequent unfolding and winding of the fabric.
[0020] Furthermore, the slitting blade and the winding roller are respectively located on both sides of the fabric spreading assembly.
[0021] By adopting the aforementioned technical solution, the slitting cutter and the take-up roller are respectively placed on both sides of the fabric spreading assembly, ensuring that after the fabric is cut, the cut surface of the fabric faces the fabric spreading assembly so that the fabric spreading assembly can unfold the fabric. The arrangement of the take-up roller on the other side reduces the possibility of wear between the fabric and the frame and reduces the possibility of damage to the fabric during the conveying process.
[0022] Furthermore, the frame is equipped with multiple spreading rollers, which are rotatably arranged and distributed on both sides of the fabric spreading assembly.
[0023] By employing the aforementioned technical solution, multiple spreading rollers are installed on both sides of the support rod. On the one hand, this ensures that the fabric surface remains as flat as possible when it reaches the support rod, guaranteeing that only one spot on the fabric surface is cut during the cutting process, thus reducing the possibility of damage to the fabric due to folds. On the other hand, after the fabric is cut, the spreading rollers keep the surface of the single layer of fabric flat, ensuring that the tension on both sides of the fabric is basically consistent during downward conveying, and ensuring that the fabric can be conveyed smoothly downwards and spread out as flat as possible.
[0024] Furthermore, the spreading roller is provided with multiple spreading ribs, which are distributed circumferentially on the spreading roller.
[0025] By adopting the aforementioned technical solution, multiple circumferentially distributed spreading ribs are set on the spreading roller, so that when the fabric comes into contact with the spreading roller, the spreading ribs push the fabric to both sides, thereby achieving the spreading effect. The setting of the spreading ribs ensures that the fabric can maintain a flat surface before and after being cut, thus ensuring that the fabric has only one cut when it is cut by the slitting knife, and also ensuring the stability of the fabric during the conveying process. Attached Figure Description
[0026] The present invention will be further described below with reference to the accompanying drawings: Figure 1This is a schematic diagram of a winding device for a circular loom according to the present invention; Figure 2 This is a schematic diagram of the structure of the spreading component in this utility model; Figure 3 This utility model Figure 2 Enlarged view of point A in the middle; Figure 4 This is a schematic diagram showing the distribution of the fabric splitting assembly and the fabric spreading assembly in this utility model; Figure 5 This utility model Figure 4 Enlarged view at point B in the middle; Figure 6 This is a schematic diagram of the unfolded fabric in this utility model; Figure 7 This is a schematic diagram of the fabric spreading roller in this utility model. Detailed Implementation
[0027] To make the objectives, technical solutions, and advantages of the embodiments of this utility model clearer, the technical solutions of the embodiments of this utility model will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this utility model, and not all embodiments.
[0028] The terms "first," "second," etc. (if present) in the specification and claims of this utility model are used to distinguish similar objects, not to describe a specific order or sequence. Even if "second" is used before a technical feature for distinction, it does not necessarily imply the presence of "first." It should be understood that in this utility model, "comprising" and "having," and any variations thereof, are intended to cover non-exclusive inclusion. It should be understood that in this utility model, "multiple" refers to two or more. "And / or" is merely a description of the relationship between related objects, indicating that three relationships can exist. For example, X and / or Y can represent: X alone, X and Y simultaneously, and Y alone. The character " / " generally indicates that the preceding and following related objects are in an "or" relationship. "Containing X, Y, and Z," "Containing X, Y, and Z" means that all three X, Y, and Z are included; "Containing X, Y, or Z" means that one of X, Y, and Z is included; "Containing X, Y, and / or Z" means that any one, two, or three of X, Y, and Z are included.
[0029] The technical solution of this utility model will be described in detail below with specific embodiments. The following specific embodiments can be selected to be combined or substituted with each other according to the actual situation, and the same or similar concepts or processes may not be described again in some embodiments.
[0030] like Figure 1As shown, this utility model provides a winding device for a circular knitting machine, including a frame 1. The frame 1 is equipped with a conveying roller 2 and a winding roller 3. The conveying roller 2 is located at the beginning of the frame 1, specifically at the top and beginning of the frame 1. The fabric woven by the circular knitting machine is conveyed upwards to the conveying roller 2 and then transported away from the circular knitting machine. The conveying roller 2 also lifts the fabric during the conveying process. After the fabric moves away from the circular knitting machine, it is conveyed to the winding roller 3, which is located at the end of the frame 1 and is wound up. This reduces fabric stacking, which can cause excessive wrinkles and affect subsequent processing. Furthermore, the frame 1 is equipped with a fabric-cutting assembly 4 and a fabric-spreading assembly 5 for cutting the fabric from the side. Component 4 and fabric spreading component 5 are located between conveying roller 2 and winding roller 3. In terms of height, fabric spreading component 4 is located between conveying roller 2 and winding roller 3. Fabric spreading component 4 splits one side of the fabric, and then fabric spreading component 5 spreads the split fabric into a single layer before winding. This reduces the possibility of the unsplit side of the fabric remaining folded and causing obvious creases on the fabric after winding, which would affect the subsequent processing effect of the fabric. Compared with the prior art CN202221531107.5, by spreading component 5 spreading the fabric on one side, the creases on the unsplit side of the fabric are weakened, thus avoiding the formation of creases on the unsplit side of the fabric that would affect the subsequent processing effect of the fabric.
[0031] In this embodiment, as Figure 1 and Figure 2 As shown, to ensure that the fabric can be unfolded after being cut, the fabric spreading assembly 5 includes a separating part 51, a spreading frame 52, and a guide roller 53. The spreading frame 52 is mounted on the frame 1, and the guide roller 53 is rotatably mounted on the frame 1. The part of the spreading frame 52 connected to the frame 1 is located at the bottom end of the frame 1. The spreading frame 52 extends upward to the tail end of the fabric cutting assembly 4. The separating part 51 is located at the top end of the spreading frame 52. After the fabric is cut, the cutting edge of the fabric faces the spreading frame 52, and the separating part 51 abuts against the side of the fabric that has not been cut. The fabric is conveyed downward along the spreading frame 52. During the downward conveying process, the fabric is unfolded by the spreading frame 52. The guide roller 53 conveys the unfolded fabric to the take-up roller 3, so that the single layer of fabric is taken up by the take-up roller 3, thereby facilitating the storage, handling, and subsequent processing of the fabric.
[0032] More specifically, the fabric spreading frame 52 includes a first spreading rod 521 and a second spreading rod 522, the distance between the first spreading rod 521 and the second spreading rod 522 gradually increasing from top to bottom; specifically, the first spreading rod 521 and the second spreading rod 522 are in a downward-opening "V" shape, and the fabric is kept in contact with the first spreading rod 521 and the second spreading rod 522 as much as possible during the downward conveying process to ensure that the fabric unfolds during the downward conveying process. The top ends of the first spreading rod 521 and the second spreading rod 522 are inclined towards the take-up roller 3, and the guide roller 53 is located between the take-up roller 3 and the spreading rod 522. Between the frame 52, and with the guide roller 53 located in the area of the vertical downward projection of the first spreading rod 521 and the second spreading rod 522, the fabric gradually moves away from the take-up roller 3 as it is conveyed downward between the separating part 51 and the guide roller 53. This ensures that the fabric can fully contact the separating part 51, the first spreading rod 521 and the second spreading rod 522, thereby ensuring that the fabric can be dispersed after being cut and unfolded by the first spreading rod 521 and the second spreading rod 522. The unfolded fabric is then conveyed to the take-up roller 3 after passing under the guide roller 53, thereby winding the fabric up in a single layer. By setting the fabric spreading frame 52 in the form of a first spreading rod 521 and a second spreading rod 522 with the top inclined towards the winding roller 3 and the opening facing downwards, it is ensured that the cut fabric can be separated by the separating part 51, and unfolded by the first spreading rod 521 and the second spreading rod 522 as it is conveyed downwards, and then rolled up. By unfolding, the creases on the uncut side of the fabric are weakened, thereby avoiding obvious creases on the fabric that would affect the subsequent processing effect of the fabric.
[0033] To reduce the possibility of fabric wear during transport, such as Figure 2 and Figure 3 As shown, the separating part 51 has an abutting part 511 that abuts against the fabric, and the abutting part 511 is arc-shaped. Specifically, when the separating part 51 abuts against the side of the fabric that has not been cut, the fabric contacts the arc-shaped abutting part 511 of the separating part 51, reducing the wear of the edge of the separating part 51 on the fabric, thereby reducing the possibility of the fabric being damaged during the conveying process.
[0034] In another embodiment, such as Figure 4 and Figure 5 As shown, the fabric splitting assembly 4 includes a support rod 41 and a splitting blade 42. The support rod 41 is mounted on the frame 1 and is used to support the fabric. The support rod 41 is located between the conveying roller 2 and the separating section 51. The splitting blade 42 is mounted on the support rod 41, and the blade of the splitting blade 42 faces the fabric. When the fabric is conveyed on the support rod 41, the splitting blade 42 splits one side of the fabric. The split fabric is continuously conveyed to the separating section 51 and the two layers of fabric are separated by the separating section 51 so that the fabric can be unfolded and rolled up subsequently.
[0035] In this embodiment, as Figure 4 and Figure 5 As shown, the frame 1 is equipped with an adjusting rod 43 and a driving component 44. The adjusting rod 43 is located below the support rod 41 to prevent it from affecting the fabric being conveyed, thereby affecting the cutting, unfolding, and winding of the fabric. Specifically, the adjusting rod 43 is rotatably mounted on the frame 1, and the driving component 44 drives the adjusting rod 43 to rotate. The lower end of the cutting blade 42 is equipped with a connecting block 421, which is threadedly connected to the adjusting rod 43. The cutting blade 42 is slidably connected to the support rod 41. When fabrics of different widths are conveyed between the conveying roller 2 and the winding roller 3, in order to avoid the possibility that the cutting blade 42 may not contact the fabric, the driving component 44 drives the adjusting rod 43 to rotate, thereby driving the cutting blade 42 to slide on the support rod 41. This ensures that the cutting edge of the cutting blade 42 can contact the fabric to be cut, thereby ensuring that the fabric can be cut. This effectively avoids the possibility that the uncut side of the fabric will have obvious creases due to compression after being wound up.
[0036] In another embodiment, such as Figure 4 and Figure 6 As shown, the slitting blade 42 and the take-up roller 3 are respectively positioned on both sides of the fabric spreading frame 52. Specifically, to facilitate the unfolding of the fabric, the separating part 51 faces the side of the fabric that has not been slit in the width direction of the fabric, and the first fabric spreading rod 521 and the second fabric spreading rod 522 are also inclined towards the side of the fabric that has not been slit. The length direction of the guide roller 53 is perpendicular to the length direction of the support rod 41, and the axis of the take-up roller 3 is parallel to the axis of the guide roller 53. By positioning the slitting blade 42 and the take-up roller 3 on both sides of the fabric spreading frame 52, and with the tops of the first fabric spreading rod 521 and the second fabric spreading rod 522 facing the take-up roller 3, it is ensured that the opening of the fabric after slitting faces the separating part 51 and is unfolded by the first fabric spreading rod 521 and the second fabric spreading rod 522, thereby improving the surface smoothness of the fabric after it is rolled up, and effectively avoiding the impact of obvious indentations on the subsequent processing of the fabric.
[0037] To ensure that the fabric contacts the support rod 41 and to prevent the cutting blade 42 from damaging the fabric, such as Figure 4 , Figure 6 and Figure 7As shown, the frame 1 is equipped with multiple spreading rollers 6, which are evenly distributed on both sides of the support rod 41. Specifically, when the fabric is conveyed from the conveying roller 2 to the support rod 41, it first passes under the spreading roller 6 between the support rod 41 and the conveying roller 2. At this time, since the conveying roller 2 is higher than the support rod 41, the fabric comes into contact with the spreading roller. As the fabric is conveyed and the spreading roller 6 rotates, the fabric is spread out at the spreading roller 6, reducing the number of multiple layers on the fabric that could be damaged during the cutting process by the slitting knife 42. The fabric is then conveyed to the separation section 51. After being cut open at the support rod 41, the fabric passes over the spreading roller 6 between the support rod 41 and the separation section 51 and comes into contact with the separation section 51. The spreading roller 6 ensures that the fabric is in contact with the support rod 41 when it is on the support rod 41, thereby ensuring that the cutting blade 42 can cut the fabric. The cut fabric is flattened by the spreading roller 6, which avoids the fabric being separated by the separation section 51 and the uneven width of the fabric on both sides after the spreading frame 52 is unfolded, thus affecting the stability of the fabric conveying.
[0038] Furthermore, such as Figure 7 As shown, in order to ensure the spreading effect of the spreading roller 6, the spreading roller 6 is provided with multiple spreading ribs 61, which are distributed circumferentially on the spreading roller 6. Specifically, the middle of the spreading ribs 61 protrudes in the direction of rotation of the spreading roller 6, so that when the spreading roller 6 rotates, the spreading ribs 61 push the fabric towards both ends of the spreading roller 6, thereby spreading the wrinkled fabric and reducing the damage caused by the accumulation of wrinkles during the cutting process of the slitting knife 42.
[0039] In addition to the preferred embodiments described above, there are other embodiments of this utility model. All other embodiments obtained by those skilled in the art based on the embodiments of this utility model without creative effort are within the scope of protection claimed by this utility model.
Claims
1. A take-up device for a circular loom, comprising a frame, wherein a conveying roller and a take-up roller are provided on the frame, the conveying roller being located at the first end of the frame and the take-up roller being located at the last end of the frame, characterized in that, The frame is equipped with a fabric cutting assembly and a fabric spreading assembly for cutting the fabric from the side. The cut fabric is spread out by the fabric spreading assembly during the downward conveying process. The fabric cutting assembly and the fabric spreading assembly are located between the conveying roller and the winding roller. The winding roller is used to wind up the fabric spread out by the fabric spreading assembly.
2. The winding device for a circular loom according to claim 1, characterized in that, The fabric spreading assembly includes a separating part, a spreading frame, and a guide roller. The spreading frame is mounted on the machine frame and extends upward. The separating part is located at the top of the spreading frame. The fabric cut by the slitting assembly is separated by the separating part and conveyed downward along the spreading frame for spreading. The guide roller is rotatably mounted on the machine frame and located at the bottom of the spreading frame. The guide roller conveys the spread fabric to the take-up roller.
3. The winding device for a circular loom according to claim 2, characterized in that, The display frame includes a first display rod and a second display rod, and the distance between the first display rod and the second display rod gradually increases from top to bottom.
4. The winding device for a circular loom according to claim 3, characterized in that, The tops of the first and second spreading rods are inclined toward the take-up roller, such that the guide roller is located in the area where the first and second spreading rods are projected vertically downwards.
5. The winding device for a circular loom according to claim 2, characterized in that, The separating part has an abutting part that contacts the fabric, and the abutting part is rounded.
6. The winding device for a circular loom according to claim 1, characterized in that, The fabric splitting assembly includes a support rod and a splitting blade. The support rod is mounted on the frame and is used to support the fabric. The support rod is located between the conveying roller and the fabric spreading assembly. The blade of the splitting blade faces the fabric to split the fabric during conveying.
7. The winding device for a circular loom according to claim 6, characterized in that, The frame is equipped with an adjusting rod and a driving component. The adjusting rod is located below the support rod. The cutting blade is threadedly connected to the adjusting rod and slidably connected to the support rod. The driving component is located on the frame and drives the adjusting rod to rotate so that the cutting blade slides relative to the support rod.
8. The winding device for a circular loom according to claim 6, characterized in that, The cutting blade and the winding roller are respectively located on both sides of the fabric spreading assembly.
9. The winding device for a circular loom according to claim 1, characterized in that, The frame is equipped with multiple spreading rollers, which are rotatably arranged and distributed on both sides of the fabric spreading assembly.
10. The winding device for a circular loom according to claim 9, characterized in that, The spreading roller is provided with multiple spreading ribs, which are distributed circumferentially on the spreading roller.
Citation Information
Patent Citations
Single-section circular weaving machine
CN217437266U