Bunch-splitting twisting-assisting type vortex spinning equipment
By designing the moving and detection components of the bundle-twisting vortex spinning equipment, the problem of cumbersome yarn changing operations in vortex spinning equipment was solved, enabling simple yarn fixing and real-time diameter measurement, thereby improving production efficiency and product quality.
Patent Information
- Application Number
- CN202422759357.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-13
- Publication Date
- 2025-11-25
- Estimated Expiration
- 2034-11-13
AI Technical Summary
Existing vortex spinning equipment is cumbersome to operate when changing yarn, which affects production efficiency, especially when unused yarn needs to be pulled out and redirected into the splitter.
A bundle-splitting vortex spinning device was designed, comprising a bundle-splitting component and a detection component. The positioning column and limiting ring structure of the movable component realizes the fixing and winding of the yarn, and the detection component measures the yarn diameter through an infrared transmitter and receiver.
It simplifies the yarn change process, improves production efficiency, and avoids the production of defective products by measuring the yarn diameter in real time.
Smart Images

Figure CN223592911U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to vortex spinning technical field especially relates to a split beam twist spinning equipment of formula. BACKGROUND
[0002] Vortex spinning is a kind of new spinning technology with high efficiency, has the advantages such as fast speed, high yield, short process flow.Vortex spinning utilizes high-speed rotation airflow to twist fiber strip, replaces the traditional high-speed rotation spinning cup with fixed vortex tube, thereby simplifying the mechanical structure.In the vortex spinning, the yarn needs to be split to twist.
[0003] The existing vortex spinning is usually directly split by vortex, but when different yarns are needed for spinning, the unnecessary yarns need to be pulled out, and when they need to be reused, they are guided into the split cylinder, which is complicated and affects production efficiency, therefore, a device for positioning unnecessary yarns is needed to avoid pulling out unnecessary yarns. UTILITY MODEL CONTENT
[0004] The utility model aims at providing a split beam twist spinning equipment to solve the problem that the existing vortex spinning is usually directly split by vortex, but when different yarns are needed for spinning, the unnecessary yarns need to be pulled out, and when they need to be reused, they are guided into the split cylinder, which is complicated and affects production efficiency.
[0005] To solve the above technical problems, the utility model is realized by the following technical schemes:
[0006] The utility model relates to a split beam twist spinning equipment, which comprises:
[0007] The split beam assembly comprises a split beam cylinder.
[0008] The movable assembly comprises a through hole, a movable column, a fixed hole, a limiting ring, a fixed plate, a positioning column and an extension spring, the through hole is arranged on the outer side of the split beam cylinder, the movable column is slidably connected to the inner position of the through hole, the fixed hole is arranged on the central position of the movable column, the limiting ring is fixedly connected to the one end position of the movable column, the fixed plate is fixedly connected to the peripheral position of the split beam cylinder, the positioning column extends downward through the fixed plate, and one end of the extension spring is fixedly connected to the bottom position of the upper end of the positioning column.
[0009] Further, the split beam assembly further comprises an inlet slot and an outlet slot, the inlet slot is arranged on the top end position of the split beam cylinder, and the outlet slot is arranged on the bottom end position of the split beam cylinder.
[0010] Further, the limiting ring is located inside the beam splitting cylinder, and the diameter of the limiting ring is smaller than the diameter of the through hole.
[0011] Further, the positioning column is T-shaped structure, and the other end of the telescopic spring is fixedly connected to the upper end of the fixed plate.
[0012] Further, the detection assembly is further included, the detection assembly includes a support plate, a sliding groove, a support rod, an infrared emitter and an infrared receiver, the support plate is fixedly connected to both sides of the bottom end of the beam splitting cylinder, the sliding groove is opened at the inside position of the support plate, the support rod is slidingly connected to the inside position of the sliding groove, the infrared emitter is fixedly connected to the inside position of one end of the support rod, and the infrared receiver is fixedly connected to the inside position of the other end of the support rod.
[0013] Further, the sliding groove has a scale line inside, and the infrared emitter and the infrared receiver correspond to each other.
[0014] Compared with the prior art, the utility model has the advantages that:
[0015] One, the utility model discloses a movable assembly, when part of the yarn is not needed for spinning, the positioning column is not positioned to the movable column by pulling outwards, and the movable column is rotated to the movable column, so that the movable column is fixed to the yarn by the limiting ring, and then the positioning column is positioned to the movable column, so that the yarn does not move in the beam splitting cylinder, thereby realizing that the yarn can be stopped without taking out the yarn.
[0016] Two, based on beneficial effect one, the detection assembly is set, the support rod drives the infrared emitter and the infrared receiver to move by moving the position of the support rod in the sliding groove, the diameter of the yarn is measured by measuring the outside position of the yarn by the infrared emitter and the infrared receiver, so that the diameter of the yarn can be measured during the spinning process, and a large number of defects caused by late measurement are avoided. ACCURATE DESCRIPTION OF DRAWINGS
[0017] In order to more clearly illustrate the technical scheme of the embodiments of the utility model, the following will briefly introduce the drawings needed to be used in the embodiment description, and obviously, the drawings in the following description are only some embodiments of the utility model, and for those skilled in the art, other drawings can be obtained without creative labor on the basis of these drawings.
[0018] Figure 1 It is the front view of the utility model;
[0019] Figure 2 It is the beam splitting assembly structure diagram of the utility model;
[0020] Figure 3 It is the movable assembly structure diagram of the utility model;
[0021] Figure 4 The utility model discloses a detection assembly structural diagram.
[0022] In the drawing, the component list represented by each sign is as follows:
[0023] 11, split beam cylinder, 12, incoming wire slot, 13, outgoing wire slot, 21, through hole, 22, movable column, 23, fixed hole, 24, limit ring, 25, fixed plate, 26, positioning column, 27, extension spring, 31, support plate, 32, sliding slot, 33, support rod, 34, infrared emitter, 35, infrared receiver. DETAILED DESCRIPTION
[0024] In order to make the above-mentioned purpose, features and advantages of the utility model more obvious and easy to understand, the specific embodiment of the utility model is described in detail below with the help of the drawings.
[0025] In the following description, a lot of specific details are set forth in order to fully understand the utility model, but the utility model can also be implemented in other ways different from the description, and those skilled in the art can make similar generalization without violating the connotation of the utility model, so the utility model is not limited by the specific embodiments disclosed below.
[0026] Secondly, the utility model is described in detail in combination with the schematic diagram, and when detailing the utility model embodiment, for the convenience of illustration, the sectional view of the device structure will be partially enlarged without the general proportion, and the schematic diagram is only an example, which should not limit the scope of protection of the utility model here. In addition, the three-dimensional spatial dimensions of length, width and depth should be included in actual production.
[0027] In order to make the purpose, technical scheme and advantages of the utility model more clear, the embodiment of the utility model will be described in further detail below with the help of the drawings.
[0028] Please refer to Figures 1-3 The embodiment is a split beam and twisting type vortex spinning equipment, which comprises:
[0029] The split beam assembly comprises a split beam cylinder 11.
[0030] The split beam assembly further comprises an incoming wire slot 12 and an outgoing wire slot 13, the incoming wire slot 12 is arranged at the top end position of the split beam cylinder 11, and the outgoing wire slot 13 is arranged at the bottom end position of the split beam cylinder 11.
[0031] The split beam cylinder 11 is used for splitting the yarn, the incoming wire slot 12 is used for arranging the yarn into the split beam cylinder 11, and the outgoing wire slot 13 is used for arranging the finished yarn out of the split beam cylinder 11.
[0032] The movable assembly comprises a through hole 21, a movable column 22, a fixing hole 23, a limiting ring 24, a fixing plate 25, a positioning column 26 and an extension spring 27. The through hole 21 is arranged at the outer side of the beam splitter 11. The movable column 22 is slidably connected to the inner position of the through hole 21. The fixing hole 23 is arranged at the central position of the movable column 22. The limiting ring 24 is fixedly connected to the one end position of the movable column 22. The fixing plate 25 is fixedly connected to the peripheral position of the beam splitter 11. The positioning column 26 extends downwardly through the fixing plate 25. One end of the extension spring 27 is fixedly connected to the upper end bottom position of the positioning column 26.
[0033] The through hole 21 is used for placing the movable column 22. The movable column 22 is used for supporting the limiting ring 24. The limiting ring 24 is used for limiting and guiding the yarn. The fixing hole 23 is used for placing the positioning column 26. The fixing plate 25 is used for guiding the positioning column 26 and supporting the extension spring 27. The positioning column 26 is used for positioning the movable column 22. The extension spring 27 is used for resetting the positioning column 26.
[0034] The limiting ring 24 is located at the inner position of the beam splitter 11, and the diameter of the limiting ring 24 is smaller than the diameter of the through hole 21.
[0035] The limiting ring 24 can move from the inner position of the through hole 21, and the yarn is located at the inner position of the limiting ring 24.
[0036] The positioning column 26 is in T-shaped structure, and the other end of the extension spring 27 is fixedly connected to the upper end position of the fixing plate 25.
[0037] The positioning column 26 can move up and down in the fixing plate 25. When the positioning column 26 moves downwardly, the extension spring 27 can be stretched.
[0038] Working principle: when the yarn which is not needed to be used is needed to be spun, the upward pulling force is applied to the positioning column 26, so that the positioning column 26 moves upwardly. The positioning column 26 moves upwardly to stretch the extension spring 27. When the positioning column 26 moves out of the fixing hole 23, the positioning column 26 does not position the movable column 22. At this time, the movable column 22 is rotated, so that the limiting ring 24 is rotated. The limiting ring 24 drives the yarn to rotate, so that the yarn is wound on the limiting ring 24. Then the force applied to the positioning column 26 is stopped. Under the elastic force of the extension spring 27, the positioning column 26 moves downwardly into the fixing hole 23, so that the movable column 22 is fixed by the positioning column 26. Thus, the yarn which is not needed to be used can be fixed.
[0039] Please refer to Figure 4 The embodiment is based on the above-mentioned embodiment, and further comprises:
[0040] The detection assembly comprises a support plate 31, a sliding groove 32, a support rod 33, an infrared emitter 34 and an infrared receiver 35, the support plate 31 is fixedly connected to the bottom end of the beam splitter tube 11 on both sides, the sliding groove 32 is arranged in the inside of the support plate 31, the support rod 33 is slidably connected to the inside of the sliding groove 32, the infrared emitter 34 is fixedly connected to the inside of one end of the support rod 33, and the infrared receiver 35 is fixedly connected to the inside of the other end of the support rod 33.
[0041] The support plate 31 is used for supporting the support rod 33, the sliding groove 32 is used for guiding the movement of the support rod 33, the support rod 33 is used for supporting the infrared emitter 34 and the infrared receiver 35, the infrared emitter 34 is used for emitting infrared light, and the infrared receiver 35 is used for receiving infrared light.
[0042] The sliding groove 32 has scale lines inside, and the infrared emitter 34 and the infrared receiver 35 correspond to each other.
[0043] When the support rod 33 moves inside the sliding groove 32, the infrared emitter 34 and the infrared receiver 35 move synchronously with the support rod 33.
[0044] Working principle: when it is necessary to measure the diameter of the spinning yarn in real time, the position of the support rod 33 inside the sliding groove 32 is moved, and the support rod 33 is moved to the required position through the scale lines inside the sliding groove 32, the support rod 33 drives the infrared emitter 34 and the infrared receiver 35 to move to the outside of the yarn, at this time, when the size of the yarn is a set value, the infrared light emitted by the infrared emitter 34 is blocked by the outside of the yarn, so that the infrared receiver 35 cannot receive the infrared light, when the size of the yarn is small, the yarn does not block the infrared light, and the infrared receiver 35 can receive the infrared light emitted by the infrared emitter 34.
[0045] In the description of the present application, it should be explained that, unless otherwise specified and limited, the terms "arrangement", "installation", "connection", "connection" should be understood broadly, for example, it can be fixedly connected, or it can be detachably connected, or integrally connected, it can be mechanically connected, or it can be electrically connected, it can be directly connected, or indirectly connected through an intermediate medium, or it can be the communication between two elements. For ordinary skilled in the art, the specific meaning of the above terms in the present application can be understood according to the specific situation.
[0046] Finally, it should be noted that: the above only for the preferred embodiments of the present application, and is not intended to limit the present application, although the foregoing embodiments of the present application have been described in detail, for the skilled in the art, it still can be modified, or for the equivalent replacement of part of the technical features of the technical solutions recorded in the foregoing embodiments. Any modification, equivalent replacement, improvement, etc. made within the spirit and principles of the present application, shall be included within the scope of the present application.
Claims
1. A split-end twist assisting vortex spinning apparatus characterized in that, Include: Splitting assembly, the splitting assembly includes a splitting barrel (11); Movable assembly, the movable assembly includes a through hole (21), a movable column (22), a fixed hole (23), a limiting ring (24), a fixed plate (25), a positioning column (26) and a telescopic spring (27), the through hole (21) is opened in the position of the outside of the splitting barrel (11), the movable column (22) is slidably connected to the inside position of the through hole (21), the fixed hole (23) is opened in the central position of the movable column (22), the limiting ring (24) is fixedly connected to the one end position of the movable column (22), the fixed plate (25) is fixedly connected to the position of the four around of the splitting barrel (11), the positioning column (26) extends downwardly through the fixed plate (25), and the telescopic spring (27) is fixedly connected to the bottom position of the upper end of the positioning column (26).
2. A split-end twist boosting vortex spinning apparatus according to claim 1, wherein The splitting assembly further includes a wire inlet slot (12) and a wire outlet slot (13), the wire inlet slot (12) is opened in the top end position of the splitting barrel (11), and the wire outlet slot (13) is opened in the bottom end position of the splitting barrel (11).
3. A split-end twist boosting vortex spinning apparatus according to claim 1, wherein The limiting ring (24) is located in the inside position of the splitting barrel (11), and the diameter of the limiting ring (24) is smaller than the diameter of the through hole (21).
4. A split-end twist boosting vortex spinning apparatus according to claim 1, wherein The positioning column (26) is a T-shaped structure, and the other end of the telescopic spring (27) is fixedly connected to the upper end position of the fixed plate (25).
5. A split-end twist boosting vortex spinning apparatus according to claim 1, wherein Further include detection assembly, the detection assembly includes a support plate (31), a sliding groove (32), a support rod (33), an infrared emitter (34) and an infrared receiver (35), the support plate (31) is fixedly connected to the bottom end of both sides of the splitting barrel (11), the sliding groove (32) is opened in the inside position of the support plate (31), the support rod (33) is slidably connected to the inside position of the sliding groove (32), the infrared emitter (34) is fixedly connected to the inside position of one end of the support rod (33), and the infrared receiver (35) is fixedly connected to the inside position of the other end of the support rod (33).
6. A split-end twist boosting vortex spinning apparatus according to claim 5, wherein There are scale lines in the sliding groove (32), and the infrared emitter (34) and the infrared receiver (35) correspond to each other.