Knitting mechanism for knitwear production
By using a conductive tensioning sleeve and conductive rod structure to tension the yarn in multiple stages, and by using a conductive copper plate and grounding wire to remove static electricity, the problems of loosening and static electricity during yarn transportation are solved, thus achieving stability in yarn transportation and weaving precision.
Patent Information
- Application Number
- CN202520262304.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-19
- Publication Date
- 2025-12-19
- Estimated Expiration
- 2035-02-19
AI Technical Summary
Existing weaving mechanisms cannot tighten the yarn during the yarn feeding process, causing the yarn to loosen and affecting the continuity of weaving. At the same time, static electricity generated by yarn friction cannot be removed, affecting the stability of the feeding process.
The yarn is tensioned in multiple stages using a conductive tensioning sleeve and conductive rod structure, and static electricity is removed through a conductive copper plate and grounding wire structure to ensure the stability and accuracy of yarn delivery.
It improves the stability of yarn transport, prevents loosening and static electricity, and ensures the precision and continuity of weaving.
Smart Images

Figure CN223688556U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to weaving technical field, concretely relates to a weaving mechanism for knitted goods production. BACKGROUND
[0002] Knitted goods have the characteristics of soft texture, good wrinkle resistance and air permeability, and are commonly used in clothing. In the production process, the yarn is formed into loops and then connected into knitted fabric through stringing. Weaving mechanisms are commonly used in textile processes and are widely used. Yarn is usually woven using weaving mechanisms.
[0003] The existing weaving mechanism cannot tension the yarn during the weaving process, which can cause the yarn to loosen during the conveying process, affecting the continuity of the weaving. At the same time, the yarn is often rubbed during the conveying process, which can cause the yarn to stick to static electricity, which cannot be removed, affecting the stability of the subsequent yarn conveying. Therefore, we propose a weaving mechanism for knitted goods production. UTILITY MODEL CONTENT
[0004] The utility model aims to provide a weaving mechanism for knitted goods production to solve the problem of the existing weaving mechanism in the background art, which cannot tension the yarn during the weaving process, which can cause the yarn to loosen during the conveying process, affecting the continuity of the weaving. At the same time, the yarn is often rubbed during the conveying process, which can cause the yarn to stick to static electricity, which cannot be removed, affecting the stability of the subsequent yarn conveying.
[0005] To achieve the above purpose, the utility model provides the following technical scheme: a weaving mechanism for knitted goods production, comprising a base plate, a support frame is provided on the base plate, an outer cylinder is provided on the support frame, a weaving cylinder is provided in the outer cylinder, a stand is also provided on the base plate on one side of the outer cylinder, the stand is provided with an import structure for relaxing and conveying yarn;
[0006] The import structure comprises an import seat, the import seat is provided on the stand, a import cavity is provided in the middle of the import seat, import frames and export frames are provided on both sides of the import seat, a first conductive tensioning sleeve is rotatably provided on one side of the import cavity, the first conductive tensioning sleeve is rotatably provided on a first conductive rod, a second conductive tensioning sleeve is rotatably provided on the other side of the import cavity, the second conductive tensioning sleeve is rotatably provided on a second conductive rod, and the first and second conductive rods are provided on both sides of the import cavity.
[0007] The import seat is provided with an electrostatic conduction structure for conveying static electricity on one side.
[0008] Preferably, the yarn introduction frame one side surface is provided with a yarn introduction pulley, the yarn export frame one side surface is provided with a yarn export pulley, which can smoothly introduce and export the yarn.
[0009] Preferably, the first and second electrically conductive tensioning sleeves are provided with mounting ports on both sides, the mounting ports are provided with deep groove ball bearings, and the first and second electrically conductive tensioning sleeves are rotatably connected to the first and second electrically conductive rods through the deep groove ball bearings, thereby improving the stability of the rotation of the first and second electrically conductive tensioning sleeves.
[0010] Preferably, the static electricity flow guide structure comprises an insulating box provided on one side surface of the introduction seat, a conductive copper plate provided in the insulating box, a first connecting wire and a second connecting wire provided on both sides of the conductive copper plate, the first connecting wire being connected to the first electrically conductive rod, and the second connecting wire being connected to the second electrically conductive rod, thereby enabling the static electricity on the first and second electrically conductive rods to be transmitted to the conductive copper plate.
[0011] Preferably, the conductive copper plate is further provided with a first connecting terminal and a second connecting terminal on one side, the first connecting wire is connected to the first connecting terminal, and the second connecting wire is connected to the second connecting terminal, thereby facilitating the connection of the first and second connecting wires to the conductive copper plate.
[0012] Preferably, the conductive copper plate is further provided with a grounding wire on one side, the grounding wire being connected to the ground, thereby enabling the static electricity to be transmitted to the ground.
[0013] Preferably, the insulating box is further provided with an insulating sleeve wrapped around the outer surface of the grounding wire, thereby protecting the grounding wire.
[0014] Compared with the prior art, the application has the following beneficial effects:
[0015] (1) The application can multi-stage tension the yarn during the yarn conveying process, thereby improving the stability of the yarn conveying process, preventing the yarn from loosening or deviating during the conveying process, and ensuring the precision and continuity of the yarn weaving.
[0016] (2) The application can concentrate and guide the static electricity generated during the yarn conveying process and remove the static electricity, thereby preventing the static electricity from adhering to the yarn and affecting the yarn input precision. BRIEF DESCRIPTION OF DRAWINGS
[0017] Figure 1 is a structural schematic view of the application;
[0018] Figure 2 is a structural schematic view of the introduction structure in the application;
[0019] Figure 3 It is the half cut structure schematic view of the introduction structure in the utility model;
[0020] Figure 4 It is the half cut structure schematic view of the first conductive tension sleeve in the utility model;
[0021] Figure 5 It is the half cut structure schematic view of the first conductive tension sleeve in the utility model; Figure 4 It is the enlarged structure schematic view of A in the utility model;
[0022] Figure 6 It is the top view cut surface structure schematic view of the electrostatic conduction structure in the utility model;
[0023] Figure 7 It is the half cut structure schematic view of the electrostatic conduction structure in the utility model;
[0024] Figure 8 It is the half cut structure schematic view of the electrostatic conduction structure in the utility model; Figure 7 It is the enlarged structure schematic view of B in the utility model;
[0025] In the drawing: 1, introduction structure;2, electrostatic conduction structure;3, braiding cylinder;4, outer cylinder;5, bottom plate;6, support frame;7, stand;21, insulating box;22, first connecting wire;23, first connecting terminal;24, conductive copper plate;25, second connecting terminal;26, second connecting wire;27, grounding wire;28, insulating sleeve;101, introduction seat;102, introduction cavity;103, yarn introduction pulley;104, introduction frame;105, lead-out frame;106, yarn lead-out pulley;107, first conductive tension sleeve;108, first conductive rod;109, second conductive rod;110, second conductive tension sleeve;111, mounting port;112, deep groove ball bearing. DETAILED DESCRIPTION
[0026] The technical scheme in the embodiments of the utility model will be clearly and completely described below with reference to 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 scope of the utility model.
[0027] Please refer to Figures 1-4 The utility model provides a kind of technical scheme: a kind of braiding mechanism for knitted product production, including bottom plate 5, support frame 6 is arranged on bottom plate 5, support frame 6 sets up outer cylinder 4, braiding cylinder 3 is arranged in outer cylinder 4, still set up stand 7 on the bottom plate 5 of outer cylinder 4 side, stand 7 sets up introduction structure 1 for yarn relaxation delivery;
[0028] The introduction structure 1 includes an introduction seat 101 provided on the stand 7, an introduction cavity 102 is arranged in the middle of the introduction seat 101, introduction frames 104 and export frames 105 are arranged on both sides of the introduction seat 101, a first electrically-conductive tension sleeve 107 is rotatably arranged on one side in the introduction cavity 102, the first electrically-conductive tension sleeve 107 is rotatably arranged on a first electrically-conductive rod 108, a second electrically-conductive tension sleeve 110 is rotatably arranged on the other side in the introduction cavity 102, the second electrically-conductive tension sleeve 110 is rotatably arranged on a second electrically-conductive rod 109, and the first electrically-conductive rod 108 and the second electrically-conductive rod 109 are arranged on both sides in the introduction cavity 102.
[0029] Firstly, the yarn is threaded into the introduction cavity 102, and then the yarn is threaded from the lower side of the first electrically-conductive tension sleeve 107 and from the upper side of the second electrically-conductive tension roller, and finally the yarn is threaded out of the introduction cavity 102. During the yarn conveying process, the first electrically-conductive tension sleeve 107 rotates on the first electrically-conductive rod 108, the second electrically-conductive tension sleeve 110 rotates on the second electrically-conductive rod 109, and the first electrically-conductive tension sleeve 107 and the second electrically-conductive tension sleeve 110 tension the yarn, thereby ensuring the stability of the yarn conveying process and preventing the yarn from deviating or loosening.
[0030] Further, a yarn introduction pulley 103 is arranged on one side surface of the introduction frame 104, and a yarn export pulley 106 is arranged on one side surface of the export frame 105. The yarn is threaded from the upper part of the yarn introduction pulley 103, and then sequentially threaded through the first electrically-conductive tension sleeve 107, the second electrically-conductive tension sleeve 110, and the lower part of the yarn export pulley 106, thereby smoothly introducing and exporting the yarn.
[0031] Further, mounting holes 111 are arranged on both sides in the first electrically-conductive tension sleeve 107 and the second electrically-conductive tension sleeve 110, deep groove ball bearings 112 are arranged in the mounting holes 111, and the first electrically-conductive tension sleeve 107 and the second electrically-conductive tension sleeve 110 are rotatably connected with the first electrically-conductive rod 108 and the second electrically-conductive rod 109 through the deep groove ball bearings 112, thereby improving the stability of the rotation of the first electrically-conductive tension sleeve 107 and the second electrically-conductive tension sleeve 110.
[0032] Please refer to Figures 6-8 , an electrostatic conduction structure 2 is further arranged on one side of the introduction seat 101, the electrostatic conduction structure 2 includes an insulating box 21 arranged on one side surface of the introduction seat 101, a conductive copper plate 24 arranged in the insulating box 21, a first connecting wire 22 and a second connecting wire 26 arranged on both sides of the conductive copper plate 24, the first connecting wire 22 connected with the first electrically-conductive rod 108, the second connecting wire 26 connected with the second electrically-conductive rod 109, the first electrically-conductive rod 108 and the second electrically-conductive rod 109 capable of conveying static electricity to the conductive copper plate 24, and a grounding wire 27 arranged on one side of the conductive copper plate 24, the grounding wire 27 connected with the ground, thereby capable of conveying static electricity to the ground.
[0033] In the yarn conveying process, the first conductive tension sleeve 107 and the second conductive tension sleeve 110 adsorb static electricity on the yarn and convey the static electricity to the first conductive rod 108 and the second conductive rod 109, and the first conductive rod 108 and the second conductive rod 109 convey the static electricity to the conductive copper plate 24, and then the static electricity is conveyed to the ground through the grounding wire 27.
[0034] The first conductive tension sleeve 107, the second conductive tension sleeve 110, the first conductive rod 108 and the second conductive rod 109 are all made of conductive material, preferably pure copper material, to ensure conductivity.
[0035] Further, the bottom of the insulating box 21 is also provided with an insulating sleeve 28, which is wrapped on the outer surface of the grounding wire 27 and can protect the grounding wire 27.
[0036] Further, the conductive copper plate 24 is also provided with a first connecting terminal 23 and a second connecting terminal 25 on one side, the first connecting wire 22 is connected with the first connecting terminal 23, and the second connecting wire 26 is connected with the second connecting terminal 25, so as to facilitate the connection of the first connecting wire 22 and the second connecting wire 26 with the conductive copper plate 24.
[0037] Although the embodiments of the present application have been shown and described, it can be understood by those skilled in the art that various changes, modifications, replacements and modifications can be made to these embodiments without departing from the principles and spirits of the present application, and the scope of the present application is defined by the appended claims and their equivalents.
Claims
1. A knitting mechanism for the production of knitted goods, characterized in that: It includes the bottom plate (5), the support frame (6) is arranged on the bottom plate (5), the outer cylinder (4) is arranged on the support frame (6), the braided cylinder (3) is arranged in the outer cylinder (4), and the stand (7) is further arranged on the bottom plate (5) on one side of the outer cylinder (4); the stand (7) is provided with a guide-in structure (1) for relaxing and conveying yarn; The guide-in structure (1) comprises a guide-in seat (101) arranged on the stand (7), a guide-in cavity (102) arranged in the middle of the guide-in seat (101), a guide-in frame (104) and a guide-out frame (105) arranged on both sides of the guide-in seat (101), a first conductive tensioning sleeve (107) rotatably arranged on one side in the guide-in cavity (102), the first conductive tensioning sleeve (107) rotatably arranged on a first conductive rod (108), a second conductive tensioning sleeve (110) rotatably arranged on the other side in the guide-in cavity (102), and the second conductive tensioning sleeve (110) rotatably arranged on a second conductive rod (109); the first conductive rod (108) and the second conductive rod (109) are arranged on both sides in the guide-in cavity (102). The guide-in seat (101) is further provided with an electrostatic conduction structure (2) for conveying static electricity on one side.
2. A knitting mechanism for the production of knitted articles according to claim 1, characterized in that: A yarn guide-in pulley (103) is arranged on one side surface of the guide-in frame (104), and a yarn guide-out pulley (106) is arranged on one side surface of the guide-out frame (105).
3. A knitting mechanism for the production of knitted articles according to claim 1, characterized in that: Mounting holes (111) are arranged on both sides in the first conductive tensioning sleeve (107) and the second conductive tensioning sleeve (110), deep groove ball bearings (112) are arranged in the mounting holes (111), and the first conductive tensioning sleeve (107) and the second conductive tensioning sleeve (110) are rotatably connected with the first conductive rod (108) and the second conductive rod (109) through the deep groove ball bearings (112).
4. A knitting mechanism for the production of knitted articles according to claim 1, characterized in that: The electrostatic conduction structure (2) comprises an insulating box (21) arranged on one side surface of the guide-in seat (101), a conductive copper plate (24) arranged in the insulating box (21), a first connecting wire (22) and a second connecting wire (26) arranged on both sides of the conductive copper plate (24), the first connecting wire (22) connected with the first conductive rod (108), and the second connecting wire (26) connected with the second conductive rod (109).
5. A knitting mechanism for the production of knitted articles according to claim 4, characterized in that: A first connecting terminal (23) and a second connecting terminal (25) are further arranged on one side of the conductive copper plate (24), the first connecting wire (22) is connected with the first connecting terminal (23), and the second connecting wire (26) is connected with the second connecting terminal (25).
6. A knitting mechanism for the production of knitted articles according to claim 4, characterized in that: A grounding wire (27) is further arranged on one side of the conductive copper plate (24), and the grounding wire (27) is connected with the ground.
7. A knitting mechanism for the production of knitted articles according to claim 6, characterized in that: An insulating sleeve (28) is further arranged at the bottom of the insulating box (21) and wrapped around the outer surface of the grounding wire (27).
Citation Information
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