A wire adding structure for a braiding apparatus and a braiding apparatus
By designing the placement parts, tensioning parts and wire management parts in the wire adding structure, the problem of increasing the number of weaving wires in the automatic warp and weft mesh weaving machine is solved, the stable pulling and unified arrangement of the silk threads are achieved, and the operation simplicity and stability of the weaving equipment are improved.
Patent Information
- Application Number
- CN202311083962.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-08-28
- Publication Date
- 2025-10-10
- Estimated Expiration
- 2043-08-28
AI Technical Summary
When increasing the number of weaving threads in existing automatic warp and weft mesh weaving machines, the feed shaft is heavy, making it difficult to add and install, and requires coordinated control with the original equipment, making it difficult to install additional material rolls.
A wire adding structure is designed, including a connecting part, a placing part, a tensioning part and a wire management part. The placing part limits the movement of the wire drum, the tensioning part tightens the wire, and the wire management part organizes the wire, so as to achieve unified guidance and coordinated control of multiple wires and adapt to the addition of additional weaving wires.
The invention realizes the convenient increase of the number of weaving threads, avoids the entanglement of the silk threads, improves the stability and ease of operation of the weaving equipment, adapts to the unified arrangement and guidance of multiple silk threads, and facilitates the weaving of additional weaving threads.
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Figure CN117107427B_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the field of weaving equipment, and in particular to a wire adding structure for weaving equipment and a weaving equipment. Background Art
[0002] Automatic warp and weft mesh weaving machine is a kind of weaving equipment with the characteristics of easy operation and strong stability.
[0003] Automatic warp and weft mesh knitting machines mainly rely on feed shafts. However, the feed shafts can only hold a limited number of rolls. When the number of weaving threads needs to be increased, it is generally only possible to add feed shafts. However, the overall weight of the feed shafts is heavy, making them difficult to install. In addition, they need to be coordinated with the existing automatic warp and weft knitting equipment, making it difficult to provide additional rolls for installation. Summary of the Invention
[0004] In order to improve the above problems, the present application provides a wire adding structure and a braiding device that are convenient for adding silk threads.
[0005] The present application provides a wire adding structure for a weaving device and a weaving device that adopts the following technical solutions:
[0006] A wire adding structure for braiding equipment, the braiding equipment comprising an equipment body and a wire adding structure, the wire adding structure comprising a connecting piece, a placing piece, a tensioning piece and a wire management piece; the placing piece for adding a wire spool is mounted on the connecting piece, and the wire spool rolls and pulls out the wire through the placing piece; the tensioning piece is mounted on the connecting piece, and the wire passes through the tensioning piece; the wire management piece is mounted on the connecting piece, and the wire passes through the wire management piece after being pulled out from the tensioning piece until it is connected to the equipment body.
[0007] By adopting the above technical solution, the moving path of the wire drum is limited by the placing part, but under the pulling action of the wire end of the silk thread, the wire drum can rotate along the placing part to pull out the entangled silk thread, and the pulled silk thread passes through the tensioning part. The tensioning part can tighten the silk thread to avoid uneven force on the silk thread during the pulling process, causing the silk thread to loosen and entangle with each other, affecting the smooth pulling of the silk thread. After the silk thread is adjusted by the tensioning part, it passes through the wire management part. If multiple wire drums are used, there will be multiple silk threads pulled out at the same time. The silk threads are uniformly organized and guided by the wire management part to avoid the silk threads from being entangled with each other. Finally, the uniformly organized silk threads are connected to the external weaving equipment to achieve the effect of coordinated control, which is convenient for adding additional weaving threads for weaving.
[0008] Optionally, a single placement member and a single tensioning member form a group, and at least one group of connecting members is provided.
[0009] By adopting the above technical solution, arranging multiple groups of placement members and tensioning members can increase the number of added lines.
[0010] Optionally, the connecting part includes a first connecting part, a second connecting part, a third connecting part, a telescopic part and a locking part; the telescopic part is plugged into the first connecting part; the locking part is connected to the first connecting part and locks the telescopic part and the first connecting part; the second connecting part is installed on the first connecting part; the third connecting part is installed on the telescopic part; one end of the placement part is connected to the third connecting part, and the other end is plugged into the second connecting part.
[0011] By adopting the above technical solution, when the wire bobbin on the placement piece needs to be replaced, the locking part is taken out, and the telescopic part loses the limiting effect of the locking part and can be pulled out along the first connection part, thereby driving the third connection part and the placement piece away from the second connection part to open one end outlet of the placement piece, so as to insert or remove the wire bobbin from the opened end of the placement piece. When the insertion of the wire bobbin is completed, the telescopic part is inserted back into the first connection part, and the placement piece is inserted into the second connection part, so that the two ends of the placement piece are closed and the wire bobbin on the placement piece cannot be detached. Then, the locking part is used to lock the telescopic part with the first connection part to achieve the effect of convenient removal and adjustment of the placement piece.
[0012] Optionally, the connecting member further includes a locking portion; a thread is provided on the placement member; after the placement member moves toward the first connecting portion along with the telescopic portion and is plugged into the second connecting portion, the locking portion is connected to the placement member.
[0013] By adopting the above technical solution, after the telescopic part is inserted into the first connecting part, the placement piece passes through the first connecting part, and the protruding part of the placement piece is provided with an external thread. Then the locking part is screwed into the placement piece through the external thread to be screwed and locked. The placement piece is clamped by the locking part so that the placement piece cannot be separated from the second connecting part from the slot, thereby achieving the effect of stabilizing the placement piece and reducing the instability of the placement piece when the silk thread of the wire reel is pulled.
[0014] Optionally, the placement piece includes a placement portion, a plug-in portion and a hinged portion; the hinged portion is installed on the connecting piece; the placement portion is hinged to the hinged portion, and the wire bobbin is movably connected to the placement portion; the plug-in portion is installed at one end of the connecting piece away from the hinged portion; the placement portion rotates along the hinged portion to the plug-in portion and is plugged into the plug-in portion.
[0015] By adopting the above technical solution, when the wire bobbin needs to be replaced, the placement portion is lifted along the hinged portion in the hinged direction to separate the placement portion from the plug-in portion, thereby opening the placement portion away from one end of the hinged portion. The wire bobbin can then be inserted into the placement portion and then reinserted into the plug-in portion through the hinged portion to fix the placement portion and ensure stable operation of the wire bobbin.
[0016] Optionally, a fastening portion is further provided on the plug-in portion; the fastening portion passes through the placement portion and is engaged with the plug-in portion.
[0017] By adopting the above technical solution, the plug-in portion and the placement portion are clamped by the fastening portion, thereby limiting the movement trajectory of the plug-in portion and the placement portion, and locking the two together to achieve a mutual stabilization effect.
[0018] Optionally, the tensioning member includes a supporting part, a winding part, a wire pressing part and a wire passing part; the wire passing part is provided with a wire threading hole, and there are two wire passing parts, which are installed in sequence at both ends of the supporting part for the wire to pass through; there are several wire winding parts, which are installed in sequence on the inner wall of the supporting part for the wire to be wound; the wire pressing part is connected to the supporting part for pressing the wire.
[0019] By adopting the above technical solution, the wire passes through the wire-through portion at one end of the support portion and is pulled out from the wire-through portion at the other end. During the pulling-out process, the wire is wound by the winding portion to increase the friction force exerted on the wire during the pulling process, making the wire tighter. The wire pressing portion then provides pressure on the wire to provide a compacting effect, and the tension is further adjusted.
[0020] Optionally, the wire management component includes a wire management portion, an installation portion and a positioning portion; the installation portion is connected to the connecting portion and is located at one end away from the placement portion; the wire management portion is slidably connected to the installation portion, and the wire management portion is evenly provided with a number of wire management holes for the wires to pass through; the positioning portion is slidably connected to the wire management portion and is clamped with the installation portion.
[0021] By adopting the above technical solution, when the cable management part needs to be moved along the mounting part to adjust the position of the cable management hole, the cable management part slides along the mounting part, and the cable management holes are evenly opened on the cable management part, so that the position of the cable management hole can be adjusted to adapt to the wires in different positions, and then the positioning part is slid until it is tightly pressed against the mounting part to fix the adjusted position of the cable management part, thereby preventing the cable management part from being subjected to tension and moving along the mounting part to cause the position to shift, thereby achieving the effect of coordinated control.
[0022] Optionally, the mounting portion is detachably connected to the connecting member, and the mounting portion can be moved along the connecting member to change the mounting position.
[0023] By adopting the above technical solution, the positions of the mounting portion and other components on the mounting portion can be easily adjusted in a detachable manner to adapt to different wire outlet positions of the wire reels.
[0024] A braiding device comprises the wire adding structure, a device body and a connecting structure; the wire adding structure is mounted on the device body via the connecting structure.
[0025] By adopting the above technical solution, the wire adding structure is installed on the device body through the connecting structure, so that the wire adding structure can provide additional wires for weaving the device body.
[0026] Optionally, the connection structure includes a support member and a locking member; the support member is installed on the wire adding mechanism, and the locking member passes through the support member so that the support member is locked to the device body.
[0027] By adopting the above technical solution, the wire adding structure can be easily disassembled and installed through the screw connection and locking method of the support member and the locking member, which is convenient for later maintenance and adding wire spools.
[0028] In summary, this application includes at least one of the following beneficial technical effects:
[0029] 1. The moving path of the wire drum is limited by the placement part, but under the pulling effect of the wire end, the wire drum can rotate along the placement part to pull out the entangled wire. The pulled wire passes through the tensioning part, and the tensioning part can tighten the wire to prevent the wire from being unevenly stressed during the pulling process, causing the wire to loosen and entangle with each other, affecting the smooth pulling of the wire. After the wire is adjusted by the tensioning part, it passes through the wire management part. If multiple wire drums are used, there will be multiple wires pulled out at the same time. The wires are uniformly organized and guided by the wire management part to avoid the wires from being entangled with each other. Finally, the uniformly organized wires are connected to the external weaving equipment to achieve the effect of coordinated control, which is convenient for adding additional weaving wires for weaving.
[0030] 2. When it is necessary to replace the bobbin on the placement member, after the locking portion is removed, the telescopic portion loses the restrictive effect of the locking portion and can be pulled out along the first connection portion, thereby driving the third connection portion and the placement member away from the second connection portion to open one end outlet of the placement member, so that the bobbin can be inserted or removed from the opened end of the placement member. After the bobbin is inserted, the telescopic portion is inserted back into the first connection portion, and the placement member is inserted into the second connection portion, so that the two ends of the placement member are closed and the bobbin on the placement member cannot be separated. Then, the telescopic portion and the first connection portion are locked by the locking portion, so as to facilitate the removal and adjustment of the placement member.
[0031] 3. When the thread spool needs to be replaced, lift the placement part along the hinged part in the hinged direction to separate the placement part from the plug-in part, thereby opening the placement part away from the hinged part. Then, insert the thread spool into the placement part, and then insert the placement part back into the plug-in part through the hinged part to fix the placement part and ensure stable operation of the thread spool.
[0032] 4. When it is necessary to move the cable management part along the mounting part to adjust the position of the cable management hole, the cable management part slides along the mounting part, and the cable management holes are evenly opened on the cable management part, so that the position of the cable management hole can be adjusted to adapt to the wires in different positions, and then the adjusted position is fixed by the positioning part to prevent the cable management part from being pulled and moving along the mounting part to cause the position to shift, thereby achieving the effect of coordinated control. BRIEF DESCRIPTION OF THE DRAWINGS
[0033] Figure 1 This is a schematic diagram of the three-dimensional structure of the wire-added structure in one embodiment of the present application;
[0034] Figure 2 is a schematic diagram of the three-dimensional structure of a connecting member in one embodiment of the present application;
[0035] Figure 3 1 is a schematic diagram of the right side structure of a placement member in one embodiment of the present application;
[0036] Figure 4 is a schematic diagram of the three-dimensional structure of part of the connecting parts in another embodiment of the present application;
[0037] Figure 5 This is a schematic diagram of the three-dimensional structure of a cable management component in one embodiment of the present application;
[0038] Figure 6 1 is a front view structural diagram of a cable management component in one embodiment of the present application;
[0039] Figure 7 This is a schematic diagram of the right side structure of the mounting portion in one embodiment of the present application;
[0040] Figure 8 1 is a schematic diagram of the three-dimensional structure of a tensioning member in one embodiment of the present application;
[0041] Figure 9 It is a partial three-dimensional structural diagram of a knitting device in another embodiment of the present application;
[0042] The marks in the accompanying drawings are: 1. Connecting part, 11. First connecting part, 12. Second connecting part, 13. Third connecting part, 14. Telescopic part, 15. Locking part, 16. Locking part, 2. Placement part, 21. Placement part, 22. Insertion part, 23. Hinge part, 24. Fastening part, 241. Fitting groove, 242. Fitting block, 3. Tensioning part, 31. Support part, 32. Winding part, 33. Wire pressing part, 34. Wire passing part, 4. Wire management part, 41. Wire management part, 42. Installation part, 43. Positioning part, 44. Wire management hole, 5. Wire drum, 6. Connection structure, 61. Support part, 62. Locking part, 7. Equipment body. DETAILED DESCRIPTION
[0043] The following describes the embodiments of the present application through specific examples. Those skilled in the art can easily understand the other advantages and effects of the present application from the information disclosed in this application. The present application can also be implemented or applied through different specific embodiments. The details in this application can also be modified or changed according to different viewpoints and application systems without departing from the spirit of this application. It should be noted that the embodiments and features in the embodiments of this application can be combined with each other unless they conflict.
[0044] The following is a detailed description of the embodiments of the present application with reference to the accompanying drawings so that those skilled in the art can easily implement the present application. The present application can be embodied in many different forms and is not limited to the embodiments described herein.
[0045] In the description of this application, reference to the terms "one embodiment," "some embodiments," "examples," "specific examples," or "some examples" means that the specific features, structures, materials, or characteristics described in conjunction with the embodiment or example are included in at least one embodiment or example of this application. Moreover, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in any one or more embodiments or examples. In addition, those skilled in the art may combine and integrate different embodiments or examples described in this application, as well as features of different embodiments or examples, unless otherwise contradictory.
[0046] Furthermore, the terms "first" and "second" are used solely to indicate a target and should not be understood to indicate or imply relative importance or implicitly specify the number of technical features being referred to. Thus, a feature defined as "first" or "second" may explicitly or implicitly include at least one such feature. In the context of this application, "plurality" means two or more, unless otherwise specifically defined.
[0047] Throughout this specification, when a device is said to be "connected" to another device, this includes not only "direct connection" but also "indirect connection" with other elements interposed therebetween. Furthermore, when a device is said to "include" a certain component, unless otherwise stated, this does not exclude the inclusion of other components but rather implies that the device may include other components.
[0048] The following is combined with Figure 1 -Attached Figure 9 , further details of this application are given.
[0049] The embodiments of the present application disclose a wire adding structure for a weaving device and a weaving device.
[0050] A wire adding structure for a braiding device, in one embodiment, referring to Figure 1 , including a connecting part 1, a placing part 2, a tensioning part 3 and a wire-managing part 4; the placing part 2 for additionally placing the wire bobbin 5 is installed on the connecting part 1, and the connecting part 1 adopts a detachable frame structure, and the brackets between the frames are locked by bolts for easy disassembly and installation. The placing part 2 can adopt a placing shaft, and the placing shaft is fixedly installed on the frame structure. When the wire bobbin 5 needs to be plugged into the placing shaft, it can be achieved by disassembling the relevant structure of the frame, so that the wire bobbin 5 can rotate along the placing shaft to achieve the function of wire drawing and taking out. When the silk thread on the wire bobbin 5 is used up, the frame is disassembled, the wire bobbin 5 is taken out and replaced with a new wire bobbin 5.
[0051] The moving path of the wire drum 5 is limited by the placement axis, but under the pulling action of the wire end, the wire drum 5 can rotate along the placement axis to pull out the wound wire, and the tensioning member 3 is installed on the connecting member 1, and the pulled wire passes through the tensioning member 3. The tensioning member 3 can tighten the wire to avoid uneven force on the wire during the pulling process, which causes the wire to loosen and entangle with each other, affecting the smooth pulling of the wire. The wire management member 4 is installed on the connecting member 1, and the wire is adjusted by the tensioning member 3 and passes through the wire management member 4. If multiple wire drums are used, there are also multiple wires pulled out at the same time. The wires are uniformly organized and guided by the wire management member 4 to avoid the wires from being entangled with each other. Finally, the uniformly organized wires are connected to the external weaving equipment to facilitate the installation of additional weaving wires for weaving.
[0052] Among them, a single placement piece 2 and a single tensioning piece 3 form a group, and a single tensioning piece 3 adjusts the wire tension of a bobbin 5. The frame structure can also be provided with at least one group. Several groups of tensioning pieces 3 and placement pieces 2 can be provided on a single frame structure. In this embodiment, three groups are used as an example. A single frame structure can be provided with three groups of bobbins 5 at the same time to fully provide the amount of added wire. At the same time, the specific number of bobbins 5 can be placed in the placement piece 2 according to needs. If three groups are not needed, only one or two groups can be placed according to needs. When multiple groups of frame structures are set, such as three groups of frame structures, then in this embodiment, a maximum of nine groups of bobbins 5 can be placed on the bobbins 5 to further adapt to the required number of added wires.
[0053] In some embodiments, reference Figure 2As shown, the connecting member 1 includes a first connecting part 11, a second connecting part 12, a third connecting part 13, a telescopic part 14 and a locking part 15; the telescopic part 14 is plugged into the first connecting part 11, and the locking part 15 is connected to the first connecting part 11, and the telescopic part 14 is locked to the first connecting part 11. The telescopic part 14 can adopt a telescopic frame, and the first connecting part 11 can adopt a connecting tube. The telescopic frame can be inserted into the connecting tube, and the locking part 15 can adopt a fixing bolt. A threaded hole is provided at one end of the telescopic frame inserted into the connecting tube, and a through hole is provided at the end of the connecting tube away from the telescopic frame, and the aperture of the through hole is smaller than the size diameter of the telescopic frame, but slightly larger than the diameter of the fixing bolt, so that the fixing bolt can be inserted into the through hole. When the telescopic frame is inserted into the connecting tube, the fixing bolt passes through the through hole and locks the telescopic frame to the connecting tube through the threaded hole. When disassembly is required, the fixing bolt can be unscrewed to pull the telescopic frame out of the connecting tube, so as to facilitate disassembly and assembly.
[0054] The second connecting part 12 is installed on the first connecting part 11, and the third connecting part 13 is installed on the telescopic part 14. The second connecting part 12 can adopt a first erectable support frame, and the first support frame and the connecting tube can be fixedly installed and vertically erected along the connecting tube. The third placement piece 2 can adopt a second erectable support frame, and the second support frame and the telescopic frame can be fixedly installed and vertically erected along the telescopic frame. A slot is provided on the first support frame, and the inner groove shape of the slot matches the placement piece 2, so that the placement piece 2 can be plugged into the slot.
[0055] When it is necessary to take out the wire spool 5 on the placement piece 2, after the fixing bolt is taken out, the telescopic frame loses the restrictive effect of the fixing bolt and can be taken out along the connecting tube, thereby driving the second support frame and the placement piece 2 away from the first support frame to open one end outlet of the placement piece 2, so that the wire spool 5 can be inserted into it from the opened end of the placement piece 2. When the wire spool 5 is inserted, the telescopic frame is inserted back into the connecting tube, and the placement piece 2 is inserted into the slot on the first support frame, so that the two ends of the placement piece 2 are closed and the wire spool 5 on the placement piece 2 cannot be detached. Then the fixing bolt is inserted into the through hole and screwed into the threaded hole so that the fixing bolt locks the telescopic frame to achieve the effect of convenient removal and adjustment of the placement piece 2.
[0056] In some embodiments, the connector 1 further includes a locking portion 16; the placement member 2 is threaded, and the placement member 2 moves with the telescopic portion 14 toward the first connecting portion 11 and plugs into the second connecting portion 12. The locking member 62 is threadedly connected to the placement member 2. The locking portion 16 can be a locking nut or a locking bolt. When using a locking bolt, the placement member 2 is internally threaded. The locking method can be the same as the aforementioned fixed bolt locking telescopic frame, or another locking method can be used. In this embodiment, the locking portion 16 is a locking nut, and the corresponding placement member 2 is externally threaded.
[0057] When the telescopic frame is inserted into the connecting tube, the placement piece 2 passes through the slot, and the part of the placement piece 2 that passes through the slot is provided with an external thread. Then the locking nut is screwed into the placement piece 2 through the external thread to be screwed and locked. The placement piece 2 is stuck by the locking nut so that the placement piece 2 cannot be separated from the first support frame from the slot, thereby achieving the effect of stabilizing the placement piece 2 and reducing the instability of the placement piece 2 when the silk thread of the wire reel 5 is pulled.
[0058] In other embodiments, the installation method between the placement member 2 and the connection member 1 can be implemented in other ways, see Figure 3 As shown, the placement member 2 includes a placement portion 21, an insertion portion 22 and a hinged portion 23; the hinged portion 23 is installed on the connecting member 1, and the connecting member 1 can adopt an integrally formed or mutually fixedly connected frame structure, and the hinged portion 23 can adopt a hinged frame, one end of which is fixedly connected to the frame structure.
[0059] The placement portion 21 is hinged to the hinge portion 23, and the bobbin 5 is movably connected to the placement portion 21. The placement portion 21 can adopt a placement shaft, which is hinged to the hinge frame so that the placement shaft can rotate along the hinge frame. At the same time, the bobbin 5 can be inserted into the placement shaft. The diameter of the placement shaft can match the inner diameter of the bobbin 5, so that the bobbin 5 can rotate along the placement shaft to pull out the silk thread on the bobbin 5.
[0060] The plug-in portion 22 is installed at one end of the connector 1 away from the hinge portion 23, and the placement portion 21 rotates along the hinge portion 23 to the plug-in portion 22 and is plugged into the plug-in portion 22. The plug-in portion 22 can adopt a plug-in block, and a socket slot is provided on the plug-in block for the placement shaft to be inserted. When the placement shaft rotates along the hinge frame to the plug-in block, it is inserted into the socket slot, thereby providing support and limitation for the placement shaft. The bobbin 5 can stably rotate along the placement shaft without deviation when pulling the silk thread.
[0061] Specifically, when the wire bobbin 5 needs to be replaced, the placement shaft is lifted along the hinged frame in the hinged direction, so that the placement shaft is disengaged from the plug-in block on the socket slot to open the placement shaft away from one end of the hinged frame. The wire bobbin 5 can then be inserted into the placement shaft, and the placement shaft can be reinserted into the socket slot through the hinged frame to fix the placement shaft and ensure stable operation of the wire bobbin 5.
[0062] Further, refer to Figure 4 As shown, a fastening portion 24 is further provided on the plug-in portion 22; the fastening portion 24 passes through the placement portion 21 and is clamped with the plug-in portion 22. The fastening portion 24 can be a fastening bolt, a fastening plate, etc. Taking the fastening bolt as an example, a through hole is opened on the placement shaft, and a threaded hole is opened on the plug-in block. When the placement shaft is located in the socket slot of the plug-in block, the through hole and the threaded hole are connected, and the fastening bolt can be passed through the through hole and the threaded hole to tighten, so as to stabilize the placement shaft and the plug-in block.
[0063] Among them, taking the fastening part 24 as an example, a fastening plate is used. A fitting groove 241 is provided in the middle of the fastening plate for inserting the placement shaft and the plug-in block. Both the plug-in block and the placement shaft are provided with an L-shaped slot for inserting the fastening plate. After the fastening plate is inserted into the L-shaped slot, it moves along the L-shaped slot so that the plug-in block and the placement shaft are inserted into the fitting groove 241, thereby limiting the position of the plug-in block and the placement shaft, and locking the two together to achieve a mutual stabilization effect.
[0064] Among them, the height of the fastening plate is higher than the depth of the L-shaped slot, so the fastening plate can be exposed outside the L-shaped slot, and a sliding groove is provided on the outer wall surface of the slot of the fastening plate away from the fitting slot 241, and the slot is not provided at the end away from the L-shaped slot. A fitting block 242 is provided in the slot, and the thickness of the fitting block 242 is consistent with the length of the distance the fastening plate moves into the L-shaped slot. When the fastening plate does not pass through the fitting slot 241 and the plug-in block and the bearing is placed, the fitting block 242 is located at the end of the slot where the slot is not provided. Because the slot is not provided with a slot, the sliding slot cannot pass through the slot to detach from the sliding slot, which can avoid the loss of the fitting block 242.
[0065] Specifically, when the fastening plate is inserted into the L-shaped slot and moves along the horizontal direction of the L-shaped slot after entering the L-shaped slot, the plug-in block and the placement shaft are inserted into the fitting slot 241. After the fastening plate moves, one end of the fitting block 242 is empty, so that the fitting block 242 can be inserted into the L-shaped slot along the sliding slot, so that the L-shaped slot is filled, and the fastening plate cannot be separated from the L-shaped slot, so as to achieve the effect of tightly fastening the placement shaft and the plug-in block. According to this method, compared with fastening bolts, there is no need to use tools to rotate the fastening bolts, and the structure can be tightened directly by hand, which is more convenient.
[0066] In some embodiments, reference Figure 5 As shown, the cable management component 4 includes a cable management portion 41, a mounting portion 42 and a positioning portion 43; the mounting portion 42 is connected to the connector 1 and is located at one end away from the placement component 2. The mounting portion 42 can adopt a mounting frame, and a fixing hole is provided on the mounting frame. External bolts and screws can be inserted through the fixing holes to fix the mounting frame on the connector 1.
[0067] The wire management portion 41 is mounted on the mounting portion 42. The wire management portion 41 can be a wire management plate, and the wire management plate is evenly provided with a plurality of wire management holes 44 for the wires to pass through. A protective cover can be set in the wire management hole 44 to provide protection when the wires pass through.
[0068] After the silk thread is pulled out from the wire drum 5, it enters the tensioning piece 3, and the tension of the silk thread is adjusted by the tensioning piece 3. Then a large amount of silk thread is pulled out from the corresponding tensioning piece 3 and passes through the wire management hole 44. All the silk threads are uniformly organized through the wire management hole 44 and finally connected to the weaving equipment to achieve the effect of coordinated control of silk thread adding.
[0069] Among them, reference Figure 6As shown, the wire management portion 41 can adopt an I-shaped clamping block, and a number of them are set. The I-shaped clamping block is clamped into the installation frame and can slide along the installation frame. The I-shaped clamping block is evenly provided with wire management holes 44, so that the position of the wire management hole 44 can be adjusted to adapt to the wires in different positions, so as to avoid multiple wires being too close to each other and entangled.
[0070] The positioning portion 43 is slidably connected to the wire management portion 41 and is clamped with the mounting portion 42. Slide grooves are provided on the upper and lower surfaces of the I-shaped clamping block, and a positioning portion 43 is provided on the slide groove. The positioning portion 43 may include a sliding block and a magnetic block. Sliding blocks are provided on both sliders, and a magnetic block is connected between the two sliding blocks. The magnetic block can be a permanent magnet, and the mounting frame is made of magnetic metal material, which can be adsorbed by the permanent magnet, such as an iron-containing alloy. The specific material is not limited, or a layer of magnetic metal material sheet can be installed on the outer wall of the mounting frame to achieve the adsorption effect.
[0071] Specifically, when it is necessary to move the I-shaped clamping block along the inner wall of the mounting frame to adjust the position of the wire management hole 44, the permanent magnet is moved along the sliding groove through the sliding block, so that the I-shaped clamping block loses the fixing effect of the permanent magnet, so that the I-shaped clamping block can move along the inner wall of the mounting frame. After moving and adjusting to the appropriate position, the permanent magnet is released. The permanent magnet is affected by the mounting frame and moves along the sliding groove toward the mounting frame through the sliding block and is adsorbed on the mounting frame. The magnetic force of the permanent magnet and the mounting frame are mutually adsorbed to fix the position of the I-shaped clamping block, thereby avoiding the I-shaped clamping block being subjected to force and offset when the wire passes through the wire management hole 44.
[0072] Among them, continuous latching teeth or anti-slip grooves can be opened on the outer wall of the mounting frame, and latching teeth or anti-slip protrusions can also be set on the surface of the permanent magnet. When the permanent magnet is adsorbed to the mounting frame, the latching teeth between the two engage with each other, or the anti-slip protrusion is inserted into the anti-slip groove, thereby further improving the stability between the I-shaped latching block and the mounting frame.
[0073] Among them, reference Figure 7 As shown, the mounting portion 42 is detachably connected to the connector 1, and the mounting portion 42 can be moved along the connector 1 to change the mounting position. The mounting portion 42 may include a mounting frame and a clamping frame. The clamping frame has an inner groove, and the mounting frame can be clamped on the connector 1 through the inner groove, while also being convenient for moving the mounting frame.
[0074] Among them, a protrusion can be set at the notch of the inner groove. When the clip-on frame needs to be installed, the two sides of the inner groove are forced outward to open the notch, and then the inner groove is inserted into the connector 1. The position of the clip-on frame is further locked by the protrusion to prevent the clip-on frame from falling and improve the stability of the installation.
[0075] In some embodiments, reference Figure 8As shown, the tensioning member 3 includes a supporting portion 31, a winding portion 32, a wire pressing portion 33 and a wire passing portion 34; the supporting portion 31 is installed on the connecting member 1 and is opposite to the placing member 2. The supporting portion 31 can adopt a supporting box with an installation space provided inside. The wire passing portion 34 is provided with a wire threading hole, and there are two wire passing portions 34, which are installed at both ends of the supporting portion 31 in sequence for the wire to pass through. The wire passing portion 34 can adopt a threading buckle with a hole, a threading cover, or directly a threading hole. Taking the threading buckle as an example, the wire passes through the inner hole of the threading buckle at one end of the support box and is pulled out from the inner hole of the threading buckle at the other end.
[0076] There are several winding parts 32, which are installed in sequence on the inner wall of the support part 31 for winding the silk thread. The winding part 32 can adopt a winding shaft, and several winding shafts can be fixedly connected in the support box as a whole. After the silk thread enters the support part 31 from the inner hole of the threading buckle, there are many ways to route the thread. One of them is to pass through several winding shafts in a wave-like staggered manner. The number of staggered winding shafts can be selected by yourself, or a specific number of winding shafts can be selected according to the required tension. After each of them is wound around a circle, it is pulled to the threading buckle at the other end of the support box and threaded out. These methods can increase the friction force on the silk thread during the pulling process, making the silk thread tighter, and these methods can be implemented by selecting different numbers of winding shafts to adapt to different required tensions.
[0077] A wire pressing portion 33 is also provided in the support portion 31. The wire pressing portion 33 is detachable from the support portion 31 and is used to press the wire. The wire pressing portion 33 can be a spring wrapped in a rubber layer. The spring is staggered and embedded in the space between the two winding shafts. When the wire is wound around the winding shaft, it is simultaneously pressed by the spring. At the same time, the two ends of the spring press against the inner wall of the support box, so that the spring has sufficient supporting force. When the spring presses the wire down, the force of the spring pressing down on the wire can be adjusted according to the position of the spring pressing against the inner wall of the support box, providing a compacting effect, and the tension is further adjusted.
[0078] The present application also provides a weaving device, referring to Figure 9 As shown (the entire device body 7 is not shown in the figure, only a connecting bracket of the device body 7 is shown), the wire adding structure is applied to the weaving device, and also includes the device body 7 and the connecting structure 6; the wire adding structure is installed on the device body 7 through the connecting structure 6, and a large winding wheel is provided on the device body 7. The wire adding structure provides supplementary wires for other silk threads, and the wire adding structure can be firmly connected to the device body 7 through the connecting structure 6.
[0079] Among them, a number of wire management plates are provided on the device body 1 for sorting the added silk threads to reduce the confusion of the silk threads.
[0080] Among them, the connecting structure 6 includes a support member 61 and a locking member 62; the support member 61 is installed on the wire adding mechanism, and the locking member 62 passes through the support member 61, so that the support member 61 is locked on the equipment body 7, and the support member 61 adopts a locking seat, and a locking hole is provided on the locking seat. The locking member 62 can adopt a locking bolt, and a threaded hole is provided at the designated installation point of the equipment body 7. After moving the locking member 62 to the designated installation point of the equipment body 7, the threaded hole and the locking hole are located on the same vertical straight line, and then the locking bolt is inserted into the locking hole and rotated into the threaded hole to complete the installation. Through the locking effect of the locking bolt, the wire adding structure can be conveniently disassembled or installed.
[0081] The examples of this specific embodiment are all preferred embodiments of this application and are not intended to limit the scope of protection of this application. Identical components are represented by the same reference numerals. Therefore, any equivalent changes made based on the structure, shape, and principle of this application should be included in the scope of protection of this application.
Claims
1. A wire adding structure for a weaving device, characterized in that: The braiding device comprises a device body (7) and a wire adding structure, wherein the wire adding structure comprises a connecting piece (1), a placing piece (2), a tensioning piece (3) and a wire management piece (4); the placing piece (2) for adding a wire drum (5) is mounted on the connecting piece (1), and the wire drum (5) rolls and pulls out the wire through the placing piece (2); the tensioning piece (3) is mounted on the connecting piece (1), and the wire passes through the tensioning piece (3); the wire management piece (4) is mounted on the connecting piece (1) , and the wire is pulled out from the tensioning member (3) and passes through the wire-managing member (4) until it is connected to the device body (7); the connecting member (1) includes a first connecting portion (11), a second connecting portion (12), a third connecting portion (13), a telescopic portion (14) and a locking portion (15); the telescopic portion (14) is plugged into the first connecting portion (11); the locking portion (15) is connected to the first connecting portion (11) and locks the telescopic portion (14) and the first connecting portion (11); The second connecting portion (12) is mounted on the first connecting portion (11); the third connecting portion (13) is mounted on the telescopic portion (14); one end of the placement member (2) is connected to the third connecting portion (13), and the other end is plugged into the second connecting portion (12); the placement member (2) includes a placement portion (21), a plug-in portion (22) and a hinged portion (23); the hinged portion (23) is mounted on the connecting member (1); the placement portion (21) is hinged to the hinged portion (23), and the wire drum (5) is movably connected to the placement portion (21); the plug-in portion (22) is mounted on the connecting member The connecting member (1) is away from one end of the hinged portion (23); the placing portion (21) is rotated along the hinged portion (23) to the plug-in portion (22) and plugged into the plug-in portion (22); when the bobbin (5) needs to be replaced, the placing portion (21) is lifted along the hinged portion (23) in the hinged direction to separate the placing portion (21) from the plug-in portion (22), so as to open the placing portion (21) away from one end of the hinged frame, insert the bobbin (5) into the placing portion (21), and then re-insert the placing portion (21) into the plug-in portion (22) through the hinged portion (23) to fix the placing portion (21) so that the bobbin (5) can operate stably.
2. A wire adding structure for braiding equipment according to claim 1, characterized in that: A single placement member (2) and a single tension member (3) form a group, and a single connection member (1) is provided with at least one group of the placement member (2) and the tension member (3).
3. A wire adding structure for braiding equipment according to claim 1, characterized in that: The connecting member (1) further includes a locking portion (16); a thread is provided on the placement member (2); the placement member (2) moves toward the first connection member (11) along with the telescopic portion (14), and after being plugged into the second connection member (12), the locking portion (16) is connected to the placement member (2).
4. A wire adding structure for braiding equipment according to claim 1, characterized in that: A fastening portion (24) is also provided on the plug-in portion (22); the fastening portion (24) passes through the placement portion (21) and is engaged with the plug-in portion (22).
5. The wire adding structure for braiding equipment according to claim 1, characterized in that: The tensioning member (3) comprises a supporting portion (31), a winding portion (32), a wire pressing portion (33) and a wire passing portion (34); the wire passing portion (34) is provided with a wire threading hole, and two wire passing portions (34) are provided, which are sequentially installed at both ends of the supporting portion (31) for the wire to pass through; the wire winding portions (32) are in number, which are sequentially installed on the inner wall of the supporting portion (31) for the wire to be wound; the wire pressing portion (33) is connected to the supporting portion (31) and is used for pressing the wire.
6. A wire adding structure for braiding equipment according to claim 1, characterized in that: The wire management component (4) includes a wire management portion (41), a mounting portion (42) and a positioning portion (43); the mounting portion (42) is connected to the connecting component (1) and is located at one end away from the placement component (2); the wire management portion (41) is slidably connected to the mounting portion (42), and the wire management portion (41) is evenly provided with a plurality of wire management holes (44) for the wires to pass through; the positioning portion (43) is slidably connected to the wire management portion (41) and is snap-fitted to the mounting portion (42).
7. A weaving device, characterized in that: The invention comprises the wire adding structure according to any one of claims 1 to 6, and further comprises a device body (7) and a connecting structure (6); the wire adding structure is installed on the device body (7) through the connecting structure (6).
8. A braiding device according to claim 7, characterized in that: The connecting structure (6) includes a supporting member (61) and a locking member (62); the supporting member (61) is installed on the wire-adding structure, and the locking member (62) passes through the supporting member (61) so that the supporting member (61) is locked on the device body (7).
Citation Information
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