A double-arm guiding device for a cable braiding machine
The cable guiding and straightening mechanism of the double-arm guiding equipment of the cable braiding machine solves the problems of cable jumper and misalignment during the braiding process, realizes the precise guidance and correction of the cable, and improves the braiding quality and yield rate.
Patent Information
- Application Number
- CN202510728250.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-03
- Publication Date
- 2025-10-03
- Estimated Expiration
- 2045-06-03
AI Technical Summary
During the braiding process of existing cable braiding machines, the cables are easily affected by factors such as uneven tension and path deviation, resulting in problems such as wire jumpers and misalignment. In addition, the cables cannot be fully straightened and guided, affecting the braiding quality.
The cable braiding machine adopts double-arm guiding equipment, including cable guiding mechanism and cable straightening mechanism. The guide roller drives the linkage shaft and transmission gear system to achieve precise guidance and intermittent downward pressure of the cable, and the straightening wheel and positioning wheel are used to correct defects such as bending and twisting.
It significantly improves the quality of cable braiding and the qualified rate of finished products, reduces the incidence of defects such as jumpers, broken wires, loose strands, etc., and ensures that the cables enter the braiding area in an orderly and straight manner during the braiding process.
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Figure CN120319541B_ABST
Abstract
Description
Technical Field
[0001] The invention relates to a cable braiding machine, in particular to a double-arm guiding device for the cable braiding machine. Background Art
[0002] Cable braiding machines are widely used in the wire and cable manufacturing industry to braid multiple strands of conductors into cables. The braiding process significantly impacts cable properties, such as flexibility, tensile strength, and electrical performance. To achieve optimal braiding results, precise cable guidance during the braiding process is crucial.
[0003] After searching, the patent with the authorization announcement number CN221362479U discloses a metal wire weaving guide device, which includes a guide device body, an extrusion plate installed on the guide device body, and a through hole at the end of the guide device body, and a metal wire is inserted into the through hole. The right end of the guide device body is installed with an extrusion assembly, which consists of a pressing seat, a driving seat, a guide block, a driving groove, a limit plate and an extrusion plate; the driving seat is movably installed inside the right end of the guide device body, and the surface of the driving seat is provided with a driving groove. The metal wire weaving guide device, when pressing the pressing seat, drives the driving seat through the connecting column and the limit plate, and the downward pressing inclined surface of the bottom of the limit plate covers the inclined bottom surface of the driving groove, so that the driving groove moves to the left, so that the extrusion plate is separated from the metal wire, which is convenient for taking out the metal wire. On the contrary, when the pressing seat is released, the extrusion plate is reset to press the metal wire. It has the advantages of easy operation and strong practicality.
[0004] However, when the device is in use, when the cable enters the weaving area, it is easily affected by various factors, such as uneven tension, path deviation, etc., which leads to problems such as wire skipping and misalignment during the weaving process, seriously affecting the weaving quality; in addition, the cable cannot be fully straightened and guided, resulting in the cable still having problems such as bending and twisting when entering the weaving area, further aggravating the instability and defect rate of the weaving process. Summary of the Invention
[0005] In view of the deficiencies in the prior art, the object of the present invention is to provide a double-arm guiding device for a cable braiding machine to solve the problems raised in the above background technology.
[0006] To achieve the above objectives, the present invention is implemented through the following technical solutions: A double-arm guiding device for a cable braiding machine, comprising:
[0007] Double-arm guide bracket;
[0008] Cable guiding mechanism; the cable guiding mechanism is arranged on the front side of the double-arm guide bracket, and is used to guide the cable line into the braiding area of the cable braiding body while triggering the downward pressure of the cable line close to the braiding area of the cable braiding body; the cable guiding mechanism includes a first guide arm, a second guide arm, a guide roller, a fixing frame, a connecting frame, a transmission gear, a linkage shaft, a positioning frame, a braiding anti-jump pressure block and an anti-jump driving arm;
[0009] Cable straightening mechanism; the cable straightening mechanism is arranged on the front side of the cable guiding mechanism, and the cable straightening mechanism is used to straighten the cable line.
[0010] Preferably, the guide arm one and the guide arm two are fixedly connected to both sides of the double-arm guide bracket, and the inner sides of the guide arm one and the guide arm two are rotatably connected to guide rollers, and the outer sides of the guide rollers located on the inner side of the guide arm two are transmission-connected to a driven shaft, and the driven shaft is arranged inside the linkage belt, and a linkage shaft is arranged inside the upper end of the linkage belt, and the linkage shaft is transmission-connected to a transmission gear, and the transmission gear is arranged at the upper end of the rear side of the connecting frame and is rotationally connected to the connecting frame, and a meshing gear is meshedly connected below the transmission gear, and the meshing gear is rotationally connected to the connecting frame.
[0011] Preferably, one side of the meshing gear is connected to a rotating arm for transmission, and the rotating arm is rotatably connected to an eccentric rod at one end away from the meshing gear, and the eccentric rod is rotatably connected to an anti-jump driving arm at one end away from the meshing gear. The lower end of the anti-jump driving arm is internally rotatably connected to a braided anti-jump pressure block. When the cable passes through the guide roller, it drives the driven shaft to rotate, thereby causing the linkage belt to move. As the linkage shaft rotates, the transmission gear rotates accordingly, and the meshing gear meshed with it below it will also rotate due to its rotation connection with the connecting frame. When the meshing gear rotates, the rotating arm will swing around the connection between it and the connecting frame, and the swing of the rotating arm is transmitted through the pin shaft The eccentric rod is given a linkage movement, and the movement of the eccentric rod is then transmitted to the anti-jump driving arm. As the anti-jump driving arm rotates, the braided anti-jump pressure block will move up and down in the limit groove, thereby intermittently pressing down the cable line close to the weaving area of the cable braiding machine body, ensuring that the cable line can enter the weaving area smoothly and orderly. The cable guiding mechanism accurately guides and intermittently presses down the cable line, which can ensure that the cable line slowly enters the weaving area of the cable braiding machine body. The intermittent downward pressure of the braided anti-jump pressure block on the cable line avoids problems such as cable jump and dislocation during the weaving process, thereby significantly improving the quality of cable weaving and the qualified rate of finished products.
[0012] Preferably, the braided anti-jump pressure block is arranged inside the limiting groove, the limiting groove is arranged inside the lower end of the positioning frame, the positioning frame is fixedly connected to the connecting frame, the front side of the positioning frame is fixedly connected to the rear side of the connecting frame, and the two ends of the connecting frame are respectively fixedly connected to the front sides of guide arm one and guide arm two.
[0013] Preferably, the rear sides of the guide arm 1 and the guide arm 2 are fixedly connected with connecting arms, and one end of the two connecting arms away from the guide arm 1 and the guide arm 2 is fixedly connected to the left and right sides of the cable bracket, and the upper surface of the cable bracket is provided with an arc groove.
[0014] Preferably, the cable straightening mechanism includes a support frame, a straightening platform, a positioning wheel, a straightening wheel, an adjustment frame and an adjustment screw. The straightening platform is arranged above the front side of the double-arm guide bracket. The four corners of the straightening platform are fixedly connected to the support frame, and each of the support frames is fixedly connected to the double-arm guide bracket at one end away from the straightening platform.
[0015] Preferably, three straightening wheels and positioning wheels are respectively provided on the left and right sides of the straightening platform, each of the positioning wheels is rotatably connected to the straightening platform, the straightening wheels are rotatably connected to the upper surface of the adjustment frame, and the upper surface of the straightening wheels on the rear side is transmission-connected to the straightening prompt disk, and the straightening prompt disk is longitudinally penetrated by a plurality of prompt rods, and the plurality of prompt rods are distributed in a ring array inside the straightening prompt disk.
[0016] Preferably, an adjusting screw is provided between the left side of the adjusting frame and the straightening platform, the adjusting screw is rotatably connected to the adjusting frame, and the adjusting screw is threadedly connected to the straightening platform. The cable starts from the surface of the cable winding frame and enters the cable straightening mechanism along a preset path. By rotating the adjusting screw, the position of the adjusting frame can be changed, thereby adjusting the pressure of the straightening wheel on the cable. During the straightening process, the cable passes between the straightening wheels and the positioning wheels, and the tension is evenly distributed. After straightening and guiding by the straightening wheels and the positioning wheels, defects such as bending, twisting and wavy shapes in the cable are effectively corrected, and the cable becomes straighter. Then, the cable enters the cable guiding mechanism. When the cable enters the braiding area, the tightness of each part is consistent, which reduces the incidence of defects such as jump wires, break wires, and loose strands during the braiding process. In addition, during the straightening process, the straightening wheel located at the rear side rotates and the straightening prompt disk connected to its upper end rotates accordingly. If the cable straightening effect is not good, it will collide with the prompt rod inside the straightening prompt disk. The straightening condition of the cable can be judged by judging whether there is a collision.
[0017] Preferably, both sides of the rear end of the double-arm guide bracket are fixedly connected to the left and right ends of the front side of the cable braiding machine body.
[0018] Preferably, a cable winding rack is provided at the front end of the double-arm guide bracket, and a cable is wound around the surface of the cable winding rack.
[0019] Compared with the prior art, the present invention has the following beneficial effects:
[0020] The gears are connected to the guide wheels and the gears are rotated to move the guide wheels, and the gears are connected to the guide wheels, and the gears are connected to the guide wheels, and the gears are connected to the guide wheels, and the gears are connected to the guide wheels. When the gears rotate, the rotating arm swings around the connection between the rotating arm and the connecting frame, and the swing of the rotating arm is transmitted to the eccentric rod through the pin shaft, so that it moves in a linked manner. The movement of the eccentric rod is then transmitted to the anti-jump driving arm. As the anti-jump driving arm rotates, the braiding anti-jump pressure block moves up and down in the limit groove, thereby intermittently pressing the cable near the braiding area of the cable braiding machine body until the cable enters the arc groove of the cable bracket, ensuring that the cable can enter the braiding area smoothly and orderly. The cable guiding mechanism accurately guides and intermittently presses the cable, which can ensure that the cable slowly enters the braiding area of the cable braiding machine body. The intermittent downward pressure of the braiding anti-jump pressure block on the cable avoids problems such as cable jump and dislocation during the braiding process, thereby significantly improving the quality of cable braiding and the qualified rate of finished products.
[0021] 2. The present invention is provided with a cable straightening mechanism. The cable starts from the surface of the cable winding frame and enters the cable straightening mechanism along a preset path. By rotating the adjusting screw, the position of the adjusting frame can be changed, thereby adjusting the pressure of the straightening wheel on the cable. During the straightening process, the cable passes between the straightening wheels and the positioning wheels, and the tension is evenly distributed. After straightening and guiding by the straightening wheels and the positioning wheels, defects such as bending, twisting and waving in the cable are effectively corrected, and the cable becomes straighter. Then, it enters the cable guiding mechanism. When the cable enters the braiding area, the tightness of each part is consistent, which reduces the incidence of defects such as jump wires, break wires, and loose strands during the braiding process; in addition, during the straightening process, the straightening wheel located at the rear side rotates and the straightening prompt disk connected to its upper end rotates accordingly. If the cable straightening effect is not good, it will cause the cable to shake, and the staff can judge the straightening condition of the cable by observation. BRIEF DESCRIPTION OF THE DRAWINGS
[0022] Figure 1 This is a schematic diagram of the main structure of the present invention after being assembled with a cable braiding machine;
[0023] Figure 2 This is a rear view schematic diagram of the present invention after being assembled with a cable braiding machine;
[0024] Figure 3This is a schematic diagram of the main three-dimensional structure of the present invention;
[0025] Figure 4 It is a rear perspective structural diagram of the present invention;
[0026] Figure 5 Schematic diagram of the rear structure of the cable guide mechanism of the present invention;
[0027] Figure 6 This is a schematic diagram of the main structure of the cable guiding mechanism of the present invention;
[0028] Figure 7 It is a rear perspective structural diagram of the present invention;
[0029] Figure 8 For the present invention Figure 5 Schematic diagram of the enlarged structure at point A in the middle.
[0030] In the figure: 1. Double-arm guide bracket; 2. Cable braiding body; 3. Cable guiding mechanism; 301. Guide arm 1; 302. Guide arm 2; 303. Guide roller; 304. Fixed bracket; 305. Connecting bracket; 306. Transmission gear; 307. Linkage shaft; 308. Linkage belt; 309. Engaging gear; 310. Rotating arm; 311. Eccentric rod; 312. Positioning bracket; 313. Braiding anti-jump pressure block; 314. Limiting groove; 315. Driven shaft; 316. Anti-jump driving arm; 4. Cable straightening mechanism; 401. Support bracket; 402. Straightening platform; 403. Positioning wheel; 404. Straightening wheel; 405. Adjusting bracket; 406. Adjusting screw; 407. Straightening reminder disk; 408. Reminder rod; 5. Cable winding bracket; 6. Cable line; 7. Connecting arm; 8. Cable bracket; 9. Arc groove. DETAILED DESCRIPTION
[0031] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0032] See also Figures 1-8 The present invention provides two technical solutions, specifically including the following embodiments:
[0033] Example 1
[0034] A double-arm guiding device for a cable braiding machine comprises a double-arm guiding bracket 1 and a cable guiding mechanism 3; the cable guiding mechanism 3 is arranged on the front side of the double-arm guiding bracket 1, and the cable guiding mechanism 3 is used for guiding the cable line 6 into the braiding area of the cable braiding machine body 2 while triggering the downward pressure of the cable line 6 close to the braiding area of the cable braiding machine body 2; the cable guiding mechanism 3 comprises a guiding arm 1 301, a guiding arm 2 302, a guide roller 303, a fixing frame 304, a connecting frame 305, a transmission gear 306, a linkage shaft 307, a positioning frame 312, a braiding anti-jump pressure block 313 and an anti-jump driving arm 316, the guiding arm 1 301 and the guiding arm 2 302 are fixedly connected to both sides of the double-arm guiding bracket 1, and the inner sides of the guiding arm 1 301 and the guiding arm 2 302 are both rotated The guide roller 303 is dynamically connected to the guide roller 303, and the outer side of the guide roller 303 located on the inner side of the guide arm 2 302 is connected to the driven shaft 315. The driven shaft 315 is arranged inside the linkage belt 308, and a linkage shaft 307 is arranged inside the upper end of the linkage belt 308. The linkage shaft 307 is connected to the transmission gear 306. The transmission gear 306 is arranged at the upper end of the rear side of the connecting frame 305 and is rotatably connected to the connecting frame 305. The lower part of the transmission gear 306 is meshed with a meshing gear 309, and the meshing gear 309 is rotatably connected to the connecting frame 305. One side of the meshing gear 309 is connected to the rotating arm 310. The end of the rotating arm 310 away from the meshing gear 309 is rotatably connected to the eccentric rod 311. The eccentric rod 311 is away from the meshing gear 30 One end of 9 is rotatably connected to the anti-jump driving arm 316, and the lower end of the anti-jump driving arm 316 is rotatably connected to the braided anti-jump pressure block 313, and the braided anti-jump pressure block 313 is arranged inside the limiting groove 314, and the limiting groove 314 is arranged inside the lower end of the positioning frame 312, and the positioning frame 312 is fixedly connected to the connecting frame 305, and the front side of the positioning frame 312 is fixedly connected to the rear side of the connecting frame 305, and the two ends of the connecting frame 305 are respectively fixedly connected to the front sides of the guide arm 1 301 and the guide arm 2 302, and the rear sides of the guide arm 1 301 and the guide arm 2 302 are fixedly connected to the connecting arm 7, and the two connecting arms 7 are fixedly connected to the left and right sides of the cable bracket 8 at one end away from the guide arm 1 301 and the guide arm 2 302. 302 are fixedly connected to both sides of the double-arm guide bracket 1, and the inner sides of the guide arm 1 301 and the guide arm 2 302 are rotatably connected with the guide roller 303. The function of the guide roller 303 is to guide the direction of the cable 6 and keep it smooth before entering the weaving area. In particular, the outer side of the guide roller 303 located on the inner side of the guide arm 2 302 is connected with the driven shaft 315 through transmission. The driven shaft 315 is arranged inside the linkage belt 308. When the cable 6 passes through the guide roller 303, friction is generated, which drives the driven shaft 315 to rotate. The rotation of the driven shaft 315 is transmitted to the linkage shaft 307 inside the upper end through the linkage belt 308. The linkage shaft 307 is connected to the transmission gear 306. Therefore, as the linkage shaft 307 rotates,The transmission gear 306 rotates accordingly, and the upper surface of the cable bracket 8 is provided with an arc groove 9. The shape of the arc groove 9 matches the direction of the cable 6, which is conducive to the smooth placement and guidance of the cable 6. When the cable 6 passes through the guide roller 303, it drives the driven shaft 315 to rotate, thereby causing the linkage belt 308 to move. The movement of the linkage belt 308 is transmitted to the transmission gear 306 through the linkage shaft 307, causing it to rotate. Since the transmission gear 306 is engaged with the meshing gear 309, the meshing gear 309 will also rotate accordingly. The rotation of the meshing gear 309 drives the rotating arm 310 to swing around its connection with the connecting frame 305. The swing of the rotating arm 310 is transmitted to the eccentric rod 311 through the pin shaft, causing it to move in a linked manner. The movement of the eccentric rod 311 is then transmitted to the anti-jump driving arm 316, causing the anti-jump driving arm 316 to rotate around its axis. As the anti-jump driving arm 316 rotates, the braided anti-jump pressure block 313 moves up and down in the limiting groove 314.
[0035] During operation, when the cable 6 passes through the guide roller 303, it will drive the driven shaft 315 to rotate, thereby causing the linkage belt 308 to move. As the linkage shaft 307 rotates, the transmission gear 306 rotates accordingly, and the meshing gear 309 below it is connected to the connecting frame 305 and rotates accordingly. When the meshing gear 309 rotates, the rotating arm 310 swings around the connection between it and the connecting frame 305. The swing of the rotating arm 310 is transmitted to the eccentric rod 311 through the pin shaft, causing it to move in linkage. The movement of the eccentric rod 311 is then transmitted to the anti-jump driving arm 316. As the anti-jump driving arm 316 rotates, With the rotation of the cable guide mechanism 3, the braiding anti-jump pressure block 313 moves up and down in the limiting groove 314, thereby intermittently pressing down the cable line 6 near the braiding area of the cable braiding body 2 until the cable line 6 enters the arc groove 9 of the cable bracket 8, ensuring that the cable line 6 can enter the braiding area smoothly and orderly, and the cable line 6 is accurately guided and intermittently pressed down by the cable guiding mechanism 3. The braiding anti-jump pressure block 313 intermittently presses down the cable line 6 near the braiding area of the cable braiding body 2, ensuring that the cable line 6 can enter the braiding area slowly and orderly, effectively avoiding the problems of cable line 6 jumping, dislocation, etc. during the braiding process.
[0036] Example 2
[0037] On the basis of embodiment 1, it also includes: a cable straightening mechanism 4; the cable straightening mechanism 4 is arranged on the front side of the cable guiding mechanism 3, the cable straightening mechanism 4 is used to straighten the cable line 6, the cable straightening mechanism 4 includes a support frame 401, a straightening platform 402, a positioning wheel 403, a straightening wheel 404, an adjustment frame 405 and an adjustment screw 406, the straightening platform 402 is arranged above the front side of the double-arm guide bracket 1, the four corners of the straightening platform 402 are fixedly connected to the support frame 401, and each support frame 401 is fixedly connected to the double-arm guide bracket 1 at one end away from the straightening platform 402, and three straightening wheels 405 are respectively provided on the left and right sides of the straightening platform 402. 4 and positioning wheels 403, each positioning wheel 403 is rotatably connected to the straightening platform 402, the straightening wheel 404 is rotatably connected to the upper surface of the adjusting frame 405, the upper surface of the rear straightening wheel 404 is transmission-connected with a straightening prompt disk 407, the straightening prompt disk 407 is longitudinally penetrated by a plurality of prompt rods 408, the plurality of prompt rods 408 are distributed in a ring array inside the straightening prompt disk 407, the lower ends of the plurality of prompt rods 408 extend to the upper end position of the straightening center of the cable 6, an adjusting screw 406 is provided between the left side of the adjusting frame 405 and the straightening platform 402, the adjusting screw 406 is rotatably connected to the adjusting frame 405, and the adjusting screw 406 is rotationally connected to the straightening The straight platform 402 is threadedly connected, and the two sides of the rear end of the double-arm guide bracket 1 are fixedly connected to the left and right ends of the front side of the cable braiding body 2. The front end of the double-arm guide bracket 1 is provided with a cable winding rack 5, and the surface of the cable winding rack 5 is wound with a cable line 6. The cable line 6 starts from the surface of the cable winding rack 5 and enters the cable straightening mechanism 4 along a preset path. By rotating the adjusting screw 406, the position of the adjusting rack 405 can be changed to adjust the pressure of the straightening wheel 404 on the cable line 6. During the straightening process, the cable line 6 passes between the straightening wheels 404 and the positioning wheels 403, and the tension is evenly distributed. After the straightening of the straightening wheels 404 and the positioning wheels 403 After being guided, defects such as bending, twisting and wavy shapes in the cable 6 are effectively corrected, and the cable 6 becomes straighter. Then, it enters the cable guiding mechanism 3. When the cable 6 enters the weaving area, the tightness of each part is consistent, which reduces the incidence of defects such as jumper wires, broken wires and loose strands during the weaving process. In addition, during the straightening process, the straightening wheel 404 at the rear side rotates while the straightening prompt disk 407 connected to its upper end rotates accordingly. If the straightening effect of the cable 6 is not good, it will collide with the prompt rod 408 inside the straightening prompt disk 407, which will cause the cable 6 to shake. The staff can judge the straightening condition of the cable 6 by observation.
[0038] The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Any modifications, equivalent substitutions and improvements made within the spirit and principles of the application should be included in the scope of protection of the present invention.
Claims
1. A double-arm guide device for a cable braiding machine, characterized by: include: Double-arm guide bracket (1); A cable guiding mechanism (3); the cable guiding mechanism (3) is arranged on the front side of the double-arm guiding bracket (1), and the cable guiding mechanism (3) is used to trigger the downward pressure of the cable line (6) close to the braiding area of the cable braiding body (2) while guiding the cable line (6) to enter the braiding area of the cable braiding body (2); the cable guiding mechanism (3) includes a guiding arm 1 (301), a guiding arm 2 (302), a guide roller (303), a fixing frame (304), a connecting frame (305), a transmission gear (306), a linkage shaft (307), a positioning frame (312), a braiding anti-jump pressure block (313) and an anti-jump driving arm (316); A cable straightening mechanism (4); the cable straightening mechanism (4) is arranged on the front side of the cable guiding mechanism (3), and the cable straightening mechanism (4) is used to straighten the cable line (6); The guide arm 1 (301) and the guide arm 2 (302) are fixedly connected to both sides of the double-arm guide bracket (1); the inner sides of the guide arm 1 (301) and the guide arm 2 (302) are both rotatably connected to guide rollers (303); the outer sides of the guide rollers (303) located on the inner side of the guide arm 2 (302) are transmission-connected to a driven shaft (315); the driven shaft (315) is arranged inside a linkage belt (308); a linkage shaft (307) is arranged inside the upper end of the linkage belt (308); the linkage shaft (307) is transmission-connected to a transmission gear (306); the transmission gear (306) is arranged at the upper end of the rear side of the connecting frame (305) and is rotationally connected to the connecting frame (305); a meshing gear (309) is meshedly connected below the transmission gear (306); the meshing gear (309) is rotationally connected to the connecting frame (305).
2. A double-arm guide device for a cable braiding machine according to claim 1, characterized in that: One side of the meshing gear (309) is connected to a rotating arm (310) in a transmission manner. An end of the rotating arm (310) away from the meshing gear (309) is rotatably connected to an eccentric rod (311). An end of the eccentric rod (311) away from the meshing gear (309) is rotatably connected to an anti-jump driving arm (316). The lower end of the anti-jump driving arm (316) is internally rotatably connected to a braided anti-jump pressure block (313).
3. A double-arm guide device for a cable braiding machine according to claim 2, characterized in that: The braided anti-jump pressure block (313) is arranged inside the limiting groove (314), and the limiting groove (314) is arranged inside the lower end of the positioning frame (312). The positioning frame (312) is fixedly connected to the connecting frame (305), and the front side of the positioning frame (312) is fixedly connected to the rear side of the connecting frame (305). The two ends of the connecting frame (305) are respectively fixedly connected to the front sides of the guide arm 1 (301) and the guide arm 2 (302).
4. The double-arm guiding device for a cable braiding machine according to claim 1, characterized in that: The rear sides of the guide arm 1 (301) and the guide arm 2 (302) are both fixedly connected to a connecting arm (7), and one end of the two connecting arms (7) away from the guide arm 1 (301) and the guide arm 2 (302) is fixedly connected to the left and right sides of the cable bracket (8), and the upper surface of the cable bracket (8) is provided with an arc groove (9).
5. The double-arm guiding device for a cable braiding machine according to claim 1, characterized in that: The cable straightening mechanism (4) comprises a support frame (401), a straightening platform (402), a positioning wheel (403), a straightening wheel (404), an adjustment frame (405), an adjustment screw (406), a straightening prompt disk (407) and a prompt rod (408), wherein the straightening platform (402) is arranged above the front side of the double-arm guide bracket (1), and the four corners of the straightening platform (402) are fixedly connected to the support frame (401), and one end of each support frame (401) away from the straightening platform (402) is fixedly connected to the double-arm guide bracket (1).
6. The double-arm guiding device for a cable braiding machine according to claim 5, characterized in that: Three straightening wheels (404) and positioning wheels (403) are respectively provided on the left and right sides of the straightening platform (402), each positioning wheel (403) is rotatably connected to the straightening platform (402), the straightening wheels (404) are rotatably connected to the upper surface of the adjustment frame (405), and the upper surface of the rear straightening wheels (404) is transmission-connected to a straightening prompt disk (407), and the straightening prompt disk (407) is longitudinally penetrated by a plurality of prompt rods (408), and the plurality of prompt rods (408) are distributed in a ring array inside the straightening prompt disk (407).
7. The double-arm guiding device for a cable braiding machine according to claim 6, characterized in that: An adjusting screw (406) is provided between the left side of the adjusting frame (405) and the straightening platform (402), the adjusting screw (406) being rotatably connected to the adjusting frame (405), and the adjusting screw (406) being threadedly connected to the straightening platform (402).
8. The double-arm guiding device for a cable braiding machine according to claim 1, characterized in that: Both sides of the rear end of the double-arm guide bracket (1) are fixedly connected to the left and right ends of the front side of the cable braiding machine body (2).
9. The double-arm guiding device for a cable braiding machine according to claim 1, characterized in that: A cable winding frame (5) is provided at the front end of the double-arm guide bracket (1), and a cable (6) is wound around the surface of the cable winding frame (5).
Citation Information
Patent Citations
Metal wire weaving guiding device
CN221362479U
Novel braiding machine guide wheel structure and using method
CN112309639A
Braiding machine for electric wire shielding
JP2004244749A