Square fish wire braiding machine
By using a square braiding machine and method, the problem of gaps in the middle of circular braided fishing lines was solved, thereby improving the tightness and strength of the braided fishing lines.
Patent Information
- Application Number
- CN202423235154.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-26
- Publication Date
- 2025-11-21
- Estimated Expiration
- 2034-12-26
AI Technical Summary
The existing braided fishing line has a circular structure with a hollow center, which makes the braided fishing line not tight enough, affecting its abrasion resistance and tensile strength.
Using a square braiding machine and braiding method, the spindle slides on the feeding turntable slide along the multi-ring braiding track groove to form a square braiding structure, reducing the gap in the middle and increasing the tightness of the fishing line.
The braided fishing line is more compact, which improves its abrasion resistance and tensile strength.
Smart Images

Figure CN223576718U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to braiding machine technical field, in particular to a square fishing line braiding machine. BACKGROUND
[0002] Fishing is becoming more and more a kind of outdoor activities that people love, mainly using fishing rod to fish from the water. Fishing line is the line hung on the fishing rod when fishing. There are many kinds of fishing line, mainly nylon line, carbon plastic line, steel wire line, braided line, synthetic line, ceramic line and so on.
[0003] Among them, braided line refers to the mesh line woven by multiple lines, such as using ultra-high molecular weight polyethylene fiber line as raw material, and braided line is made by braiding machine. Ultra-high molecular weight polyethylene fiber, also known as high-strength high-modulus polyethylene fiber, is the highest strength and modulus fiber in the world, and the fiber spun from 100-500 million polyethylene has good impact resistance and large specific energy absorption. The existing braided fishing line, such as 12 braided circular braiding equipment, adopts the braiding equipment and braiding method, and the braided fishing line formed after braiding has a circular structure. The hollow structure in the middle of the circular braided structure leads to the fact that the braided fishing line is not compact enough. INVENTION CONTENTS
[0004] The utility model provides a square fishing line braiding machine, creatively adopts special square braiding mode, and the braided structure formed after braiding is square, breaks the inherent thought that the fishing line braiding structure is circular, reduces the gap in the middle of the braided fishing line, makes the braided fishing line more compact, and increases the wear resistance and tensile strength of the fishing line.
[0005] Therefore, the technical scheme of the utility model is a square fishing line braiding machine, which is provided with a feeding platform and a supporting frame, a recovery mechanism is installed on the supporting frame, a plurality of feeding turntables are arranged on the feeding platform, a plurality of slide seat clamping grooves are uniformly arranged on the outer ring side of the feeding turntable, a spindle is installed on the slide seat clamping groove, a multi-ring braiding track groove is arranged below the feeding turntable, the multi-ring braiding track groove comprises a plurality of circular ring grooves, the plurality of circular ring grooves of the multi-ring braiding track groove are sequentially tangent connected, and the adjacent two circular ring grooves are communicated at the tangent point. The spindle installed on the feeding turntable slides along the multi-ring braiding track groove in sequence.
[0006] Further, the number of feeding turntables is 4, the number of circular ring grooves is 4, and the number of slide seat clamping grooves is 6. Three spindles are arranged at intervals on each feeding turntable.
[0007] Further, the feeding platform comprises a feeding upper plate and a feeding lower plate, and the upper surface of the feeding upper plate is provided with a multi-ring braiding track groove.
[0008] Further, a plurality of driving gears are installed on the discharging upper plate through the driving shaft, and a discharging turntable is fixed above the driving gears.
[0009] Further, the plurality of driving gears are sequentially meshed and transmission connected, and one of the driving gears is transmission connected with the discharging motor through a transition gear.
[0010] Further, the spindle includes a spindle sliding seat and a spindle fixing seat, and two spindle sliding sheets are symmetrically arranged below the spindle sliding seat.
[0011] Further, a spindle turntable and a spindle mandrel are arranged above the spindle fixing seat, a spindle connecting rod is arranged on one side of the spindle mandrel, a spindle upper cover is connected to the upper end of the spindle connecting rod, and the lower end of the spindle connecting rod is fixedly connected with the spindle fixing seat.
[0012] Further, the support frame includes a first support plate and a second support plate, and the first support plate and the second support plate are fixedly connected through a spacing bearing sleeve, and spacing bearings are arranged in the interiors of the two ends of the spacing bearing sleeve.
[0013] Further, the recovery mechanism includes a recovery rotating shaft, the middle part of the recovery rotating shaft is rotationally connected with the support frame, a recovery transmission wheel is arranged at the rear end of the recovery rotating shaft, and a recovery wheel is arranged at the front end of the recovery rotating shaft.
[0014] Further, a take-up motor is arranged on the discharging platform or the support frame, and the take-up motor is transmission connected with the recovery transmission wheel.
[0015] The beneficial effects of the utility model are that the discharging platform is provided with a discharging turntable, a plurality of spindles are installed on the discharging turntable, the lower end of the spindle is provided with a spindle sliding sheet, the spindle sliding sheet is installed in the multi-ring woven track groove of the discharging upper plate, when the discharging motor drives the discharging turntable to rotate through the driving gear, the discharging turntable drives the spindle to slide along the multi-ring woven track groove through the spindle sliding sheet, when the spindle sliding sheet slides to the cutting point of the two circular ring grooves of the multi-ring woven track groove, since the spindle sliding sheet preferably slides along the tangent direction, the spindle has one circular ring groove transferred into another circular sliding groove, thereby driving a group of spindles to move clockwise on the multi-ring woven track groove and driving another group of spindles to move counterclockwise on the multi-ring woven track groove, the fish line raw material is interwoven and woven to form a square woven fish line, the gap in the woven fish line is reduced, the woven fish line is more compact, and the wear resistance and tensile strength of the fish line are increased. BRIEF DESCRIPTION OF DRAWINGS
[0016] Figure 1 It is the overall structure schematic view of the utility model;
[0017] Figure 2 It is the overall structure schematic view of the utility model from another angle;
[0018] Figure 3 It is Figure 1left view of the
[0019] Figure 4 is Figure 1 rear view of the
[0020] Figure 5 is a structural schematic view of the discharging platform;
[0021] Figure 6 is a structural schematic view of the combined driving gear and discharging turntable of the discharging platform;
[0022] Figure 7 is a structural schematic view of the combined driving gear and discharging turntable of the discharging platform;
[0023] Figure 8 is a structural schematic view of the discharging upper plate;
[0024] Figure 9 is a structural schematic view of the first take-up mechanism;
[0025] Figure 10 is a structural schematic view of the second take-up mechanism;
[0026] Figure 11 is a structural schematic view of the spacer bearing sleeve;
[0027] Figure 12 is a schematic view of the average line guide structure;
[0028] Figure 13 is a structural schematic view of the spindle;
[0029] Figure 14 is a sectional view of the spindle;
[0030] Figure 15 is a schematic view of the braided line.
[0031] Explanation of symbols in the drawings:
[0032] 1. feeding platform; 11. feeding upper plate; 111. multi-ring woven track slot; 1101 first circular ring slot; 1102 second circular ring slot; 1103. third circular ring slot; 1104. fourth circular ring slot; 112. rotating disc through hole; 12. feeding lower plate; 13. feeding side plate; 14. driving gear; 15. driving rotating shaft; 16. feeding rotating disc; 161. sliding seat clamping groove; 17. transition gear; 18. feeding motor; 19. spindle; 191. spindle sliding seat; 1911. upper circular plate; 1912. lower circular plate; 1913. clamping shaft; 192. spindle fixing seat; 193. spindle sliding sheet; 194. spindle rotating disc; 195. spindle mandrel; 196. spindle connecting rod; 1961. upper guide eye; 1962. middle guide eye; 1963. pull rod slot; 1964. limiting rod; 197. spindle upper cover; 198. sinker; 199. sinker pull rod; 2. support frame; 21. first support plate; 22. second support plate; 23. spacing bearing sleeve; 231. spacing bearing; 24. transmission cone pulley; 3. take-up mechanism; 31. first take-up mechanism; 311. transverse connecting rod; 312. longitudinal connecting rod; 313. connecting block; 314. first take-up plate; 3141. take-up plate sliding groove; 315. take-up guide eye plate; 3151. guide eye plate sliding groove; 3152. take-up guide eye; 316. first take-up wheel; 317. take-up wheel frame; 32. second take-up mechanism; 321. second take-up frame; 322. second take-up plate; 323. second take-up wheel; 4. tensioning mechanism; 41. tensioning rotating shaft; 42. tensioning transmission wheel; 43. multi-groove tensioning wheel; 5. equalizing mechanism; 51. equalizing rotating shaft; 52. equalizing transmission wheel; 53. equalizing guide rod; 54. equalizing guide block; 55. equalizing adjusting plate; 551. adjusting plate sliding groove; 552. equalizing guide eye; 6. recovery mechanism; 61. recovery rotating shaft; 62. recovery transmission wheel; 63. recovery wheel; 7. take-up motor. DETAILED DESCRIPTION
[0033] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative work fall within the scope of the present application.
[0034] It is well known that the cross-section structure of the rope is a circular structure, and the cross-section structure of the braided fishing line for fishing is also a circular structure. The conventional braided fishing line is braided by using a 12-braided circular braiding device, however, by using the existing braiding device and braiding method, the circular braided fishing line formed after braiding has a hollow structure in the middle, which will cause the braided fishing line to be not compact enough, affecting the wear resistance and tensile strength of the braided fishing line; in addition, when the circular braided fishing line is under stress, due to the hollow structure, the fishing line will be pressed flat, and the shape and use state of the braided fishing line will change. In order to solve the technical problem that the braided fishing line is not compact enough due to the hollow structure, and to improve the wear resistance and tensile strength of the braided fishing line, the present application creatively provides a square fishing line braiding machine and a braiding method thereof, which breaks the inherent idea that the fishing line braiding structure is circular, and by using the braiding device and braiding method of the present application, a square braided fishing line is formed after braiding, the gap in the middle of the braided fishing line is reduced, the braided fishing line is more compact, and the wear resistance and tensile strength of the fishing line are increased.
[0035] As shown in Figures 1-14 The present application provides a square fishing line braiding machine, which is provided with a feeding platform 1 and a supporting frame 2, the supporting frame 2 is provided with a take-up mechanism 3, a tensioning mechanism 4, an equalizing mechanism 5 and a recycling mechanism 6, the feeding platform 1 is provided with a feeding turntable 16, a plurality of spindles 19 are installed on the feeding turntable 16, the plurality of spindles 19 move along a multi-ring braiding track groove 111 in sequence, and the ultra-high molecular weight polyethylene fiber line on the spindles 19 forms a square braided fishing line after braiding.
[0036] Specifically, the feeding platform 1 comprises a feeding upper plate 11, a feeding lower plate 12 and a feeding side plate 13, the feeding upper plate 11, the feeding lower plate 12 and the feeding side plate 13 form a closed gear box, a plurality of drive gears 14 are arranged in the gear box, the middle part of each drive gear 14 is provided with a drive shaft 15, the drive shaft 15 is fixedly connected with the feeding lower plate 12, the drive gear 14 is rotatably connected with the drive shaft 15 through a bearing, and the plurality of drive gears 14 are sequentially meshed and transmissionally connected, one of the drive gears 14 is transmissionally connected with a feeding motor 18 through a transition gear 17, that is, after the feeding motor 18 adjusts the gear ratio through the transition gear 17, the plurality of drive gears 14 are driven to rotate together.
[0037] A feeding turntable 16 is fixedly arranged above the drive gear 14, the feeding turntable 16 is synchronously rotated when the drive gear 14 rotates, and a plurality of slide seat clamping grooves 161 are uniformly arranged on the outer ring side of the feeding turntable 16. Preferably, the number of the drive gears 14 is 4, the number of the feeding turntables 16 is 4, and the number of the slide seat clamping grooves 161 is 6. Three spindles 19 are arranged at intervals on each feeding turntable 16, and the braiding machine of the present application is preferably a 12-braiding machine.
[0038] The upper surface of the feeding plate 11 is provided with a multi-ring woven track groove 111, which includes four circular ring grooves of equal size, namely a first circular ring groove 1101, a second circular ring groove 1102, a third circular ring groove 1103 and a fourth circular ring groove 1104. A rotating disc through hole 112 is arranged in the middle of each circular ring groove, which is used to install the feeding rotating disc 16.
[0039] The four circular ring grooves of the multi-ring woven track groove 111 are sequentially tangent connected, and the adjacent two circular ring grooves are communicated at the tangent point, that is, the first circular ring groove 1101 is tangent and communicated with the second circular ring groove 1102 and the fourth circular ring groove 1104 respectively, the second circular ring groove 1102 is tangent and communicated with the first circular ring groove 1101 and the third circular ring groove 1103 respectively, the third circular ring groove 1103 is tangent and communicated with the second circular ring groove 1102 and the fourth circular ring groove 1104 respectively, and the fourth circular ring groove 1104 is tangent and communicated with the first circular ring groove 1101 and the third circular ring groove 1103 respectively. The center line of the four circular ring grooves forms a square, and the side length of the square is equal to the diameter of the circular ring groove.
[0040] A spindle 19 is installed on the sliding seat clamping groove 161 of the feeding rotating disc 16. The spindle 19 includes a spindle sliding seat 191 and a spindle fixing seat 192. The spindle sliding seat 191 includes an upper circular plate 1911 and a lower circular plate 1912, which are fixedly connected by a clamping shaft 1913. When the spindle 19 is installed on the feeding rotating disc 16, the clamping shaft 1913 is clamped with the sliding seat clamping groove 161, the upper circular plate 1911 is located above the feeding rotating disc 16, and the lower circular plate 1912 is located below the feeding rotating disc 16, both of which play a limiting and fixing role.
[0041] Two spindle sliding pieces 193 are symmetrically arranged below the spindle sliding seat 191. When the spindle 19 is installed on the feeding rotating disc 16, the two spindle sliding pieces 193 are located in the multi-ring woven track groove 111 of the feeding plate 11. When the feeding rotating disc 16 rotates, the spindle sliding piece 193 of the spindle 19 slides along the multi-ring woven track groove 111. When the spindle sliding piece 193 slides to the tangent point of the two circular ring grooves, since the spindle sliding piece 193 preferably slides in the tangential direction, the spindle 19 has a circular ring groove that turns into another circular sliding groove.
[0042] A spindle rotating disc 194 and a spindle mandrel 195 are arranged above the spindle fixing seat 192. The spindle rotating disc 194 is rotatably connected with the spindle fixing seat 192 through a bearing, and the spindle mandrel 195 is fixedly connected with the spindle fixing seat 192. A spindle connecting rod 196 is arranged on one side of the spindle mandrel 195. The upper end of the spindle connecting rod 196 is connected with a spindle upper cover 197, and the lower end of the spindle connecting rod 196 is fixedly connected with the spindle fixing seat 192.
[0043] The upper end of the spindle connecting rod 196 is provided with an upper guide eye 1961, the middle part of the spindle connecting rod 196 is provided with a middle guide eye 1962, the lower end of the spindle connecting rod 196 is provided with a pull rod groove 1963, the bottom of the pull rod groove 1963 is provided with a limiting rod 1964, a line drop pull rod 199 is arranged between the pull rod groove 1963 and the limiting rod 1964, the upper end of the line drop pull rod 199 is provided with a guide eye, the lower end of the line drop pull rod 199 is connected with a line drop 198, the line drop pull rod 199 and the line drop 198 are rotationally connected, and the bottom of the line drop 198 is rotationally connected with the spindle fixing seat 192. The ultra-high molecular weight polyethylene fiber line first passes through the middle guide eye 1962, then passes through the guide eye of the line drop pull rod 199 downward, and then is led out after passing through the upper guide eye 1961 upward.
[0044] The support frame 2 is a support structure, and the support frame 2 includes a first support plate 21 and a second support plate 22. The double support plate design increases the stability of the support. The tensioning mechanism 4, the uniform line mechanism 5, and the recovery mechanism 6 are respectively connected to the support frame 2 through a spacer bearing sleeve 23. The spacer bearing sleeve 23 is arranged between the first support plate 21 and the second support plate 22 and is fixedly connected to the first support plate 21 and the second support plate 22.
[0045] The take-up mechanism 3 includes a first take-up mechanism 31 and a second take-up mechanism 32. The first take-up mechanism 31 and the second take-up mechanism 32 are used for taking up and guiding the braided fishing line. The first take-up mechanism 31 and the second take-up mechanism 32 each include a take-up frame, a take-up plate, and a take-up wheel.
[0046] The take-up frame of the first take-up mechanism 31 includes a transverse connecting rod 311, a longitudinal connecting rod 312, and a connecting block 313. The transverse connecting rod 311 and the longitudinal connecting rod 312 are connected through the connecting block 313. The take-up plate of the first take-up mechanism 31 includes a first take-up plate 314 and a take-up guide eye plate 315. The first take-up plate 314 is connected to the longitudinal connecting rod 312 through a take-up plate sliding groove 3141. The rear end of the take-up guide eye plate 315 is provided with a guide eye plate sliding groove 3151. The front end of the take-up guide eye plate 315 is provided with a take-up guide eye 3152. The take-up guide eye plate 315 is fixedly connected to the first take-up plate 314 through a bolt in the guide eye plate sliding groove 3151. The take-up wheel of the first take-up mechanism 31 is a first take-up wheel 316 and a take-up wheel frame 317. One end of the take-up wheel frame 317 is rotationally connected to the first take-up wheel 316 through a bearing. The other end of the take-up wheel frame 317 is fixedly connected to the first take-up plate 314. Because the first take-up plate 314 is provided with the take-up plate sliding groove 3141 and the take-up guide eye plate 315 is provided with the guide eye plate sliding groove 3151, the relative positions of the take-up guide eye 3152 and the first take-up wheel 316 can be adjusted through the guide eye plate sliding groove 3151. The position of the first take-up wheel 316 relative to the lower spindle 19 can be adjusted through the take-up plate sliding groove 3141, thereby facilitating the installation and position adjustment of the first take-up mechanism 31.
[0047] The second take-up mechanism comprises a second take-up frame 321, a second take-up plate 322 and a second take-up wheel 323, the second take-up wheel 323 is rotatably connected with the second take-up plate 322 through a bearing and a rotating shaft, and the second take-up frame 321 fixedly connects the second take-up plate 322 with the support frame 2.
[0048] The tensioning mechanism 4 is provided with a tensioning rotating shaft 41, the middle part of the tensioning rotating shaft 41 is rotatably connected with the support frame 2 through a spacer bearing 231 in the spacer bearing sleeve 23, the rear end of the tensioning rotating shaft 41 is provided with a tensioning transmission wheel 42, and the front end of the tensioning rotating shaft 41 is provided with a multi-groove tensioning wheel 43, and a plurality of annular grooves are arranged on the multi-groove tensioning wheel 43. The number of the tensioning mechanism 4 is multiple, preferably 2, and the braided fishing line is repeatedly wound between the two or multiple multi-groove tensioning wheels 43, so as to increase the friction between the braided fishing line and the multi-groove tensioning wheel 43.
[0049] The average line mechanism 5 comprises an average line rotating shaft 51 and an average line guide rod 53, the middle part of the average line rotating shaft 51 is rotatably connected with the support frame 2 through a spacer bearing 231 in the spacer bearing sleeve 23, the rear end of the average line rotating shaft 51 is provided with an average line transmission wheel 52, the front end of the average line rotating shaft 51 is provided with a reciprocating thread groove, the average line guide rod 53 is fixedly connected with the second support plate 22 of the support frame 2, the front ends of the average line rotating shaft 51 and the average line guide rod 53 are provided with an average line guide block 54, the average line guide block 54 is connected with the average line rotating shaft 51 through the reciprocating thread groove, the average line guide block 54 is slidably connected with the average line guide rod 53, the average line guide block 54 is provided with an average line adjusting plate 55, one end of the average line adjusting plate 55 is provided with an adjusting plate sliding groove 551, the other end of the average line adjusting plate 55 is provided with an average line guide eye 552, the position of the average line adjusting plate 55 on the average line guide block 54 can be adjusted through the adjusting plate sliding groove 551, when the average line transmission wheel 52 drives the average line rotating shaft 51 to rotate, the average line guide block 54 reciprocates on the average line rotating shaft 51 and the average line guide rod 53, the braided fishing line in the average line guide eye 552 reciprocates, and then uniformly winds on the recovery wheel.
[0050] The recovery mechanism 6 comprises a recovery rotating shaft 61, the middle part of the recovery rotating shaft 61 is rotatably connected with the support frame 2 through a spacer bearing 231 in the spacer bearing sleeve 23, the rear end of the recovery rotating shaft 61 is provided with a recovery transmission wheel 62, and the front end of the recovery rotating shaft 61 is provided with a recovery wheel 63.
[0051] In order to provide power for the tensioning mechanism 4, the average line mechanism 5 and the recovery mechanism 6, a take-up motor 7 is arranged on the discharging platform 1 or the support frame 2, and the take-up motor 7 is in transmission connection with the tensioning transmission wheel 42, the average line transmission wheel 52 and the recovery transmission wheel 62 through the transmission tower wheel 24.
[0052] The utility model discloses a square fish line braider, which is characterized in that a feeding rotary table 16 is arranged on a feeding platform 1, a plurality of spindles 19 are installed on the feeding rotary table 16, the lower end of the spindle 19 is provided with a spindle sliding sheet 193, the spindle sliding sheet 193 is installed in a multi-ring braiding track groove of the feeding upper plate 11, when the feeding rotary table 16 is driven to rotate by the feeding motor 18 through the driving gear 14, the feeding rotary table 16 drives the spindle 19 to slide along the multi-ring braiding track groove 111 through the spindle sliding sheet 193, when the spindle sliding sheet 193 slides to the tangent point of the two circular groove of the multi-ring braiding track groove 111, since the spindle sliding sheet 193 preferably slides along the tangent direction, the spindle 19 is transferred into another circular sliding groove, so as to drive a group of spindles 19 to move clockwise on the multi-ring braiding track groove 111, and drive another group of spindles 19 to move counterclockwise on the multi-ring braiding track groove 111, the fish line raw material is braided to form a square braided fish line, the gap in the braided fish line is reduced, the braided fish line is more compact, and the wear resistance and tensile strength of the fish line are improved.
[0053] A braiding method of square fish line, which adopts the square fish line braider, the number of the feeding rotary table 16 is four, the number of the sliding seat clamping groove 161 is six, and three spindles 19 are installed on each feeding rotary table 16, and the method comprises the following steps.
[0054] 1. Installing fish line raw material
[0055] The fish line raw material is placed on the spindle 19, the fish line raw material is made of ultrahigh molecular weight polyethylene fiber or expanded polytetrafluoroethylene fiber, and the fish line raw material is drawn out from the spindle 19, and the fish line raw material first passes through the middle guide eye 1962, then passes through the guide eye of the sinker pull rod 199 downward, and then is drawn out after passing through the upper guide eye 1961 upward.
[0056] 2. Drawing out fish line
[0057] The drawing path of the fish line is that the fish line first passes through the take-up guide eye 3152, bypasses the first take-up wheel 316, then repeatedly winds between two or more multi-groove tensioning wheels 43 to increase the friction between the braided fish line and the multi-groove tensioning wheel 43, then bypasses the second take-up wheel 323, and is wound on the recovery wheel 63 after passing through the uniform line guide eye 552.
[0058] 3. Braiding square fish line
[0059] Since the 4 circular ring grooves of the multi-ring braided track groove 111 are connected in turn and tangentially, two adjacent circular ring grooves are communicated at the tangent point, that is, the first circular ring groove 1101 is tangential and communicated with the second circular ring groove 1102 and the fourth circular ring groove 1104 respectively, the second circular ring groove 1102 is tangential and communicated with the first circular ring groove 1101 and the third circular ring groove 1103 respectively, the third circular ring groove 1103 is tangential and communicated with the second circular ring groove 1102 and the fourth circular ring groove 1104 respectively, and the fourth circular ring groove 1104 is tangential and communicated with the first circular ring groove 1101 and the third circular ring groove 1103 respectively, the center line of the 4 circular ring grooves forms a square, and the side length of the square is equal to the diameter of the circular ring groove.
[0060] As shown in Figure 15 One of the braiding methods of the square fishing line is that the spindle 19 installed on the feeding turntable 16 above the first circular ring groove 1101 slides clockwise along the first circular ring groove 1101, when the spindle 19 moves to the tangent point of the first circular ring groove 1101 and the second circular ring groove 1102, the spindle 19 switches to the second circular ring groove 1102 to continue sliding, when the spindle 19 moves to the tangent point of the second circular ring groove 1102 and the third circular ring groove 1103, the spindle 19 switches to the third circular ring groove 1103 to continue sliding, when the spindle 19 moves to the tangent point of the third circular ring groove 1103 and the fourth circular ring groove 1104, the spindle 19 switches to the fourth circular ring groove 1104 to continue sliding, when the spindle 19 moves to the tangent point of the fourth circular ring groove 1104 and the first circular ring groove 1101, the spindle 19 returns to the first circular ring groove 1102 to slide again.
[0061] That is, the spindles 19 installed on the feeding turntable 16 above the first circular ring groove 1101 and the third circular ring groove 1101 form a group, and the group of spindles 19 moves clockwise along the above path.
[0062] At this time, the spools 19 installed on the feeding turntable 16 above the second circular ring groove 1102 and the fourth circular ring groove 1104 constitute another group, and the moving direction of the group is counterclockwise sliding, and the moving path is that the spool 19 installed on the feeding turntable 16 above the second circular ring groove 1102 slides counterclockwise along the second circular ring groove 1102, when the spool 19 moves to the tangent point of the first circular ring groove 1101 and the second circular ring groove 1102, the spool 19 switches to the first circular ring groove 1101 to continue to slide, when the spool 19 moves to the tangent point of the first circular ring groove 1101 and the fourth circular ring groove 1104, the spool 19 switches to the fourth circular ring groove 1104 to continue to slide, when the spool 19 moves to the tangent point of the third circular ring groove 1103 and the fourth circular ring groove 1104, the spool 19 switches to the third circular ring groove 1103 to continue to slide, when the spool 19 moves to the tangent point of the third circular ring groove 1103 and the second circular ring groove 1102, the spool 19 returns to the second circular ring groove 1102 to slide.
[0063] Similarly, the moving mode of the above two groups of spools 19 can also be reverse sliding, specifically, the spools 19 installed on the feeding turntable 16 above the first circular ring groove 1101 and the third circular ring groove 1101 constitute a group, and the spools 19 of the group slide counterclockwise along the multi-ring weaving track groove 111; the spools 19 installed on the feeding turntable 16 above the second circular ring groove 1102 and the fourth circular ring groove 1104 constitute another group, and the spools 19 of the group slide clockwise along the multi-ring weaving track groove 111.
[0064] As can be seen from the above, the weaving method of the square fishing line is that the four circular ring grooves of the multi-ring weaving track groove 111 on the feeding platform 1 are connected in sequence and are tangent to each other, and the two adjacent circular ring grooves are connected at the tangent point, and the plurality of spools 19 installed on the four feeding turntables 16 on the feeding platform 1 are divided into two groups, the plurality of spools 19 installed on the two feeding turntables 16 on one diagonal line are the first group, and the plurality of spools 19 installed on the two feeding turntables 16 on the other diagonal line are the second group; if the first group of spools 19 slides clockwise along the multi-ring weaving track groove 111, then the second group of spools 19 slides counterclockwise along the multi-ring weaving track groove 111, and if the first group of spools 19 slides counterclockwise along the multi-ring weaving track groove 111, then the second group of spools 19 slides clockwise along the multi-ring weaving track groove 111.
[0065] The above is only a specific embodiment of the present application, and cannot limit the scope of the present application, so the replacement of equivalent components or equivalent changes and modifications made within the scope of the present application should still fall within the scope of the present application.
Claims
1. A square fishing line braiding machine, characterized in that, The device includes a feeding platform and a support frame. A recycling mechanism is installed on the support frame. The feeding platform has multiple feeding turntables. Multiple sliding slots are evenly distributed on the outer ring side of the feeding turntables. Spindles are installed on the sliding slots. A multi-ring woven track groove is provided below the feeding turntable. The multi-ring woven track groove includes multiple circular ring grooves. The multiple circular ring grooves of the multi-ring woven track groove are connected tangentially in sequence. Two adjacent circular ring grooves are connected at the tangent point. The spindles installed on the feeding turntable slide sequentially along the multi-ring woven track groove.
2. A square fishing line braiding machine according to claim 1, characterized in that, The number of feeding turntables is 4, the number of circular annular grooves is 4, the number of sliding block slots is 6, and 3 spindles are placed at intervals on each feeding turntable.
3. A square fishing line braiding machine according to claim 1, characterized in that, The feeding platform includes a feeding upper plate and a feeding lower plate, and the upper surface of the feeding upper plate is provided with a multi-ring woven track groove.
4. A square fishing line braiding machine according to claim 3, characterized in that, Multiple drive gears are mounted on the lower feeding plate via a drive shaft, and a feeding turntable is fixed above the drive gears.
5. A square fishing line braiding machine according to claim 4, characterized in that, Multiple drive gears are sequentially meshed and connected for transmission, and one of the drive gears is connected to the feeding motor via a transition gear.
6. A square fishing line braiding machine according to claim 1, characterized in that, The spindle includes a spindle slide and a spindle fixing seat, and two spindle slides are symmetrically arranged below the spindle slide.
7. A square fishing line braiding machine according to claim 6, characterized in that, The spindle fixing seat is provided with a spindle turntable and a spindle mandrel above it. A spindle connecting rod is provided on one side of the spindle mandrel. The upper end of the spindle connecting rod is connected to the spindle cover, and the lower end of the spindle connecting rod is fixedly connected to the spindle fixing seat.
8. A square fishing line braiding machine according to claim 1, characterized in that, The support frame includes a first support plate and a second support plate, which are fixedly connected by a spacer bearing sleeve. The spacer bearing sleeve has spacer bearings inside both ends.
9. A square fishing line braiding machine according to claim 1, characterized in that, The recycling mechanism includes a recycling shaft, the middle of which is rotatably connected to a support frame. The rear end of the recycling shaft is provided with a recycling drive wheel, and the front end of the recycling shaft is provided with a recycling wheel.
10. A square fishing line braiding machine according to claim 9, characterized in that, The feeding platform or support frame is equipped with a take-up motor, which is connected to the recycling drive wheel.
Citation Information
Cited By
Square fishing line braiding machine and braiding method thereof
WO2026138794A1