A kind of embossed ribbon weaving equipment and weaving process

By setting up a floating flower mechanism on the webbing machine and controlling the floating yarn position using horizontal and lifting transmission components, the problem that narrow webbing cannot weave flat patterns is solved, and the weaving of flat floating flower patterns is realized, which is suitable for the decoration of high-end garment accessories and trademark LOGO display.

CN119736748BActive Publication Date: 2025-08-15泉州市和景荣纺织品有限公司
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Patent Information

Application Number
CN202510239094.6
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-03-03
Publication Date
2025-08-15
Estimated Expiration
2045-03-03

AI Technical Summary

Technical Problem

Existing flat webbing machines cannot weave flat pattern patterns on narrow webbing. Adding jacquard structure will make the woven structure complex and the pattern is three-dimensional.

Method used

By setting up a floating flower mechanism on the webbing machine, the position of the floating rod is controlled by using the horizontal transmission assembly and the lifting transmission assembly, so that the floating yarn forms a planar floating flower pattern between the warp yarns, and the braiding of the planar floating flower pattern is achieved by combining the warp yarn lifting assembly and the braiding assembly.

Benefits of technology

It realizes a flat floating flower pattern on a narrow webbing, with a flat pattern without three-dimensional abrupt feeling, suitable for displaying decorative graphics or trademark LOGO.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention discloses a floating flower ribbon weaving device and a weaving process, comprising a frame, a yarn frame, a control box, a traction mechanism, a weaving mechanism and a warp buckle, wherein a first drum, a second drum and a third drum are rotatably mounted on the yarn frame, a first warp yarn and a second warp yarn are respectively wound on the first drum and the second drum, and a first weft yarn is wound on the third drum, the traction mechanism and the weaving mechanism are both mounted on the frame, and the weaving mechanism comprises a warp yarn lifting assembly, a weaving assembly and a buckle plate. When weaving the ribbon with the first warp yarn, the second warp yarn and the first weft yarn, the present invention utilizes a horizontal transmission assembly and a lifting transmission assembly to drive one end of a floating rod to move horizontally left and right and vertically up and down, so that the floating yarn can be buried between the first warp yarn and the second warp yarn or exposed on the outside of the first warp yarn or the second warp yarn, and the floating yarn exposed on the surface of the warp yarn constitutes a floating flower pattern, thereby weaving a ribbon with a planar pattern.
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Description

Technical Field

[0001] The invention discloses embossed ribbon weaving equipment and a weaving process, belonging to the technical field of ribbon production. Background Art

[0002] A flat loom is a machine used to produce high-end garment accessories such as bra straps and high-end hemming tape. For example, a typical narrow-width six-stripe loom typically features six weaving mechanisms arranged side by side, meaning it can simultaneously weave six strips of tape. These six weaving mechanisms share a single set of warp, weft, and overlock conveyors, as well as a transmission and take-up mechanism. Existing flat looms are unable to create decorative patterns. To achieve this, a jacquard pattern must be added. However, due to the narrow width of the tape, this greatly increases the complexity of the loom's weaving structure, resulting in a three-dimensional pattern that cannot be achieved with a flat pattern. Summary of the Invention

[0003] The purpose of the present invention is to solve the problems in the prior art and to provide a weaving device and a weaving process for an embossed ribbon.

[0004] The present invention achieves the above-mentioned purpose through the following technical scheme: a floating flower ribbon weaving equipment, including a frame, a yarn frame, a control box, a traction mechanism, a weaving mechanism and a warp buckle, characterized in that a first drum, a second drum and a third drum are rotatably installed on the yarn frame, a first warp yarn and a second warp yarn are wound around the first drum and the second drum respectively, a first weft yarn is wound around the third drum, and the traction mechanism and the weaving mechanism are both installed on the frame, and the weaving mechanism includes a warp yarn lifting assembly, a weaving assembly and a buckle plate, the first warp yarn and the second warp yarn pass through the warp buckle, the warp yarn lifting assembly and the buckle plate in sequence, and the warp yarn lifting assembly drives all the first warp yarn and the second warp yarn to move up and down alternately when working, and forms a V-shaped hollow between the first warp yarn and the second warp yarn, the weaving assembly drives the first weft yarn to pass through the V-shaped hollow and then participates in weaving with the first warp yarn and the second warp yarn to form a ribbon, and a floating flower mechanism is also provided on the frame.

[0005] Preferably, the weaving assembly includes a mounting seat, a weft rod, a guide seat, a movable block and a crochet hook, the frame is provided with a first fixed shaft, a second fixed shaft, a third fixed shaft and a transverse seat, the buckle is installed on the first fixed shaft, the mounting seat is installed on the second fixed shaft, and one end of the mounting seat is installed in contact with the transverse seat, the buckle has a first slot for a plurality of first warp yarns and second warp yarns to pass through, the mounting seat is provided with a rotating shaft, a swing arm is rotatably installed on the rotating shaft, the weft rod is a curved structure, and one end of the weft rod is fixed on the swing arm, the swing arm and the buckle are rotatably connected with a first slot. A linkage rod, the guide seat is fixed on the mounting seat, and the guide seat is located between the swing arm and the buckle, the guide seat has a through slot for the webbing to pass through, the movable block is rotatably set on the second fixed shaft, and a second linkage rod is rotatably set between the movable block and the buckle, the crochet hook is fixed on the movable block, and the crochet hook and the weft rod are respectively located on both sides of the guide seat, the frame is provided with a power assembly for driving the first fixed shaft to rotate back and forth at a preset angle, the third fixed shaft is provided with a yarn guide component, the first weft yarn passes through the yarn guide component and the weft rod and is woven with the first warp yarn and the second warp yarn to form a webbing.

[0006] Preferably, the floating flower mechanism includes a fourth reel, a cross bar, a floating rod, a guide block, a horizontal transmission assembly and a lifting transmission assembly. There are two guide blocks, and a horizontal guide rod and a vertical guide rod are slidingly arranged on the guide blocks. The two ends of the cross bar are fixedly connected to the horizontal guide rod, and one end of the vertical guide rod is fixed on the frame. The horizontal transmission assembly is connected to one group of horizontal guide rods, and the lifting transmission assembly is connected to two guide blocks. The floating rod is fixed on the cross bar, and the floating rod has an inclined angle with the horizontal plane, and the thickness of the floating rod is less than the width of the first sheet groove. The fourth reel is wound with floating yarn, and the floating yarn passes through the floating rod and participates in weaving with the first warp yarn and the second warp yarn.

[0007] Preferably, the warp yarn lifting assembly includes a first yarn lifting piece, a second yarn lifting piece, a pulling line and a driving assembly, the driving assembly is arranged at the upper end of the frame, and the first yarn lifting piece and the second yarn lifting piece are both provided with multiple, and both are provided with yarn passing holes and avoidance holes for the yarn to pass through, the pulling line has two groups, one end of the pulling line located above is connected to the driving assembly, and the other end is fixedly connected to the first yarn lifting piece or the second yarn lifting piece, one end of the pulling line located below is fixedly connected to the first yarn lifting piece or the second yarn lifting piece, and an elastic reset assembly is arranged between the other end and the frame, the first warp yarn passes through the yarn passing hole on the first yarn lifting piece and the avoidance hole on the second yarn lifting piece, and the second warp yarn passes through the avoidance hole on the first yarn lifting piece and the yarn passing hole on the second yarn lifting piece.

[0008] Preferably, the horizontal transmission assembly includes a first motor, a first rotating block, a first hinged rod and a connecting block, the first motor is fixed on the frame, the first rotating block is fixed on the output shaft of the first motor, the connecting block is fixedly connected to the horizontal guide rod, the two ends of the first hinged rod are respectively rotatably connected to the first rotating block and the connecting block, and the connection point between the first hinged rod and the first rotating block is not coaxial with the output shaft of the first motor.

[0009] Preferably, the lifting transmission assembly includes a second motor, a second rotating block, a second hinged rod and a limit bolt, the second motor is installed above the corresponding cross bar of the frame, the second rotating block is fixed on the output shaft of the second motor, the limit bolt is installed on the guide block, the two ends of the second hinged rod are respectively rotatably connected to the second rotating block and the limit bolt, and the connection point between the second hinged rod and the second rotating block is not coaxial with the output shaft of the second motor.

[0010] Preferably, a thread pressing mechanism is further provided between the warp buckle and the warp yarn lifting assembly, and the thread pressing mechanism includes a mounting frame, a yarn guide buckle and an adjustment assembly. Two yarn guide buckles are arranged side by side, and the yarn guide buckles have a second slot. The first warp yarn and the second warp yarn pass through the second slots on the two yarn guide buckles in sequence. The adjustment assembly is provided on the mounting frame and is used to adjust the upper and lower relative positions of the two yarn guide buckles.

[0011] A weaving process for an embossed ribbon comprises the following steps:

[0012] S1: The traction mechanism applies traction to the first warp yarn, the second warp yarn and the woven ribbon, and the warp yarn lifting assembly applies vertical lifting force to the first warp yarn and the second warp yarn, forming a V-shaped hollow between the two.

[0013] S2: When the power assembly drives the cleat to swing away from the floating rod, the horizontal transmission assembly and the lifting transmission assembly jointly drive the floating rod to move horizontally and vertically, so that the floating yarn is buried between the first warp yarn and the second warp yarn, or the floating yarn is exposed on the surface of the first warp yarn or the second warp yarn;

[0014] S3: The clasp drives the swing arm to rotate, and the weft rod drives the first weft yarn to pass through the V-shaped hollow between the first warp yarn and the second warp yarn, and then the first weft yarn is hooked by the crochet hook;

[0015] S4: When the power assembly drives the cleat to swing toward the floating rod, the weft rod is separated from between the first warp yarn and the second warp yarn, and the cleat presses the first weft yarn to join the weaving position of the first warp yarn and the second warp yarn and the floating yarn toward the webbing direction;

[0016] S5: Repeat steps S1-S4, and control the horizontal position of the floating rod according to the webbing embossing pattern to weave a webbing with the corresponding embossing pattern.

[0017] Preferably, there are at least two floating yarns in one webbing, and the floating yarns are different in color from the first warp yarns, the second warp yarns and the weft yarns.

[0018] Compared with the prior art, the present invention has the following beneficial effects:

[0019] By setting up a floating pattern mechanism, the position of the floating rod is controlled by the horizontal transmission assembly and the lifting transmission assembly. After the buckle moves in the direction away from the floating rod, the floating rod drives the floating yarn from one position within the width of the ribbon, first rising and then moving horizontally, and then descending to be buried between the first warp yarn and the second warp yarn at the next position. The floating yarn between the two positions is exposed to the outside of the first warp yarn or the second warp yarn. All exposed floating yarns constitute a floating pattern. The floating pattern is a plane graphic, which remains flat with the surface of the ribbon and has no three-dimensional abruptness. It can be used to display various decorative graphics or trademark logos. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] Figure 1 This is a schematic structural diagram of an embossed ribbon weaving device according to the present invention;

[0021] Figure 2 The structure of the braided assembly and the buckle piece in the present invention is shown in FIG. Figure 1 ;

[0022] Figure 3 The structure of the braided assembly and the buckle piece in the present invention is shown in FIG. Figure 2 ;

[0023] Figure 4 Schematic diagram of the structure of the braided assembly, buckle piece and floating rod in the present invention;

[0024] Figure 5 It is a plan view of the weft yarn rod, the buckle piece and the floating rod in the weaving state of the present invention;

[0025] Figure 6 Schematic diagram of the structure of the floating flower mechanism in the present invention;

[0026] Figure 7 This is an example diagram of one of the embossed ribbons of the present invention;

[0027] Figure 8 Schematic diagram of the structure of the first lifting piece, the second lifting piece and the lifting line in the present invention;

[0028] Reference numerals: 1, yarn rack; 2, third reel; 3, second reel; 4, first reel; 5, warp buckle; 6, mounting frame; 7, yarn guide buckle; 8, first yarn lifting plate; 9, second yarn lifting plate; 10, frame; 11, weaving assembly; 12, control box; 13, warp lifting assembly; 14, horizontal transmission assembly; 15, lifting transmission assembly; 16, fourth reel; 17, drive assembly; 18, pulling line; 19, horizontal seat; 20, mounting seat; 21, swing arm; 22, first linkage rod; 23, weft rod; 24, buckle; 25, crossbar; 26, first warp; 27, second warp 28. First weft yarn; 29. Floating yarn; 30. Floating rod; 31. Guide seat; 32. First fixed axis; 33. Webbing; 34. Hook; 35. Movable block; 36. Second linkage rod; 37. Yarn guide component; 38. Third fixed axis; 39. Rotating axis; 40. First slot; 41. First rotating block; 42. First motor; 43. First hinged rod; 44. Connecting block; 45. Horizontal guide rod; 46. Vertical guide rod; 47. Guide block; 48. Limit bolt; 49. Second rotating block; 50. Second motor; 51. Traction mechanism; 52. Second fixed axis; 53. Second hinged rod. DETAILED DESCRIPTION

[0029] 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.

[0030] like Figures 1-8As shown, a floating flower ribbon weaving device includes a frame 10, a yarn frame 1, a control box 12, a traction mechanism 51, a weaving mechanism and a warp buckle 5, characterized in that a first drum 4, a second drum 3 and a third drum 2 are rotatably mounted on the yarn frame 1, a first warp yarn 26 and a second warp yarn 27 are wound around the first drum 4 and the second drum 3 respectively, a first weft yarn 28 is wound around the third drum 2, the traction mechanism 51 and the weaving mechanism are both mounted on the frame 10, the weaving mechanism includes a warp yarn lifting assembly 13, a weaving assembly 11 and a buckle 24, the first warp yarn 26 and the second warp yarn 27 pass through the warp buckle 5, the warp yarn lifting assembly 13 and the buckle 24 in sequence, and the warp yarn lifting assembly 13 drives all the first warp yarns 26 and the second warp yarns 27 to move up and down alternately when working. The weaving assembly 11 drives the first weft yarn 28 to pass through the V-shaped hollow and then participates in weaving with the first warp yarn 26 and the second warp yarn 27 to form a webbing 33. The weaving assembly 11 includes a mounting seat 20, a weft yarn rod 23, a guide seat 31, a movable block 35 and a crochet hook 34. The frame 10 is provided with a first fixed shaft 32, a second fixed shaft 52, a third fixed shaft 38 and a transverse seat 19. The buckle 24 is installed on the first fixed shaft 32, the mounting seat 20 is installed on the second fixed shaft 52, and one end of the mounting seat 20 is installed in conflict with the transverse seat 19. The buckle 24 has a first slot 40 for multiple first warp yarns 26 and second warp yarns 27 to pass through. The mounting seat 20 is provided with a rotating shaft 39. The swing arm 21 is rotatably mounted on the rotating shaft 39. The weft rod 23 is a curved structure, and one end of the weft rod 23 is fixed to the swing arm 21. The first linkage rod 22 is rotatably connected between the swing arm 21 and the buckle 24. The guide seat 31 is fixed to the mounting seat 20, and the guide seat 31 is located between the swing arm 21 and the buckle 24. The guide seat 31 has a through slot for the webbing 33 to pass through. The movable block 35 is rotatably set on the second fixed shaft 52, and a second linkage rod 36 is rotatably set between the movable block 35 and the buckle 24. The hook 34 is fixed on the movable block 35, and the hook 34 and the weft rod 23 are respectively located on both sides of the guide seat 31. A power component for driving the first fixed shaft 32 to rotate back and forth at a preset angle is provided on the frame 10. A third fixed shaft 38 is provided There is a yarn guide component 37. After the first weft yarn 28 passes through the yarn guide component 37 and the weft yarn rod 23, it is woven with the first warp yarn 26 and the second warp yarn 27 to form a webbing 33. A floating flower mechanism is also provided on the frame 10. The floating flower mechanism includes a fourth reel 16, a cross bar 25, a floating rod 30, a guide block 47, a horizontal transmission assembly 14 and a lifting transmission assembly 15. There are two guide blocks 47, and a horizontal guide rod 45 and a vertical guide rod 46 are slidingly provided on the guide block 47. Both ends of the cross bar 25 are fixedly connected to the horizontal guide rod 45, and one end of the vertical guide rod 46 is fixed to the frame 10. The horizontal transmission assembly 14 is connected to one group of horizontal guide rods 45, and the lifting transmission assembly 15 is connected to the two guide blocks 47. The floating rod 30 is fixed on the cross bar 25.The floating rod 30 is inclined at an angle to the horizontal plane, and the thickness of the floating rod 30 is smaller than the width of the first slot 40. The fourth drum 16 is wound with a floating yarn 29, which passes through the floating rod 30 and is woven with the first warp yarn 26 and the second warp yarn 27.

[0031] The warp yarn lifting assembly 13 includes a first yarn lifting piece 8, a second yarn lifting piece 9, a pulling line 18 and a driving assembly 17. The driving assembly 17 is arranged at the upper end of the frame 10. The first yarn lifting piece 8 and the second yarn lifting piece 9 are both provided with multiple yarn lifting pieces, and both are provided with yarn threading holes and avoidance holes for yarn to pass through. The pulling line 18 has two groups, one end of the pulling line 18 located above is connected to the driving assembly 17, and the other end is fixedly connected to the first yarn lifting piece 8 or the second yarn lifting piece 9. One end of the pulling line 18 located below is connected to the first yarn lifting piece 8 or the second yarn lifting piece 9. The first warp yarn 26 passes through the threading hole on the first yarn lifting piece 8 and the avoidance hole on the second yarn lifting piece 9, and the second warp yarn 27 passes through the avoidance hole on the first yarn lifting piece 8 and the threading hole on the second yarn lifting piece 9. When the driving component 17 drives the first yarn lifting piece 8 to move upward, the second yarn lifting piece 9 moves downward under the action of the elastic reset component, so that the first yarn lifting piece 8 and the second yarn lifting piece 9 are in opposite directions of movement. During the upward movement, the first yarn lifting piece 8 moves downward under the action of the elastic reset component, so that the first warp yarn 26 and the second warp yarn 27 move up and down alternately under the drive of the first yarn lifting piece 8 and the second yarn lifting piece 9, and a V-shaped hollow is formed between the first warp yarn 26 and the second warp yarn 27, so that the swing arm 21 can drive the weft rod 23 to rotate into the V-shaped hollow, so that the first weft yarn 28 enters between the first warp yarn 26 and the second warp yarn 27, and then the hook 34 hooks the first weft yarn 28, and the buckle piece 24 moves toward the guide seat 31. When moving in the direction of the floating rod 30, the buckle plate 24 can buckle and press the first weft yarn 28, so that the first weft yarn 28 and the first warp yarn 26 and the second warp yarn 27 complete the weaving of one line of yarn. When the buckle plate 24 moves in the direction away from the floating rod 30, the crochet needle 34 will unhook the weft yarn in the previous weaving state, thereby preparing for the weaving of the next weft yarn. The elastic reset component can be a spring or an elastic belt, so that the elastic reset component can generate a downward pulling force on the pulling line 18, so that the first yarn lifting piece 8 and the second yarn lifting piece 9 can move downward smoothly.

[0032] The horizontal transmission assembly 14 includes a first motor 42, a first rotating block 41, a first hinge rod 43 and a connecting block 44. The first motor 42 is fixed on the frame 10, the first rotating block 41 is fixed on the output shaft of the first motor 42, the connecting block 44 is fixedly connected to the horizontal guide rod 45, the two ends of the first hinge rod 43 are rotatably connected to the first rotating block 41 and the connecting block 44 respectively, and the connection point of the first hinge rod 43 and the first rotating block 41 is not coaxial with the output shaft of the first motor 42. The lifting transmission assembly 15 includes a second motor 50, a second rotating block 49, a second hinge rod 53 and a limit bolt 48. The second motor 50 is installed above the corresponding cross bar 25 of the frame 10, the second rotating block 49 is fixed on the output shaft of the second motor 50, the limit bolt 48 is installed on the guide block 47, the two ends of the second hinge rod 53 are rotatably connected to the second rotating block 49 and the limit bolt 48 respectively, and the connection point of the second hinge rod 53 and the second rotating block 49 is not coaxial with the output shaft of the second motor 50. When 42 rotates forward and backward by a certain angle, the first rotating block 41 rotates synchronously with the first motor 42, and the connection between the first hinge rod 43 and the first rotating block 41 rotates, so that the first rotating block 41 can drive the first hinge rod 43, the connecting block 44 and the horizontal guide rod 45 to slide horizontally a short distance, so that the cross bar 25 and the floating rod 30 maintain synchronous horizontal sliding, so that the floating rod 30 can be translated within the width of the webbing 33, and when the second motor 50 drives the second rotating block 49 to rotate forward and backward by a certain angle, the connection between the second hinge rod 53, the second rotating block 49 and the limit bolt 48 all rotate, so that the second rotating block 49 drives the guide block 47 to slide along the vertical guide rod 46, so that the cross bar 25 and the floating rod 30 can be vertically lifted and lowered, so that the floating rod 30 can be buried between the first warp yarn 26 and the second warp yarn 27, and the floating yarn 29 between the two buried points of the floating rod 30 is exposed on the surface of the first warp yarn 26 or the second warp yarn 27, thereby forming a floating pattern.

[0033] A wire pressing mechanism is also provided between the warp buckle 5 and the warp yarn lifting assembly 13. The wire pressing mechanism includes a mounting frame 6, a yarn guide buckle 7 and an adjusting assembly. Two yarn guide buckles 7 are provided side by side, and the yarn guide buckle 7 has a second slot. The first warp yarn 26 and the second warp yarn 27 pass through the second slots on the two yarn guide buckles 7 in sequence. The adjusting assembly is provided on the mounting frame 6 and is used to adjust the upper and lower relative positions of the two yarn guide buckles 7. The positions of the two yarn guide buckles 7 can be adjusted by means of the adjusting assembly so that the two yarn guide buckles 7 move in a direction away from each other, and finally form a narrow range of activity space after the first warp yarn 26 and the second warp yarn 27 pass through the two second slots. In this way, when the first yarn lifting piece 8 and the second yarn lifting piece 9 drive the first warp yarn 26 and the second warp yarn 27 to rise and fall vertically, it will not affect the unwinding and conveying of the yarns of both.

[0034] like Figure 1-Figure 7As shown, a weaving process for an embossed ribbon comprises the following steps:

[0035] S1: The traction mechanism 51 applies traction to the first warp yarn 26, the second warp yarn 27 and the woven webbing 33, and the warp yarn lifting assembly 13 applies a vertical lifting force to the first warp yarn 26 and the second warp yarn 27, forming a V-shaped hollow between the two.

[0036] S2: When the power assembly drives the cleat 24 to swing away from the floating rod 30, the horizontal transmission assembly 14 and the lifting transmission assembly 15 jointly drive the floating rod 30 to move horizontally and vertically, so that the floating yarn 29 is buried between the first warp yarn 26 and the second warp yarn 27, or the floating yarn 29 is exposed on the surface of the first warp yarn 26 or the second warp yarn 27;

[0037] S3: The clasp 24 drives the swing arm 21 to rotate, and the weft yarn rod 23 drives the first weft yarn 28 to pass through the V-shaped hollow between the first warp yarn 26 and the second warp yarn 27, and then the first weft yarn 28 is hooked by the hook needle 34;

[0038] S4: When the power assembly drives the cleat 24 to swing toward the floating rod 30, the weft rod 23 is separated from between the first warp yarn 26 and the second warp yarn 27, and the cleat 24 presses the first weft yarn 28 to join the weaving position of the first warp yarn 26 and the second warp yarn 27 and the floating yarn 29 toward the webbing 33;

[0039] S5: Repeat steps S1-S4 to control the horizontal position of the floating rod 30 according to the embossed pattern of the webbing 33, so as to weave the webbing 33 with the corresponding embossed pattern.

[0040] There are at least two floating yarns 29 in the same webbing 33, and the floating yarns 29 are different in color from the first warp yarn 26, the second warp yarn 27 and the weft yarn. Different floating yarns 29 are independently controlled by different floating rods 30, horizontal transmission assemblies 14 and lifting transmission assemblies 15. This allows the surface of the webbing 33 to present a more complex and colorful embossed pattern.

[0041] It will be apparent to those skilled in the art that the present invention is not limited to the details of the exemplary embodiments described above and that the invention can be embodied in other specific forms without departing from the spirit or essential characteristics of the invention. Therefore, the embodiments should be considered in all respects as illustrative and non-restrictive, and the scope of the invention is defined by the appended claims, not the foregoing description, and all variations within the meaning and range of equivalents of the claims are intended to be included therein. Any reference sign in a claim should not be construed as limiting the claim to which it relates.

[0042] In addition, it should be understood that although this specification is described in terms of implementation methods, not every implementation method contains only one independent technical solution. This narrative method of the specification is only for the sake of clarity. Those skilled in the art should regard the specification as a whole. The technical solutions in each embodiment can also be appropriately combined to form other implementation methods that can be understood by those skilled in the art.

Claims

1. A floating ribbon weaving device, comprising a frame (10), a yarn rack (1), a control box (12), a traction mechanism (51), a weaving mechanism and a warp buckle (5), characterized in that: The yarn rack (1) is rotatably mounted with a first drum (4), a second drum (3) and a third drum (2); the first warp yarn (26) and the second warp yarn (27) are respectively wound on the first drum (4) and the second drum (3); the first weft yarn (28) is wound on the third drum (2); the traction mechanism (51) and the weaving mechanism are both mounted on the frame (10); the weaving mechanism comprises a warp yarn lifting assembly (13), a weaving assembly (11) and a buckle (24); the first warp yarn (26) and the second warp yarn (27) pass through the warp buckle (5), the warp yarn lifting assembly (13) and the buckle (24) in sequence; the warp yarn lifting assembly (13) drives all the first warp yarns (26) and the second warp yarns (27) when working. The weaving assembly (11) drives the first weft yarn (28) to pass through the V-shaped hollow and then participates in weaving with the first warp yarn (26) and the second warp yarn (27) to form a webbing. The frame (10) is also provided with a floating flower mechanism. The weaving assembly (11) includes a mounting seat (20), a weft rod (23), a guide seat (31), a movable block (35) and a crochet needle (34). The frame (10) is provided with a first fixed shaft (32), a second fixed shaft (52), a third fixed shaft (38) and a transverse seat (19). The buckle (24) is installed on the first fixed shaft (32). The mounting seat (20) is installed on the first fixed shaft (32). The invention relates to a method for manufacturing a weft yarn transmission device for a weft yarn transmission device, wherein the weft yarn transmission device is a plurality of first warp yarns (26) and second warp yarns (27). The weft yarn transmission device is a plurality of first warp yarns (26) and second warp yarns (27). The weft yarn transmission device is a plurality of first warp yarns (26) and second warp yarns (27). The weft yarn transmission device is a plurality of first warp yarns (26) and second warp yarns (27). The weft yarn transmission device is a plurality of first warp yarns (26) and second warp yarns (27). The weft yarn transmission device is a plurality of first warp yarns (26) and second warp yarns (27). The weft yarn transmission device is a plurality of first warp yarns (26) and second warp yarns (27). The weft yarn transmission device is a plurality of first warp yarns (26) and second warp yarns (27). The weft yarn transmission device is a plurality of first warp yarns (26) and second warp yarns (27). The weft yarn transmission device is a plurality of first warp yarns (26) and second warp yarns (27). The weft yarn transmission device is a plurality of first warp yarns (26) and second warp yarns (27). The weft yarn transmission device is a plurality of first warp yarns (26) and second warp yarns (27). A through slot for the webbing (33) to pass through is provided, the movable block (35) is rotatably arranged on the second fixed shaft (52), and a second linkage rod (36) is rotatably arranged between the movable block (35) and the buckle (24), the hook needle (34) is fixed on the movable block (35), and the hook needle (34) and the weft rod (23) are respectively located on both sides of the guide seat (31), the frame (10) is provided with a power assembly for driving the first fixed shaft (32) to rotate back and forth at a preset angle, the third fixed shaft (38) is provided with a yarn guide component (37), the first weft yarn (28) passes through the yarn guide component (37) and the weft rod (23), and then participates in weaving with the first warp yarn (26) and the second warp yarn (27) to form the webbing (33),The floating mechanism includes a fourth reel (16), a cross bar (25), a floating rod (30), a guide block (47), a horizontal transmission assembly (14) and a lifting transmission assembly (15). Two guide blocks (47) are provided, and a horizontal guide rod (45) and a vertical guide rod (46) are slidably provided on the guide block (47). Both ends of the cross bar (25) are fixedly connected to the horizontal guide rod (45), and one end of the vertical guide rod (46) is fixed to the frame (10). The horizontal transmission assembly (14) is connected to one group of horizontal guide rods (45). The lifting transmission assembly (15) is connected to the two guide blocks (47). The floating rod (30) is fixed on the cross bar (25), and the floating rod (30) has an inclined angle with the horizontal plane, and the thickness of the floating rod (30) is less than the width of the first sheet slot (40). The end of the floating rod (30) away from the cross bar (25) is inclined toward the direction close to the buckle (24). When the buckle (24) swings in a direction close to the floating rod (30), the floating rod (30) passes through the first slot (40) of the buckle (24), and the fourth reel (16) is wound with a floating yarn (29). After passing through the floating rod (30), the floating yarn (29) participates in weaving with the first warp yarn (26) and the second warp yarn (27). The horizontal transmission assembly (14) includes a first motor (42), a first rotating block (41), a first hinge rod (43) and a connecting block (44). The first motor (42) is fixed on the frame (10), the first rotating block (41) is fixed on the output shaft of the first motor (42), the connecting block (44) is fixedly connected to the horizontal guide rod (45), the two ends of the first hinge rod (43) are rotatably connected to the first rotating block (41) and the connecting block (44), and the connection point between the first hinge rod (43) and the first rotating block (41) is not coaxial with the output shaft of the first motor (42). , 2. The embossed ribbon weaving device according to claim 1, characterized in that: The warp yarn lifting assembly (13) includes a first yarn lifting piece (8), a second yarn lifting piece (9), a pulling line (18) and a driving assembly (17). The driving assembly (17) is arranged at the upper end of the frame (10). The first yarn lifting piece (8) and the second yarn lifting piece (9) are both provided with a plurality of yarn-threading holes and avoidance holes for yarn to pass through. The pulling line (18) has two groups, one end of the pulling line (18) located at the upper end is connected to the driving assembly (17), and the other end is connected to the driving assembly (17). One end is fixedly connected to the first yarn lifting piece (8) or the second yarn lifting piece (9), one end of the pulling line (18) located below is fixedly connected to the first yarn lifting piece (8) or the second yarn lifting piece (9), and the other end is provided with an elastic reset component between the frame (10), the first warp yarn (26) passes through the yarn threading hole on the first yarn lifting piece (8) and the avoidance hole on the second yarn lifting piece (9), and the second warp yarn (27) passes through the avoidance hole on the first yarn lifting piece (8) and the yarn threading hole on the second yarn lifting piece (9).

3. The embossed ribbon weaving equipment according to claim 1, characterized in that: The lifting transmission assembly (15) includes a second motor (50), a second rotating block (49), a second hinged rod (53) and a limiting bolt (48), wherein the second motor (50) is mounted above the corresponding cross bar (25) of the frame (10), the second rotating block (49) is fixed on the output shaft of the second motor (50), the limiting bolt (48) is mounted on the guide block (47), and the two ends of the second hinged rod (53) are respectively rotatably connected to the second rotating block (49) and the limiting bolt (48), and the connection point between the second hinged rod (53) and the second rotating block (49) is not coaxial with the output shaft of the second motor (50).

4. The embossed ribbon weaving device according to claim 1, characterized in that: A thread pressing mechanism is further provided between the warp buckle (5) and the warp yarn lifting assembly (13), the thread pressing mechanism comprising a mounting frame (6), a yarn guide buckle (7) and an adjusting assembly, two yarn guide buckles (7) are provided side by side, and the yarn guide buckles (7) are provided with a second sheet groove, the first warp yarn (26) and the second warp yarn (27) pass through the second sheet grooves on the two yarn guide buckles (7) in sequence, and the adjusting assembly is provided on the mounting frame (6) and is used to adjust the upper and lower relative positions of the two yarn guide buckles (7).

5. A embossed ribbon weaving process, using an embossed ribbon weaving device according to any one of claims 2 to 4, characterized in that: The following steps are involved: S1: A traction mechanism (51) applies a traction force to the first warp yarn (26), the second warp yarn (27) and the woven webbing (33), and a warp yarn lifting assembly (13) applies a vertical lifting force to the first warp yarn (26) and the second warp yarn (27), thereby forming a V-shaped hollow between the two. S2: When the power assembly drives the buckle (24) to swing away from the floating rod (30), the horizontal transmission assembly (14) and the lifting transmission assembly (15) jointly drive the floating rod (30) to move horizontally and vertically, so that the floating yarn (29) is buried between the first warp yarn (26) and the second warp yarn (27), or the floating yarn (29) is exposed on the surface of the first warp yarn (26) or the second warp yarn (27); S3: The clasp (24) drives the swing arm (21) to rotate, and the weft yarn rod (23) drives the first weft yarn (28) to pass through the V-shaped hollow between the first warp yarn (26) and the second warp yarn (27), and then the first weft yarn (28) is hooked by the hook needle (34); S4: When the power assembly drives the buckle (24) to swing toward the floating rod (30), the weft rod (23) is separated from between the first warp yarn (26) and the second warp yarn (27), and the buckle (24) buckles the first weft yarn (28) to a position where it participates in the weaving of the first warp yarn (26) and the second warp yarn (27) and the floating yarn (29) toward the webbing (33); S5: Repeat steps S1-S4, and control the horizontal position of the floating rod (30) according to the embossed pattern of the webbing (33), so as to weave the webbing (33) with the corresponding embossed pattern.

6. A weaving process for embossed ribbon according to claim 5, characterized in that: There are at least two floating yarns (29) in the same webbing (33), and the floating yarns (29) are different in color from the first warp yarns (26), the second warp yarns (27) and the weft yarns.

Citation Information

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