Lamp strip winding processing equipment

By designing the lamp strip winding processing equipment, and using multiple moving mechanisms and cable clips to achieve automatic processing of the lamp strip, the problems of low automation and uneven winding in the prior art are solved, and production efficiency and product quality are improved.

CN120377027APending Publication Date: 2025-07-25TAIZHOU HAOSHENG OPTOELECTRONICS TECH CO LTD
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Patent Information

Application Number
CN202311833940.4
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2023-12-28
Publication Date
2025-07-25

AI Technical Summary

Technical Problem

In the prior art, the degree of automation of lamp strip production and processing is low, the labor intensity of workers is high, and the uneven winding of the lamp strip is affected, which affects the quality and consistency of the product, making it difficult to form a flow production line.

Method used

A light strip winding processing equipment is designed, including a frame, a light strip feeding mechanism, a first moving mechanism, a light strip winding mechanism, a second moving mechanism, a light strip bundling mechanism, a third moving mechanism, a light strip thread peeling mechanism and a light strip thread head pressing terminal mechanism, and an automatic processing of the light strip is achieved through multiple moving mechanisms, and the winding uniformity is ensured with the wire clip and the rolling wheel.

Benefits of technology

It realizes automatic processing of light strips, improves production efficiency, ensures product quality and consistency, reduces manual operation, and improves winding uniformity.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention provides lamp strip winding processing equipment. The lamp strip winding processing equipment comprises a rack, a lamp strip feeding mechanism, a first moving mechanism, a lamp strip winding mechanism, a second moving mechanism, a lamp strip bundling mechanism, a third moving mechanism, a lamp strip wire end peeling mechanism and a lamp strip wire end terminal pressing mechanism. According to the technical scheme, by arranging the first moving mechanism, the lamp strip is moved to the lamp strip winding mechanism from the feeding lamp strip feeding mechanism, by arranging the second moving mechanism, the lamp strip is moved to the lamp strip bundling mechanism from the lamp strip winding mechanism, and by arranging the third moving mechanism, the lamp strip bundling mechanism is moved to the lamp strip bundling mechanism. The lamp strip is moved to the lamp strip wire end peeling mechanism and the lamp strip wire end terminal pressing mechanism from the bundling mechanism, multiple machining procedures such as automatic winding of the lamp strip are achieved, the product quality is guaranteed, manual operation is omitted, and the production efficiency is improved. And meanwhile, the first moving mechanism is matched with the wire arranging clamp, the lamp strip is arranged on the winding post, the lamp strip is wound uniformly, the product quality is improved, and the size of the wire arranging structure is reduced.
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Description

Technical Field

[0001] The present invention relates to the technical field of automated equipment, and more particularly, to a processing device for winding light strips. Background Art

[0002] With the wide application of lighting equipment, the consumption of light strips has increased sharply. When manufacturing and processing light strips, the processes include: light strip loading, light strip winding, light strip bundling, light strip wire end peeling, and pressing metal terminals on the light strip wire ends. In the prior art, generally, separate processing equipment is combined with manual labor to complete the manufacturing and processing of light strips. The degree of automation is low, the labor intensity of workers is high, and an automated production line cannot be formed. Therefore, it is difficult to ensure the qualified rate and consistency of products. Moreover, it is found in production practice that the light strips are unevenly wound, which greatly affects the processing quality of products. Summary of the Invention

[0003] The main object of the present invention is to provide a processing device for winding light strips, which can improve the degree of automation in the manufacturing and processing of light strips, wind the light strips evenly, ensure the quality of products, eliminate manual operations, and improve production efficiency.

[0004] To solve the above technical problems, the technical solution adopted by the present invention is: a strip light winding and processing device, including a frame, a strip light feeding mechanism, a first moving mechanism, a strip light winding mechanism, a second moving mechanism, a strip light bundling mechanism, a third moving mechanism, a strip light wire head peeling mechanism, and a strip light wire head terminal pressing mechanism; the strip light feeding mechanism is installed on the frame and is used to feed the strip light to the first moving mechanism; the first moving mechanism includes a first wire head clamp, a first moving frame, a first driving part, a second moving frame, a second driving part, a third moving frame, and a third driving part. The first moving frame is horizontally movably connected to the frame through the first driving part. The second moving frame is vertically movably connected to the first moving frame through the second driving part. The third moving frame is vertically movably connected to the second moving frame through the third driving part. The first wire head clamp is connected to the third moving frame to clamp the wire head of the strip light and send it to the strip light winding mechanism; the strip light winding mechanism includes a winding disc, a winding column, a second wire head clamp, a wire arranging clamp, and a wire cutting component. The winding disc is rotatably connected to the frame through a rotating part. There are two winding columns both connected to the winding disc and used to wind the strip light into a loop. The second wire head clamp is installed on the winding disc and used to clamp the wire head of the strip light. The wire arranging clamp is connected to the third moving frame and used for wire arranging of the strip light on the winding column. The wire cutting component is installed on the frame and used for cutting the strip light after winding; the second moving mechanism is installed on the frame and used to transfer the strip light wound into a loop to the strip light bundling mechanism; the strip light bundling mechanism is installed on the frame and used to bundle the strip light; the third moving mechanism is installed on the frame and used to sequentially transfer the bundled strip light to the strip light wire head peeling mechanism and the strip light wire head terminal pressing mechanism. The strip light wire head peeling mechanism is installed on the frame and used for peeling the wire head of the strip light. The strip light wire head terminal pressing mechanism is installed on the frame and used for pressing a metal terminal onto the wire head of the strip light.

[0005] The beneficial effects of the present invention are as follows: By setting the first moving mechanism, the strip light is moved from the strip light feeding mechanism to the strip light winding mechanism. By setting the second moving mechanism, the strip light is moved from the strip light winding mechanism to the strip light bundling mechanism. By setting the third moving mechanism, the strip light is moved from the bundling mechanism to the strip light wire head peeling mechanism and the strip light wire head terminal pressing mechanism, realizing multiple automated processing procedures such as strip light winding, ensuring the quality of the product, eliminating manual operations, and improving production efficiency; at the same time, the first moving mechanism cooperates with the wire arranging clamp to arrange the strip light on the winding column, making the strip light winding uniform, improving the product quality, and reducing the volume of the wire arranging structure.

[0006] In some embodiments, rolling wheels are provided on the wire arranging clamp. By adopting the above structure, the wear of the strip light on the wire arranging clamp is avoided, and the product quality is ensured.

[0007] In some embodiments, the light strip feeding mechanism includes a material supporting frame, a coiling roller, and a plurality of conveying rollers. The coiling roller is rotatably connected to the material supporting frame, and the light strip is wound around the coiling roller. The plurality of conveying rollers are rotatably arranged on the third moving frame and are used to convey the light strip on the coiling roller to the first wire head clamp. By adopting the above structure, stable feeding for the first moving mechanism is achieved, and the reliability of light strip feeding is improved.

[0008] In some embodiments, the light strip winding mechanism further includes a tension spring, two moving plates, and two material blocking cylinders. The two winding columns are respectively hinged to the telescopic rods of the two material blocking cylinders. The cylinder bodies of the two material blocking cylinders are respectively fixedly installed on the two moving plates. The two moving plates are spaced and connected to the winding disc. A blocking block abutting against the moving plate is provided at the bottom of each of the two winding columns. The two ends of the tension spring are respectively connected to the outer walls of the two winding columns away from the blocking blocks. When the telescopic rods of the two material blocking cylinders retract, the blocking blocks abut against the moving plates, so that the two winding columns are spaced and limited. When the telescopic rods of the two material blocking cylinders extend, the tension spring drives the two winding columns to approach each other. By adopting the above structure, when the telescopic rod of the material blocking cylinder retracts, the spaced winding columns stably wind the light strip. When the telescopic rod of the material blocking cylinder extends, it is convenient to take out the wound light strip from the winding column.

[0009] In some embodiments, the second moving mechanism includes a wire grasping clamp, a fourth moving frame, a fourth driving part, a fifth moving frame, and a fifth driving part. The fourth moving frame is horizontally movably connected to the machine frame through the fourth driving part. The fifth moving frame is vertically movably connected to the fourth moving frame through the fifth driving part. The wire grasping clamp is connected to the fifth moving frame. By adopting the above structure, the light strip is moved from the light strip winding mechanism to the light strip bundling mechanism, with a simple structure and reliable operation.

[0010] In some embodiments, the light strip bundling mechanism includes a tie tape feeding assembly, a bundling clamp, and a tie tape tightening assembly. The tie tape feeding assembly is installed on the machine frame and is used to supply tie tapes to the bundling clamp. The bundling clamp is installed on the machine frame and is used to wind the tie tape around the light strip. The tie tape tightening assembly is installed on the machine frame and is used to twist the two ends of the tie tape together. By adopting the above structure, bundling of the light strip is achieved.

[0011] In some embodiments, the tie tape feeding assembly includes a support plate, pressing and conveying rollers, a first driving motor, and a wire breaking part. The support plate is fixed to the machine frame. There are two pressing and conveying rollers which are both rotatably connected to the support plate. A gap for the tie tape to pass through is provided between the two pressing and conveying rollers. The first driving motor is installed on the support plate and drives the pressing and conveying rollers to rotate, so that the tie tape is conveyed to the opening of the bundling clamp. The wire breaking part is installed on the support plate for cutting the tie tape. By adopting the above structure, tie tapes are stably supplied, and the reliability of bundling the light strip is improved.

[0012] In some embodiments, the third moving mechanism includes a cable tie grabbing clamp, an exit cylinder, a third thread end clamp, a sixth moving frame and a sixth driving unit. The cable tie grabbing clamp is connected to the telescopic rod of the exit cylinder. The cylinder body of the exit cylinder is installed on the sixth moving frame to withdraw the bundled light strip from the bundling clamp. The third thread end clamp is connected to the sixth moving frame and is used to clamp the thread ends of the light strip. The sixth moving frame is connected to the frame through the sixth driving unit along the lateral movement. By adopting the above structure, the light strip is moved from the bundling mechanism to the light strip thread end stripping mechanism and the light strip thread end terminal pressing mechanism, which has a simple structure and reliable operation.

[0013] In some embodiments, the stripping mechanism for the light strip wire ends includes an upper stripping knife, a lower stripping knife, an upper moving block, a lower moving block, a first screw rod, a second drive motor, a seventh moving frame and a seventh drive unit, wherein the upper stripping knife is fixed to the upper moving block, the lower stripping knife is fixed to the lower moving block, the first screw rod is provided with a first thread and a second thread of opposite rotation directions, the upper moving block is screwed to the first thread of the first screw rod, the lower moving block is screwed to the second thread of the first screw rod, the first screw rod is rotatably connected to the seventh moving frame and is driven by the output shaft of the second drive motor, so as to make the upper stripping knife and the lower stripping knife approach or move away from each other, and the seventh moving frame is connected to the frame by the seventh drive unit along the longitudinal movement and is used for removing the wire skin of the light strip wire ends. By adopting the above structure, the light strip wire ends can be stably stripped, the structure is simple, and the operation is reliable. BRIEF DESCRIPTION OF THE DRAWINGS

[0014] Figure 1 It is a schematic diagram of the overall structure of a light strip winding processing device of the present invention;

[0015] Figure 2 This is a partial structural diagram of a light strip winding processing device of the present invention. Figure 1 ;

[0016] Figure 3 This is a partial structural diagram of a light strip winding processing device of the present invention. Figure 2 ;

[0017] Figure 4 This is a partial structural diagram of a light strip winding processing device of the present invention. Figure 3 ;

[0018] Figure 5 This is a partial structural diagram of a light strip winding processing device of the present invention. Figure 4 ;

[0019] Figure 6 This is a partial structural diagram of a light strip winding processing device of the present invention. Figure 5 ;

[0020] Figure 7 It is a schematic diagram of a partial structure of a strip winding processing device of the present invention Figure 6 ;

[0021] Figure 8 It is a schematic diagram of a partial structure of a strip winding processing device of the present invention Figure 7 ;

[0022] Figure 9 It is a schematic diagram of a partial structure of a strip winding processing device of the present invention Figure 8 ;

[0023] Figure 10 It is a schematic diagram of a partial structure of a strip winding processing device of the present invention Figure 9 ;

[0024] Figure 11 It is a schematic diagram of a partial structure of a strip winding processing device of the present invention Figure 10 ;

[0025] Description of reference numerals:

[0026] 1. Frame; 2. Conveyor roller; 3. First moving mechanism; 31. First wire head clamp; 32. First moving frame; 33. First driving part; 34. Second moving frame; 35. Second driving part; 36. Third moving frame; 37. Third driving part; 4. Light strip winding mechanism; 41. Winding disc; 42. Winding column; 421. Stopper; 43. Second wire head clamp; 44. Wire arranging clamp; 441. Rolling wheel; 45. Wire cutting assembly; 46. Tension spring; 47. Moving plate; 48. Material blocking cylinder; 49. Rotating part; 491. Rotating shaft; 492. Driving pulley; 493. Driven pulley; 494. Synchronous belt; 495. Third driving motor; 5. Second moving mechanism; 51. Wire grasping clamp; 52. Fourth moving frame; 53. Fourth driving part; 54. Fifth moving frame; 55. Fifth driving part; 56. Wire head fixing clamp; 6. Light strip bundling mechanism; 61. Tie tape feeding assembly; 611. Support plate; 6111. Guide block; 6112. Guide hole; 612. Pressing conveyor roller; 613. First driving motor; 614. Wire breaking part; 6141. Cutter; 6142. Wire breaking cylinder; 62. Bundling clamp; 63. Tie tape tightening assembly; 7. Third moving mechanism; 71. Tie tape grasping clamp; 72. Retracting cylinder; 73. Third wire head clamp; 74. Sixth moving frame; 75. Sixth driving part; 8. Light strip wire head peeling mechanism; 81. Upper peeling knife; 82. Lower peeling knife; 83. Upper moving block; 84. Lower moving block; 85. First lead screw; 86. Second driving motor; 87. Seventh moving frame; 88. Seventh driving part; 89. Wire core separating part; 891. Separating knife; 892. Upper positioning block; 893. Lower positioning block; 8931. Positioning groove; 8932. Avoidance groove; 9. Light strip wire head terminal pressing mechanism. Detailed implementation manners

[0027] To make the above objects, features and advantages of the present invention more obvious and understandable, the following detailed description of the specific embodiments of the present invention will be given with reference to the accompanying drawings.

[0028] In the description of the present invention, it should be noted that the horizontal, vertical and longitudinal directions are the three mutually perpendicular directions. The terms "upper", "lower", "left", "right", "front", "rear", etc. indicate the orientation or position relationship based on the orientation or position relationship shown in the drawings. It is only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of the present invention.

[0029] Such as Figures 1 to 11As shown in the figure, this embodiment provides a strip winding processing device, which includes a frame 1, a strip feeding mechanism, a first moving mechanism 3, a strip winding mechanism 4, a second moving mechanism 5, a strip bundling mechanism 6, a third moving mechanism 7, a strip wire head peeling mechanism 8 and a strip wire head terminal pressing mechanism 9; the strip feeding mechanism is installed on the frame 1 and is used to feed the strip to the first moving mechanism 3; the first moving mechanism 3 includes a first wire head clamp 31, a first moving frame 32, a first driving part 33, a second moving frame 34, a second driving part 35, a third moving frame 36 and a third driving part 37. The first moving frame 32 is horizontally movably connected to the frame 1 through the first driving part 33. The second moving frame 34 is longitudinally movably connected to the first moving frame 32 through the second driving part 35. The third moving frame 36 is vertically movably connected to the second moving frame 34 through the third driving part 37. The first wire head clamp 31 is connected to the third moving frame 36 and is used to clamp the wire head of the strip to the strip winding mechanism 4; the strip winding mechanism 4 includes a winding disc 41, a winding column 42, a second wire head clamp 43, a wire arranging clamp 44 and a wire cutting assembly 45. The winding disc 41 is rotatably connected to the frame 1 through a rotating part 49. There are two winding columns 42 both connected to the winding disc 41 and are used to wind the strip into a loop. The second wire head clamp 43 is installed on the winding disc 41 and is used to clamp the strip wire head. The wire arranging clamp 44 is connected to the third moving frame 36 and is used for wire arranging of the strip on the winding column 42. The wire cutting assembly 45 is installed on the frame 1 and is used for cutting the strip after winding; the second moving mechanism 5 is installed on the frame 1 and is used to transfer the strip wound into a loop to the strip bundling mechanism 6; the strip bundling mechanism 6 is installed on the frame 1 and is used to bundle the strip; the third moving mechanism 7 is installed on the frame 1 and is used to sequentially transfer the bundled strip to the strip wire head peeling mechanism 8 and the strip wire head terminal pressing mechanism 9. The strip wire head peeling mechanism 8 is installed on the frame 1 and is used for peeling the strip wire head. The strip wire head terminal pressing mechanism 9 is installed on the frame 1 and is used for pressing a metal terminal onto the strip wire head.

[0030] In this embodiment, a rolling wheel 441 is provided on the wire arranging clamp 44 in a rolling manner, thereby avoiding abrasion of the strip on the wire arranging clamp 44 and ensuring product quality.

[0031] In this embodiment, the strip feeding mechanism includes a material supporting frame, a winding drum and a plurality of conveying rollers 2. The winding drum is rotatably connected to the material supporting frame. The winding drum is for the strip to wind around. The plurality of conveying rollers 2 are rotatably arranged on the third moving frame 36 and are used to convey the strip on the winding drum to the first wire head clamp 31, thereby realizing stable feeding for the first moving mechanism 3 and improving the reliability of strip feeding. Both the frame 1 and the material supporting frame are fixedly placed on the ground. In other embodiments, the material supporting frame can be fixedly connected to the frame 1, thereby reducing the floor area.

[0032] In this embodiment, the light strip winding mechanism 4 further includes a tension spring 46, two moving plates 47 and two material blocking cylinders 48. The two winding columns 42 are respectively hinged to the telescopic rods of the two material blocking cylinders 48. The cylinder bodies of the two material blocking cylinders 48 are respectively fixedly installed on the two moving plates 47. The two moving plates 47 are spaced and connected to the winding disc 41. A stop block 421 abutting against the moving plate 47 is provided at the bottom of each of the two winding columns 42. The two ends of the tension spring 46 are respectively connected to the outer walls of the two winding columns 42 away from the stop block 421. When the telescopic rods of the two material blocking cylinders 48 retract, the stop block 421 abuts against the moving plate 47, so that the two winding columns 42 are spaced and limited. When the telescopic rods of the two material blocking cylinders 48 extend, the tension spring 46 drives the two winding columns 42 to approach each other. Thus, when the telescopic rod of the material blocking cylinder 48 retracts, the spaced winding columns 42 stably wind the light strip. When the telescopic rod of the material blocking cylinder 48 extends, it is convenient to take out the wound light strip from the winding column 42. The two moving plates 47 are connected to the winding disc 41 by bolts, so that the distance between the two moving plates 47 is adjustable.

[0033] In this embodiment, the second moving mechanism 5 includes a wire grasping clip 51, a fourth moving frame 52, a fourth driving part 53, a fifth moving frame 54 and a fifth driving part 55. The fourth moving frame 52 is horizontally movably connected to the machine frame 1 through the fourth driving part 53. The fifth moving frame 54 is vertically movably connected to the fourth moving frame 52 through the fifth driving part 55. The wire grasping clip 51 is connected to the fifth moving frame 54. Thus, the light strip is moved from the light strip winding mechanism 4 to the light strip bundling mechanism 6, with a simple structure and reliable operation. The winding column 42 and the bundling clip 62 are located on the moving path of the wire grasping clip 51. There are two wire grasping clips 51. The two wire grasping clips 51 are connected to the fifth moving frame 54 by bolts, so that the distance between the two wire grasping clips 51 is adjustable. A wire head fixing clip 56 for clamping the wire head of the light strip is further provided on the fifth moving frame 54.

[0034] In this embodiment, the light strip bundling mechanism 6 includes a tie tape feeding assembly 61, a bundling clip 62 and a tie tape tightening assembly 63. The tie tape feeding assembly 61 is installed on the machine frame 1 and is used to supply tie tapes to the bundling clip 62. The bundling clip 62 is installed on the machine frame 1 and is used to wind the tie tape around the light strip. The tie tape tightening assembly 63 is installed on the machine frame 1 and is used to twist the two ends of the tie tape together. Thus, the bundling of the light strip is realized.

[0035] The cable tie feeding assembly 61 includes a support plate 611, a pressing and conveying wheel 612, a first driving motor 613, and a wire cutting part 614. The support plate 611 is fixed on the frame 1. There are two pressing and conveying wheels 612 which are both rotatably connected to the support plate 611. A gap for the cable tie to pass through is provided between the two pressing and conveying wheels 612. The first driving motor 613 is installed on the support plate 611 and drives the pressing and conveying wheel 612 to rotate, so as to convey the cable tie to the opening of the bundling clip 62. The wire cutting part 614 is installed on the support plate 611 for cutting the cable tie, thereby stably supplying the cable tie and improving the reliability of bundling the light strip.

[0036] A guiding block 6111 is connected to the support plate 611. A guiding hole 6112 for the cable tie to pass through is provided on the guiding block 6111. The guiding hole 6112 is communicated with the gap. The extending direction of the guiding hole 6112 is set towards the opening of the bundling clip 62. The wire cutting part 614 includes a cutter 6141 and a wire cutting cylinder 6142. The cylinder body of the wire cutting cylinder 6142 is fixed on the support plate 611. The cutter 6141 is fixed on the telescopic rod of the wire cutting cylinder 6142. The cutter 6141 is arranged close to the outlet of the guiding hole 6112.

[0037] An adjusting part for adjusting the size of the gap is further provided on the support plate 611. The adjusting part includes a U-shaped groove and a screw arranged on the support plate 611. The two pressing and conveying wheels 612 are respectively rotatably arranged on both sides of the groove wall of the U-shaped groove. The screw passes through one side groove wall of the U-shaped groove and is threadedly connected to the other side groove wall of the U-shaped groove, so that the opening distance of the U-shaped groove is adjustable.

[0038] In this embodiment, the third moving mechanism 7 includes a cable tie grasping clip 71, an ejection cylinder 72, a third wire end clip 73, a sixth moving frame 74, and a sixth driving part 75. The cable tie grasping clip 71 is connected to the telescopic rod of the ejection cylinder 72. The cylinder body of the ejection cylinder 72 is installed on the sixth moving frame 74 to eject the bundled light strip from the bundling clip 62. The third wire end clip 73 is connected to the sixth moving frame 74 and is used for clamping the wire end of the light strip. The sixth moving frame 74 is horizontally movably connected to the frame 1 through the sixth driving part 75, thereby realizing the movement of the light strip from the bundling mechanism to the light strip wire end peeling mechanism 8 and the light strip wire end terminal pressing mechanism 9. The structure is simple and the operation is reliable. The light strip wire end peeling mechanism 8 and the light strip wire end terminal pressing mechanism 9 are on the moving path of the third wire end clip 73.

[0039] In this embodiment, the strip wire end peeling mechanism 8 includes an upper peeling knife 81, a lower peeling knife 82, an upper moving block 83, a lower moving block 84, a first lead screw 85, a second driving motor 86, a seventh moving bracket 87 and a seventh driving part 88. The upper peeling knife 81 is fixed to the upper moving block 83, and the lower peeling knife 82 is fixed to the lower moving block 84. The first lead screw 85 is provided with a first thread and a second thread with opposite helix directions. The upper moving block 83 is screwed to the first thread of the first lead screw 85, and the lower moving block 84 is screwed to the second thread of the first lead screw 85. The first lead screw 85 is rotatably connected to the seventh moving bracket 87 and is in transmission with the output shaft of the second driving motor 86, for making the upper peeling knife 81 and the lower peeling knife 82 approach or move away from each other. The seventh moving bracket 87 is longitudinally movably connected to the frame 1 through the seventh driving part 88 and is used for peeling the wire skin of the strip wire end, thereby realizing stable peeling of the strip wire end, with a simple structure and reliable operation.

[0040] The strip wire end peeling mechanism 8 further includes a wire core separating part 89 for separating the strip wire cores. The wire core separating part 89 includes a separating knife 891, an upper positioning block 892 and a lower positioning block 893. The upper positioning block 892 is fixed to the upper moving block 83, and the lower positioning block 893 is fixed to the lower moving block 84. A positioning groove 8931 for positioning the strip wire end is provided on the lower side of the upper positioning block 892. The separating knife 891 is centrally fixed in the positioning groove 8931 and is arranged downward. The lower positioning block 893 is provided with a slot for inserting the upper positioning block 892 and an avoidance groove 8932 for avoiding the separating knife 891.

[0041] In this embodiment, the strip wire end terminal pressing mechanism 9 is prior art, so it will not be elaborated in detail herein.

[0042] In this embodiment, the wire cutting assembly 45 includes a wire cutting clamp, and the wire cutting clamp is driven by a cylinder to operate.

[0043] In this embodiment, the rotating part 49 includes a rotating shaft 491, a driving pulley 492, a driven pulley 493, a synchronous belt 494 and a third driving motor 495. The rotating shaft 491 is vertically rotatably arranged on the frame 1. The upper end of the rotating shaft 491 is fixed to the rotating disc, and the lower end of the rotating shaft 491 is fixed to the driven pulley 493. The driving pulley 492 is fixed to the output shaft of the third driving motor 495. The third driving motor 495 is installed on the frame 1, and the driving pulley 492 and the driven pulley 493 are in transmission through the synchronous belt 494.

[0044] In this embodiment, the cable tie tightening assembly 63 is prior art and will not be elaborated in detail herein.

[0045] The first driving part 33, the second driving part 35, the third driving part 37, the fourth driving part 53, the fifth driving part 55, the sixth driving part 75, and the seventh driving part 88 are respectively a lead screw drive or a cylinder drive that provides linear movement.

[0046] Although the present disclosure is disclosed as above, the scope of protection of the present disclosure is not limited thereto. Those skilled in the art can make various changes and modifications without departing from the spirit and scope of the present disclosure, and these changes and modifications will all fall within the scope of protection of the present invention.

Claims

1. A strip light winding processing device, characterized in that, It includes a frame (1), a light strip feeding mechanism, a first moving mechanism (3), a light strip winding mechanism (4), a second moving mechanism (5), a light strip bundling mechanism (6), a third moving mechanism (7), a light strip wire head peeling mechanism (8) and a light strip wire head terminal pressing mechanism (9); The light strip feeding mechanism is installed on the frame (1) and is used for feeding the light strip to the first moving mechanism (3); The first moving mechanism (3) includes a first wire head clamp (31), a first moving frame (32), a first driving part (33), a second moving frame (34), a second driving part (35), a third moving frame (36) and a third driving part (37). The first moving frame (32) is horizontally movably connected to the frame (1) through the first driving part (33). The second moving frame (34) is longitudinally movably connected to the first moving frame (32) through the second driving part (35). The third moving frame (36) is vertically movably connected to the second moving frame (34) through the third driving part (37). The first wire head clamp (31) is connected to the third moving frame (36) and is used for clamping the wire head of the light strip to the light strip winding mechanism (4); The light strip winding mechanism (4) includes a winding disc (41), a winding post (42), a second wire head clamp (43), a wire arranging clamp (44) and a wire cutting assembly (45). The winding disc (41) is rotatably connected to the frame (1) through a rotating part (49). There are two winding posts (42) both connected to the winding disc (41) and are used for winding the light strip into a loop. The second wire head clamp (43) is installed on the winding disc (41) and is used for clamping the wire head of the light strip. The wire arranging clamp (44) is connected to the third moving frame (36) and is used for arranging the light strip on the winding post (42). The wire cutting assembly (45) is installed on the frame (1) and is used for cutting the light strip after winding; The second moving mechanism (5) is installed on the frame (1) and is used for transferring the wound light strip loop to the light strip bundling mechanism (6); The light strip bundling mechanism (6) is installed on the frame (1) and is used for bundling the light strip; The third moving mechanism (7) is installed on the frame (1) and is used for sequentially transferring the bundled light strip to the light strip wire head peeling mechanism (8) and the light strip wire head terminal pressing mechanism (9). The light strip wire head peeling mechanism (8) is installed on the frame (1) and is used for peeling the wire head of the light strip. The light strip wire head terminal pressing mechanism (9) is installed on the frame (1) and is used for pressing a metal terminal onto the wire head of the light strip.

2. The strip light winding processing equipment according to claim 1, characterized in that, A rolling wheel (441) is rotatably provided on the wire arranging clamp (44).

3. The strip winding processing device according to claim 1, characterized in that, The light strip feeding mechanism includes a material supporting frame, a winding roller and a plurality of conveying rollers (2). The winding roller is rotatably connected to the material supporting frame. The winding roller is for the light strip to wind around. The plurality of conveying rollers (2) are rotatably arranged on the third moving frame (36) and are used for conveying the light strip on the winding roller to the first wire head clamp (31).

4. A strip light winding and processing device according to claim 1, wherein, The light strip winding mechanism (4) further includes a tension spring (46), two moving plates (47), and two material blocking cylinders (48). The two winding columns (42) are respectively hinged to the telescopic rods of the two material blocking cylinders (48). The cylinders of the two material blocking cylinders (48) are respectively fixedly installed on the two moving plates (47). The two moving plates (47) are connected to the winding disc (41) at intervals. A stopper (421) for abutting against the moving plate (47) is provided at the bottom of each of the two winding columns (42). The two ends of the tension spring (46) are respectively connected to the outer walls of the two winding columns (42) away from the stopper (421). When the telescopic rods of the two material blocking cylinders (48) retract, the stopper (421) abuts against the moving plate (47) to limit the two winding columns (42) at intervals. When the telescopic rods of the two material blocking cylinders (48) extend, the tension spring (46) drives the two winding columns (42) to approach each other.

5. A strip light winding and processing device according to claim 1, characterized in that, The second moving mechanism (5) includes a wire grasping clamp (51), a fourth moving frame (52), a fourth driving part (53), a fifth moving frame (54), and a fifth driving part (55). The fourth moving frame (52) is horizontally movably connected to the frame (1) through the fourth driving part (53). The fifth moving frame (54) is vertically movably connected to the fourth moving frame (52) through the fifth driving part (55). The wire grasping clamp (51) is connected to the fifth moving frame (54).

6. The strip light coiling and processing equipment according to claim 1, characterized in that, The light strip bundling mechanism (6) includes a tie tape feeding assembly (61), a bundling clamp (62), and a tie tape tightening assembly (63). The tie tape feeding assembly (61) is installed on the frame (1) and is used to supply tie tapes to the bundling clamp (62). The bundling clamp (62) is installed on the frame (1) and is used to wind the tie tape around the light strip. The tie tape tightening assembly (63) is installed on the frame (1) and is used to twist the two ends of the tie tape together.

7. The strip light winding processing equipment according to claim 6, characterized in that, The tie tape feeding assembly (61) includes a support plate (611), pressing transmission wheels (612), a first driving motor (613), and a wire cutting part (614). The support plate (611) is fixed to the frame (1). There are two pressing transmission wheels (612) which are both rotatably connected to the support plate (611). A gap for the tie tape to pass through is provided between the two pressing transmission wheels (612). The first driving motor (613) is installed on the support plate (611) and drives the pressing transmission wheels (612) to rotate, so that the tie tape is transmitted to the opening of the bundling clamp (62). The wire cutting part (614) is installed on the support plate (611) for cutting the tie tape.

8. The strip light coiling and processing device according to claim 6, wherein, The third moving mechanism (7) includes a cable tie gripper (71), an ejection cylinder (72), a third wire clamp (73), a sixth moving frame (74) and a sixth driving part (75). The cable tie gripper (71) is connected to the telescopic rod of the ejection cylinder (72), and the cylinder body of the ejection cylinder (72) is installed on the sixth moving frame (74) for ejecting the bundled light strip from the bundling clamp (62). The third wire clamp (73) is connected to the sixth moving frame (74) and is used for clamping the wire head of the light strip. The sixth moving frame (74) is horizontally movably connected to the machine frame (1) through the sixth driving part (75).

9. The strip light winding and processing equipment according to claim 8, wherein, The light strip wire head peeling mechanism (8) includes an upper peeling knife (81), a lower peeling knife (82), an upper moving block (83), a lower moving block (84), a first lead screw (85), a second driving motor (86), a seventh moving frame (87) and a seventh driving part (88). The upper peeling knife (81) is fixed to the upper moving block (83), and the lower peeling knife (82) is fixed to the lower moving block (84). The first lead screw (85) is provided with a first thread and a second thread with opposite helix directions. The upper moving block (83) is screwed to the first thread of the first lead screw (85), and the lower moving block (84) is screwed to the second thread of the first lead screw (85). The first lead screw (85) is rotatably connected to the seventh moving frame (87) and is in transmission with the output shaft of the second driving motor (86) for making the upper peeling knife (81) and the lower peeling knife (82) approach or separate from each other. The seventh moving frame (87) is longitudinally movably connected to the machine frame (1) through the seventh driving part (88) and is used for removing the wire skin of the light strip wire head.