Full-automatic braid labeling equipment

Through the design of fully automatic ribbon labeling equipment, the problems of large gap between the ribbon and the labeling table and low efficiency are solved by utilizing the pushing and fitting section and the linkage toggling section of the linkage template component. The tightness of the ribbon is improved and the dye is effectively replenished, thereby improving the labeling effect and efficiency.

CN120717044AActive Publication Date: 2025-09-30XIAMEN YAMA RIBBONS & BOWS
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Patent Information

Application Number
CN202511211298.5
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-08-28
Publication Date
2025-09-30
Estimated Expiration
2045-08-28

AI Technical Summary

Technical Problem

The existing ribbon labeling equipment has a large gap between the ribbon and the labeling table, which affects the labeling effect and has low efficiency, and needs to be improved.

Method used

A fully automatic ribbon labeling equipment was designed, which includes a coiling component, a traction component, a three-axis adjustment component, a labeling component and a linkage template component. Through the cooperation of the pushing and fitting section and the linkage toggle section of the linkage template component, the tightness of the ribbon is improved and the dye is periodically replenished, thus avoiding paint overflow and enhancing the labeling effect.

Benefits of technology

The tightness of the webbing is improved, labeling wrinkles and excessive paint overflow are avoided, and labeling efficiency and effect are improved.

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Abstract

The invention discloses a full-automatic braid labeling device, which belongs to the field of braid labeling, and comprises a workbench provided with a mounting plane; the material coiling component is used for coiling the braid and is arranged on the mounting plane; and the traction component is used for dragging and pulling the braid penetrating out of the material coiling component. According to the full-automatic braid labeling equipment, after a double-end toothed plate moves downwards, a side driving wheel can be driven to rotate, a lower driving wheel can rotate and transmit the rotation to a bottom rod and a meshing wheel to rotate, a triggering toothed plate and a lifting plate move upwards as a whole, on one hand, the double-end toothed plate can push upwards to act on a braid to generate an upward attaching trend, and on the other hand, the double-end toothed plate can move downwards; on the one hand, the compactness of the braid to be labeled can be improved, the situation that labeling wrinkles are caused by loosening of the braid during labeling is avoided, on the other hand, the spraying part cannot be forced to spray coating in the whole period of movement of the walking wheel in the transition section, and the situation that the coating overflows can be avoided.
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Description

Technical Field

[0001] The invention belongs to the field of ribbon labeling, and in particular relates to a fully automatic ribbon labeling device. Background Art

[0002] In the existing technology, after the traditional webbing in the industry is woven and rolled, it is necessary to label the webbing. During the labeling operation, the webbing is often placed on the labeling table manually, and the labeling equipment is started to complete the labeling operation of the webbing. However, during labeling, the gap between the webbing and the labeling table is often large, which affects the labeling effect. In addition, dye needs to be automatically added to the template each time, which affects the efficiency of labeling. Improvements are urgently needed.

[0003] The present invention seeks to alleviate or at least mitigate such problems or drawbacks by providing new or otherwise improved webbing labels. Summary of the Invention

[0004] In response to one or more of the above defects or improvement needs of the prior art, the present invention provides a fully automatic ribbon labeling equipment, which has the advantages of being able to reduce the distance between the ribbon and the labeling table and being able to increase the dye to increase the labeling efficiency.

[0005] To achieve the above-mentioned object, the present invention provides a fully automatic ribbon labeling device, which includes a workbench having a mounting surface thereon; A coiling member for coiling the webbing, arranged on the mounting plane; A traction member for pulling the webbing passing through the coil member, arranged on the mounting plane; A three-axis adjustment component is arranged on the installation plane and is located above the webbing; A labeling component for labeling the webbing, which is removably arranged on the three-axis adjustment component and can be adjusted by the three-axis adjustment component along six directions: front, back, left, right, up and down; The linkage template component has a spraying part therein, which is composed of a pushing and fitting section, a linkage toggle section connected to the pushing and fitting section, and a starting section connected to the linkage toggle section. When the labeling component descends, the starting section can be driven to move. After the starting section moves, the pushing and fitting section can have an upward movement trend to act on the webbing to produce an upward fitting trend. The linkage toggle section can be intermittently toggled and flipped to change the template position during labeling. When the linkage toggle section is started, pressure can be generated on the spraying part so that the spraying part produces paint to act on the template.

[0006] As a further improvement of the present invention, the disc component comprises: A material pan base is arranged on the mounting plane, and a first driving motor is arranged on the material pan base; a rear pan roller rotatably disposed on the pan base; A lower pan roller rotatably disposed on the pan base; An upper material roller is rotatably arranged on the material base and is located obliquely above the lower material roller; A material tray, which is detachably arranged on the tray base; Among them, when the first drive motor is started, it can drive the rear material roller, lower material roller and upper material roller to rotate by engaging with the pulleys on the rear material roller, lower material roller and upper material roller through the belt.

[0007] As a further improvement of the present invention, the traction member includes: a traction base, which is detachably arranged on the mounting plane; a slide rail detachably mounted on the mounting plane; An electric cylinder is detachably arranged on the mounting plane, and has a traction plate on the output end of the electric cylinder. The traction base can pass through the traction plate, and the traction plate can slide on the slide rail; The clamping claw cylinder is detachably arranged on the traction plate.

[0008] As a further improvement of the present invention, one or two sets of gaskets can be detachably mounted on the traction plate, and the two sets of gaskets are respectively fitted with the clamping cylinder, and a rubber pad can be detachably mounted on the output end of the clamping cylinder.

[0009] As a further improvement of the present invention, the three-axis adjustment component includes: A first linear module is detachably arranged on the mounting plane; A slide rail rack is detachably arranged on the installation plane; A second linear module, one end of which is detachably mounted on the output end of the first linear module, and the other end of which is slidably arranged on the slide rail rack; The third linear module is detachably mounted on the output end of the second linear module.

[0010] As a further improvement of the present invention, the labeling component includes: a second driving motor having a double-headed gear plate detachably disposed thereon, and the double-headed gear plate is detachably connected to the output end of the third linear module; The coupling is detachably mounted on the output end of the second driving motor, and a pressing die is detachably mounted on the tail of the coupling.

[0011] As a further improvement of the present invention, the pushing and fitting section of the linkage template component includes: A base plate is detachably arranged in the workbench, and a labeling platform is detachably arranged on the base plate; A trigger tooth plate, which can pass through the bottom plate and the labeling platform, and a lifting plate is detachably provided on the top of the trigger tooth plate; A bottom rod is rotatably arranged on the bottom plate, a meshing wheel is detachably mounted on the middle portion of the bottom rod, and a lower linkage wheel is detachably mounted on both the left and right ends of the bottom rod; The linkage toggle section of the linkage template component includes side supports detachably arranged on the base plate; A vertical pole is rotatably arranged on the bottom plate and can pass through the side support. A lower driving wheel is provided at the bottom of the vertical pole, and the lower driving wheel is engaged with the lower linkage wheel. A shifting gear and a notched gear are provided on the vertical pole. A temple is detachably mounted on the side support, a lever is rotatably mounted inside the temple, a shifting wheel is provided at one end of the shifting wheel, and a running wheel is provided on the shifting wheel; A balancing rod capable of passing through the temple and the shift rod, and having a diagonal support at one end of the balancing rod; A spring, one end of which is connected to the diagonal support, and the other end of which is connected to the side support via a short rod; A clamping plate is arranged at the other end of the shifting rod and has a clamping cavity inside the clamping plate; The template has a flexible section at both ends that can penetrate into the clamping cavity, a V-shaped extraction plate is provided on the flexible section, and a plurality of guide grooves are also provided on the template.

[0012] As a further improvement of the present invention, the starting section of the linkage template component includes: an upper driving wheel detachably arranged on the top of the vertical pole; An extended gear rod is rotatably arranged on the side support, and an upper linkage wheel is detachably arranged on one tail end of the extended gear rod, and the upper linkage wheel and the upper drive wheel are engaged with each other. A side drive wheel is detachably installed on the other tail end of the extended gear rod, and the side drive wheel is engaged with the labeling component. When the labeling component moves downward, the side drive wheel can be driven to rotate.

[0013] As a further improvement of the present invention, the shifting gear is composed of a gear segment and a smooth segment, wherein the gear segment of the shifting gear occupies half of the shifting gear, and there is a gap between the shifting gear and the notched gear. The notched gear has a protruding segment, a crawling segment and a transition segment. The protruding segment of the notched gear is lower than the transition segment of the notched gear. The transition segment of the notched gear is connected to each other through the crawling segment and the protruding segment. In the initial position, the walking wheel and the transition segment of the notched gear are in contact with each other.

[0014] As a further improvement of the present invention, the spraying part includes an external box, an air bag filled with liquid dye is provided in the external box, a nozzle is provided at one end of the air bag, and the nozzle can pass through the external box, a pressure plate is provided in the external box, a penetrating rod is provided at one end of the pressure plate, and the penetrating rod can pass through the external box, a compression spring is provided on the penetrating rod, and a baffle is detachably provided on one tail end of the penetrating rod. In the initial position, the baffle conflicts with the diagonal support, and the nozzle is located on one side of the suction plate.

[0015] In general, the above technical solutions conceived by the present invention have the following beneficial effects compared with the prior art: 1. The fully automatic webbing labeling equipment of the present invention can drive the side driving wheel to rotate after the double-headed tooth plate moves downward, and then drive the upper linkage wheel to rotate. After the upper linkage wheel rotates, it can drive the upper driving wheel to rotate and drive the notched gear and the shifting gear to rotate, forcing the walking wheel to move along the transition section first. During the entire cycle of the walking wheel moving in the transition section, the lower driving wheel can be rotated and transmitted to the bottom rod and the meshing wheel to rotate, so that the triggering tooth plate and the lifting plate move upward as a whole. On the one hand, it can push upward to act on the webbing to generate an upward bonding trend, which can improve the tightness of the webbing to be labeled, avoiding the situation where the webbing is loose during labeling and causing label wrinkles. On the other hand, during the entire cycle of the walking wheel moving in the transition section, the spraying part cannot be forced to spray paint, which can avoid the situation where excessive paint overflows. 2. The fully automatic ribbon labeling equipment of the present invention can cause the lever to flip during the entire cycle of the movement of the walking wheel in the crawling section, and the flipping of the diagonal support can pull the spring to be stretched. On the one hand, it can push the spraying part to be compressed, so that the spraying part can release the dye into the absorption plate, realizing the periodic feeding situation. On the other hand, when the walking wheel is in the entire cycle of the movement of the crawling section, on the other hand, it can cause the template to have a rising trend, and at the same time, the side section of the flexible section is folded, so that the feeding liquid can be forced into the template; 3. The fully automatic webbing labeling equipment of the present invention can place the shifting wheel in a vertical position and make the shifting wheel engage with the shifting gear when the walking wheel moves in the protruding section, and can also make the template rotate. On the one hand, it can change the movement of the upper mold to the lower mold of the template, and use the double molds to label the webbing alternately. On the other hand, when the template is flipped, the flow area of ​​the dye on the template during the flipping process can be expanded to enhance the labeling effect of the webbing. Similarly, the lifting plate can further reduce the fitting distance between the webbing and the template during the continuous rising process, which can enhance the contact effect between the dye and the webbing. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 It is a schematic diagram of the overall structure of the fully automatic ribbon labeling equipment of the present invention; Figure 2 This is a structural diagram of the fully automatic ribbon labeling equipment of the present invention viewed from another angle; Figure 3 It is a schematic structural diagram of the overall disc component of the present invention; Figure 4 It is a schematic structural diagram of the entire traction member of the present invention; Figure 5 It is a structural schematic diagram of the three-axis adjustment component, the labeling component and the linkage template component of the present invention when they are combined with each other; Figure 6 It is a structural schematic diagram of the combination of the three-axis adjustment component and the labeling component of the present invention; Figure 7 It is a schematic structural diagram of the overall linkage template component of the present invention; Figure 8 This is a structural schematic diagram of the linkage template component viewed from another angle according to the present invention.

[0017] In all the drawings, the same reference numerals represent the same technical features, specifically: 1. Workbench; 2. Material tray component; 21. Material tray base; 22. First drive motor; 23. Rear material tray roller; 24. Lower material tray roller; 25. Upper material tray roller; 26. Material tray; 3. Traction member; 31. Traction base; 32. Slide rail; 33. Electric cylinder; 34. Traction plate; 35. Gripping cylinder; 4. Three-axis adjustment component; 41. First linear module; 42. Slide rail frame; 43. Second linear module; 44. Third linear module; 5. Labeling component; 51. Second drive motor; 52. Double-headed gear plate; 53. Coupling; 54. Pressing die; 6. Linkage template components; 61. Bottom plate; 62. Labeling platform; 63. Trigger gear plate; 64. Lifting plate; 65. Bottom rod; 66. Lower linkage wheel; 67. Engaging wheel; 68. Side support; 681. Vertical rod; 682. Lower drive wheel; 683. Shifting gear; 684. Notched gear; 685. Upper drive wheel; 686. Extended gear rod; 687. Side drive wheel; 688. Upper linkage wheel; 69. Side support; 691. Diverter rod; 692. Shifting wheel; 693. Travel wheel; 694. Balance rod; 695. Diagonal support; 696. Spring; 697. Spraying parts; 698. Card plate; 699. Template; 6991. Flexible section; 6992. Draw plate; 6993. Guide trough. DETAILED DESCRIPTION

[0018] 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.

[0019] The terms used herein are only for describing specific embodiments and are not intended to limit the present invention. The terms "comprise", "include", etc. used herein indicate the presence of the features, steps, operations and / or components, but do not exclude the presence or addition of one or more other features, steps, operations or components.

[0020] All terms used herein (including technical and scientific terms) have the meanings commonly understood by those skilled in the art unless otherwise defined. It should be noted that the terms used herein should be interpreted as having a meaning consistent with the context of this specification and should not be interpreted in an idealized or overly rigid manner.

[0021] In the embodiment, Figure 1-8 A fully automatic ribbon labeling device is provided, wherein: Figure 1 It is a schematic diagram of the overall structure of the fully automatic ribbon labeling equipment of the present invention; Figure 2 This is a structural diagram of the fully automatic ribbon labeling equipment of the present invention viewed from another angle; Figure 3 It is a schematic structural diagram of the overall disc component of the present invention; Figure 4 It is a schematic structural diagram of the entire traction member of the present invention; Figure 5 It is a structural schematic diagram of the three-axis adjustment component, the labeling component and the linkage template component of the present invention when they are combined with each other; Figure 6 It is a structural schematic diagram of the combination of the three-axis adjustment component and the labeling component of the present invention; Figure 7 It is a schematic structural diagram of the overall linkage template component of the present invention; Figure 8This is a structural diagram of the linkage template component when the present invention is viewed from another angle, which includes a workbench 1 with a mounting plane on it; a coiling component 2 for coiling the webbing, which is arranged on the mounting plane; a traction component 3 for pulling the webbing passing through the coiling component 2, which is arranged on the mounting plane; a three-axis adjustment component 4, which is arranged on the mounting plane and is located above the webbing; a labeling component 5 for labeling the webbing, which is removably arranged on the three-axis adjustment component 4 and can be adjusted by the three-axis adjustment component 4 along six directions: front, back, left, right, up, and down; the linkage template component 1 is a workbench with a mounting plane on it; a coiling component 2 for coiling the webbing, which is arranged on the mounting plane; a traction component 3 for pulling the webbing passing through the coiling component 2, which is arranged on the mounting plane; a three-axis adjustment component 4 for pulling the webbing; a three-axis adjustment component 5 for labeling the webbing; a three-axis adjustment component 4 ... The plate component 6 has a spraying part 697 therein, which is composed of a pushing and fitting section, a linkage toggle section connected to the pushing and fitting section, and a starting section connected to the linkage toggle section. When the labeling component 5 descends, the starting section can be driven to move. After the starting section moves, the pushing and fitting section can have an upward movement trend to act on the webbing to produce an upward fitting trend. The linkage toggle section can be intermittently toggled and flipped to change the template position during labeling. When the linkage toggle section is started, pressure can be generated on the spraying part 697 to cause the spraying part 697 to produce paint to act on the template.

[0022] The present invention is based on an overall idea that, through the arrangement of the linkage template member 6, when the double-headed tooth plate 52 moves down, it can drive the side drive wheel 687 to rotate, and then drive the upper linkage wheel 688 to rotate. After the upper linkage wheel 688 rotates, it can drive the upper drive wheel 685 to rotate and drive the notched gear 684 and the shifting gear 683 to rotate, forcing the walking wheel 693 to move along the transition section first. During the entire cycle of the walking wheel 693 moving in the transition section, it can make the lower drive wheel 682 rotate and transmit the rotation to the bottom rod 65 and the meshing wheel 67. The movement of the travel wheel 693 in the transition section can not force the spraying part 697 to spray the paint, which can avoid the excessive overflow of the paint. During the entire cycle of the movement of the travel wheel 693 in the crawling section, the lever 691 can be flipped, and the flip of the diagonal support 695 can pull the elastic member 697 to release the paint. The spring 696 is stretched. On the one hand, it can push the spraying part 697 to be compressed, so that the spraying part 697 can release the dye into the drawing plate 6992 to achieve periodic feeding. On the other hand, when the walking wheel 693 is in the entire cycle of the crawling section, it can make the template 699 have an upward trend. At the same time, the side section of the flexible section 6991 is folded, which can force the feeding liquid to flow to the template 699. When the walking wheel 693 moves in the protruding section, it can put the displacement wheel 692 in a vertical position and make the displacement wheel 692 Wheel 692 is engaged with the shifting gear 683 and can rotate the template 699. On the one hand, it can change the movement of the upper mold to the lower mold of the template 699 and use the double molds to label the ribbon alternately. On the other hand, when the template 699 is flipped, the flow area of ​​the dye on the template 699 can be expanded during the flipping process to enhance the labeling effect of the ribbon. Similarly, the lifting plate 64 can further reduce the fitting distance between the ribbon and the template 699 during the continuous rising process, which can enhance the contact effect between the dye and the ribbon.

[0023] Next, a more specific structure and construction of the entire material disc component 2 is given for further explanation. The material disc component 2 includes a material disc base 21, which is arranged on the mounting plane, and a first drive motor 22 is arranged on the material disc base 21; a rear material disc roller 23, which is rotatably arranged on the material disc base 21; a lower material disc roller 24, which is rotatably arranged on the material disc base 21; an upper material disc roller 25, which is rotatably arranged on the material disc base 21, and the upper material disc roller 25 is located obliquely above the lower material disc roller 24; a material disc 26, which is detachably arranged on the material disc base 21; wherein, when the first drive motor 22 is started, it can drive the rear material disc roller 23, the lower material disc roller 24, and the upper material disc roller 25 to rotate by engaging with the pulleys on the rear material disc roller 23, the lower material disc roller 24, and the upper material disc roller 25 through a belt; Then, the overall usage principle and effect of the material disc component 2 are further explained. The staff places the ribbon roll on the material disc 26, pulls out the ribbon roll, and passes it through the rear material disc roller 23, the lower material disc roller 24, and the upper material disc roller 25 in turn. By turning on the first drive motor 22, the belt can be engaged with the pulleys on the rear material disc roller 23, the lower material disc roller 24, and the upper material disc roller 25 to drive the rear material disc roller 23, the lower material disc roller 24, and the upper material disc roller 25 to rotate.

[0024] Next, the overall structure and construction of the traction member 3 will be given a more specific explanation. The traction member 3 includes a traction base 31, which is detachably arranged on the mounting surface; a slide rail 32, which is detachably mounted on the mounting surface; an electric cylinder 33, which is detachably arranged on the mounting surface. A traction plate 34 is provided at the output end of the electric cylinder 33. The traction plate 34 can pass through the traction base 31 and can slide on the slide rail 32; and a clamping claw cylinder 35, which is detachably arranged on the traction plate 34. Next, the overall usage principle and effect of the traction component 3 are further explained. First, by turning on the clamping claw cylinder 35, the webbing can be clamped and positioned. By turning on the electric cylinder 33, the traction plate 34 can be pushed, and the traction plate 34 can be made to slide on the traction base 31 and the slide rail 32, so that the webbing can be pulled and transferred.

[0025] In some embodiments, more specifically, one or two sets of gaskets are detachably mounted on the traction plate 34 , and the two sets of gaskets are respectively fitted with the clamping cylinder 35 , and a rubber pad is detachably mounted on the output end of the clamping cylinder 35 .

[0026] Next, the three-axis adjustment component 4 is given a more specific structure and construction for further explanation. The three-axis adjustment component 4 includes a first linear module 41, which is detachably arranged on the installation plane; a slide rail frame 42, which is detachably arranged on the installation plane; a second linear module 43, one end of which is detachably mounted on the output end of the first linear module 41, and the other end of the second linear module 43 is slidably arranged on the slide rail frame 42; a third linear module 44, which is detachably mounted on the output end of the second linear module 43; Next, the use principle and effect of the three-axis adjustment component 4 as a whole are further explained. By turning on the first linear module 41, the second linear module 43 can be driven to move along the front and back position as a whole. By turning on the second linear module 43, the left and right positions of the third linear module 44 can be completed. By turning on the third linear module 44, the position of the labeling component 5 as a whole in the up and down directions can be changed, and then the front, back, left, right, up and down positions of the labeling component 5 as a whole can be quickly changed.

[0027] It should also be noted that the first linear module 41, the second linear module 43, and the third linear module 44 are all known components in the prior art. It should also be noted that the linear module is driven by a motor through a pulley to rotate the screw, and the ball base is driven forward or backward by the rotation of the screw. This is a known component in the prior art, so it will not be described in detail in this application.

[0028] Next, the overall structure and construction of the labeling component 5 will be given a more specific explanation. The labeling component 5 includes a second drive motor 51, on which a double-headed tooth plate 52 is detachably arranged, and the double-headed tooth plate 52 is detachably connected to the output end of the third linear module 44; a coupling 53, which is detachably mounted on the output end of the second drive motor 51, and a pressing die 54 is detachably mounted at the tail end of the coupling 53; Next, the overall use principle and effect of the labeling component 5 will be further explained. The staff can drive the die 54 to rotate by turning on the second drive motor 51, so that the die 54 is in a suitable labeling position.

[0029] Next, a more specific structure and construction of the linkage template component 6 is given as a whole for further explanation. The pushing and fitting section of the linkage template component 6 includes a bottom plate 61, which is detachably arranged in the workbench 1, and a labeling platform 62 is detachably arranged on the bottom plate 61; a trigger tooth plate 63, which can pass through the bottom plate 61 and the labeling platform 62, and a lifting plate 64 is detachably arranged on the top of the trigger tooth plate 63; a bottom rod 65, which is rotatably arranged on the bottom plate 61, and a meshing wheel 67 is detachably installed in the middle of the bottom rod 65, and a gear 67 is detachably installed on the left and right ends of the bottom rod 65. A lower linkage wheel 66; the linkage toggle section of the linkage template member 6 includes a side support 68, which is detachably arranged on the base plate 61; a vertical rod 681, which is rotatably arranged on the base plate 61, and the vertical rod 681 can pass through the side support 68, and a lower driving wheel 682 is provided at the bottom of the vertical rod 681, and the lower driving wheel 682 is engaged with the lower linkage wheel 66, and a shifting gear 683 and a notched gear 684 are provided on the vertical rod 681; a side support 69, which is detachably arranged on the side support 68, and a shifting rod 691 is rotatably arranged in the side support 69, and a shifting wheel 692 is provided at one end of the shifting rod 691. , a walking wheel 693 is provided on the shifting wheel 692; a balance bar 694, which can pass through the side support 69 and the shift rod 691, and a diagonal support 695 is provided on one end of the balance bar 694; a spring 696, one end of which is connected to the diagonal support 695, and the other end of the spring 696 is connected to the side support 68 through a short rod; a card plate 698, which is arranged at the other end of the shift rod 691, and has a clamping cavity in the card plate 698; a template 699, both ends of which have a flexible section 6991 that can penetrate into the clamping cavity, and a V-shaped drawing plate 6992 is provided on the flexible section 6991, and a V-shaped drawing plate 6992 is provided on the template 699. It also has multiple groups of guide grooves 6993. The starting section of the linkage template component 6 includes an upper driving wheel 685, which is detachably arranged on the top of the vertical pole 681; an extended gear rod 686, which is rotatably arranged on the side support 68, and an upper linkage wheel 688 is detachably arranged on one tail end of the extended gear rod 686, and the upper linkage wheel 688 and the upper driving wheel 685 are engaged with each other. A side driving wheel 687 is detachably installed on the other tail end of the extended gear rod 686, and the side driving wheel 687 is engaged with the labeling component 5. When the labeling component 5 moves downward, it can drive the side driving wheel 687 to rotate.

[0030] Next, the overall use principle and effect of the linkage template component 6 are further explained. When the double-headed tooth plate 52 moves downward, it can drive the side drive wheel 687 to rotate, and then drive the upper linkage wheel 688 to rotate. When the upper linkage wheel 688 rotates, it can drive the upper drive wheel 685 to rotate and drive the notched gear 684 and the shifting gear 683 to rotate, forcing the walking wheel 693 to move along the transition section first. During the entire cycle of the walking wheel 693 moving in the transition section, it can make the lower drive wheel 682 rotate and transmit the rotation to the bottom rod 65 and the meshing wheel 67. The rotation causes the trigger tooth plate 63 and the lifting plate 64 to move upward as a whole. On the one hand, it can push upward to act on the webbing to produce an upward fitting trend, which can increase the tightness of the webbing to be labeled, and avoid the situation where the webbing is loose and causes wrinkles when labeling. On the other hand, during the entire cycle of the movement of the walking wheel 693 in the transition section, it is impossible to force the spraying part 697 to spray paint, which can avoid the situation of excessive overflow of paint. During the entire cycle of the movement of the walking wheel 693 in the crawling section, the lever 691 can be flipped, and the tilting support 695 can be flipped to pull The spring 696 is stretched. On the one hand, it can push the spraying part 697 to be compressed, so that the spraying part 697 can release the dye into the drawing plate 6992 to achieve periodic feeding. On the other hand, when the walking wheel 693 is in the entire cycle of the crawling section movement, on the other hand, it can make the template 699 have an upward trend. At the same time, the side section of the flexible section 6991 is folded, which can force the feeding liquid to flow to the template 699. When the walking wheel 693 moves in the protruding section, it can put the displacement wheel 692 in a vertical position and make the displacement wheel Wheel 692 is engaged with the shifting gear 683 and can rotate the template 699. On the one hand, it can change the movement of the upper mold to the lower mold of the template 699 and use the double molds to label the ribbon alternately. On the other hand, when the template 699 is flipped, the flow area of ​​the dye on the template 699 can be expanded during the flipping process to enhance the labeling effect of the ribbon. Similarly, the lifting plate 64 can further reduce the fitting distance between the ribbon and the template 699 during the continuous rising process, which can enhance the contact effect between the dye and the ribbon.

[0031] In some embodiments, more specifically, the shifting gear 683 is composed of a gear segment and a smooth segment, wherein the gear segment of the shifting gear 683 occupies half of the shifting gear 683, and there is a gap between the shifting gear 683 and the notched gear 684. The notched gear 684 has a protruding segment, a crawling segment and a transition segment. The protruding segment of the notched gear 684 is lower than the transition segment of the notched gear 684. The transition segment of the notched gear 684 is connected to each other through the crawling segment and the protruding segment. In the initial position, the walking wheel 693 and the transition segment of the notched gear 684 are in contact with each other.

[0032] Next, the spraying member 697 is given a more specific structure and construction for further explanation. The spraying member 697 includes an external box, an air bag filled with liquid dye, a nozzle at one end of the air bag, and the nozzle can pass through the external box. The external box has a pressure plate, and a penetrating rod at one end of the pressure plate can pass through the external box. A compression spring is mounted on the penetrating rod, and a baffle is detachably mounted on one end of the penetrating rod. In the initial position, the baffle contacts the diagonal support 695, and the nozzle is located on one side of the extraction plate 6992. Next, the overall use principle and effect of the spray part 697 are further explained. When the diagonal support 695 touches the baffle, it can push the pressure plate to press the airbag, so that the airbag releases the dye into the suction plate 6992 to complete the dye injection operation.

[0033] In summary, through the arrangement of the linkage template component 6, when the double-headed tooth plate 52 moves downward, it can drive the side driving wheel 687 to rotate, and then drive the upper linkage wheel 688 to rotate. After the upper linkage wheel 688 rotates, it can drive the upper driving wheel 685 to rotate and drive the notched gear 684 and the shifting gear 683 to rotate, forcing the walking wheel 693 to move along the transition section first. During the entire cycle of the walking wheel 693 moving in the transition section, it can make the lower driving wheel 682 rotate and transmit the rotation to the bottom rod 65 and the meshing wheel 67, so that the tooth plate 63 is triggered. The lifting plate 64 moves upward as a whole. On the one hand, it can push upward to act on the webbing to produce an upward fitting trend, which can increase the tightness of the webbing to be labeled and avoid the webbing loosening during labeling, resulting in wrinkles on the labeling. On the other hand, during the entire cycle of the movement of the walking wheel 693 in the transition section, it cannot force the spraying part 697 to spray paint, which can avoid the excessive overflow of paint. During the entire cycle of the movement of the walking wheel 693 in the crawling section, the lever 691 can be flipped, and the flip of the diagonal support 695 can pull the spring 696 to be pulled On the one hand, it can push the spraying part 697 to be compressed, so that the spraying part 697 can release the dye into the drawing plate 6992 to achieve periodic feeding. On the other hand, when the walking wheel 693 is in the entire cycle of the crawling section, it can make the template 699 have an upward trend. At the same time, the side section of the flexible section 6991 is folded, which can force the feeding liquid to flow to the template 699. When the walking wheel 693 moves in the protruding section, it can put the shifting wheel 692 in a vertical position and make the shifting wheel 69 2 is engaged with the shifting gear 683 and can rotate the template 699. On the one hand, it can change the movement of the upper mold to the lower mold of the template 699 and use the double molds to label the ribbon alternately. On the other hand, when the template 699 is flipped, the flow area of ​​the dye on the template 699 during the flipping process can be expanded to enhance the labeling effect of the ribbon. Similarly, the lifting plate 64 can further reduce the fitting distance between the ribbon and the template 699 during the continuous rising process, which can enhance the contact effect between the dye and the ribbon.

[0034] While embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions, and variations may be made to these embodiments without departing from the principles and spirit of the invention, and that the scope of the invention is defined by the appended claims and their equivalents.

Claims

1. A fully automatic ribbon labeling equipment, characterized in that, It includes: A workbench (1) having a mounting surface thereon; A coiling member (2) for coiling the webbing, arranged on the mounting plane; A traction member (3) for pulling the webbing passing through the coil member (2), arranged on the installation plane; A three-axis adjustment component (4) is arranged on the installation plane, and the three-axis adjustment component (4) is located above the webbing; A labeling component (5) for labeling the webbing, which is removably arranged on the three-axis adjustment component (4) and can be adjusted by the three-axis adjustment component (4) along six directions: front, back, left, right, up, and down; The linkage template component (6) has a spraying part (697) therein, which is composed of a pushing and fitting section, a linkage toggle section connected to the pushing and fitting section, and a starting section connected to the linkage toggle section, wherein when the labeling component (5) descends, the starting section can be driven to move, and after the starting section moves, the pushing and fitting section can generate an upward movement trend to act on the ribbon to generate an upward fitting trend, the linkage toggle section can intermittently toggle and flip to change the template position during labeling, and when the linkage toggle section is activated, pressure can be generated on the spraying part (697) so that the spraying part (697) generates paint to act on the template.

2. The fully automatic ribbon labeling equipment according to claim 1, characterized in that: The disc component (2) comprises: A material tray base (21) is arranged on the mounting plane, and a first drive motor (22) is arranged on the material tray base (21); A rear material roller (23) is rotatably arranged on the material base (21); A lower plate roller (24) rotatably disposed on the plate base (21); An upper material roller (25) is rotatably arranged on the material base (21), and the upper material roller (25) is located obliquely above the lower material roller (24); A material tray (26) is detachably arranged on the tray base (21); When the first drive motor (22) is started, it can drive the rear material roller (23), the lower material roller (24), and the upper material roller (25) to rotate by engaging with the pulleys on the rear material roller (23), the lower material roller (24), and the upper material roller (25) through a belt.

3. The fully automatic ribbon labeling equipment according to claim 2, characterized in that: The traction member (3) comprises: A traction base (31) is detachably arranged on the mounting plane; A slide rail (32) detachably mounted on the mounting plane; An electric cylinder (33) is detachably arranged on the mounting plane, and a traction plate (34) is provided on the output end of the electric cylinder (33), and the traction plate (34) can be passed through by the traction base (31), and the traction plate (34) can slide on the slide rail (32); The clamping claw cylinder (35) is detachably arranged on the traction plate (34).

4. The fully automatic ribbon labeling equipment according to claim 3, characterized in that: One or two sets of gaskets are detachably mounted on the traction plate (34), and the two sets of gaskets are respectively fitted to the clamping cylinder (35). A rubber pad is detachably mounted on the output end of the clamping cylinder (35).

5. The fully automatic ribbon labeling equipment according to claim 3, characterized in that: The three-axis adjustment component (4) comprises: A first linear module (41) is detachably arranged on the mounting plane; A slide rail rack (42) is detachably arranged on the mounting plane; A second linear module (43), one end of which is detachably mounted on the output end of the first linear module (41), and the other end of which is slidably arranged on the slide rail frame (42); The third linear module (44) is detachably mounted on the output end of the second linear module (43).

6. The fully automatic ribbon labeling equipment according to claim 5, characterized in that: The labeling component (5) comprises: A second drive motor (51) is detachably provided with a double-headed tooth plate (52), and the double-headed tooth plate (52) is detachably connected to the output end of the third linear module (44); The coupling (53) is detachably mounted on the output end of the second drive motor (51), and a pressing die (54) is also detachably mounted on the tail of the coupling (53).

7. The fully automatic ribbon labeling equipment according to claim 6, characterized in that: The push-fit section of the linkage template component (6) includes: A bottom plate (61) is detachably arranged in the workbench (1), and a labeling platform (62) is detachably arranged on the bottom plate (61); A trigger tooth plate (63) is capable of passing through the bottom plate (61) and the labeling platform (62), and a lifting plate (64) is detachably provided on the top of the trigger tooth plate (63); A bottom rod (65) is rotatably arranged on the bottom plate (61), a meshing wheel (67) is detachably mounted on the middle portion of the bottom rod (65), and a lower linkage wheel (66) is detachably mounted on both the left and right ends of the bottom rod (65); The linkage toggle section of the linkage template component (6) includes Side supports (68) detachably arranged on the bottom plate (61); A vertical rod (681) is rotatably arranged on the bottom plate (61) and can pass through the side support (68). A lower driving wheel (682) is provided at the bottom of the vertical rod (681), and the lower driving wheel (682) is engaged with the lower linkage wheel (66). A shifting gear (683) and a notched gear (684) are provided on the vertical rod (681); A side support (69) is detachably arranged on the side support (68), a shifting rod (691) is rotatably arranged in the side support (69), a shifting wheel (692) is provided at one end of the shifting rod (691), and a running wheel (693) is provided on the shifting wheel (692); A balancing rod (694) capable of passing through the side support (69) and the shift rod (691), with a diagonal support (695) at one end of the balancing rod (694); A spring (696), one end of which is connected to the diagonal support (695), and the other end of which is connected to the side support (68) via a short rod; A clamping plate (698) is arranged at the other end of the shifting rod (691), and a clamping cavity is formed in the clamping plate (698); The template (699) has a flexible section (6991) at both ends that can penetrate into the clamp cavity, a V-shaped extraction plate (6992) is provided on the flexible section (6991), and a plurality of guide grooves (6993) are also provided on the template (699).

8. The fully automatic ribbon labeling equipment according to claim 7, characterized in that: The starting section of the linkage template component (6) includes: An upper driving wheel (685) is detachably arranged on the top of the vertical pole (681); An extended gear rod (686) is rotatably arranged on the side support (68), and an upper linkage wheel (688) is detachably arranged on one tail end of the extended gear rod (686), and the upper linkage wheel (688) and the upper drive wheel (685) are meshed with each other. A side drive wheel (687) is detachably mounted on the other tail end of the extended gear rod (686), and the side drive wheel (687) and the labeling component (5) are meshed with each other. When the labeling component (5) moves downward, the side drive wheel (687) can be driven to rotate.

9. The fully automatic ribbon labeling equipment according to claim 8, characterized in that: The shifting gear (683) is composed of a gear section and a smooth section, wherein the gear section of the shifting gear (683) occupies half of the shifting gear (683), and there is a gap between the shifting gear (683) and the notched gear (684). The notched gear (684) has a protruding section, a crawling section, and a transition section. The protruding section of the notched gear (684) is lower than the transition section of the notched gear (684). The transition section of the notched gear (684) is connected to each other through the crawling section and the protruding section. In the initial position, the walking wheel (693) and the transition section of the notched gear (684) abut against each other.

10. The fully automatic ribbon labeling equipment according to claim 9, characterized in that: The spraying part (697) includes an external box, an air bag filled with liquid dye is provided in the external box, a nozzle is provided at one end of the air bag, and the nozzle can pass through the external box, a pressure plate is provided in the external box, a penetration rod is provided at one end of the pressure plate, and the penetration rod can pass through the external box, a compression spring is provided on the penetration rod, and a baffle is detachably provided on one end of the penetration rod. In the initial position, the baffle is in conflict with the diagonal support (695), and the nozzle is located on one side of the extraction plate (6992).

Citation Information

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