Nameplate marking and labeling all-in-one machine
By designing an integrated nameplate marking and labeling machine, multiple mechanisms are integrated to achieve laser engraving and labeling in one process, solving the problem of low efficiency caused by the separation of nameplate marking and labeling in existing technologies, and improving work efficiency and positioning accuracy.
Patent Information
- Application Number
- CN202422254510.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-13
- Publication Date
- 2025-11-21
- Estimated Expiration
- 2034-09-13
AI Technical Summary
In existing technologies, the laser marking and labeling processes for nameplates are carried out separately, resulting in low efficiency and high labor intensity.
Design a nameplate marking and labeling integrated machine that integrates a three-axis positioning mechanism, a first laser engraving machine, a conveying mechanism, a label feeding mechanism, a labeling mechanism, and a detection mechanism to achieve automated integrated operation of laser engraving and labeling.
It improves the efficiency of nameplate marking and labeling, reduces the labor intensity of workers, and improves positioning accuracy and work efficiency.
Smart Images

Figure CN223572208U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to laser marking technical field, in particular to a nameplate marking and labeling integrated machine. BACKGROUND
[0002] At present, the nameplate is the plate nameplate that product puts on the market, is fixed on the product and provides the factory trademark identification, brand distinction, product parameter inscription and so on information, is mainly used to record the manufacturer and some technical data under the rated working condition, is used for correct use and does not cause the equipment made nameplate material to have metal and nonmetal respectively, metal has zinc alloy, copper, iron, aluminum, stainless steel and so on, nonmetal has plastic, acrylic organic board, PVC, PC, paper and so on.
[0003] At present, the laser marking machine on the market does not add the labeling mechanism, and laser marking and labeling are two actions, and manual marking is carried out on the nameplate from the laser machine, characters and graphics composed of continuous dot matrix are printed on the nameplate by laser, and then the product is labeled on the labeling machine, so that the efficiency is low, the labor intensity is increased, and therefore a nameplate marking and labeling integrated machine is urgently needed. UTILITY MODEL CONTENTS
[0004] Therefore, the utility model discloses a nameplate marking and labeling integrated machine, which has the functions of laser marking and labeling, greatly reduces the operation labor intensity of workers and improves work efficiency.
[0005] The utility model discloses the following technical scheme realizes the purpose:
[0006] A nameplate marking and labeling integrated machine, comprising a rack, a three-axis positioning mechanism, a first laser engraving machine, a conveying mechanism, a label supply mechanism, a labeling mechanism and a detection mechanism are arranged on the rack, the label supply mechanism and the conveying mechanism are arranged below the three-axis positioning mechanism, and the labeling mechanism and the detection mechanism are arranged on the three-axis positioning mechanism.
[0007] The conveying mechanism is horizontally arranged on the rack and is used for conveying the product to be labeled into the labeling station from the outside of the rack.
[0008] The label supply mechanism is arranged on one side of the conveying mechanism and is used for conveying the bottom paper with the nameplate to the first laser engraving machine for laser engraving.
[0009] The labeling mechanism and the detection mechanism slide along the three-axis positioning mechanism and can be positioned at any point in the range of the three-axis positioning mechanism, the labeling mechanism is used for moving and taking the nameplate and pasting the nameplate on the product to be labeled, and the detection mechanism is used for detecting the engraving quality and pasting quality of the nameplate.
[0010] Further, the three-axis positioning mechanism is arranged on the rack through a gantry support, comprising an X-axis linear module, a Y-axis linear module and a Z-axis linear module, the Y-axis linear module is arranged horizontally on the rack, the X-axis linear module is slidably arranged on the Y-axis linear module, the X-axis linear module moves along the Y-axis linear module, the Z-axis linear module is slidably arranged on the X-axis linear module, the Z-axis linear module moves along the X-axis linear module, the labeling mechanism and the detection mechanism are slidably arranged on the Z-axis linear module, and the labeling mechanism and the detection mechanism move along the Z-axis linear module.
[0011] Further, the conveying mechanism comprises a conveying track and a jacking assembly; the conveying track is arranged horizontally on the rack and is used for conveying the product to be labeled; and the jacking assembly is arranged on the rack along the conveying track and is used for positioning the product to be labeled at the labeling station.
[0012] Further, the label supply mechanism comprises a longitudinal transmission assembly, a feeding reel, a positioning assembly, a label peeling assembly and a winding assembly.
[0013] The longitudinal transmission assembly comprises a longitudinal guide rail arranged on one side of the conveying mechanism, a longitudinal transmission seat slidably arranged on the longitudinal guide rail, and a first air cylinder mounted on the rack and used for driving the longitudinal transmission seat to move along the longitudinal guide rail.
[0014] The first laser engraving machine is arranged above the longitudinal guide rail, and the feeding reel, the positioning assembly, the label peeling assembly and the winding assembly are sequentially mounted on the longitudinal transmission seat along the direction of the base paper transmission.
[0015] Further, the feeding reel is further provided with a guide wheel below, and the feeding reel and the guide wheel are used for transferring the base paper with the nameplate adhered thereto.
[0016] The winding assembly is arranged below the feeding reel, and the winding assembly comprises a winding wheel, a tensioning roller and a driving motor used for driving the winding wheel, and the winding assembly is used for synchronously winding the base paper.
[0017] Further, the positioning assembly is arranged in front of the guide wheel along the direction of the base paper transmission, and the positioning assembly comprises a pressing air cylinder, a pressing block connected to the output end of the pressing air cylinder, and a suction platform arranged below the pressing air cylinder, the upper surface of the suction platform is provided with a plurality of suction holes, and the lower surface of the suction platform is provided with a vacuum interface.
[0018] Further, the label stripping assembly is arranged in front of the positioning assembly along the base paper conveying direction, and the label stripping assembly comprises a laser engraving platform and a label stripping platform, the label stripping platform is horizontally arranged in front of the laser engraving platform, a cutting edge is arranged at one end of the laser engraving platform and faces the label stripping platform, the cutting edge cooperates with the label stripping platform to strip the label and the base paper, and a plurality of rollers for guiding the base paper are arranged below the label stripping assembly to guide and convey the base paper after the label is stripped.
[0019] Further, the label stripping assembly is arranged in front of the positioning assembly along the base paper conveying direction, and the label stripping assembly comprises a laser engraving platform and a label stripping platform, the label stripping platform is horizontally arranged in front of the laser engraving platform, a cutting edge is arranged at one end of the laser engraving platform and faces the label stripping platform, the cutting edge cooperates with the label stripping platform to strip the label and the base paper, and a plurality of rollers for guiding the base paper are arranged below the label stripping assembly to guide and convey the base paper after the label is stripped.
[0020] Further, the label stripping assembly is arranged in front of the positioning assembly along the base paper conveying direction, and the label stripping assembly comprises a laser engraving platform and a label stripping platform, the label stripping platform is horizontally arranged in front of the laser engraving platform, a cutting edge is arranged at one end of the laser engraving platform and faces the label stripping platform, the cutting edge cooperates with the label stripping platform to strip the label and the base paper, and a plurality of rollers for guiding the base paper are arranged below the label stripping assembly to guide and convey the base paper after the label is stripped.
[0021] Further, the label stripping assembly is arranged in front of the positioning assembly along the base paper conveying direction, and the label stripping assembly comprises a laser engraving platform and a label stripping platform, the label stripping platform is horizontally arranged in front of the laser engraving platform, a cutting edge is arranged at one end of the laser engraving platform and faces the label stripping platform, the cutting edge cooperates with the label stripping platform to strip the label and the base paper, and a plurality of rollers for guiding the base paper are arranged below the label stripping assembly to guide and convey the base paper after the label is stripped.
[0022] The label marking and labeling all-in-one machine has the advantages that:
[0023] The label marking and labeling all-in-one machine has the advantages that:
[0024] The label marking and labeling all-in-one machine has the advantages that: BRIEF DESCRIPTION OF DRAWINGS
[0025] Figure 1 The label marking and labeling all-in-one machine has the advantages that:
[0026] Figure 2 The label marking and labeling all-in-one machine has the advantages that:
[0027] Figure 3 The label marking and labeling all-in-one machine has the advantages that:
[0028] Figure 4The utility model discloses a structure schematic diagram of the label supply mechanism in the nameplate marking and labeling integrated machine.
[0029] Figure 5 The utility model discloses a structure schematic diagram of the label supply mechanism in the nameplate marking and labeling integrated machine.
[0030] Figure 6 The utility model discloses a structure schematic diagram of the label supply mechanism in the nameplate marking and labeling integrated machine.
[0031] Reference signs:
[0032] 10 - rack;
[0033] 20 - three -axis positioning mechanism;21 - gantry support;22 - X -axis linear module;23 - Y -axis linear module;24 - Z -axis linear module;
[0034] 30 - first laser engraving machine;31 - second laser engraving machine;
[0035] 40 - conveying mechanism;41 - conveying track;42 - jacking assembly;
[0036] 50 - label supply mechanism;51 - longitudinal transmission assembly;511 - longitudinal guide rail;512 - longitudinal transmission seat;513 - first air cylinder;52 - feeding reel;521 - guide wheel;53 - positioning assembly;531 - press -down air cylinder;532 - pressing block;533 - adsorption platform;54 - label stripping assembly;541 - laser engraving platform;542 - label stripping platform;543 - knife edge;544 - roller;55 - winding assembly;551 - winding wheel;552 - tensioning roller;553 - drive motor;
[0037] 60 - labeling mechanism;61 - rotary air cylinder;62 - vacuum generator group;63 - suction cup;
[0038] 70 - detection mechanism;71 - light source;72 - scanning camera. DETAILED DESCRIPTION
[0039] The technical scheme in the embodiments of the utility model will be described clearly and completely below in conjunction with the drawings in the embodiments of the utility model, and apparently, the described embodiments are only part of the embodiments of the utility model, not all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by the person skilled in the art without creative labor fall within the protection scope of the utility model.
[0040] In the description of this utility model, it should be noted that the terms "vertical direction," "up," "down," and "horizontal," etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are used only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this utility model. In addition, "first," "second," "third," and "fourth" are used for descriptive purposes only and should not be construed as indicating or implying relative importance.
[0041] In the description of this utility model, it should also be noted that, unless otherwise explicitly specified and limited, the terms "set," "install," "connect," and "link" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or a connection through an intermediate medium; and they can refer to the internal communication between two components. Those skilled in the art can understand the specific meaning of the above terms in this utility model according to the specific circumstances.
[0042] like Figures 1 to 6 As shown, this utility model embodiment provides a nameplate marking and labeling integrated machine, including a frame 10. The frame 10 is provided with a three-axis positioning mechanism 20, a first laser engraving machine 30, a second laser engraving machine 31, a conveying mechanism 40, a label feeding mechanism 50, a labeling mechanism 60, and a detection mechanism 70. The label feeding mechanism 50 and the conveying mechanism 40 are located below the three-axis positioning mechanism 20, and the labeling mechanism 60 and the detection mechanism 70 are located on the three-axis positioning mechanism 20.
[0043] The conveying mechanism 40 is horizontally mounted on the frame 10 and is used to send the product to be labeled from the outside of the frame 10 into the labeling station.
[0044] The label feeding mechanism 50 is located on one side of the conveying mechanism 40 and is used to convey the base paper with the nameplate attached to it to the first laser engraving machine 30 for laser engraving.
[0045] The labeling mechanism 60 and the inspection mechanism 70 slide along the three-axis positioning mechanism 20 and can be positioned at any point within the range of the three-axis positioning mechanism 20. The labeling mechanism 60 is used to pick up the nameplate and apply it to the product to be labeled. The second laser engraving machine 31 is set above the conveying mechanism 40. The second laser engraving machine 31 performs a second laser engraving on the nameplate on the product. The inspection mechanism 70 is used to inspect the engraving quality and application quality of the nameplate.
[0046] In this embodiment, as Figures 1 to 2As shown, the three-axis positioning mechanism 20 is arranged on the rack 10 through the gantry support 21, and includes an X-axis linear module 22, a Y-axis linear module 23 and a Z-axis linear module 24. The Y-axis linear module 23 is arranged horizontally on the rack 10, the X-axis linear module 22 is slidably arranged on the Y-axis linear module 23, the X-axis linear module 22 moves along the Y-axis linear module 23, the Z-axis linear module 24 is slidably arranged on the X-axis linear module 22, and the Z-axis linear module 24 moves along the X-axis linear module 22. The labeling mechanism 60 and the detection mechanism 70 are slidably arranged on the Z-axis linear module 24, and the labeling mechanism 60 and the detection mechanism 70 move along the Z-axis linear module 24.
[0047] Specifically, the three-axis positioning mechanism 20 includes the X-axis linear module 22, the Y-axis linear module 23 and the Z-axis linear module 24, i.e., the X-axis, the Y-axis and the Z-axis form a three-dimensional coordinate, and the labeling mechanism 60 can be positioned at any point in the three-dimensional coordinate. The Y-axis is arranged in the front-rear direction of the rack 10, the X-axis is arranged horizontally on the Y-axis, the X-axis can slide forward and backward along the Y-axis, the Z-axis is arranged vertically on the X-axis, and the Z-axis can slide laterally along the X-axis. The labeling mechanism 60 is arranged on the Z-axis, and the labeling mechanism 60 can slide up and down along the Z-axis. That is, the Y-axis is fixed, the X-axis can slide forward and backward on the Y-axis, and the Z-axis can slide left and right on the X-axis. The labeling mechanism 60 slides up and down along the Z-axis, so that the labeling mechanism 60 can be positioned at any point in the three-dimensional coordinate, and the positioning accuracy and convenience of the labeling mechanism 60 are improved.
[0048] In this embodiment, as shown in Figures 1 to 3 The conveying mechanism 40 includes a conveying track 41 and a jacking assembly 42. The conveying track 41 is arranged horizontally on the rack 10 and is used for conveying the product to be labeled. The jacking assembly 42 is arranged on the rack 10 along the conveying track 41 and is used for positioning the product to be labeled at the labeling station. The conveying track 41 and the jacking assembly 42 are conventional technologies in the field. The conveying track 41 includes guide rails mounted on the rack 10, a driving shaft and a driving mechanism. The jacking assembly 42 includes a bottom plate mounted on the rack 10, a jacking cylinder mounted on the bottom plate, a positioning plate connected to the output end of the jacking cylinder, and jacking guide columns connected between the positioning plate and the bottom plate.
[0049] In this embodiment, as shown in Figure 1 , Figure 2 and Figure 4 The labeling mechanism 50 includes a longitudinal transmission assembly 51, a feeding reel 52, a positioning assembly 53, a label stripping assembly 54 and a winding assembly 55.
[0050] Specifically, the longitudinal transmission assembly 51 comprises a longitudinal guide rail 511 arranged on one side of the conveying mechanism 40, a longitudinal transmission base 512 slidingly arranged on the longitudinal guide rail 511, a first air cylinder 513 mounted on the rack 10 and used for driving the longitudinal transmission base 512 to move along the longitudinal guide rail 511. The first laser engraving machine 30 is arranged above the longitudinal guide rail 511, and the feeding reel 52, the positioning assembly 53, the label peeling assembly 54 and the winding assembly 55 are sequentially mounted on the longitudinal transmission base 512 along the direction of the base paper transmission.
[0051] Specifically, the feeding reel 52 is further provided with a guide wheel 521 below, and the feeding reel 52 and the guide wheel 521 move the base paper with the label to the label peeling assembly 54 for label engraving and peeling; the winding assembly 55 is arranged below the feeding reel 52, and the winding assembly 55 comprises a winding wheel 551, a tensioning roller 552 and a driving motor 553 used for driving the winding wheel 551, and the winding assembly 55 is used for synchronously winding the base paper.
[0052] Specifically, the positioning assembly 53 is arranged in front of the guide wheel 521 along the direction of the base paper transmission, and the positioning assembly 53 comprises a pressing air cylinder 531, a pressing block 532 connected to the output end of the pressing air cylinder 531, and a suction platform 533 arranged below the pressing air cylinder 531, the upper surface of the suction platform 533 is provided with a plurality of suction holes, and the lower surface of the suction platform 533 is provided with a vacuum interface, the positioning assembly 53 realizes the pressing and fixing of the label through pressing and vacuum suction, and then realizes the positioning of the label.
[0053] Specifically, the label peeling assembly 54 is arranged in front of the positioning assembly 53 along the direction of the base paper transmission, and the label peeling assembly 54 comprises an engraving platform 541 and a label peeling platform 542, the label peeling platform 542 is horizontally arranged in front of the engraving platform 541, one end of the engraving platform 541 towards the label peeling platform 542 is provided with a knife edge 543, and the knife edge 543 cooperates with the label peeling platform 542 to peel the label and the base paper, and the lower portion of the label peeling assembly 54 is provided with a plurality of rollers 544 for guiding the base paper after the label is peeled off.
[0054] In the embodiment, in actual application, the label feeding mechanism 50 is used for sleeving the label roll on the feeding reel 52, the label roll comprises a base paper and a plastic label, the bottom surface of the plastic label is coated with a bonding layer, and the plastic label is bonded to the base paper through the bonding layer, the base paper with the label passes through the guide wheel 521, the positioning assembly 53, the engraving platform 541 and the label peeling platform 542, the label is positioned, engraved and peeled off, the base paper passes out from the knife edge 543, is guided by the plurality of rollers 544 and the tensioning roller 552, is connected to the winding wheel 551, and is recycled.
[0055] In the embodiment, when the base paper with plastic nameplates moves to the laser engraving platform 541, the longitudinal transmission assembly 51 starts to drive the nameplate supply mechanism 50 to move to the first laser engraving machine 30 until the laser engraving platform 541 moves below the first laser engraving machine 30 for engraving. At the same time, the downward pressing cylinder 531 and the adsorption platform 533 start to drive the pressing block 532 to press down and simultaneously adsorb the nameplates on the adsorption platform 533 by vacuum adsorption, so as to prevent the nameplates from being warped or misaligned during engraving. After the engraving is completed, the longitudinal transmission assembly 51 drives the nameplate supply mechanism 50 to return to the original position, and the labeling assembly 60 removes the nameplates.
[0056] In the embodiment, as shown in Figure 1 、 Figure 2 and Figure 5 , the labeling assembly 60 is slidably arranged on the Z-axis linear module 24. The labeling assembly 60 includes a rotary cylinder 61, a vacuum generator set 62 and a suction cup 63. The suction cup 63 is connected to the output end of the rotary cylinder 61, and the vacuum generator set 62 is connected to the suction cup 63. The labeling assembly 60 removes the nameplates from the nameplate supply mechanism 50 and applies the nameplates to the products to be labeled.
[0057] In the embodiment, during the entire base paper conveying process, the driving motor 553 rotates to provide power to the winding wheel 551, and the transmission belt drives the feeding reel 52, the guide wheel 521 and the tight roller 544 to be linked to realize synchronous action of stripping and winding, so that the stripped nameplates are located on the upper surface of the stripping platform 542, and then the suction cup 63 removes the nameplates to move and apply the nameplates to the products.
[0058] In the embodiment, as shown in Figure 1 、 Figure 2 and Figure 6 , the detection mechanism 70 is slidably arranged on the Z-axis linear module 24. The detection mechanism 70 includes a light source 71 and a scanning camera 72. The light source 71 is vertically arranged below the scanning camera 72. The scanning camera 72 is integrated with a data processor and a signal generator. The scanning camera 72 is also provided with a signal transmission interface to transmit the detected nameplate information.
[0059] In the embodiment, the device is also provided with a central control system arranged in the rack 10 for controlling the cooperative operation of the three-axis positioning mechanism 20, the first laser engraving machine 30, the second laser engraving machine 31, the conveying mechanism 40, the nameplate supply mechanism 50, the labeling assembly 60 and the detection mechanism 70. That is, a plurality of position sensors can be arranged on the three-axis positioning mechanism 20, the first laser engraving machine 30, the second laser engraving machine 31, the conveying mechanism 40, the nameplate supply mechanism 50, the labeling assembly 60 and the detection mechanism 70, and are in communication connection with the central control system to realize the automation of the device. The automatic control of the prior art is relatively mature, and will not be described here.
[0060] The above merely expresses the preferred technical solutions of the present application, and the description is relatively specific and detailed, but it should not be understood as a limitation on the scope of the application. It should be noted that for those skilled in the art, without departing from the concept of the present application, a number of modifications and improvements can be made, and the present application also intends to include these modifications and improvements.
Claims
1. A nameplate marking and labeling all-in-one machine, comprising a rack, characterized in that: The rack is provided with a three-axis positioning mechanism, a first laser engraving machine, a conveying mechanism, a label providing mechanism, a label pasting mechanism and a detection mechanism, the label providing mechanism and the conveying mechanism are arranged below the three-axis positioning mechanism, and the label pasting mechanism and the detection mechanism are arranged on the three-axis positioning mechanism; The conveying mechanism is horizontally arranged on the rack and is used for conveying the product to be labeled into the labeling station from the outside of the rack; The label providing mechanism is arranged on one side of the conveying mechanism and is used for conveying the bottom paper with the nameplate to the first laser engraving machine for laser engraving; The label pasting mechanism and the detection mechanism slide along the three-axis positioning mechanism and can be positioned at any point in the range of the three-axis positioning mechanism, the label pasting mechanism is used for moving and pasting the nameplate on the product to be labeled, and the detection mechanism is used for detecting the engraving quality and pasting quality of the nameplate.
2. The nameplate marking and labeling all-in-one machine according to claim 1, characterized in that: The three-axis positioning mechanism is arranged on the rack through a gantry support and comprises an X-axis linear module, a Y-axis linear module and a Z-axis linear module, the Y-axis linear module is horizontally arranged on the rack, the X-axis linear module slides on the Y-axis linear module, the X-axis linear module moves along the Y-axis linear module, the Z-axis linear module slides on the X-axis linear module, the Z-axis linear module moves along the X-axis linear module, and the label pasting mechanism and the detection mechanism slide on the Z-axis linear module and move along the Z-axis linear module.
3. The nameplate marking and labeling all-in-one machine according to claim 1, characterized in that: The conveying mechanism comprises a conveying track and a jacking assembly, the conveying track is horizontally arranged on the rack and is used for conveying the product to be labeled, and the jacking assembly is arranged on the rack along the conveying track and is used for positioning the product to be labeled at the labeling station.
4. The nameplate marking and labeling all-in-one machine according to claim 1, characterized in that: The label providing mechanism comprises a longitudinal transmission assembly, a feeding reel, a positioning assembly, a label peeling assembly and a winding assembly; The longitudinal transmission assembly comprises a longitudinal guide rail arranged on one side of the conveying mechanism, a longitudinal transmission seat sliding on the longitudinal guide rail and a first air cylinder mounted on the rack and used for driving the longitudinal transmission seat to move along the longitudinal guide rail; The first laser engraving machine is arranged above the longitudinal guide rail, and the feeding reel, the positioning assembly, the label peeling assembly and the winding assembly are sequentially mounted on the longitudinal transmission seat along the bottom paper transmission direction.
5. The nameplate marking and labeling all-in-one machine according to claim 4, characterized in that: A guide wheel is further arranged below the feeding reel, and the feeding reel and the guide wheel are used for conveying the bottom paper with the nameplate; The winding assembly is arranged below the feeding reel, and the winding assembly comprises a winding wheel, a tensioning roller and a driving motor used for driving the winding wheel, and is used for synchronously winding the bottom paper.
6. The nameplate marking and labeling all-in-one machine according to claim 5, characterized in that: The positioning assembly is arranged in front of the guide wheel along the bottom paper transmission direction, and comprises a pressing air cylinder, a pressing block connected to the output end of the pressing air cylinder and a suction platform arranged below the pressing air cylinder, the upper surface of the suction platform is provided with a plurality of suction holes, and the lower surface of the suction platform is provided with a vacuum interface.
7. The nameplate marking and labeling all-in-one machine according to claim 6, characterized in that: The label stripping assembly is arranged in front of the positioning assembly along the conveying direction of the base paper, and comprises a laser engraving platform and a label stripping platform. The label stripping platform is horizontally arranged in front of the laser engraving platform. The laser engraving platform is provided with a cutting edge at one end facing the label stripping platform. The cutting edge cooperates with the label stripping platform to strip the label and the base paper. A plurality of rollers are arranged below the label stripping assembly to guide the base paper.
8. The nameplate marking and labeling all-in-one machine according to claim 7, characterized in that: The label sticking mechanism comprises a rotary air cylinder, a vacuum generator set and a suction cup. The suction cup is connected to the output end of the rotary air cylinder. The vacuum generator set is connected to the suction cup. The label sticking mechanism removes the label from the label stripping assembly and sticks the label to the product to be labeled.
9. The nameplate marking and labeling all-in-one machine according to claim 1, characterized in that: The detection mechanism comprises a light source and a scanning camera. The light source is vertically arranged below the scanning camera. The scanning camera is integrated with a data processor and a signal generator. The scanning camera is also provided with a signal transmission interface to transmit the detected label information.
10. The nameplate marking and labeling all-in-one machine according to any one of claims 1 to 9, characterized in that: The second laser engraving machine is arranged above the conveying mechanism. The second laser engraving machine performs a second laser engraving on the label.