Safety labeling method for live meter boxes
By using a safety labeling method for live meter boxes, an automated labeling device is employed to achieve layering and application of labels. This solves the problems of fading label information and inconvenience in label replacement caused by wiring changes in outdoor meter boxes, ensuring the clarity of label information and ease of operation.
Patent Information
- Application Number
- CN202310924401.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-08-30
- Publication Date
- 2025-10-28
- Estimated Expiration
- 2042-08-30
AI Technical Summary
The information on the labels of outdoor meter boxes is easily faded in the natural environment, and the labels need to be changed while the power is on after the wiring is changed, which is inconvenient to do with the existing methods.
The method of applying labels to live electrical meter boxes is adopted. The labeling device is used to place, layer, and automatically feed the labels and stickers. It includes a battery pack, a control board, and an operating handle. The automatic application of labels and stickers is achieved by controlling the drive rods of the adhesive tape, the laminated tape, and the non-adhesive tape via buttons.
It enables convenient replacement or updating of meter box labels while the circuit is energized, ensuring that the label information is clearly readable and has good insulation properties.
Smart Images

Figure CN117002836B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of power auxiliary equipment technology, and in particular to a method for attaching safety labels to live meter boxes. Background Technology
[0002] An electricity meter box is a box installed in a low-voltage cable branch box. It is made of resin-based composite insulating and waterproof material. Its interior is used to install electrical equipment such as electricity meters and switches.
[0003] To ensure visibility inside the meter box, labels are typically affixed to prominent locations such as the box door and body, clearly displaying information about the contents. These labels are usually applied before installation and power is supplied. However, outdoor meter boxes exposed to the elements for extended periods can cause the labels to fade, making them unreadable; alternatively, the labels may need to be updated after wiring changes. Therefore, it is essential to apply and press the labels while the circuit is energized. Summary of the Invention
[0004] To address the technical problems existing in the background art, the present invention provides a safety labeling method for live meter boxes, which has good insulation properties and is easy to operate.
[0005] The technical solution adopted by this invention is:
[0006] The safety labeling method for live electrical meter boxes is implemented by a labeling device, which includes:
[0007] The battery compartment contains a battery pack and a control board. The upper end of the battery compartment is equipped with a control handle that is electrically connected to the control board. The control handle is equipped with a first button and a second button that are electrically connected to the control board. The first button and the second button are used to facilitate operation for labeling.
[0008] The labeling method includes:
[0009] A. Place the label sticker tape:
[0010] Place a roll of label stickers inside the labeling device;
[0011] Extend the label sticker strip out of the labeling device;
[0012] B. Rewinding and laminating waste paper tape, non-adhesive waste paper tape:
[0013] Roll the laminated waste paper strip on top of the label sticker into the labeling device;
[0014] Roll the non-stick waste paper strip at the bottom of the label sticker into the labeling device;
[0015] The label sticker roll is divided into laminated waste paper roll, label sticker, and non-stick waste paper;
[0016] C. Paper output:
[0017] Automatic label sticker tape extension;
[0018] D. Applying plaster:
[0019] The labels are rolled onto the meter box.
[0020] Furthermore, the labeling device also includes:
[0021] A device compartment is inserted into the lower end of the battery compartment. The device compartment has forward-opening slots for adhesive tape, coated tape, and non-adhesive tape. Each slot has a cap that snaps onto its opening. The lower end of the device compartment has an inner groove containing an adhesive tape outlet (connected to the adhesive tape slot), a coated tape inlet (connected to the coated tape slot), and a non-adhesive tape inlet (connected to the non-adhesive tape slot). These inlets are arranged sequentially from right to left, and each has a hinged connection directly below it. The device includes a film-coated tape drive rod assembly, an adhesive tape drive rod assembly, and a non-adhesive tape drive rod assembly. A pressure roller and a pull rod are movably connected between the adhesive tape drive rod assembly and the film-coated tape drive rod assembly. The pressure roller is located on the right side of the pull rod. A detachable side plate is provided at the front end of each of the adhesive tape drive rod assembly, the film-coated tape drive rod assembly, the non-adhesive tape inlet, the pressure roller, and the pull rod. The detachable side plate is flush with the lower end of the device compartment. Multiple drive motors, electrically connected to the control board, are installed inside the detachable side plate and are respectively connected to the adhesive tape drive rod assembly, the film-coated tape drive rod assembly, and the non-adhesive tape drive rod assembly for transmission.
[0022] Step A, placing the label sticker tape, includes:
[0023] Place the label tape roll into the adhesive tape slot, pass the label tape through the adhesive tape outlet to the adhesive tape drive rod assembly, and then place the cap on the opening of the adhesive tape slot.
[0024] Furthermore, a first sleeve rod and a second sleeve rod are respectively provided in the center of the coating tape groove and the non-stick tape groove;
[0025] Step B, winding up the laminated waste paper tape and the non-stick waste paper tape, includes:
[0026] The label sticker is passed over the pressure roller and pull rod at the adhesive tape drive rod assembly and layered.
[0027] The coated waste paper strip on the top layer of the label sticker strip passes through the pressure roller, the coated strip drive rod assembly, and the coated strip inlet, enters the coated strip groove, and is wound around the first set of rods;
[0028] The non-stick waste paper tape at the bottom of the label sticker tape enters the non-stick tape container through the pull rod, the non-stick tape drive rod assembly, and the non-stick tape inlet, and is wound around the second set of rods.
[0029] Furthermore, a cap is snapped onto the opening of the adhesive tape groove, the film-coated tape groove, and the non-adhesive tape groove. A rotating protrusion is provided at the front end of the cap to facilitate rotation of the cap. A through groove is provided through the cap to facilitate observation. An annular groove is provided at the edge of the cap, and the groove is movably engaged with a retaining ring. An extension rod is provided extending rearward from the center of the rear end of the cap. An annular pressure plate is movably sleeved on the extension rod. A push spring is provided between the pressure plate and the cap. A sliding groove is provided radially through the pressure plate, and a sliding rod is slidably provided on the sliding groove. The sliding rod extends rearward into the film-coated tape groove and the non-adhesive tape groove.
[0030] Step C, paper output, includes:
[0031] The adhesive tape drive rod assembly and the film covering tape drive rod assembly are controlled to rotate synchronously by operating the second button on the handle;
[0032] At this point, the label tape in the tape groove passes through the tape outlet, the tape drive rod assembly, and finally between the pressure roller and the pull rod, where it is layered.
[0033] At the same time, the coated waste paper tape on the upper layer of the label sticker tape at the pressure roller passes through the coated tape drive rod group and the coated tape inlet until it enters the coated tape groove, and is tightly wound by the sliding rod set on the cover at the groove opening of the coated tape groove;
[0034] The tightness of the coated waste paper strip in the coating tape trough is observed by the through groove and slide groove; the edge is pressed by the pressure plate pushed by the push spring; and the sliding rod is tightened by the rotation of the rotating protrusion.
[0035] Furthermore, a pressure roller groove is provided on the side wall opposite to the device compartment and the disassembly side plate. The pressure roller groove is slidably connected to the rotating shaft of the pressure roller. A pull rod groove is provided inside the pressure roller groove. The pull rod groove is slidably connected to the pull rod.
[0036] Step D, application, includes:
[0037] The non-stick drive lever assembly is rotated by operating the first button on the handle.
[0038] At this time, the non-stick waste paper tape under the label sticker at the pull rod passes through the non-stick tape drive rod group and the non-stick tape inlet until it enters the non-stick tape container, and is tightly wound by the sliding rod set on the cover at the opening of the non-stick tape container.
[0039] The non-stick tape container does not stick to waste paper tape, and the tightness is observed by the through groove and slide groove; the pressure plate pushed by the push spring presses the edge; the rotating protrusion drives the slide rod to rotate for tightening;
[0040] As the non-stick tape drive rod assembly moves the non-stick waste paper tape to the left, the non-stick waste paper tape moves the pull rod to the left along the pull rod slide groove. At this time, the pull rod drives the slider on the pressure roller to move to the left along the pressure roller slide groove. The pressure roller and the coated waste paper tape roll and connect, which flattens and presses the label sticker.
[0041] Furthermore, after completing step D and applying the adhesive, step C and dispensing the paper also includes:
[0042] The adhesive tape drive rod assembly and the film covering tape drive rod assembly are controlled to rotate synchronously by operating the second button on the handle;
[0043] At this time, the label tape in the tape groove passes through the tape outlet and the tape drive rod assembly, and then to the space between the pressure roller and the pull rod. At the same time, the extension of the non-stick waste paper tape causes the pressure roller and the pull rod to move to the right along the pressure roller slide groove under the tension of the reset spring, until they reach the rightmost position.
[0044] Repeat step C to feed out the next label.
[0045] Furthermore, an electrical plug protrudes from the battery compartment, and a reset plate is provided on the side wall of the battery compartment at the electrical plug, with a buckle protruding from the end of the reset plate.
[0046] The upper end of the device compartment is provided with a recessed battery holder for inserting the battery compartment. The device compartment on the front and rear sides of the battery holder is provided with slots that engage with buckles.
[0047] Furthermore, the battery holder is provided with an electrical socket that connects to the electrical plug.
[0048] Furthermore, the adhesive tape groove, the film-coated tape groove, and the non-adhesive tape groove are cylindrical, and protruding retaining rings are provided at the edges.
[0049] Furthermore, the disassembly side plate is provided with a motor housing slot for accommodating the drive motor. The motor housing slot is covered with an "L"-shaped protective cover, which is hinged to the disassembly side plate. The disassembly side plate behind the motor housing slot is provided with a gear box that is connected to the drive motor. Multiple gear boxes are provided, and they are respectively connected to the adhesive tape drive rod group, the film-coated tape drive rod group, and the non-adhesive tape drive rod group.
[0050] The advantages of the safety labeling method for live meter boxes of the present invention are as follows:
[0051] 1. By using adhesive tape slots, laminated tape slots, and non-adhesive tape slots, labels and stickers can be placed, and waste paper tape can be stored.
[0052] 2. By sealing the cap, place and manually adjust the label stickers and their waste paper strips;
[0053] 3. By using the first and second buttons, the label sticker tape can be automatically fed and retracted. Attached Figure Description
[0054] To more clearly illustrate the specific embodiments of the present invention, the accompanying drawings required for the specific embodiments will be briefly introduced below. The accompanying drawings in the following description are embodiments of the present invention.
[0055] Figure 1 This is a general perspective view of the safety labeling method for live meter boxes provided by an embodiment of the present invention;
[0056] Figure 2 This is a partially enlarged three-dimensional schematic diagram of the safety labeling method for live meter boxes provided by this invention. Figure 1 ;
[0057] Figure 3 This is a partially enlarged three-dimensional schematic diagram of the safety labeling method for live meter boxes provided by this invention. Figure 2 ;
[0058] Figure 4 This is a three-dimensional exploded view of the sealing cover of the safety labeling method for a live meter box provided by an example of the present invention;
[0059] Figure 5 This is a three-dimensional exploded view of the device compartment for the safety labeling method for a live meter box provided in this invention example;
[0060] Figure 6 This is a partially enlarged three-dimensional schematic diagram of the safety labeling method for live meter boxes provided by this invention. Figure 3 .
[0061] In the picture:
[0062] 1. Battery compartment
[0063] 11. Electrical plug; 12. Reset plate; 13. Clip.
[0064] 2. Operate the handle.
[0065] 31. First button; 32. Second button.
[0066] 4. Equipment compartment,
[0067] 41. Battery holder; 42. Card slot; 431. Adhesive tape reservoir; 432. Coated tape reservoir; 433. Non-adhesive tape reservoir; 441. First set of rods; 442. Second set of rods; 451. Adhesive tape outlet; 452. Coated tape inlet; 453. Non-adhesive tape inlet; 461. Adhesive tape drive rod assembly; 462. Coated tape drive rod assembly; 463. Non-adhesive tape drive rod assembly; 464. Pressure roller; 465. Pull rod; 471. Pressure roller groove; 472. Pull rod groove.
[0068] 5. Seal the lid.
[0069] 51. Rotating protrusion; 52. Through groove; 53. Slot; 54. Extension rod; 55. Pressure plate; 56. Push spring; 57. Slide groove; 58. Slide rod.
[0070] 6. Disassemble and assemble the side panels.
[0071] 61. Protective cover; 62. Gearbox; 63. Drive motor. Detailed Implementation
[0072] To more clearly and explicitly illustrate the specific objectives and implementation methods of this invention, a complete description of the technical solution of this invention will be provided below. The described embodiments are only a part of the embodiments of this invention, not all of them. Without creative effort, all other embodiments based on the embodiments described in this invention are within the protection scope of this invention.
[0073] The present invention provides a safety labeling device for live electrical meter boxes, such as... Figure 1 , Figure 2 Shown, including:
[0074] The battery compartment 1 contains a battery pack and a control board. An electrical plug 11 protrudes from the battery compartment 1. A reset plate 12 is provided on the side wall of the battery compartment 1 at the electrical plug 11. A buckle 13 protrudes from the end of the reset plate 12. An operating handle 2 electrically connected to the control board is provided at the upper end of the battery compartment 1. A first button 31 and a second button 32 electrically connected to the control board are provided on the operating handle 2.
[0075] like Figure 3 As shown, a device compartment 4 is inserted into the lower end of the battery compartment 1. A recessed battery holder 41 is provided on the upper end of the device compartment 4. The battery holder 41 is used to insert the battery compartment 1. An electrical socket connected to the electrical plug 11 is provided inside the battery holder 41. Slots 42 are provided on the device compartments 4 on the front and rear sides of the battery holder 41. The slots 42 are engaged with the buckles 13.
[0076] like Figure 3As shown, the device compartment 4 is open to the front and has an adhesive tape container 431, a film-coated tape container 432, and a non-adhesive tape container 433. The adhesive tape container 431, the film-coated tape container 432, and the non-adhesive tape container 433 are cylindrical and have protruding retaining rings at the edges. A cover 5 is snapped into place at the retaining rings.
[0077] There are two types of covers 5, such as... Figure 4 Shown, including:
[0078] Firstly, a cover 5 is provided at the opening of the groove 431 of the adhesive tape. The front end of the cover 5 is provided with a rotating protrusion 51, which is used to facilitate the rotation of the cover 5. A through groove 52 is provided through the cover 5 to facilitate observation. An annular groove 53 is provided at the edge of the cover 5, which is movably engaged with the retaining ring at the edge of the groove 431 of the adhesive tape.
[0079] Secondly, a cover 5 is provided at the opening of the coated tape groove 432 and the non-adhesive tape groove 433. The front end of the cover 5 is provided with a rotating protrusion 51, which is used to facilitate the rotation of the cover 5. A through groove 52 is provided through the cover 5 for easy observation. An annular groove 53 is provided at the edge of the cover 5, which is movably engaged with a retaining ring. An extension rod 54 is provided extending rearward from the center of the rear end of the cover 5. An annular pressure plate 55 is movably sleeved on the extension rod 54. A push spring 56 is provided between the pressure plate 55 and the cover 5. A sliding groove 57 is provided radially through the pressure plate 55. A sliding rod 58 is slidably provided on the sliding groove 57. The sliding rod 58 extends rearward into the coated tape groove 432 and the non-adhesive tape groove 433.
[0080] like Figure 5 As shown, a first sleeve rod 441 and a second sleeve rod 442 are respectively arranged in the center of the coated tape container 432 and the non-adhesive tape container 433. Guide strips are provided on the first sleeve rod 441 and the second sleeve rod 442. The guide strip in the first sleeve rod 441 is used to stick the coated waste paper tape and pull it into the coated tape container 432. The guide strip in the second sleeve rod 442 is used to stick the non-adhesive waste paper tape and pull it into the non-adhesive tape container 433.
[0081] The lower end of the device compartment 4 is provided with an inner groove. Within this groove are an adhesive tape outlet 451 connected to the adhesive tape container 431, a film-coated tape inlet 452 connected to the film-coated tape container 432, and a non-adhesive tape inlet 453 connected to the non-adhesive tape container 433. The film-coated tape inlet 452, adhesive tape outlet 451, and non-adhesive tape inlet 453 are arranged sequentially from right to left. Directly below each of these are hinged film-coated tape drive rod assemblies 462, adhesive tape drive rod assemblies 461, and non-adhesive tape drive rod assemblies 463 to the device compartment 4. Parallel pressure rollers 464 and pull rods 465 are movably arranged between the adhesive tape drive rod assemblies 461 and the film-coated tape drive rod assemblies 462. The two ends of the pressure rollers 464 extend to the left and are fitted with pull rods 465. A slider is provided at the end of the roller 464 shaft, and a reset spring extending to the right is provided on the slider. The front ends of the adhesive tape drive rod assembly 461, the film-coated tape drive rod assembly 462, the non-adhesive tape inlet 453, the pressure roller 464, and the pull rod 465 are provided with detachable side plates 6. The detachable side plates 6 are flush with the lower end of the device chamber 4. The side walls opposite to the device chamber 4 and the detachable side plates 6 are provided with pressure roller grooves 471. The pressure roller grooves 471 are slidably connected to the slider at the end of the pressure roller 464 shaft. The inner right side wall of the pressure roller grooves 471 is fixedly connected to the reset spring. The reset spring is used to keep the pressure roller 464 and the pull rod 465 in the right-side position. A pull rod groove 472 is provided in the pressure roller grooves 471. The pull rod grooves 472 are slidably connected to both ends of the pull rod 465.
[0082] like Figure 6 As shown, the disassembly side plate 6 is provided with multiple motor slots. A drive motor 63 electrically connected to the control board is installed and fixed in the motor slot. The motor slot is covered with an "L"-shaped protective cover 61. The protective cover 61 is hinged to the disassembly side plate 6. The disassembly side plate 6 behind the motor slot is provided with a gear box 62 that is connected to the drive motor 63. Multiple gear boxes 62 are provided and are respectively connected to the adhesive tape drive rod group 461, the film-coated tape drive rod group 462, and the non-adhesive tape drive rod group 463.
[0083] Based on the specific structure of the safety labeling device for the live meter box in the above embodiments, the safety labeling method for the live meter box will be further explained below:
[0084] A. Place the label sticker tape:
[0085] Place the label sticker roll into the adhesive tape container 431, pass the label sticker roll out from the adhesive tape outlet 451 to the adhesive tape drive rod assembly 461, and place the cover 5 as described above on the opening of the adhesive tape container 431.
[0086] B. Rewinding and laminating waste paper tape, non-adhesive waste paper tape:
[0087] The label sticker at the adhesive tape drive rod assembly 461 is passed over the top between the pressure roller 464 and the pull rod 465, and the label sticker is layered.
[0088] The coated waste paper tape on the top layer of the label sticker tape passes through the pressure roller 464, the coated tape drive rod assembly 462, and the coated tape inlet 452, enters the coated tape groove 432, and is wound around the first set of rods 441;
[0089] The non-stick waste paper tape at the bottom of the label sticker tape enters the non-stick tape groove 433 via the pull rod 465, the non-stick tape drive rod assembly 463, and the non-stick tape inlet 453, and is wound around the second set of rods 442.
[0090] C. Paper output:
[0091] The adhesive tape drive rod assembly 461 and the film covering tape drive rod assembly 462 are controlled to rotate synchronously by operating the second button 32 on the handle 2.
[0092] At this time, the label sticker tape in the adhesive tape trough 431 passes through the adhesive tape outlet 451, the adhesive tape drive rod assembly 461, and finally between the pressure roller 464 and the pull rod 465, where it is layered.
[0093] At the same time, the coated waste paper strip on the upper layer of the label sticker strip at the pressure roller 464 passes through the coated strip drive rod group 462 and the coated strip inlet 452 until it enters the coated strip groove 432, and is tightly wound by the slide rod 58 provided on the second cover 5 at the groove opening of the coated strip groove 432.
[0094] The coated waste paper strip in the groove 432 is inspected for tightness by the through groove 52 and the slide groove 57; the pressure plate 55 pushed by the push spring 56 is pressed along the edge; and the rotating protrusion 51 rotates to drive the slide rod 58 to rotate for tightening.
[0095] D. Applying plaster:
[0096] The non-stick drive lever assembly 463 is rotated by manipulating the first button 31 on the handle 2.
[0097] At this time, the non-stick waste paper tape under the label sticker tape at the pull rod 465 passes through the non-stick tape drive rod group 463 and the non-stick tape inlet 453 until it enters the non-stick tape container 433, and is tightly wound by the slide rod 58 provided on the second cover 5 at the opening of the non-stick tape container 433.
[0098] The non-stick tape container 433 does not stick to waste paper tape, and the tightness is observed by the through groove 52 and the slide groove 57; the pressure plate 55 pushed by the push spring 56 presses the edge; the rotating protrusion 51 rotates and drives the slide rod 58 to rotate for tightening;
[0099] As the non-stick tape drive rod assembly 463 drives the non-stick waste paper tape to move to the left, the non-stick waste paper tape moves the pull rod 465 to the left along the pull rod groove 472. At this time, the pull rod 465 drives the slider on the pressure roller 464 to move to the left along the pressure roller groove 471. The pressure roller 464 is in rolling connection with the coated waste paper tape, which flattens and presses the label sticker.
[0100] After completing step D and applying the dressing, step C and dispensing the paper further includes:
[0101] The adhesive tape drive rod assembly 461 and the film covering tape drive rod assembly 462 are controlled to rotate synchronously by operating the second button 32 on the handle 2.
[0102] At this time, the label sticker tape in the adhesive tape trough 431 passes through the adhesive tape outlet 451 and the adhesive tape drive rod assembly 461, until it reaches between the pressure roller 464 and the pull rod 465. At the same time, the extension of the non-adhesive waste paper tape causes the pressure roller 464 and the pull rod 465 to move to the right under the pulling force of the reset spring until they reach the rightmost position. Step C is repeated to feed out the next label sticker.
[0103] The process of the pressure roller 464 and the pull rod 465 moving to the right is the opposite of the way they move to the left in step D and during the application process, and will not be described again here.
[0104] Based on the above, and guided by the embodiments of the safety labeling method for live meter boxes of the present invention, relevant personnel can make various changes and modifications without departing from the technical concept of this invention. The technical scope of this invention is not limited to the contents of the specification, but must be determined according to the scope of the claims.
Claims
1. A method for attaching safety labels to live electrical meter boxes, characterized in that: This is achieved by a labeling device, which includes: A battery compartment (1) containing a battery pack and a control board is provided on the upper end of the battery compartment (1), and an operating handle (2) electrically connected to the control board is provided on the upper end of the battery compartment (1). A device compartment (4) is inserted into the lower end of the battery compartment (1). The device compartment (4) has an adhesive tape slot (431), a film-coated tape slot (432), and a non-adhesive tape slot (433) that are open to the front. A protruding retaining ring is provided at the edge of the opening of the adhesive tape slot (431), the film-coated tape slot (432), and the non-adhesive tape slot (433). The lower end of the device compartment (4) is provided with an inner groove. The inner groove is provided with an adhesive tape outlet (451) that communicates with the adhesive tape slot (431), a film-coated tape inlet (452) that communicates with the film-coated tape slot (432), and a non-adhesive tape inlet (453) that communicates with the non-adhesive tape slot (433). The inlet (452) of the coated tape, the outlet (451) of the adhesive tape, and the inlet (453) of the non-adhesive tape are arranged sequentially from right to left. The coated tape drive rod group (462), the adhesive tape drive rod group (461), and the non-adhesive tape drive rod group (463) are respectively arranged directly below the device compartment (4) and are hinged to it. The adhesive tape drive rod group (461) and the coated tape drive rod group (462) are movably arranged with a pressure roller (464) and a pull rod (465). The two ends of the pressure roller (464) extend to the left and are provided with pull rods (465). The ends of the pressure roller (464) are provided with sliders, and the sliders are provided with reset springs extending to the right. A cover (5) is snapped into place at the snap ring. A rotating protrusion (51) is provided at the front end of the cover (5). A through groove (52) is provided through the cover (5). An annular snap groove (53) is provided at the edge of the cover (5). The snap groove (53) is movably snapped into place with the snap ring. An extension rod (54) is provided at the rear center of the cover (5) at the coated tape groove (432) and the non-adhesive tape groove (433). An annular pressure plate (55) is movably sleeved on the extension rod (54). A push spring (56) is provided between the pressure plate (55) and the cover (5). A sliding groove (57) is provided through the pressure plate (55) along its radial direction. A sliding rod (58) is slidably provided on the sliding groove (57). The sliding rod (58) extends backward into the coated tape groove (432) and the non-adhesive tape groove (433). The labeling method includes: A. Place the label sticker tape: Place the label sticker into the adhesive tape container (431), pass the label sticker through the adhesive tape outlet (451) to the adhesive tape drive rod assembly (461), and then place the cover (5) on the opening of the adhesive tape container (431). B. Rewinding and laminating waste paper tape, non-adhesive waste paper tape: Roll the laminated waste paper strip on top of the label sticker into the labeling device; Roll the non-stick waste paper strip at the bottom of the label sticker into the labeling device; The label sticker roll is divided into laminated waste paper roll, label sticker, and non-stick waste paper; C. Applying plaster: The non-stick drive lever assembly (463) is rotated by manipulating the handle (2); The non-stick waste paper tape under the label sticker at the pull rod (465) passes through the non-stick tape drive rod assembly (463) and the non-stick tape inlet (453) until it enters the non-stick tape container (433); The tightness is observed by the through groove (52) and the slide groove (57). The pressure plate (55) pushed by the push spring (56) presses the edge, and the rotating protrusion (51) rotates to drive the slide rod (58) to rotate and tighten. During the process of the non-stick tape drive rod assembly (463) driving the non-stick waste paper tape to the left, the non-stick waste paper tape moves the pull rod (465) to the left, the pull rod (465) drives the pressure roller (464) to the left, and the pressure roller (464) flattens and presses the label sticker. D. Paper output: The adhesive tape drive rod assembly (461) and the film-coating tape drive rod assembly (462) are controlled to rotate synchronously by manipulating the handle (2); The label tape in the tape groove (431) passes through the tape outlet (451) and the tape drive rod group (461) until it reaches the pressure roller (464) and the pull rod (465). The extension of the non-stick waste paper tape causes the pressure roller (464) and the pull rod (465) to move to the right until the rightmost position. Repeat steps C, applying the dressing, and D, dispensing the paper.
2. The safety labeling method for live meter boxes according to claim 1, characterized in that: The first sleeve rod (441) and the second sleeve rod (442) are respectively provided in the center of the coated tape groove (432) and the non-stick tape groove (433). Step B, winding up the laminated waste paper tape and the non-stick waste paper tape, includes: The label sticker at the adhesive tape drive rod assembly (461) is passed over the top between the pressure roller (464) and the pull rod (465) and the label sticker is layered; The coated waste paper strip on the top layer of the label sticker strip passes through the pressure roller (464), the coated strip drive rod assembly (462), and the coated strip inlet (452) and enters the coated strip groove (432), and is wound around the first set of rods (441); The non-stick waste paper tape under the label sticker tape enters the non-stick tape container (433) via the pull rod (465), the non-stick tape drive rod assembly (463), and the non-stick tape inlet (453), and is wrapped around the second set of rods (442).
3. The safety labeling method for live meter boxes according to claim 1, characterized in that: The control handle (2) is provided with a first button (31) and a second button (32) that are electrically connected to the control panel. The first button (31) and the second button (32) are used to facilitate operation and thus to affix labels. In step C above, during application: The non-stick drive lever assembly (463) is rotated by manipulating the first button (31) on the handle (2); In step D above, during paper output: By manipulating the second button (32) on the handle (2), the adhesive tape drive rod assembly (461) and the film covering tape drive rod assembly (462) are controlled to rotate synchronously; The coated waste paper tape on the upper layer of the label sticker tape at the pressure roller (464) passes through the coated tape drive rod assembly (462) and the coated tape inlet (452) until it enters the coated tape trough (432); The tightness is observed by the through groove (52) and the slide groove (57). The pressure plate (55) pushed by the push spring (56) presses the edge, and the rotating protrusion (51) rotates to drive the slide rod (58) to rotate and tighten.
4. The safety labeling method for live meter boxes according to claim 1, characterized in that: An electrical plug (11) is provided on the protruding part of the battery compartment (1), and a reset plate (12) is provided on the side wall of the battery compartment (1) at the electrical plug (11), and a buckle (13) is provided at the end of the reset plate (12). The upper end of the device compartment (4) is provided with a recessed battery holder (41), which is used to insert the battery compartment (1). The device compartment (4) on the front and rear sides of the battery holder (41) is provided with slots (42), which are engaged with buckles (13).
5. The safety labeling method for live meter boxes according to claim 4, characterized in that: The battery holder (41) is provided with an electrical socket that is connected to the electrical plug (11).
6. The safety labeling method for live meter boxes according to claim 5, characterized in that: The adhesive tape groove (431), the film-coated tape groove (432), and the non-adhesive tape groove (433) are cylindrical.
7. The safety labeling method for live meter boxes according to claim 6, characterized in that: The front ends of the adhesive tape drive rod assembly (461), the film-coated tape drive rod assembly (462), the non-adhesive tape inlet (453), the pressure roller (464), and the pull rod (465) are provided with detachable side plates (6). The detachable side plates (6) are flush with the lower end of the device compartment (4). The detachable side plates (6) are provided with drive motors (63) that are electrically connected to the control board. There are multiple drive motors (63), which are respectively connected to the adhesive tape drive rod assembly (461), the film-coated tape drive rod assembly (462), and the non-adhesive tape drive rod assembly (463). A pressure roller groove (471) is provided on the side wall opposite to the device compartment (4) and the disassembly side plate (6). The pressure roller groove (471) is slidably connected to the rotating shaft of the pressure roller (464). A pull rod groove (472) is provided in the pressure roller groove (471). The pull rod groove (472) is slidably connected to the pull rod (465). The disassembly side plate (6) is provided with a motor housing slot for accommodating the drive motor (63). The motor housing slot is covered with an "L"-shaped protective cover (61). The protective cover (61) is hinged to the disassembly side plate (6). The disassembly side plate (6) behind the motor housing slot is provided with a gear box (62) that is connected to the drive motor (63). The gear box (62) is provided in multiple sets and is connected to the adhesive tape drive rod group (461), the film-coated tape drive rod group (462), and the non-adhesive tape drive rod group (463) respectively.
Citation Information
Patent Citations
Labeling machine for electric meter box production
CN213009132U