High-temperature alloy part label pasting device
By designing a high-temperature alloy label posting device with moving, rotating and downward mechanisms, the problem of inaccurate label position and easy to fall off is solved, and the precise positioning and tight fit of the label is achieved, which is suitable for special-shaped high-temperature alloy parts.
Patent Information
- Application Number
- CN202510764978.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-10
- Publication Date
- 2025-07-29
AI Technical Summary
Existing label posting devices cannot flexibly adjust the height and angle of the label according to the shape and size of the high-temperature alloy parts, resulting in inaccurate label position or inefficient posting, and it is difficult to ensure that the label is closely fitted with the workpiece surface, and it is easy to curl or fall off.
A high-temperature alloy label sticker device including a moving mechanism, a rotating mechanism and a downward pressing mechanism is designed. The vertical and horizontal positioning of the label box is achieved through the moving mechanism. The rotating mechanism adjusts the angle of the label box, and applies a uniform downforce through the downward pressing mechanism to ensure that the label is closely fitted with the workpiece surface.
It realizes accurate positioning and angle adjustment of the label posting position, ensures that the label is closely fitted with the workpiece surface, reduces bubbles or edge curling, and prevents the label from falling off. It is suitable for special-shaped high-temperature alloy parts.
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Figure CN120383071A_ABST
Abstract
Description
Technical Field
[0001] The present invention belongs to the technical field of label pasting, and particularly relates to a label pasting device for superalloy parts. Background Art
[0002] During the production, storage, and use of superalloy parts, it is usually necessary to paste labels on the surface of the workpieces to record information such as their materials, batches, specifications, etc. Since superalloy parts are usually used in high-temperature, high-pressure, or corrosive environments, the labels must be firmly pasted to prevent them from falling off during transportation or use.
[0003] Most of the existing label pasting devices adopt a fixed structure and cannot flexibly adjust the height and angle of label pasting according to the shape and size of the workpieces. For example, for cylindrical or irregularly shaped workpieces, the labels need to be pasted on the top or side, but traditional devices are difficult to adapt to the pasting requirements at different positions, resulting in inaccurate label positions or low pasting efficiency. Since there may be oxide layers, oil stains, or minute unevenness on the surface of superalloy parts, it is difficult to ensure complete adhesion of the labels only by slight pressure, making the labels extremely prone to edge curling or falling off. For this reason, we designed a label pasting device for superalloy parts to provide another technical solution to the above technical problems. Summary of the Invention
[0004] The purpose of the present invention is to provide a label pasting device for superalloy parts to solve the problems in the existing technology during use as mentioned in the above background art.
[0005] To achieve the above purpose, the present invention provides the following technical solution: A label pasting device for superalloy parts, including a workpiece conveyor belt, a label box is arranged on the top of the workpiece conveyor belt, a rectangular rotating block is fixed on the top of the label box, a vertical sliding plate is arranged on the top of the rectangular rotating block, a rotating mechanism for rotating the rectangular rotating block is arranged on the outside of the vertical sliding plate, a horizontal support frame is arranged on the top of the vertical sliding plate, and a moving mechanism for moving the vertical sliding plate is arranged inside the horizontal support frame;
[0006] A pressing roller is arranged at one end of the label box, and a pressing mechanism for pressing down the pressing roller is arranged on the outside of the label box.
[0007] Preferably, the moving mechanism includes a conical support base, a first vertical hydraulic cylinder is fixed inside the conical support base, the output end of the first vertical hydraulic cylinder is fixedly connected to the horizontal support frame, a first driving motor is bolted to one end of the horizontal support frame, a horizontal threaded rod is fixed to the output end of the first driving motor, and the horizontal threaded rod penetrates through the inside of the vertical sliding plate and is threadedly connected to the vertical sliding plate.
[0008] Preferably, dovetail sliders are fixed at both ends of the transverse support frame, and a dovetail groove adapted to the dovetail slider is opened inside the vertical sliding plate. The transverse support frame and the vertical sliding plate are connected in a sliding manner through the cooperation of the dovetail sliders and the dovetail groove.
[0009] Preferably, the rotation mechanism includes a second vertical hydraulic cylinder, and a second vertical hydraulic cylinder is provided on both sides of the vertical sliding plate. The output end of the second vertical hydraulic cylinder is rotatably connected to the vertical sliding rod through a bearing, and the outer side of the vertical sliding rod is rotatably connected to the vertical transmission column through a bearing, and the bottom of the vertical transmission column is rotatably connected to the vertical rotation column through a pin shaft, and a longitudinal rotation column is fixed inside the bottom end of the vertical rotation column, and the longitudinal rotation column passes through the interior of the rectangular rotation block and is fixedly connected to the rectangular rotation block.
[0010] Preferably, the longitudinal rotating column passes through the interior of the vertical sliding plate and is rotatably connected to the vertical sliding plate via a bearing.
[0011] Preferably, a vertical through slot is provided inside the vertical sliding plate, and the vertical sliding rod is located inside the vertical through slot and is slidably connected to the vertical sliding plate via the vertical through slot.
[0012] Preferably, an arc block is fixed to the outer side of the second vertical hydraulic cylinder, and the arc block is fixedly connected to the vertical sliding plate.
[0013] Preferably, a label output roller is provided inside the label box, one end of the label box is rotatably connected to a transverse driven roller through a bearing, a label recovery roller is provided at the bottom end of the label box, a second drive motor is fixed to the outside of the label box with bolts, the output end of the second drive motor is fixedly connected to the label recovery roller, and an oblique peeling plate is fixed to the bottom of the outside of the label box.
[0014] Preferably, the pressing mechanism includes a third vertical hydraulic cylinder, a third vertical hydraulic cylinder is fixed to the outside of the label box, the output end of the third vertical hydraulic cylinder is rotatably connected to a longitudinal connecting piece through a bearing, the outside of the longitudinal connecting piece is rotatably connected to a vertical transmission rod through a bearing, the bottom of the vertical transmission rod is rotatably connected to a vertical rotating rod through a pin shaft, the inside of the vertical rotating rod is rotatably connected to a longitudinal support piece through a bearing, the longitudinal support piece is close to one side of the label box and is fixedly connected to the label box, and one end of the bottom of the vertical rotating rod is rotatably connected to the lower pressure roller through a pin shaft.
[0015] Preferably, a rectangular vertical slider is fixed to one side of the longitudinal connector close to the label box, a vertical slide groove is provided inside the label box, the rectangular vertical slider is located inside the vertical slide groove and is slidably connected to the label box through the vertical slide groove.
[0016] Compared with the prior art, the beneficial effects of the present invention are as follows:
[0017] 1. Through the arrangement of the moving mechanism and the rotating mechanism, the label pasting device of the present invention can adapt to workpieces of different sizes, achieve precise positioning in the vertical and horizontal directions of the label pasting position, solve the problem of limited range of fixed height and position, and enable the label box to be tilted at a certain angle to meet the label pasting requirements on the top, side or curved surface of the workpiece, especially suitable for special-shaped superalloy parts.
[0018] 2. Through the arrangement of the pressing mechanism, a uniform and adjustable downward pressure is applied to the label to ensure its close fit with the workpiece surface, reduce the phenomenon of bubbles or warping, and prevent the subsequent label from falling off. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] Figure 1 is a schematic structural diagram of the whole of the present invention;
[0020] Figure 2 is a schematic structural diagram of the label box and the pressing roller of the present invention;
[0021] Figure 3 is a schematic structural diagram of the conical support seat and the first vertical hydraulic cylinder of the present invention;
[0022] Figure 4 is a schematic structural diagram of the vertical sliding plate and the rectangular rotating block of the present invention;
[0023] Figure 5 is a schematic structural diagram of the inside of the label box of the present invention;
[0024] Figure 6 is a schematic structural diagram of the inside of the vertical sliding plate of the present invention;
[0025] Figure 7 is a schematic structural diagram of the inside of the horizontal support frame of the present invention;
[0026] Figure 8 is a schematic structural diagram of the third vertical hydraulic cylinder and the longitudinal connecting member of the present invention;
[0027] Figure 9 is a schematic structural diagram of the vertical transmission rod and the longitudinal support member of the present invention.
[0028] In the figure: 1, workpiece conveyor belt; 2, label box; 3, lower pressing roller; 4, inclined peeling plate; 5, conical support seat; 6, first vertical hydraulic cylinder; 7, horizontal support frame; 8, first driving motor; 9, vertical sliding plate; 10, rectangular rotating block; 11, label output roller; 12, label recycling roller; 13, horizontal driven roller; 14, second driving motor; 15, second vertical hydraulic cylinder; 16, vertical sliding rod; 17, vertical transmission column; 18, vertical rotating column; 19, longitudinal rotating column; 20, third vertical hydraulic cylinder; 21, longitudinal connecting piece; 22, vertical transmission rod; 23, longitudinal support piece; 24, vertical rotating rod; 25, rectangular vertical slider; 26, horizontal threaded rod. Detailed implementation mode
[0029] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative work shall fall within the protection scope of the present invention.
[0030] Embodiment 1
[0031] As Figures 1-7 shown, this embodiment proposes a label pasting device for superalloy parts;
[0032] In this embodiment, a label pasting device for superalloy parts includes a workpiece conveyor belt 1. A label box 2 is arranged on the top of the workpiece conveyor belt 1. A rectangular rotating block 10 is fixed on the top of the label box 2. A vertical sliding plate 9 is arranged on the top of the rectangular rotating block 10. A rotating mechanism for rotating the rectangular rotating block 10 is arranged on the outside of the vertical sliding plate 9. A horizontal support frame 7 is arranged on the top of the vertical sliding plate 9. A moving mechanism for moving the vertical sliding plate 9 is arranged inside the horizontal support frame 7;
[0033] One end of the label box 2 is provided with a lower pressing roller 3. A lower pressing mechanism for pressing down the lower pressing roller 3 is arranged on the outside of the label box 2;
[0034] The moving mechanism includes a conical support seat 5. A first vertical hydraulic cylinder 6 is fixed inside the conical support seat 5. The output end of the first vertical hydraulic cylinder 6 is fixedly connected to the horizontal support frame 7. A first driving motor 8 is bolted to one end of the horizontal support frame 7. The output end of the first driving motor 8 is fixed with a horizontal threaded rod 26. The horizontal threaded rod 26 penetrates through the inside of the vertical sliding plate 9 and is threadedly connected to the vertical sliding plate 9;
[0035] Both ends inside the horizontal support frame 7 are fixedly provided with dovetail sliders. A dovetail chute adapted to the dovetail sliders is provided inside the vertical sliding plate 9. The horizontal support frame 7 and the vertical sliding plate 9 are slidably connected through the cooperation of the dovetail sliders and the dovetail chute. Through the arrangement of the dovetail sliders and the dovetail chute, the vertical sliding plate 9 can move inside the horizontal support frame 7, and further can guide the movement track of the vertical sliding plate 9 inside the horizontal support frame 7;
[0036] The rotating mechanism includes a second vertical hydraulic cylinder 15. Second vertical hydraulic cylinders 15 are arranged on both sides of the vertical sliding plate 9. The output end of the second vertical hydraulic cylinder 15 is rotatably connected with a vertical sliding rod 16 through a bearing. The outer side of the vertical sliding rod 16 is rotatably connected with a vertical transmission column 17 through a bearing. The bottom of the vertical transmission column 17 is rotatably connected with a vertical rotating column 18 through a pin shaft. A longitudinal rotating column 19 is fixedly provided inside the bottom end of the vertical rotating column 18. The longitudinal rotating column 19 penetrates inside the rectangular rotating block 10 and is fixedly connected with the rectangular rotating block 10;
[0037] The longitudinal rotating column 19 penetrates inside the vertical sliding plate 9 and can be rotatably connected with the vertical sliding plate 9 through a bearing. Through the arrangement of the bearing, the longitudinal rotating column 19 can rotate inside the vertical sliding plate 9, and further the rotation of the longitudinal rotating column 19 can drive the rectangular rotating block 10 to rotate;
[0038] A vertical through groove is provided inside the vertical sliding plate 9. The vertical sliding rod 16 is located inside the vertical through groove and is slidably connected with the vertical sliding plate 9 through the vertical through groove. Through the arrangement of the vertical through groove, the vertical sliding rod 16 can vertically lift inside the vertical sliding plate 9. The lifting of the vertical sliding rod 16 enables the longitudinal rotating column 19 to rotate inside the vertical sliding plate 9 through the vertical transmission column 17 and the vertical rotating column 18, and further enables the rectangular rotating block 10 to rotate.
[0039] An arc-shaped block is fixedly provided on the outer side of the second vertical hydraulic cylinder 15. The arc-shaped block is fixedly connected with the vertical sliding plate 9, so that the second vertical hydraulic cylinder 15 can be fixed on the outer side of the vertical sliding plate 9, facilitating the operation of the second vertical hydraulic cylinder 15 to drive the vertical sliding rod 16 to vertically lift.
[0040] Inside the label box 2, a label output roller 11 is provided. One end inside the label box 2 is rotatably connected to a lateral driven roller 13 through a bearing. At the bottom end inside the label box 2, a label recycling roller 12 is provided. A second driving motor 14 is bolted to the outside of the label box 2, and the output end of the second driving motor 14 is fixedly connected to the label recycling roller 12. An inclined peeling plate 4 is fixed to the bottom of the outside of the label box 2. Through the operation of the second driving motor 14, the label recycling roller 12 can rotate, thereby enabling the label output roller 11 to unwind, allowing the label tape to pass outside the lateral driven roller 13 and the inclined peeling plate 4, and being wound by the label recycling roller 12.
[0041] Here, the operation of the first vertical hydraulic cylinder 6 enables the lateral support frame 7 to perform vertical lifting and lowering. The height of the label box 2 can follow the vertical lifting and lowering of the lateral support frame 7, thereby enabling the labeling height of the device to be adjusted. Through the operation of the first driving motor 8, the lateral threaded rod 26 can rotate. The rotation of the lateral threaded rod 26 enables the vertical sliding plate 9 to move horizontally inside the lateral support frame 7, thereby enabling the label box 2 to move horizontally following the vertical sliding plate 9, and enabling the labeling position of the label box 2 to be adjusted horizontally.
[0042] Through the operation of the second vertical hydraulic cylinder 15, the vertical sliding rod 16 can perform vertical lifting and lowering inside the vertical sliding plate 9. The lifting and lowering of the vertical sliding rod 16 enables the longitudinal rotating column 19 to rotate inside the vertical sliding plate 9 through the vertical transmission column 17 and the vertical rotating column 18. The rotation of the longitudinal rotating column 19 enables the rectangular rotating block 10 to rotate, thereby enabling the labeling angle of the label box 2 to be adjusted to facilitate the labeling requirements for the top or circumferential side of the superalloy part. Through the setting of the moving mechanism and the rotating mechanism, the label pasting device can adapt to workpieces of different sizes, can achieve precise positioning in the vertical and horizontal directions of the label pasting position, solves the problem of limited range of fixed height and position, enables the label box 2 to tilt at a certain angle, meets the labeling requirements for the top, side or curved surface of the workpiece, and is especially suitable for special-shaped superalloy parts.
[0043] Embodiment 2
[0044] As Figures 8-9 shown, based on the same concept as in the above Embodiment 1, this embodiment also proposes a pressing mechanism;
[0045] In this embodiment, the pressing mechanism includes a third vertical hydraulic cylinder 20. The third vertical hydraulic cylinder 20 is fixed to the outside of the label box 2. The output end of the third vertical hydraulic cylinder 20 is rotatably connected by a bearing to a longitudinal connecting member 21. The outside of the longitudinal connecting member 21 is rotatably connected by a bearing to a vertical transmission rod 22. The bottom of the vertical transmission rod 22 is rotatably connected by a pin shaft to a vertical rotating rod 24. The inside of the vertical rotating rod 24 is rotatably connected by a bearing to a longitudinal support member 23. One side of the longitudinal support member 23 close to the label box 2 is fixedly connected to the label box 2. One end of the bottom of the vertical rotating rod 24 is rotatably connected to the pressing roller 3 by a pin shaft.
[0046] A rectangular vertical slider 25 is fixed to one side of the longitudinal connecting member 21 close to the label box 2. A vertical chute is provided inside the label box 2. The rectangular vertical slider 25 is located inside the vertical chute and is slidably connected to the label box 2 through the vertical chute. Through the setting of the vertical chute, the rectangular vertical slider 25 can slide vertically inside the label box 2.
[0047] Here, the operation of the third vertical hydraulic cylinder 20 enables the longitudinal connecting member 21 to perform vertical lifting and lowering. During the vertical lifting and lowering process of the longitudinal connecting member 21, the rectangular vertical slider 25 can lift and lower inside the label box 2. The vertical lifting and lowering of the longitudinal connecting member 21 enables the vertical rotating rod 24 to rotate outside the longitudinal support member 23, and further enables the pressing roller 3 to rotate downward, so that the label can be pressed onto the surface of the workpiece to ensure that the label is closely adhered to the workpiece surface and prevent the label from falling off the surface of the workpiece. Through the setting of the pressing mechanism, a uniform and adjustable downward pressure is applied to the label to ensure its close fit with the workpiece surface, reduce the phenomenon of bubbles or warping, and prevent the subsequent label from falling off.
[0048] Working principle: The operation of the first vertical hydraulic cylinder 6 enables the horizontal support frame 7 to perform vertical lifting and lowering. The height of the label box 2 can follow the vertical lifting and lowering of the horizontal support frame 7, and thus the labeling height of the device can be adjusted. Through the operation of the first driving motor 8, the horizontal threaded rod 26 can rotate. The rotation of the horizontal threaded rod 26 enables the vertical sliding plate 9 to move horizontally inside the horizontal support frame 7, and further enables the label box 2 to move horizontally following the vertical sliding plate 9, so that the labeling position of the label box 2 can be adjusted horizontally.
[0049] Through the operation of the second vertical hydraulic cylinder 15, the vertical sliding rod 16 can vertically lift inside the vertical sliding plate 9. The lifting of the vertical sliding rod 16 enables the longitudinal rotating column 19 to rotate inside the vertical sliding plate 9 through the vertical transmission column 17 and the vertical rotating column 18. The rotation of the longitudinal rotating column 19 enables the rectangular rotating block 10 to rotate, thereby enabling the labeling angle of the label box 2 to be adjusted to facilitate the labeling requirements on the top or the circumferential side of the superalloy part. Through the setting of the moving mechanism and the rotating mechanism, the label pasting device can adapt to workpieces of different sizes, and can achieve precise positioning in the vertical and horizontal directions of the label pasting position, solving the problem of limited range of fixed height and position, enabling the label box 2 to tilt at a certain angle to meet the labeling requirements on the top, side or curved surface of the workpiece, and is particularly suitable for special-shaped superalloy parts.
[0050] The operation of the third vertical hydraulic cylinder 20 enables the longitudinal connecting piece 21 to vertically lift. During the vertical lifting of the longitudinal connecting piece 21, the rectangular vertical sliding block 25 can lift inside the label box 2. The vertical lifting of the longitudinal connecting piece 21 enables the vertical rotating rod 24 to rotate outside the longitudinal support piece 23 through the longitudinal connecting piece 21, thereby enabling the pressing roller 3 to rotate downward, enabling the label to be pressed onto the surface of the workpiece to ensure tight adhesion between the workpiece and the label and prevent the label from falling off the surface of the workpiece. Through the setting of the pressing mechanism, a uniform and adjustable downward pressure is applied to the label to ensure its close fit with the workpiece surface and reduce the phenomenon of bubbles or warping to prevent the subsequent label from falling off.
[0051] Although the embodiments of the present invention have been shown and described, it will be understood by those of ordinary skill in the art that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principles and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. A high-temperature alloy component label pasting device, characterized in that: It includes a workpiece conveyor belt (1), a label box (2) is arranged on the top of the workpiece conveyor belt (1), a rectangular rotating block (10) is fixed on the top of the label box (2), a vertical sliding plate (9) is arranged on the top of the rectangular rotating block (10), a rotating mechanism for rotating the rectangular rotating block (10) is arranged on the outer side of the vertical sliding plate (9), a transverse support frame (7) is arranged on the top of the vertical sliding plate (9), and a moving mechanism for moving the vertical sliding plate (9) is arranged inside the transverse support frame (7); One end of the label box (2) is provided with a pressing roller (3), and a pressing mechanism for pressing the pressing roller (3) is arranged on the outer side of the label box (2).
2. The high-temperature alloy part label pasting device according to claim 1, wherein: The moving mechanism includes a conical support base (5), a first vertical hydraulic cylinder (6) is fixed inside the conical support base (5), the output end of the first vertical hydraulic cylinder (6) is fixedly connected with the transverse support frame (7), a first driving motor (8) is bolted to one end of the transverse support frame (7), a transverse threaded rod (26) is fixed to the output end of the first driving motor (8), and the transverse threaded rod (26) penetrates through the inside of the vertical sliding plate (9) and is in threaded connection with the vertical sliding plate (9).
3. The high-temperature alloy part label pasting device according to claim 2, wherein: Dovetail sliders are fixed at both ends inside the transverse support frame (7), a dovetail chute adapted to the dovetail slider is opened inside the vertical sliding plate (9), and the transverse support frame (7) and the vertical sliding plate (9) are slidably connected through the cooperation of the dovetail slider and the dovetail chute.
4. The high-temperature alloy part label pasting device according to claim 2, characterized in that: The rotating mechanism includes a second vertical hydraulic cylinder (15), second vertical hydraulic cylinders (15) are arranged on both sides of the vertical sliding plate (9), the output end of the second vertical hydraulic cylinder (15) is rotatably connected with a vertical sliding rod (16) through a bearing, the outer side of the vertical sliding rod (16) is rotatably connected with a vertical transmission column (17) through a bearing, the bottom of the vertical transmission column (17) is rotatably connected with a vertical rotating column (18) through a pin shaft, and a longitudinal rotating column (19) is fixed inside the bottom end of the vertical rotating column (18), and the longitudinal rotating column (19) penetrates through the inside of the rectangular rotating block (10) and is fixedly connected with the rectangular rotating block (10).
5. The high-temperature alloy part label pasting device according to claim 4, wherein: The longitudinal rotating column (19) penetrates through the inside of the vertical sliding plate (9) and can be rotatably connected with the vertical sliding plate (9) through a bearing.
6. The high-temperature alloy part label pasting device according to claim 4, characterized in that: A vertical through groove is opened inside the vertical sliding plate (9), the vertical sliding rod (16) is located inside the vertical through groove and is slidably connected with the vertical sliding plate (9) through the vertical through groove.
7. The label pasting device for a superalloy part according to claim 4, characterized in that: An arc-shaped block is fixed on the outer side of the second vertical hydraulic cylinder (15), and the arc-shaped block is fixedly connected with the vertical sliding plate (9).
8. A high-temperature alloy part label pasting device according to claim 1, characterized in that: Inside the label box (2), a label output roller (11) is provided. At one end inside the label box (2), a lateral driven roller (13) is rotatably connected by a bearing. At the bottom end inside the label box (2), a label recycling roller (12) is provided. A second driving motor (14) is fixedly bolted to the outside of the label box (2). The output end of the second driving motor (14) is fixedly connected to the label recycling roller (12). An inclined peeling plate (4) is fixedly provided at the bottom of the outside of the label box (2).
9. The labeling device for superalloy parts according to claim 1, characterized in that: The pressing mechanism includes a third vertical hydraulic cylinder (20). The third vertical hydraulic cylinder (20) is fixedly provided on the outside of the label box (2). The output end of the third vertical hydraulic cylinder (20) is rotatably connected by a bearing to a longitudinal connecting member (21). The outside of the longitudinal connecting member (21) is rotatably connected by a bearing to a vertical transmission rod (22). The bottom of the vertical transmission rod (22) is rotatably connected by a pin shaft to a vertical rotating rod (24). Inside the vertical rotating rod (24), a longitudinal support member (23) is rotatably connected by a bearing. The longitudinal support member (23) is fixedly connected to the label box (2) on the side close to the label box (2). One end at the bottom of the vertical rotating rod (24) is rotatably connected by a pin shaft to the pressing roller (3).
10. The label pasting device for superalloy parts according to claim 9, wherein: A rectangular vertical slider (25) is fixedly provided on the side of the longitudinal connecting member (21) close to the label box (2). A vertical sliding groove is formed inside the label box (2). The rectangular vertical slider (25) is located inside the vertical sliding groove and is slidably connected to the label box (2) through the vertical sliding groove.
Citation Information
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