Anti-static flame-retardant label
By incorporating a flame-retardant shell, conductive ceramic frame, and multi-layer scratch-resistant transparent film into the label, the problem of label wear is solved, information integrity is ensured, and an illumination function is provided, making it suitable for antistatic and flame-retardant labels.
Patent Information
- Application Number
- CN202423282325.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-30
- Publication Date
- 2026-01-09
- Estimated Expiration
- 2034-12-30
AI Technical Summary
Existing antistatic and flame-retardant labels are prone to wear and tear during use, resulting in incomplete label information, especially when scratched due to friction during cable laying.
A static-resistant and flame-retardant label was designed, which adopts a flame-retardant shell and an internal label structure, combined with a conductive ceramic frame, a multi-layer anti-scratch transparent film and an auxiliary light. The conductive ceramic frame and the multi-layer anti-scratch transparent film prevent wear, and the auxiliary light provides illumination in low-light environments.
It effectively prevents the tags from wearing out during cable dragging, maintains information integrity, and makes it easy to view tag information in low-light environments.
Smart Images

Figure CN223784814U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of labels, specifically, it relates to an antistatic and flame-retardant label. Background Technology
[0002] Labels are now widely used, such as on household goods, electronic components and cables. They are mainly used to display the attribute information of the items, and there are also warning labels used as reminders.
[0003] Currently, antistatic and flame-retardant labels have emerged to ensure the proper use of items requiring antistatic and high-temperature protection. These labels are primarily made from special materials that possess both antistatic and flame-retardant properties. However, during use, we have found that while these labels achieve these properties, they are subject to wear and tear. This wear and tear can lead to incomplete information recorded on the labels. For example, when affixed to the surface of cables, the labels rub against the ground as the cables are laid, scratching the information on the label surface. Therefore, this utility model is proposed to address these issues. Utility Model Content
[0004] The technical problem to be solved by this utility model is to overcome the shortcomings of the existing technology and provide a static electricity-resistant flame-retardant label.
[0005] To solve the above-mentioned technical problems, the basic concept of the technical solution adopted by this utility model is as follows:
[0006] A static-proof flame-retardant label includes a flame-retardant shell and an inner label. The inside of the flame-retardant shell is provided with a groove for placing the inner label. A limiting frame is provided in the middle of the groove. The upper end of the limiting frame abuts against a transparent cover. Limiting holes are provided on both sides of the transparent cover for the limiting head to abut against. Multiple layers of anti-scratch transparent film are sequentially attached to the upper end of the transparent cover.
[0007] An insulating flame-retardant pad is fixed to the bottom of the flame-retardant housing. The bottom of the insulating flame-retardant pad is bonded to the outer sheath of the cable through an adhesive layer. A support for placing a conductive ceramic frame is fixed to the upper end of the flame-retardant housing. A cover frame is installed on the upper end of the support frame through a fixing bolt. A reserved area is reserved in the middle of the cover frame for the top protrusion of the conductive ceramic frame to pass through.
[0008] The built-in label includes a waterproof membrane, flame-retardant paper, ceramic paper, an antistatic layer, and a printing layer. The upper end of the flame-retardant paper is bonded to the ceramic paper with heat-resistant adhesive. An antistatic layer is provided on the upper end of the ceramic paper. The upper surface of the antistatic layer is printed with cable information. Both the printing layer and the flame-retardant paper are covered with a waterproof membrane layer, and the edges of the two waterproof membrane layers are fixed to each other.
[0009] Optionally, the lower end of the flame-retardant shell is fixed with positioning columns on both sides, which are in contact with the cable outer sheath, and rotating seats are symmetrically fixed at the front and rear ends of the flame-retardant shell, and a fixing belt is rotatably connected to the middle part of each rotating seat, the end of each fixing belt at the front end of the flame-retardant shell is fixed with a limiting ring, a reserved hole for the fixing belt to pass through is reserved in the middle part of each limiting ring, and a limiting bolt is threadedly connected to the bottom of each limiting ring.
[0010] Optionally, the bottom of the groove is fixed with a sleeve rod, a movable rod is movably connected to the upper end of each sleeve rod, and a first return spring for resisting the sleeve rod is arranged in the sleeve rod, a lower abutting plate for abutting against the built-in label page is fixed to the top of the movable rod, an upper abutting plate abuts against the upper end of the built-in label page, and the upper abutting plate is fixed to the lower end of the limiting frame.
[0011] Optionally, the inside of the limiting frame is provided with auxiliary illuminating light strips on both sides, the auxiliary illuminating light strips are connected with the battery holder in the flame-retardant shell through wires, the terminal of the battery holder is connected with the terminal of the battery module, the battery module is installed in the reserved groove on the side of the flame-retardant shell, the battery module is fixed with the side of the flame-retardant shell through the mounting bolt, and the battery module is connected with the side pressing switch at the upper end of the flame-retardant shell through wires.
[0012] Optionally, the pressing switch is installed in the inside of the threaded sleeve, the threaded sleeve is fixed at the upper end of the flame-retardant shell, the outside of the threaded sleeve is threadedly connected with the limiting cover, the middle part of the limiting cover is provided with a clearance hole for the middle part of the rubber elastic cover to be placed in, and the opposite surfaces of the limiting cover and the threaded sleeve abut against the bottom of the rubber elastic cover.
[0013] Optionally, the bottom of the transparent cover is integrally formed with a positioning frame matched with the positioning groove at the upper end of the limiting frame, and the bottom of the positioning frame is fixed with a sealing gasket, and the bottom of the sealing gasket abuts against the inside of the positioning groove.
[0014] Optionally, the limiting head is movably connected in the movable cavity formed in the upper end of the flame-retardant shell, a second return spring for abutting against the limiting head is arranged in the movable cavity, and a push piece is fixed to the upper end of the limiting head, and the push piece penetrates to the outside of the movable cavity.
[0015] After the above technical scheme is adopted, the present application has the following advantages compared with the prior art, of course, any product implementing the present application does not necessarily need to achieve all the advantages described below:
[0016] 1. The utility model discloses a flame -retardant shell and perspective cover to built -in label page played the function of scratchproof, make even if in the cable arrangement process drag cable cause friction also can't damage the label, guarantee the integrality of record information on label page, and the surface of flame -retardant shell is equipped with the conductive ceramic that can prevent static electricity from generating, and the wear -resisting effect of conductive ceramic itself is excellent, when dragging cable, will first rub the conductive ceramic when wearing the flame -retardant shell, second even when contact friction convex surface will utilize the scratchproof perspective film of multilayer setting scratchproof perspective cover, prevent the surface of perspective cover from being scratched and affect the viewing effect, when scratchproof perspective film is damaged, can directly tear off multilayer scratchproof perspective film and re -paste.
[0017] 2. The utility model discloses through setting up auxiliary lighting lamp is convenient for user to check built -in label page's information under the situation of bad lighting environment, namely press the rubber elastic cover trigger press switch, auxiliary lighting lamp illuminates the internal environment of flame -retardant shell at this moment, to supply the relevant information of maintenance worker to check this cable.
[0018] The specific embodiments of the utility model will be described in further detail below in combination with the drawings. DRAWINGS
[0019] The drawings in the following description are only some embodiments, and other drawings can also be obtained according to these drawings without paying creative labor for ordinary skilled in the art. In the drawings:
[0020] Figure 1 It is the main view cross -section structure schematic diagram of the utility model;
[0021] Figure 2 It is the combination part structure diagram of sleeve rod, movable rod and first return spring in the utility model;
[0022] Figure 3 It is the A part structure enlarged diagram in Figure 1
[0023] It is the B part structure enlarged diagram in Figure 4 Figure 1 It is the C part structure enlarged diagram in
[0024] Figure 5 Figure 1 It is the D part structure enlarged diagram in
[0025] Figure 6 It is the E part structure enlarged diagram in Figure 1
[0026] It is the E part structure enlarged diagram in Figure 7 Figure 1 It is the E part structure enlarged diagram in
[0027] The components represented by the numbers in the drawings are listed as follows:
[0028] 1, flame-retardant shell; 2, built-in label page; 3, limiting frame; 4, see-through cover; 5, limiting head; 6, scratch-resistant see-through film; 7, insulating flame-retardant pad; 8, adhesive layer; 9, conductive ceramic frame; 10, holder; 11, fixing bolt; 12, cover frame; 13, waterproof film; 14, flame-retardant paper; 15, ceramic paper; 16, anti-static layer; 17, printing layer; 18, positioning column; 19, rotating seat; 20, fixing band; 21, limiting ring; 22, limiting bolt; 23, sleeve rod; 24, movable rod; 25, first return spring; 26, lower abutting plate; 27, upper abutting plate; 28, auxiliary lighting lamp strip; 29, battery holder; 30, battery module; 31, mounting bolt; 32, press switch; 33, limiting cover; 34, rubber elastic cover; 35, alignment frame; 36, sealing gasket; 37, second return spring; 38, push piece.
[0029] It should be noted that these drawings and written descriptions are not intended to limit the scope of the concept of the present application in any way, but to illustrate the concept of the present application to those skilled in the art by referring to specific embodiments. DETAILED DESCRIPTION
[0030] The present application will now be further described in detail with reference to the accompanying drawings.
[0031] Please refer to Figures 1 to 7 The present application provides a technical solution: an anti-static flame-retardant label, comprising a flame-retardant shell 1 and a built-in label page 2, the flame-retardant shell 1 is internally provided with a groove for placing the built-in label page 2, a limiting frame 3 is arranged in the middle of the groove, the upper end of the limiting frame 3 abuts against a see-through cover 4, limiting holes for abutting against limiting heads 5 are arranged at both ends of the see-through cover 4, and a plurality of layers of scratch-resistant see-through films 6 are sequentially attached to the upper end of the see-through cover 4.
[0032] An insulating flame-retardant pad 7 is fixed to the bottom of the flame-retardant shell 1, the bottom of the insulating flame-retardant pad 7 is adhered to the outer sheath of a cable through an adhesive layer 8, a holder 10 for placing a conductive ceramic frame 9 is fixed to the upper end of the flame-retardant shell 1, a cover frame 12 is installed on the upper end of the holder 10 through a fixing bolt 11, and a reserved area for the top end of the conductive ceramic frame 9 to penetrate is reserved in the middle of the cover frame 12.
[0033] The built-in label page 2 comprises a waterproof film 13, a fire-retardant paper 14, a ceramic paper 15, an anti-static layer 16 and a printed layer 17, the upper end of the fire-retardant paper 14 is bonded with the ceramic paper 15 through a heat-resistant glue solution, the anti-static layer 16 is arranged at the upper end of the ceramic paper 15, the upper surface of the anti-static layer 16 is printed with the printed layer 17 of cable information, the outer part of the printed layer 17 and the fire-retardant paper 14 is attached with the waterproof film 13 layer, the edges of the two waterproof film 13 layers are fixed to each other, considering that the existing label is worn during use, and the wear will cause the label record information to be incomplete, for example, when being pasted on the surface of the cable, the label is rubbed with the ground due to the cable laying and dragging, thereby scratching the surface information of the label, the fire-retardant shell 1 and the perspective cover 4 play a role of preventing scratching on the built-in label page 2, so that even if the cable is dragged during the cable laying process, the label will not be damaged, the integrity of the record information on the label page is ensured, and the surface of the fire-retardant shell 1 is provided with conductive ceramic capable of preventing static electricity, and the conductive ceramic itself has excellent wear resistance, when the fire-retardant shell 1 is worn during the cable dragging process, the conductive ceramic is first rubbed, and then even if the convex surface is rubbed, the anti-scratch perspective film 6 arranged in multiple layers is used to prevent the anti-scratch perspective cover 4 from being scratched, so that the viewing effect is not affected when the surface of the anti-scratch perspective cover 4 is scratched, and when the anti-scratch perspective film 6 is damaged, the multiple anti-scratch perspective films 6 can be directly torn off and re-pasted.
[0034] Wherein, the lower end of the fire-retardant shell 1 is fixed with the positioning column 18 which contacts with the cable outer sheath, the front and rear ends of the fire-retardant shell 1 are symmetrically fixed with the rotating seat 19, and the middle part of each rotating seat 19 is rotatably connected with the fixed belt 20, the end of the two fixed belts 20 located at the front end of the fire-retardant shell 1 is fixed with the limiting ring 21, the middle part of each limiting ring 21 is reserved with the reserved hole for the fixed belt 20 to penetrate, and the bottom of each limiting ring 21 is threadedly connected with the limiting bolt 22, the positioning column 18 is arranged to make the fire-retardant shell 1 more fixed and prevent slipping when the fire-retardant shell 1 is preliminarily fixed with the cable outer sheath through the adhesive layer 8, that is, the fixed belt 20 at the rear side is penetrated into the limiting ring 21 at the end of the fixed belt 20 at the front end through the adhesive layer 8, and then the fixed belt 20 is pulled tight, so that the fire-retardant shell 1 is fixed outside the cable outer sheath, and then the limiting bolt 22 is tightened to fix the position of the fixed belt 20.
[0035] The bottom of the groove is fixed with a sleeve rod 23, the upper end of each sleeve rod 23 is movably connected with a movable rod 24, the inside of the sleeve rod 23 is provided with a first reset spring 25 for resisting the sleeve rod 23, the top of the movable rod 24 is fixed with a lower resisting plate 26 for resisting the built-in label page 2, the upper end of the built-in label page 2 is resisted by an upper resisting plate 27, and the upper resisting plate 27 is fixed at the lower end of the limiting frame 3. The first reset spring 25 is reset to resist the top of the movable rod 24, so that the upper resisting plate 27 and the lower resisting plate 26 can clamp the built-in label page 2, thereby avoiding the built-in label page 2 from being offset in the position inside the flame-retardant shell 1, which causes the viewing to be affected.
[0036] The inside of the limiting frame 3 is provided with an auxiliary lighting strip 28 on both sides, and the auxiliary lighting strip 28 is connected with a battery holder 29 inside the flame-retardant shell 1 through a wire, the terminal of the battery holder 29 is connected with the terminal of a battery module 30, the battery module 30 is installed in a reserved groove on the side of the flame-retardant shell 1, the battery module 30 is fixed with the side of the flame-retardant shell 1 through a mounting bolt 31, and the battery module 30 is connected with a side pressing switch 32 at the upper end of the flame-retardant shell 1 through a wire. The setting of the auxiliary lighting lamp facilitates the user to view the information of the built-in label page 2 in the case of poor lighting environment, that is, the rubber elastic cover 34 is pressed to trigger the pressing switch 32, at this time the auxiliary lighting lamp is powered on to illuminate the internal environment of the flame-retardant shell 1, so as to provide the maintenance worker to view the related information of the cable.
[0037] The pressing switch 32 is installed in the inside of the threaded sleeve, the threaded sleeve is fixed at the upper end of the flame-retardant shell 1, the outside of the threaded sleeve is threadedly connected with a limiting cover 33, the middle part of the limiting cover 33 is provided with a gap hole for the middle part of the rubber elastic cover 34 to be inserted, and the opposite surfaces of the limiting cover 33 and the threaded sleeve are resisted by the bottom of the rubber elastic cover 34. The setting of the rubber elastic cover 34 plays a sealing protection role on the pressing switch 32 without affecting the user to trigger the pressing switch 32, avoiding the case that the pressing switch 32 is exposed to rain and causes water seepage.
[0038] The bottom of the perspective cover 4 is integrally formed with a positioning frame 35 matched with the positioning groove at the upper end of the limiting frame 3, and the bottom of the positioning frame 35 is fixed with a sealing gasket 36, and the bottom of the sealing gasket 36 is resisted by the inside of the positioning groove. The setting of the positioning frame 35 plays a positioning role between the perspective cover 4 and the limiting frame 3, after positioning, it is convenient for the limiting head 5 at both ends of the perspective cover 4 to be inserted into the limiting hole, and the existence of the sealing gasket 36 plays a sealing role between the perspective cover 4 and the limiting frame 3, preventing rainwater from seeping into the inside of the device.
[0039] The limiting head 5 is movably connected in the movable cavity opened in the upper end of the flame-retardant shell 1, a second reset spring 37 for abutting against the limiting head 5 is arranged in the movable cavity, and the upper end of the limiting head 5 is fixed with a push piece 38 penetrating to the outside of the movable cavity, the second reset spring 37 plays a reset role on the limiting head 5, that is, when the second reset spring 37 is reset, the limiting head 5 is inserted into the limiting hole of the perspective cover 4 to complete the fixation of the perspective cover 4 by the flame-retardant shell 1.
[0040] The utility model is not limited to the above-mentioned embodiment, any person should know the structural change made under the inspiration of the utility model, any technical scheme with the same or similar utility model falls into the protection scope of the utility model. The utility model is not described in detail, and the technical, shape and structure parts are all known technology.
Claims
1. An antistatic flame resistant label comprising a flame resistant housing (1) and an inner label sheet (2), characterized in that, The interior of the fire-retardant shell (1) is provided with a recess for placing the built-in label page (2), a limiting frame (3) is arranged in the middle of the recess, the upper end of the limiting frame (3) abuts against the perspective cover (4), limiting holes for abutting against the limiting heads (5) are arranged in the two end sides of the perspective cover (4), and a plurality of scratch-proof perspective films (6) are sequentially attached to the upper end of the perspective cover (4). The bottom of the fire-retardant shell (1) is fixed with an insulating fire-retardant pad (7), the bottom of the insulating fire-retardant pad (7) is bonded with the cable outer sheath through an adhesive layer (8), the upper end of the fire-retardant shell (1) is fixed with a holder (10) for placing the conductive ceramic frame (9), the upper end of the holder (10) is installed with a cover frame (12) through a fixing bolt (11), and a reserved area for the top end of the conductive ceramic frame (9) to protrude through is reserved in the middle of the cover frame (12). The built-in label page (2) comprises a waterproof film (13), a fire-retardant paper (14), a ceramic paper (15), an anti-static layer (16) and a printing layer (17), the upper end of the fire-retardant paper (14) is bonded with the ceramic paper (15) through a heat-resistant glue solution, the anti-static layer (16) is arranged on the upper end of the ceramic paper (15), the upper surface of the anti-static layer (16) is printed with the printing layer (17) of cable information, and the outer portions of the printing layer (17) and the fire-retardant paper (14) are attached with waterproof film (13) layers, and the edges of the two waterproof film (13) layers are fixed to each other.
2. An antistatic flame resistant label according to claim 1, wherein The lower ends of the fire-retardant shell (1) are fixed with positioning columns (18) in contact with the cable outer sheath, rotating seats (19) are symmetrically fixed at the front and rear ends of the fire-retardant shell (1), a fixing belt (20) is rotatably connected to the middle of each rotating seat (19), the end heads of the two fixing belts (20) located at the front end of the fire-retardant shell (1) are fixed with limiting rings (21), a reserved hole for the fixing belt (20) to penetrate through is reserved in the middle of each limiting ring (21), and a limiting bolt (22) is threadedly connected to the bottom of each limiting ring (21).
3. The anti-static, flame resistant label of claim 1, wherein, The bottom of the recess is fixed with a sleeve rod (23), an active rod (24) is movably connected to the upper end of each sleeve rod (23), a first reset spring (25) for abutting against the sleeve rod (23) is arranged in the interior of the sleeve rod (23), a lower abutting plate (26) for abutting against the built-in label page (2) is fixed to the top of the active rod (24), an upper abutting plate (27) abuts against the upper end of the built-in label page (2), and the upper abutting plate (27) is fixed to the lower end of the limiting frame (3).
4. The antistatic flame resistant label of claim 1, wherein, The interiors of the limiting frame (3) are provided with auxiliary illuminating light strips (28), the auxiliary illuminating light strips (28) are connected with a battery holder (29) in the interior of the fire-retardant shell (1) through wires, the terminals of the battery holder (29) are connected with the terminals of a battery module (30), the battery module (30) is installed in a reserved groove in the side of the fire-retardant shell (1), the battery module (30) is fixed with the side of the fire-retardant shell (1) through an installation bolt (31), and the battery module (30) is connected with a pressing switch (32) on one side of the upper end of the fire-retardant shell (1) through wires.
5. An antistatic flame resistant label according to claim 4, wherein The press switch (32) is installed in the interior of the threaded sleeve which is fixed on the upper end of the flame-retardant shell (1), and the exterior of the threaded sleeve is threadedly connected with the limiting cover (33), and the middle part of the limiting cover (33) is provided with a clearance hole for the middle part of the rubber elastic cover (34) to be inserted, and the opposite surfaces of the limiting cover (33) and the threaded sleeve are in contact with the bottom of the rubber elastic cover (34).
6. The anti-static, flame resistant label of claim 1, wherein, The bottom of the perspective cover (4) is integrally formed with the alignment frame (35) which is matched with the alignment groove on the upper end of the limiting frame (3), and the bottom of the alignment frame (35) is fixed with the sealing gasket (36), and the bottom of the sealing gasket (36) is in contact with the interior of the alignment groove.
7. The anti-static, flame resistant label of claim 1, wherein, The limiting head (5) is movably connected in the movable cavity on the upper end of the flame-retardant shell (1), and the second reset spring (37) for contacting the limiting head (5) is arranged in the movable cavity, and the upper end of the limiting head (5) is fixed with the push piece (38), and the push piece (38) penetrates to the exterior of the movable cavity.