Cross film anti-skid layer coating equipment
The crescent-shaped baffle clamping structure, which combines an electric push rod and a telescopic rod, solves the problem of misalignment during the coating process of the cross-film anti-slip layer, simplifies the replacement process, and achieves efficient and stable coating results.
Patent Information
- Application Number
- CN202520164862.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-24
- Publication Date
- 2025-12-19
- Estimated Expiration
- 2035-01-24
AI Technical Summary
Cross-film anti-slip layers are prone to lateral sliding and displacement during the coating process, and the replacement process is cumbersome.
The crescent-shaped baffle clamping structure, which combines an electric push rod and a telescopic rod, ensures that the anti-slip layer remains centered during the coating process, and simplifies the replacement process through the combination of the push rod and the rotating rod.
It effectively prevents coating deviation, improves coating efficiency, and simplifies the replacement of the anti-slip layer.
Smart Images

Figure CN223683875U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of cross-film anti-slip layer coating technology, specifically to a cross-film anti-slip layer coating device. Background Technology
[0002] Cross-laminated membrane is a high-performance, cold-applied self-adhesive composite waterproof membrane made of specially cross-laminated high-density polyethylene (HDPE) strong film and high-quality polymer self-adhesive rubber asphalt through a special process. It has excellent dimensional stability, thermal stability, UV resistance and bidirectional tear resistance.
[0003] Cross-laminated membranes offer higher tear strength and dimensional stability, superior waterproofing compared to ordinary films. Their cross-laminated mesh structure effectively solves the problem of wrinkling and bubbling that easily occurs with non-reinforced HDPE polymer sheets after construction. Even with prolonged exposure after construction, the product's appearance quality remains unaffected, lasting up to approximately 6 months. They exhibit excellent resistance to high and low temperatures, adapting to climate changes in both hot and cold regions. Their superior elongation and tensile strength allow them to adapt to deformation of the underlying structure. Localized self-locking properties significantly reduce the chance of leakage. They possess unique puncture resistance, self-healing properties, and continuous tear resistance. Construction can be carried out using dry-laying, wet-laying, loose-laying, and pre-laid reverse-adhesive methods, reducing labor intensity and better adapting to substrate requirements. Widths of 1m-2m are available, reducing overlap and accelerating construction. They are particularly suitable for large-area construction, are safe and environmentally friendly, and eliminate safety hazards at the construction site.
[0004] Referring to existing publication number CN222000506U, patent name: A cross-film anti-slip layer coating equipment, this device utilizes a cross-film anti-slip layer coating process. During the coating process, only initial positioning by the construction personnel is required, and the coating operation is automatically performed during movement. The cross-film anti-slip layer winding roller and the coating pressing roller cooperate to rotate and automatically apply the cross-film anti-slip layer to the cross-film to be coated. This eliminates the need for manual coating by construction personnel, reducing labor intensity and providing high flexibility. During the coating process, the construction personnel can observe the remaining amount of cross-film anti-slip layer through a transparent cabinet door and replace it with a new layer in a timely manner, improving coating efficiency. However, during coating, the cross-film anti-slip layer is prone to lateral sliding on the surface of the cross-film anti-slip layer winding roller, causing coating misalignment and thus anti-slip layer displacement.
[0005] Therefore, since it does not meet the existing requirements, we propose a cross-film anti-slip layer coating device. Utility Model Content
[0006] The utility model discloses a cross film antiskid layer coating equipment to solve the cross film antiskid layer in the coating of the case of the above background art, and the cross film antiskid layer is more complicated when replacing and so on.
[0007] In order to achieve the above object, the utility model provides the following technical scheme: a cross film antiskid layer coating equipment, including the casing, both sides inner wall surface of the casing are all fixedly installed with the mounting panel, two the mounting panel between rotatory mounting and antiskid layer around the roller, both sides surface of the casing are all fixedly installed with the fixed station, the inside of fixed station is all fixedly installed with electric push rod, the output of electric push rod all is towards the center of casing and is fixedly installed with three telescopic link, the outer end of telescopic link is fixedly connected with crescent baffle, the outer surface of antiskid layer around the roller is equipped with cross film antiskid layer, both sides surface of cross film antiskid layer are all with the surface of crescent baffle.
[0008] Preferably, both ends of the antiskid layer around the roller are provided with spring grooves, a rotating rod is slidably installed in the interior of each spring groove, and a one-bar plate is fixedly installed on one end of each rotating rod close to the spring groove. The one-bar plate is slidably inserted into the interior of the spring groove, and a compression spring is movably installed between the one-bar plate and the interior of the spring groove.
[0009] Preferably, the interior of the fixed station is provided with a sliding groove, and the sliding groove penetrates the outer surface of the mounting panel and the fixed station at both ends. When the spring groove is in a non-compressed state, the rotating rod is at least partially protruding and inserted into the interior of the sliding groove. When the spring groove is in a compressed state, the rotating rod can be completely inserted into the interior of the spring groove.
[0010] Preferably, a pushing rod is slidably installed in the interior of the sliding groove, and the surface of one end of the pushing rod close to the cross film antiskid layer is attached to the surface of the rotating rod.
[0011] Preferably, a connecting rod is rotatably installed on the outer surface of the rotating rod, and a compression roller is movably installed between the two connecting rods.
[0012] Preferably, two moving wheels are arranged on both sides of the casing, and a handle is arranged on the rear side of the casing.
[0013] Compared with the prior art, the utility model has the beneficial effects that:
[0014] 1. The utility model discloses a cooperation of electric push rod and telescopic rod makes the device when using, can drive telescopic rod to push out through electric push rod, thereby moving the crescent baffle to the direction of cross film antiskid layer, so that two crescent baffles clamp cross film antiskid layer at the center position of antiskid layer around the roll surface, when the device is coating, can make cross film antiskid layer keep at the center position of antiskid layer around the roll surface, avoid the situation that cross film antiskid layer deviates and leads to coating deviation, can clamp and use cross film antiskid layer of different sizes simultaneously.
[0015] 2. The utility model discloses a cooperation of push rod and rotary rod makes the device when needing to remove antiskid layer around the roll and replace cross film antiskid layer, can press inwards through two push rods, make push rod push rotary rod and retract to the inside of spring recess, can directly take down antiskid layer around the roll from the inside of shell at this moment, subsequently remove the connecting rod connected on the rotary rod surface, can replace cross film antiskid layer in turn, convenient for the use of device. BRIEF DESCRIPTION OF DRAWINGS
[0016] Fig. 1 It is the overall structure schematic view of the utility model;
[0017] Fig. 2 It is the overall cross section side view of the utility model;
[0018] Fig. 3 It is the cross section overhead view of push rod position of the utility model;
[0019] Fig. 4 It is the cross section overhead view of telescopic rod position of the utility model.
[0020] In the drawing: 1, shell, 2, fixed table, 3, antiskid layer around the roll, 4, mounting plate, 5, handle, 6, moving wheel, 7, push rod, 8, telescopic rod, 9, crescent baffle, 10, cross film antiskid layer, 11, connecting rod, 12, compression roller, 13, rotary rod, 14, spring recess, 15, compression spring, 16, sliding groove, 17, electric push rod. DETAILED DESCRIPTION
[0021] The technical solutions in the embodiments of the utility model will be described clearly and completely below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, not all the embodiments.
[0022] Please refer to Figs. 1 to 4The utility model provides an embodiment: a kind of cross membrane anti -skid layer coating equipment, including shell 1, the both sides inner wall surface of shell 1 is fixedly installed with mounting plate 4, two mounting plate 4 are rotationally installed with anti -skid layer winding roller 3 between, the both sides surface of shell 1 is fixedly installed with fixed platform 2, the inside of fixed platform 2 is fixedly installed with electric push rod 17, the output of electric push rod 17 is all towards the center of shell 1 and is fixedly installed with three telescopic rods 8, the outer end of telescopic rod 8 is fixedly connected with crescent baffle 9, the outer surface of anti -skid layer winding roller 3 is equipped with cross membrane anti -skid layer 10, the both sides surface of cross membrane anti -skid layer 10 is all with the surface of crescent baffle 9 is pasted.
[0023] By the cooperation of electric push rod 17 and telescopic rod 8, the device can be driven by electric push rod 17 to push out telescopic rod 8 when in use, thereby moving crescent baffle 9 in the direction of cross membrane anti -skid layer 10, so that two crescent baffles 9 clamp cross membrane anti -skid layer 10 at the center position of the surface of anti -skid layer winding roller 3, so that cross membrane anti -skid layer 10 can be kept at the center position of the surface of anti -skid layer winding roller 3 during coating operation, avoiding the offset of cross membrane anti -skid layer 10 leading to the offset of coating, and different sizes of cross membrane anti -skid layer 10 can be clamped and used.
[0024] The both ends of anti -skid layer winding roller 3 are equipped with spring groove 14, the inside of spring groove 14 is slidably installed with rotating rod 13, one end of rotating rod 13 close to spring groove 14 is fixedly installed with one plate, the one plate is slidably clamped into the inside of spring groove 14, compression spring 15 is movably installed between the one plate and the inside of spring groove 14.
[0025] The inside of fixed platform 2 is equipped with sliding groove 16, the both ends of sliding groove 16 are respectively penetrated through the outside surface of mounting plate 4 and fixed platform 2, spring groove 14 makes rotating rod 13 at least partially protrude and clamp into the inside of sliding groove 16 when in non-compressed state, and spring groove 14 can drive rotating rod 13 to completely enter the inside of spring groove 14 when in compressed state.
[0026] The inside of sliding groove 16 is slidably installed with push rod 7, the surface of one end of push rod 7 close to cross membrane anti -skid layer 10 is pasted with the surface of rotating rod 13.
[0027] By the cooperation of push rod 7 and rotating rod 13, when it is necessary to remove anti -skid layer winding roller 3 to replace cross membrane anti -skid layer 10, push rod 7 can push rotating rod 13 to retract into the inside of spring groove 14 by pressing two push rods 7 inward, at this time, anti -skid layer winding roller 3 can be directly taken out from the inside of shell 1, then connecting rod 11 connected with the surface of rotating rod 13 is removed, and cross membrane anti -skid layer 10 can be replaced, facilitating the use of the device.
[0028] The outer surface of the rotating rod 13 is rotatably provided with the connecting rod 11, and the two connecting rods 11 are movably provided with the pressing roller 12.
[0029] The shell 1 is provided with two moving wheels 6 on both sides, and a handle 5 is arranged on the rear side of the shell 1.
[0030] When the cross-film anti-skid layer coating device is used, the two push rods 7 can be pressed inward first, so that the push rods 7 push the rotating rod 13 to retract into the spring groove 14. At this time, the anti-skid layer winding roller 3 can be directly taken off from the inside of the shell 1. Then, the connecting rod 11 connected to the surface of the rotating rod 13 is removed. At this time, the cross-film anti-skid layer 10 can be installed on the surface of the anti-skid layer winding roller 3. Then, the connecting rod 11 is installed on the surface of the rotating rod 13, and the anti-skid layer winding roller 3 is installed back to the original position. One end of the cross-film anti-skid layer 10 is passed through the lower side of the pressing roller 12, so that the pressing roller 12 presses the cross-film anti-skid layer 10 downward, and the end of the cross-film anti-skid layer 10 pressed is attached to the surface of the cross-film. At this time, the handle 5 can be pulled by the personnel, so that the shell 1 moves through the moving wheels 6. At this time, the cross-film anti-skid layer 10 is uniformly coated on the surface of the cross-film due to the downward pressing of the pressing roller 12, and the coating operation of the anti-skid layer of the cross-film is completed.
[0031] When the coating operation is performed, the telescopic rod 8 can be driven to push out by the electric push rod 17, so as to drive the crescent-shaped baffle 9 to move to the direction of the cross-film anti-skid layer 10, so that the two crescent-shaped baffles 9 clamp the cross-film anti-skid layer 10 at the central position of the surface of the anti-skid layer winding roller 3. When the device performs the coating operation, the cross-film anti-skid layer 10 can be kept at the central position of the surface of the anti-skid layer winding roller 3, so as to avoid the deviation of the cross-film anti-skid layer 10 from causing the deviation of the coating. Meanwhile, the cross-film anti-skid layer 10 of different sizes can be clamped and used.
[0032] It is apparent for those skilled in the art that the present application is not limited to the details of the above exemplary embodiments, but can be implemented in other concrete forms without departing from the spirit or essential characteristics of the present application. Therefore, the embodiments should be considered in all aspects as exemplary and non-restrictive, and the scope of the present application is defined by the appended claims rather than the above description, and therefore all changes falling within the meaning and range of equivalent elements of the claims are intended to be embraced in the present application. Any reference signs in the claims should not be considered as limiting the claims involved.
Claims
1. A cross-membrane anti-slip layer coating apparatus comprising a housing (1), characterized in that: The both side inner wall surfaces of the shell (1) are fixedly installed with mounting plates (4), the two mounting plates (4) are rotationally installed with the anti-skid layer winding roller (3), the both side surfaces of the shell (1) are fixedly installed with fixed tables (2), the interiors of the fixed tables (2) are fixedly installed with electric push rods (17), the output ends of the electric push rods (17) are towards the center of the shell (1) and are fixedly installed with three telescopic rods (8), the outer ends of the telescopic rods (8) are fixedly connected with crescent baffles (9), the outer surface of the anti-skid layer winding roller (3) is provided with a cross film anti-skid layer (10), and the both side surfaces of the cross film anti-skid layer (10) are attached to the surfaces of the crescent baffles (9).
2. A crosslamination anti-slip layer coating apparatus according to claim 1, characterized in that: The both ends of the anti-skid layer winding roller (3) are provided with spring grooves (14), the interiors of the spring grooves (14) are slidably installed with rotating rods (13), one ends of the rotating rods (13) close to the spring grooves (14) are fixedly installed with one-piece plates, the one-piece plates are slidably clamped into the interiors of the spring grooves (14), and the interiors of the spring grooves (14) are movably installed with compression springs (15) between the one-piece plates and the spring grooves (14).
3. A crosslamination anti-slip layer coating apparatus according to claim 2, wherein: The interiors of the fixed tables (2) are provided with sliding grooves (16), the both ends of the sliding grooves (16) penetrate the outer side surfaces of the mounting plates (4) and the fixed tables (2), the rotating rods (13) are at least partially protruded and clamped into the interiors of the sliding grooves (16) when the spring grooves (14) are in a non-compressed state, and the rotating rods (13) can be completely entered into the interiors of the spring grooves (14) when the spring grooves (14) are in a compressed state.
4. A crosslamination anti-slip layer coating apparatus according to claim 3, wherein: The interiors of the sliding grooves (16) are slidably installed with push rods (7), and the one ends of the push rods (7) close to the cross film anti-skid layer (10) are attached to the surfaces of the rotating rods (13).
5. The cross-membrane slip sheet coating apparatus of claim 3, wherein: The outer surfaces of the rotating rods (13) are rotationally installed with connecting rods (11), and the connecting rods (11) are movably installed with compression rollers (12) between them.
6. The cross-membrane slip sheet coating apparatus of claim 1, wherein: The both sides of the shell (1) are provided with two moving wheels (6), and the rear side of the shell (1) is provided with a handle (5).
Citation Information
Patent Citations
Cross film anti-skid layer coating equipment
CN222000506U