Novel multi-ribbed composite wall panel hole water stop belt

By designing a new type of ribbed composite wall panel opening waterstop, and utilizing extended components and clamping structures, the adaptability and stability of the waterstop in different gaps are solved, achieving efficient sealing and convenient installation.

CN119956893BActive Publication Date: 2025-10-17CHINA CONSTR FIFTH ENG DIV CORP LTD +1
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Patent Information

Application Number
CN202510213058.2
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-02-25
Publication Date
2025-10-17
Estimated Expiration
2045-02-25

AI Technical Summary

Technical Problem

Existing waterstops cannot simultaneously enhance the water-stopping range and sealing performance during use. They also require trimming and adjustment when the gaps are narrow or wide, making them inconvenient to use. Furthermore, the clamping components have poor stability and are prone to delamination and curling.

Method used

A new type of dense-rib composite wall panel opening waterstop has been designed, which includes a longitudinal waterstop body, an expansion component, a tensioning component and an adjustable positioning component. Through the expansion and clamping structure of the rubber belt, it can adapt to different gaps and increase stability and sealing.

Benefits of technology

It improves the adaptability and stability of the waterstop, prevents delamination and curling, maintains the sealing effect, adapts to different gap widths, and enhances ease of use and stability.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The application belongs to the technical field of hole water stop of multi-rib composite wall board, and discloses a novel hole water stop of multi-rib composite wall board, which comprises a longitudinal water stop body, and an expansion assembly is further arranged on the outer side of the longitudinal water stop body. The rubber belt structure in the expansion assembly can be stretched and expanded. When laying, the rubber belt in the expansion assembly can be stretched and expanded on the outer side of the longitudinal water stop body, or the rubber belt can be pushed and clamped on the outer surface of the longitudinal water stop body, so that the width of the longitudinal water stop body and the rubber belt is shortened, the corresponding building gap is matched, the convenience of use is further improved, meanwhile, the elastic buckle structure is clamped on the outer side of the steel bar of the building, further stable tension is formed, the water stop belt clamping assembly is prevented from falling off and deflecting, and the rubber extrusion plate can be abutted against the surface of the longitudinal water stop body during the installation of the longitudinal water stop body, so that the risk of glue falling off and edge lifting of the longitudinal water stop body is reduced.
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Description

TECHNICAL FIELD

[0001] The application belongs to the technical field of ribbed composite wall panel hole water stop, and specifically relates to a novel ribbed composite wall panel hole water stop belt. BACKGROUND

[0002] The water stop belt is a sealing material used in building construction to prevent water penetration, and is mainly used in water conservancy projects, basements, tunnels, culverts, dams, ports and other structures to ensure the waterproof performance of the structure. The main function of the water stop belt is to form a sealing barrier to prevent water from penetrating through the structure joint or crack, thereby protecting the structure from water damage. During the concrete pouring process, the water stop belt is embedded in the construction joint, deformation joint or crack to ensure the sealing of these joints and prevent the intrusion of water and pollutants.

[0003] Meanwhile, the water stop adhesive tape disclosed in CN115746727A includes a base material layer, an adhesive layer located on the base material layer, and a swelling layer located on the base material layer together with the adhesive layer and having at least one deformation auxiliary structure selected from the group consisting of a groove and a notch.

[0004] Meanwhile, the water stop belt and water stopping method disclosed in CN119083765A include a filler material, a flexible belt and a metal rust-proof layer. The filler material fills the structural joint between two concrete members. The water side of the two concrete members near the structural joint is provided with a groove, and the flexible belt is arranged in the corresponding groove. The metal rust-proof layer covers one side of the flexible belt away from the concrete member and the structural joint.

[0005] The water stop adhesive tape and the water stop belt and water stopping method described above increase the metal layer to prevent rust during use, and cooperate with the curved deformation structure to fit the curved surface of the building layer, thereby enhancing the sealing performance. However, in the above-mentioned structure, the water stopping range, water stopping sealing performance and protection performance of the water stop belt cannot be simultaneously enhanced. When the gap is narrow or the gap is wide, the width of the water stop belt needs to be trimmed and adjusted. The convenience of using the water stop belt in the above-mentioned area is reduced, and the upper part of the water stop belt clamping assembly structure has no supporting structure, and the positioning stability is general. At the same time, the water stop belt is prone to delamination and edge lifting between the edge position of the water stop belt and the building gap during use, which causes a gap between the water stop belt and the gap, thereby affecting the water stopping sealing performance.

[0006] Therefore, the novel ribbed composite wall panel hole water stop belt is proposed to solve the above-mentioned problems. SUMMARY

[0007] To solve the problems raised in the background art, the present application provides a new type of ribbed composite wall panel hole water stop belt, which has a side wing expansion assembly structure that can increase the expansion of the longitudinal water stop belt body, stretch and lengthen the longitudinal water stop belt body, and flexibly adjust the fit into the gap of the building, thereby avoiding the generation of gaps. At the same time, the water stop belt is pressed against the water stop surface, increasing the sealing performance.

[0008] To achieve the above-mentioned purpose, the present application provides the following technical solution: a new type of ribbed composite wall panel hole water stop belt, comprising a longitudinal water stop belt body, a deformation hole is formed in the middle position of the longitudinal water stop belt body, and an expansion assembly is further included on the outer side of the longitudinal water stop belt body, which includes a rubber belt fitted on the outer side of the longitudinal water stop belt body, a anti-off mesh layer is provided on the front surface of the rubber belt, a contact end is fixedly provided on the outer side of the anti-off mesh layer, a winding belt is wound on the left side of the longitudinal water stop belt body, and a tight line assembly is further included in the inside of the winding belt, which includes a vertical plate one as a winding column of the winding belt, a positioning end is fixedly provided on the top end of the vertical plate one, a rotating end is sleeved on the outer side of the positioning end, a steel rod is welded on the outer side of the rotating end, a water stop belt clamping assembly is further included above the expansion assembly, the water stop belt clamping assembly includes clamping plates one and two with clamping function, and is arranged on the front and rear sides of the upper rubber belt, a hinge is hingedly arranged between the top ends of the clamping plates one and two, a horizontal plate is fitted on the side of the clamping plate one facing the clamping plate two, a buckle is fixedly provided on the front bottom end of the clamping plate two, and an adjustable positioning assembly is further included on the outer side of the buckle, which includes an adjusting frame abutting against the clamping plate two and the buckle, and a rubber extrusion plate abutting against the rubber belt is slidably arranged on the bottom end of the adjusting frame, the vertical plate one is arranged in the inside of the winding belt and is fitted on the outer side of the winding belt, a vertical plate two is arranged side by side with the vertical plate one, the vertical plate two is arranged in a clamping manner on the outer side of the rear part of the winding belt, the vertical plate one and the vertical plate two are bound by a wire one, and the winding belt is clamped and bound, universal rods are rotatably arranged in the inside of both ends of the vertical plate two, auxiliary hooks one are welded on the ends of the universal rods, a square block is fixedly arranged on the middle position of the steel rod, a rotating plate is rotatably arranged between the two square blocks, a connecting buckle is rotatably arranged on the outer side of the lower square block, a through hole is formed in the middle position of the connecting buckle, a wire two is passed through the through hole of the connecting buckle to tighten, a guide pipe is fixedly arranged on the other end of the steel rod, a screw one is spirally arranged in the inside of the guide pipe, an auxiliary hook two is rotatably arranged on the other end of the screw one, a limiting hook corresponding in shape is slidably arranged in the inside of the auxiliary hook two, a screw two is passed through the inside of the screw one and is rotatably arranged with the limiting hook.

[0009] Preferably, the inside of the rubber belt is embedded with a zigzag elastic steel plate, and the zigzag elastic steel plate is arranged in a tower shape that is gathered to the middle, and the inner wall of the rubber belt is provided with spaced grooves.

[0010] Preferably, the anti-dropping mesh layer is fixed to the surface of the rubber belt by adhesive, and a spaced fence made of steel wire is embedded between the anti-dropping mesh layer and the rubber belt.

[0011] Preferably, a deformation hole is arranged at the middle of the longitudinal water stop belt body, and the longitudinal water stop belt body and the rubber belt are made of type 651 rubber, and the surface of the longitudinal water stop belt body is provided with a strip structure corresponding to the inner wall groove of the rubber belt.

[0012] Preferably, a screw rod three is penetrated between the first clamping plate and the second clamping plate, and the outer side of the screw rod three is spirally provided with nuts respectively adhering to the surfaces of the first clamping plate and the second clamping plate, elastic buckles in the shape of swan wings are fixedly arranged at the two sides of the horizontal plate, a insertion slot is arranged at the center of the horizontal plate, and a limiting head fixedly arranged with the first clamping plate is penetrated in the insertion slot.

[0013] Preferably, a guide groove is arranged at the center of the surface of the rubber extrusion plate, and an anti-dropping block fixedly arranged with the adjusting frame is slidably arranged in the guide groove, a pulley block adhering to the rubber extrusion plate is rotatably arranged in the anti-dropping block, a semicircular plate is fixedly arranged at the other end of the guide groove, a T-shaped sliding block sliding with the adjusting frame is fixedly arranged at the top end of the semicircular plate, and a horizontal groove for guiding the T-shaped sliding block is arranged in the adjusting frame.

[0014] Preferably, a pushing structure is adhered to the right side of the semicircular plate, the pushing structure comprises a screw rod four adhering to the surface, a sleeve fixedly arranged with the adjusting frame is spirally arranged at the outer side of the screw rod four, a hexagonal head for rotation is fixedly arranged at the other end of the screw rod four, a clamping groove is arranged at the top end of the adjusting frame, and the outer side of the clamping buckle is clamped.

[0015] Compared with the prior art, the beneficial effects of the present application are as follows:

[0016] 1、The rubber belt structure in the expansion assembly can be expanded and stretched, when laying operation is performed, the rubber belt in the expansion assembly can be stretched and expanded to open outside the longitudinal water stop belt body, or the rubber belt can be pushed and clamped to the outer surface of the longitudinal water stop belt body, the width of the longitudinal water stop belt body and the rubber belt is shortened, the corresponding building gap is adapted, the convenience of use is further improved, meanwhile, the elastic buckle structure is clamped to the outside of the steel bar of the building, further stable tension is formed, the water stop belt clamping assembly is prevented from falling off and deflection, and the rubber extrusion plate is tightly pressed against the surface of the longitudinal water stop belt body during installation of the longitudinal water stop belt body, the risk of delamination and edge lifting of the longitudinal water stop belt body is reduced.

[0017] 2、The present application can be through the external steel rod traction tension structure in the tight line assembly, in the process of collection and tension, through the traction structure tension vertical plate one and vertical plate two structure tension, then hang the auxiliary hook two outside the reinforcing steel, rotate the adjusting screw structure, keep tension, at the same time, use the wire two collection traction tension connection buckle structure, collection, keep tension in use, prevent the longitudinal water stop body loose.

[0018] 3、The present application can be through the T-shaped slider structure of the adjustable positioning assembly to guide the rubber extrusion plate, cooperate with the push screw four structure, push the rubber extrusion plate to deform and bend to the surface of the longitudinal water stop body, and keep the water stop belt tightly pressed on the surface of the building, so as to keep stable sealing effect when injecting mortar.

[0019] 4、The present application can be through the embedded back-shaped elastic steel plate structure of the expansion assembly, which can be collected and tensioned, so as to keep the rubber belt tightly on the side surface of the longitudinal water stop body for stable positioning after adjustment. BRIEF DESCRIPTION OF DRAWINGS

[0020] Figure 1 It is the overall structure diagram of the present application;

[0021] Figure 2 It is the explosion structure diagram of the water stop body and the expansion assembly of the present application;

[0022] Figure 3 It is the installation structure diagram of the expansion assembly of the present application;

[0023] Figure 4 It is the installation structure diagram of the vertical plate one and the vertical plate two of the present application;

[0024] Figure 5 It is the installation structure diagram of the tight line assembly of the present application;

[0025] Figure 6 It is the installation structure diagram of the auxiliary hook two of the present application;

[0026] Figure 7 It is the installation structure diagram of the water stop belt clamping assembly of the present application;

[0027] Figure 8 It is the installation structure diagram of the adjustable positioning assembly of the present application;

[0028] Figure 9 It is the cross-sectional installation structure diagram of the adjustable positioning assembly of the present application;

[0029] Figure 10 It is the enlarged installation structure diagram of the rubber extrusion plate of the present application.

[0030] Figure: 1, longitudinal water stop body; 2, deformation hole;

[0031] 3, extension assembly; 31, rubber belt; 32, anti-off mesh layer; 33, spacing fence; 34, back-shaped elastic steel plate; 35, contact end;

[0032] 4, tight line assembly; 41, vertical plate one; 42, vertical plate two; 43, iron wire one; 44, auxiliary hook one; 45, universal rod; 46, positioning end; 47, rotating end; 48, steel pole; 49, square block; 410, rotating plate; 411, connecting buckle; 412, iron wire two; 413, guide pipe; 414, screw one; 415, auxiliary hook two; 416, screw two; 417, limiting hook;

[0033] 5, water stop clamping assembly; 51, clamping plate one; 52, hinge; 53, clamping plate two; 54, buckle; 55, screw three; 56, nut; 57, limiting head; 58, elastic buckle; 59, insertion slot; 510, horizontal plate;

[0034] 6, adjustable positioning assembly; 61, adjusting frame; 62, rubber extrusion plate; 63, guide groove; 64, T-shaped sliding block; 65, anti-off block; 66, pulley block; 67, horizontal groove; 68, sleeve; 69, screw four; 610, hexagonal head; 611, semicircular plate;

[0035] 7, winding belt; 8, clamping groove.

[0036] As shown in the drawings, in order to clearly realize the structure of the embodiments of the present application, specific structures and devices are marked in the drawings, but this is only for the need of illustration, and is not intended to limit the present application in the specific structure, device and environment, and those skilled in the art can adjust or modify these devices and environment according to specific needs. DETAILED DESCRIPTION

[0037] The technical solutions in the embodiments of the present application will be described clearly and completely below in combination with the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.

[0038] It should be noted that the embodiments indicated by “one embodiment”, “embodiment”, “exemplary embodiment”, “some embodiments” and the like in the specification can include specific features, structures or characteristics, but not necessarily every embodiment includes the specific features, structures or characteristics. In addition, when a specific feature, structure or characteristic is described in combination with an embodiment, it should be within the knowledge of those skilled in the related art to realize such feature, structure or characteristic in combination with other embodiments (whether or not explicitly described).

[0039] As Figures 1 to 10The invention provides a new type of ribbed composite wall panel opening water stop, including longitudinal water stop body 1, the middle position of longitudinal water stop body 1 is provided with deformation hole 2, the longitudinal water stop body 1 can be bent and deformed by deformation hole 2, the longitudinal water stop body 1 is bent and adhered to the surface of the building, the outer side of longitudinal water stop body 1 further includes expansion assembly 3, expansion assembly 3 is used as an expandable structure, the whole is made of rubber material, and the material of longitudinal water stop body 1 is the same, the expansion assembly 3 includes rubber belt 31 adhered to the outer side of longitudinal water stop body 1, the surface of rubber belt 31 is provided with a strip, the front surface of rubber belt 31 is provided with anti-drop wire mesh layer 32, the anti-drop wire mesh layer 32 is designed, which can be used to prevent the anti-drop of the injected mortar, the outer side of anti-drop wire mesh layer 32 is fixedly provided with contact end 35, the left side of longitudinal water stop body 1 is wound with winding belt 7, winding belt 7 is connected with tight line assembly 4 as a winding structure, the longitudinal water stop body 1 is collected and tightened by pulling and tightening winding belt 7, the inside of winding belt 7 further includes tight line assembly 4, the tight line assembly 4 includes vertical plate one 41 as the winding column of winding belt 7, the top end of vertical plate one 41 is fixedly provided with positioning end 46, the outer side of positioning end 46 is sleeved with rotating end 47, rotating end 47 and positioning end 46 can be quickly connected, rotating end 47 and steel rod 48 are installed to the both ends of vertical plate one 41 for rotation, steel rod 48 is welded on the outer side of rotating end 47, steel rod 48 is symmetrically arranged at the middle position of winding belt 7, winding belt 7 is collected and tightened, keeps tension, water stop belt clamping assembly 5 is further included above expansion assembly 3, water stop belt clamping assembly 5 includes clamping plate one 51 and clamping plate two 53 with clamping function, and is located above rubber belt 31 on the front and back sides, hinge 52 is hingedly arranged between the top of clamping plate one 51 and clamping plate two 53, clamping plate one 51 and clamping plate two 53 are rotated through hinge 52, after positioning clamping plate one 51, clamping plate two 53 can be rotated and closed to the surface of longitudinal water stop body 1, the side of clamping plate one 51 towards clamping plate two 53 is adhered with horizontal plate 510, horizontal plate 510 can be used as a baffle, is positioned outside the reinforcing steel bar, completes the limiting, prevents falling off, buckle 54 is fixedly arranged on the front bottom end of clamping plate two 53, buckle 54 is inserted into the inside of adjusting frame 61 for positioning, adjustable positioning assembly 6 is further included on the outer side of buckle 54, the adjustable positioning assembly 6 includes adjusting frame 61 abutting against clamping plate two 53 and buckle 54, and the bottom end of adjusting frame 61 is slidably provided with rubber extrusion plate 62 adhered to rubber belt 31, rubber extrusion plate 62 is a deformable structure that can move along the bottom of adjusting frame 61 to the surface of longitudinal water stop body 1, the contact point of rubber extrusion plate 62 and longitudinal water stop body 1 is designed as a cylindrical shape, which is used to guide rubber extrusion plate 62 to move along longitudinal water stop body 1 and adhere, rubber extrusion plate 62 is extruded and adhered, which keeps the compression and restraint of longitudinal water stop body 1, screw three 55 penetrates between clamping plate one 51 and clamping plate two 53,And the outer side of the screw three 55 is provided with a nut 56 which is attached to the surface of the clamp plate one 51 and the clamp plate two 53 respectively, the clamp plate one 51 and the clamp plate two 53 are clamped on the outer side of the longitudinal water stop belt body 1 through the screw three 55, forming clamping positioning, the both sides of the horizontal plate 510 are fixedly provided with elastic buckles 58 in the shape of a wing, which are buckled on the outer side of the steel bar, and then the horizontal plate 510 plays a stabilizing role to position the clamp plate one 51, and the center position of the horizontal plate 510 is provided with a slot 59, the horizontal plate 510 can be installed on the outer side of the limiting head 57 through the slot 59 for quick positioning and installation, and the slot 59 is provided with the limiting head 57 which is fixedly arranged with the clamp plate one 51.

[0040] Specifically, the inside of the rubber belt 31 is embedded with a U-shaped elastic steel plate 34, and the U-shaped elastic steel plate 34 is arranged in a tower shape that converges to the middle. The U-shaped elastic steel plate 34 can be embedded in the inside of the rubber belt 31 to pull the rubber belt 31 tightly to the middle, so as to converge and clamp the rubber belt 31 on the outer side of the longitudinal water stop belt body 1. The inner wall of the rubber belt 31 is provided with spaced grooves, and the rubber belt 31 can be positioned in the corresponding strip structure through the spaced grooves in the inner wall for positioning and strengthening the anti-dropping effect. The surface of the anti-dropping screen layer 32 and the rubber belt 31 are fixed by adhesive, which is convenient for the positioning of the anti-dropping screen layer 32 by the staff. The anti-dropping screen layer 32 and the rubber belt 31 are embedded with a spacing fence 33 made of steel wire, which is designed to tighten the poured mortar and prevent it from falling off. The longitudinal water stop belt body 1 is provided with a deformation hole 2 in the middle position, which provides a space for deformation, and steel wires and other structures can pass through the deformation hole for positioning. The longitudinal water stop belt body 1 and the rubber belt 31 are made of 651 type rubber as a whole, and the surface of the longitudinal water stop belt body 1 is provided with a strip structure corresponding to the inner wall groove of the rubber belt 31 to provide a more stable positioning structure and strengthen the connection stability between the rubber belt 31 and the longitudinal water stop belt body 1.

[0041] The vertical plate one 41 is located inside the winding belt 7, and the vertical plate two 42 is arranged in parallel with the vertical plate one 41 on the outside of the winding belt 7, both the vertical plate one 41 and the vertical plate two 42 are steel plate structures, and the surface is coated with rust-proof paint, the vertical plate two 42 is formed in a clamping shape at the rear outside of the winding belt 7, and the vertical plate one 41 and the vertical plate two 42 are bound by the wire one 43, the wire one 43 is wound around the ends of the vertical plate one 41 and the vertical plate two 42, and the winding belt 7 is clamped and bound, the both ends of the vertical plate two 42 are rotatably provided with universal rods 45, and the universal rods 45 are welded with auxiliary hooks one 44 at the ends, the vertical plate two 42 at the rear side can be clamped and positioned on the outside of the steel bar of the building by the universal rods 45, and the auxiliary hooks one 44 are stably positioned, the middle of the steel rod 48 is fixedly provided with blocks 49, the two blocks 49 are rotatably provided with rotating plates 410, the steel rod 48 can be rotated by the rotating plates 410 between the blocks 49, the stress direction is adjusted, the block 49 outside the lower side is rotatably provided with a connecting buckle 411, a through hole is formed in the middle of the connecting buckle 411, and the wire two 412 is passed through the through hole of the connecting buckle 411 to tighten, the wire two 412 is passed through the through hole of the connecting buckle 411 to tighten, the wire two 412 is wound and tightened to form tension, the connecting buckle 411 is moved to the close position, after the rotating plate 410 is rotated, the tightening effect between the steel rods 48 can be increased, the other end of the steel rod 48 is fixedly provided with a guide pipe 413 in the middle, the guide pipe 413 guides the screw one 414, the screw one 414 is spirally arranged in the guide pipe 413, the other end of the screw one 414 is rotatably provided with an auxiliary hook two 415, the inside of the auxiliary hook two 415 is slidably provided with a limiting hook 417 corresponding to the arc shape, the screw two 416 is arranged in the screw one 414, and the limiting hook 417 is rotatably arranged, the limiting hook 417 is hung on the nearby steel bar, the position of the auxiliary hook two 415 can be adjusted by rotating the screw one 414, and the limiting hook 417 is clamped on the outside of the steel bar by rotating the screw two 416 in the screw one 414.

[0042] The surface center position of the rubber extrusion plate 62 is provided with a guide groove 63, and the inside of the guide groove 63 is slidably provided with an anti-drop block 65 fixedly arranged with the adjusting frame 61. The rubber extrusion plate 62 can move outside the anti-drop block 65 through the guide groove 63, and the movement of the rubber extrusion plate 62 is guided. The inside of the anti-drop block 65 is rotatably provided with a pulley block 66 abutting with the rubber extrusion plate 62. Through the pulley block 66 structure arranged in the inside of the anti-drop block 65, the friction between the rubber extrusion plate 62 and the anti-drop block 65 is reduced, the movement is more sensitive, and the other end of the guide groove 63 is fixedly provided with a semicircular plate 611. The structure of the semicircular plate 611 can increase the contact area between the screw rod four 69, which is more convenient for pushing the rubber extrusion plate 62. The top end of the semicircular plate 611 is fixedly provided with a T-shaped sliding block 64 sliding with the adjusting frame 61. The inside of the adjusting frame 61 is provided with a horizontal groove 67 for guiding the T-shaped sliding block 64. The rubber extrusion plate 62 can slide in the inside of the horizontal groove 67 through the T-shaped sliding block 64, and the stability of the movement of the rubber extrusion plate 62 is further maintained. The right side of the semicircular plate 611 is abuttingly provided with a pushing structure. The pushing structure comprises a screw rod four 69 abutting the surface of the semicircular plate 611. The outside of the screw rod four 69 is spirally provided with a sleeve 68 fixedly arranged with the adjusting frame 61. The screw rod four 69 moves in the inside of the sleeve 68, which can provide a positioning structure for the movement of the screw rod four 69. The other end of the screw rod four 69 is fixedly provided with a hexagonal head 610 for rotation, so as to facilitate the rapid rotation of the screw rod four 69 through the hexagonal head 610. The top end of the adjusting frame 61 is provided with a clamping groove 8 and the outside of the clasp 54 is clamped, so as to facilitate the clasp 54 to be inserted into the clamping groove 8 in the adjusting frame 61, and to be adjusted and positioned.

[0043] The longitudinal water stop belt body 1 is a prior art and will not be described in detail.

[0044] The working principle of the technical solution provided by the application is as follows:

[0045] The expansion assembly 3 structure is added to the outside of the longitudinal water stop belt body 1. The specific operation is as follows: the port of the rubber belt 31 in the expansion assembly 3 is clamped into the outside of the wing of the longitudinal water stop belt body 1, and the rubber belt 31 structure is pushed in. After the rubber belt 31 is clamped into the outside of the wing, the grooves arranged at intervals in the inner wall of the rubber belt 31 are respectively positioned to the outside of the strip structure outside the longitudinal water stop belt body 1, and the rubber belt 31 is positioned. When the longitudinal water stop belt body 1 is laid, the width of the building gap can be adjusted according to the width of the building gap to stretch the longitudinal water stop belt body 1 and the wing span of the expansion assembly 3 to abut the building gap. After the setting is completed, the longitudinal water stop belt body 1 is placed in the longitudinal gap of the building, and the contact end 35 on the other side of the rubber belt 31 abuts against the inner wall of the gap of the building. After positioning, the convenience of setting the longitudinal water stop belt body 1 is improved.

[0046] The vertical plate one 41 and the vertical plate two 42 in the tight line assembly 4 are clamped on the outside of the winding tape 7 respectively, and are bound as a whole by using the iron wire one 43. The winding tape 7 is stably clamped by the vertical plate one 41 and the vertical plate two 42. After clamping is completed, the auxiliary hook one 44 is clamped tightly to the outside of the steel bar of the building by rotating the universal rod 45. After the vertical plate two 42 is positioned, the rotating end 47 of the steel rod 48 can be clamped tightly to the outside of the positioning end 46 at both ends of the vertical plate one 41, and the positioning is formed. After the positioning of the steel rod 48, the auxiliary hook two 415 at the middle position of the other end of the steel rod 48 is clamped tightly to the outside of the nearby steel bar to position it. The auxiliary hook two 415 is moved to the position close to the steel bar by rotating and adjusting the screw rod one 414 structure to control the positioning. The limiting hook 417 is pushed to clamp tightly on the outside of the steel bar by rotating the screw rod two 416 inside the screw rod one 414, and the limiting clamping is completed. After the positioning of the steel rod 48, the iron wire two 412 is passed through the through hole of the connecting buckle 411 below the block 49, and the iron wire two 412 is wound and tightened to pull the connecting buckle 411. The rotating plate 410 between the blocks 49 is rotated, the steel rod 48 is synchronously rotated, and the vertical rod on the left side of the steel rod 48 is deformed to keep the state of traction and tension, so as to pull the winding tape 7 to pull and tighten the longitudinal water stop belt body 1, which is attached to the gap between the building walls to stop water use, and keeps the state of tension, which can also avoid the displacement of the longitudinal water stop belt body 1 when pouring mortar.

[0047] The adjustable positioning assembly 6 is arranged between the formwork and the wall gap, and the clamping plate two 53 in the water stop belt clamping assembly 5 is clamped into the clamping groove 8 of the adjusting frame 61 in cooperation with the buckle 54, and the positioning is completed. The clamping plate one 51 at the other end of the hinge 52 at the top end of the clamping plate two 53 is clamped and rotated to the back side of the longitudinal water stop belt body 1, and the plug-in screw three 55 is inserted, and the nut 56 is used for positioning. The horizontal plate 510 is clamped into the outside of the limiting head 57 through the insertion slot 59, and the positioning of the horizontal plate 510 is completed. In cooperation with the elastic buckle 58 outside the horizontal plate 510, the clamping plate one 51 is positioned, and the positioning and stability effect of the water stop belt clamping assembly 5 is enhanced.

[0048] After the adjustable positioning component 6 is set and positioned, the hexagonal tool can be inserted into the inside of the hexagonal head 610, and the hexagonal head 610 can be rotated to control the screw rod four 69 to rotate inside the sleeve 68. The semicircular plate 611 pressed against the other end of the screw rod four 69 can be controlled to push, and the rubber squeezing plate 62 can be controlled to move inside the transverse groove 67 of the adjustment frame 61 through the T-shaped slider 64, and cooperate with the rubber squeezing plate 62 guide groove 63 to move on the outside of the anti-slip block 65. The pulley group 66 inside the anti-slip block 65 reduces friction, and can quickly move into place to fit the longitudinal waterstop belt body 1 for deformation. The rubber squeezing plate 62 is deformed and can move along the surface of the longitudinal waterstop belt body 1, which can increase the pressing effect on the longitudinal waterstop belt body 1 and enhance the sealing effect. In the process of pouring mortar, it will also avoid the longitudinal waterstop belt body 1 from having gaps and warping edges, and maintain stability in use during water-stopping.

[0049] It should be noted that, in this document, relational terms such as first and second, etc., are used only to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the terms "comprises," "comprising," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that includes a list of elements includes not only those elements but also other elements not explicitly listed, or elements inherent to such process, method, article, or apparatus.

[0050] While embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions, and variations may be made to these embodiments without departing from the principles and spirit of the invention, and that the scope of the invention is defined by the appended claims and their equivalents.

Claims

1. A novel multi-rib composite wall panel opening waterstop, comprising a longitudinal waterstop body (1), a deformation hole (2) being provided in the middle of the longitudinal waterstop body (1), and characterized in that: The outer side of the longitudinal waterstop body (1) also includes an expansion component (3), and the expansion component (3) includes a rubber belt (31) that fits the outer side of the longitudinal waterstop body (1), and the front side surface of the rubber belt (31) is provided with an anti-stripping mesh layer (32), and the outer side of the anti-stripping mesh layer (32) is fixedly provided with a contact end (35), and the left side of the longitudinal waterstop body (1) is wound with a winding belt (7), and the interior of the winding belt (7) also includes a tensioning component (4), and the tensioning component (4) includes a vertical plate (41) as a winding column of the winding belt (7), and the top of the vertical plate (41) is fixedly provided with a positioning end (46), and the outer side of the positioning end (46) is provided with a rotating end (47), and the outer side of the rotating end (47) is welded with a steel rod. (48), a water stop clamping assembly (5) is also included above the expansion assembly (3), the water stop clamping assembly (5) includes a clamping plate 1 (51) and a clamping plate 2 (53) with a clamping function, and is located on the front and rear sides of the upper rubber belt (31), a hinge (52) is hingedly provided at the top end between the clamping plate 1 (51) and the clamping plate 2 (53), a horizontal plate (510) is provided on the side of the clamping plate 1 (51) facing the clamping plate 2 (53), a buckle (54) is fixedly provided at the bottom end of the front side of the clamping plate 2 (53), and an adjustable positioning assembly (6) is also included on the outside of the buckle (54), and the adjustable positioning assembly (6) includes an adjustment frame (61) that is tightly pressed against the clamping plate 2 (53) and the buckle (54), and the bottom end of the adjustment frame (61) slides A rubber squeeze plate (62) is provided which is fitted with the rubber belt (31). A vertical plate 1 (41) is located inside the winding belt (7). A vertical plate 2 (42) is provided on the outside of the winding belt (7) and is arranged parallel to the vertical plate 1 (41). The vertical plate 2 (42) is located on the outside rear portion of the winding belt (7) to form a clamping shape. The vertical plate 1 (41) and the vertical plate 2 (42) are wrapped and bound by an iron wire 1 (43) to clamp the winding belt (7). Universal rods (45) are provided at both ends of the vertical plate 2 (42) for rotation. An auxiliary hook 1 (44) is welded to the end of the universal rod (45). A square block (49) is fixedly provided at the middle position of the steel rod (48). A steel bar (49) is provided for rotation between the two square blocks (49). The rotating plate (410) is provided with a connecting buckle (411) on the outer side of the block (49) below, and a through hole is provided in the middle of the connecting buckle (411), and a second iron wire (412) is passed through the through hole of the connecting buckle (411) for tightening. A guide tube (413) is fixedly provided at the middle position of the other end of the steel rod (48), and a screw rod (414) is spirally provided inside the guide tube (413). An auxiliary hook (415) is rotatably provided at the other end of the screw rod (414), and a corresponding arc-shaped limiting hook (417) is slidably provided inside the auxiliary hook (415). A screw rod (416) spirally provided with the screw rod (414) passes through the interior of the screw rod (414) and is rotatably provided with the limiting hook (417). The screw rod (414) is spirally provided with the second screw rod (416) and is rotatably provided with the limiting hook (417).

2. The novel multi-rib composite wall panel opening waterstop according to claim 1 is characterized by: A resilient steel plate (34) is embedded in the interior of the rubber belt (31), and the resilient steel plate (34) is arranged in a tower shape that converges toward the middle, and an inner wall of the rubber belt (31) is provided with spaced grooves.

3. The novel multi-rib composite wall panel opening waterstop according to claim 1 is characterized by: The anti-stripping mesh layer (32) and the surface of the rubber belt (31) are fixed by adhesive, and a spacing fence (33) made of steel wire is embedded between the anti-stripping mesh layer (32) and the rubber belt (31).

4. The novel multi-rib composite wall panel opening waterstop according to claim 1 is characterized in that: A deformation hole (2) is provided in the middle of the longitudinal waterstop body (1), and the longitudinal waterstop body (1) and the rubber belt (31) are made of 651 type rubber as a whole, and a strip structure corresponding to the inner wall groove of the rubber belt (31) is provided on the surface of the longitudinal waterstop body (1).

5. The novel multi-rib composite wall panel opening waterstop according to claim 1 is characterized in that: A screw rod three (55) is passed through between the first splint (51) and the second splint (53), and a nut (56) is provided on the outer spiral of the screw rod three (55) so as to fit the surface of the first splint (51) and the second splint (53) respectively. Swallow-wing-shaped elastic buckles (58) are fixedly provided on both sides of the horizontal plate (510), and a slot (59) is provided at the center of the horizontal plate (510), and a limit head (57) fixed to the first splint (51) is passed through the interior of the slot (59).

6. The novel multi-rib composite wall panel opening waterstop according to claim 1 is characterized by: A guide groove (63) is provided at the center of the surface of the rubber extrusion plate (62), and an anti-slip block (65) fixedly provided with the adjustment frame (61) is slidably provided inside the guide groove (63), and a pulley group (66) that fits the rubber extrusion plate (62) is rotatably provided inside the anti-slip block (65), and a semicircular plate (611) is fixedly provided at the other end of the guide groove (63), and a T-shaped slider (64) that slides with the adjustment frame (61) is fixedly provided at the top end of the semicircular plate (611), and a transverse groove (67) for guiding the T-shaped slider (64) is provided inside the adjustment frame (61).

7. The novel multi-rib composite wall panel opening waterstop according to claim 6 is characterized by: The right side of the semicircular plate (611) is fitted with The pushing structure includes a screw rod (69) that fits the surface of the semicircular plate (611), a sleeve (68) fixed to the adjustment frame (61) is spirally provided on the outer side of the screw rod (69), and a hexagonal head (610) for rotation is fixedly provided on the other end of the screw rod (69), and a slot (8) is provided on the top end of the adjustment frame (61) and is engaged with the outer side of the buckle (54).

Citation Information

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