Novel water-stop belt for hole of multi-ribbed composite wallboard

By designing a new dense rib composite wall panel hole water stop, and adopting an expandable longitudinal water stop body and extended components, the problem of synchronous enhancement of the existing water stop range, sealing and protective performance of the existing water stop, achieving higher seal stability and convenient installation.

CN119956893AActive Publication Date: 2025-05-09CHINA CONSTR FIFTH ENG DIV CORP LTD +1
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Patent Information

Application Number
CN202510213058.2
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-02-25
Publication Date
2025-05-09
Estimated Expiration
2045-02-25

AI Technical Summary

Technical Problem

During use, it is difficult to simultaneously enhance the water stop range, sealing and protective performance during the existing water stop belts, and the clamping component structure lacks support, poor positioning stability, and prone to degumming and edge development problems, which affects the sealing properties.

Method used

A new type of dense rib composite wall panel hole water stop is designed, adopting an expandable longitudinal water stop body and expansion assembly. Through the rubber belt and anti-detachment mesh layer structure, the stability of the clamping assembly is increased, and through the tightening assembly and adjustable positioning assembly, the better sealing effect and convenient installation are achieved.

Benefits of technology

Through the stretching of the expansion assembly and the traction of the tightening assembly, the width of the water stop can be flexibly adjusted, adapted to different gaps, improved installation convenience and sealing stability, avoided degumming and edge problems, and enhanced water stop sealing.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The invention belongs to the technical field of dense rib composite wallboard hole water stopping, and discloses a novel dense rib composite wallboard hole water stopping belt which comprises a longitudinal water stopping belt body, an expansion assembly is further arranged on the outer side of the longitudinal water stopping belt body, and expansion and stretching are conducted through a rubber belt structure capable of being pulled in the expansion assembly. The rubber belt in the expansion assembly can be stretched, expanded and opened on the outer side of the longitudinal water-stop belt body, or the rubber belt is pushed and clamped into the outer surface of the longitudinal water-stop belt body, the width of the longitudinal water-stop belt body and the width of the rubber belt are shortened, the longitudinal water-stop belt body and the rubber belt are matched with corresponding building gaps, use convenience is further improved, and meanwhile the service life of the longitudinal water-stop belt is prolonged. When the longitudinal waterstop body is installed, the added elastic buckle structure is clamped on the outer side of a reinforcing steel bar of a building, further stable tensioning is formed, the waterstop clamping assembly is prevented from falling off and inclining, in the installation process of the longitudinal waterstop body, the rubber squeezing plate can abut against the surface of the longitudinal waterstop body, and the risks of degumming and edge warping of the longitudinal waterstop body are reduced.
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Description

Technical Field

[0001] The invention belongs to the technical field of water-stopping at the opening of a dense-rib composite wall panel, in particular to a novel water-stopping strip for the opening of a dense-rib composite wall panel. Background Art

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

[0003] Meanwhile, a waterproof tape with publication number CN115746727A states that "the waterproof tape comprises: a substrate layer; an adhesive layer located on the substrate layer; and a swellable layer located on the substrate layer together with the adhesive layer, and having at least one deformation auxiliary structure selected from the group consisting of grooves and cutouts";

[0004] At the same time, a water stop strip and a water stop method with the publication number CN119083765A is disclosed, "The water stop strip comprises a filling material, a flexible strip and a metal anti-rust layer, wherein the filling material is filled in the structural joint between two concrete components; grooves are arranged at positions near the structural joint on the water-facing sides of the two concrete components, and the flexible strips are arranged in the corresponding grooves; the metal anti-rust layer covers the side of the flexible strip away from the concrete component and in the structural joint";

[0005] During use of the above-mentioned water-stopping tape, waterstop strip and water-stopping method, a metal layer is added for rust prevention, and a curved deformation structure is added to fit the curved surface of the building layer to enhance the sealing. However, in the above-mentioned structure, the water-stopping range, water-stopping sealing and protective performance of the waterstop strip cannot be enhanced simultaneously. When used in some narrow or wide gaps, the width of the waterstop strip needs to be trimmed and adjusted, which reduces the convenience of using the waterstop strip in the above-mentioned areas. There is no supporting structure on the upper part of the waterstop strip clamping assembly structure, and the positioning stability is general. At the same time, during use of the waterstop strip, debonding and edge lifting are prone to occur between the edge of the waterstop strip and the building gap, resulting in a gap between the waterstop strip and the gap, affecting the water-stopping sealing performance during use.

[0006] Therefore, a new type of dense-rib composite wall panel opening waterstop is proposed to address the above problems. Summary of the invention

[0007] In order to solve the problems raised in the above-mentioned background technology, the present invention provides a new type of dense-rib composite wall panel opening waterstop, which has a side extension component structure of the longitudinal waterstop body that can be increased and expanded, and the longitudinal waterstop body can be stretched and extended to flexibly adjust to fit the gaps in the building to avoid the generation of gaps. At the same time, an adaptive anti-slip structure is added to increase the stability of the waterstop clamping assembly, and the waterstop can be pressed against the waterstop surface to increase the sealing advantage.

[0008] To achieve the above object, the present invention provides the following technical solutions: a novel multi-rib composite wall panel opening water stop strip, comprising a longitudinal water stop strip body, a deformation hole is opened in the middle of the longitudinal water stop strip body, and the outer side of the longitudinal water stop strip body also includes

[0009] The expansion component includes a rubber belt attached to the outer side of the longitudinal water stop belt body, the front surface of the rubber belt is provided with an anti-stripping mesh layer, the outer side of the anti-stripping mesh layer is fixedly provided with a contact end, the left side of the longitudinal water stop belt body is wound with a winding belt, and the inside of the winding belt also includes

[0010] The tensioning assembly includes a vertical plate 1 as a winding column of the winding belt, a positioning end is fixedly arranged at the top of the vertical plate 1, 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, and a steel rod is also arranged above the expansion assembly.

[0011] The water stop belt clamping assembly includes a clamping plate 1 and a clamping plate 2 which are located at the front and rear sides of the upper rubber belt, a hinge is hinged at the top of the clamping plate 1 and the hinge, a horizontal plate is fitted on one side of the clamping plate 1 facing the second clamping plate, a buckle is fixedly arranged at the bottom end of the front side of the clamping plate 2, and the outer side of the buckle also includes

[0012] The adjustable positioning component comprises an adjustment frame which is tightly pressed against the second clamping plate and the buckle, and a rubber squeezing plate which is in contact with the rubber belt is slidably arranged at the bottom end of the adjustment frame.

[0013] Preferably, the rubber belt is embedded inside

[0014] The reciprocating elastic steel plate is arranged in a tower shape which converges toward the middle, and the inner wall of the rubber belt is provided with spaced grooves.

[0015] Preferably, the anti-slipping mesh layer and the surface of the rubber belt are fixed by adhesive, and a spacing fence made of steel wire is embedded between the anti-slipping mesh layer and the rubber belt.

[0016] Preferably, the middle position of the longitudinal water stop strip body is provided with

[0017] Deformation hole, and the longitudinal waterstop body and the rubber belt are made of 651 type rubber as a whole, and the surface of the longitudinal waterstop body is provided with a strip structure corresponding to the inner wall groove of the rubber belt.

[0018] Preferably, vertical plate 1 is located inside the winding belt, and vertical plate 2 is arranged on the outside of the winding belt and is parallel to vertical plate 1. Vertical plate 2 is located at the rear part of the outer side of the winding belt to form a clamping shape, and vertical plate 1 and vertical plate 2 are wrapped and bound by iron wire 1, and the winding belt is tied and clamped.

[0019] Preferably, both ends of the vertical plate 2 are rotatably provided with

[0020] A universal rod, and an auxiliary hook that can be hung is welded at the end of the universal rod, a block is fixedly set in the middle position of the steel rod, a rotating plate is rotatably set between the two blocks, a connecting buckle is rotatably set on the outer side of the block located below, and a through hole is opened in the middle position of the connecting buckle, and an iron wire is passed through the through hole of the connecting buckle for tightening.

[0021] Preferably, the other end of the steel rod is fixedly provided with a

[0022] A guide tube is provided with a screw rod 1 spirally arranged inside the guide tube, an auxiliary hook 2 is rotatably arranged at the other end of the screw rod 1, and a corresponding arc-shaped limit hook is slidably arranged inside the auxiliary hook 2, and a screw rod 2 spirally arranged therewith penetrates the interior of the screw rod 1 and is rotatably arranged with the limit hook.

[0023] Preferably, there is a

[0024] Screw three, and the outer spiral of screw three is provided with nuts respectively fitting with the surface of clamping plate one and clamping plate two, swallow-wing-shaped elastic buckles are fixedly provided on both sides of the cross plate, and a slot is opened at the center position of the cross plate, and a limit head fixed with clamping plate one passes through the interior of the slot.

[0025] Preferably, the center of the surface of the rubber extrusion plate is provided with

[0026] A guide groove, and an anti-slip block fixedly arranged with the adjusting frame is slidably arranged inside the guide groove, a pulley group fitted with the rubber extrusion plate is rotatably arranged inside the anti-slip block, and a semicircular plate is fixedly arranged at the other end of the guide groove, and a T-shaped slider sliding with the adjusting frame is fixedly arranged on the top of the semicircular plate, and a transverse groove for guiding the T-shaped slider is opened inside the adjusting frame.

[0027] Preferably, the right side of the semicircular plate is fitted with

[0028] The pushing structure includes a screw rod four that fits the surface, a sleeve that is fixed to the adjustment frame is spirally arranged on the outer side of the screw rod four, and a hexagonal head for rotation is fixedly arranged on the other end of the screw rod four, and a slot is opened on the top of the adjustment frame to clamp the outer side of the buckle.

[0029] Compared with the prior art, the present invention has the following beneficial effects:

[0030] 1. The present invention expands and stretches the rubber belt structure that can be pulled in the expansion component. During the laying operation, the rubber belt in the expansion component can be stretched and expanded on the outside of the longitudinal waterstop belt body, or the rubber belt can be pushed and inserted into the outer surface of the longitudinal waterstop belt body to shorten the width of the longitudinal waterstop belt body and the rubber belt, adapt to the corresponding building gaps, and further improve the convenience of use. At the same time, the added elastic buckle structure is clamped on the outside of the building's steel bars to form a further stable tension, thereby preventing the waterstop belt clamping component from falling off and deflecting. During the installation process of the longitudinal waterstop belt body, the rubber extrusion plate can be pressed against the surface of the longitudinal waterstop belt body to reduce the risk of debonding and warping of the longitudinal waterstop belt body.

[0031] 2. The present invention uses an external steel rod to pull the tensioning structure in the tensioning assembly. During the process of tightening and tightening, the vertical plate one and the vertical plate two structures can be tightened by the pulling structure, and then the auxiliary hook two can be hung on the outside of the steel bar, and the adjusting screw structure can be rotated to maintain the tension. At the same time, the iron wire two is used to tighten and pull the connecting buckle structure to tighten and maintain the tension during use to prevent the longitudinal water stop belt body from loosening.

[0032] 3. The present invention uses a T-shaped slider structure that guides the rubber extrusion plate in an adjustable positioning component and cooperates with a screw rod structure for pushing the rubber extrusion plate, so that the rubber extrusion plate can be pushed and deformed to the surface of the longitudinal waterstop body, and the waterstop can be stably pressed against the surface of the building, thereby maintaining a stable sealing effect when injecting mortar.

[0033] 4. The present invention can restrain the embedded circular elastic steel plate structure through the expansion component, so as to tighten the rubber belt and keep it fastened to the side surface of the longitudinal waterstop body, so as to facilitate stable positioning after adjustment. BRIEF DESCRIPTION OF THE DRAWINGS

[0034] Figure 1 It is a schematic diagram of the overall structure of the present invention;

[0035] Figure 2 It is a schematic diagram of the exploded structure of the water stop belt body and the extension assembly of the present invention;

[0036] Figure 3 It is a schematic diagram of the installation structure of the extension component of the present invention;

[0037] Figure 4 It is a schematic diagram of the installation structure of the vertical plate 1 and the vertical plate 2 of the present invention;

[0038] Figure 5 It is a schematic diagram of the installation structure of the tensioning assembly of the present invention;

[0039] Figure 6 This is a schematic diagram of the installation structure of the auxiliary hook 2 of the present invention;

[0040] Figure 7 It is a schematic diagram of the installation structure of the water stop belt clamping assembly of the present invention;

[0041] Figure 8 It is a schematic diagram of the installation structure of the adjustable positioning assembly of the present invention;

[0042] Fig. 9 It is a schematic diagram of the cross-sectional installation structure of the adjustable positioning assembly of the present invention;

[0043] Fig.10 It is a schematic diagram of the enlarged installation structure of the rubber extrusion plate of the present invention.

[0044] In the figure: 1. Longitudinal water stop body; 2. Deformation hole;

[0045] 3. Extension assembly; 31. Rubber belt; 32. Anti-slip mesh layer; 33. Spacer fence; 34. Retractable elastic steel plate; 35. Contact end;

[0046] 4. Tension assembly; 41. Vertical plate 1; 42. Vertical plate 2; 43. Iron wire 1; 44. Auxiliary hook 1; 45. Universal rod; 46. Positioning end; 47. Rotating end; 48. Steel rod; 49. Block; 410. Rotating plate; 411. Connecting buckle; 412. Iron wire 2; 413. Guide tube; 414. Screw 1; 415. Auxiliary hook 2; 416. Screw 2; 417. Limit hook;

[0047] 5. Water stop clamping assembly; 51. Clamping plate 1; 52. Hinge; 53. Clamping plate 2; 54. Buckle; 55. Screw rod 3; 56. Nut; 57. Limiting head; 58. Elastic buckle; 59. Slot; 510. Horizontal plate;

[0048] 6. Adjustable positioning assembly; 61. Adjustment frame; 62. Rubber squeeze plate; 63. Guide groove; 64. T-shaped slider; 65. Anti-slip block; 66. Pulley block; 67. Horizontal groove; 68. Sleeve; 69. Screw rod 4; 610. Hexagonal head; 611. Semicircular plate;

[0049] 7. Reeling tape; 8. Card slot.

[0050] As shown in the figure, in order to clearly implement the structure of the embodiment of the present invention, specific structures and devices are marked in the figure, but this is only for illustrative purposes and is not intended to limit the present invention to the specific structure, device and environment. According to specific needs, ordinary technicians in this field can adjust or modify these devices and environments. DETAILED DESCRIPTION

[0051] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.

[0052] It should be noted that the embodiments indicated by "one embodiment", "an embodiment", "an exemplary embodiment", "some embodiments" etc. in the specification may include specific features, structures or characteristics, but not every embodiment may include the specific features, structures or characteristics. In addition, when a specific feature, structure or characteristic is described in conjunction with an embodiment, it should be within the knowledge of technicians in the relevant field to implement such feature, structure or characteristic in conjunction with other embodiments (whether explicitly described or not).

[0053] like Figures 1 to 10 As shown, the present invention provides a novel multi-rib composite wall panel opening water stop, including a longitudinal water stop body 1, a deformation hole 2 is opened in the middle of the longitudinal water stop body 1, and the deformation can be performed through the deformation hole 2, so that the longitudinal water stop body 1 is bent and attached to the surface of the building, and the outer side of the longitudinal water stop body 1 also includes

[0054] The extension component 3 is an expandable structure, and the whole is made of rubber material, which is the same as the longitudinal waterstop belt body 1. The extension component 3 includes a rubber belt 31 that fits the outer side of the longitudinal waterstop belt body 1, and strips are arranged on the surface of the rubber belt 31. The front surface of the rubber belt 31 is provided with an anti-stripping mesh layer 32. The anti-stripping mesh layer 32 is structurally designed to prevent the pouring mortar from falling off. A contact end 35 is fixedly arranged on the outer side of the anti-stripping mesh layer 32. A winding belt 7 is wound on the left side of the longitudinal waterstop belt body 1. The winding belt 7 is connected to the tensioning wire component 4 as a winding structure. The longitudinal waterstop belt body 1 is tightened and tightened by pulling and tightening the winding belt 7. The interior of the winding belt 7 also includes

[0055] The tensioning assembly 4 includes a vertical plate 41 as a winding column of the winding belt 7, a positioning end 46 is fixedly provided at the top of the vertical plate 41, and a rotating end 47 is sleeved on the outer side of the positioning end 46. The rotating end 47 and the positioning end 46 can be quickly connected, and the rotating end 47 and the steel rod 48 are installed at both ends of the vertical plate 41 for rotation. The outer side of the rotating end 47 is welded with a steel rod 48. The steel rod 48 structure is symmetrically arranged around the middle position of the winding belt 7 to tighten the winding belt 7 and keep it taut. It also includes a

[0056] The waterstop belt clamping assembly 5 includes a clamping plate 1 51 and a clamping plate 2 53 which are clamped on the front and rear sides of the upper rubber belt 31. A hinge 52 is hingedly arranged at the top end between the clamping plate 1 51 and the hinge 52. The clamping plate 1 51 and the clamping plate 2 53 are rotated through the hinge 52. After the clamping plate 1 51 is positioned, the clamping plate 2 53 can be rotated and closed to the surface of the longitudinal waterstop belt body 1. A transverse plate 510 is arranged on the side of the clamping plate 1 51 facing the clamping plate 2 53. The transverse plate 510 structure can be used as a baffle and positioned on the outside of the steel bar to complete the limiting and prevent it from falling off. A buckle 54 is fixedly arranged on the front bottom end of the clamping plate 2 53. The L-shaped buckle 54 is inserted into the interior of the adjusting frame 61 to position it. The outer side of the buckle 54 also includes

[0057] The adjustable positioning component 6 includes an adjustment frame 61 which is tightly pressed against the second clamp plate 53 and the buckle 54, and a rubber squeezing plate 62 which fits with the rubber belt 31 is slidably provided at the bottom end of the adjustment frame 61. The rubber squeezing plate 62 is a deformable structure which can move along the bottom of the adjustment frame 61 toward the surface of the longitudinal waterstop belt body 1. The contact point between the rubber squeezing plate 62 and the longitudinal waterstop belt body 1 is designed to be cylindrical, so as to guide the rubber squeezing plate 62 to move and fit along the longitudinal waterstop belt body 1. The rubber squeezing plate 62 squeezes and fits tightly to maintain the compression and restraint of the longitudinal waterstop belt body 1.

[0058] Specifically, a return elastic steel plate 34 is embedded in the rubber belt 31, and the return elastic steel plate 34 is set to a tower shape that gathers toward the middle. The return elastic steel plate 34 can be embedded in the rubber belt 31, and the rubber belt 31 is pulled toward the middle to be tightened, and the rubber belt 31 is tightened and clamped on the outer side of the longitudinal waterstop 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 on the inner wall to enhance the anti-slip effect. The anti-slip mesh layer 32 is fixed to the surface of the rubber belt 31 by adhesive, which is convenient for the staff to position the anti-slip mesh layer 32, and A spacing fence 33 made of steel wire is embedded between the anti-slip mesh layer 32 and the rubber belt 31. The structural design of the spacing fence 33 tightens the poured mortar to prevent it from falling off. A deformation hole 2 is opened in the middle position of the longitudinal waterstop belt body 1. The deformation hole 2 provides a deformation space, and the steel wire and other structures can be passed through the deformation hole to strengthen the positioning. The longitudinal waterstop belt body 1 and the rubber belt 31 are made of 651 type rubber as a whole, and the surface of the longitudinal waterstop belt body 1 is provided with a strip structure corresponding to the inner wall groove of the rubber belt 31, providing a more stable positioning structure, and enhancing the connection stability between the rubber belt 31 and the longitudinal waterstop belt body 1.

[0059] The vertical plate 1 41 is located inside the winding belt 7, and a vertical plate 2 42 is arranged on the outside of the winding belt 7 and is arranged in parallel with the vertical plate 1 41. The vertical plate 1 41 and the vertical plate 2 42 are both made of steel plate structures, and are painted with anti-rust paint on the surface. The vertical plate 2 42 is located at the rear part of the outer side of the winding belt 7 to form a clamping shape, and the vertical plate 1 41 and the vertical plate 2 42 are wound and bound by the iron wire 1 43. The iron wire 1 43 is wound around the ends of the vertical plate 1 41 and the vertical plate 2 42 to limit the position, clamp the winding belt 7, and tie the clamped winding belt 7. The vertical plate 2 42 Universal rods 45 are rotatably arranged inside both ends, and the ends of the universal rods 45 are welded with auxiliary hooks 44 that can be hung. The rear vertical plate 42 can be clamped and positioned on the outside of the steel bars of the building by controlling the auxiliary hooks 44 through the universal rods 45 for stable positioning. A block 49 is fixedly arranged in the middle of the steel rod 48, and a rotating plate 410 is rotatably arranged between the two blocks 49. The steel rod 48 can be rotated by the rotating plate 410 between the blocks 49 to adjust the force direction. A connecting buckle 411 is rotatably arranged on the outside of the block 49 located below. 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. The second iron wire 412 is passed through the through hole of the connecting buckle 411, and the second iron wire 412 is gathered, wound and tightened to form a tension, and the connecting buckle 411 is moved to a close position. After the rotating plate 410 is rotated, the tightening effect between the steel rods 48 can be increased. A guide tube 413 is fixedly provided at the middle position of the other end of the steel rod 48. The guide tube 413 guides the screw rod 414, and the inner spiral of the guide tube 413 is provided with A screw rod 414 is provided with an auxiliary hook 415 at the other end thereof for rotation, and a corresponding arc-shaped limit hook 417 is slidably provided inside the auxiliary hook 415. A screw rod 416 which is spirally provided therewith penetrates the interior of the screw rod 414 and is rotationally provided with the limit hook 417. The limit hook 417 is hooked to the position of a nearby steel bar and can be moved by rotating the screw rod 414 to adjust the position of the auxiliary hook 415. Then, the screw rod 416 located inside the screw rod 414 is turned to push the limit hook 417 to clamp onto the outside of the steel bar.

[0060] A screw rod 3 55 passes through the splint 1 51 and the splint 2 53, and a nut 56 is spirally arranged on the outer side of the screw rod 3 55, which is respectively fitted with the surface of the splint 1 51 and the splint 2 53. The splint 1 51 and the splint 2 53 are clamped on the outer side of the longitudinal water stop belt body 1 by the screw rod 3 55 to form a clamping positioning. Swallow-wing-shaped elastic buckles 58 are fixedly arranged on both sides of the cross plate 510. After the swallow-wing-shaped elastic buckle 58 structure is buckled on the outer side of the steel bar, the cross plate 510 plays a stabilizing role and positions the splint 1 51. A slot 59 is opened at the center position of the cross plate 510. The cross plate 510 can be installed to the outer side of the limit head 57 through the slot 59 for quick positioning and installation, and the limit head 57 fixed to the splint 1 51 is passed through the interior of the slot 59.

[0061] A guide groove 63 is provided at the center of the surface of the rubber squeezing plate 62, and an anti-slip block 65 fixedly provided with the adjusting frame 61 is slidably arranged inside the guide groove 63. The rubber squeezing plate 62 can move on the outside of the anti-slip block 65 through the guide groove 63 to guide the movement of the rubber squeezing plate 62. A pulley group 66 that fits the rubber squeezing plate 62 is rotatably arranged inside the anti-slip block 65. The friction between the rubber squeezing plate 62 and the anti-slip block 65 is reduced by the pulley group 66 structure arranged inside the anti-slip block 65, and the movement is more sensitive. A semicircular plate 611 is fixedly arranged at the other end of the guide groove 63. The semicircular plate 611 structure can increase the contact area with the screw rod 69, which is more convenient for pushing the rubber squeezing plate 62. A T-shaped slider 64 that slides with the adjusting frame 61 is fixedly arranged on the top of the semicircular plate 611, and the inside of the adjusting frame 61 A transverse groove 67 is provided to guide the T-shaped slider 64. The rubber squeezing plate 62 can slide inside the transverse groove 67 through the T-shaped slider 64 to further maintain the stability of the movement of the rubber squeezing plate 62. A pushing structure is provided on the right side of the semicircular plate 611. The pushing structure includes a screw rod 69 that fits the surface of the semicircular plate 611. The outer side of the screw rod 69 is spirally provided with a sleeve 68 fixed to the adjustment frame 61. The screw rod 69 moves inside the sleeve 68 to provide a positioning structure for the movement of the screw rod 69. A hexagonal head 610 for rotation is fixed on the other end of the screw rod 69 to facilitate rapid rotation of the screw rod 69 through the hexagonal head 610. A slot 8 is provided at the top of the adjustment frame 61 to engage the outer side of the buckle 54 to facilitate the insertion of the buckle 54 into the slot 8 of the adjustment frame 61 for adjustment and positioning.

[0062] Among them, the longitudinal waterstop body 1 is the existing technology and will not be described in detail.

[0063] The working principle of the technical solution provided by the present invention is as follows:

[0064] An extension component 3 structure is added to the outside of the longitudinal waterstop body 1. The specific operation is as follows: insert the rubber belt 31 port in the extension component 3 into the outside of the side wing of the longitudinal waterstop body 1, push the rubber belt 31 structure, and after the rubber belt 31 is inserted into the outside of the side wing, it is positioned to the outside of the strip structure on the outside of different longitudinal waterstop bodies 1 through the grooves arranged at intervals on the inner wall of the rubber belt 31 to position it. When the longitudinal waterstop body 1 is laid, the longitudinal waterstop body 1 and the wingspan of the extension component 3 can be stretched and adjusted according to the width of the building gap to fit close to the width of the building gap. After the setting is completed, the longitudinal waterstop body 1 is placed between the longitudinal gaps of the building, and the contact end 35 on the other side of the rubber belt 31 is pressed against the inner wall of the gap of the building. After the positioning is completed, the convenience of setting the longitudinal waterstop body 1 is improved.

[0065] The vertical plate 1 41 and the vertical plate 2 42 in the tensioning assembly 4 are clamped to the outside of the winding belt 7 respectively, and are bound into a whole by using the iron wire 1 43. The winding belt 7 is stably clamped by the vertical plate 1 41 and the vertical plate 2 42. After the clamping is completed, the universal rod 45 is used to rotate and the auxiliary hook 1 44 is clamped to the outside of the steel bars of the building. After positioning the vertical plate 2 42, the rotating end 47 of the steel rod 48 can be clamped to the outside of the positioning ends 46 at both ends of the vertical plate 1 41. After positioning, the auxiliary hook 2 415 at the middle position of the other end of the steel rod 48 is clamped to the outside of the nearby steel bars to position it. By rotating the adjusting screw 1 414 structure, the auxiliary hook 2 415 is controlled to move to a position close to the steel bars for positioning. After the steel rod 48 is positioned, the screw 2 416 inside the screw 1 414 is adjusted to rotate, and the limit hook 417 can be controlled to push and clamp on the outside of the steel bar to complete the limit clamping and position the steel rod 48. After the hanging is completed, the iron wire 2 412 can be passed through the through hole of the connecting buckle 411 under the block 49, and the iron wire 2 412 can be tightened and wrapped, and the connecting buckle 411 is tightened. The rotating plate 410 between the blocks 49 rotates, and the steel rod 48 rotates synchronously, and the vertical rod on the left side of the steel rod 48 is deformed to maintain the traction and tension state, so that the traction and winding belt 7 pulls and tightens the longitudinal waterstop belt body 1, fits it in the gap between the building walls, and is used for water stopping. Keeping it in a taut state will also avoid the longitudinal waterstop belt body 1 from being offset when pouring mortar.

[0066] The adjustable positioning component 6 is set between the gap between the template and the wall, and the clamp plate 2 53 in the water stop belt clamping component 5 cooperates with the buckle 54 to be inserted into the slot 8 of the adjustment frame 61 to complete the positioning, and the clamp plate 1 51 at the other end of the hinge 52 at the top of the clamp plate 2 53 is rotated and clamped to the rear side of the longitudinal water stop belt body 1, and the screw rod 3 55 is inserted, and the nut 56 is used for positioning, and the horizontal plate 510 is placed and inserted into the outside of the limit head 57 through the slot 59. After positioning the horizontal plate 510, the elastic buckle 58 on the outside of the horizontal plate 510 is inserted into the outside of the steel bar to position the clamp plate 1 51, thereby enhancing the positioning and stabilization effect of the water stop belt clamping component 5.

[0067] After the adjustable positioning component 6 is set and positioned, the hexagonal tool can be inserted into the hexagonal head 610, and the hexagonal head 610 can be rotated to control the screw rod 4 69 to rotate inside the sleeve 68. The semicircular plate 611 pressed against the other end of the screw rod 4 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 the guide groove 63 of the rubber squeezing plate 62 can 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 and fit into 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.

[0068] It should be noted that, in this article, relational terms such as first and second, etc. are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Moreover, the terms "include", "comprise" or any other variants thereof are intended to cover non-exclusive inclusion, so that a process, method, article or device including a series of elements includes not only those elements, but also other elements not explicitly listed, or also includes elements inherent to such process, method, article or device.

[0069] Although 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 the embodiments without departing from the principles and spirit of the present invention, and that the scope of the present 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) is provided in the middle of the longitudinal waterstop body (1), and the characteristics are: The outer side of the longitudinal water stop strip body (1) also includes The expansion component (3) includes a rubber belt (31) attached to the outer side of the longitudinal water stop belt body (1), the front side surface of the rubber belt (31) is provided with an anti-stripping mesh layer (32), the outer side of the anti-stripping mesh layer (32) is fixedly provided with a contact end (35), the left side of the longitudinal water stop belt body (1) is wound with a winding belt (7), and the interior of the winding belt (7) also includes The tensioning assembly (4) includes a vertical plate (41) as a winding column of the winding belt (7), a positioning end (46) is fixedly provided at the top of the vertical plate (41), a rotating end (47) is sleeved on the outer side of the positioning end (46), a steel rod (48) is welded on the outer side of the rotating end (47), and a steel rod (48) is also provided above the expansion assembly (3). The water stop belt clamping assembly (5) comprises a clamping plate 1 (51) and a clamping plate 2 (53) which are clamped 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 hinge (52), a horizontal plate (510) is provided on one side of the clamping plate 1 (51) facing the clamping plate 2 (53), a buckle (54) is fixedly provided on the front bottom end of the clamping plate 2 (53), and the outer side of the buckle (54) also includes The adjustable positioning assembly (6) comprises an adjustment frame (61) which is tightly pressed against the second clamping plate (53) and the buckle (54), and a rubber squeezing plate (62) which is in contact with the rubber belt (31) is slidably arranged at the bottom end of the adjustment frame (61).

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

3. The novel multi-rib composite wall panel opening water stop according to claim 1 is characterized in that: The anti-stripping gauze 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 gauze layer (32) and the rubber belt (31).

4. The novel multi-rib composite wall panel opening water stop according to claim 1 is characterized in that: The middle position of the longitudinal water stop strip body (1) is provided with The longitudinal water stop belt body (1) and the rubber belt (31) are integrally made of 651 type rubber, 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).

5. The novel multi-rib composite wall panel opening water stop according to claim 1 is characterized in that: The vertical plate 1 (41) is located inside the winding belt (7), and a vertical plate 2 (42) is arranged on the outside of the winding belt (7) and is arranged in parallel with the vertical plate 1 (41). The vertical plate 2 (42) is located at the rear part of the outside of the winding belt (7) to form a clamping shape, and the vertical plate 1 (41) and the vertical plate 2 (42) are wrapped and bound by an iron wire 1 (43), and the winding belt (7) is tied and clamped.

6. The novel multi-rib composite wall panel opening water stop according to claim 5 is characterized by: Both ends of the vertical plate 2 (42) are rotatably provided with A universal rod (45) is provided, and an auxiliary hook (44) that can be hung is welded at the end of the universal rod (45). A block (49) is fixedly provided at the middle position of the steel rod (48). A rotating plate (410) is rotatably provided between the two blocks (49). A connecting buckle (411) is rotatably provided on the outer side of the lower block (49). A through hole is provided in the middle position of the connecting buckle (411), and a second iron wire (412) is passed through the through hole of the connecting buckle (411) for tightening.

7. The novel multi-rib composite wall panel opening water stop according to claim 1 is characterized in that: The other end of the steel rod (48) is fixedly provided with a A guide tube (413) is provided, and a screw rod (414) is spirally arranged inside the guide tube (413), an auxiliary hook (415) is rotatably arranged at the other end of the screw rod (414), and a corresponding arc-shaped limit hook (417) is slidably arranged inside the auxiliary hook (415), and a screw rod (416) spirally arranged therewith penetrates the interior of the screw rod (414) and is rotatably arranged with the limit hook (417).

8. The novel multi-rib composite wall panel opening water stop according to claim 1 is characterized in that: There is a hole between the first clamping plate (51) and the second clamping plate (53). Screw rod three (55), and the outer spiral of screw rod three (55) is provided with a nut (56) respectively fitted with the surface of clamp plate one (51) and clamp plate two (53), swallow-wing-shaped elastic buckles (58) are fixedly provided on both sides of the cross plate (510), and a slot (59) is opened at the center position of the cross plate (510), and a limit head (57) fixedly provided with clamp plate one (51) passes through the interior of the slot (59).

9. The novel multi-rib composite wall panel opening water stop according to claim 1 is characterized in that: The center of the surface of the rubber squeeze plate (62) is provided with A guide groove (63) is provided, and an anti-slip block (65) fixedly provided with the adjusting frame (61) is slidably arranged inside the guide groove (63), a pulley block (66) fitted with the rubber squeeze plate (62) is rotatably arranged 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) sliding with the adjusting 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 adjusting frame (61).

10. The novel multi-rib composite wall panel opening water stop according to claim 1, characterized in that: The right side of the semicircular plate (611) is fitted with The pushing structure comprises a screw rod (69) which is fitted on the surface of the semicircular plate (611), a sleeve (68) which is fixedly arranged on the outer side of the screw rod (69) and fixedly arranged on the adjustment frame (61), and a hexagonal head (610) which is used for rotation is fixedly arranged 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 clamped on the outer side of the buckle (54).

Citation Information

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