A kind of embedded rubber waterstop reinforcement tool
By designing the medium-buried rubber water stop reinforcement tool for reinforcement components, positioning components and limiting components, the problem of difficulty in maintaining position accuracy and positioning of reinforcement tools is solved, and precise reinforcement and stable positioning during the pouring process is achieved, which improves the pouring effect.
Patent Information
- Application Number
- CN202211244811.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-10-12
- Publication Date
- 2025-08-22
- Estimated Expiration
- 2042-10-12
AI Technical Summary
The existing medium-buried rubber water stop reinforcement tools are difficult to effectively reinforce and maintain position accuracy, resulting in easy deviation and shaking during the pouring process, reducing the reinforcement effect.
The built-in rubber water stop reinforcement tool including reinforcement components, positioning components and limiting components is adopted. Through structures such as guide holes, connecting rods, positioning plates and limiting plates, the positioning accuracy of the rubber water stop and the positioning limit of the reinforcement tool are ensured to avoid offset and shaking.
The reinforcement effect of the medium-buried rubber water stop is improved, ensuring accurate position during the pouring process, avoiding offset and shaking, and improving the pouring effect.
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Figure CN115478627B_ABST
Abstract
Description
Technical Field
[0001] The invention belongs to the technical field of construction engineering, and in particular relates to a tool for reinforcing a buried rubber waterstop. Background Art
[0002] Embedded rubber waterstop is widely used in large quantities in construction projects, especially in the advanced waterstop and post-pouring joints of construction projects, the connection parts between new and old buildings, and the water structures of industrial buildings. It can solve the problem of too long one-time construction of the structure, and can also solve the problem of structural waterproofing. The embedded rubber waterstop requires reinforcement tools when used. However, the existing reinforcement tools are generally not easy to reinforce the embedded rubber waterstop, and the placement accuracy of the embedded rubber waterstop is not good. In this way, the position of the embedded rubber waterstop will be offset during pouring, reducing the reinforcement effect. Moreover, the reinforcement tool itself has no positioning restriction effect, so that during pouring, the reinforcement tool will shake, reducing the pouring effect. Summary of the Invention
[0003] The problem solved by the present invention is to provide a reinforcement tool for an embedded rubber waterstop, which can reinforce the embedded rubber waterstop and ensure the position accuracy of the embedded rubber waterstop, thereby avoiding positional deviation of the embedded rubber waterstop during pouring, improving the reinforcement effect, and performing positioning and limiting effects on the reinforcement tool itself, thereby avoiding shaking of the reinforcement tool during pouring, improving the pouring effect.
[0004] In order to achieve the above object, the present invention adopts the following technical solutions:
[0005] A reinforcement tool for an embedded rubber waterstop comprises an embedded rubber waterstop, a reinforcement component, a positioning component and a limiting component. The reinforcement components are fixed on both side outer walls of the embedded rubber waterstop, the positioning components are fixed on both side outer walls of the embedded rubber waterstop, and the limiting components are fixed on both side outer walls of the embedded rubber waterstop.
[0006] As a further solution of the present invention: the reinforcement assembly includes a first guide hole, a connecting rod, a casting template, a threaded hole, a rotating handle, a screw, a movable plate, a reinforcement plate and a second guide hole. Casting templates are installed on the outer walls on both sides of the embedded rubber waterstop, and connecting rods are welded on the outer walls between the casting templates. A first guide hole is distributed on the inner wall of one side of the embedded rubber waterstop corresponding to the connecting rod. Movable plates are installed on the outer walls on both sides of the embedded rubber waterstop, and second guide holes are symmetrically opened on the inner wall of one side of the movable plate corresponding to the connecting rod. A reinforcement plate is fixedly connected to the outer wall of one side of the movable plate, and a screw is rotatably connected to the outer wall of the other side of the movable plate. A rotating handle is welded on the outer wall of one end of the screw, and threaded holes are symmetrically opened on the inner wall of one side of the casting template corresponding to the screw.
[0007] As a further solution of the present invention: the positioning assembly includes a positioning plate, a third guide hole, a connecting plate, a positioning rod and a first spring, a positioning plate is symmetrically welded on the outer wall of one side of the casting template, a connecting plate is installed on the outer wall of one side of the positioning plate, positioning rods are distributed and welded on the outer wall of one side of the connecting plate, a third guide hole is distributed on the inner wall of one side of the positioning plate corresponding to the positioning rod, a first spring is distributed and welded on the outer wall of one side of the positioning plate, and the other end of the first spring is welded on the outer wall of the positioning plate, and the inner wall of one side of the first spring is sleeved on the outer wall of the positioning rod.
[0008] As a further solution of the present invention: the limit assembly includes a slide groove, a rotating shaft, a second spring, an elliptical rotating wheel, a handle, a lifting plate, a slider, a limit plate and a third spring, a lifting plate is symmetrically installed on the outer wall of one side of the casting template, a slider is welded on the outer wall of one side of the lifting plate, a slide groove is symmetrically opened on the inner wall of one side of the casting template corresponding to the slider, a limit plate is distributed and welded on the top outer wall of the lifting plate, a third spring is symmetrically welded on the outer wall between the lifting plates, an elliptical rotating wheel is installed on the outer wall between the lifting plates, a rotating shaft is fixedly connected to the outer wall of one side of the elliptical rotating wheel, and the other end of the rotating shaft is rotatably connected to the inner wall of the casting template, a second spring is welded on the outer wall of one side of the casting template, and the other end of the second spring is welded to the outer wall of the elliptical rotating wheel, and a handle is welded on the outer wall of one side of the elliptical rotating wheel.
[0009] As a further solution of the present invention: a water absorption hole is opened on the middle inner wall of the embedded rubber waterstop.
[0010] As a further solution of the present invention: reinforcing ribs are distributed and fixedly connected to the outer walls on both sides of the embedded rubber waterstop, and steel wire strips are distributed and installed on the outer wall of the embedded rubber waterstop located between the reinforcing ribs.
[0011] As a further solution of the present invention: the shape of the limiting plate is L-shaped, and the number of the limiting plates is sixteen.
[0012] As a further solution of the present invention: an inner wall of one side of the second spring is sleeved on the outer wall of the rotating shaft, and the second spring is a torsion spring.
[0013] The beneficial effects of the present invention are: the embedded rubber waterstop can be reinforced and the position accuracy of the embedded rubber waterstop can be ensured, so that the position displacement of the embedded rubber waterstop can be avoided during pouring, thereby improving the reinforcement effect, and the reinforcement tool itself has a positioning and limiting effect, thereby avoiding the shaking of the reinforcement tool during pouring, thereby improving the pouring effect. BRIEF DESCRIPTION OF THE DRAWINGS
[0014] Figure 1 It is the overall three-dimensional structural diagram of the present invention;
[0015] Figure 2 A three-dimensional structural diagram of the positioning assembly of the present invention;
[0016] Figure 3 It is a three-dimensional structural diagram of the limiting component of the present invention;
[0017] Figure 4 This is a front view cutaway structural diagram of the present invention;
[0018] Figure 5 It is a top view cutaway structural diagram of the present invention;
[0019] Legend: 1. Embedded rubber waterstop; 2. Reinforcement assembly; 3. Positioning assembly; 4. Limiting assembly; 5. Water absorption hole; 6. Reinforcement rib; 7. Steel wire strip; 201. First guide hole; 202. Connecting rod; 203. Casting template; 204. Threaded hole; 205. Rotating handle; 206. Screw; 207. Moving plate; 208. Reinforcement plate; 209. Second guide hole; 301. Positioning plate; 302. Third guide hole; 303. Connecting plate; 304. Positioning rod; 305. First spring; 401. Slide groove; 402. Rotating shaft; 403. Second spring; 404. Elliptical rotating wheel; 405. Handle; 406. Lifting plate; 407. Slider; 408. Limiting plate; 409. Third spring. DETAILED DESCRIPTION
[0020] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. 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 making any creative efforts shall fall within the scope of protection of the present invention.
[0021] Example 1
[0022] See also Figure 1 and Figure 5 , a tool for reinforcing a buried rubber waterstop, comprising a buried rubber waterstop 1, a reinforcing component 2, a positioning component 3 and a limiting component 4. The reinforcing components 2 are fixed on the outer walls of both sides of the buried rubber waterstop 1, the positioning components 3 are fixed on the outer walls of both sides of the buried rubber waterstop 1, and the limiting components 4 are fixed on the outer walls of both sides of the buried rubber waterstop 1; a water absorption hole 5 is opened on the inner wall of the middle part of the buried rubber waterstop 1, which can increase the waterproof effect in the building structure and avoid rainwater penetration; reinforcing ribs 6 are distributed and fixedly connected on the outer walls of both sides of the buried rubber waterstop 1, and steel wire strips 7 are distributed and installed on the outer wall of the buried rubber waterstop 1 between the reinforcing ribs 6, which can increase the strength of the buried rubber waterstop 1 and improve the use effect of the buried rubber waterstop 1;
[0023] The reinforcement component 2 includes a first guide hole 201, a connecting rod 202, a casting template 203, a threaded hole 204, a rotating handle 205, a screw 206, a movable plate 207, a reinforcement plate 208 and a second guide hole 209. Casting templates 203 are installed on the outer walls of both sides of the embedded rubber waterstop 1. Connecting rods 202 are welded on the outer walls between the casting templates 203. The first guide hole 201 is distributed on the inner wall of one side of the embedded rubber waterstop 1 corresponding to the connecting rod 202. Movable plates 207 are distributed and installed on the outer walls on both sides of the embedded rubber water stop 1. A second guide hole 209 is symmetrically opened on the inner wall of one side of the movable plate 207 corresponding to the connecting rod 202. A reinforcement plate 208 is fixedly connected to the outer wall of one side of the movable plate 207. A screw rod 206 is rotatably connected to the outer wall of the other side of the movable plate 207. A rotating handle 205 is welded on the outer wall of one end of the screw rod 206. A threaded hole 204 is symmetrically opened on the inner wall of one side of the casting template 203 corresponding to the screw rod 206.
[0024] The working principle of the present invention is: first, the embedded rubber waterstop 1 is placed between the casting templates 203. At this time, the rotating handle 205 is manually turned to rotate the screw rod 206. Then, under the action of the threaded hole 204, the second guide hole 209 in the movable plate 207 is moved along the connecting rod 202, so that the reinforcement plate 208 extrude and reinforces the embedded rubber waterstop 1. Moreover, when the moving lengths of the two screw rods 206 are different, the position accuracy of the embedded rubber waterstop 1 can be positioned, the embedded rubber waterstop 1 can be reinforced, and the position accuracy of the embedded rubber waterstop 1 can be ensured, so that during pouring, the position displacement of the embedded rubber waterstop 1 can be avoided, thereby improving the reinforcement effect.
[0025] Example 2
[0026] See also Figure 2 The positioning assembly 3 includes a positioning plate 301, a third guide hole 302, a connecting plate 303, a positioning rod 304 and a first spring 305. The positioning plate 301 is symmetrically welded on the outer wall of one side of the casting template 203, and the connecting plate 303 is installed on the outer wall of one side of the positioning plate 301. The positioning rod 304 is distributed and welded on the outer wall of one side of the connecting plate 303. A third guide hole 302 is distributed on the inner wall of one side of the positioning plate 301 corresponding to the positioning rod 304. The first spring 305 is distributed and welded on the outer wall of one side of the positioning plate 301, and the other end of the first spring 305 is welded on the outer wall of the positioning plate 301. The inner wall of one side of the first spring 305 is sleeved on the outer wall of the positioning rod 304.
[0027] The positioning plate 301 on the casting template 203 is engaged in the specified position. At this time, after the restriction of the connecting plate 303 is released, the positioning rod 304 on the connecting plate 303 is moved along the third guide hole 302 under the action of the first spring 305, and then inserted into the specified position, so that the casting template 203 is positioned and the reinforcement tool itself is positioned and limited, thereby preventing the reinforcement tool from shaking during casting and improving the casting effect.
[0028] Example 3
[0029] See also Figure 3-4The limiting component 4 includes a slide groove 401, a rotating shaft 402, a second spring 403, an elliptical rotating wheel 404, a handle 405, a lifting plate 406, a slider 407, a limiting plate 408 and a third spring 409. The lifting plate 406 is symmetrically installed on the outer wall of one side of the casting template 203, and a slider 407 is welded on the outer wall of one side of the lifting plate 406. A slide groove 401 is symmetrically provided on the inner wall of one side of the casting template 203 corresponding to the slider 407. The limiting plates 408 are distributed and welded on the top outer wall of the lifting plate 406. The third spring 409 is symmetrically welded on the outer wall between the lifting plates 406. The elliptical rotating wheel 404 is installed on the outer wall between the lifting plates 406. The rotating shaft 402 is fixedly connected to the outer wall of one side of the elliptical rotating wheel 404, and the other end of the rotating shaft 402 is rotatably connected to the casting template 203. On the inner wall, a second spring 403 is welded on the outer wall of one side of the casting template 203, and the other end of the second spring 403 is welded to the outer wall of the elliptical rotating wheel 404, and a handle 405 is welded on the outer wall of one side of the elliptical rotating wheel 404; the limiting plate 408 is L-shaped, and the number of limiting plates 408 is sixteen, and the connecting plate 303 can be limited by two limiting plates 408, thereby improving the limiting effect; the inner wall of one side of the second spring 403 is sleeved on the outer wall of the rotating shaft 402, and the second spring 403 is a torsion spring. After the positioning of the casting template 203 is completed, the handle 405 can be released. At this time, under the torsional action of the second spring 403, the elliptical rotating wheel 404 on the rotating shaft 402 is reset, and then under the action of the third spring 409, the lifting plate 406 is reset.
[0030] The casting template 203 is placed in the casting position. At this time, the elliptical rotating wheel 404 is rotated along the rotating axis 402 through the handle 405, and the lifting plate 406 is squeezed through the raised part of the elliptical rotating wheel 404, so that the slider 407 on the lifting plate 406 moves along the slide groove 401, thereby separating the limit plate 408 from the connecting plate 303, thereby releasing the restriction of the connecting plate 303, and limiting the positioning structure without manually pulling open the positioning structure, thereby simplifying the positioning steps and improving the positioning effect.
[0031] The above description is only a preferred specific embodiment of the present invention, but the scope of protection of the present invention is not limited thereto. Any technician familiar with the technical field, within the technical scope disclosed by the present invention, who makes equivalent replacements or changes based on the technical solution and inventive concept of the present invention, should be covered by the scope of protection of the present invention.
Claims
1. A tool for reinforcing a buried rubber waterstop, characterized in that: It comprises an embedded rubber waterstop (1), a reinforcement component (2), a positioning component (3) and a limiting component (4), wherein the reinforcement component (2), the positioning component (3) and the limiting component (4) are fixed on the outer walls of both sides of the embedded rubber waterstop (1); The reinforcing assembly (2) comprises a first guide hole (201), a connecting rod (202), a casting template (203), a threaded hole (204), a rotating handle (205), a screw rod (206), a movable plate (207), a reinforcing plate (208) and a second guide hole (209). Casting templates (203) are installed on both sides of the outer wall of the embedded rubber water stop (1). Connecting rods (202) are distributed and welded on the outer wall between the casting templates (203). The first guide hole (201) is distributed on the inner wall of one side of the embedded rubber water stop (1) corresponding to the connecting rod (202). The movable plates (207) are distributed and installed on the outer walls of both sides of the embedded rubber water stop (1); a second guide hole (209) is symmetrically opened on the inner wall of one side of the movable plate (207) corresponding to the connecting rod (202); the reinforcing plate (208) is fixedly connected to the outer wall of one side of the movable plate (207); the screw rod (206) is rotatably connected to the outer wall of the other side of the movable plate (207); the rotating handle (205) is welded to the outer wall of one end of the screw rod (206); and the threaded hole (204) is symmetrically opened on the inner wall of one side of the casting template (203) corresponding to the screw rod (206); The positioning assembly (3) comprises a positioning plate (301), a third guide hole (302), a connecting plate (303), a positioning rod (304) and a first spring (305); the positioning plate (301) is symmetrically welded on one side outer wall of the casting template (203); the connecting plate (303) is installed on one side outer wall of the positioning plate (301); the positioning rod (304) is distributed and welded on one side outer wall of the connecting plate (303); the third guide hole (302) is distributed and opened on one side inner wall of the positioning plate (301) corresponding to the positioning rod (304); the first spring (305) is distributed and welded on one side outer wall of the positioning plate (301); the other end of the first spring (305) is welded on the outer wall of the positioning plate (301); and the inner wall of one side of the first spring (305) is sleeved on the outer wall of the positioning rod (304).
2. The embedded rubber waterstop reinforcement tool according to claim 1, characterized in that: The limiting assembly (4) includes a slide groove (401), a rotating shaft (402), a second spring (403), an elliptical rotating wheel (404), a handle (405), a lifting plate (406), a slider (407), a limiting plate (408) and a third spring (409). The lifting plate (406) is symmetrically installed on the outer wall of one side of the casting template (203). The slider (407) is welded on the outer wall of one side of the lifting plate (406). The slide groove (401) is symmetrically opened on the inner wall of one side of the casting template (203) corresponding to the slider (407). The limiting plate (408) is distributed and welded on the outer wall of the top end of the lifting plate (406). The third spring (409) is symmetrically welded on the outer wall between the lifting plates (406), the elliptical rotating wheel (404) is installed on the outer wall between the lifting plates (406), the rotating shaft (402) is fixedly connected to the outer wall of one side of the elliptical rotating wheel (404), and the other end of the rotating shaft (402) is rotatably connected to the inner wall of the casting template (203), the second spring (403) is welded on the outer wall of one side of the casting template (203), and the other end of the second spring (403) is welded to the outer wall of the elliptical rotating wheel (404), and the handle (405) is welded to the outer wall of one side of the elliptical rotating wheel (404).
3. The embedded rubber waterstop reinforcement tool according to claim 1, characterized in that: A water absorption hole (5) is provided on the middle inner wall of the embedded rubber waterstop (1).
4. The embedded rubber waterstop reinforcement tool according to claim 1, characterized in that: Reinforcement ribs (6) are distributed and fixedly connected to the outer walls on both sides of the embedded rubber waterstop (1), and steel wire strips (7) are distributed and installed on the outer wall of the embedded rubber waterstop (1) located between the reinforcement ribs (6).
5. The embedded rubber waterstop reinforcement tool according to claim 2, characterized in that: The shape of the limiting plates (408) is L-shaped, and the number of the limiting plates (408) is sixteen.
6. The embedded rubber waterstop reinforcement tool according to claim 2, characterized in that: One side inner wall of the second spring (403) is sleeved on the outer wall of the rotating shaft (402), and the second spring (403) is a torsion spring.
Citation Information
Patent Citations
Buried rubber waterstop reinforcing tool
CN218643578U