Indoor waterproof structure

By setting up waterproof auxiliary components and multi-layer waterproofing layers between the stone and the stone waterproofing table in the shower room, the water seepage problems caused by shrinkage and aging of traditional waterproofing methods are solved, and effective waterproofing and furniture protection in the room are achieved.

CN222990932UActive Publication Date: 2025-06-17THE SECOND CONSTR OF CHINA CONSTR EIGHTH ENG DIV
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Patent Information

Application Number
CN202421809760.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-30
Publication Date
2025-06-17
Estimated Expiration
2034-07-30

AI Technical Summary

Technical Problem

Traditional indoor waterproofing methods are prone to cracking between the stone and the stone waterproofing table in the shower room due to shrinkage, aging, settlement, dryness and cracking, causing water to penetrate into the room and causing damage to furniture.

Method used

An indoor waterproof structure is adopted, including L-shaped galvanized steel plate, cement mortar rounded corners and waterproof auxiliary components. A solid waterproof barrier is formed by setting an inner waterproof layer, a waterproof structure layer, an outer waterproof layer, a waterproof coating layer and a polymer waterproof layer between the stone and the stone waterproof platform.

Benefits of technology

It effectively avoids the water seepage problem at the connection between the stone and the stone water barrier, realizes effective water leakage in the room, protects furniture, and meets actual use needs.

✦ Generated by Eureka AI based on patent content.

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    Figure CN222990932U_ABST
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Abstract

The utility model relates to the technical field of building decoration, in particular to an indoor waterproof structure which comprises an L-shaped galvanized steel plate, a cement mortar fillet and a waterproof auxiliary assembly, the cement mortar fillet is arranged at one end of the L-shaped galvanized steel plate, stone is arranged on the other side of an anti-crack mortar waterproof protection layer, a stone water retaining strip is arranged at the end of the stone, and the waterproof auxiliary assembly is arranged on the stone water retaining strip. The waterproof auxiliary assembly is arranged on the stone and the stone water retaining strip; the waterproof auxiliary assembly is arranged between the stone and the stone water retaining table in the shower room, the stone and the stone water retaining table can be connected through an arranged inner side waterproof layer and other structures, and the problem of water seepage caused by shrinkage, aging, sedimentation, sun crack and the like at the joint of the stone and the stone water retaining table in the using process can be solved; effective water seepage prevention is achieved, water cannot permeate into a room, furniture in a dry area cannot be damaged, and the actual use requirement is met.
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Description

Technical Field

[0001] The utility model relates to the technical field of building decoration, in particular to an indoor waterproof structure. Background Technique

[0002] With the continuous development of modern residential buildings, the problem of indoor waterproofing has increasingly attracted people's attention. Indoor waterproofing is not only an important link to ensure the quality of residential buildings, but also a key factor to improve the living comfort and extend the service life of buildings. Technically, in the traditional waterproofing method, a concrete water stop belt is set under the water retaining strip of the shower room. The amount of concrete used in the concrete water stop belt is small, and there are some limitations in the concrete supply for decoration companies. For different types of residences and indoor environments, the indoor waterproofing construction method also needs to be adjusted and optimized accordingly. More strict waterproofing measures are required in humid environments such as bathrooms.

[0003] When the above-mentioned scheme and the prior art are used for indoor waterproofing construction, for most of the direct pasting between the stone materials and the stone water retaining platform in the shower room, after a long time in use, the connection position between the stone materials and the stone water retaining platform will crack due to shrinkage aging, settlement and cracking, etc. Water will penetrate into the room and cause damage to the furniture in the dry area, which cannot meet the actual use requirements.

[0004] Therefore, the utility model provides an indoor waterproof structure to solve the above problems. Content of the Utility Model

[0005] The purpose of the utility model is to provide an indoor waterproof structure to solve the problems put forward in the above background technique.

[0006] To achieve the above purpose, the utility model provides the following technical scheme: an indoor waterproof structure, including an L-shaped galvanized steel plate, a cement mortar fillet, and a waterproof auxiliary component. One end of the L-shaped galvanized steel plate is provided with a cement mortar fillet, and the end of the cement mortar fillet is provided with water-stop leakage, and the end of the water-stop leakage is provided with polymer cement waterproofing, and the end of the polymer cement waterproofing is provided with an anti-cracking mortar waterproof protection layer, and on one side of the anti-cracking mortar waterproof protection layer is provided with a tile adhesive layer, and the end of the tile adhesive layer is provided with floor tiles, and on the other side of the anti-cracking mortar waterproof protection layer is provided with a stone material, and the end of the stone material is provided with a stone water retaining strip, and one end of the stone water retaining strip is provided with a shower partition, and the waterproof auxiliary component is arranged on the stone material and the stone water retaining strip.

[0007] Preferably, the stone material includes a limiting groove, an inner waterproof layer, a waterproof structure layer, an outer waterproof layer, a waterproof coating layer, and a high molecular waterproof layer; a limiting groove is arranged on one side of the stone material, and the inner waterproof layer is arranged on the outer surfaces of the stone material and the stone water retaining strip, and on the outer surface of the inner waterproof layer are sequentially arranged a waterproof structure layer, an outer waterproof layer, a waterproof coating layer, and a high molecular waterproof layer.

[0008] Preferably, the stone water stop strip includes a limit block, a water inlet, a drainage groove, a diversion plate, a drain port, and a drain pipe; a limit block is fixedly arranged on one side of the stone water stop strip, and the limit block is arranged in a limit groove, and a water inlet is arranged on the stone water stop strip, and a drainage groove is arranged inside the stone water stop strip, and the water inlet is communicated with the drainage groove, and a drain port is arranged on one side of the stone water stop strip, and the drain port is connected to the drain pipe, and a diversion plate is arranged at the bottom of the stone water stop strip, and the diversion end of the diversion plate coincides with the position of the drain port.

[0009] Preferably, the inner waterproof layer, the waterproof structure layer, and the outer waterproof layer are arranged corresponding to each other in position and have the same number of sets.

[0010] Preferably, the limit block and the limit groove are arranged corresponding to each other in position and have the same number of sets, and they are connected with matching dimensions.

[0011] Preferably, the drain port and the drain pipe are arranged corresponding to each other in position and have the same number of sets, and the diameter of the drain port is equal to the aperture of the drain pipe.

[0012] Compared with the prior art, the beneficial effects of the present utility model are:

[0013] By arranging a waterproof auxiliary component between the stone and the stone water stop platform in the shower room, the stone and the stone water stop platform can be connected through the arranged inner waterproof layer, waterproof structure layer, outer waterproof layer, waterproof coating layer, and polymer waterproof layer. During its use, it can avoid water seepage problems caused by shrinkage aging, settlement cracking, etc. at the joint between the stone and the stone water stop platform, achieve effective water prevention, and water will not penetrate into the room to cause damage to furniture in the dry area, meeting the actual use requirements. BRIEF DESCRIPTION OF THE DRAWINGS

[0014] Figure 1 It is a schematic structural diagram of the present utility model;

[0015] Figure 2 It is a schematic structural diagram of the stone and the stone water stop strip of the present utility model;

[0016] Figure 3 It is a schematic plan view of one side of the stone and the stone water stop strip of the present utility model;

[0017] Figure 4 It is of the present utility model Figure 3 The enlarged schematic diagram of the structure at A in the figure.

[0018] In the figure: L-shaped galvanized steel plate 1, cement mortar rounded corner 2, water-stop 3, polymer cement waterproof layer 4, crack-resistant mortar waterproof protective layer 5, tile adhesive layer 6, floor tile 7, stone 8, stone water stop 9, shower partition 10, limit groove 801, inner waterproof layer 802, waterproof structure layer 803, outer waterproof layer 804, waterproof coating layer 805, high molecular waterproof layer 806, limit block 901, water inlet 902, drainage groove 903, deflector 904, drain outlet 905, drain pipe 906. Detailed implementation manners

[0019] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described. For the embodiments in the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.

[0020] Please refer to Figures 1 to 4 An indoor waterproof structure, the present invention provides three technical solutions:

[0021] Embodiment 1

[0022] An indoor waterproof structure, including an L-shaped galvanized steel plate 1, a cement mortar rounded corner 2 and a waterproof auxiliary component. One end of the L-shaped galvanized steel plate 1 is provided with a cement mortar rounded corner 2, and the end of the cement mortar rounded corner 2 is provided with a water-stop 3, and the end of the water-stop 3 is provided with a polymer cement waterproof layer 4, and the end of the polymer cement waterproof layer 4 is provided with a crack-resistant mortar waterproof protective layer 5, and one side of the crack-resistant mortar waterproof protective layer 5 is provided with a tile adhesive layer 6, and the end of the tile adhesive layer 6 is provided with a floor tile 7, and the other side of the crack-resistant mortar waterproof protective layer 5 is provided with a stone 8, and the end of the stone 8 is provided with a stone water stop 9, and one end of the stone water stop 9 is provided with a shower partition 10, and the waterproof auxiliary component is arranged on the stone 8 and the stone water stop 9.

[0023] The L-shaped galvanized steel plate 1 is fixed by plastering a rounded corner 2 with cement mortar. The height of the L-shaped galvanized steel plate 1 is 20 mm higher than the finished surface of the floor tile 7. At the corner, the whole galvanized steel plate is bent, and splicing is strictly prohibited. The L-shaped galvanized steel plate 1 should extend into the wall by 20 mm at the junction with the wall. Before applying the polymer cement waterproof coating 4, the rounded corner 2 plastered with cement mortar and the L-shaped galvanized steel plate 1 are painted with "Waterproof Leakage Stop" all over to increase the integrity of the rounded corner 2 plastered with cement mortar and the L-shaped galvanized steel plate 1, and it is also beneficial to increase the adhesion of the polymer cement waterproof coating 4 film layer. After the polymer cement waterproof coating 4 is applied and dried, a water storage test is carried out. After the water storage test is qualified, an anti-crack mortar waterproof protective layer 5 is made on the polymer cement waterproof coating 4 to avoid bumping and damaging the polymer cement waterproof coating 4 during the construction process. After the anti-crack mortar waterproof protective layer 5 is dried, the floor tiles 7 outside the shower room and the stone materials 8 inside the shower room are pasted. The stone materials 8 inside the shower room are pasted by the wet laying process. The stone water retaining strip 9 is pasted by the wet laying process. The bottom groove of the stone water retaining strip 9 is filled with the cement mortar bonding layer 6 to reach a closed state with the L-shaped galvanized steel plate 1. Finally, the shower partition 10 is installed.

[0024] Example Two

[0025] On the basis of Example One, the stone material 8 includes a limiting groove 801, an inner waterproof layer 802, a waterproof structure layer 803, an outer waterproof layer 804, a waterproof coating layer 805, and a polymer waterproof layer 806; a limiting groove 801 is provided on one side of the stone material 8, and the inner waterproof layer 802 is provided on the outer surfaces of the stone material 8 and the stone water retaining strip 9, and the outer surface of the inner waterproof layer 802 is sequentially provided with a waterproof structure layer 803, an outer waterproof layer 804, a waterproof coating layer 805, and a polymer waterproof layer 806.

[0026] In this embodiment, the inner waterproof layer 802, the waterproof structure layer 803, and the outer waterproof layer 804 are arranged in corresponding positions and have the same number of sets.

[0027] Example Three

[0028] On the basis of Example Two, the stone water retaining strip 9 includes a limiting block 901, a water inlet 902, a drainage groove 903, a diversion plate 904, a drainage port 905, and a drainage pipe 906; a limiting block 901 is fixedly provided on one side of the stone water retaining strip 9, and the limiting block 901 is arranged in the limiting groove 801. A water inlet 902 is provided on the stone water retaining strip 9, and a drainage groove 903 is arranged inside the stone water retaining strip 9. The water inlet 902 is communicated with the drainage groove 903. A drainage port 905 is provided on one side of the stone water retaining strip 9, and the drainage port 905 is connected to the drainage pipe 906. A diversion plate 904 is provided at the bottom of the stone water retaining strip 9, and the diversion end of the diversion plate 904 is arranged at the same position as the drainage port 905.

[0029] In this embodiment, the limiting block 901 and the limiting groove 801 are arranged in corresponding positions and have the same number of sets. The two are connected with matching dimensions. The drain outlet 905 and the drain pipe 906 are arranged in corresponding positions and have the same number of sets. Moreover, the diameter of the drain outlet 905 is set to be equal to the aperture of the drain pipe 906.

[0030] Although the embodiments of the present invention have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principle and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. An indoor waterproof structure, characterized in that: The invention comprises an L-shaped galvanized steel plate (1), a cement mortar fillet (2) and a waterproof auxiliary component, wherein one end of the L-shaped galvanized steel plate (1) is provided with a cement mortar fillet (2), and the end of the cement mortar fillet (2) is provided with a watertight (3), and the end of the watertight (3) is provided with a polymer cement waterproof (4), and the end of the polymer cement waterproof (4) is provided with an anti-cracking mortar waterproof protective layer (5), and a tile adhesive layer (6) is provided on one side of the anti-cracking mortar waterproof protective layer (5), and a floor tile (7) is provided on the end of the tile adhesive layer (6), and a stone (8) is provided on the other side of the anti-cracking mortar waterproof protective layer (5), and a stone water retaining strip (9) is provided on the end of the stone (8), and a shower partition (10) is provided on one end of the stone water retaining strip (9), and the waterproof auxiliary component is provided on the stone (8) and the stone water retaining strip (9), 2. An indoor waterproof structure according to claim 1, characterized in that: The stone material (8) comprises a limiting groove (801), an inner waterproof layer (802), a waterproof structural layer (803), an outer waterproof layer (804), a waterproof coating layer (805), and a polymer waterproof layer (806); a limiting groove (801) is arranged on one side of the stone material (8), and the inner waterproof layer (802) is arranged on the outer surface of the stone material (8) and the stone water retaining strip (9), and a waterproof structural layer (803), an outer waterproof layer (804), a waterproof coating layer (805), and a polymer waterproof layer (806) are arranged in sequence on the outer surface of the inner waterproof layer (802).

3. An indoor waterproof structure according to claim 1, characterized in that: The stone water retaining strip (9) comprises a limit block (901), a water inlet (902), a drainage groove (903), a guide plate (904), a drainage outlet (905), and a drainage pipe (906); a limit block (901) is fixedly arranged on one side of the stone water retaining strip (9), and the limit block (901) is arranged in the limit groove (801); the stone water retaining strip (9) is provided with a water inlet (902), and the stone water retaining strip (9) is provided with a water inlet (902). A drainage groove (903) is provided inside the strip (9), and the water inlet (902) is connected to the drainage groove (903), and a drainage outlet (905) is provided on one side of the stone water retaining strip (9), and the drainage outlet (905) is connected to a drainage pipe (906), and a guide plate (904) is provided at the bottom of the stone water retaining strip (9), and the guide end of the guide plate (904) is consistent with the setting position of the drainage outlet (905).

4. An indoor waterproof structure according to claim 2, characterized in that: The inner waterproof layer (802) is arranged at corresponding positions to the waterproof structural layer (803) and the outer waterproof layer (804) and has the same number of groups.

5. An indoor waterproof structure according to claim 3, characterized in that: The limiting blocks (901) and the limiting grooves (801) are arranged at corresponding positions and have the same number of groups, and are connected with matching sizes.

6. An indoor waterproof structure according to claim 3, characterized in that: The drainage openings (905) and the drainage pipes (906) are arranged at corresponding positions and have the same number of groups, and the diameter of the drainage openings (905) is set equal to the aperture of the drainage pipes (906).