Auxiliary mechanism for fixing wall bricks on wall
By designing a wall tiles fixing auxiliary mechanism including side support frames, telescopic parts and side expansion surfaces, the problem of insufficient pressing force in cement bonding fixing method is solved, stable fixation of wall tiles and improvement of construction quality is achieved, and cost is reduced and construction efficiency is improved.
Patent Information
- Application Number
- CN202510572921.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-06
- Publication Date
- 2025-06-06
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
In the cement bonding and fixing method, wall tiles are prone to fall off or hollowing due to insufficient compression force during the period when the wall tiles are laid until the cement is completely cured, which affects the construction quality. At the same time, the hanger structure system has problems such as high materials and construction costs and cumbersome processes, resulting in low construction efficiency.
A wall fixing auxiliary mechanism on wall tiles is designed, including a side support frame, a side support telescopic member and a side expansion surface. The compression force on the wall tiles is provided through the expansion and contraction of the side support telescopic member to ensure the stable fixation between the wall tiles and the wall.
By providing stable compression force, wall tiles are avoided from falling off or hollowing before cement curing, construction quality is improved, labor costs and construction time are reduced, and labor costs and construction time are more efficient than hanger structure.
Smart Images

Figure CN120100173A_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of building engineering, and in particular to an auxiliary mechanism for fixing wall tiles on a wall. Background Art
[0002] Ceramic tiles play an important role in beautifying the interior of a house. According to the decorative position, ceramic tiles can be roughly divided into floor tiles and wall tiles. Wall tiles are suitable for the facade decoration of bathrooms, kitchens, and outdoor balconies. Wall tiles not only decorate the entire building, but also play a vital role in protecting the wall because of their acid and alkali resistance, cold and heat insulation, and stable physical and chemical properties.
[0003] At present, the methods of wall-mounting construction of wall tiles can be mainly divided into two categories: one is to fix with the help of cement bonding, and the other is to embed and hang the wall tiles on the wall surface using structures such as hangers. Among them, the cement bonding fixing method is to apply cement between the wall and the wall tiles, and then achieve the fixing effect after the cement solidifies. However, before the cement solidifies, due to its high internal water content and the restriction of the vertical laying angle of the wall tiles, it is difficult to fully form the compression force between the wall tiles and the wall. This feature makes it very easy for the wall tiles to fall off or hollow due to insufficient compression force during the period from the completion of laying to the complete solidification of the cement, which becomes the main reason affecting the construction quality.
[0004] In order to avoid the above problems and ensure the quality of wall tile paving, some places with strict requirements on construction standards will choose to adopt a hanging rack structure system. This system requires the installation of a fixed hanging rack on the wall in advance, and then the wall tiles are hung and fixed piece by piece through an adaptive hanging structure. However, this solution has two disadvantages: first, the material and construction costs of the hanging rack and supporting components are significantly higher than the traditional cement bonding method; second, since the existing wall tiles generally adopt a standardized sheet structure, the processing of the hanging structure needs to rely on on-site manual operation, which not only pushes up the material and labor costs, but also leads to low overall construction efficiency due to the cumbersome process. In response to the above technical bottlenecks, the present invention came into being. Summary of the invention
[0005] The purpose of the present invention is to provide an auxiliary mechanism for fixing wall tiles on the wall, through which a pressing force is provided to the wall tiles on the wall, so as to ensure the construction quality of the wall tiles on the wall.
[0006] The above technical purpose of the present invention is achieved through the following technical solutions: a wall tile fixing auxiliary mechanism, comprising: a side support frame, a plurality of side support telescopic parts and a side expansion surface installed on the side support frame, the side support frame is connected with a retaining component for keeping the side support frame in a standing state, a detachable docking structure is connected between the side expansion surface and the side support telescopic parts and when the side support telescopic parts are connected to the side expansion surface, the side support telescopic parts are telescoped along one side of the opposite side expansion surface, and one end of the opposite docking structure of each side support telescopic part is provided with a positioning part which is detachably fixedly connected to the wall tile.
[0007] By adopting the above technical solution, after the wall tiles are laid on the wall, the side support frame is placed on the side of the wall opposite to the wall tiles and the side extension surface is unfolded. The side support frame is kept in a vertical support state by the provided retaining assembly, and then the side support telescopic member is installed between each wall tile and the side extension surface. One end of the side support telescopic member is fixed to the side extension surface by the provided docking structure, and the other end is fixed to the wall tile by the positioning member. Then the side support telescopic member is controlled to extend outward to support between the side extension surface and the wall tile, so as to apply a clamping force to the wall tiles on the wall until the cement solidifies, so as to avoid the wall tiles from falling off or hollowing due to insufficient clamping force. The above-mentioned structure is used to provide a clamping force to the wall tiles on the wall, so as to ensure the quality of the wall tile construction, with lower labor costs and higher construction efficiency than the hanging rack structure.
[0008] It is further configured as follows: the side support telescopic member includes a side support seat and a side telescopic screw threadedly connected to the side support seat.
[0009] By adopting the above technical solution, the side support seat and the side telescopic screw are threadedly connected to realize the relative movement between the two to achieve the purpose of telescoping, and the telescopic structure is stepless and has stronger adaptability.
[0010] It is further configured as follows: the side support frame includes a base frame and two side frames movably arranged on the base frame, the two side frames move toward or away from each other, each side frame is connected to the base frame with a locking assembly, and the side expansion surface is connected to the two side frames and can change the size of the side expansion surface along with the two side frames.
[0011] By adopting the above technical solution, the distance between the two side frames is adjusted according to the width of different walls through the relative movement between the two side frames, so as to change the size of the side expansion surface. After the adjustment is completed, the two side frames are fixed by the provided locking assembly. This setting method enables the auxiliary mechanism to adapt to walls of different widths to better adapt to different working conditions and environments, so that the structure has better adaptability.
[0012] It is further configured as follows: the side expansion surface is composed of an expansion net connected between two side frames, and one side of the expansion net is wound around one of the side frames.
[0013] By adopting the above technical solution, the expansion net can be adapted to the distance between different side frames by being wound around the side frame, which reduces the cost and can better provide connection for the side support telescopic parts at different installation positions.
[0014] It is further configured that: the locking assembly has a locking state and an unlocked state for limiting the movement of the side frame; when the side support telescopic member is connected to the side extension surface, the locking assembly is located on the side of the side support telescopic member opposite to the side extension surface; the side frame can swing between the side support telescopic member and the locking assembly to control the locking assembly to switch between the locked state and the unlocked state.
[0015] By adopting the above technical solution, the locking assembly is arranged on the side of the side supporting telescopic member opposite to the side expansion surface, so that when the side supporting telescopic member extends outward, the force of the side supporting telescopic member acting on the side frame through the side expansion surface can drive the side frame opposite to the side supporting telescopic member to swing, so as to control the locking assembly to switch between the locked state and the unlocked state, making the locking operation of the locking assembly more convenient and without the need for separate control. This setting structure can also facilitate the sliding adjustment operation of the side frame.
[0016] The further configuration is as follows: a slide groove extending along the movement direction of the side frame is provided on the base frame, the two side frames are slidably arranged in the slide groove and can swing between the side support telescopic member and the locking assembly, the locking assembly includes a locking block moving with the side frame and a locking rack extending along the length direction of the slide groove and arranged on the base frame, and the path formed by the locking block swinging with the side frame intersects with the locking rack.
[0017] By adopting the above technical solution, the side frame drives the locking block to swing toward the lock rack, so that the locking block engages with the lock rack, thereby limiting the side frame from sliding along the slide groove to lock the side frame; when the locking block leaves the lock rack, the locking operation on the side frame can be released.
[0018] It is further configured as follows: a counterweight block is provided on the side frame, and the counterweight block gives the side frame potential energy to swing toward one side of the locking component, and the tooth groove of the lock rack is arranged toward one side in the vertical direction.
[0019] By adopting the above technical solution, the counterweight drives the side frame and the lock block to swing toward the side of the lock rack to pre-lock the side frame, so as to prevent the side support telescopic member from moving during installation and interfering with the normal installation operation of the side support telescopic member. The support of the side support telescopic member further locks the side frame, which not only avoids false triggering but also adds a safety guarantee.
[0020] It is further configured as follows: both ends of the slide groove pass through the base frame, the retaining assembly includes a retaining frame, a counterweight cavity formed in the retaining frame, and a docking bolt, and the docking bolt connects the retaining frame and the base frame or the retaining frame and the side frame.
[0021] By adopting the above technical solution, the through-type setting structure can realize the disassembly and assembly of the side frame and the base frame. When facing a flat wall, the side frame is installed on the base frame through the opening, and the retaining frame is connected to the base frame through the docking bolts, and then the counterweight is placed in the counterweight cavity, so that the side support frame can be supported vertically. The significance of the base frame is to fix the side frame more effectively to form a larger side expansion surface to adapt to the large flat wall. When facing a curved wall, the side frame is moved out of the base frame, and the retaining frame is connected to the side frame through the docking bolts, and then the counterweight is placed in the counterweight cavity, so that the side frame can be supported vertically on the ground. To change the direction of the side expansion surface and adapt to the curvature of the wall, the support operation of the wall tiles on the curved wall can be realized. This setting structure can only adapt to curved walls with a smaller width.
[0022] It is further configured as follows: the positioning member is a suction cup connected to the side support seat, the docking structure is an elastic claw connected to the side telescopic screw and fixed to the expansion network card, and the elastic claw and the side telescopic screw constitute a circumferential rotation axis limit.
[0023] By adopting the above technical solution, the suction cup is attached to the wall brick to achieve fixation between the side support telescopic member and the wall brick, and the elastic claw is clamped on the net rope of the expansion net to achieve detachable docking between the two.
[0024] It is further configured as follows: the side frame includes a base and a support rod connected to the base, wherein one of the support rods is rotatably connected to the base and a locking bolt for limiting the rotation of the support rod is connected to the support rod.
[0025] By adopting the above technical solution, the winding operation of the expansion net on the side frame is facilitated by rotating the connection, and then the tightening bolts are rotated to achieve rotational fixation of the support rod.
[0026] In summary, the present invention has the following beneficial effects: the present invention provides a pressing force on the wall tiles, thereby ensuring the construction quality of the wall tiles. BRIEF DESCRIPTION OF THE DRAWINGS
[0027] Figure 1 It is a structural schematic diagram of an embodiment; Figure 2 It is a partial structural schematic diagram of an embodiment; Figure 3 A partial cross-sectional view of an embodiment; Figure 4 It is a schematic diagram of the structure of two side frames in the embodiment; Figure 5 It is a partial exploded view of the side support telescopic member in the embodiment; Figure 6 FIG. 2 is another structural schematic diagram of an embodiment.
[0028] In the figure: 1.1, bottom frame; 1.2, side frame; 1.21, base; 1.22, support rod; 2, side support telescopic member; 21, side support seat; 22, side telescopic screw; 3, retaining assembly; 31, retaining frame; 32, counterweight cavity; 33, docking bolt; 4, suction cup; 5, locking assembly; 51, locking block; 52, locking rack; 6, side expansion surface; 7, slide groove; 8, counterweight block; 9, elastic claw; 10, tightening bolt; 11, hook. DETAILED DESCRIPTION
[0029] The present invention is further described in detail below in conjunction with the accompanying drawings.
[0030] refer to Figures 1 to 6 , an auxiliary mechanism for fixing a wall tile on a wall, comprising: a side support frame, a plurality of side support telescopic members 2, and a side expansion surface 6 installed on the side support frame. A holding component 3 for keeping the side support frame in a standing state is connected to the side support frame, a detachable docking structure is connected between the side expansion surface 6 and the side support telescopic member 2, and when the side support telescopic member 2 is connected to the side expansion surface 6, the side support telescopic member 2 is telescoped along the opposite side of the side expansion surface 6. A positioning member detachably fixedly connected to the wall tile is provided at one end of the opposite docking structure of each side support telescopic member 2.
[0031] The side support telescopic member 2 includes a side support seat 21 and a side telescopic screw 22 threadedly connected to the side support seat 21. The side expansion surface 6 is an expansion net, that is, a net rope woven from ropes. The positioning member is a suction cup 4 fixedly connected to the end surface of the side support seat 21, and the docking structure is an elastic claw 9 connected to the side telescopic screw 22 and fixed to the expansion net card. The elastic claw 9 and the end of the side telescopic screw 22 constitute a circumferential rotation axis limit, that is, the two cannot be separated along the axis and the elastic claw 9 is a plastic claw.
[0032] The side support frame includes a base frame 1.1 and two side frames 1.2 movably arranged on the base frame 1.1. The two side frames 1.2 move toward or away from each other, and each side frame 1.2 is connected to the base frame 1.1 with a locking assembly 5. The side expansion surface 6 is connected to the two side frames 1.2 and can change the size of the side expansion surface 6 with the two side frames 1.2. One side of the expansion net 6 is connected to one of the side frames 1.2, and the other side is wound around the other side frame 1.2.
[0033] The locking assembly 5 has a locking state and an unlocking state for limiting the movement of the side frame 1.2. When the side support telescopic member 2 is connected to the side extension surface 6, the locking assembly 5 is located on the side of the side support telescopic member 2 opposite to the side extension surface 6. The side frame 1.2 can swing between the side support telescopic member 2 and the locking assembly 5 to control the locking assembly 5 to switch between the locking state and the unlocking state.
[0034] The bottom frame 1.1 is provided with a slide groove 7 extending along the movement direction of the side frame 1.2. Both side frames 1.2 are slidably arranged in the slide groove 7 and can swing between the side support telescopic member 2 and the locking assembly 5. The locking assembly 5 includes a locking block 51 fixedly arranged on each side frame 1.2 and a locking rack 52 extending along the length direction of the slide groove 7 and fixedly arranged on the bottom frame 1.1. The path formed by the locking block 51 swinging along the side frame 1.2 intersects with the locking rack 52. A counterweight block 8 is integrally provided on the side frame 1.2. The counterweight block 8 gives the side frame 1.2 the potential energy to swing toward one side of the locking assembly 5. The tooth groove of the locking rack 52 is arranged toward one side in the vertical direction.
[0035] Both ends of the slide groove 7 are set through the base frame 1.1, and the holding assembly 3 includes a holding frame 31, a counterweight cavity 32 formed in the holding frame 31, and a docking bolt 33. The docking bolt 33 connects the holding frame 31 with the base frame 1.1 or the holding frame 31 with the side frame 1.2. The docking bolt 33 passes through the holding frame 31 and is threadedly connected to the base frame 1.1 or the base 1.21. The base frame 1.1 and the base 1.21 are both provided with threaded holes for the docking bolt 33 to be screwed in, and the holding assembly 3 is provided in two groups.
[0036] The side frame 1.2 includes a base 1.21 and a support rod 1.22 connected to the base 1.21, wherein the support rod 1.22 on one side frame 1.2 is rotatably connected to the base 1.21 and a tightening bolt 10 is threadedly connected to the support rod 1.22 and is tightened to the base 1.21 for limiting the rotation of the support rod 1.22. The support rod 1.22 on the other side frame 1.2 is fixedly connected to the base 1.21. A plurality of hooks 11 are fixedly arranged on the two support rods 1.22, and the expansion net is hung on the hooks 11 to achieve fixation on the support rod 1.22.
[0037] This specific embodiment is merely an explanation of the present invention and is not a limitation of the present invention. After reading this specification, those skilled in the art may make non-creative modifications to the present embodiment as needed. However, as long as they are within the scope of the claims of the present invention, they are protected by the patent law.
Claims
1. A wall brick fixing auxiliary mechanism, characterized in that: include: A side support frame, a plurality of side support telescopic members (2) and a side expansion surface (6) mounted on the side support frame, wherein the side support frame is connected to a retaining assembly (3) for retaining the side support frame in a standing state, a detachable docking structure is connected between the side expansion surface (6) and the side support telescopic member (2), and when the side support telescopic member (2) is connected to the side expansion surface (6), the side support telescopic member (2) is telescoped along the side of the opposite side expansion surface (6), and one end of the opposite docking structure of each side support telescopic member (2) is provided with a positioning member that is detachably fixedly connected to a wall tile.
2. The wall tile fixing auxiliary mechanism according to claim 1 is characterized in that: The side support telescopic member (2) comprises a side support seat (21) and a side telescopic screw rod (22) threadedly connected to the side support seat (21).
3. The wall tile fixing auxiliary mechanism according to claim 2 is characterized in that: The side support frame comprises a base frame (1.1) and two side frames (1.2) movably arranged on the base frame (1.1); the two side frames (1.2) move towards or away from each other; a locking assembly (5) is connected between each side frame (1.2) and the base frame (1.1); and the side expansion surface (6) is connected to the two side frames (1.2) and the size of the side expansion surface (6) can be changed along with the two side frames (1.2).
4. The wall tile fixing auxiliary mechanism according to claim 3 is characterized in that: The side expansion surface (6) is composed of an expansion net connected between two side frames (1.2), and one side of the expansion net is wound around one of the side frames (1.2).
5. The wall tile fixing auxiliary mechanism according to claim 3 is characterized in that: The locking assembly (5) has a locking state for limiting the movement of the side frame (1.2) and an unlocking state. When the side support telescopic member (2) is connected to the side extension surface (6), the locking assembly (5) is located on the side of the side support telescopic member (2) opposite to the side extension surface (6). The side frame (1.2) can swing between the side support telescopic member (2) and the locking assembly (5) to control the locking assembly (5) to switch between the locking state and the unlocking state.
6. The wall tile fixing auxiliary mechanism according to claim 5, characterized in that: The base frame (1.1) is provided with a slide groove (7) extending along the movement direction of the side frame (1.2); the two side frames (1.2) are both slidably arranged in the slide groove (7) and can swing between the side support telescopic member (2) and the locking assembly (5); the locking assembly (5) comprises a locking block (51) moving with the side frame (1.2) and a locking tooth bar (52) extending along the length direction of the slide groove (7) and arranged on the base frame (1.1); the path formed by the locking block (51) swinging with the side frame (1.2) intersects with the locking tooth bar (52).
7. The wall tile fixing auxiliary mechanism according to claim 6, characterized in that: The side frame (1.2) is provided with a counterweight block (8), and the counterweight block (8) gives the side frame (1.2) the potential energy to swing toward one side of the locking assembly (5), and the tooth groove of the locking rack (52) is arranged toward one side in the vertical direction.
8. The wall tile fixing auxiliary mechanism according to claim 6, characterized in that: Both ends of the slide groove (7) are arranged to pass through the base frame (1.1); the retaining assembly (3) comprises a retaining frame (31), a counterweight cavity (32) formed in the retaining frame (31), and a docking bolt (33); the docking bolt (33) connects the retaining frame (31) and the base frame (1.1) or the retaining frame (31) and the side frame (1.2).
9. The wall tile fixing auxiliary mechanism according to claim 4, characterized in that: The positioning member is a suction cup (4) connected to the side support seat (21), and the docking structure is an elastic claw (9) connected to the side telescopic screw (22) and fixedly engaged with the expansion net (6), and the elastic claw (9) and the side telescopic screw (22) form a circumferential rotation axis limiter.
10. The wall tile fixing auxiliary mechanism according to claim 4, characterized in that: The side frame (1.2) comprises a base (1.21) and a support rod (1.22) connected to the base (1.21), wherein one of the support rods (1.22) is rotatably connected to the base (1.21) and a tightening bolt (10) for limiting the rotation of the support rod (1.22) is connected to the support rod (1.22).