Ceramic tile leveling device
By designing a combined structure of stainless steel support and plastic flat plate, the tile leveler solves the problems of difficult removal after construction and deformation of the plastic leveler, achieving convenient operation and flush joints.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-11
- Publication Date
- 2026-03-27
AI Technical Summary
Existing tile leveling devices are difficult to remove after construction, and plastic leveling devices are prone to deformation. Wedge-type leveling devices require skillful operation and are inconvenient to adjust the joints, resulting in poor construction efficiency and effectiveness.
A tile leveling device was designed, which adopts a combination structure of stainless steel frame and plastic flat plate. It is equipped with through wedge, notch and locking strip. It can be easily removed by bending or pulling the notch, and enhances the tightness and stability of the connection structure.
It enables easy operation without the need for experience or skills, provides stable grip, reduces post-construction deformation, meets construction requirements, and improves construction efficiency and the flatness of tile joints.
Smart Images

Figure CN224048608U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a hardware tool accessory, in particular to a ceramic tile leveler. BACKGROUND
[0002] In the process of ceramic tile paving, ceramic tile leveler is used to improve the flatness of ceramic tile, and its categories are various, the most common ones are wedge type and rotary type. The rotary leveler is convenient to operate, can be reused, and can be operated later. However, it needs to be removed about four hours after normal construction, otherwise it is difficult to operate. At the same time, it cannot adjust the joint, and needs to be used with a cross card. However, the plastic leveler can adjust the joint, but there are many cases of cost reduction and deformation affecting use. Overall, the wedge type leveler is more widely used. If the skill is not enough skilled, it is more laborious to remove the upper part of the base. Because, it is generally necessary to skillfully knock out from a specific direction, and the completion of large quantities of work in the whole house depends on mechanical action. SUMMARY
[0003] In view of the existing technical deficiencies, the utility model provides a ceramic tile leveler.
[0004] In order to achieve the above purpose, the technical scheme adopted by the utility model is: a ceramic tile leveler, comprising a base body, the base body has a stand part and a flat plate part connected integrally, and the base body is further provided with a bridging transition part between the stand part and the flat plate part, the stand part is perpendicular to the flat plate part, a through wedge joint is arranged on the stand part, the thickness of the transition part is less than that of the stand part, and a notch for bending or breaking is further arranged on the transition part.
[0005] The notches are symmetrically arranged on both sides of the transition part, and the notch is in the form of an open triangular structure.
[0006] The stand part is in the form of a concave structure, the wedge joint is an open port of the stand part, and the transition part is arranged at the end of the protruding two ends of the stand part.
[0007] The projection of the notch in the length direction of the transition part is in the form of an I-shaped structure, and the notch is provided with a chamfer at the inner corner.
[0008] The wedge joint is provided with a clamping strip on the inner side wall, and the projection of the clamping strip in the length direction is in the form of a triangle.
[0009] The stand part is provided with a protruding edge and a recessed groove on the side wall.
[0010] The edge has an arc contact surface at the top.
[0011] The flat plate part is provided with a cutout at the outer edge.
[0012] The flat plate has a square structure, and the cuts are located at the diagonals of the flat plate.
[0013] The flat plate has a transition surface at the diagonal corners adjacent to the cut.
[0014] The upright part is made of stainless steel by stamping, and the transition part is also provided with reinforcing holes.
[0015] The beneficial effects of this utility model are as follows: The tile leveling tool provided by this utility model is easy to operate, requires no experience or skill, can be bent to assist in breaking, provides a firm and stable grip during use, and enhances the tightness of the connection structure, meeting design and usage requirements. When the top material is made of stainless steel with a thickness of 0.3mm, it has better toughness than plastic and will not easily break during use. Furthermore, it can be directly pulled out after construction, reducing associated deformation, and the tile joints are relatively complete and flush. Attached Figure Description
[0016] Fig. 1 This is a schematic diagram of the front view assembly structure of this utility model;
[0017] Fig. 2 This is an exploded structural diagram of the present invention;
[0018] Fig. 3 This is a bottom view of the structure of this utility model. Detailed Implementation
[0019] like Figs. 1-3 As shown, a tile leveling device includes a base body 1, which has an integrally connected upright portion 2 and a flat portion 3. A bridging transition portion 4 is also provided between the upright portion 2 and the flat portion 3, with the upright portion 2 perpendicular to the flat portion 3. The base body 1 is integrally molded by injection molding, facilitating production and reducing costs. The transition portion 4 is designed to reduce its thickness, and the notch 6 facilitates operation. Its use is similar to traditional leveling devices, using a wedge inserted through the wedge opening 5 to continuously clamp and tighten two adjacent tiles; further elaboration and limitations are not provided here.
[0020] The stand part 2 is provided with a through wedge gap 5, the transition part 4 is thinner than the stand part 2, and the transition part 4 is further provided with a gap 6 for bending or breaking. After the wedge is inserted into the wedge gap 5, the ceramic tile has a force acting away from the stand part 2 and the flat plate part 3, even if the thickness of this part is reduced, it will not be too affected. Similarly, the setting of the gap 6 will not cause the ceramic tile to exceed the breaking limit of the base body 1. In addition, at least two leveling devices will be provided between the two adjacent ceramic tiles, which fully meets the design and use needs. When the stand part 2 needs to be removed, continuously bend the stand part 2 to one side to make it have a larger crack or gap, and then pull it out. The gap 6 is symmetrically arranged on both sides of the transition part 4, and the gap 6 is in a triangular open structure. The specific structure design of the gap 6 here is beneficial to increase the efficiency of crack or crack during bending, and facilitates personnel operation and pulling out.
[0021] The stand part 2 is in a concave shape structure, the wedge gap 5 is an open mouth of the stand part 2, and the transition part 4 is arranged at the end of the convex ends of the stand part 2. The concave shape structure relatively increases the number of transition parts 4, which is beneficial to at least partially break during operation, even if there is a tightly connected end, which can also be broken by twisting and other actions. It improves fault tolerance and ensures reliable and stable use.
[0022] The projection of the gap 6 in the length direction of the transition part 4 is in an H shape, and the gap 6 is provided with a chamfer 7 at the inner corner. Enhance the structural strength of other parts, and ensure that the tear opening is on the symmetry line of the gap 6. The wedge gap 5 is provided with a clamping strip 8 on the inner side wall, and the projection of the clamping strip 8 in the length direction is in a triangular shape. The clamping strip 8 is opposite to the traditional wedge, and the wedge has linearly arranged clamping teeth to realize positioning and fixing. It should be pointed out that the thickness of the traditional wedge gap 5 is reduced, and the clamping strip 8 is directly arranged here, which does not affect the structural strength.
[0023] The stand part 2 is provided with a convex edge 9 and a recessed groove 10 on the side wall, which is beneficial to personnel holding operation and improves the anti-skid performance. The edge 9 has an arc contact surface at the top, which is in contact with the human skin and is suitable. The flat plate part 3 is provided with a cutout 11 at the outer edge, which can have a larger contact surface after the mud and sand solidify, and also more deeply integrate, which is beneficial to improve the connection tightness, so that the stand part 2 will not be affected too much when pulled out. The flat plate part 3 is in a square structure, and the cutout 11 is arranged at the opposite corners of the flat plate part 3, and the larger part of the cross-sectional area is close to the ceramic tile joint, which can not only ensure the connection tightness, but also reduce the influence of hollowing. The flat plate part 3 is provided with a transition surface 12 at the adjacent opposite corners of the cutout 11, which reduces the edge near the joint, which is beneficial to weaken the adverse effects of subsequent sealing or cement shrinkage and expansion.
[0024] The stand part 2 is made of stainless steel stamping, which can enhance the strength of the upper structure of the base body 1 and avoid unnecessary breakage. In addition, the transition part 4 deeply or completely enters the flat plate part 3 to strengthen the connection, and the flat plate part 3 can be made of plastic material. Thus, the stand part 2 can be pulled out more easily due to the difference in materials. This is only one of the embodiments and is not the only limitation. The transition part 4 is also provided with a reinforcing hole 13 to strengthen the connection between the stand part 2 and the flat plate part 3, and the mutual containing area of the two is increased to prevent the stand part 2 from being easily pulled out.
[0025] In the description of the present application, it should be explained that the terms "center", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer" and the like indicate the orientation or positional relationship shown in the drawings, which is only for the convenience of describing the present application and simplifying the description, and does not indicate or imply that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, therefore cannot be understood as a limitation on the present application, at the same time, the basic principle, main features and advantages of the present application are shown and described above, which should be understood by those skilled in the art.
Claims
1. A tile leveler characterized in that, The base body is provided with a stand part and a flat plate part connected integrally, and a transition part bridging between the stand part and the flat plate part, the stand part is perpendicular to the flat plate part, the stand part is provided with a through wedge gap, the transition part is thinner than the stand part, and the transition part is further provided with a gap for bending or breaking.
2. A tile leveller as claimed in claim 1, wherein, The gap is symmetrically arranged on both sides of the transition part, and the gap is in a triangular open structure.
3. A tile leveller as claimed in claim 2, wherein, The stand part is in a concave structure, the wedge gap is an open mouth of the stand part, and the transition part is arranged at the end of the stand part.
4. A tile leveller according to claim 2 or 3, wherein, The projection of the gap in the length direction of the transition part is in an H-shaped structure, and the gap is provided with a chamfer at the inner corner.
5. A tile leveller as claimed in claim 1, wherein, The wedge gap is provided with a clamping strip on the inner side wall, and the projection of the clamping strip in the length direction is triangular.
6. A tile leveller as claimed in claim 5, characterised in that, The stand part is provided with a protruding edge and a recessed groove on the side wall.
7. A tile leveller as claimed in claim 6, characterised in that, The edge has an arc contact surface at the top.
8. A tile leveller as claimed in claim 1, wherein, The flat plate part is provided with a cutout at the outer edge.
9. A tile leveller as claimed in claim 8, characterised in that, The flat plate part is in a square structure, the cutout is arranged at the diagonal of the flat plate part, and the flat plate part is provided with a transition surface at the diagonal adjacent to the cutout.
10. A tile leveller as claimed in claim 1, characterised in that, The stand part is made of stainless steel stamping, and the transition part is further provided with a reinforcing hole.