Ceramic tile leveling device and ceramic tile leveling device set
By designing the support structure, lifting structure and locking structure of the tile leveler, the problem of ceramic tiles easily collapse during the removal of the tile leveler is solved, and quick leveling and convenient operation are achieved.
Patent Information
- Application Number
- CN202422106012.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-29
- Publication Date
- 2025-07-25
- Estimated Expiration
- 2034-08-29
AI Technical Summary
The existing ceramic tile leveler can easily damage the edge of the ceramic tile during the removal of the rotating T-shaped metal needle and drag structure, resulting in the problem of ceramic tile collapse.
A ceramic tile leveler is designed, including a support structure, a lifting structure, a pressing structure and a locking structure. Through the cooperation of the barrier part and the installation part of the support structure, the inclined surface of the lifting structure abuts the through-hole of the leveling seat to achieve rapid leveling of the ceramic tile, and fix the position through the locking structure to avoid the ceramic tile collapse.
It realizes rapid leveling of ceramic tiles, simple and convenient operation, basically avoids the problem of ceramic tiles collapse, and has a small structure, making it convenient for users to use and disassemble.
Smart Images

Figure CN223151590U_ABST
Abstract
Description
Technical Field
[0001] The embodiments of the present application relate to the technical field of building decoration construction, and particularly to a tile leveler and a tile leveler set. Background Art
[0002] Tiles are one of the essential main building materials in decoration, and are often used in many spaces such as living room floors, kitchens, bathrooms, balconies, etc.
[0003] When laying tiles, tile installers usually spend a lot of time leveling the tiles. In order to reduce the difficulty of tile leveling, improve the quality of tile laying flatness, and save the time of tile installers for leveling, tile installers usually use tile levelers to assist in tile laying and leveling. In the related art, a tile leveler usually includes a T-shaped metal needle that can be inserted into the tile joint and a dragging mechanism for lifting the T-shaped dragging metal needle. The T-shaped metal needle includes a horizontal part and a vertical part, and the free end of the vertical part is connected to the dragging mechanism. When in use, the horizontal part extends into the space between two adjacent tiles in a direction substantially parallel to the joint of the two adjacent tiles, and the whole formed by the dragging mechanism and the T-shaped metal needle rotates approximately 90°, so that both ends of the horizontal part are respectively placed under the two adjacent tiles. The dragging mechanism lifts the T-shaped metal needle and presses the two adjacent tiles to level the two adjacent tiles. At the end of the operation, the dragging mechanism is locked. After a period of time, when the adhesive (such as cement, etc.) cures, the whole formed by the dragging mechanism and the T-shaped metal needle is rotated approximately 90°, so that the horizontal part of the T-shaped metal needle is substantially parallel to the direction of the joint of the two adjacent tiles, and then the T-shaped metal needle and the dragging mechanism are removed from the laid tile joint.
[0004] However, in the process of rotating the T-shaped metal needle and removing the T-shaped metal needle and the dragging mechanism in the tile leveler in the related art, the edge of the tile may be damaged, resulting in the problem of tile chipping. Summary of the Utility Model
[0005] The embodiments of the present application provide a tile leveler and a tile leveler set to solve the technical problem that in the related art, the edge of the tile may be damaged and tile chipping may occur during the process of rotating the T-shaped metal needle and removing the T-shaped metal needle and the dragging structure.
[0006] The embodiments of the present application provide the following technical solutions to solve the above technical problems:
[0007] The embodiments of the present application provide a tile leveler, which includes:
[0008] A support structure, the support structure comprising a blocking portion and a mounting portion connected to each other, the blocking portion having a first yielding opening, the blocking portion being configured to be placed on one side of the leveling seat to block the vertical plate of the leveling seat from deforming;
[0009] a lifting structure, the lifting structure having a sliding surface and an inclined surface inclined relative to the sliding surface;
[0010] A pressing structure, the pressing structure is rotatably connected to the mounting portion, the pressing structure comprises a pressing portion and a pushing portion connected to each other, the pushing portion is connected to the lifting structure, and the connection position of the pushing portion and the lifting structure can at least change with the rotation of the pressing structure; the pressing structure is configured to press the pressing portion, the pressing portion drives the pushing portion to push the lifting structure to move, and when the tiles are leveled, the lifting structure can move until the inclined surface abuts against the top wall of the through-opening of the leveling seat;
[0011] The locking structure is configured to lock the pressing structure and / or the lifting structure when the inclined surface is pressed against the top wall of the through-opening, and the lifting structure cooperates with the leveling seat to clamp and flatten two adjacent tiles, or the supporting structure, the lifting structure and the leveling seat cooperate to clamp and flatten two adjacent tiles.
[0012] Beneficial effects of the embodiments of the present application: the tile leveler provided in the embodiments of the present application cooperates with the leveling seat to achieve rapid leveling of two adjacent tiles when laying tiles. It has a compact structure and is simple and convenient to operate. When removing the tile leveler, you only need to knock off the leveling seat to remove the tile leveler, and there will basically be no problem of tile chipping. The lifting structure and the pressing structure are connected, so that the tile leveler has a stronger integrity and is convenient for users to take and operate.
[0013] In a possible implementation, the supporting structure has a tile pressing surface, and the tile pressing surface, the lifting structure and the leveling seat cooperate to clamp and flatten two adjacent tiles.
[0014] In a possible implementation manner, the mounting portion has a second clearance opening, and a third clearance opening is formed between the mounting portion and the blocking portion, and the third clearance opening is configured to allow the vertical plate of the leveling seat to extend therein;
[0015] The end of the blocking portion away from the blocking portion and connected to the mounting portion is a first end, the end of the mounting portion away from the mounting portion and connected to the blocking portion is a second end, the opening end of the third yielding opening is between the first end and the second end, and at least part of the end surface of the first end and at least part of the end surface of the second end are the tile pressing plane;
[0016] The pressing structure can push the free end of the lifting structure to pass through the second clearance opening and the first clearance opening, and the free end of the lifting structure is the end where the vertical distance from the sliding surface to the inclined surface is smaller.
[0017] In a possible implementation manner, the pressing structure is rotatably connected to the inner side wall of the second clearance opening.
[0018] In a possible implementation manner, the pressing portion and the pushing portion form an L-shaped structure, and a connection between the pressing portion and the pushing portion is located in the second clearance opening and is rotatably connected to an inner side wall of the second clearance opening;
[0019] The pressing portion includes a connecting section and a pressing section connected to each other, wherein the connecting section is connected to the pushing portion; in the length direction of the third clearance opening, the width of the pressing section is greater than the width of the second clearance opening.
[0020] In a possible implementation manner, an extension portion is provided on a side of the support structure away from the first end, and the extension portion extends in a direction away from the first end.
[0021] In a possible implementation manner, the extending portion extends in a direction away from the first end.
[0022] In a possible implementation manner, a side of the first clearance opening close to the first end has a first side wall, and a side of the second clearance opening close to the second end has a second side wall;
[0023] The sliding surface slides along the first side wall and the second side wall.
[0024] In a possible implementation manner, a side of the first clearance opening close to the first end and a side of the second clearance opening close to the second end are both openings;
[0025] When the tile is leveled, the sliding surface slides along the front side of the tile.
[0026] In a possible implementation manner, the end surface of the first end and the end surface of the second end are both planes.
[0027] In a possible implementation manner, at least one of the two side surfaces of the blocking portion in the length direction of the third clearance opening is provided with a limit stop protrusion, the limit stop protrusion extends in the depth direction of the third clearance opening, the limit stop protrusion is provided at the edge of the third clearance opening, and the first side surface of the limit stop protrusion is butted against the first inner side wall of the third clearance opening, and the first side surface and the area where the first inner side wall butts against the first side surface are coplanar;
[0028] The limit stop protrusion is configured to cooperate with the first inner side wall to prevent the vertical plate of the leveling seat from deforming.
[0029] In a possible implementation manner, there is a spacing distance between the limit stop protrusion and an end portion of the first end.
[0030] In a possible implementation manner, the blocking portion is provided with the limiting blocking protrusions on both sides in the length direction of the third clearance opening;
[0031] The mounting portion is provided with extension protrusions on both side surfaces in the length direction of the third clearance opening; on the same side of the blocking portion and the mounting portion, the limit stop protrusion and the extension protrusion are connected by a connecting protrusion, and the limit stop protrusion, the connecting protrusion and the extension protrusion are arranged around the third clearance opening and are located at the edge of the third clearance opening.
[0032] In a possible implementation, the free end of the lifting structure has a clearance surface, the clearance surface connects the sliding surface and the inclined surface, and the clearance surface is inclined from the edge of the inclined surface toward the side of the lifting structure away from the free end.
[0033] In a possible implementation, the inclined surface is provided with at least one limiting strip, and among all the limiting strips, the limiting strips are distributed at intervals in the inclined direction of the inclined surface, and at least some of the limiting strips are the locking structures;
[0034] When the inclined surface is pressed against the top wall of the through opening, the limit strip located at the rear side of the top wall of the through opening blocks the lifting structure from moving back, and the rear side of the top wall of the through opening is the rear side of the moving direction of the lifting structure.
[0035] In a possible implementation, the lifting structure is provided with a long strip-shaped notch;
[0036] The pushing portion includes a first connecting portion and a second connecting portion, the first connecting portion and the second connecting portion are respectively connected to the pressing portion, and the first connecting portion and the second connecting portion are arranged opposite to each other and spaced apart, and a connecting shaft is connected between the first connecting portion and the second connecting portion;
[0037] The connecting shaft passes through the slot, and the connecting shaft can move in the slot.
[0038] In a possible implementation manner, the first clearance opening is an opening, and the opening faces the tile;
[0039] The sliding surface is a tile pressing surface, and when the tile is leveled, the sliding surface slides along the front side of the tile.
[0040] An embodiment of the present application also provides a tile leveling tool set, which includes a tile leveling tool and a leveling base;
[0041] The tile leveling tool is the tile leveling tool described in any of the above solutions;
[0042] The leveling base includes a bottom plate and a vertical plate connected to the bottom plate. The vertical plate and the bottom plate form a T-shaped structure, and the vertical plate is provided with a through hole.
[0043] The beneficial effects of the tile leveling tool set provided by the embodiment of the present application are the same as those of the above tile leveling tool, and will not be repeated here.
[0044] In addition to the technical problems solved by the present application, the technical features constituting the technical solution, and the beneficial effects brought by these technical features of the technical solution described above, other technical problems that can be solved by the tile leveling tool and the tile leveling tool set provided by the present application, other technical features included in the technical solution, and the beneficial effects brought by these technical features will be further described in detail in the specific implementation manner. Brief Description of the Drawings
[0045] The drawings here are incorporated into the description and form a part of this description, showing embodiments consistent with the present application and used together with the description to explain the principles of the present application.
[0046] Figure 1 It is a schematic diagram of the leveling base;
[0047] Figure 2 It is a schematic diagram of the tile leveling tool in the first embodiment of the present application;
[0048] Figure 3 It is a schematic diagram of the tile leveling tool in the first embodiment of the present application from a bottom view angle;
[0049] Figure 4 It is a schematic diagram of the tile leveling tool and the leveling base in the first embodiment of the present application for leveling tiles in cooperation;
[0050] Figure 5 It is a schematic diagram of the support structure in the first embodiment of the present application;
[0051] Figure 6 It is a side view of the support structure in the first embodiment of the present application;
[0052] Figure 7 It is a schematic diagram of the lifting structure and the pressing structure in the first embodiment of the present application;
[0053] Figure 8 It is a schematic diagram of the tile leveling tool in the second embodiment of the present application;
[0054] Figure 9Schematic diagram of the tile leveler in the third embodiment of the present application.
[0055] Explanation of reference numerals:
[0056] 100, support structure;
[0057] 110, blocking portion; 120, mounting portion; 130, third relief opening; 140, tile pressing plane; 150, extension portion;
[0058] 111, first relief opening; 112, first end; 113, first side wall; 114, limiting convex; 115, first side;
[0059] 121, second relief opening; 122, second end; 123, second side wall; 124, extension convex; 125, connecting convex;
[0060] 131, open end; 132, first inner side wall;
[0061] 200, lifting structure;
[0062] 210, sliding surface; 220, inclined surface; 230, relief surface; 240, free end; 250, notch;
[0063] 221, limiting strip;
[0064] 300, pressing structure;
[0065] 310, pressing portion; 320, pushing portion;
[0066] 311, connecting section; 312, pressing section;
[0067] 321, first connecting portion; 322, second connecting portion; 323, connecting shaft;
[0068] 400, leveling base;
[0069] 410, base; 420, vertical plate; 430, through hole; 440, top wall;
[0070] 500, tile.
[0071] Through the above drawings, the specific embodiments of the present application have been shown, and there will be a more detailed description hereinafter. These drawings and the text description are not intended to limit the scope of the concept of the present application in any way, but to illustrate the concept of the present application to those skilled in the art by referring to specific embodiments. Detailed implementation manners
[0072] Next, the technical solutions in the embodiments of the present application will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present application. Obviously, the described embodiments are only a part of the embodiments of the present application, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments in the present application without creative efforts shall fall within the protection scope of the present application. Embodiment 1
[0073] As Figure 1 shown, the leveling seat 400 for cooperating with a tile leveler includes a base 410 and a vertical plate 420 connected to the base plate. The vertical plate 420 and the base plate form a T-shaped structure. The vertical plate 420 is provided with a through hole 430. When the leveling seat 400 is in use, the base plates on both sides of the vertical plate 420 are respectively placed under adjacent two tiles 500, and the vertical plate 420 extends upward from the gap between the adjacent two tiles 500 to the upper surface (front surface) of the tile 500. The side wall of the through hole 430 facing away from the base plate is the top wall 440.
[0074] As Figure 2 , Figure 3 and Figure 4 shown, the tile leveler provided by the embodiment of the present application includes a support structure 100, a pressing structure 300 rotatably connected to the support structure 100, a lifting structure 200 connected to the pressing structure 300, and a locking structure for locking the pressing structure 300 and the lifting structure 200.
[0075] As Figure 2 , Figure 3 , Figure 5 and Figure 7 shown, the support structure 100 includes a blocking portion 110 and a mounting portion 120 connected to each other. The blocking portion 110 has a first relief opening 111, and the first relief opening 111 provides a clearance for the lifting structure 200 so that the free end 240 of the lifting structure 200 can pass through the first relief opening 111. Among them, the free end 240 of the lifting structure 200 is the end with a smaller vertical distance from the sliding surface 210 to the inclined surface 220. In this embodiment, the blocking portion 110 is configured to be placed on one side of the leveling seat 400 to prevent the vertical plate 420 of the leveling seat 400 from deforming.
[0076] As Figure 7 shown, the lifting structure 200 has a sliding surface 210 and an inclined surface 220 inclined relative to the sliding surface 210.
[0077] As Figure 2 and Figure 7As shown, the pressing structure 300 is rotatably connected to the mounting portion 120. The pressing structure 300 includes a connected pressing portion 310 and a pushing portion 320. The pushing portion 320 is connected to the lifting structure 200, and the connection position between the pushing portion 320 and the lifting structure 200 can change at least with the rotation of the pressing structure 300. That is to say, with the rotation of the pressing structure 300, the connection position between the lifting structure 200 and the pressing structure 300 changes. That is, the connection between the pressing structure 300 and the lifting structure 200 is neither a fixed connection nor a rotational connection. Exemplarily, the pressing structure 300 and the lifting structure 200 are connected by a notch 250 in cooperation, or a sliding connection, etc. The pressing structure 300 is configured to press the pressing portion 310, and the pressing portion 310 drives the pushing portion 320 to push the lifting structure 200 to move. When leveling the ceramic tile 500, the lifting structure 200 can move to abut against the top wall 440 of the through-opening 430 between the inclined surface 220 and the leveling seat 400. When the inclined surface 220 of the lifting structure 200 abuts tightly against the top wall 440 of the through-opening 430, the lifting structure 200 pulls up the leveling seat 400, and the bottom plate of the leveling seat 400 cooperates with the lifting structure 200 to clamp and flatten two adjacent ceramic tiles 500. Or, when the inclined surface 220 of the lifting structure 200 abuts tightly against the top wall 440 of the through-opening 430, the lifting structure 200 pulls up the leveling seat 400, and the support structure 100, the lifting structure 200 and the leveling seat 400 cooperate to clamp and flatten two adjacent ceramic tiles 500.
[0078] It should be noted that in the embodiments of the present application, the connection position between the pushing portion 320 and the lifting structure 200 can change at least with the rotation of the pressing structure 300 means that the connection position between the pushing portion 320 and the lifting structure 200 can change with the rotation of the pressing structure 300. When the position of the pressing structure 300 remains unchanged, moving the lifting mechanism can also change the connection position between the pushing portion 320 and the lifting structure 200.
[0079] Exemplarily, in some embodiments of the present application, such as Figure 8 and Figure 9As shown, the first relief opening 111 is an opening facing the tile 500, and the sliding surface 210 is the tile pressing surface 140. When leveling the tile 500, the blocking portion 110 is placed on one side of the leveling base 400, and the pressing structure 300 is pressed. The pressing structure 300 pushes the lifting structure 200 to move in the direction close to the blocking portion 110. Under the pushing action of the pressing structure 300, the free end 240 of the lifting structure 200 successively passes through the through opening 430 of the leveling base 400 and the second relief opening 121. As the lifting structure 200 moves, the distance between the inclined surface 220 of the lifting structure 200 and the top wall 440 of the through opening 430 becomes smaller and smaller until the inclined surface 220 of the lifting structure 200 contacts and abuts against the top wall 440 of the through opening 430. At this time, the tile 500 is clamped between the bottom plate of the leveling base 400 and the sliding surface 210 of the lifting structure 200, thereby realizing partial leveling of the tile 500. By arranging several more leveling bases 400 and tile levelers around the tile 500, for example, arranging two or three tile levelers and leveling bases 400 on one side of the tile 500, the overall leveling of the tile 500 can be realized. In this case, the bottom plate of the leveling base 400 and the lifting structure 200 cooperate to clamp and flatten two adjacent tiles 500.
[0080] Exemplarily, in some other embodiments of the present application, as Figure 3 , Figure 4 and Figure 5 shown, the support structure 100 has a tile pressing surface 140, and the tile pressing surface 140, the lifting structure 200 and the leveling base 400 cooperate to clamp and flatten two adjacent tiles 500. That is to say, when leveling the tile 500, the blocking portion 110 is placed on one side of the leveling base 400, and the pressing structure 300 is pressed. The pressing structure 300 pushes the lifting structure 200 to move until the inclined surface 220 of the lifting structure 200 contacts and abuts against the top wall 440 of the through opening 430. At this time, the lifting structure 200 pulls up the leveling base 400, and the tile 500 is clamped between the bottom plate of the leveling base 400 and the tile pressing surface 140 of the support structure 100, thereby realizing the leveling of the tile 500. In this case, the support structure 100, the lifting structure 200 and the leveling base 400 cooperate to clamp and flatten two adjacent tiles 500.
[0081] In an embodiment of the present application, the locking structure is configured to lock the pressing structure 300 and / or the lifting structure 200 when the inclined surface 220 abuts against the top wall 440 of the through opening 430, and the lifting structure 200 cooperates with the leveling base 400 to clamp and flatten two adjacent tiles 500, or the supporting structure 100, the lifting structure 200 and the leveling base 400 cooperate to clamp and flatten two adjacent tiles 500. That is to say, when the inclined surface 220 abuts against the top wall 440 of the through opening 430, the lifting structure 200 cooperates with the leveling base 400 to clamp and flatten two adjacent tiles 500, or the supporting structure 100, the lifting structure 200 and the leveling base 400 cooperate to clamp and flatten two adjacent tiles 500. At this time, the locking structure locks the pressing structure 300, or the lifting structure 200, or the pressing structure 300 and the lifting structure 200, thereby fixing the positions of the pressing structure 300 and the lifting structure 200. Thus, after the tile leveler cooperates with the leveling base 400 to clamp and flatten two adjacent tiles 500 (that is, after the lifting structure 200 cooperates with the leveling base 400 to clamp and flatten two adjacent tiles 500, or after the supporting structure 100, the lifting structure 200 and the leveling base 400 cooperate to clamp and flatten two adjacent tiles 500), the tile leveler and the leveling base 400 can be maintained in the position of clamping and flattening two adjacent tiles 500 to maintain the flattened state of two adjacent tiles 500. After the adhesive (such as cement, etc.) cures and the positions of the tiles 500 are fixed, the tile leveler is removed, thereby completing the leveling of the tiles 500. Therefore, the locking structure plays a role in maintaining the state where the tile leveler cooperates with the leveling base 400 to clamp and flatten two adjacent tiles 500.
[0082] The locking structure can lock the pressing structure 300, can lock the lifting structure 200, or can lock both the pressing structure 300 and the lifting structure 200 at the same time. The structure of the locking structure is diverse. For example, the locking structure is a locking component provided on the installation part 120. After the tile leveler cooperates with the leveling base 400 to clamp and flatten two adjacent tiles 500, the locking structure locks the pressing structure 300 to fix the position of the pressing structure 300. Since the position of the pressing structure 300 is fixed, the position of the lifting structure 200 is relatively fixed, thereby enabling the tile leveler and the leveling base 400 to cooperate and maintain the state of clamping and flattening two adjacent tiles 500. For example, the locking structure is a limiting strip 221 (as described below) or a groove provided on the lifting mechanism, etc. For another example, the locking structure includes a locking component provided on the installation part 120 and a limiting strip 221 provided on the lifting mechanism.
[0083] When the tile leveler provided by the embodiment of the present application levels the tile 500, the support structure 100 is placed on the front surface of the tile 500, the blocking portion 110 is located on one side of the leveling seat 400, the pressing structure 300 is pressed, and the pressing mechanism pushes the lifting structure 200 to move towards the side close to the blocking portion 110 until the inclined surface 220 of the lifting structure 200 contacts the top wall 440 of the through opening 430. Then, the lifting structure 200 is continuously pushed forward until the inclined surface 220 of the lifting structure 200 abuts against the top wall 440 of the through opening 430. During this process, the blocking portion 110 blocks the vertical plate 420 of the leveling seat 400 from deforming. When the inclined surface 220 of the lifting structure 200 abuts against the top wall 440 of the through opening 430, the locking mechanism locks the pressing mechanism or the lifting mechanism. Or rather, when the locking mechanism locks the pressing mechanism or the lifting mechanism, the inclined surface 220 of the lifting structure 200 abuts against the top wall 440 of the through opening 430. The tile leveler provided by the embodiment of the present application, in cooperation with the leveling seat 400, can quickly level two adjacent tiles 500 during the laying of the tiles 500. The operation is simple and convenient. And when removing the tile leveler, only the leveling seat 400 needs to be broken to remove the tile leveler, and basically there will be no problem of the tile 500 chipping. Moreover, the tile leveler provided by the embodiment of the present application only needs to cooperate with the leveling seat 400 to complete the operation. It has a small volume. The user can place the tile leveler at the leveling seat 400 and press it once to level two adjacent tiles 500. The operation is convenient and there are few components.
[0084] In addition, the lifting structure and the pressing structure of the tile leveler in the embodiment of the present application are connected, making the tile leveler more integral, convenient for the user to pick up. And when the user uses it, only the tile leveler needs to be placed at the leveling seat, and then the pressing portion is pressed to complete the leveling of the tile. The operation steps are more simplified, greatly improving the working efficiency of tile leveling.
[0085] In some embodiments of the present application, as Figure 3 shown, the support structure 100 has a tile pressing plane 140, and the tile pressing plane 140, the lifting structure 200 and the leveling seat 400 cooperate to clamp and level two adjacent tiles 500.
[0086] Exemplarily, as Figure 5 and Figure 6As shown, the mounting portion 120 has a second clearance opening 121, and a third clearance opening 130 is formed between the mounting portion 120 and the blocking portion 110, and the third clearance opening 130 is configured to allow the vertical plate 420 of the leveling seat 400 to extend therein, that is, the blocking portion 110 and at least part of the mounting portion 120 are respectively located on opposite sides of the vertical plate 420 of the leveling seat 400. The end of the blocking portion 110 that is away from the blocking portion 110 and connected to the mounting portion 120 is the first end 112, and the end of the mounting portion 120 that is away from the mounting portion 120 and connected to the blocking portion 110 is the second end 122. Between the first end 112 and the second end 122 is the open end 131 of the third make way opening 130, and at least part of the end surface of the first end 112 and at least part of the end surface of the second end 122 are the tile pressing surface 140. The pressing structure 300 can push the free end 240 of the lifting structure 200 to pass through the second make way opening 121 and the first make way opening 111. That is to say, when the ceramic tile 500 is leveled, the vertical plate 420 of the leveling seat 400 extends from the open end 131 into the third clearance opening 130, and the blocking portion 110 and the partial installation portion 120 are respectively located on both sides of the vertical plate 420. The pressing structure 300 is pressed, and the free end 240 of the lifting structure 200 passes through the second clearance opening 121, the through opening 430 and the first clearance opening 111 in sequence. As the lifting mechanism moves forward, the inclined surface 220 of the lifting mechanism is pressed against the top wall 440 of the through opening 430. At this time, the tile pressing surface 140, the lifting structure 200 and the leveling seat 400 cooperate to clamp and flatten the two adjacent ceramic tiles 500.
[0087] It should be noted that at least part of the end surface of the first end 112 and at least part of the end surface of the second end 122 are tile pressing surfaces 140, which means that the end surface of the first end 112 and the end surface of the second end 122 can be a plane or an uneven surface. When the end surface of the first end 112 and the end surface of the second end 122 are both planes, the end surface of the first end 112 and the end surface of the second end 122 are tile pressing surfaces 140, and the tile pressing surfaces 140 cooperate with the bottom plate of the leveling seat 400 to clamp and flatten the two adjacent tiles 500; when the end surface of the first end 112 and the end surface of the second end 122 are non-planar, the highest convex part of the end surface of the first end 112 and the highest convex part of the end surface of the second end 122 are tile pressing surfaces 140, which are in contact with the front of the tile 500 and cooperate with the bottom plate of the leveling seat 400 to clamp and flatten the two adjacent tiles 500. Exemplarily, in order to increase the area of the tile pressing surface 140 and improve the flattening quality of the tile 500 , the end surface of the first end 112 and the end surface of the second end 122 are both planes.
[0088] In some embodiments of the present application, Figure 2 and Figure 3 As shown, the pressing structure 300 is rotatably connected to the inner wall of the second clearance opening 121 . This structure is simple and easy to assemble.
[0089] Exemplarily, such as Figure 2 and Figure 7 As shown, the pressing part 310 and the pushing part 320 form an L-shaped structure. The connection part between the pressing part 310 and the pushing part 320 is located within the second relief opening 121 and is rotatably connected to the inner side wall of the second relief opening 121. The pressing part 310 includes a connected connection section 311 and a pressing section 312, and the connection section 311 is connected to the pushing part 320. In the length direction of the third relief opening 130 (such as the Y direction in Figure 2 ), the width of the pressing section 312 is greater than the width of the second relief opening 121. This setting enables, when the pressing structure 300 rotates to a certain angle, the two side edges of the second relief opening 121 in the length direction of the third relief opening 130 to block the pressing section 312, so that the pressing structure 300 cannot continue to rotate downward. This setting limits the rotation angle of the pressing mechanism, making the operation of the tile leveler more convenient.
[0090] In some embodiments of the present application, such as Figure 5As shown, an extension portion 150 is provided on a side of the support structure 100 facing away from the first end 112. The extension portion 150 extends in a direction away from the first end 112. This arrangement facilitates the user to grasp and pick up the tile leveler provided in the embodiment of the present application. Exemplarily, the extension portion 150 extends in a direction away from the first end 112. That is to say, the extension portion 150 projects vertically upward. This arrangement not only enables the extension portion 150 to be convenient for the user to grasp and pick up the tile leveler provided in the embodiment of the present application, but also when the user uses the tile leveler provided in the embodiment of the present application, the user can simultaneously hold the extension portion 150 and the pressing portion 310. The user's fingers are respectively located on a side of the extension portion 150 facing away from the pressing portion 310 and on a side of the pressing portion 310 facing away from the extension portion 150. At this time, the pressing portion 310 is in a vertical state, the pushing portion 320 is in a horizontal state, and the lifting structure 200 is lifted. At this time, when the user holds the extension portion 150 and the pressing portion 310, the tile leveler provided in the embodiment of the present application can be directly placed on the vertical plate 420 of the leveling base 400. Then, the hand holding the extension portion 150 and the pressing portion 310 is released. At this time, the pressing structure 300 rotates downward under the action of gravity, and the pushing mechanism pushes the lifting mechanism to move until the inclined surface 220 of the lifting structure 200 contacts the top wall 440 of the through hole 430. The top wall 440 of the through hole 430 blocks the lifting mechanism from continuing to move forward. At this time, the angle between the pressing portion 310 and the horizontal plane is less than 45°, or 30°, or smaller. The user can hold the extension portion 150 and the blocking portion 110 with the left hand (of course, the extension portion 150 or other positions can also be held, which is operated according to the user's habit), and press the pressing portion 310 with the right hand to continue to rotate the pressing structure 300 so that the inclined surface 220 of the lifting structure 200 abuts against the top wall 440 of the through hole 430. That is to say, the arrangement that the extension portion 150 extends in a direction away from the first end 112 not only facilitates the user to grasp and pick up the tile leveler provided in the embodiment of the present application, but also facilitates the user to operate and flatten two adjacent tiles 500.
[0091] The first clearance opening 111 has a first side wall 113 on a side close to the first end 112 , and the second clearance opening 121 has a second side wall 123 on a side close to the second end 122 . The sliding surface 210 slides along the first side wall 113 and the second side wall 123 . That is to say, the side of the first clearance opening 111 close to the first end 112 and the side of the second clearance opening 121 close to the second end 122 are not openings, the sliding surface 210 slides along the first side wall 113 and the second side wall 123, and the reference surface for leveling the tile 500 is the end surface of the first end 112 of the blocking portion 110 and the end surface of the second end 122 of the mounting portion 120. When the tile 500 is leveled, the tile 500 leveling surface and the bottom plate clamp the tile 500, and the lifting structure 200 cooperates with the first side wall 113 and the second side wall 123 to lift the leveling seat 400, so that the inclined surface 220 of the lifting structure 200 is pressed against the top wall 440 of the through opening 430, that is, the tile pressing surface 140, the lifting structure 200 and the leveling seat 400 cooperate to clamp and flatten two adjacent tiles 500. The sliding surface 210 of the lifting structure 200 is not used as the leveling surface for the tile 500. The end surface of the first end 112 of the blocking portion 110 and the end surface of the second end 122 of the mounting portion 120 are used as the leveling surface for the tile 500, so that the leveling quality of the tile 500 is higher.
[0092] In some embodiments of the present application, Figure 5 As shown, the blocking portion 110 is in the length direction of the third clearance opening 130 (such as Figure 5 In the two side surfaces on the Y direction in the middle, at least one side surface is provided with a limit stop convex 114, and the limit stop convex 114 is in the depth direction of the third clearance opening 130 (such as Figure 5 The limiting stopper 114 is arranged at the edge of the third clearance opening 130, and the first side surface 115 of the limiting stopper 114 is butted against the first inner side wall 132 of the third clearance opening 130. The first side surface 115 and the area where the first inner side wall 132 butts against the first side surface 115 are coplanar, and the limiting stopper 114 is configured to cooperate with the first inner side wall 132 to prevent the vertical plate 420 of the leveling seat 400 from deforming. That is, when the tile 500 is leveled, when the pressing structure 300 pushes the lifting structure 200 to move, the lifting mechanism pushes the vertical plate 420 to deform, and the first side surface 115 of the limiting stopper 114 and at least a portion of the first inner side wall 132 are located on one side of the vertical plate 420, preventing the vertical plate 420 from deforming. The arrangement of the limit stop 114 enables the blocking portion 110 to better block the vertical plate 420 from deformation, while saving materials for the supporting structure 100, saving costs, and making the tile leveler more compact and lightweight.
[0093] Please continue reading Figure 5In order to reduce the deformation of the tile leveler provided in the embodiment of the present application and increase the number of times the tile leveler can be repeatedly used, there is a spacing distance between the limit stop 114 and the end of the first end 112. That is to say, when the tile leveler cooperates with the leveling seat 400 to level two adjacent tiles 500, in the orthographic projection of the vertical plate 420 on the first inner wall 132 and the first side surface 115, the upper part of the vertical plate 420 is located in the plane formed by the first inner wall 132 and the first side surface 115, and the part of the vertical plate 420 located at the upper part of the front face of the tile 500 and the lower part of the limit stop 114 extends out of the first inner wall 132, that is, the part of the vertical plate 420 located at the upper part of the front face of the tile 500 and the lower part of the limit stop 114 is exposed to the outside. When the adhesive (such as cement, etc.) is solidified and the tile leveler is removed, use a knocking tool to knock on the upper part of the front of the tile 500 and the part of the vertical plate 420 located at the lower part of the limit stop 114, so as to break the connection between the vertical plate 420 and the bottom plate and remove the tile leveler. This operation method can reduce the deformation of the tile leveler provided in the embodiment of the present application and increase the number of times the tile leveler can be reused.
[0094] It should be noted that when the tile leveler is removed, the user can also knock on the tile leveler, which is not specifically limited here.
[0095] like Figure 5 As shown, in order to increase the aesthetics of the tile leveler, the blocking portion 110 is arranged in the length direction of the third yield opening 130 (eg Figure 5 The two side surfaces of the blocking portion 110 (in the X direction) are provided with a limit stopper 114, and the two side surfaces of the mounting portion 120 in the length direction of the third clearance opening 130 are provided with an extension protrusion 124. On the same side of the blocking portion 110 and the mounting portion 120, the limit stopper 114 and the extension protrusion 124 are connected by a connecting protrusion 125, and the limit stopper 114, the connecting protrusion 125 and the extension protrusion 124 are arranged around the third clearance opening 130 and are located at the edge of the third clearance opening 130.
[0096] In some embodiments of the present application, in order to make the tile leveler provided by the embodiments of the present application more compact, the free end 240 of the lifting structure 200 has a clearance surface 230, the clearance surface 230 connects the sliding surface 210 and the inclined surface 220, and the clearance surface 230 is inclined from the edge of the inclined surface 220 to the side of the lifting structure 200 away from the free end 240. When the pressing part 310 is in a vertically upward state, the clearance surface 230 contacts the second side wall 123. When the pressing part 310 is released, the pressing part 310 rotates downward under the action of gravity, and the pressing structure 300 pushes the lifting structure 200 to make the sliding surface 210 contact the second side wall 123 and the first side wall 113.
[0097] In some embodiments of the present application, Figure 7As shown, the inclined surface 220 is provided with at least one limiting strip 221. Among all the limiting strips 221, the limiting strips 221 are spaced apart in the inclined direction of the inclined surface 220, and at least some of the limiting strips 221 are locking mechanisms. When the inclined surface 220 abuts against the top wall 440 of the through opening 430, the limiting strip 221 located at the rear side of the top wall 440 of the through opening 430 blocks the lifting mechanism from moving back, thereby locking the lifting mechanism by the limiting strip 221, and maintaining the tile leveler and the leveling seat 400 in the position of clamping and flattening two adjacent tiles 500. In this embodiment, the rear side of the top wall 440 of the through opening 430 is the rear side in the moving direction of the lifting mechanism (such as the reverse of the X direction in FIG. 5). Exemplarily, there are multiple limiting strips 221, and a groove is formed between two adjacent limiting strips 221, thereby enabling the tile leveler to be applicable to tiles 500 of different thicknesses.
[0098] As Figure 2 and Figure 7 As shown, the lifting structure 200 is provided with an elongated notch 250. The pushing portion 320 includes a first connecting portion 321 and a second connecting portion 322. The first connecting portion 321 and the second connecting portion 322 are respectively connected to the pressing portion 310, and the first connecting portion 321 and the second connecting portion 322 are opposite and spaced apart. A connecting shaft 323 is connected between the first connecting portion 321 and the second connecting portion 322. The connecting shaft 323 passes through the notch 250, and the connecting shaft 323 can move within the notch 250. That is to say, the connecting shaft 323 and the notch 250 are in a notch 250 fit connection, that is, the pushing portion 320 and the lifting structure 200 are connected by the connecting shaft 323, and the connecting shaft 323 can be variably positioned within the notch 250 of the lifting structure 200. When the user pinches the pressing portion 310 and the extending portion 150 such that the pressing portion 310 is vertically upward, the connecting shaft 323 is located at the uppermost end of the notch 250. When the pressing portion 310 is released, the pressing portion 310 rotates downward, the connecting shaft 323 moves downward to the lower end of the notch 250, and the lifting structure 200 is pushed forward.
[0099] The embodiment of the present application also provides a tile leveler set, which includes a tile leveler and a leveling seat 400, and the tile leveler is the tile leveler of any of the above solutions. Embodiment Two
[0100] The structure of the tile leveler provided in this embodiment is basically the same as the structure in Embodiment One, and the difference is that: As Figure 8As shown, on one side of the first relief opening 111 near the first end 112 and on one side of the second relief opening 121 near the second end 122 are both openings. When leveling the tile 500, the sliding surface 210 slides along the front surface of the tile 500. That is to say, the leveling of two adjacent tiles 500 is achieved by the sliding surface 210 of the lifting mechanism, rather than by pressing flat with the end surface of the first end 112 of the blocking portion 110 and the end surface of the second end 122 of the mounting portion 120 as in the first embodiment.
[0101] The embodiment of the present application also provides a tile leveling device set, which includes a tile leveling device and a leveling base 400. The tile leveling device is the tile leveling device of any of the above solutions. Embodiment III
[0102] The structure of the tile leveling device provided in this embodiment is basically the same as the structure in the first embodiment, except that: as Figure 9 shown, the first relief opening 111 is an opening facing the tile 500, and the sliding surface 210 is the tile pressing surface 140. When leveling the tile 500, the sliding surface 210 slides along the front surface of the tile 500. That is to say, in this embodiment, the mounting portion 120 is only a horizontally arranged structure connected to the blocking portion 110, and its setting is only for installing the pressing structure 300. The leveling of two adjacent tiles 500 is achieved by the sliding surface 210 of the lifting mechanism, rather than by pressing flat with the end surface of the first end 112 of the blocking portion 110 and the end surface of the second end 122 of the mounting portion 120 as in the first embodiment.
[0103] The embodiment of the present application also provides a tile leveling device set, which includes a tile leveling device and a leveling base 400. The tile leveling device is the tile leveling device of any of the above solutions.
[0104] Those skilled in the art will readily think of other embodiments of the present application after considering the specification and practicing the invention disclosed herein. The present application is intended to cover any variations, uses, or adaptations of the present application, which follow the general principles of the present application and include common general knowledge or conventional technical means in the technical field not disclosed in the present application. The specification and embodiments are only regarded as exemplary, and the true scope and spirit of the present application are pointed out by the following claims.
[0105] It should be understood that the present application is not limited to the exact structures described above and shown in the drawings, and various modifications and changes can be made without departing from its scope. The scope of the present application is only limited by the appended claims.
Claims
1. A tile leveler, characterized in that, include: A support structure, the support structure comprising a blocking portion and a mounting portion connected to each other, the blocking portion having a first yielding opening, the blocking portion being configured to be placed on one side of the leveling seat to block the vertical plate of the leveling seat from deforming; a lifting structure, the lifting structure having a sliding surface and an inclined surface inclined relative to the sliding surface; A pressing structure, the pressing structure is rotatably connected to the mounting portion, the pressing structure comprises a pressing portion and a pushing portion connected to each other, the pushing portion is connected to the lifting structure, and the connection position of the pushing portion and the lifting structure can at least change with the rotation of the pressing structure; the pressing structure is configured to press the pressing portion, the pressing portion drives the pushing portion to push the lifting structure to move, and when the tiles are leveled, the lifting structure can move until the inclined surface abuts against the top wall of the through-opening of the leveling seat; The locking structure is configured to lock the pressing structure and / or the lifting structure when the inclined surface is pressed against the top wall of the through-opening, and the lifting structure cooperates with the leveling seat to clamp and flatten two adjacent tiles, or the supporting structure, the lifting structure and the leveling seat cooperate to clamp and flatten two adjacent tiles.
2. The tile leveler according to claim 1, characterized in that, The supporting structure has a tile pressing surface, and the tile pressing surface, the lifting structure and the leveling seat cooperate to clamp and flatten two adjacent tiles.
3. The tile leveler according to claim 2, characterized in that, The mounting portion has a second clearance opening, and a third clearance opening is formed between the mounting portion and the blocking portion, and the third clearance opening is configured to allow the vertical plate of the leveling seat to extend into; The end of the blocking portion away from the blocking portion and connected to the mounting portion is a first end, the end of the mounting portion away from the mounting portion and connected to the blocking portion is a second end, the opening end of the third yielding opening is between the first end and the second end, and at least part of the end surface of the first end and at least part of the end surface of the second end are the tile pressing plane; The pressing structure can push the free end of the lifting structure to pass through the second clearance opening and the first clearance opening, and the free end of the lifting structure is the end where the vertical distance from the sliding surface to the inclined surface is smaller.
4. The tile leveler according to claim 3, characterized in that, The pressing structure is rotatably connected to the inner side wall of the second yielding opening.
5. The tile leveler according to claim 4, characterized in that, The pressing portion and the pushing portion form an L-shaped structure, and the connection between the pressing portion and the pushing portion is located in the second clearance opening and is rotatably connected to the inner side wall of the second clearance opening; The pressing portion includes a connecting section and a pressing section connected to each other, wherein the connecting section is connected to the pushing portion; in the length direction of the third clearance opening, the width of the pressing section is greater than the width of the second clearance opening.
6. The tile leveler according to claim 3, characterized in that, An extension portion is disposed on a side of the support structure away from the first end, and the extension portion extends in a direction away from the first end.
7. The tile leveler according to claim 6, characterized in that, The extending portion extends in a direction away from the first end.
8. The tile leveler according to claim 4, characterized in that, The first clearance opening has a first side wall on a side close to the first end, and the second clearance opening has a second side wall on a side close to the second end; The sliding surface slides along the first side wall and the second side wall.
9. The tile leveler according to claim 4, characterized in that, A side of the first clearance opening close to the first end and a side of the second clearance opening close to the second end are both openings; When the tile is leveled, the sliding surface slides along the front side of the tile.
10. The tile leveler according to claim 4, wherein, The end surface of the first end and the end surface of the second end are both planes.
11. The tile leveler according to claim 4, characterized in that, At least one of the two side surfaces of the blocking portion in the length direction of the third clearance opening is provided with a limit stop protrusion, the limit stop protrusion extends in the depth direction of the third clearance opening, the limit stop protrusion is provided at the edge of the third clearance opening, and the first side surface of the limit stop protrusion is butted against the first inner side wall of the third clearance opening, and the first side surface and the area where the first inner side wall butts against the first side surface are coplanar; The limit stop protrusion is configured to cooperate with the first inner side wall to prevent the vertical plate of the leveling seat from deforming.
12. The tile leveler according to claim 11, characterized in that, There is a spacing distance between the limit stop protrusion and the end portion of the first end.
13. The tile leveler according to claim 11, characterized in that, The blocking portion is provided with the limiting blocking protrusions on both sides of the third clearance opening in the length direction; The mounting portion is provided with extension protrusions on both side surfaces in the length direction of the third clearance opening; on the same side of the blocking portion and the mounting portion, the limit stop protrusion and the extension protrusion are connected by a connecting protrusion, and the limit stop protrusion, the connecting protrusion and the extension protrusion are arranged around the third clearance opening and are located at the edge of the third clearance opening.
14. The tile leveler according to claim 4, characterized in that, The free end of the lifting structure has a clearance surface, the clearance surface connects the sliding surface and the inclined surface, and the clearance surface is inclined from the edge of the inclined surface to the side of the lifting structure away from the free end.
15. The tile leveler according to any one of claims 1 to 14, characterized in that The inclined surface is provided with at least one limiting strip, and among all the limiting strips, the limiting strips are distributed at intervals in the inclined direction of the inclined surface, and at least some of the limiting strips are the locking structures; When the inclined surface is pressed against the top wall of the through opening, the limit strip located at the rear side of the top wall of the through opening blocks the lifting structure from moving back, and the rear side of the top wall of the through opening is the rear side of the moving direction of the lifting structure.
16. The tile leveler according to any one of claims 1-14, characterized in that, The lifting structure is provided with a long strip-shaped notch; The pushing portion includes a first connecting portion and a second connecting portion, the first connecting portion and the second connecting portion are respectively connected to the pressing portion, and the first connecting portion and the second connecting portion are arranged opposite to each other and spaced apart, and a connecting shaft is connected between the first connecting portion and the second connecting portion; The connecting shaft passes through the slot, and the connecting shaft can move in the slot.
17. The tile leveler according to claim 1, characterized in that, The first clearance opening is an opening, and the opening faces the tile; The sliding surface is a tile pressing surface, and when the tile is leveled, the sliding surface slides along the front side of the tile.
18. A tile leveling tool set, characterized in that, Includes tile leveler and leveling stand; The tile leveler is the tile leveler according to any one of claims 1 to 17; The leveling seat comprises a bottom plate and a vertical plate connected to the bottom plate, the vertical plate and the bottom plate form a T-shaped structure, and the vertical plate is provided with a through opening.