Assembled ceramic tile wallboard for kitchen
By using a combination of leveling keel, adhesive board and I-beam clips in the prefabricated wall panel of the kitchen, the problems of complex installation, unevenness and easy damage in the existing technology are solved, realizing convenient installation and efficient replacement, and improving installation efficiency and stability.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- 重庆集凯科技服务有限公司
- Filing Date
- 2024-12-31
- Publication Date
- 2026-05-15
Smart Images

Figure CN224244336U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of prefabricated kitchen technology, and more specifically, to a prefabricated ceramic tile wall panel for kitchens. Background Technology
[0002] Traditional kitchen renovations typically involve fixing wall and floor tiles with cement mortar. This process generates significant dust pollution on-site, requires highly skilled workers, and has a long construction period. Furthermore, it prevents localized adjustments and replacements during installation, demanding high levels of technical expertise from installers. The process is time-consuming, labor-intensive, and physically demanding. Therefore, modern kitchen wall panel installations increasingly favor prefabricated installation methods to accelerate construction efficiency and reduce costs.
[0003] For example, the prior art discloses an integrated kitchen wall panel, including a bracket, with a surrounding panel fixed on all four sides of the bracket, and multiple sleeves fixed inside the surrounding panel. The bracket is horizontally and vertically alternating, and threaded grooves are provided at the alternating positions of the bracket. The four sides of the bracket are inserted into the sleeves and are fixedly connected by fastening nuts and fastening screws. A moisture-proof board is fixed on the back of the bracket, and a waterproof layer is fixed on the top of the bracket. Multiple grooves are provided on the waterproof layer.
[0004] While the aforementioned integrated wall panels for kitchens are reasonably designed, integrating the entire wall surface, they have at least the following drawbacks: The complex structure, with the entire integrated wall panel directly fixed to the wall, makes it impossible to level or absorb deviations. This makes the wall panel highly dependent on the wall's flatness; if the wall's construction is poor, the wall panel will tilt or bend, or contain many air bubbles, leading to insecure installation and easy damage. Furthermore, the large weight of the entire integrated wall panel, without effective weight distribution, makes it prone to damage, inconvenient for large-panel installation, resulting in low installation efficiency and poor stability.
[0005] Therefore, existing technologies need to be improved. Utility Model Content
[0006] The purpose of this application is to provide a prefabricated ceramic tile wall panel for kitchens, which aims to solve the technical problems of prefabricated kitchen wall installation structures in the prior art.
[0007] To achieve the above objectives, the technical solution adopted in this application is as follows:
[0008] This application provides a prefabricated ceramic tile wall panel for a kitchen, comprising:
[0009] Leveling keel, used for installation on walls;
[0010] An adhesive platform formed by multiple adhesive plates, which are installed on the leveling keel;
[0011] Tile wall panels, tile wall panels bonded to the bonding platform
[0012] I-beam clips connect the leveling keel and the adhesive board, and are used to install the adhesive board.
[0013] In one embodiment, the adhesive plate includes:
[0014] The adhesive body is used to connect to the tile wall panel;
[0015] The plug-in part is located on the periphery of the adhesive body and is used for detachable connection with the I-beam clip.
[0016] In one embodiment, the connector includes:
[0017] The first bend edge is formed by extending downward from the adhesive body;
[0018] The first abutting edge is connected to the first bent edge;
[0019] The first edge is attached to the side of the first abutting edge that is away from the first bent edge.
[0020] In one embodiment, the adhesive plate includes a composite steel plate, which is bonded to the ceramic tile wall panel by structural adhesive.
[0021] In one embodiment, the I-beam clamp includes:
[0022] I-beam profiles are used to fix the leveling keel, and the I-beam profiles have interlocking grooves;
[0023] The snap-fit profile can be detachably connected to the insertion slot. The snap-fit profile is used to form a snap-fit space with the insertion slot, and the snap-fit space is used to fix the insertion part of the adhesive board.
[0024] In one embodiment, the I-beam profile includes:
[0025] Upper wing edge;
[0026] Web plate, the web plate is connected to the upper flange;
[0027] The lower flange is connected to the side of the web away from the upper flange, and the lower flange, web and upper flange are connected to form two insertion grooves respectively. One insertion groove is located on the left side of the web and the other insertion groove is located on the right side of the web.
[0028] The lower wing fixing edge extends outward from the lower wing edge and is used to fix and connect with the leveling keel.
[0029] In one embodiment, the lower wing fixed edge includes:
[0030] The first downward-sloping edge connects to the lower flange;
[0031] The first mounting edge is connected to the first recessed edge, and bolt holes are provided on the first mounting edge.
[0032] The first fixed support is connected to the end of the first mounting edge that is away from the first recessed edge;
[0033] I-beam profiles also include:
[0034] The lower wing support edge includes a second recessed edge and a second support edge. The second recessed edge is connected to the side of the lower wing flange away from the fixed edge of the lower wing, and the second support edge is connected to the side of the second recessed edge away from the lower wing flange.
[0035] In one embodiment, the snap-fit profile includes:
[0036] Snap body;
[0037] The first contact edge is disposed on the engaging body and is used to abut against the upper flange;
[0038] The second bonding edge is disposed on the snap-fit body and is parallel to the first bonding edge. The second bonding edge abuts against the lower flange via the first abutting edge of the adhesive plate.
[0039] In one embodiment, the snap-fit profile further includes:
[0040] The third bonding edge is disposed on the snap-fit body, the third bonding edge is perpendicular to the second bonding edge, and the third bonding edge is used to abut against the first bent edge of the adhesive plate.
[0041] The fourth bonding edge is connected to the first bonding edge and the second bonding edge, and the fourth bonding edge is used to abut against the first edge of the adhesive board.
[0042] The engaging step surface has one side connected to the third mating edge and the other side connected to the first mating edge, and the engaging step surface is parallel to the first mating edge.
[0043] In one embodiment, the first edge is set as an inclined edge, and the angle formed between the first edge and the first abutting edge of the adhesive plate is an obtuse angle.
[0044] The beneficial effects of the prefabricated ceramic tile wall panel for kitchen provided in this application are at least as follows:
[0045] This application discloses a prefabricated ceramic tile wall panel for kitchens, comprising a leveling joist, an adhesive platform formed by multiple adhesive boards, ceramic tile wall panels, and I-beam clips. The leveling joist is installed on the wall, the adhesive boards are installed on the leveling joist, the ceramic tile wall panels are adhered to the adhesive platform, and the I-beam clips connect the leveling joist and the adhesive boards, serving to install the adhesive boards. This application features a simple structure. The leveling joist fixes the panel to the wall, the adhesive boards are fixed to the leveling joist via the I-beam clips, and the ceramic tile wall panels are adhered to the adhesive boards with structural adhesive. The leveling joist and adhesive platform effectively ensure the flatness of the ceramic tile wall panel installation, making installation convenient. Furthermore, when replacing a damaged wall panel, only the I-beam clips need to be removed, making disassembly and replacement easy. Attached Figure Description
[0046] To more clearly illustrate the technical solutions in the embodiments of this application, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this application. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0047] Figure 1 This is a structural schematic diagram of the prefabricated ceramic tile wall panel for the kitchen provided in an embodiment of this application;
[0048] Figure 2 This is a schematic diagram of the assembly structure of the I-beam clamp provided in the embodiments of this application;
[0049] Figure 3 This is a schematic diagram of the structure of the adhesive plate provided in the embodiments of this application;
[0050] Figure 4 A schematic diagram of a specific embodiment of the I-beam profile provided in this application;
[0051] Figure 5 This is a schematic diagram of the structure of the snap-fit profile provided in the embodiments of this application.
[0052] The following are the labeling elements in the figure:
[0053] 100. Leveling keel; 200. Adhesive board; 200a. Adhesive platform; 300. Tile wall panel; 400. I-beam clip; 500. I-beam profile; 600. Interlocking profile; 700. Wall; 210. Adhesive body; 220. Interlocking part; 221. First bent edge; 222. First abutting edge; 223. First edging; 510. Upper flange; 520. Web; 530 540. Lower flange; 550. Lower flange fixed edge; 541. Lower flange support edge; 542. First recessed edge; 543. First mounting edge; 5544. First fixed support; 555. Second recessed edge; 552. Second support edge; 610. Engaging body; 620. First fitting edge; 630. Second fitting edge; 640. Third fitting edge; 650. Fourth fitting edge; 660. Engaging step surface. Detailed Implementation
[0054] To make the technical problems, technical solutions, and beneficial effects to be solved by this application clearer, the following detailed description is provided in conjunction with the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative and are not intended to limit the scope of this application.
[0055] It should be noted that when a component is referred to as "fixed to" or "set on" another component, it may be directly or indirectly located on that other component. When a component is referred to as "connected to" another component, it may be directly or indirectly connected to that other component. The terms "upper," "lower," "left," "right," "front," "rear," "vertical," "horizontal," "top," "bottom," "inner," and "outer," etc., indicate orientations or positions based on the accompanying drawings, and are for ease of description only, and should not be construed as limiting the technical solution. The terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of technical features. "A plurality" means two or more, unless otherwise explicitly defined.
[0056] Please see Figure 1 This embodiment provides a prefabricated kitchen tile wall panel 300, which includes a leveling keel 100, an adhesive platform 200a formed by multiple adhesive boards 200, a tile wall panel 300, and an I-beam clip 400. The leveling keel 100 is used to install on the wall 700, the adhesive boards 200 are installed on the leveling keel 100, the tile wall panel 300 is bonded to the adhesive platform 200a, and the I-beam clip 400 connects the leveling keel 100 and the adhesive boards 200. The I-beam clip 400 is used to install the adhesive boards 200.
[0057] In this embodiment, the tile wall panel 300, the I-beam clip 400, the adhesive board 200, and the leveling keel 100 can all be prefabricated in the factory. After that, the prefabricated tile wall panel 300, the I-beam clip 400, the adhesive board 200, and the leveling keel 100 are transported to the construction site for assembly and can be directly installed on the wall. The installation is convenient, which can greatly shorten the construction cycle and reduce the construction difficulty.
[0058] The leveling keel 100 is used to support and fix the adhesive board 200 and ensure the flatness of the adhesive board 200. The leveling keel 100 can be fixed to the wall 700 with screws. The leveling keel 100 can be understood as existing technology. The specific structure of the leveling keel 100 will not be described in detail.
[0059] The I-beam clip 400 can be fixed to the leveling keel 100 with screws. The I-beam clip 400 is used to install the adhesive plate 200. For example, after the I-beam clip 400 is installed on the leveling keel 100, the adhesive plate 200 can be clipped into the I-beam clip 400. The adhesive plate 200 and the I-beam clip 400 are connected by a snap-fit method. When it is necessary to remove the adhesive plate 200, the adhesive plate 200 can be pulled out from the I-beam clip 400. Disassembly is convenient and replacement is easy.
[0060] The tile wall panel 300 can be bonded to the bonding plate 200 using structural adhesive. Specifically, the bonding plate 200 is installed on the leveling keel 100 using I-beam clips 400. Thus, multiple bonding plates 200 can form a bonding platform 200a on the leveling keel 100. The tile wall panel 300 can then be bonded to the bonding platform 200a. Adjacent tile wall panels 300 can be filled with grout, that is, the gaps between adjacent tile wall panels 300 can be filled with grout to bond them together.
[0061] Because the structural adhesive has strong bonding strength, if the tile wall panel 300 cracks, it will be completely bonded to the adhesive board 200. The tile wall panel 300 will not fall off even if it cracks. When it is necessary to remove the cracked tile wall panel 300, the adhesive board 200 on its back needs to be detached from the I-beam clip 400. Disassembly is convenient. After that, a new adhesive board 200 is installed, and the new tile wall panel 300 is then re-adheded to the adhesive board 200. Replacement is convenient, and the removed adhesive board 200 can be reused after processing the broken tile wall panel 300.
[0062] Therefore, this embodiment has a simple structure. The leveling keel 100 is fixed to the wall 700, and the adhesive board 200 is fixed to the leveling keel 100 by the I-beam clip 400. The tile wall panel 300 is bonded to the adhesive board 200 by structural adhesive. The leveling keel 100 and the adhesive platform 200a can effectively ensure the flatness of the tile wall panel 300 during installation. The installation is convenient. At the same time, when it is necessary to replace the damaged wall panel, it is only necessary to remove the I-beam clip 400. The disassembly is convenient and the replacement is convenient.
[0063] Specifically, please refer to Figure 2 and Figure 3 The adhesive board 200 includes an adhesive body 210 and a plug part 220. The adhesive body 210 is used to connect with the tile wall panel 300. The plug part 220 is disposed on the periphery of the adhesive body 210 and is used to be detachably connected with the I-beam clip 400.
[0064] In this embodiment, the adhesive plate 200 can be prefabricated in the factory. The adhesive plate 200 can be a profile plate. The adhesive body 210 and the insertion part 220 are integrally formed. The adhesive body 210 is equivalent to a flat plate. The insertion part 220 is used to insert the I-beam clip 400. The insertion part 220 is used to be detachably connected to the I-beam clip 400.
[0065] Specifically, please refer to Figure 3 The insertion part 220 includes: a first bent edge 221, a first abutting edge 222 and a first wrapping edge 223. The first bent edge 221 extends downward from the adhesive body 210, the first abutting edge 222 is connected to the first bent edge 221, and the first wrapping edge 223 is connected to the side of the first abutting edge 222 away from the first bent edge 221.
[0066] In this embodiment, the insertion part 220 is used to insert into the I-beam clip 400 and is detachably connected to the I-beam clip 400. The first bent edge 221 extends downward from the adhesive body 210, that is, the first bent edge 221 can provide a certain support height for the adhesive body 210 and provide clearance space for the adhesive body 210. The first abutting edge 222 is used to abut against the I-beam clip 400, and the first abutting edge 222 is equivalent to the component inserted into the I-beam clip 400. The first wrapping edge 223 extends upward from the end of the first abutting edge 222. The first wrapping edge 223 is used to wrap the side of the locking profile 600. The first wrapping edge 223 can prevent the locking profile 600 from moving and ensure the stability of the connection between the insertion part 220 and the I-beam clip 400.
[0067] Optionally, the adhesive panel 200 includes a composite steel plate, which is bonded to the ceramic tile wall panel 300 by structural adhesive.
[0068] For example, the adhesive board 200 can be made of composite steel plate. Composite steel plate has high strength and high toughness, good overall wear resistance and impact resistance, and is not easily deformed. Composite steel plate can provide a stable load-bearing platform for ceramic tile wall panel 300. For example, composite steel plate can be prefabricated in the factory and then transported to the construction site for assembly. It can be directly installed on the wall, which is convenient and can greatly shorten the construction cycle and reduce the construction difficulty.
[0069] Specifically, please refer to Figure 2 The I-beam clip 400 includes an I-beam profile 500 and a snap-fit profile 600. The I-beam profile 500 is used to fix to the leveling keel 100 and has a plug groove. The snap-fit profile 600 can be detachably connected to the plug groove. The snap-fit profile 600 is used to form a snap-fit space with the plug groove. The snap-fit space is used to fix the plug-in part 220 of the adhesive plate 200.
[0070] In this embodiment, the I-beam clip 400 includes an I-beam profile 500 and a snap-fit profile 600. The I-beam profile 500 has an insertion groove, and the snap-fit profile 600 can be connected to the insertion part 220 of the adhesive plate 200 and inserted into the insertion groove together. The snap-fit profile 600 plays a snap-fit role. When it is necessary to remove the insertion part 220 from the insertion groove, simply remove the snap-fit profile 600. Disassembly is convenient and replacement is easy.
[0071] Optionally, the snap-fit profile 600 may include an aluminum alloy profile, that is, the snap-fit profile 600 may be made of an aluminum alloy profile, which has a lighter weight and higher strength, and at the same time, the aluminum alloy profile has good plasticity and processing performance.
[0072] Specifically, please refer to Figure 4 The I-beam profile 500 includes: an upper flange 510, a web 520, a lower flange 530, and a lower flange fixed edge 540. The web 520 is connected to the upper flange 510, and the lower flange 530 is connected to the side of the web 520 away from the upper flange 510. The lower flange 530, the web 520, and the upper flange 510 are connected to form two insertion slots, one insertion slot is located on the left side of the web 520, and the other insertion slot is located on the right side of the web 520. The lower flange fixed edge 540 extends outward from the lower flange 530 and is used to fix and connect with the leveling keel 100.
[0073] In this embodiment, the I-beam profile 500 includes an upper flange 510, a web 520, a lower flange 530, and a lower flange fixing edge 540. The upper flange 510, the web 520, and the lower flange 530 are connected to form an "I" profile. Two insertion slots are formed on the left and right sides of the web 520, respectively. These insertion slots are used to insert into the engaging profile 600 and the insertion part 220. The lower flange fixing edge 540 is disposed on the lower flange 530 and is used for installation and fixing. For example, the lower flange fixing edge 540 can be fixedly connected to the leveling keel 100 by bolts or screws, which is convenient for installation.
[0074] Specifically, please refer to Figure 4 The I-beam profile 500 also includes a lower wing support edge 550, which includes a second recessed edge 551 and a second support edge 552. The second recessed edge 551 is connected to the side of the lower flange 530 away from the lower flange fixed edge 540, and the second support edge 552 is connected to the side of the second recessed edge 551 away from the lower flange 530.
[0075] The lower wing fixing edge 540 includes: a first recessed edge 541, a first mounting edge 542, and a first fixing support 543. The first recessed edge 541 is connected to the lower wing flange 530, the first mounting edge 542 is connected to the first recessed edge 541, the first mounting edge 542 is provided with bolt holes, and the first fixing support 543 is connected to the end of the first mounting edge 542 away from the first recessed edge 541.
[0076] In this embodiment, the lower wing support edge 550 is located on the side of the lower flange 530 away from the lower wing fixing edge 540. The lower wing support edge 550 and the lower wing fixing edge 540 are located on the left and right sides of the lower flange 530, respectively. Both the lower wing support edge 550 and the lower wing fixing edge 540 are used to support the lower flange 530, providing a stable and good installation space for the lower flange 530. For example, the lower flange 530 is connected to the first mounting edge 542 via the first recessed edge 541. The first mounting edge 542 is provided with bolt holes for installing bolts or screws, so that the I-beam profile 500 can be fixed to the leveling keel 100 by bolts or screws, while the first recessed edge 541 can provide clearance space for the installation of bolts or screws.
[0077] Specifically, please refer to Figure 5 The snap-fit profile 600 includes: a snap-fit body 610, a first fitting edge 620 and a second fitting edge 630. The first fitting edge 620 is disposed on the snap-fit body 610 and is used to abut against the upper flange 510. The second fitting edge 630 is disposed on the snap-fit body 610 and is disposed parallel to the first fitting edge 620. The second fitting edge 630 abuts against the lower flange 530 via the first abutting edge 222 of the adhesive plate 200.
[0078] In this embodiment, the snap-fit profile 600 is inserted into the insertion slot. This means that the top of the snap-fit profile 600 abuts against the upper flange 510, and the bottom of the snap-fit profile 600 abuts against the lower flange 530. In fact, the bottom of the snap-fit profile 600 is attached to the first abutting edge 222 of the adhesive plate 200. Then, the first abutting edge 222 abuts against the lower flange 530. That is, the snap-fit profile 600 and the insertion slot form a snap-fit space. The snap-fit space is used to fix the insertion part 220 of the adhesive plate 200, and the first abutting edge 222 is embedded in the snap-fit space.
[0079] Specifically, please refer to Figure 2 and Figure 5 The snap-fit profile 600 further includes a third fitting edge 640 and a fourth fitting edge 650. The third fitting edge 640 is disposed on the snap-fit body 610 and is perpendicular to the second fitting edge 630. The third fitting edge 640 is used to abut against the first bent edge 221 of the adhesive plate 200. The fourth fitting edge 650 is connected to the first fitting edge 620 and the second fitting edge 630 and is used to abut against the first edge 223 of the adhesive plate 200.
[0080] In this embodiment, the first fitting edge 620 and the second fitting edge 630 are located on the upper and lower planes of the snap-fit profile 600, and the third fitting edge 640 and the fourth fitting edge 650 are located on the left and right planes of the snap-fit profile 600. It can be understood that the snap-fit profile 600 is snapped with the I-beam profile 500 through the first fitting edge 620 and the second fitting edge 630, and the third fitting edge 640 and the fourth fitting edge 650 are used to snap with the insertion part 220. The first bending edge 221, the first abutting edge 222 and the first wrapping edge 223 are connected to form a groove structure, and the snap-fit profile 600 is embedded in the groove structure. The third fitting edge 640 abuts with the first bending edge 221, the second fitting edge 630 fits with the first abutting edge 222, and the fourth fitting edge 650 fits with the first wrapping edge 223, which means that the insertion part 220 is partially wrapped around the snap-fit profile 600.
[0081] When the adhesive plate 200 needs to be installed, first align the snap-fit profile 600 with the insertion part 220 so that the third fitting edge 640 abuts against the first bent edge 221, the second fitting edge 630 fits against the first abutting edge 222, and the fourth fitting edge 650 fits against the first wrapping edge 223.
[0082] Then, the combined plug-in part 220 and the snap-fit profile 600 are inserted into the plug-in slot of the I-beam profile 500, so that the first abutting edge 222 abuts against the lower flange 530 and the first fitting edge 620 abuts against the upper flange 510, making installation convenient.
[0083] When it is necessary to remove the adhesive plate 200, simply remove the snap-fit profile 600 from the insertion slot, and then remove the insertion part 220 from the insertion slot. Disassembly is convenient and replacement is easy.
[0084] To facilitate the removal of the snap-fit profile 600 from the insertion slot, the first edge 223 is set as an inclined edge, and the angle formed by the first edge 223 and the first abutting edge 222 of the adhesive plate 200 is an obtuse angle. This is equivalent to the fourth mating edge 650 of the snap-fit profile 600 being an inclined edge, and the angle formed by the fourth mating edge 650 and the second mating edge 630 being an obtuse angle. On the one hand, the snap-fit profile 600 can be smoothly inserted into the insertion part 220. On the other hand, when disassembling the snap-fit profile 600, the snap-fit profile 600 is more easily detached from the insertion part 220.
[0085] Specifically, the snap-fit profile 600 also includes a snap-fit step surface 660. One side of the snap-fit step surface 660 is connected to the third mating edge 640, and the other side is connected to the first mating edge 620. The snap-fit step surface 660 is parallel to the first mating edge 620. The snap-fit step surface 660 is flush with the bonding platform 200a and is used to support the tile wall panel 300. In order to install the snap-fit profile 600, the upper flange 510 maintains a certain gap with the bonding platform 200a. The snap-fit step surface 660 can be regarded as an extension of the bonding platform 200a to fill the gap, and has the function of supporting and fixing the tile wall panel 300, making the tile wall panel 300 more secure and stable during installation.
[0086] In summary, this application discloses a prefabricated ceramic tile wall panel for kitchens, comprising a leveling keel, an adhesive platform formed by multiple adhesive boards, ceramic tile wall panels, and I-beam clips. The leveling keel is installed on the wall, the adhesive boards are installed on the leveling keel, the ceramic tile wall panels are adhered to the adhesive platform, and the I-beam clips connect the leveling keel and the adhesive boards, serving to install the adhesive boards. This application features a simple structure. The leveling keel fixes the panel to the wall, the adhesive boards are fixed to the leveling keel via the I-beam clips, and the ceramic tile wall panels are adhered to the adhesive boards using structural adhesive. The leveling keel and adhesive platform effectively ensure the flatness of the ceramic tile wall panel installation, making installation convenient. Furthermore, when replacing a damaged wall panel, only the I-beam clips need to be removed, making disassembly and replacement easy.
[0087] The above description is merely a preferred embodiment of this application and is not intended to limit this application. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of this application should be included within the protection scope of this application.
Claims
1. A prefabricated ceramic tile wall panel for kitchens, characterized in that, include: Leveling keel, the leveling keel is used for installation on the wall; An adhesive platform formed by multiple adhesive plates, the adhesive plates being installed on the leveling keel; Tile wall panels, the tile wall panels being bonded to the bonding platform An I-beam clamp is connected to the leveling keel and the adhesive plate, and the I-beam clamp is used to install the adhesive plate.
2. The prefabricated ceramic tile wall panel for kitchens as described in claim 1, characterized in that, The adhesive plate includes: An adhesive body for connecting to the ceramic tile wall panel; The plug-in part is disposed on the periphery of the adhesive body and is used for detachable connection with the I-shaped fastener.
3. The prefabricated ceramic tile wall panel for kitchens as described in claim 2, characterized in that, The connector includes: The first bent edge extends downward from the adhesive body; The first abutting edge is connected to the first bent edge; The first edge is attached to the side of the first abutting edge that is away from the first bent edge.
4. The prefabricated ceramic tile wall panel for kitchens as described in claim 1, characterized in that, The adhesive board includes a composite steel plate, which is bonded to the ceramic tile wall panel by structural adhesive.
5. The prefabricated ceramic tile wall panel for kitchens as described in claim 1, characterized in that, The I-beam clamp includes: I-beam profile, the I-beam profile being used to fix to the leveling keel, and the I-beam profile having a splice groove; A snap-fit profile is provided, which is detachably connected to the insertion groove. The snap-fit profile is used to form a snap-fit space with the insertion groove, and the snap-fit space is used to fix the insertion part of the adhesive plate.
6. The prefabricated ceramic tile wall panel for kitchens as described in claim 5, characterized in that, The I-beam profile includes: Upper wing edge; Web plate, the web plate being connected to the upper flange; The lower flange is connected to the side of the web away from the upper flange, and the lower flange, the web, and the upper flange are connected to form two insertion slots respectively, one insertion slot is located on the left side of the web and the other insertion slot is located on the right side of the web; The lower wing fixing edge extends outward from the lower wing edge and is used to fix and connect with the leveling keel.
7. The prefabricated ceramic tile wall panel for kitchens as described in claim 6, characterized in that, The lower wing fixed edge includes: The first recessed edge is connected to the lower flange; A first mounting edge is connected to a first recessed edge, and bolt holes are provided on the first mounting edge. A first fixed support is connected to the end of the first mounting edge that is away from the first recessed edge; The I-beam profile also includes: The lower wing support edge includes a second recessed edge and a second support edge. The second recessed edge is connected to the side of the lower wing flange away from the lower wing fixed edge, and the second support edge is connected to the side of the second recessed edge away from the lower wing flange.
8. The prefabricated ceramic tile wall panel for kitchens as described in claim 6, characterized in that, The snap-fit profile includes: Snap body; The first contact edge is disposed on the engaging body and is used to abut against the upper flange; The second bonding edge is disposed on the engaging body and is parallel to the first bonding edge. The second bonding edge abuts against the lower flange via the first abutting edge of the adhesive plate.
9. The prefabricated ceramic tile wall panel for kitchens as described in claim 8, characterized in that, The snap-fit profile also includes: The third bonding edge is disposed on the snap-fit body, the third bonding edge is perpendicular to the second bonding edge, and the third bonding edge is used to abut against the first bent edge of the adhesive plate; The fourth bonding edge is connected to the first bonding edge and the second bonding edge, and the fourth bonding edge is used to abut against the first edge of the adhesive board; The engaging step surface has one side connected to the third mating edge and the other side connected to the first mating edge, and the engaging step surface is parallel to the first mating edge.
10. The prefabricated ceramic tile wall panel for kitchens as described in claim 9, characterized in that, The first edge is set as an inclined edge, and the angle formed between the first edge and the first abutting edge of the adhesive plate is an obtuse angle.