Floor parquet positioner for building decoration

By combining a limiting plate, nano-micro-adhesive, protrusions, and slots with magnetic positioning, the problem of inaccurate splicing and cumbersome construction in traditional flooring mosaic processes is solved, achieving a fast, stable, and beautiful mosaic effect.

CN223813893UActive Publication Date: 2026-01-20ANHUI FUDI MINGMEN BUILDING DECORATION ENGINEERING CO LTD
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Patent Information

Application Number
CN202520205303.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-10
Publication Date
2026-01-20
Estimated Expiration
2035-02-10

AI Technical Summary

Technical Problem

Traditional flooring mosaics rely on manual measurement and adjustment, resulting in inaccurate and uneven mosaic effects. The construction process is cumbersome, time-consuming, and costly.

Method used

The design incorporates a combination of limiting plates, nano-micro adhesive, protrusions, and slots, along with magnetic positioning, simplifying the installation process and improving splicing accuracy and stability.

Benefits of technology

It enables fast and precise installation of floor mosaics, reduces errors and adjustment needs, and improves the stability and aesthetics of the mosaics. It is suitable for various flooring materials.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of building decoration, in particular to a floor parquet positioner for building decoration. According to the technical scheme, the floor parquet positioner for building decoration comprises a limiting plate, a floor, a positioning groove and nanometer micro suction glue, the limiting plate is installed on the floor, a protruding block and a clamping groove are arranged on the limiting plate, the limiting plate is limited and spliced through the protruding block and the clamping groove, and the floor is limited through the limiting plate during parquet. The floor splicing device not only has an accurate positioning mechanism and simple and convenient installation design, but also has the advantages of stability, durability, magnetic auxiliary positioning, flexible applicability and the like, various requirements of users in the floor decoration process can be met, and the floor splicing efficiency and quality are improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to building decoration technical field, concretely relates to a floor parquet positioner of building decoration. BACKGROUND

[0002] Building decoration refers to the process of beautifying, function transforming and decorating the inside and outside of building structure. It involves the design, construction and decoration of the interior and exterior walls, floor, ceiling, doors and windows, furniture, lighting, ornaments and other aspects. The purpose of building decoration is to improve the aesthetics, comfort, practicality and functionality of buildings, making them more suitable for people's living, working, life and entertainment needs.

[0003] Floor is a flat structure used for walking inside the building, usually located on the ground of the building. The selection and paving of floor play a crucial role in the overall decoration effect, affecting the comfort, aesthetics and practicality of indoor space. Floor parquet is a way of decorating floor, by combining different colored, textured, shaped floor materials together, creating a unique pattern or design effect. Floor parquet can increase the aesthetics and individuality of indoor space, injecting unique charm and style into the room. Traditional floor parquet often relies on manual measurement and adjustment, which is prone to errors, resulting in inaccurate and uneven parquet effect. Moreover, traditional floor parquet requires frequent adjustment of floor position and direction during construction, making the construction process more tedious, requiring more time and labor cost. SUMMARY

[0004] The utility model provides a floor parquet positioner of building decoration, solve above described technical problem.

[0005] The utility model solves the above technical problem, the scheme is as follows:

[0006] A floor parquet positioner of building decoration, including spacing plate, floor, positioning slot and nanometer micro glue, the spacing plate is installed on the floor, the spacing plate is equipped with lug and slot, the spacing plate is limited and assembled through lug and slot, the floor is limited through spacing plate when parquet.

[0007] On the basis of the above technical scheme, the utility model can also be improved as follows.

[0008] Further, the back of the spacing plate is provided with nanometer micro glue, and the spacing plate is fixed on the floor by nanometer micro glue.

[0009] The beneficial effects of the above further scheme are:

[0010] Easy installation: The nano micro-adhesive has a strong adsorption force, which can firmly fix the limiting plate on the floor without the need for additional tools or professional skills. This simplifies the installation process during the floor parquet process, making installation easier and faster.

[0011] Non-damaging floor surface: The nano micro-adhesive does not cause any damage or marks to the floor surface when pasted on the back of the floor, as it does not require the use of glue or other adhesives. This maintains the integrity and aesthetics of the floor surface, leaving no adverse effects.

[0012] Stable fixing effect: The nano micro-adhesive can uniformly adhere to the surface of the floor and the limiting plate, providing strong adsorption force, so it can ensure that the limiting plate is firmly fixed on the floor during the splicing process. This stable fixing effect helps to avoid the problem of floor movement or loosening during use.

[0013] Wide applicability: The nano micro-adhesive is suitable for various types of floor materials, including wood floors, ceramic tiles, and floor tiles, so this installation method has wide applicability and can be used for floor parquet projects of different materials and styles.

[0014] Reusable: The nano micro-adhesive has the property of being reusable, if it is necessary to adjust or replace the position of the limiting plate, it can be taken off from the floor, cleaned and reused without damaging the floor or the limiting plate.

[0015] Further, the limiting plate is located at the corner of the floor.

[0016] The beneficial effects of the above further scheme are:

[0017] Better alignment: The corner is one of the key positions for connecting the floor, placing the limiting plate here can ensure that the alignment of the spliced floor at the edge is more accurate. This helps to avoid misalignment or unevenness during the splicing process, improving the accuracy and aesthetics of the splicing.

[0018] Increased stability: The corner of the floor is one of the most stable places for connecting the floor, placing the limiting plate here can make the splicing part more stable. This helps to prevent the floor from loosening or moving due to unstable splicing during use, improving the stability and durability of the floor.

[0019] Concealment: Placing the limiting plate at the corner of the floor can better hide its existence and not affect the overall aesthetics of the floor. Compared with placing the limiting plate in the middle of the floor, the placement at the corner is more concealed, which can better maintain the cleanliness and aesthetics of the floor surface.

[0020] Simplified splicing process: As the corners of the floor are relatively easy to identify and locate, placing the limiting plate here can simplify the splicing process. The limiting plate placed at the corner can serve as the starting point for splicing, guiding the subsequent splicing work, making the splicing process more smooth and efficient.

[0021] Further, the protruding block is arc-shaped or polygonal.

[0022] The beneficial effects of the above further scheme are:

[0023] Better docking: The arc-shaped or polygonal protruding block is matched with the shape of the corresponding card slot, so that they can be more closely docked together during splicing. Such design can ensure the accuracy and stability of the floor during splicing, reducing the need for error and adjustment during splicing.

[0024] Enhance the aesthetic appearance: The arc-shaped or polygonal protruding block can make the joint line of the inlaid floor more smooth and natural after splicing, without the feeling of abruptness or discordance. This helps to enhance the aesthetic appearance and overall decoration effect of the inlaid floor.

[0025] Increase the connection area: The arc-shaped or polygonal protruding block usually has a larger connection area, compared with the simple right-angled protruding block, which can provide more contact surface and increase the connection tightness between the floors. This can enhance the stability and durability of the spliced floor, reducing the possibility of floor loosening after splicing.

[0026] Enhance the splicing strength: The arc-shaped or polygonal protruding block design can make the stress more evenly distributed during splicing, reducing the possibility of fracture or damage caused by single-point stress. This can enhance the strength of the spliced part and prolong the service life of the floor.

[0027] Wider adaptability: The arc-shaped or polygonal protruding block design is more flexible and suitable for different shapes and sizes of floor inlay projects. They can meet various splicing needs and provide more selection space.

[0028] Further, the shape and size of the card slot are matched with the protruding block.

[0029] The beneficial effects of the above further scheme are:

[0030] Precise docking: The shape and size of the card slot are matched with the protruding block, which can ensure that the protruding block can be completely embedded in the card slot during splicing, achieving more precise docking. Such precise docking can ensure the accuracy and stability of the floor splicing, avoiding misalignment or gap during splicing.

[0031] Enhanced Aesthetics: The design of the card slot and protrusion fitting can make the surface of the spliced floor more flat and uniform, without protruding or irregular parts. This helps to enhance the aesthetics and overall decoration effect of the floor mosaic, making the spliced part look more neat and delicate.

[0032] Increased Stability: The design of the card slot and protrusion fitting can increase the contact area of the spliced part, improving the connection tightness between the floors. This can enhance the stability and durability of the floor splicing, reducing the possibility of floor loosening or falling after splicing.

[0033] Reduced Movement and Adjustment: Due to the fitting of the card slot and protrusion, the floor can be better positioned and fixed during splicing, reducing the movement or additional adjustment of the floor after splicing. This can simplify the splicing process and improve construction efficiency.

[0034] Wider Adaptability: The design of the card slot and protrusion fitting is usually more flexible, suitable for different shapes and sizes of floor mosaic projects. This design can meet various splicing needs and provide more selection space.

[0035] Furthermore, the end face of the limiting plate is embedded with a second magnet on one side of the protrusion.

[0036] The beneficial effects of the above further scheme are:

[0037] Enhanced Positioning Effect: The embedding of the second magnet can enhance the adsorption force between the limiting plate and the protrusion, further strengthening the positioning effect of splicing. Through the action of magnetic force, the connection between the limiting plate and the protrusion is more firm, reducing the possibility of movement or loosening during splicing.

[0038] Improved Splicing Stability: The embedding of the second magnet makes the connection between the limiting plate and the protrusion more tight, increasing the stability of splicing. This helps to prevent the floor from loosening or deforming due to poor splicing during use, improving the durability and service life of the floor.

[0039] Simplified Splicing Process: Due to the action of the second magnet, the butt joint between the limiting plate and the protrusion is more simple and fast, without the need for additional fixing means or tools. This simplifies the splicing process, improves construction efficiency, and reduces the complexity and uncertainty of the construction process.

[0040] Increased Splicing Accuracy: The embedding of the second magnet can ensure the accurate alignment between the limiting plate and the protrusion, improving the accuracy of splicing. This helps to avoid deviations or misalignments during splicing, ensuring the flatness and overall aesthetics of the spliced part.

[0041] Wider adaptability: The design of the second magnet is generally suitable for various floor materials and parquet projects, with wider adaptability. Such a design can meet the needs of different projects and provide more selection space.

[0042] Further, the end face of the limiting plate is provided with a positioning groove on one side of the clamping groove.

[0043] The beneficial effects of the above further scheme are:

[0044] Precise positioning: The positioning groove provides an additional precise positioning point for splicing, so that the floor can be more accurately aligned during splicing. Through the positioning groove, the position and angle of the splicing part can be ensured to meet the expectations, reducing the error and adjustment demand in the splicing process.

[0045] Enhanced stability: The presence of the positioning groove makes the connection of the splicing part more stable. The positioning groove and the clamping groove complement each other to provide additional support and fixation, preventing the floor from moving or loosening during use, improving the stability and durability of the floor splicing.

[0046] Simplified splicing process: The positioning groove simplifies the splicing process, making splicing more smooth and efficient. Through the positioning groove, the floor can be easily aligned to the correct position, reducing trial and error and adjustment during splicing, improving construction efficiency.

[0047] Reduced damage risk: The presence of the positioning groove helps to avoid damage to the surface of the floor during splicing. Since the floor can be more accurately positioned, friction or collision on the surface of the floor can be reduced, reducing the risk of damage and protecting the quality and aesthetics of the floor.

[0048] Wider adaptability: The design of the positioning groove is generally suitable for various floor materials and parquet projects, with wider adaptability. Such a design can meet the needs of different projects and provide more selection space.

[0049] Further, the positioning groove is inlaid with a first magnet, and the magnetic poles of the first magnet and the second magnet are opposite.

[0050] The beneficial effects of the above further scheme are:

[0051] Enhanced positioning effect: The magnetic poles of the first magnet and the second magnet are opposite, generating an attractive force, thereby enhancing the positioning effect of the floor during splicing. Such a design can ensure that the floor is more accurately aligned during splicing, reducing the deviation and adjustment demand in the splicing process.

[0052] Improved stability: The placement of the first magnet enhances the stability of the floor joint. Through the action of magnetic force, the connection between the floors is more firm and reliable, and is not easy to loosen or move, improving the stability and durability of the floor joint.

[0053] Simplified assembly process: The presence of the first magnet simplifies the assembly process, making assembly more smooth and efficient. The action of magnetic force makes it easier to position and fix the floor, reducing trial and error and adjustment during assembly, improving construction efficiency.

[0054] Reducing joint looseness: The mutual attraction of the first magnet and the second magnet can reduce the looseness that may occur after the floor is assembled. This can maintain the stability of the joint and prevent the floor from loosening or deforming during use, prolonging the service life of the floor.

[0055] Improved adaptability: The design of the first magnet is generally suitable for various floor materials and parquet projects, with wide applicability. This design can meet the needs of different projects and provide more options.

[0056] The beneficial effects of the utility model are:

[0057] Accurate positioning mechanism: The design uses a convex block and a clamping groove, which can ensure accurate alignment of the floor during assembly. The size and shape of the convex block and the clamping groove match each other, ensuring that the connection between the floors is tight and accurate, reducing the need for error and adjustment during assembly.

[0058] Simple installation design: The limiting plate installed on the floor is fixed on the floor by nano micro-suction glue. This design simplifies the installation process and does not require the use of complex tools or technology to easily complete the installation of the floor. At the same time, the characteristics of nano micro-suction glue ensure the tight combination between the limiting plate and the floor, improving the stability after installation.

[0059] Stability and durability: Through the convex block and clamping groove structure on the limiting plate and the fixation of nano micro-suction glue, the floor has high stability and durability after assembly. This design can effectively prevent the floor from moving, deforming or damaging during use, prolonging the service life of the floor.

[0060] Magnetic force assisted positioning: The design of the limiting plate also considers the application of magnetic force, which further enhances the positioning effect of the floor through the cooperation of the first magnet and the second magnet. The action of magnetic force makes the floor more stable and reliable during assembly, and can cope with various complex parquet scenes to ensure the perfection of the assembly result.

[0061] Flexible applicability: the magnets and positioning grooves in the design make the limiting plate have certain flexibility, which is suitable for floor parquet of different shapes and sizes. This design takes into account the diversified needs of users, making the floor splicing process more flexible and convenient.

[0062] The above description is only a summary of the technical scheme of the present application. In order to more clearly understand the technical means of the present application, and can be implemented according to the content of the specification, the following will be described in detail with the preferred embodiments of the present application and the accompanying drawings. The specific implementation of the present application is given in detail by the following examples and their accompanying drawings. BRIEF DESCRIPTION OF DRAWINGS

[0063] The accompanying drawings described herein are used to provide further understanding of the present application, and form a part of the present application. The schematic embodiments of the present application and their descriptions are used to explain the present application, and do not constitute undue limitation on the present application.

[0064] In the drawings:

[0065] Fig. 1 It is a front view appearance schematic diagram of the present application;

[0066] Fig. 2 It is an axial side appearance schematic diagram of the limiting plate of the present application;

[0067] Fig. 3 It is a rear view appearance schematic diagram of the limiting plate of the present application;

[0068] Fig. 4 It is a rear view axial side appearance schematic diagram of the limiting plate of the present application.

[0069] In the drawings, the component list represented by each number is as follows:

[0070] 1, protruding block; 2, limiting plate; 3, clamping groove; 4, floor; 5, positioning groove; 6, first magnet; 7, second magnet; 8, nano micro glue absorption. DETAILED DESCRIPTION

[0071] The technical scheme in the embodiments of the present application will be described in detail below, obviously, the described embodiments are only part of the embodiments of the present application, not all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor belong to the scope of protection of the present application.

[0072] Please refer to Figs. 1 to 4 The embodiments provided by the present application are shown in the drawings, and the embodiments provided by the present application are shown in the drawings.

[0073] Embodiment one

[0074] The floor tile positioning device for building decoration includes a limiting plate 2, a floor 4, a positioning groove 5, and a nano micro adhesive 8. The limiting plate 2 is installed on the floor 4, and the limiting plate 2 is located at the corner of the floor 4, which is one of the key positions for connecting the floor 4. Placing the limiting plate 2 here can ensure that the alignment of the spliced floor 4 at the edge is more accurate. This helps to avoid misalignment or unevenness of the floor 4 during splicing, improving the accuracy and aesthetics of splicing. The corner of the floor 4 is one of the most stable places for connecting the floor 4. By placing the limiting plate 2 here, the splicing part can be made more secure. This helps to prevent the floor 4 from loosening or moving due to insecure splicing during use, improving the stability and durability of the floor 4. Placing the limiting plate 2 at the corner of the floor 4 can better hide its existence and not affect the overall aesthetics of the floor 4. Compared to placing the limiting plate 2 in the middle of the floor 4, the placement at the corner is more concealed and can better maintain the cleanliness and aesthetics of the floor 4 surface. Since the corner of the floor 4 is relatively easy to identify and locate, placing the limiting plate 2 here can simplify the splicing process. The limiting plate 2 placed at the corner can serve as the starting point for splicing, guiding the subsequent splicing work, making the splicing process smoother and more efficient. The back of the limiting plate 2 is provided with a nano micro adhesive 8, and the limiting plate 2 is fixed to the floor 4 through the nano micro adhesive 8. The nano micro adhesive 8 has extremely strong adsorption force, which can firmly fix the limiting plate 2 to the floor 4 without the need for additional tools or professional skills. This simplifies the installation steps during the floor 4 tiling process, making installation easier and faster. The nano micro adhesive 8 does not cause any damage or marks on the surface of the floor 4 when it is pasted on the back of the floor 4, as it does not require the use of glue or other adhesives. This maintains the integrity and aesthetics of the floor 4 surface and does not leave any undesirable effects. The nano micro adhesive 8 can be evenly attached to the surface of the floor 4 and the limiting plate 2 and provide strong adsorption force, so it can ensure that the limiting plate 2 is firmly fixed to the floor 4 during splicing. This stable fixing effect helps to avoid the problem of movement or loosening of the floor 4 during use. The nano micro adhesive 8 is suitable for various types of floor 4 materials, including wooden floor 4, ceramic tiles, and floor 4 tiles, so this installation method has wide applicability and can be used for floor 4 tiling projects of different materials and styles. The nano micro adhesive 8 has reusable characteristics. If it is necessary to adjust or replace the position of the limiting plate 2, it can be removed from the floor 4, cleaned, and reused without damaging the floor 4 or the limiting plate 2. The limiting plate 2 is provided with a protrusion 1 and a clamping groove 3. The protrusion 1 is arc-shaped or polygonal, and the arc-shaped or polygonal protrusion 1 is matched with the corresponding clamping groove 3 in shape, so that they can be more tightly butted together during splicing. This design can ensure the accuracy and stability of the floor 4 during splicing, reducing the need for error and adjustment during splicing.The arc-shaped or polygonal protrusions 1 can make the joint lines of the parqueted floor 4 more smooth and natural, without appearing abrupt or discordant. This helps to improve the aesthetics and overall decoration effect of the parqueted floor 4. The arc-shaped or polygonal protrusions 1 usually have larger connecting areas, providing more contact surfaces and increasing the connection tightness between the floors 4 compared to simple right-angled protrusions 1. This can enhance the stability and durability of the parqueted floor 4, reducing the possibility of loosening after parquetting. The arc-shaped or polygonal protrusions 1 design can make the stress more evenly distributed during parquetting, reducing the possibility of breakage or damage caused by single-point stress. This can enhance the strength of the parqueted part and prolong the service life of the floor 4. The arc-shaped or polygonal protrusions 1 design is more flexible and suitable for parquet projects with different shapes and sizes of floors 4. They can meet various parquet needs and provide more selection space. The shape and size of the slot 3 are adapted to the protrusions 1, ensuring that the protrusions 1 can be completely embedded in the slot 3 during parquetting, achieving more precise docking. This precise docking can ensure the accuracy and stability of the parqueted floor 4, avoiding misalignment or gaps during parquetting. The design of the slot 3 adapted to the protrusions 1 can make the surface of the parqueted floor 4 more flat and uniform, without protruding or irregular parts. This helps to improve the aesthetics and overall decoration effect of the parqueted floor 4, making the parqueted part look more neat and delicate. The design of the slot 3 adapted to the protrusions 1 can increase the contact area of the parqueted part, improving the connection tightness between the floors 4. This can enhance the stability and durability of the parqueted floor 4, reducing the possibility of loosening or falling off after parquetting. Due to the adaptation of the slot 3 to the protrusions 1, the floor 4 can be better positioned and fixed during parquetting, reducing the movement or the need for additional adjustment of the parqueted floor 4. This can simplify the parquetting process and improve construction efficiency. The design of the slot 3 adapted to the protrusions 1 is usually more flexible and suitable for parquet projects with different shapes and sizes of floors 4. This design can meet various parquet needs and provide more selection space. The limiting plate 2 is limited and assembled by the protrusions 1 and the slots 3. The end surface of the limiting plate 2 is embedded with a second magnet 7 on one side of the protrusion 1. The embedding of the second magnet 7 can enhance the adsorption force between the limiting plate 2 and the protrusion 1, further strengthening the positioning effect of the parquet. Through the action of the magnetic force, the connection between the limiting plate 2 and the protrusion 1 is more firm, reducing the possibility of movement or loosening during parquetting. The embedding of the second magnet 7 makes the connection between the limiting plate 2 and the protrusion 1 more tight, increasing the stability of the parquet. This helps to prevent the parqueted floor 4 from loosening or deforming during use due to poor parquet, improving the durability and service life of the floor 4. Due to the action of the second magnet 7, the docking between the limiting plate 2 and the protrusion 1 is more simple and fast, without the need for additional fixing means or tools.This simplifies the splicing process, improves construction efficiency, and reduces complexity and uncertainty during construction. The embedding of the second magnet 7 ensures accurate alignment between the limiting plate 2 and the protrusion 1, improving the accuracy of splicing. This helps to avoid deviations or misalignments during splicing, ensuring the flatness and overall aesthetics of the spliced part. The design of the second magnet 7 is generally applicable to various floor 4 materials and parquet projects, with wide applicability. Such a design can meet the needs of different projects, providing more selection space. The end face of the limiting plate 2 is located on one side of the clamping groove 3 and is provided with a positioning groove 5. The positioning groove 5 provides an additional precise positioning point for splicing, allowing the floor 4 to be more accurately aligned during splicing. Through the positioning groove 5, the position and angle of the spliced part can be ensured to meet expectations, reducing errors and the need for adjustments during splicing. The presence of the positioning groove 5 makes the connection of the spliced part more stable and secure. The positioning groove 5 and the clamping groove 3 complement each other, providing additional support and fixing effect, preventing the floor 4 from moving or loosening during use, improving the stability and durability of the spliced floor 4. The positioning groove 5 simplifies the splicing process, making splicing more smooth and efficient. Through the positioning groove 5, the floor 4 can be easily aligned to the correct position, reducing trial and error and adjustments during splicing, improving construction efficiency. The presence of the positioning groove 5 helps to avoid damaging the surface of the floor 4 during splicing. Since the floor 4 can be more accurately positioned, friction or collision on the surface of the floor 4 can be reduced, reducing the risk of damage and protecting the quality and aesthetics of the floor 4. The design of the positioning groove 5 is generally applicable to various floor 4 materials and parquet projects, with wide applicability. Such a design can meet the needs of different projects, providing more selection space. The positioning groove 5 is embedded with a first magnet 6, and the magnetic poles of the first magnet 6 and the second magnet 7 are opposite, allowing the limiting plate 2 to be further limited and spliced through the first magnet 6 and the second magnet 7. The magnetic poles of the first magnet 6 and the second magnet 7 are opposite, generating an attractive force, thereby enhancing the positioning effect of the spliced floor 4. Such a design can ensure that the floor 4 is more accurately aligned during splicing, reducing deviations and the need for adjustments during splicing. The presence of the first magnet 6 enhances the stability of the connection of the spliced part of the floor 4. Through the action of the magnetic force, the connection between the floor 4 is more secure and reliable, and is not prone to loosening or moving, improving the stability and durability of the spliced floor 4. The presence of the first magnet 6 simplifies the splicing process, making splicing more smooth and efficient. The magnetic force allows the floor 4 to be more easily positioned and fixed, reducing trial and error and adjustments during splicing, improving construction efficiency. The attractive action of the first magnet 6 and the second magnet 7 can reduce the loosening phenomenon that may occur after the floor 4 is spliced. This can maintain the stability of the spliced part, prevent the floor 4 from loosening or deforming during use, and prolong the service life of the floor 4.The design of the first magnet 6 is generally applicable to various floor 4 materials and parquet projects, and has wide applicability. This design can meet the needs of different projects and provide more options for the floor 4 to be positioned by the limiting plate 2 when parqueted.

[0075] A floor parquet positioner for building decoration based on example 1 in use:

[0076] During the process of parqueting the floor 4, the end face of the limiting plate 2 is inlaid with the second magnet 7, and the positioning groove 5 is inlaid with the first magnet 6, and the magnetic poles of the two are opposite. When parqueting the floor 4, the magnetic force between the first magnet 6 and the second magnet 7 will produce an attractive force, tightly adsorbing the limiting plate 2 and the floor 4 together.

[0077] The end face of the limiting plate 2 is located on one side of the protrusion 1, and the positioning groove 5 is located on one side of the clamping groove 3. When parqueting the floor 4, the protrusion 1 and the clamping groove 3 cooperate with each other, and the limiting plate 2 and the floor 4 form accurate positioning. At the same time, the magnetic force of the first magnet 6 and the second magnet 7 also plays an additional positioning effect, ensuring the accuracy and stability of the parquet.

[0078] The magnetic force of the first magnet 6 and the second magnet 7 not only provides a positioning effect, but also enhances the connection stability of the parqueted part. Through the action of magnetic force, the connection between the limiting plate 2 and the floor 4 is more firm and reliable, and is not easy to loosen or move, improving the stability and durability of the parqueted floor 4.

[0079] Through the combination of magnetic positioning and accurate positioning, the process of parqueting the floor 4 is simplified. The construction personnel only need to parquet the floor 4 according to the corresponding relationship of the protrusion 1 and the clamping groove 3, and the magnetic force will automatically adsorb and ensure the accurate positioning and stable fixation of the floor 4, reducing the complexity and uncertainty of parqueting.

[0080] The above is only a preferred embodiment of the present application, and does not limit the present application in any form; any ordinary technical personnel in this industry can smoothly implement the present application according to the drawings shown in the specification and the above description; however, any equivalent changes, modifications and evolution made by those skilled in the art within the scope of the technical scheme of the present application, using the technical content disclosed above, are equivalent embodiments of the present application; at the same time, any equivalent changes, modifications and evolution of the above embodiments according to the essential technology of the present application are still within the protection scope of the technical scheme of the present application.

Claims

1. A floor parquet locator for building finishing, characterized by: The utility model provides a floor tile limiting plate, including limiting plate (2), floor (4), locating groove (5) and nanometer micro -suction glue (8), the floor (4) is installed with limiting plate (2), the limiting plate (2) is equipped with lug (1) and clamping groove (3), limiting plate (2) is assembled in position through lug (1) and clamping groove (3), the floor (4) is limited when parquet through limiting plate (2).

2. A floor parquet locator for building finishing according to claim 1, characterized in that: The back of the limiting plate (2) is provided with nanometer micro -suction glue (8), and the limiting plate (2) is fixed on the floor (4) by the nanometer micro -suction glue (8).

3. The floor parquet locator for building finishing according to claim 1, characterized in that: The limiting plate (2) is located at the corner of the floor (4).

4. The floor parquet locator for building finishing according to claim 1, characterized in that: The lug (1) is arc-shaped or polygonal.

5. The floor parquet locator for building finishing according to claim 1, characterized in that: The shape and size of the clamping groove (3) are adapted to the lug (1).

6. The floor parquet locator for building finishing according to claim 1, characterized in that: The end face of the limiting plate (2) is inlaid with a second magnet (7) on one side of the lug (1).

7. The floor parquet locator for building finishing according to claim 1, characterized in that: The end face of the limiting plate (2) is provided with a locating groove (5) on one side of the clamping groove (3).

8. A floor parquet register according to claim 7, characterized in that: The locating groove (5) is inlaid with a first magnet (6), and the magnetic poles of the first magnet (6) and the second magnet (7) are opposite.