Solid wood parquet floor with elastic splicing structure and splicing method of solid wood parquet floor

By using a flexible assembly structure and floor splicing and fixing components made of memory carbon steel, the formaldehyde pollution problem of solid wood parquet flooring is solved, achieving efficient and stable splicing, meeting personalized decoration needs, and extending service life.

CN121827520APending Publication Date: 2026-04-10HUZHOU HONGDAO SMART HOME TECHNOLOGY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
HUZHOU HONGDAO SMART HOME TECHNOLOGY CO LTD
Filing Date
2026-02-12
Publication Date
2026-04-10

AI Technical Summary

Technical Problem

Existing solid wood parquet flooring uses glue during the splicing process, which leads to the release of formaldehyde and pollutes the indoor environment. In addition, traditional splicing methods are inefficient and have poor stability.

Method used

It adopts a flexible assembly structure, using floor splicing and fixing components made of memory carbon steel and inverted protrusion-shaped docking grooves. The splicing panels are fixed by elastic clips or springs, avoiding the use of glue.

Benefits of technology

Eliminating formaldehyde release, improving splicing efficiency, enhancing floor stability, extending service life, meeting personalized decoration needs, and improving market competitiveness.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a solid wood parquet floor with an elastic splicing structure and a splicing method thereof.The solid wood parquet floor with the elastic splicing structure comprises a center plate, a plurality of edge splicing plates matched with the center plate are arranged at the edge of the center plate, and floor splicing and fixing assemblies are installed on the edge splicing plates; the floor splicing and fixing assembly is elastic, butt joint grooves are formed between the multiple edge splicing plates and the center plate, and the side section of each butt joint groove is in an inverted boss shape. Traditional glue bonding is abandoned, formaldehyde release is eradicated fundamentally, environmental protection and no pollution are achieved, and a healthy and safe indoor environment is created for residents; the splicing process is simple, convenient and efficient, floor splicing can be rapidly completed through the inverted-boss-shaped structure and the elastic clamping pieces, and time and labor are saved; the structure is stable and reliable, loosening and cracking are reduced, and the service life is prolonged; the design is flexible and diverse, the personalized requirements of different customers on parquet patterns can be met, and the decoration effect and the market competitiveness are improved.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of parquet floor, in particular to a solid wood parquet floor with elastic assembly structure and a parquet method thereof. BACKGROUND

[0002] As a floor type with strong decorative sense, parquet floor has become the mainstream of wood floor market by virtue of the wood veneer splicing of different colors and tree species, which presents specific or abstract patterns on the wood surface. It has changed the dull and cold impression of the floor in the past and bloomed in the field of interior decoration with a new posture by virtue of the changeable colors, exquisite craftsmanship and personalized and fashionable design.

[0003] With the economic development, social progress and the increasing demand of people for the quality of life, solid wood floor has been widely popularized in the field of house interior decoration due to its natural wood texture which can bring people comfortable and beautiful feelings. However, there are some problems to be solved in the actual application of the existing solid wood parquet floor. In the process of parquet of solid wood floor, most of them are bonded by glue. However, the glue usually contains formaldehyde, which is extremely harmful to human body. The inhaler may have many uncomfortable symptoms such as headache, dizziness, fatigue, nausea, vomiting, chest tightness, eye pain, sore throat and poor appetite, which seriously pollutes the indoor environment and poses a potential threat to the health of the occupants. SUMMARY

[0004] The purpose of the present application is to provide a solid wood parquet floor with elastic assembly structure to solve the problems in the background.

[0005] To achieve the above purpose, the present application provides the following technical scheme: a solid wood parquet floor with elastic assembly structure, comprising a center plate, a plurality of edge panels matched with the center plate are arranged at the edge of the center plate, a floor splicing and fixing assembly is installed on the plurality of edge panels, the floor splicing and fixing assembly has elasticity, a butt joint groove is arranged between the plurality of edge panels and the center plate, and the side section of the butt joint groove is in the shape of inverted boss.

[0006] Optionally, the butt joint groove comprises a first butt joint groove and a second butt joint groove, the first butt joint groove is arranged between a single edge panel and the center plate, the second butt joint groove is arranged between at least two edge panels and the center plate, and the second butt joint groove is circular.

[0007] Optionally, the material of the floor splicing and fixing assembly is memory carbon steel material.

[0008] Optionally, the floor splicing and fixing assembly adopts a threaded rotating structure, and a threaded guide groove is arranged on the groove wall of the butt joint groove.

[0009] Optionally, the floor splicing and fixing component is an elastic retaining ring, and the open end of the elastic retaining ring is provided with an operating hole.

[0010] Optionally, the edge panel is composed of panel one, panel two, panel three, and panel four, and panel one, panel two, panel three, and panel four are arranged around the center panel.

[0011] Optionally, each of the following components—panel one, panel two, panel three, and panel four—is composed of mating plate one and mating plate two.

[0012] Optionally, a first docking groove is provided on the side of the first docking plate close to the second docking plate, and a second docking groove is provided on the second docking plate at the position corresponding to the first docking groove.

[0013] The first docking plate is provided with a first connecting groove on its side, the second docking plate is provided with a second connecting groove on its side, and the second docking plate is also provided with a third connecting groove that works in conjunction with the first and second connecting grooves.

[0014] Optionally, the floor splicing and fixing component is an elastic retaining ring, and the open end of the elastic retaining ring is provided with an operating hole.

[0015] The present invention further provides a method for splicing solid wood parquet flooring, applicable to solid wood parquet flooring with a flexible splicing structure as described in any of the above optional examples, comprising the following steps: S1: Connect the first and second docking plates that make up the edge panel, so that the first docking groove on the first docking plate and the second docking groove on the second docking plate together form a docking groove with an inverted boss shape in the side section. S2: Insert the flexible floor splicing fixing component into the inverted boss-shaped mating groove to fix mating plate one and mating plate two, forming a complete edge splicing panel; S3: Multiple edge panels are arranged around the center plate, and the connecting grooves on the edge panels and the connecting grooves on the adjacent components together form an inverted boss-shaped combination groove. S4: Insert the floor splicing and fixing assembly into the combination groove to fix the edge panels to the center panel and adjacent edge panels, thus completing the floor assembly. Compared with the prior art, the beneficial effects of the present invention are as follows: 1. This invention provides a solid wood parquet floor with a flexible interlocking structure, which eliminates traditional glue bonding, thereby preventing formaldehyde release at the source, making it environmentally friendly and pollution-free, and creating a healthy and safe indoor environment for residents; the splicing process is simple and efficient, utilizing an inverted convex structure and flexible retaining rings to quickly complete the floor splicing, saving time and manpower; the structure is stable and reliable, effectively resisting stress during use, reducing loosening and cracking, and extending service life; moreover, the design is flexible and diverse, which can meet the personalized needs of different customers for parquet patterns, enhancing the decorative effect and market competitiveness.

[0016] 2. This invention changes the traditional method of bonding solid wood parquet flooring with glue. By setting up parquet board one, parquet board two, parquet board three and parquet board four around the central board, and using flooring splicing and fixing components to snap and fix adjacent parquet boards together to form a large floor, this splicing method avoids the use of glue, fundamentally eliminating indoor environmental pollution caused by formaldehyde release from glue, and providing residents with a healthier and safer indoor environment.

[0017] 3. In this invention, each set of panels in panel one, panel two, panel three, and panel four consists of a first mating plate and a second mating plate. During assembly, simply mat the first and second mating plates of each set together, forming an inverted boss shape with the first and second mating grooves. Then, use elastic retaining rings to secure the first and second mating grooves to the boss, easily achieving convenient mating of the first and second mating plates. Next, place the assembled panels around the edge of the center panel, forming an inverted boss with connecting groove one, connecting groove two, and connecting groove three. Then, use elastic retaining rings to secure the corresponding bosses, quickly completing the floor assembly and forming a parquet floor. The entire assembly process is simple and easy to operate, greatly improving construction efficiency and saving time and labor costs.

[0018] 4. In this invention, the inverted boss-shaped mating groove and connecting groove design, along with the snap-fit ​​fixing of the elastic retaining ring, make the connection between each panel and between the panel and the center panel tighter and more stable. This structure can effectively resist the stress caused by temperature changes, foot traffic, and other factors during the use of the floor, reducing the possibility of loosening or cracking at the joints, extending the service life of the floor, and ensuring the overall aesthetics and performance of the floor.

[0019] 5. In this invention, the flexible assembly structure provides more possibilities for the design of solid wood parquet flooring. Different colors and textures of wood can be flexibly selected for splicing according to different decorative needs and personal preferences, creating a rich variety of parquet patterns. This satisfies the personalized pursuit of interior decoration styles by different customers, enhancing the decorative effect and market competitiveness of solid wood parquet flooring. Attached Figure Description

[0020] Figure 1 This is a schematic diagram of the solid wood parquet floor with a flexible assembly structure according to the present invention; Figure 2 This is a structural schematic diagram of the solid wood parquet floor with a flexible assembly structure according to another perspective of the present invention. Figure 3 This is an exploded structural diagram of the solid wood parquet floor with elastic assembly structure of the present invention; Figure 4 This is a schematic diagram of panel four in the solid wood parquet flooring with a flexible assembly structure of the present invention; Figure 5 This is a schematic diagram of the joint plate one in the solid wood parquet floor with elastic assembly structure of the present invention; Figure 6 This is a schematic diagram of the first mating groove in the solid wood parquet floor with elastic assembly structure of the present invention; Figure 7 This is a schematic diagram of the floor splicing and fixing components in the solid wood parquet floor with elastic assembly structure of the present invention; Figure 8 This is a schematic diagram of another embodiment of the floor splicing and fixing component in the solid wood parquet floor with elastic assembly structure of the present invention.

[0021] In the picture: 1. Center panel; 2. Edge panels; 3. Floor splicing and fixing components; 201. Puzzle piece one; 202. Puzzle piece two; 203. Puzzle piece three; 204. Puzzle piece four; 205. Connecting plate one; 2051. Connecting plate two; 206. First docking groove; 2061. Second docking groove; 207. Connecting slot one; 2071. Connecting slot two; 2072. Connecting slot three; 301, elastic retaining ring; 3011, operating hole; 302. Elastic snap ring. Detailed Implementation

[0022] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.

[0023] Example 1 Please see Figures 1-7A type of solid wood parquet flooring with a flexible assembly structure includes a center board 1, and multiple edge panels 2 that match the center board 1 at its edges. Flooring splicing and fixing components 3 are installed on the multiple edge panels 2, and the flooring splicing and fixing components 3 are flexible. Each of the multiple edge panels 2 and the center board 1 has a mating groove, and the side profile of the mating groove is an inverted boss type. This structural design provides a basis for convenient splicing and stable fixing, and can effectively improve the assembly efficiency and stability of the parquet flooring.

[0024] To achieve flexible docking under different splicing requirements, in this embodiment: the docking groove includes a first docking groove 206 and a second docking groove 2061. The first docking groove 206 is opened between a single edge panel 2 and the center panel 1. The first docking groove (206) can be circular, rectangular, or other shapes. The second docking groove 2061 is opened between at least two edge panels 2 and the center panel 1. The second docking groove 2061 is circular or can be an equilateral triangle. This diverse docking groove design allows the flooring to select the appropriate docking method according to different splicing positions and requirements during the splicing process, enhancing the flexibility and adaptability of splicing and helping to meet the splicing requirements of various complex mosaic patterns.

[0025] To ensure that the floor splicing fixing component 3 has sufficient elasticity and durability, in this embodiment, the floor splicing fixing component 3 is made of memory carbon steel. Memory carbon steel has good elasticity and memory properties, and can quickly return to its original shape after being deformed by external force, thereby ensuring that the floor splicing fixing component 3 maintains a stable fixing effect during long-term use and effectively extending the service life of the parquet floor.

[0026] To achieve a tight fit between the floor splicing fixing component 3 and the mating groove, in this embodiment, the floor splicing fixing component 3 adopts a threaded rotation structure, and a corresponding threaded guide groove is provided on the groove wall of the mating groove. During installation, by rotating the floor splicing fixing component 3, it is gradually screwed into the mating groove along the threaded guide groove. This threaded connection method can provide a large connection force, ensuring that the floor splicing fixing component 3 is firmly fixed in the mating groove, greatly enhancing the stability of the floor splicing and preventing the floor from loosening or separating during use.

[0027] To facilitate the operation of the floor splicing and fixing component 3 by installers, in this embodiment: the floor splicing and fixing component 3 is an elastic retaining ring 301. The open end of the elastic retaining ring 301 is provided with an operating hole 3011. Installers can easily pick up and operate the elastic retaining ring 301 through the operating hole 3011 and accurately snap it into the mating groove. This design greatly improves the convenience and efficiency of installation and reduces the labor intensity and time cost during the installation process.

[0028] It should be noted that the two free ends of the elastic retaining ring 301 extend to the retaining ring body so that the retaining ring has a repeating part, which can also achieve the effect of snap-fit ​​fixation. In addition, the elastic retaining ring 301 can be circular, polygonal, or other shapes corresponding to the mating groove, which are not limited here.

[0029] To facilitate the production and assembly of the edge panel 2, in this embodiment, the edge panel 2 is composed of panel 1 201, panel 202, panel 3 203, and panel 4 204, which are arranged around the center panel 1. By dividing the edge panel 2 into multiple smaller panels for assembly, the production difficulty and cost of individual panels are reduced, and transportation and storage are made more convenient. It also facilitates the flexible combination and replacement of panels according to different mosaic requirements.

[0030] To further optimize the structure of the panels, in this embodiment: Panel 1 201, Panel 2 202, Panel 3 203 and Panel 4 204 are all composed of Butt Plate 1 205 and Butt Plate 2 2051. This split design makes the panels easier to process during production, allows for better control of the size and quality of each part, and when a part is damaged, the damaged part can be replaced individually without replacing the entire panel, thus reducing maintenance costs.

[0031] To achieve precise docking between docking plate 1 205 and docking plate 2051, in this embodiment: a first docking groove 206 is provided on the side of docking plate 1 205 near docking plate 2051, and a second docking groove 2061 is provided on docking plate 2051 at the position corresponding to the first docking groove 206. During the docking process, the first docking groove 206 and the second docking groove 2061 fit together to form an inverted boss-shaped structure. This structure can provide a large contact area and friction, ensuring that the connection between docking plate 1 205 and docking plate 2051 is firm and reliable and not easy to loosen.

[0032] To achieve a stable connection between adjacent panels and between a panel and the center panel 1, in this embodiment: a connecting groove 207 is provided on the side of the first mating plate 205, a connecting groove 2071 is provided on the side of the second mating plate 2051, and a connecting groove 3072 is also provided on the second mating plate 2051 to cooperate with the connecting grooves 207 and 2071. When placing the panels, the connecting grooves 207, 2071, and 3072 cooperate to form an inverted boss structure. The elastic retaining ring 301 is then used to secure the panels to the corresponding bosses through the operating hole 3011, thereby achieving a firm connection between adjacent panels and between the panels and the center panel 1. This connection method effectively disperses the stress experienced by the floor during use and improves the overall structural stability of the floor.

[0033] Example 2 Please see Figures 1-8 A solid wood parquet floor with an elastic assembly structure is described in this embodiment, which differs from Embodiment 1 in that the floor splicing and fixing component 3 includes an elastic spring clip 302. In actual use, the splicing plates can be spliced ​​by the elastic spring clip 302, which is similar to the elastic ring clip 301, thereby increasing the diversity and convenience of splicing the splicing plates.

[0034] Through the above structural design, the flexible assembly structure of this solid wood parquet flooring offers numerous advantages. The diverse interlocking groove design enhances the flexibility and adaptability of the splicing process; the memory carbon steel flooring splicing fixing components 3 ensure stability and durability; the threaded rotating structure and the design of the elastic retaining rings 301 and elastic springs 302 improve the convenience and efficiency of installation; the separate splicing and interlocking plate structure reduces production and maintenance costs; and the inverted boss-type interlocking groove and connecting groove structure ensures the firmness of the flooring splicing and the overall structural stability. Furthermore, this splicing method avoids pollution caused by the use of glue, meeting environmental protection requirements.

[0035] Working principle: In use, firstly, the mating plates 1 205 and 2051 of each set of panels, namely panel 1 201, panel 2 202, panel 3 203, and panel 4 204, are mated together. During the mating process, the first mating groove 206 on mating plate 1 205 and the second mating groove 2061 on mating plate 2 2051 fit together to form an inverted boss-shaped structure. Then, the installer uses the operating hole 3011 to clamp the elastic retaining ring 301 onto the boss formed by the first mating groove 206 and the second mating groove 2061. By utilizing the elasticity of the elastic retaining ring 301 and the limiting effect of the inverted boss-shaped structure, the mating plates 1 205 and 2051 can be easily mated and fixed.

[0036] Next, the assembled panels 1 (201), 2 (202), 3 (203), and 4 (204) are placed around the edge of the center plate 1. During placement, the connecting grooves 1 (207) on the side of the mating plate 1 (205), 2 (2071) on the side of the mating plate 2 (2051), and 3 (2072) on the mating plate 2 (2051) cooperate to form an inverted boss structure. The elastic retaining rings 301 are then used to lock onto the corresponding bosses through the operating holes 3011. Through the fixing effect of the elastic retaining rings 301 or elastic retaining springs 302 and the limiting effect of the inverted boss structure, a firm connection is achieved between adjacent panels and between the panels and the center plate 1.

[0037] By following the steps above, the various components can be quickly and easily assembled into a complete parquet floor. The entire assembly process does not require the use of glue, thus avoiding glue pollution, while ensuring the structural stability and decorative properties of the floor.

[0038] Although embodiments of the invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A solid wood parquet floor with a flexible interlocking structure, comprising a center board (1), characterized in that: The center plate (1) has multiple edge panels (2) that match the center plate (1) at its edge. Floor splicing and fixing components (3) are installed on the multiple edge panels (2). The floor splicing and fixing components (3) are elastic. A docking groove is provided between the multiple edge panels (2) and the center plate (1). The side profile of the docking groove is an inverted boss type.

2. The solid wood parquet flooring with a flexible assembly structure according to claim 1, characterized in that: The docking groove includes a first docking groove (206) and a second docking groove (2061). The first docking groove (206) is formed between a single edge panel (2) and the center plate (1). The second docking groove (2061) is formed between at least two edge panels (2) and the center plate (1). The second docking groove (2061) is circular.

3. The solid wood parquet flooring with a flexible assembly structure according to claim 1, characterized in that: The floor splicing and fixing component (3) is made of memory carbon steel.

4. The solid wood parquet flooring with a flexible assembly structure according to claim 1, characterized in that: The floor splicing and fixing component (3) adopts a threaded rotation structure, and a corresponding threaded guide groove is provided on the groove wall of the docking groove.

5. The solid wood parquet flooring with a flexible assembly structure according to claim 1, characterized in that: The floor splicing and fixing component (3) is an elastic retaining ring (301), and the open end of the elastic retaining ring (301) is provided with an operating hole (3011).

6. The solid wood parquet flooring with a flexible interlocking structure according to any one of claims 1-5, characterized in that: The edge panel (2) is composed of panel one (201), panel two (202), panel three (203) and panel four (204), and the panel one (201), panel two (202), panel three (203) and panel four (204) are arranged around the center panel (1).

7. The solid wood parquet flooring with a flexible assembly structure according to claim 6, characterized in that: The first panel (201), the second panel (202), the third panel (203), and the fourth panel (204) are all composed of the first mating panel (205) and the second mating panel (2051).

8. The solid wood parquet flooring with a flexible assembly structure according to claim 7, characterized in that: The first docking plate (205) has a first docking groove (206) on the side near the second docking plate (2051), and the second docking plate (2051) has a second docking groove (2061) at the position corresponding to the first docking groove (206). The first docking plate (205) has a first connecting groove (207) on its side, and the second docking plate (2051) has a second connecting groove (2071) on its side. The second docking plate (2051) also has a third connecting groove (2072) that works in conjunction with the first connecting groove (207) and the second connecting groove (2071).

9. The solid wood parquet flooring with a flexible assembly structure according to claim 8, characterized in that: The floor splicing and fixing component (3) is an elastic retaining ring (301), and the open end of the elastic retaining ring (301) is provided with an operating hole (3011).

10. A method for splicing solid wood parquet flooring, applied to solid wood parquet flooring with an elastic splicing structure as described in any one of claims 1-9, characterized in that, Includes the following steps: S1: Connect the first docking plate (205) and the second docking plate (2051) that constitute the edge panel (2) so that the first docking groove (206) on the first docking plate (205) and the second docking groove (2061) on the second docking plate (2051) together form a docking groove with an inverted boss shape in the side section. S2: Insert the flexible floor splicing fixing component (3) into the inverted boss-shaped docking groove to fix docking plate one (205) and docking plate two (2051) to form a complete edge splicing plate (2). S3: Multiple edge panels (2) are arranged around the center plate (1), and the connecting grooves on the edge panels (2) and the connecting grooves on the adjacent components together form an inverted boss-shaped combination groove. S4: Insert the floor splicing fixing component (3) into the combination groove to fix the edge panel (2) to the center plate (1) and the adjacent edge panel (2) to complete the floor assembly.