A high-stability bamboo floor connection structure and connection method

By designing the automatically unfolded roof and column support structure, the problem of insufficient support when bamboo floors dock in the length direction is solved, the stability and durability of the floor are improved, and the storage of supporting components is realized when not in use, meeting the needs of functional and space utilization.

CN116378353BActive Publication Date: 2025-08-29JIANGXI LEHUILIN NEW MATERIAL TECH CO LTD
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Patent Information

Application Number
CN202310537977.6
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-05-12
Publication Date
2025-08-29
Estimated Expiration
2043-05-12

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Abstract

The present application provides a high-stability bamboo floor connection structure and a connection method thereof, belonging to the technical field of bamboo flooring, and aims to solve the problem that existing bamboo flooring cannot automatically dock two adjacent supporting components when the supporting components are unfolded. The structure comprises a floor body, a placement slot is provided in the middle of the floor body, a first folding plate is rotatably installed inside the placement slot, a second folding plate is provided on the rear side of the first folding plate, a top plate is rotatably connected to the upper left side of the second folding plate, a first movable slot is provided on the right front side of the top plate, a connecting ring is slidably installed inside the first movable slot, and the connecting ring and the first folding plate are rotatably connected. After the top plate of the present application is extended, the docking rod is automatically extended under the elastic force of the third spring, so that after the two adjacent floorings are docked in the length direction, the auxiliary support top plate is automatically extended, and after the top plate is extended, the two adjacent top plates are automatically docked in the width direction.
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Description

Technical Field

[0001] The invention relates to the technical field of bamboo floors, in particular to a high-stability bamboo floor connection structure and a connection method thereof. Background Art

[0002] Bamboo is a very fast-growing, renewable plant. Compared with traditional wood, its harvesting and processing have less impact on the environment. In addition, bamboo has higher hardness and density, which can provide a more stable and durable floor surface. Therefore, bamboo is widely used in flooring materials. Existing bamboo flooring still has some shortcomings.

[0003] For example, the reconstructed bamboo floor disclosed in publication number CN106894608B, when the reconstructed bamboo floor A and the reconstructed bamboo floor B are buckled together through the corresponding first connecting parts and the second connecting parts, the reconstructed bamboo floor A or the reconstructed bamboo floor B can be pulled toward the adjacent reconstructed bamboo floor B or reconstructed bamboo floor A. By relying on the sliding rod to slide relative to the reconstructed bamboo floor body, the reconstructed bamboo floor A or the reconstructed bamboo floor B will be close to the adjacent reconstructed bamboo floor B or reconstructed bamboo floor A. The first accommodating groove and the second accommodating groove match the accommodating connecting piece, and the connecting piece will not be exposed to the outside. There is no gap between the adjacent reconstructed bamboo floor A and reconstructed bamboo floor B, and the entire structure is simpler. Moreover, when multiple adjacent reconstructed bamboo floors are pulled together in the same direction, all the reconstructed bamboo floors will be tightly and seamlessly spliced ​​together, and the structure is firm and neat.

[0004] The above-mentioned floors can maintain tight and seamless splicing when docked, but when in use, the auxiliary support structure cannot be automatically deployed when docked in the length direction. The bamboo and wooden floors are easily damaged after bearing heavy objects for a long time. They cannot support themselves from multiple points, and their supporting components cannot be stored when not in use. It is impossible to reduce the space occupied by themselves while ensuring functionality; and the existing floors cannot automatically dock two adjacent supporting components when deploying the supporting components, and their stability is insufficient. Summary of the Invention

[0005] In view of the problems existing in the existing bamboo floor, the present invention is proposed.

[0006] In order to solve the above technical problems, the present invention provides the following technical solutions: a high-stability bamboo floor connection structure, comprising a floor body, a placement groove is provided in the middle of the floor body, a first folding plate is rotatably installed in the placement groove, a second folding plate is provided on the rear side of the first folding plate, a top plate is rotatably connected to the upper left of the second folding plate, a first movable groove is provided on the right front side of the top plate, a connecting ring is slidably installed in the interior of the first movable groove, the connecting ring and the first folding plate are rotatably connected, the connecting ring is connected to the top plate through a first spring, a second movable groove is provided on the right rear side of the floor body, a sliding ring is slidably installed in the interior of the second movable groove, the sliding ring and the second folding plate are rotatably connected, the sliding ring The ring is connected to the floor body through a second spring, and a docking rod is slidably installed inside the top plate. The front end of the docking rod is fixedly connected to the top plate through a third spring. A connecting groove is provided on the rear side of the top plate, and a first rubber plate is fixedly connected to the left side of the top plate. A top block is slidably installed inside the first rubber plate and the top plate, and the top block is connected to the top plate through a compression spring. A second rubber plate is fixedly connected to the inner wall of the left side of the placement groove, and a docking groove is provided inside the second rubber plate. A connecting groove is provided on the left side of the floor body, and a connecting rod is fixedly connected to the right side of the floor body. Corner grooves are provided around the floor body, and columns are installed inside the corner grooves. The columns are connected to adjacent columns through overlapping rods.

[0007] As a preferred solution of the present invention, the upper half of the right side of the floor body is fixedly connected to a side rod, the lower half of the right side of the floor body is provided with a mounting groove, and the lower half of the side rod is convex.

[0008] As a preferred solution of the present invention, the connection between the first folding plate and the second folding plate is a rotational connection, and the top plate forms a lifting structure with the floor body through the first folding plate and the second folding plate. The left front side and the right rear side of the top plate are both provided with openings for the first folding plate and the second folding plate to pass through. The thickness of the top plate is equal to the depth of the placement groove, and the top plate and the floor body are parallel to each other.

[0009] As a preferred solution of the present invention, the top plate forms a snap-fit ​​structure with the floor body through the top block and the docking groove, the inner wall of the docking groove and the outer wall of the top block fit together, and the docking groove and the connecting groove are connected to each other.

[0010] As a preferred solution of the present invention, the connecting ring forms a first sliding structure with the top plate through the first folding plate and the first movable groove, and the sliding ring forms a second sliding structure with the floor body through the second folding plate and the second movable groove, and the position of the connecting ring and the position of the sliding ring correspond to each other.

[0011] As a preferred solution of the present invention, a traction steel rope is provided running through the interior of the docking rod, the front end of the traction steel rope is fixedly connected to a connecting cover, the connecting cover and the docking rod are fixedly connected, and a damping pad is fixedly connected above the front end of the docking rod.

[0012] As a preferred solution of the present invention, the top block forms a sliding structure with the top plate through the connecting rod, the connecting groove, the first rubber plate and the second rubber plate, and the first rubber plate and the second rubber plate are both made of rubber.

[0013] As a preferred solution of the present invention, there is a clearance fit between the connecting groove and the docking rod, and the damping pad forms a compression structure between the traction steel rope and the connecting cover and the inner wall of the connecting groove. The connecting cover is a hemispherical structure with a hollow interior, and the material of the connecting cover is rubber.

[0014] As a preferred solution of the present invention, the corner groove is a quarter-cylindrical structure, the inner wall of the corner groove fits with the outer wall of the column, the upper surface of the column and the lap rod are in the same plane, the column and the lap rod are connected by bonding, a groove is provided on the top of the column, a disc is fitted inside the groove, a convex rod is fixedly connected above the disc, and a mounting hole for docking with the convex rod is provided on the inner wall of the corner groove.

[0015] A method for connecting a high-stability bamboo floor connecting structure comprises the following steps:

[0016] S1: Arrange the columns and the connecting rods on the ground, and then connect the multiple floor bodies. When connecting, install the connecting rod on one floor body into the connecting groove on another floor body, so that the two adjacent floor bodies can be connected in the length direction;

[0017] S2: When docking in the length direction, since the second rubber plate is in close contact with the first rubber plate when the top plate is in the retracted state, the top block presses against the inner wall of the docking groove under the action of the compression spring, thereby closing the connecting groove. When the connecting rod moves into the connecting groove, the air pressure in the connecting groove increases, causing the device to automatically push the top block, causing the top block to move to the right, compressing the compression spring until the top block is released from the inside of the docking groove.

[0018] S3: After the top block is separated from the docking groove, the elastic force of the first spring and the second spring causes the connecting ring in the first movable groove to move leftward, and the sliding ring in the second movable groove to move leftward, so that the top plate is automatically stretched out. The second folding plate rotates in the top plate, and the first folding plate rotates in the placement groove, and the rotation angles are the same, so that the top plate is lifted, thereby automatically deploying the support structure;

[0019] S4: After the top plate is unfolded as an auxiliary support structure, the docking rod inside the top plate automatically extends under the elastic force of the third spring and docks with the connecting groove on the adjacent top plate, thereby realizing the function of automatically unfolding the auxiliary support structure and automatically docking the auxiliary support structure.

[0020] Compared with the prior art, the present invention has the following beneficial effects:

[0021] 1. By providing the connecting rod, the connecting groove, the top block and the docking groove, the device can store the top plate, so that the top block can be stuck into the inside of the docking groove under the action of the compression spring, so that the device can dock the floor body and the top plate. After the docking is completed, the two adjacent floor boards can be docked in the length direction, and the connecting rod can be installed in the inside of the connecting groove. When the two adjacent floor boards are docked in the length direction, the top block is automatically squeezed to the right, so that the top plate is automatically extended under the action of the first spring and the second spring and the first folding plate and the second folding plate, thereby realizing the auxiliary support function, and solving the defect that the existing bamboo and wood floors do not have the auxiliary support function.

[0022] 2. Since openings are provided on both the front and rear sides of the top plate, when the top plate is stored as an auxiliary support structure, the first folding plate and the second folding plate can be avoided, and the top plate can be stably stored without causing movement interference. While ensuring the overall functionality, the floor does not take up too much space, solving the defect of the existing floor that although it has certain functionality, it is large in size and difficult to store.

[0023] 3. By setting up the uprights and lap rods, the floors can be supported on all sides when they are connected. Combined with the auxiliary support top plate in the middle of the floor, the floor can support heavy objects from multiple points, thereby improving the durability of the floor. This solves the problem that the existing bamboo and wood floors are easily damaged after supporting heavy objects for a long time and cannot support themselves from multiple points. The bamboo and wood floors have the advantage of greater stability.

[0024] 4. By setting corresponding front and rear docking rods and connecting grooves, after the auxiliary support top plate is extended, the docking rods are automatically extended under the elastic force of the third spring, so that after the two adjacent floors are docked in the length direction, the auxiliary support top plate is automatically extended, and after the top plate is extended, the two adjacent top plates are automatically docked in the width direction, which solves the defect of the existing floor that cannot automatically dock the two adjacent support components when the support components are unfolded. BRIEF DESCRIPTION OF THE DRAWINGS

[0025] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the present invention will be described in detail below in conjunction with the accompanying drawings and detailed embodiments. Obviously, the drawings described below are only some embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on these drawings without inventive efforts. Among them:

[0026] Figure 1 This is a schematic diagram of the overall structure of a high-stability bamboo floor connection structure of the present invention;

[0027] Figure 2 This is a schematic diagram of the floor main body structure of the present invention;

[0028] Figure 3 This is a schematic diagram of the connection structure between the top plate and the docking rod of the present invention;

[0029] Figure 4 This is a schematic diagram of the connection structure between the docking rod and the third spring of the present invention;

[0030] Figure 5 yes Figure 4 Schematic diagram of the structure at A in the middle;

[0031] Figure 6 This is a schematic diagram of the connection structure of the first folding plate and the second folding plate of the present invention;

[0032] Figure 7 This is a schematic diagram of the connection structure between the first folding plate and the floor body of the present invention;

[0033] Figure 8 yes Figure 7 Schematic diagram of the structure at B in the middle;

[0034] Figure 9 This is a schematic diagram of the split structure of the floor body of the present invention;

[0035] Figure 10 yes Figure 9 Schematic diagram of the structure at C in the middle;

[0036] Figure 11 This is a schematic diagram of the mounting hole and the protruding rod docking structure of the present invention;

[0037] Figure 12 This is a schematic diagram of the split structure of the disc and the column of the present invention;

[0038] Figure 13 It is a schematic diagram of the docking structure of the mounting groove and the side rod of the present invention.

[0039] Numbers in the figure: 1. Floor body; 2. Placement groove; 3. First folding plate; 4. Second folding plate; 5. Top plate; 6. First movable groove; 7. Connecting ring; 8. First spring; 9. Second movable groove; 10. Slip ring; 11. Second spring; 12. Docking rod; 13. Third spring; 14. Connecting rod; 15. Connecting groove; 16. First rubber plate; 17. Top block; 18. Compression spring; 19. Second rubber plate; 20. Docking groove; 21. Connecting groove; 22. Traction rope; 23. Damping pad; 24. Connecting cover; 25. Angle groove; 26. Post; 27. Lap rod; 28. Mounting hole; 29. ​​Protruding rod; 30. Disc; 31. Groove; 32. Mounting groove; 33. Side rod. DETAILED DESCRIPTION

[0040] In order to make the above-mentioned objects, features and advantages of the present invention more obvious and easy to understand, the specific embodiments of the present invention are described in detail below with reference to the accompanying drawings.

[0041] In the following description, many specific details are set forth to facilitate a full understanding of the present invention. However, the present invention may also be implemented in other ways different from those described herein. Those skilled in the art may make similar generalizations without violating the connotation of the present invention. Therefore, the present invention is not limited to the specific embodiments disclosed below.

[0042] Next, the present invention is described in detail with reference to schematic diagrams. For ease of illustration, cross-sectional views of device structures may be partially enlarged and not to scale when describing the embodiments of the present invention. Furthermore, the schematic diagrams are merely illustrative and should not limit the scope of protection of the present invention. Furthermore, in actual production, three-dimensional dimensions, including length, width, and depth, should be included.

[0043] Example

[0044] To make the objectives, technical solutions and advantages of the present invention more clear, the embodiments of the present invention will be described in further detail below with reference to the accompanying drawings.

[0045] like Figures 1-13As shown, a high-stability bamboo floor connection structure includes a floor body 1, a placement groove 2 is opened in the middle of the floor body 1, a first folding plate 3 is rotatably installed inside the placement groove 2, a second folding plate 4 is set on the rear side of the first folding plate 3, the first folding plate 3 and the second folding plate 4 form a scissor-type lifting mechanism, a top plate 5 is rotatably connected to the upper left of the second folding plate 4, a first moving groove 6 is opened on the right front side of the top plate 5, a connecting ring 7 is slidably installed inside the first moving groove 6, the connecting ring 7 and the first folding plate 3 are rotatably connected, the connecting ring 7 is connected to the top plate 5 through a first spring 8, a second moving groove 9 is opened on the right rear side of the floor body 1, and the second moving groove 9 is slidably installed inside the first moving groove 6. The top plate 5 is slidably installed with a slip ring 10, and the slip ring 10 and the second folding plate 4 are rotatably connected. The slip ring 10 is connected to the floor body 1 through the second spring 11. Through the first spring 8 and the second spring 11, after the top plate 5 is out of the engaged state with the floor body 1, the first spring 8 pushes the connecting ring 7 to move to the left, and the second spring 11 pushes the slip ring 10 to move to the left, thereby causing the first folding plate 3 and the second folding plate 4 to rotate. At this time, the top plate 5 on the floor body 1 can be automatically unfolded to perform auxiliary support work. A docking rod 12 is slidably installed inside the top plate 5. The front end of the docking rod 12 is fixedly connected to the connecting cover 24. The docking rod 12 is connected to the floor body 1 through the third spring The spring 13 is connected to the top plate 5, and a connecting groove 21 is provided on the rear side of the top plate 5. The left side of the top plate 5 is fixedly connected to the first rubber plate 16. A top block 17 is slidably installed inside the first rubber plate 16 and the top plate 5. The top block 17 is connected to the top plate 5 through a compression spring 18. A second rubber plate 19 is fixedly connected to the inner wall of the left side of the placement groove 2. A docking groove 20 is provided inside the second rubber plate 19. A connecting groove 15 is provided on the left side of the floor body 1. A connecting rod 14 is fixedly connected to the right side of the floor body 1. After the connecting rod 14 is installed in the interior of the connecting groove 15, the top block 17 moves to the right, so that the top plate 5 is out of the engagement state with the floor body 1 so that the back The top plate 5 is automatically unfolded. After the top plate 5 is unfolded, the docking rod 12 is automatically extended under the action of the third spring 13, so that the two adjacent top plates 5 can be automatically unfolded, so that the device can dock the two adjacent top plates 5 in the width direction. Corner grooves 25 are opened around the floor body 1, and columns 26 are installed inside the corner grooves 25. The columns 26 are connected to the adjacent columns 26 through the overlapping rods 27. The corner grooves 25 distributed around the floor body 1 are matched with the corresponding columns 26, and the auxiliary support top plate 5 in the middle of the floor body 1, so that each piece of floor can be stably supported from five positions to ensure the durability and stability of the floor.

[0046] In this example, the upper half of the right side of the floor body 1 is fixedly connected to a side rod 33, and the lower half of the right side of the floor body 1 is provided with a mounting groove 32. The lower half of the side rod 33 is convex, so that the floor body 1 can remain stable after docking in the length direction, thereby improving the overall stability.

[0047] In this example, the connection between the first folding plate 3 and the second folding plate 4 is a rotating connection, and the top plate 5 forms a lifting structure between the first folding plate 3 and the second folding plate 4 and the floor body 1. Through the lifting structure on the device, when the first folding plate 3 and the second folding plate 4 are rotated, the top plate 5 can automatically extend or retract, so as to subsequently perform auxiliary support work on the middle position of the floor body 1, thereby improving the overall stability. The left front side and the right rear side of the top plate 5 are both provided with openings for the first folding plate 3 and the second folding plate 4 to pass through. The thickness of the top plate 5 is equal to the depth of the placement groove 2. The top plate 5 and the floor body 1 are parallel to each other, and the thickness of the top plate 5 is the same as the depth of the placement groove 2, ensuring that the size of the floor body 1 after the top plate 5 is retracted is the same as that of an ordinary floor, ensuring functionality while reducing the overall occupied space.

[0048] In this example, the top plate 5 forms a snap-fit ​​structure with the floor body 1 through the top block 17 and the docking groove 20. The inner wall of the docking groove 20 fits with the outer wall of the top block 17, and the docking groove 20 and the connecting groove 15 are connected to each other. Through the interconnected docking groove 20 and the connecting groove 15, when the air pressure in the connecting groove 15 changes, it can act on the top block 17, causing the top block 17 to automatically contract, thereby realizing the lifting function of the top plate 5, so that after the two adjacent floor bodies 1 are docked, the auxiliary supporting top plate 5 can be automatically unfolded, which is also convenient for storing the top plate 5.

[0049] In this example, the connecting ring 7 forms a first sliding structure with the top plate 5 through the first folding plate 3 and the first movable groove 6, and the slip ring 10 forms a second sliding structure with the floor body 1 through the second folding plate 4 and the second movable groove 9. The position of the connecting ring 7 and the position of the slip ring 10 correspond to each other. Through the first sliding structure and the second sliding structure on the device, when the connecting ring 7 and the slip ring 10 move to the left, the top plate 5 is automatically unfolded, and when the connecting ring 7 and the slip ring 10 move to the right, the top plate 5 is automatically retracted, which improves the convenience during use. Moreover, since the connecting ring 7 and the slip ring 10 are both rotating connections, when the first folding plate 3 and the second folding plate 4 rotate, the connecting ring 7 and the slip ring 10 will only move left and right and will not rotate.

[0050] In this embodiment, a traction steel rope 22 is provided inside the docking rod 12, and a connecting cover 24 is fixedly connected to the front end of the traction steel rope 22. The connecting cover 24 and the docking rod 12 are fixedly connected. A damping pad 23 is fixedly connected to the upper part of the front end of the docking rod 12. When the docking rod 12 is not blocked, the docking rod 12 can automatically extend, and the traction steel rope 22 intermittently pulls the connecting cover 24, so as to subsequently adjust the air pressure in the cavity of the front half of the docking rod 12 (combined with Figure 5 can be seen).

[0051] In this example, the top block 17 forms a sliding structure with the top plate 5 through the connecting rod 14, the connecting groove 15, the first rubber plate 16 and the second rubber plate 19. The first rubber plate 16 and the second rubber plate 19 are both made of rubber, ensuring that the first rubber plate 16 and the second rubber plate 19 are tightly fitted after the top plate 5 is stored, thereby ensuring that the connecting groove 15 is in a closed state. The position of the top block 17 can be adjusted by changing the air pressure in the connecting groove 15, so that the top plate 5 can automatically extend after two adjacent floor panels are connected in the length direction.

[0052] In this example, there is a clearance fit between the connecting groove 21 and the docking rod 12, and the damping pad 23 forms a compression structure with the inner wall of the connecting groove 21 through the traction steel rope 22 and the connecting cover 24. The connecting cover 24 is a hemispherical structure with a hollow interior. The material of the connecting cover 24 is rubber. Through the rubber connecting cover 24, when the connecting cover 24 is pulled backward, the air pressure in the docking rod 12 increases, thereby supporting the damping pad 23, and the connecting groove 21 is compressed by the damping pad 23, realizing the function of automatic docking and automatic compression in the width direction.

[0053] In this example, the corner groove 25 is a quarter-cylindrical structure, and the inner wall of the corner groove 25 fits with the outer wall of the column 26. The upper surfaces of the column 26 and the lap rod 27 are in the same plane. The column 26 and the lap rod 27 are connected by bonding, ensuring that the supporting surface of the column 26 and the lap rod 27 is large enough and can pass through the corner groove 25 so that the floor can be supported on all sides, thereby improving the supporting strength of the bamboo and wood flooring. A groove 31 is provided on the top of the column 26, and a disc 30 is fitted inside the groove 31. A protruding rod 29 is fixedly connected to the top of the disc 30. A mounting hole 28 for docking with the protruding rod 29 is provided on the inner wall of the corner groove 25. By aligning the protruding rod 29 with the mounting hole 28, the floors can be quickly docked in groups of four.

[0054] It should be noted that the present invention is a high stability bamboo floor connection structure and its connection method. First, as Figure 1 、 Figure 2 and Figure 6-Figure 8As shown, the uprights 26 and the connecting rods 27 are placed on the ground, and then multiple floor bodies 1 are docked. During docking, the connecting rod 14 on one floor body 1 is installed into the connecting groove 15 on another floor body 1, so that two adjacent floor bodies 1 can be docked in the length direction. When docking in the length direction, because the top plate 5 is in the stored state, the second rubber plate 19 is close to the first rubber plate 16, and the top block 17 is pressed against the inner wall of the docking groove 20 by the action of the compression spring 18, thereby closing the connecting groove 15. When the connecting rod 14 moves into the interior of the connecting groove 15, the air pressure in the connecting groove 15 increases, allowing the device to automatically push the top block 17, causing the top block 17 to move to the right, and the compression spring 18 is compressed until the top block 17 is released from the interior of the docking groove 20.

[0055] like Figure 2-Figure 10 As shown, after the top block 17 disengages from the inside of the docking groove 20, under the elastic force of the first spring 8 and the second spring 11, the connecting ring 7 in the first movable groove 6 moves to the left, and the slip ring 10 in the second movable groove 9 moves to the left, so that the top plate 5 is automatically stretched open, the second folding plate 4 rotates in the top plate 5, and the first folding plate 3 rotates in the placement groove 2, and the rotation angles are the same, so that the top plate 5 is lifted, thereby automatically unfolding the support structure. When the connecting ring 7 and the slip ring 10 move to the left, the top plate 5 is automatically unfolded. When the connecting ring 7 and the slip ring 10 move to the right, the top plate 5 is automatically retracted. Since the connection between the connecting ring 7 and the slip ring 10 and the first folding plate 3 and the second folding plate 4 is a rotating connection, when the first folding plate 3 and the second folding plate 4 rotate, the connecting ring 7 and the slip ring 10 will only move left and right and will not rotate. After the top plate 5 is unfolded as the auxiliary support structure, the docking rod 12 in the top plate 5 automatically extends under the elastic force of the third spring 13 and docks with the connecting groove 21 on the adjacent top plate 5, thereby realizing the functions of automatically unfolding the auxiliary support structure and automatically docking the auxiliary support structure. While realizing automatic docking in the length direction of the floor, automatic docking is performed again in the width direction of the floor. After the automatic docking work in the width direction of the floor is completed, Figure 4 and Figure 5 As shown, the docking rod 12 moves to the right under the action of the third spring 13, and the traction steel rope 22 pulls the rubber connecting cover 24, so that the air pressure in the front end cavity of the docking rod 12 increases, so that the damping pad 23 is supported, and the damping pad 23 supports the inner wall of the connecting groove 21 on the adjacent top plate 5, thereby realizing the function of stable compression after docking in the width direction of the floor.

[0056] Finally, align the corner grooves 25 of the floor body 1 with the tops of the columns 26, and perform the longitudinal docking work between the floor and the columns 26. By using the columns 26 corresponding to the positions of the corner grooves 25, the floor body 1 can be supported at multiple points by the four columns 26 and the top plate 5 in the middle (combined with the vertical support of the vertical support). Figure 1It can be seen), it should be noted that the bamboo wood floor can be used in conjunction with ordinary flooring, and it can be laid mainly for locations that need to support heavy objects. The device can also be directly docked through the installation groove 32 and the side rod 33 (such as Figure 2 As shown), so that the two adjacent floors remain stable after docking, as shown Figure 11-13 As shown, when the floor is in use, the protruding rods 29 are aligned with the mounting holes 28 so that each upright post 26 can dock with floors at four positions at the same time.

[0057] Although the present invention has been described above with reference to embodiments, various modifications may be made thereto and equivalent components may be substituted without departing from the scope of the present invention. In particular, as long as there are no structural conflicts, the various features of the embodiments disclosed herein may be combined with each other in any manner, and the omission of an exhaustive description of such combinations in this specification is solely for the sake of space and resource conservation. Therefore, the present invention is not limited to the specific embodiments disclosed herein, but includes all technical solutions falling within the scope of the claims.

Claims

1. A high-stability bamboo floor connection structure, comprising a floor body, characterized in that: A placement slot is provided in the middle of the floor body, a first folding plate is rotatably installed inside the placement slot, a second folding plate is provided on the rear side of the first folding plate, a top plate is rotatably connected to the upper left side of the second folding plate, a first moving slot is provided on the right front side of the top plate, a connecting ring is slidably installed inside the first moving slot, the connecting ring and the first folding plate are rotatably connected, the connecting ring is connected to the top plate through a first spring, a second moving slot is provided on the right rear side of the floor body, a slip ring is slidably installed inside the second moving slot, the slip ring and the second folding plate are rotatably connected, the slip ring is connected to the floor body through a second spring, and the top plate is slidably installed inside There is a docking rod, the front end of the docking rod is fixedly connected to the connecting cover, the docking rod is connected to the top plate through a third spring, a connecting groove is provided on the rear side of the top plate, a first rubber plate is fixedly connected to the left side of the top plate, a top block is slidably installed inside the first rubber plate and the top plate, the top block is connected to the top plate through a compression spring, a second rubber plate is fixedly connected to the inner wall of the left side of the placement groove, a docking groove is provided inside the second rubber plate, a connecting groove is provided on the left side of the floor body, a connecting rod is fixedly connected to the right side of the floor body, corner grooves are provided around the floor body, columns are installed inside the corner grooves, and the columns are connected to adjacent columns through overlapping rods; The first folding plate and the second folding plate are connected by a rotational connection. The top plate forms a lifting structure with the floor body through the first and second folding plates. The left front side and the right rear side of the top plate are both provided with openings for the first and second folding plates to pass through. The thickness of the top plate is equal to the depth of the placement groove, and the top plate and the floor body are parallel to each other. The top plate forms a snap-fit ​​structure with the floor body through the top block and the docking groove, the inner wall of the docking groove and the outer wall of the top block fit together, and the docking groove and the connecting groove are connected to each other; The connecting ring forms a first sliding structure with the top plate through the first folding plate and the first moving groove, and the sliding ring forms a second sliding structure with the floor body through the second folding plate and the second moving groove. The positions of the connecting ring and the sliding ring correspond to each other.

2. The high-stability bamboo floor connection structure according to claim 1, characterized in that: The upper half of the right side of the floor body is fixedly connected with a side rod, the lower half of the right side of the floor body is provided with a mounting groove, and the lower half of the side rod is convex.

3. The high-stability bamboo floor connection structure according to claim 1, characterized in that: A traction steel rope is provided through the interior of the docking rod, the front end of the traction steel rope is fixedly connected with a connecting cover, the connecting cover and the docking rod are fixedly connected, and a damping pad is fixedly connected above the front end of the docking rod.

4. The high-stability bamboo floor connection structure according to claim 1, characterized in that: The top block forms a sliding structure with the top plate through the connecting rod, the connecting groove, the first rubber plate, the second rubber plate, and the material of the first rubber plate and the second rubber plate are both rubber material.

5. The high-stability bamboo floor connection structure according to claim 3, characterized in that: There is a clearance fit between the connecting groove and the docking rod. The damping pad forms a compression structure between the traction steel rope and the connecting cover and the inner wall of the connecting groove. The connecting cover is a hemispherical structure with a hollow interior, and the material of the connecting cover is rubber.

6. The high-stability bamboo floor connection structure according to claim 1, characterized in that: The corner groove is a quarter-cylindrical structure. The inner wall of the corner groove fits together with the outer wall of the column. The upper surfaces of the column and the lap rod are in the same plane. The column and the lap rod are connected by bonding. A groove is provided on the top of the column. A disc is fitted inside the groove. A convex rod is fixedly connected to the top of the disc. An installation hole for docking with the convex rod is provided on the inner wall of the corner groove.

7. A method for connecting a high-stability bamboo floor connection structure, according to claim 1, characterized in that: The following steps are involved: S1: Arrange the columns and the connecting rods on the ground, and then connect the multiple floor bodies. When connecting, install the connecting rod on one floor body into the connecting groove on another floor body, so that the two adjacent floor bodies can be connected in the length direction; S2: When docking in the length direction, since the second rubber plate is in close contact with the first rubber plate when the top plate is in the retracted state, the top block presses against the inner wall of the docking groove under the action of the compression spring, thereby closing the connecting groove. When the connecting rod moves into the connecting groove, the air pressure in the connecting groove increases, causing the device to automatically push the top block, causing the top block to move to the right, compressing the compression spring until the top block is released from the inside of the docking groove. S3: After the top block is separated from the docking groove, the elastic force of the first spring and the second spring causes the connecting ring in the first movable groove to move leftward, and the sliding ring in the second movable groove to move leftward, so that the top plate is automatically stretched out. The second folding plate rotates in the top plate, and the first folding plate rotates in the placement groove, and the rotation angles are the same, so that the top plate is lifted, thereby automatically deploying the support structure; S4: After the top plate is unfolded as an auxiliary support structure, the docking rod inside the top plate automatically extends under the elastic force of the third spring and docks with the connecting groove on the adjacent top plate, thereby realizing the function of automatically unfolding the auxiliary support structure and automatically docking the auxiliary support structure.

Citation Information

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