Detachable High-Strength Wooden Structure Support Component and Its Manufacturing Method
By designing removable high-strength wooden support components, the problem of solid wood furniture support feet being susceptible to water erosion and limited load weight is solved, and the effect of extending service life, improving support strength and easy handling is achieved.
Patent Information
- Application Number
- CN202010252541.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2020-04-01
- Publication Date
- 2025-05-30
- Estimated Expiration
- 2040-04-01
AI Technical Summary
The supporting feet of existing solid wood furniture are susceptible to water erosion, resulting in mold and shortened service life. At the same time, the load bearing weight is limited, and it is generally integrated, difficult to disassemble and cannot be convenient for handling.
A removable high-strength wooden support assembly is designed, using a structure connected to the upper and lower legs of the T-shaped metal, with a wooden sleeve in the middle, and connected through a detachable structure, which increases the convenience of disassembly and assembly.
It extends the service life of furniture, improves support strength, is easy to disassemble and assemble, and is easy to carry, while maintaining the aesthetics of the wooden appearance.
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Figure CN111387736B_ABST
Abstract
Description
Technical Field
[0001] The present invention belongs to the technical field of furniture, and in particular relates to a detachable high-strength wooden structure support assembly and a manufacturing method thereof. Background Art
[0002] Solid wood furniture refers to furniture made of natural wood, and the texture of the wood can generally be seen on the surface of the furniture. The amount of glue used in solid wood furniture is quite small, which is natural, environmentally friendly, green and healthy, strong and firm, and has a long service life. Since the support feet of solid wood furniture are inevitably eroded by water during use, after a long time, it will cause the solid wood furniture to mildew, reducing its service life and beauty, and the wooden support feet have limited load-bearing capacity. Existing solid wood furniture is generally integrated, resulting in being unable to be moved into the homes of community residents. Summary of the Invention
[0003] The purpose of the present invention is to address the above problems and provide a detachable high-strength wooden structure support assembly with a reasonable design, a firm structure, and a wooden appearance.
[0004] Another purpose of the present invention is to address the above problems and provide a manufacturing method for a detachable high-strength wooden structure support assembly
[0005] To achieve the above object, the present invention adopts the following technical solutions: This detachable high-strength wooden structure support assembly is characterized in that it includes a T-shaped metal upper support foot that can be fixed to the bottom of the tabletop through a first detachable structure. The T-shaped metal upper support foot is connected to an inverted T-shaped metal lower support foot placed on the bottom surface through a second detachable structure. A wooden structure sleeve is sleeved between the T-shaped metal upper support foot and the T-shaped metal lower support foot. The wooden structure sleeve is provided with a disassembly opening that facilitates the disassembly and assembly of the second detachable structure. A wooden bottom foot cover plate is provided between the T-shaped metal lower support foot and the wooden structure sleeve. The wooden bottom foot cover plate and the T-shaped metal lower support foot are connected through a third detachable structure.
[0006] In the above detachable high-strength wooden structure support assembly, the upper top plate of the T-shaped metal upper support foot is fixed to the bottom of the tabletop through a first detachable structure. The upper support plate of the T-shaped metal upper support foot is connected to the lower support plate of the T-shaped metal lower support foot through a second detachable structure. The wooden bottom foot cover plate and the lower bottom plate of the T-shaped metal lower support foot are connected through a third detachable structure. The top of the wooden structure sleeve abuts against the bottom surface of the upper top plate, the bottom of the wooden structure sleeve is connected to the wooden bottom foot cover plate, the wooden bottom foot cover plate covers the lower bottom plate, and the lower support plate penetrates through the vertical through hole of the wooden bottom foot cover plate.
[0007] In the above-mentioned detachable high-strength wooden structure support assembly, four upper roof sinking holes vertically penetrating the upper roof are provided on the upper roof above the upper support plate, and the top of the wooden sleeve is connected to the upper roof through bolts arranged in the upper roof sinking holes.
[0008] In the above-mentioned detachable high-strength wooden structure support assembly, the first detachable structure includes four first upper sinking holes respectively arranged around the upper roof.
[0009] In the above-mentioned detachable high-strength wooden structure support assembly, the second detachable structure includes an upper splicing interface arranged at the lower end of the upper support plate, a lower splicing interface capable of cooperating with the upper splicing interface is arranged at the upper end of the lower support plate, and the upper splicing interface and the lower splicing interface are fixed by at least two bolts penetrating the upper support plate and the lower support plate.
[0010] In the above-mentioned detachable high-strength wooden structure support assembly, the third detachable structure includes a number of third lower sinking holes arranged on the lower bottom plate, and the lower bottom plate is fixed to the bottom of the wooden foot cover plate through bolts arranged in the third lower sinking holes.
[0011] In the above-mentioned detachable high-strength wooden structure support assembly, the lower bottom plate is embedded in the lower bottom plate groove at the bottom of the wooden foot cover plate, and the horizontal height of the bottom surface of the wooden foot cover plate is slightly higher than the horizontal height of the bottom surface of the lower bottom plate groove.
[0012] In the above-mentioned detachable high-strength wooden structure support assembly, the wooden sleeve includes two symmetrically arranged side plates, vertical support plate through grooves are respectively opened on the inner sides of the side plates, and the two support plate through grooves are combined to form a support plate accommodation channel, and the support plate accommodation channel is adapted to the lower support plate and the upper support plate.
[0013] In the above-mentioned detachable high-strength wooden structure support assembly, a detachable plug head is provided at the disassembly port, a decorative ring is provided at the outer end of the plug head, the decorative ring is integrally formed with the plug head and the outer diameter of the decorative ring is larger than the diameter of the disassembly port, and wood carving decorative patterns are also provided on the outer end surface of the plug head.
[0014] The manufacturing method of the above-mentioned detachable high-strength wooden structure support assembly is characterized by including the following steps:
[0015] S1: Prepare solid wood raw materials, select wood that has been steamed and dried to a moisture content of 8 - 12%, place it in a cool indoor environment with an air humidity of 50 - 60%, and let it age for 1 - 2 months.
[0016] S2: Process the solid wood raw materials into blank parts, including a wooden foot cover plate and two side plates constituting the wooden sleeve.
[0017] S3: Vertically penetrate the side plates to form support plate through slots on the inner side of each side plate, and then adhesively join the inner sides of the two side plates facing each other to form a through support plate accommodation channel. The size of the support plate accommodation channel is adapted to the sizes of the lower support plate and the upper support plate. Machine a transverse through-hole on the side of one of the side plates, and the through-hole is located at the connection between the T-shaped metal upper support leg and the T-shaped metal lower support leg. Vertically penetrate the middle of the wooden bottom foot cover plate to form a vertical through-hole, and machine a lower bottom plate groove on the bottom surface of the wooden bottom foot cover plate;
[0018] S4: Decorate and shape the exterior of the wooden structure sleeve and the wooden bottom foot cover plate. After decoration, apply paint to form a wear-resistant surface layer;
[0019] S5: Slip the wooden bottom foot cover plate onto the T-shaped metal lower support leg and fix it with a number of bolts. After fixing, slip the wooden structure sleeve onto the lower support plate, insert the upper support plate into the wooden structure sleeve. At this time, the splicing joint between the lower support plate and the upper support plate is located at the through-hole. Fix the lower support plate and the upper support plate with a number of bolts. Finally, fix the top of the wooden structure sleeve to the T-shaped metal upper support leg with a number of bolts.
[0020] Compared with the existing technology, the advantages of the present detachable high-strength wooden structure support assembly and its manufacturing method are as follows: 1. Reasonable design, firm structure, and a wooden appearance. 2. While meeting the requirements of solid wood decoration, effectively extending the service life of furniture. 3. Convenient for disassembly and assembly, thus enabling easy access to the homes of various users without worrying about transportation problems. Description of the Drawings
[0021] Figure 1 is the structural schematic diagram of the usage state provided by the present invention.
[0022] Figure 2 is the cross-sectional structural schematic diagram provided by the present invention.
[0023] Figure 3 is the partial three-dimensional structural schematic diagram provided by the present invention.
[0024] Figure 4 is the structural schematic diagram of the wooden structure sleeve provided by the present invention.
[0025] In the figure, the first detachable structure 3, the table board 1a, the T-shaped metal upper support leg 1, the T-shaped metal lower support leg 2, the second detachable structure 4, the wooden structure sleeve 5, the disassembly opening 51, the wooden bottom foot cover plate 6, the third detachable structure 7, the vertical through hole 61, the lower support plate 21, the lower bottom plate 22, the upper support plate 12, the upper top plate 11, the upper top plate counterbore 111, the first upper counterbore 31, the upper splicing interface 41, the lower splicing interface 42, the third lower counterbore 71, the lower bottom plate groove 62, the side plate 52, the support plate through groove 521, the support plate accommodation channel 522, the plug 511, the decorative ring 512, the first sealing ring 511a, the second sealing ring 22a, the annular protrusion 611, the arc transition 612. Detailed implementation mode
[0026] As Figures 1-4 shown, this detachable high-strength wooden structure support assembly includes a T-shaped metal upper support leg 1 that can be fixed to the bottom of the table board 1a through the first detachable structure 3. The T-shaped metal upper support leg 1 is connected to an inverted T-shaped metal lower support leg 2 placed on the bottom surface through the second detachable structure 4. A wooden structure sleeve 5 is sleeved between the T-shaped metal upper support leg 1 and the T-shaped metal lower support leg 2. The wooden structure sleeve 5 is provided with a disassembly opening 51 that facilitates the disassembly and assembly of the second detachable structure 4. A wooden bottom foot cover plate 6 is provided between the T-shaped metal lower support leg 2 and the wooden structure sleeve 5. The wooden bottom foot cover plate 6 and the T-shaped metal lower support leg 2 are connected through the third detachable structure 7. Anti-rust layers are coated on the T-shaped metal upper support leg 1 and the T-shaped metal lower support leg 2. The T-shaped metal upper support leg 1 and the T-shaped metal lower support leg 2 are made of any one of copper, iron, stainless steel, and aluminum alloy; the wooden structure sleeve 5 and the wooden bottom foot cover plate 6 are made of solid wood materials. Of course, other woods can also be used.
[0027] More specifically, the upper top plate 11 of the T-shaped metal upper support leg 1 is fixed to the bottom of the table board 1a through the first detachable structure 3. The upper support plate 12 of the T-shaped metal upper support leg 1 is connected to the lower support plate 21 of the T-shaped metal lower support leg 2 through the second detachable structure 4. The wooden bottom foot cover plate 6 and the lower bottom plate 22 of the T-shaped metal lower support leg 2 are connected through the third detachable structure 7. The top of the wooden structure sleeve 5 abuts against the bottom surface of the upper top plate 11. The bottom of the wooden structure sleeve 5 is connected to the wooden bottom foot cover plate 6. The wooden bottom foot cover plate 6 covers the lower bottom plate 22 and the lower support plate 21 passes through the vertical through hole 61 of the wooden bottom foot cover plate 6.
[0028] On the upper top plate 11 above the upper support plate 12, there are four upper top plate counterbores 111 vertically penetrating the upper top plate 11. Two of the upper top plate counterbores 111 are located on one side of the upper support plate 12, and the remaining two are on the other side of the upper support plate 12. The top of the wooden structure sleeve 5 is connected to the upper top plate 11 by bolts arranged in the upper top plate counterbores 111; the first detachable structure 3 includes four first upper counterbores 31 respectively arranged around the upper top plate 11; the second detachable structure 4 includes an upper splicing interface 41 arranged at the lower end of the upper support plate 12, and a lower splicing interface 42 capable of cooperating with the upper splicing interface 41 is arranged at the upper end of the lower support plate 21. The upper splicing interface 41 and the lower splicing interface 42 are fixed by at least two bolts passing through the upper support plate 12 and the lower support plate 21. After the upper splicing interface 41 and the lower splicing interface 42 are spliced, the upper support plate 12 and the lower support plate 21 are on the same axis; the third detachable structure 7 includes a number of third lower counterbores 71 arranged on the lower bottom plate 22, and the lower bottom plate 22 is fixed to the bottom of the wooden foot cover plate 6 by bolts passing through the third lower counterbores 71. Using counterbores can ensure the fitting degree of the fitting surface.
[0029] Preferably, there are eight third lower counterbores 71.
[0030] To improve the aesthetics and make it closer to a fully solid wood support foot, but also prevent the solid wood from rotting when contacting water, the lower bottom plate 22 is embedded in the lower bottom plate groove 62 at the bottom of the wooden foot cover plate 6, and the horizontal height of the bottom surface of the wooden foot cover plate 6 is slightly higher than the horizontal height of the bottom surface of the lower bottom plate groove 62.
[0031] Preferably, an annular protrusion 611 is provided at the outer end of the vertical through hole 61 of the wooden foot cover plate 6. An arc transition 612 is provided between the annular protrusion 611 and the wooden foot cover plate 6, and the wooden foot cover plate 6 and the annular protrusion 611 are of an integral structure.
[0032] Since large-sized wood is less and costly, to reduce the manufacturing cost, the wooden structure sleeve 5 includes two symmetrically arranged side plates 52. Vertically arranged support plate through grooves 521 are respectively opened on the inner sides of the side plates 52. The two support plate through grooves 521 are spliced to form a support plate accommodation channel 522, and the support plate accommodation channel 522 is adapted to the lower support plate 21 and the upper support plate 12.
[0033] Preferably, the depth of the support plate through groove 521 is greater than or equal to half of the thickness of the upper support plate 12 or the lower support plate 21.
[0034] To improve the aesthetics and waterproofness, a detachable plug 511 is provided at the disassembly port 51. A decorative ring 512 is provided at the outer end of the plug 511. The decorative ring 512 and the plug 511 are integrally formed and the outer diameter of the decorative ring 512 is greater than the diameter of the disassembly port 51. Wood carving decorative patterns are also provided on the outer end surface of the plug 511.
[0035] Preferably, the plugging head 511 is fixed on the disassembly port 51 through a threaded structure.
[0036] Preferably, the plugging head 511 is fixed on the disassembly port 51 through a magnetic attraction structure.
[0037] Preferably, a first sealing ring 511a is provided between the plugging head 511 and the disassembly port 51.
[0038] Preferably, a second sealing ring 22a is provided between the lower bottom plate 22 and the wooden foot cover plate 6.
[0039] The manufacturing method of the detachable high-strength wooden structure support assembly includes the following steps:
[0040] S1: Prepare solid wood raw materials, select wood that has been steamed and dried to a moisture content of 8-12%, place it in a cool indoor environment with an air humidity of 50-60%, and leave it for 1-2 months for aging.
[0041] S2: Process the solid wood raw materials into blank parts, including the wooden foot cover plate 6 and the two side plates 52 that make up the wooden structure sleeve 5.
[0042] S3: Open a vertical through groove 521 on the inner side of each side plate 52 that penetrates the side plate 52 vertically, and then splice and bond the inner sides of the two side plates 52 facing each other to form a through support plate accommodation channel 522. The size of the support plate accommodation channel 522 is adapted to the sizes of the lower support plate 21 and the upper support plate 12. Process a transverse through disassembly port 51 on the side of one of the side plates 52. The disassembly port 51 is located at the connection of the T-shaped metal upper support foot 1 and the T-shaped metal lower support foot 2. Open a vertically through vertical through hole 61 in the middle of the wooden foot cover plate 6, and open a lower bottom plate groove 62 on the bottom surface of the wooden foot cover plate 6.
[0043] S4: Modify and shape the exteriors of the wooden structure sleeve 5 and the wooden foot cover plate 6. After the modification is completed, apply paint to form a wear-resistant surface layer.
[0044] S5: Put the wooden foot cover plate 6 on the T-shaped metal lower support foot 2 and fix it with several bolts. After fixing, put the wooden structure sleeve 5 on the lower support plate 21, insert the upper support plate 12 into the wooden structure sleeve 5. At this time, the splicing joint of the lower support plate 21 and the upper support plate 12 is located at the disassembly port 51. Fix the lower support plate 21 and the upper support plate 12 with several bolts. Finally, fix the top of the wooden structure sleeve 5 on the T-shaped metal upper support foot 1 with several bolts.
[0045] In step S4, the external structures of the wooden structure sleeve 5 and the wooden foot cover plate 6 can be adjusted by cutting according to needs.
[0046] The specific embodiments described herein are merely illustrative of the spirit of the present invention. Those skilled in the art to which the present invention pertains may make various modifications or supplements to the described specific embodiments or use similar means for substitution, but will not deviate from the spirit of the present invention or exceed the scope defined by the appended claims.
[0047] Although terms such as the first detachable structure 3, tabletop 1a, T-shaped metal upper support leg 1, T-shaped metal lower support leg 2, second detachable structure 4, wooden sleeve 5, disassembly opening 51, wooden bottom foot cover plate 6, third detachable structure 7, vertical through hole 61, lower support plate 21, lower bottom plate 22, upper support plate 12, upper top plate 11, upper top plate counterbore 111, first upper counterbore 31, upper splicing interface 41, lower splicing interface 42, third lower counterbore 71, lower bottom plate groove 62, side plate 52, support plate through groove 521, support plate accommodation channel 522, plug head 511, decorative ring 512, first sealing ring 511a, second sealing ring 22a, annular protrusion 611, arc transition 612 are used more frequently herein, the possibility of using other terms is not excluded. The use of these terms is only to more conveniently describe and explain the essence of the present invention, and interpreting them as any additional limitation is contrary to the spirit of the present invention.
Claims
1. A detachable high-strength wooden structure support assembly, characterized in that, it includes a T-shaped metal upper foot (1) that can be fixed to the bottom of the tabletop (1a) through a first detachable structure (3). The T-shaped metal upper foot (1) is connected to an inverted T-shaped metal lower foot (2) placed on the bottom surface through a second detachable structure (4). A wooden structure sleeve (5) is sleeved between the T-shaped metal upper foot (1) and the T-shaped metal lower foot (2). A disassembly opening (51) that facilitates the disassembly and assembly of the second detachable structure (4) is provided on the wooden structure sleeve (5). A wooden bottom foot cover plate (6) is provided between the T-shaped metal lower foot (2) and the wooden structure sleeve (5). The wooden bottom foot cover plate (6) and the T-shaped metal lower foot (2) are connected through a third detachable structure (7); the upper top plate (11) of the T-shaped metal upper foot (1) is fixed to the bottom of the tabletop (1a) through the first detachable structure (3). The upper support plate (12) of the T-shaped metal upper foot (1) is connected to the lower support plate (21) of the T-shaped metal lower foot (2) through the second detachable structure (4). The wooden bottom foot cover plate (6) and the lower bottom plate (22) of the T-shaped metal lower foot (2) are connected through the third detachable structure (7). The top of the wooden structure sleeve (5) abuts against the bottom surface of the upper top plate (11). The bottom of the wooden structure sleeve (5) is connected to the wooden bottom foot cover plate (6). The wooden bottom foot cover plate (6) covers the lower bottom plate (22) and the lower support plate (21) passes through the vertical through hole (61) of the wooden bottom foot cover plate (6); the second detachable structure (4) includes an upper splicing interface (41) provided at the lower end of the upper support plate (12). A lower splicing interface (42) that can cooperate with the upper splicing interface (41) is provided at the upper end of the lower support plate (21). The upper splicing interface (41) and the lower splicing interface (42) are fixed by at least two bolts passing through the upper support plate (12) and the lower support plate (21); the third detachable structure (7) includes a number of third sinking holes (71) provided on the lower bottom plate (22). The lower bottom plate (22) is fixed to the bottom of the wooden bottom foot cover plate (6) by bolts passing through the third sinking holes (71).
2. The detachable high-strength wooden structure support assembly according to claim 1, characterized in that, four upper top plate sinking holes (111) vertically penetrating the upper top plate (11) are provided on the upper top plate (11) above the upper support plate (12). The top of the wooden structure sleeve (5) is connected to the upper top plate (11) by bolts provided in the upper top plate sinking holes (111).
3. The detachable high-strength wooden structure support assembly according to claim 1, characterized in that, the first detachable structure (3) includes four first upper sinking holes (31) respectively provided around the upper top plate (11).
4. The detachable high-strength wooden structure support assembly according to claim 1, characterized in that, The described lower base plate (22) is embedded in the lower base plate groove (62) at the bottom of the wooden foot cover plate (6), and the horizontal height of the bottom surface of the wooden foot cover plate (6) is slightly higher than the horizontal height of the bottom surface of the lower base plate groove (62).
5. The detachable high-strength wooden structure support assembly according to claim 2, wherein, the wooden structure sleeve (5) includes two symmetrically arranged side plates (52), and vertically arranged support plate through grooves (521) are respectively formed on the inner sides of the side plates (52). The two support plate through grooves (521) are combined to form a support plate accommodation channel (522), and the support plate accommodation channel (522) is adapted to the lower support plate (21) and the upper support plate (12).
6. The detachable high-strength wooden structure support assembly according to claim 1 or 2, wherein, a detachable plug head (511) is provided on the disassembly port (51), a decorative ring (512) is provided on the outer end of the plug head (511), the decorative ring (512) is integrally formed with the plug head (511) and the outer diameter of the decorative ring (512) is larger than the diameter of the disassembly port (51), and wood carving decorative patterns are further provided on the outer end surface of the plug head (511).
7. A manufacturing method of the detachable high-strength wooden structure support assembly according to claim 5, wherein, it includes the following steps: S1: Prepare solid wood raw materials, select wood that has been steamed and dried to a moisture content of 8 - 12%, and place it in a cool indoor environment with an air humidity of 50 - 60% for 1 - 2 months for aging; S2: Process the solid wood raw materials into blank parts, including the wooden foot cover plate (6) and two side plates (52) that make up the wooden structure sleeve (5); S3: Vertically penetrate the side plates (52) to form support plate through grooves (521) on the inner sides of each side plate (52), and then splice and bond the inner sides of the two side plates (52) facing each other to form a through support plate accommodation channel (522). The size of the support plate accommodation channel (522) is adapted to the sizes of the lower support plate (21) and the upper support plate (12). Process a horizontally penetrating disassembly port (51) through the side plate (52) on the side of one of the side plates (52). The disassembly port (51) is located at the connection of the T-shaped metal upper support leg (1) and the T-shaped metal lower support leg (2). Vertically penetrate the middle of the wooden foot cover plate (6) to form a vertical through hole (61), and form a lower base plate groove (62) on the bottom surface of the wooden foot cover plate (6); S4: Decorate and shape the outside of the wooden structure sleeve (5) and the wooden foot cover plate (6), and after decoration, apply paint to form a wear-resistant surface layer; S5: Put the wooden foot cover plate (6) on the T-shaped metal lower support leg (2) and fix it with several bolts. After fixing, put the wooden structure sleeve (5) on the lower support plate (21), insert the upper support plate (12) into the wooden structure sleeve (5). At this time, the splicing joint of the lower support plate (21) and the upper support plate (12) is located at the disassembly port (51). Fix the lower support plate (21) and the upper support plate (12) with several bolts, and finally fix the top of the wooden structure sleeve (5) on the T-shaped metal upper support leg (1) with several bolts.
Citation Information
Patent Citations
Detachable high-strength wood supporting assembly
CN212280570U