Plate support connection structure
The plate support connection structure enables quick and secure assembly of bed frames by using a limiting unit and connecting units with through holes and auxiliary positioning members, addressing disassembly challenges and screw stripping problems.
Patent Information
- Application Number
- TW114137319
- Authority / Receiving Office
- TW · TW
- Patent Type
- Patents
- Current Assignee / Owner
- Filing Date
- 2025-09-26
- Publication Date
- 2026-07-11
- Estimated Expiration
- 2045-09-25
AI Technical Summary
Existing bed frames are difficult to disassemble and reassemble due to large size and screw stripping issues, requiring precise screw hole alignment and increasing assembly time, which complicates replacement and maintenance.
A plate support connection structure with a limiting unit, supporting units, and connecting units, featuring through holes, supporting and locking sections, and auxiliary positioning members, allowing for quick assembly and disassembly by aligning and locking plate units through the use of through holes and connecting units.
Facilitates easy and efficient assembly and disassembly of bed frames by ensuring precise alignment and secure locking, reducing assembly time and minimizing screw stripping issues.
Smart Images

Figure IMG-2_DRAW_114137319-A0305-14-0001-1 
Figure IMG-2_DRAW_114137319-A0305-14-0002-2 
Figure IMG-2_DRAW_114137319-A0305-14-0003-3
Abstract
Description
Technical Field
[0001] This invention relates to a board connection structure, and more particularly to a board support connection structure for splicing different board pieces. Prior Technology
[0002] Most beds used for sleeping at home are cut to the required size by carpenters and assembled into the required bed frame. However, when these bed frames need to be replaced in the future, they are often too large to be easily disassembled. In addition, most commonly used beds are fixed with screws, but after repeated tightening, the screws are prone to stripping, which makes it impossible to assemble the bed set smoothly.
[0003] Furthermore, some bedding stores on the market use screw-locked assembly bed structures to make it easy for users to assemble and disassemble the bed frame as needed. However, the manufacturing process of these screw-locked bed structures not only requires careful consideration of the precision between the screw holes in the board material and the screws during processing to avoid assembly failure due to excessive tolerances, thus increasing assembly time, but also the possibility of stripped screws after repeated tightening. Therefore, it is necessary to provide a connection structure that makes it easy to assemble the board material and reduce the above-mentioned disadvantages. Summary of the Invention
[0004] The purpose of this invention is to provide a plate support and connection structure that can be used to splice multiple plates.
[0005] To achieve the above objectives, the plate support connection structure provided by the present invention includes a limiting unit, at least one supporting unit, and at least one connecting unit. The limiting unit is a plate and has at least one through hole. The supporting units are each arranged in the corresponding through holes, and each supporting unit includes a supporting section, a connecting section, and a locking section. One end of each connecting section is adjacent to the supporting section, and the other end is adjacent to the locking section. The connecting unit connects the supporting unit arranged in each through hole to the limiting unit. Each supporting section protrudes from one end of the through hole, and each locking section protrudes from the other end of the through hole. Each connecting section is disposed within the through hole.
[0006] Furthermore, the locking sections of the support units are assembled into at least one plate unit, and each plate unit is provided with at least one connecting hole, and the locking section of each support unit is disposed in one of the connecting holes.
[0007] Furthermore, each of the support segments of the support unit has a support pipe diameter, and each of the locking segments has a locking pipe diameter, wherein the locking pipe diameter is less than or equal to the support pipe diameter but greater than zero.
[0008] Furthermore, each of the locking sections of the support units is provided with a cover at one end.
[0009] Furthermore, each of the support units is provided with a first auxiliary positioning member and a second auxiliary positioning member in the locking section. The first auxiliary positioning member is provided with a locking hole, and the second auxiliary positioning member is provided with a support cover at one end and an auxiliary locking unit at the other end, which is locked in the locking hole.
[0010] Furthermore, the two adjacent joint holes of the two adjacent plate units are respectively arranged in the adjacent locking sections of the same plate support connection structure.
[0011] Furthermore, the plate support connection structure includes a limiting unit, a supporting unit, a plurality of locking segments, and a plurality of connecting units, wherein the limiting unit is a plate; the supporting unit is assembled on one side wall of the limiting unit, and the supporting unit has a supporting pipe diameter; the locking segments are respectively assembled on the other side wall of the limiting unit, and each locking segment has a locking pipe diameter; and the connecting units respectively connect and fix the supporting unit and the locking segment to the side wall corresponding to the limiting unit; wherein each locking pipe diameter is less than or equal to the supporting pipe diameter but greater than zero.
[0012] Furthermore, the locking segments are assembled into at least one plate unit, and each plate unit is provided with at least one connecting hole, and each locking segment is disposed in one of the connecting holes.
[0013] Furthermore, each of these locking sections is provided with a cover at one end.
[0014] Furthermore, each of the locking sections is provided with a first auxiliary positioning member and a second auxiliary positioning member. The first auxiliary positioning member is provided with a locking hole, and the second auxiliary positioning member is provided with a support cover at one end and an auxiliary locking unit at the other end, which is locked in the locking hole.
[0015] The plate support connection structure of the present invention mainly involves providing a required number of through holes in the limiting unit according to its needs. After the supporting units are assembled in the through holes, the connecting units fix the supporting units to the through holes. Alternatively, the connecting units can be used to assemble the supporting sections on one of the opposite side walls of the limiting unit, and the connecting units can also assemble the locking sections on the other side wall of the limiting unit. In this way, the plate units can be assembled in the locking sections and supporting sections through the connecting holes, thereby achieving the purpose of quickly assembling the plate units to the required size and saving assembly time. Simple Explanation of the Diagram
[0016] Figure 1: A three-dimensional schematic diagram of the plate support connection structure of the present invention. Figure 2: A three-dimensional schematic diagram of the plate support connection structure of the present invention from another perspective. Figure 3: An exploded perspective view of the combined plate unit of the plate support connection structure of the present invention. Figure 4: A three-dimensional schematic diagram of the combined plate units of the plate support connection structure of the present invention. Figure 5: A cross-sectional schematic diagram of the combined plate unit of the plate support connection structure of the present invention. Figures 6 and 7 are schematic diagrams illustrating the operation of the combined plate unit, the first auxiliary positioning member, and the second auxiliary positioning member locked in the plate support connection structure of the present invention. Figure 8: A cross-sectional schematic diagram of the combined plate unit, the first auxiliary positioning member and the second auxiliary positioning member locked in the plate support connection structure of the present invention. Figures 9 and 10 are schematic diagrams illustrating the operation of the combined plate unit, the first auxiliary positioning member, and the locking cover of the plate support connection structure of the present invention. Figure 11: A cross-sectional schematic diagram of the combined plate unit, the first auxiliary positioning member and the cover locked thereon of the plate support connection structure of the present invention. Figure 12: A schematic diagram of the combination of the plate support connection structure of the present invention with the plate units. Figure 13: A schematic diagram from another perspective of the combination of the plate support connection structure of the present invention with the plate units. Figure 14: A three-dimensional schematic diagram of the plate support connection structure of the present invention, in which three support units are combined with a limiting unit. Figure 15: A schematic diagram of the combination of the limiting unit and three support units of the plate support connection structure of the present invention in multiple plate units. Figure 16: A three-dimensional schematic diagram of the four support units of the plate support connection structure of the present invention combined with a limiting unit. Figure 17: A schematic diagram of the combination of the limiting unit and its four support units with multiple plate units in the plate support connection structure of the present invention. Figures 18 and 19 are schematic diagrams showing the use of the plate support connection structure of the present invention, which has different numbers of support segments combined with multiple plate units. Figures 20 to 22 are three-dimensional schematic diagrams of a plate support connection structure with different numbers of support segments according to another embodiment of the present invention. Implementation
[0017] Several preferred embodiments of the technical features and operation methods of this application are described below with reference to the accompanying drawings for examination. Furthermore, the drawings in this invention are for illustrative purposes and may not be drawn to actual scale; the scale in the drawings is not intended to limit the scope of protection sought by this invention.
[0018] Regarding the technology of this invention, please refer to Figures 1 to 22. This invention provides a board support connection structure, which can be used for splicing bed frames, tables, chairs, stages, or adjacent boards. Please refer to Figures 1 to 19 first. This board support connection structure includes:
[0019] A limiting unit 10 is a plate and has at least one through hole 11.
[0020] At least one support unit 20 is provided, each of which is disposed in a corresponding through hole 11 (refer to Figures 1 to 12). Each support unit 20 includes a support section 21, a connecting section 22, and a locking section 23. One end of each connecting section 22 is adjacent to the support section 21, and the other end is adjacent to the locking section 23. Each support section 21 of the support unit 20 has a support tube diameter R1, and each locking section 23 has a locking tube diameter R2. Each of the locking sections 23 of the support unit 20 may be provided with a cover 24 at one end as required, but is not limited thereto. Furthermore, each support unit 20 may be provided with a first auxiliary positioning member 25 and a second auxiliary positioning member 26 at the locking section 23 as required. The first auxiliary positioning member 25 is provided with a locking hole 251, and the second auxiliary positioning member 26 is provided with a support cover 261 at one end and an auxiliary locking unit 262 at the other end, which is locked into the locking hole 251, but is not limited thereto.
[0021] At least one connecting unit 30 connects the support unit 20 assembled in each through hole 11 to the limiting unit 10. In this embodiment, the connecting units 30 are welded joint structures, but are not limited thereto; and
[0022] At least one plate unit 40, each plate unit 40 is provided with at least one connecting hole 41, each locking segment 23 is provided in one of the connecting holes 41, wherein two adjacent plate units 40 are respectively provided in the adjacent locking segments 23 of the same plate support connection structure;
[0023] Each of the supporting segments 21 protrudes from one end of the through hole 11, and each of the locking segments 23 protrudes from the other end of the through hole 11, and each of the connecting segments 22 is disposed within the through hole 11;
[0024] Wherein, each of the locking pipe diameters R2 is less than or equal to each of the supporting pipe diameters R1 but greater than zero;
[0025] Furthermore, please refer to Figures 20 to 22, which show another embodiment of the plate support and connection structure. The main structural features that are the same as those in the above embodiments will not be repeated here. Specifically:
[0026] The limiting unit 10 is a plate.
[0027] The support unit 20 is assembled on the side wall of one side of the limiting unit 10, and the support unit 20 has the support tube diameter R1. In this other embodiment, the support tube diameter R1 of the support unit 20 is the same as the support tube diameter R1 of the support segment 21 of the support unit 20 described in the previous embodiment.
[0028] The locking segments 23 are respectively assembled on the side wall of the other side of the limiting unit 10, and each locking segment 23 has a locking tube diameter R2. The locking tube diameter R2 of the locking segment 23 described in this other embodiment is the same as the locking tube diameter R2 of the locking segment 23 of the support unit 20 described in the previous embodiment. Each locking segment 23 has a cover 24 at one end, and each locking segment 23 is further provided with a first auxiliary positioning member 25 and a second auxiliary positioning member 26. The first auxiliary positioning member 25 is provided with a locking hole 251, and the second auxiliary positioning member 26 is provided with a support cover 261 at one end and an auxiliary locking unit 262 at the other end, which is locked in the locking hole 251.
[0029] The connecting units 30 respectively connect and fix the supporting units 20 and the locking sections 23 to the sidewall corresponding to the limiting unit 10. In this embodiment, the connecting units 30 are welded joint structures generated by welding, but are not limited thereto; and
[0030] Each of the plate units 40 is provided with a connecting hole 41, and each locking segment 23 is disposed in one of the connecting holes 41;
[0031] In another embodiment of the present invention, each of the locking tube diameters R2 of the plate support connection structure is less than or equal to the support tube diameter R1 but greater than zero;
[0032] Please refer to Figures 1 to 19. The plate support connection structure of this invention mainly involves, according to requirements, the required number of through holes 11 being provided in the limiting unit 10. After the supporting units 20 are assembled in the through holes 11, the connecting units 30 fix the supporting units 20 to the through holes 11. Alternatively, the connecting units 30 can be used to assemble the supporting sections 21 onto one of the opposite side walls of the limiting unit 10, and the connecting units 30 can be used to assemble the locking sections 23 onto the other side wall of the limiting unit 10. Please refer to... Referring to Figures 14 to 17, in this embodiment, each limiting unit 10 is provided with through holes 11. The limiting unit 10 can be provided with one, two, three, or four through holes 11 as needed. Each limiting unit 10 has through holes 11, and a support unit 20 is respectively assembled with each through hole 11. The connecting unit 30 connects and fixes each support unit 20 to the through hole 11. Therefore, the locking sections 23 of the support units 20 protrude from the through holes 11 of the limiting units 10, and the locking diameter R2 of the locking sections 23 is... The diameter R1 of the support pipe is less than or equal to that of the support section 21, so the connecting unit 30 fixes at least one of the connecting section 22 and the support section 21 at the through hole 11, and the locking section 23 is approximately similar to the thickness of the plate unit 40, but not limited thereto. Thus, the limiting unit 10, in conjunction with the support unit 20, can be assembled in the connecting hole 41 of the plate unit 40 and provide the required support force. Please refer to Figures 6 to 11. Adjacent plate units 40 are respectively assembled in the same... The locking sections 23 of the support units 20 of the limiting unit 10 allow the plate units 40 to be spliced as needed. The locking sections 23 of the support units 20 can also be covered with covers 24 as needed. Alternatively, the first auxiliary positioning members 25 can be provided on the connecting sections 22, and the auxiliary locking units 262 of the second auxiliary positioning members 26 can be locked in the locking holes 251, so that the support covers 261 can be covered on the locking sections 23. Furthermore, the plate units 40 can be limited between the support covers 261 and the limiting unit 10.
[0033] Furthermore, please refer to Figures 20 to 22. In another embodiment of the present invention, the plate support connection structure is mainly composed of the connecting units 30 on the opposite side walls of the limiting units 10, whereby the supporting section 21 is assembled on one of the side walls, and the connecting units 30 are used to assemble the locking section 23 on the other side wall of the limiting units 10. Thus, the locking section 23 can lock and limit the connecting holes 41 of the adjacent plate units 40, and the limiting unit 10 can limit the plate units 40 and can be used together with the supporting section 21 on its other side wall to support the plate units 40.
[0034] In summary, the plate support connection structure of the present invention mainly involves providing a required number of through holes 11 in the limiting unit 10 according to its needs. After the supporting units 20 are assembled in the through holes 11, the connecting units 30 fix the supporting units 20 to the through holes 11. Alternatively, the connecting units 30 can be used to assemble the supporting sections 21 on one of the opposite side walls of the limiting unit 10, and the connecting units 30 can be used to assemble the locking sections 23 on the other side wall of the limiting unit 10. In this way, the plate units 40 can be assembled in the locking sections 23 and the supporting sections 21 through the connecting holes 41, thereby achieving the purpose of quickly assembling the plate units 40 to the required size and saving assembly time.
[0035] 10: Limiting unit 11: Through-hole 20: Support Unit 21: Support Section 22: Connecting segment 23: Stopping segment 24: Cover 25: First auxiliary positioning component 251: Locking hole 26: Second auxiliary positioning component 261: Support cover 262: Auxiliary locking unit R1: Support pipe diameter R2: Locking pipe diameter 30: Connection Unit 40: Plate Unit 41: Connecting hole
Claims
1. A plate support connection structure, comprising: a limiting unit, which is a plate and has at least one through hole; at least one support unit, each of the support units being disposed in corresponding through holes, and each of the support units comprising a support segment, a connecting segment, a locking segment, a first auxiliary positioning member and a second auxiliary positioning member, wherein one end of each connecting segment is adjacent to the support segment and the other end is adjacent to the locking segment, wherein... Each support unit is provided with a first auxiliary positioning member and a second auxiliary positioning member at the locking section. The first auxiliary positioning member is provided with a locking hole, and the second auxiliary positioning member is provided with a support cover at one end and an auxiliary locking unit at the other end, which is locked into the locking hole. There is also at least one connecting unit, which connects the support unit assembled in each through hole to the limiting unit. The connecting unit is a welded joint structure. Each support section protrudes from one end of the through hole, and each locking section protrudes from the other end of the through hole. Each connecting section is disposed in the through hole.
2. The plate support connection structure as described in claim 1, further comprising the locking segments of the support units being assembled into at least one plate unit, and each plate unit being provided with at least one connecting hole, wherein the locking segment of each support unit is disposed in one of the connecting holes.
3. The plate support connection structure as described in claim 1, further comprising: each of the support segments of the support unit having a support pipe diameter, and each of the locking segments having a locking pipe diameter, wherein, The diameter of the locking pipe is less than or equal to the diameter of the supporting pipe, but greater than zero.
4. The plate support connection structure as described in claim 1, further comprising a cover at one end of each of the locking sections of the support units.
5. The plate support connection structure as described in claim 2, wherein, Two adjacent plate units are respectively assembled in the adjacent locking sections of the same plate support connection structure.
6. A plate support connection structure, comprising: a limiting unit, which is a plate; a supporting unit, which is assembled on one side wall of the limiting unit, and the supporting unit has a supporting pipe diameter; and a plurality of locking sections, which are respectively assembled on the other side wall of the limiting unit, and each of the locking sections has a locking pipe diameter, wherein, Each of the locking segments is further provided with a first auxiliary positioning member and a second auxiliary positioning member. The first auxiliary positioning member is provided with a locking hole, and the second auxiliary positioning member is provided with a support cover at one end and an auxiliary locking unit at the other end, which is locked into the locking hole. There are also a plurality of connecting units, which respectively connect and fix the support units to the locking segments to the side wall corresponding to the limiting unit. The connecting units are welded joint structures. The diameter of each locking tube is less than or equal to the diameter of the support tube but greater than zero.
7. The plate support connection structure as described in claim 6, further comprising the locking segments being assembled into at least one plate unit, and each plate unit being provided with at least one connecting hole, and each locking segment being disposed in one of the connecting holes.
8. The plate support connection structure as described in claim 6, further comprising a cover at one end of each of the locking sections.