Footstool and furniture with storage function
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- AUKEY TECHNOLOGY CO LTD
- Filing Date
- 2025-09-05
- Publication Date
- 2026-08-07
AI Technical Summary
很多现有的脚凳由于无法压缩或拆卸,其体积在生产、运输及销售环节均保持不变,导致包装体积较大,不利于存储和物流运输,增加了成本
Smart Images

Figure CN224597823U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to furniture, specifically to a footstool and furniture with storage function. Background Technology
[0002] A footstool is a piece of furniture designed for resting one's feet while seated. Its basic structure typically includes a support surface (top) and a supporting structure to support the lower limbs, thus reducing fatigue from prolonged sitting. Footstools not only improve seating comfort but are also frequently used as temporary seating or small storage platforms, making them widely applicable in homes, offices, and public spaces. Many existing footstools, because they cannot be compressed or disassembled, maintain their size throughout production, transportation, and sales, resulting in large packaging volumes that are inconvenient for storage and logistics, increasing costs. Utility Model Content
[0003] Therefore, this utility model provides a footstool to solve the above problems.
[0004] To solve the above-mentioned technical problems, the present invention provides a footstool, comprising: a main body; and a footrest portion disposed on the top of the main body; wherein the main body includes a compressible component and a support portion, the compressible component being switchable between a compressed state and an extended state, and the support portion being connected to the compressible component and holding the compressible component in the extended state.
[0005] Optionally, the compressible assembly includes a top ring, a bottom plate, and a flexible sheet, with the top ring fixed to the top end of the flexible sheet and the bottom plate fixed to the bottom end of the flexible sheet.
[0006] Optionally, the compressible assembly includes a top ring, a bottom plate, and a flexible sheet having opposing first and second ends. The bottom plate is fixed to the first end of the flexible sheet, and the second end passes through the outer edge of the top ring and through a through hole in the top ring before being fixed to the bottom plate.
[0007] Optionally, the compressible assembly includes a top ring, a first bottom plate, a second bottom plate, and a flexible sheet. The flexible sheet has a first end and a second end opposite to each other. The first bottom plate is fixed to the first end of the flexible sheet. The second end passes through the outer edge of the top ring and through the through hole of the top ring before being fixed to the second bottom plate. The second bottom plate is fixed to the first bottom plate.
[0008] Optionally, the support includes a plurality of support rods that pass through and are fixed to the base plate, with the top end of each support rod fixed to the top ring.
[0009] Optionally, the top ring is fixed with multiple screws, and the top ends of the multiple support rods are provided with threaded holes, with the multiple screws respectively threaded into the multiple threaded holes.
[0010] Optionally, it also includes multiple anti-detachment components, each with a threaded hole. When the compressible assembly is in a compressed state, the multiple anti-detachment components pass through the base plate, and the multiple screws are respectively threaded into the threaded holes of the multiple anti-detachment components.
[0011] The area of the first base plate is larger than that of the second base plate, and the first base plate has through holes in the area not covered by the second base plate for the support to pass through.
[0012] This utility model also provides a piece of furniture with storage function, including: a compressible component that can switch between a compressed state and an unfolded state, wherein in the unfolded state the compressible component defines a receiving space; and a support portion that is connected to the compressible component and holds the compressible component in the unfolded state.
[0013] This utility model also provides a furniture with storage function, including: a compressible component that can switch between a compressed state and an unfolded state, the compressible component including a top ring, a bottom plate and a flexible sheet, the flexible sheet being configured as a hollow three-dimensional structure, the bottom plate being located at the bottom end of the three-dimensional structure and the top ring being located at the top end of the three-dimensional structure; and a support portion connected to the top ring and the bottom plate and holding the compressible component in the unfolded state.
[0014] The present invention has the following advantages: when storage / transportation is required, the compressible component can be switched to a compressed state. The compressible component in the compressed state occupies less space than the compressible component in the unfolded state, which is beneficial for storage and logistics transportation and helps to reduce costs. Attached Figure Description
[0015] To more clearly illustrate the specific embodiments of this utility model or the technical solutions in the prior art, the drawings used in the description of the specific embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are some embodiments of this utility model. For those skilled in the art, other drawings can be obtained from these drawings without creative effort.
[0016] Figure 1 This is a perspective view of a footstool according to an embodiment of the present utility model.
[0017] Figure 2 This is a perspective view of the main body of the footstool according to an embodiment of the present utility model.
[0018] Figure 3 This is a cross-sectional view of the compressible component of the main body of the footstool according to an embodiment of the present invention.
[0019] Figure 4This is a perspective view of the top ring of the compressible component of the main body of the footstool according to an embodiment of the present invention.
[0020] Figure 5 This is a cross-sectional view of a compressible component in another embodiment of the main body of the footstool according to an embodiment of the present invention.
[0021] Figure 6 This is a cross-sectional view of a compressible component in another embodiment of the main body of the footstool according to an embodiment of the present invention.
[0022] Figure 7 This is a cross-sectional view of the compressible component of the main body of a footstool according to an embodiment of the present invention, wherein the first base plate is omitted.
[0023] Figure 8 This is a cross-sectional view of the compressible component of the main body of the footstool according to an embodiment of the present invention.
[0024] Figure 9 This is an exploded view of the main body of the footstool according to an embodiment of the present utility model.
[0025] Figure 10 This is a perspective view of the first base plate, a compressible component of the main body of a footstool according to an embodiment of the present invention.
[0026] Figure 11 This is a partially exploded view of the main body of the footstool according to an embodiment of the present invention.
[0027] Figure 12 This is a schematic diagram of the compressible component of the main body of the footstool according to an embodiment of the present invention in a compressed state.
[0028] Figure 13 This is a schematic diagram of the compressible component of the main body of the footstool according to an embodiment of the present invention in a compressed state from another angle.
[0029] Figure 14 This is a cross-sectional view of the compressible component of the main body of the footstool according to an embodiment of the present invention in a compressed state. Detailed Implementation
[0030] The technical solution of this utility model will now be clearly and completely described with reference to the accompanying drawings. Obviously, the described embodiments are only some, not all, of the embodiments of this utility model. Based on the embodiments of this utility model, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this utility model.
[0031] Furthermore, the technical features involved in the different embodiments of this utility model described below can be combined with each other as long as they do not conflict with each other.
[0032] The inventors of this patent application discovered that many existing footstools, due to their inability to be compressed or disassembled, maintain a constant volume throughout production, transportation, and sales, resulting in large packaging volumes that are inconvenient for storage and logistics, thus increasing costs. To address this problem, the inventors propose a solution where the footstool's main body is compressible, capable of switching between a compressed and unfolded state. In its compressed state, the main body occupies less space, facilitating storage and logistics. Furthermore, the inventors have found that this compressible main body concept can also be applied to furniture with storage functions.
[0033] refer to Figure 1-3 In one embodiment, a footstool 100 includes a main body 10 and a footrest 20 disposed on the top of the main body 10. The main body 10 includes a compressible component 30 and a support portion 40, the compressible component 30 being capable of being compressed (see...). Figure 12 and Figure 13 ) and unfolded state (see Figure 2 Switching between the two states, the support 40 is connected to the compressible component 30 and holds the compressible component 30 in the unfolded state.
[0034] In one embodiment, the main body 10 can be used alone as a piece of furniture with storage function, in which case the compressible component 30 needs to define a storage space 301.
[0035] With the above structure, when storage / transportation is required, the compressible component 30 can be switched to a compressed state. The compressible component 30 in the compressed state occupies less space than the compressible component 30 in the unfolded state, which is beneficial for storage and logistics transportation and helps to reduce costs.
[0036] The footrest 20 covers the opening end of the receiving space 301 and is used to place the feet when seated. Understandably, in another embodiment, the footstool 100 can also be used as a seat, in which case the user can sit on the footrest 20. In yet another embodiment, the footstool 100 can also be used as a bedside table. Understandably, the structure of the footstool 100 is also suitable for other furniture with storage functions, which will not be listed here.
[0037] In one embodiment, the compressible assembly 30 includes a top ring 50, a bottom plate 60, and a flexible sheet 70, which is configured as a hollow and compressible three-dimensional structure by means of the top ring 50 and the bottom plate 60. In normal use, the bottom plate 60 is located at the bottom end of the three-dimensional structure, and the top ring 50 is located at the top end of the three-dimensional structure.
[0038] In one embodiment, the top ring 50 is a flat annular member, such as... Figure 4 As shown, the top ring 50 includes an outer edge 501 and an inner edge 502, the inner edge 502 defining a through hole 503. Although Figure 4 The illustration shows the top ring 50 as a circular ring, but in other embodiments, the shape of the top ring 50 can be selected as needed; for example, it can be a triangle, quadrilateral, pentagon, hexagon, etc. Although Figure 4 The illustration shows the top ring 50 as a single-piece structure, but in other embodiments, the top ring 50 can be a shape formed by splicing. Although Figure 4 The illustration shows that the top ring 50 is a flat planar structure, but in other embodiments, the top ring 50 can be a non-planar structure. For example, in the top view, the top ring 50 is a ring, but in the side view, the top ring 50 is an arc.
[0039] exist Figure 3 From the displayed perspective, when the compressible component 30 is in the unfolded state, the top ring 50 and the base plate 60 are spaced apart by a certain distance, with the top ring 50 positioned above the base plate 60. This results in the three-dimensional structure being open at the top and closed at the bottom. The receiving space 301 defined by the flexible sheet 70 and the base plate 60 enables the footstool 100 to store items. Understandably, in another embodiment, the footstool 100 does not need to have the ability to store items; in this case, the top ring 50 can be replaced by a flat plate. In yet another embodiment, the base plate 60 can also be ring-shaped.
[0040] In one embodiment, the flexible sheet 70, formed by the top ring 50 and the bottom plate 60, has a hollow frustum-shaped three-dimensional structure. It is understood that the three-dimensional structure is not limited to this; in other embodiments, it can be a hollow cylinder, a hollow prism, etc. In one embodiment, the flexible sheet 70 is fabric. However, the material of the flexible sheet 70 is not limited to this. For example, in other embodiments, the flexible sheet 70 can be leather, artificial leather, flexible plastic sheet, flexible mesh structure, etc.
[0041] The top ring 50 and the flexible sheet 70, as well as the bottom plate 60 and the flexible sheet 70, can be connected together in several different ways to form the aforementioned three-dimensional structure. For example, in one embodiment, the top ring 50 is fixed to the top end of the flexible sheet 70, and the bottom plate 60 is fixed to the bottom end of the flexible sheet 70. In this embodiment, the flexible sheet 70 is quadrilateral, having a left end, a right end, a top end, and a bottom end, and the left and right ends can be connected together by conventional joining means (e.g., gluing, sewing). [Reference] Figure 5In this embodiment, the top ring 50 is surrounded by the top end of the flexible sheet 70, wherein the top end of the flexible sheet 70 includes a first portion 701 opposite to the top surface of the top ring 50 and a second portion 702 opposite to the bottom surface of the top ring 50. Figure 5 From the displayed perspective, the sidewall 703 of the three-dimensional structure formed by the flexible sheet 70 is generally inclined to the vertical direction. The first portion 701 is connected to the sidewall 703 and extends generally in the horizontal direction. The second portion 702 is connected to the first portion 701 and extends generally in the horizontal direction. With this construction, the top ring 50 is surrounded by the top end of the flexible sheet 70. Figure 5 In this embodiment, the top ring 50 is mostly surrounded by the top end of the flexible sheet 70. Understandably, in other embodiments, the entire top ring 50 is surrounded by the top end of the flexible sheet 70. In this embodiment, the first portion 701 and the second portion 702 can be fixed to the top ring 50 by gluing, nailing, or other means. In another embodiment, the second portion 702 can be omitted, in which case only the first portion 701 is fixed to the top ring 50 by gluing, nailing, or other means. In one embodiment, in... Figure 6 From the displayed perspective, the bottom end of the flexible sheet 70 includes a third portion 704 connected to the sidewall 703. This third portion 704 faces the bottom surface of the base plate 60 and can be fixed to the bottom surface of the base plate 60 by gluing, nailing, or other means. Alternatively, in another embodiment, the third portion 704 can be fixed to the top surface of the base plate 60 by gluing, nailing, or other means. Through the above construction, the top ring 50 and the flexible sheet 70 are connected together, and the base plate 60 and the flexible sheet 70 are connected together to form a compressible assembly 30 with compressible capacity. It should be noted that, at this time, the flexible sheet 70 forms a single-layer sidewall 703 for the compressible assembly 30, and the inner circumferential surface of this single-layer sidewall 703 is the circumferential side surface of the receiving space 301.
[0042] The top ring 50 and the flexible sheet 70, as well as the bottom plate 60 and the flexible sheet 70, can also be connected together in another way to form the aforementioned three-dimensional structure. Specifically, in another embodiment, refer to... Figure 3 , Figure 7 and Figure 8The flexible sheet 70 has a first end 705 and a second end 706. The base plate 60 includes a first base plate 61 and a second base plate 62. The first base plate 61 is fixed to the first end 705 of the flexible sheet 70. The second end 706 passes through the outer edge 501 of the top ring 50 and through the through hole 503 of the top ring 50 before being fixed to the second base plate 62. The second base plate 62 is fixed to the first base plate 61. In this embodiment, the first end 705 of the flexible sheet 70 is the bottom end with a third part 704 in the aforementioned embodiment. The third part 704 is opposite to the bottom surface of the first base plate 61 and can be fixed to the bottom surface of the first base plate 61 by gluing, nailing, or other means. It can be understood that in another embodiment, the third part 704 can be fixed to the top surface of the first base plate 61 by gluing, nailing, or other means.
[0043] like Figure 3 As shown, the flexible sheet 70 extends upward from the first end 705 to the top ring 50, then bends at the outer edge 501 of the top ring 50 and extends along the top surface of the top ring 50. After reaching the inner edge 502 of the top ring 50, it bends again and passes through the through hole 503 of the top ring 50. Thereafter, the flexible sheet 70 extends downward until the second end 706 can contact the second base plate 62. The second end 706 includes a fourth portion 707 opposite to the second base plate 62 (see...). Figure 7 The fourth part 707 can be fixed to the bottom surface of the second base plate 62 by gluing, nailing, or other means. It can be understood that, in another embodiment, the fourth part 707 can be fixed to the top surface of the second base plate 62 by gluing, nailing, or other means. Through the above construction, the flexible sheet 70 provides a double-layered sidewall for the three-dimensional structure, namely, an outer sidewall 708 that bypasses the top ring 50 and an inner sidewall 709 that passes through the through hole 503 of the top ring 50. In this case, the inner circumferential surface of the inner sidewall 709 is the circumferential side surface of the receiving space 301. Figure 3 As can be clearly seen, the top ring 50 is positioned at the top between the outer sidewall 708 and the inner sidewall 709. In this embodiment, the top ring 50 can be connected to the flexible sheet 70 by conventional connection methods (e.g., gluing, nailing, etc.). In another embodiment, the top ring 50 is not connected to the flexible sheet 70 and is positioned by the support portion 40.
[0044] like Figure 3As shown, the second base plate 62 is located on the first base plate 61, and the two can be connected together by conventional means of connection (e.g., screws, nails, etc.) to form the base plate 60. Understandably, in another embodiment, the individual base plate 60 is also applicable to the aforementioned embodiments. In this embodiment, the base plate 60 is fixed to the first end 705 of the flexible sheet 70, and the second end 706 passes through the outer edge of the top ring and through the through hole 503 of the top ring before being fixed to the base plate 60. In this embodiment, the first end 705 of the flexible sheet 70 is the bottom end with the third portion 704 in the aforementioned embodiments. The third portion 704 is opposite to the bottom surface of the base plate 60, and the third portion 704 can be fixed to the bottom surface of the base plate 60 by gluing, nailing, etc. Understandably, in another embodiment, the third portion 704 can be fixed to the top surface of the base plate 60 by gluing, nailing, etc. The fourth portion 707 can be fixed to the top surface of the base plate 60 by gluing, nailing, etc.
[0045] refer to Figures 9 to 11 In one embodiment, the support portion 40 includes a plurality of support rods 41 that pass through and are fixed to the base plate 60, with the top end of each support rod 41 fixed to the top ring 50. Regardless of the manner in which the top ring 50 and the flexible sheet 70, and the base plate 60 and the flexible sheet 70, are connected, the support portion 40 can be used to hold the compressible assembly 30 in its unfolded state. It should be noted that when a single base plate 60 is used, the base plate 60 needs to have through holes for the support rods 41 to pass through; while when a base plate 60 composed of a first base plate 61 and a second base plate 62 is used, the first base plate 61 has through holes 611 for the support rods 41 to pass through. The following description uses an example where the base plate 60 includes a first base plate 61 and a second base plate 62.
[0046] The number of multiple support rods 41 is generally at least three; in this embodiment, the number of multiple support rods 41 is four. Understandably, in other embodiments, the number of support rods 41 can be selected as needed. In one embodiment, each support rod 41 includes a rod portion 42 and a support plate 43 fixed to the rod portion 42. The support plate 43 is generally perpendicular to the rod portion 42 and has through holes; in this embodiment, the number of through holes on the support plate 43 is two. Correspondingly, for each support rod 41, the first base plate 61 has two threaded holes 612, through which the rod portion 42 passes, and the two threaded holes 612 are aligned with the two through holes on the support plate 43. The support plate 43 fits against the bottom surface of the first base plate 61, and is secured by screws 44 (see [reference needed]) that pass through the two through holes on the support plate 43 and are screwed into the two threaded holes 612. Figure 11 The support plate 43 is fixed to the first base plate 61. In this way, the plurality of support rods 41 are fixed to the first base plate 61.
[0047] refer to Figure 4 In one embodiment, the top ring 50 is fixed with a plurality of screws 504, and each support rod 41 has a threaded hole at its top end (specifically, at the top end of the rod portion 42). The plurality of screws 504 are threaded into the threaded holes at the top ends of the support rods 41 in a corresponding manner. In this way, the plurality of support rods 41 are fixed to the top ring 50.
[0048] exist Figure 9 From the perspective shown, for each support rod 41, the portion of its rod 42 above the support plate 43 is located within the space defined by the flexible sheet 70. For a three-dimensional structure with double-layered sidewalls, the portion of the rod 42 above the support plate 43 is located between the outer sidewall 708 and the inner sidewall 709, and is not exposed in the receiving space 301. For a three-dimensional structure with only a single-layered sidewall, the portion of the rod 42 above the support plate 43 is located within the receiving space 301.
[0049] refer to Figure 3 and Figure 8 The area of the first base plate 61 is larger than the area of the second base plate 62. The second base plate 62 is attached to and fixed to the top surface of the first base plate 61 facing the footrest portion 20. At this time, the first base plate 61 includes a central area covered by the second base plate 62 and an annular area not covered by the second base plate 62 surrounding it. The first base plate 61 has a through hole in its annular area not covered by the second base plate 62 for the support portion 40 to pass through; that is, the aforementioned through hole 611 and two threaded holes 612 are provided in the annular area of the first base plate 61 not covered by the second base plate 62. With this structure, after each support rod 41 passes through the through hole 611, the portion of its rod 42 above the support plate 43 is located between the outer side wall 708 and the inner side wall 709, thus allowing the rod 42 to connect with the top ring 50, which is also located between the outer side wall 708 and the inner side wall 709.
[0050] For each support rod 41, the portion of its rod 42 located below the support plate 43 is exposed to serve as a foot of the compressible assembly 30, and the user can rotate the rod 42 by rotating the portion of the rod 42 located below the support plate 43, thereby causing the multiple screws 504 fixed on the top ring 50 to gradually screw into the threaded hole at the top of the rod 42.
[0051] Figure 12 and Figure 13The diagram illustrates the compressible component 30 in a compressed state at different angles. In this compressed state, the flexible sheet 70 of the compressible component 30 is compressed, allowing the top ring 50 to change from being spaced apart from the bottom plate 60 to being in contact with the bottom plate 60. This results in the height of the compressible component 30 in the compressed state being significantly smaller than that in the unfolded state. Therefore, the compressible component 30 in the compressed state occupies less space, which is beneficial for storage and logistics transportation, and helps reduce costs.
[0052] like Figure 13 As shown, when the compressible component 30 is in a compressed state, the screws 504 of the top ring 50 protrude from the through holes 611 on the first base plate 61. If not arranged in this way, the top ring 50 may move or rotate relative to the first base plate 61 due to accidental movement during transportation, causing the screws 504 of the top ring 50 to become misaligned with the through holes on the first base plate 61. In another embodiment, refer to... Figure 14 The footstool 100 also includes multiple anti-slip components 80, each with a threaded hole. When the compressible assembly 30 is in a compressed state, the multiple anti-slip components 80 pass through the base plate 60 (specifically, the first base plate 61), and the multiple screws 504 of the top ring 50 are threaded into the threaded holes of the multiple anti-slip components 80 respectively. In this embodiment, the anti-slip component 80 is a short rod with a diameter slightly smaller than the diameter of the through hole 611 on the first base plate 61. Thus, when the anti-slip component 80 passes through the through hole 611 on the first base plate 61, the first base plate 61 will not move significantly relative to the top ring 50. This is better than the case where the screws 504 of the top ring 50 pass through the through holes on the first base plate 61, because the diameter of the screws 504 is much smaller than the diameter of the through holes on the first base plate 61, thus causing the first base plate 61 to move slightly relative to the top ring 50. In another embodiment, the anti-slip component 80... Figure 14 The diagram also includes a head that fits against the bottom surface of the first base plate 61. This allows the anti-detachment component 80 to both restrict the rotation of the first base plate 61 relative to the top ring 50 and prevent the first base plate 61 from detaching from the top ring 50. In other words, at this time, the first base plate 61 and the top ring 50 are fixed together.
[0053] The assembly process for the footstool 100 is as follows: After the user opens the package received, it will look like this: Figure 12 As shown, firstly, the compressible component 30 is... Figure 14The device is placed on a flat surface (e.g., a desktop), with the first base plate 61 positioned above the top ring 50. The user then rotates the anti-detachment component 80 to disengage it from the screw 504 on the top ring 50. If the anti-detachment component 80 is not provided, the aforementioned steps are unnecessary. The user then inserts the support rods 41 sequentially into the through holes 611 on the first base plate 61, and rotates each support rod 41 by rotating the portion of its rod portion 42 located below the support piece 43, causing the screws 504 on the top ring 50 to screw into the threaded holes at the ends of the support rods 41, thereby securing the support rods 41 sequentially to the top ring 50. The user then pulls the first base plate 61 upwards, gradually moving it away from the top ring 50, until the bottom surface of the first base plate 61 contacts the support piece 43 on the support rod 41. The support piece 43 is then secured to the bottom surface of the first base plate 61 by screws 44. During the process of fixing the support piece 43, the flexible sheet 70 is gradually stretched, ultimately realizing the compressible component 30 from... Figure 12 The compression state shown becomes Figure 2 The unfolded state is shown. Finally, placing the footrest 20 into the open end of the compressible component 30 completes the process. Figure 1 Assembly of the footstool 100 shown.
[0054] Obviously, the above embodiments are merely illustrative examples for clear explanation and are not intended to limit the implementation. Those skilled in the art will recognize that other variations or modifications can be made based on the above description. It is neither necessary nor possible to exhaustively list all possible implementations here. However, obvious variations or modifications derived therefrom are still within the protection scope of this utility model.
Claims
1. A footstool, characterized in that, include: main body; and A footrest portion, which is located at the top of the main body; The main body includes a compressible component and a support portion. The compressible component can switch between a compressed state and an extended state, and the support portion is connected to the compressible component and holds the compressible component in the extended state.
2. The footstool according to claim 1, characterized in that, The compressible assembly includes a top ring, a bottom plate, and a flexible sheet, with the top ring fixed to the top end of the flexible sheet and the bottom plate fixed to the bottom end of the flexible sheet.
3. The footstool according to claim 1, characterized in that, The compressible assembly includes a top ring, a bottom plate, and a flexible sheet having a first end and a second end opposite to each other. The bottom plate is fixed to the first end of the flexible sheet, and the second end passes through the outer edge of the top ring and through a through hole in the top ring before being fixed to the bottom plate.
4. The footstool according to claim 1, characterized in that, The compressible assembly includes a top ring, a first bottom plate, a second bottom plate, and a flexible sheet. The flexible sheet has a first end and a second end opposite to each other. The first bottom plate is fixed to the first end of the flexible sheet. The second end passes through the outer edge of the top ring and through the through hole of the top ring before being fixed to the second bottom plate. The second bottom plate is fixed to the first bottom plate.
5. The footstool according to any one of claims 2-4, characterized in that, The support includes multiple support rods that pass through and are fixed to the base plate, with the top end of each support rod fixed to the top ring.
6. The footstool according to claim 5, characterized in that, The top ring is fixed with multiple screws, and the top ends of the multiple support rods are provided with threaded holes, and the multiple screws are respectively threaded into the multiple threaded holes.
7. The footstool according to claim 6, characterized in that, It also includes multiple anti-detachment components, each with a threaded hole. When the compressible assembly is in a compressed state, the multiple anti-detachment components pass through the base plate, and the multiple screws are respectively threaded into the threaded holes of the multiple anti-detachment components.
8. A type of furniture with storage function, characterized in that, include: A compressible component that can switch between a compressed state and an expanded state, wherein the compressed component defines a containment space in the expanded state; and A support portion is connected to the compressible component and holds the compressible component in the unfolded state.
9. The furniture with storage function according to claim 8, characterized in that, The compressible assembly includes a top ring, a bottom plate, and a flexible sheet, with the top ring fixed to the top end of the flexible sheet and the bottom plate fixed to the bottom end of the flexible sheet.
10. The furniture with storage function according to claim 8, characterized in that, The compressible assembly includes a top ring, a bottom plate, and a flexible sheet having a first end and a second end opposite to each other. The bottom plate is fixed to the first end of the flexible sheet, and the second end passes through the outer edge of the top ring and through a through hole in the top ring before being fixed to the bottom plate.
11. The furniture with storage function according to claim 8, characterized in that, The compressible assembly includes a top ring, a first bottom plate, a second bottom plate, and a flexible sheet. The flexible sheet has a first end and a second end opposite to each other. The first bottom plate is fixed to the first end of the flexible sheet. The second end passes through the outer edge of the top ring and through the through hole of the top ring before being fixed to the second bottom plate. The second bottom plate is fixed to the first bottom plate.
12. The furniture with storage function according to any one of claims 9-11, characterized in that, The support includes multiple support rods that pass through and are fixed to the base plate, with the top end of each support rod fixed to the top ring.
13. The furniture with storage function according to claim 12, characterized in that, The top ring is fixed with multiple screws, and the top ends of the multiple support rods are provided with threaded holes, and the multiple screws are respectively threaded into the multiple threaded holes.
14. The furniture with storage function according to claim 13, characterized in that, It also includes multiple anti-detachment components, each with a threaded hole. When the compressible assembly is in a compressed state, the multiple anti-detachment components pass through the base plate, and the multiple screws are respectively threaded into the threaded holes of the multiple anti-detachment components.
15. A type of furniture with storage function, characterized in that, include: A compressible assembly capable of switching between a compressed state and an expanded state, the compressible assembly comprising a top ring, a bottom plate, and a flexible sheet configured as a hollow three-dimensional structure, the bottom plate being located at the bottom end of the three-dimensional structure, and the top ring being located at the top end of the three-dimensional structure; and A support portion, which is connected to the top ring and the bottom plate and holds the compressible assembly in the unfolded state.
16. The furniture with storage function according to claim 15, characterized in that, The top ring is fixed to the top of the flexible sheet, and the bottom plate is fixed to the bottom of the flexible sheet.
17. The furniture with storage function according to claim 15, characterized in that, The flexible sheet has a first end and a second end, with the base plate fixed to the first end of the flexible sheet and the second end passing through the outer edge of the top ring and through the through hole of the top ring before being fixed to the base plate.
18. The furniture with storage function according to claim 15, characterized in that, The base plate includes a first base plate and a second base plate. The flexible sheet has a first end and a second end opposite to each other. The first base plate is fixed to the first end of the flexible sheet. The second end passes through the outer edge of the top ring and through the through hole of the top ring and is then fixed to the second base plate. The second base plate is fixed to the first base plate.
19. The furniture with storage function according to any one of claims 16-18, characterized in that, The support includes multiple support rods that pass through and are fixed to the base plate, with the top end of each support rod fixed to the top ring.
20. The furniture with storage function according to claim 19, characterized in that, The top ring is fixed with multiple screws, and the top ends of the multiple support rods are provided with threaded holes, and the multiple screws are respectively threaded into the multiple threaded holes.
21. The furniture with storage function according to claim 18, characterized in that, The area of the first base plate is larger than that of the second base plate, and the first base plate has through holes in the area not covered by the second base plate for the support to pass through.