FOLDABLE PLASTIC-STEEL CHAIR
20220354256 ยท 2022-11-10
Inventors
Cpc classification
A47C5/10
HUMAN NECESSITIES
A47C7/16
HUMAN NECESSITIES
International classification
Abstract
A foldable plastic-steel chair comprises a seat board assembly, a backrest, and a metal supporting frame. The seat board assembly and the backrest are connected to the metal supporting frame, and the seat board assembly comprises a seat board. The seat board comprises a surface plate and a surrounding edge connected to a periphery of the surface plate and extending downward, and the seat board is a vacuum-formed plastic board. The seat board assembly further comprises a metal frame abutting a periphery of seat board, and a bottom end of the metal frame is bent outward to form a hook. A lower end portion of the surrounding edge of the seat board is disposed in the hook, and a portion of the metal frame abuts an inner side of the surrounding edge. The hook is fixedly clamped to a lower edge of the surrounding edge.
Claims
1. A foldable plastic-steel chair, comprising: a seat board assembly, a backrest, and a metal supporting frame, wherein: the seat board assembly and the backrest are connected to the metal supporting frame, the seat board assembly comprises a seat board, the seat board comprises a surface plate and a surrounding edge connected to a periphery of the surface plate and extending downward, the seat board is a vacuum-formed plastic board, the seat board assembly further comprises a metal frame abutting a periphery of seat board, a bottom end of the metal frame is bent outward to form a hook, a lower end portion of the surrounding edge of the seat board is disposed in the hook, a portion of the metal frame abuts an inner side of the surrounding edge, and the hook is fixedly clamped to a lower edge of the surrounding edge.
2. The foldable plastic-steel chair according to claim 1, wherein: the backrest is a second vacuum-formed plastic board, an upper edge of the backrest is at least folded rearward to form a buckle edge, the metal supporting frame comprises a slot or an insertion groove corresponding to the buckle edge, the buckle edge is disposed in the slot or the insertion groove, and the slot or the insertion groove is configured to be pressed to enable the buckle edge to be fixedly clamped by the slot or the insertion groove.
3. The foldable plastic-steel chair according to claim 1, wherein: a middle portion of the surface plate is a concave structure, or the surface plate is a concave structure.
4. The foldable plastic-steel chair according to claim 1, wherein: a connecting portion of the surface plate and the surrounding edge extend inward to define an arc-shaped transition shoulder, so that an upper step and a lower step are formed between the surrounding edge and the surface plate, and the lower step is at least supported by the metal frame.
5. The foldable plastic-steel chair according to claim 1, wherein: a cross section of the metal frame has an enclosed cavity, and a shape of the enclosed cavity is rectangular.
6. The foldable plastic-steel chair according to claim 5, wherein: the metal frame is disposed with one or more reinforcing rods, a lower surface of the surface plate is supported on the one or more reinforcing rods, each end of each of the one or more reinforcing rods extends outward and is bent obliquely downward to form a connecting corner, and the connecting corner is connected to an inner surface of the metal frame.
7. The foldable plastic-steel chair according to claim 1, wherein: a cross section of the metal frame has a uniform thickness, a connecting portion of the surface plate and the surrounding edge extend inward to define an arc-shaped transition shoulder, so that an upper step and a lower step are formed between the surrounding edge and the surface plate, and a shape of an upper end of the metal frame corresponds to the arc-shaped transition shoulder so as to abut a lower surface of the arc-shaped transition shoulder.
8. The foldable plastic-steel chair according to claim 7, wherein: the metal frame is disposed with one or more elongated reinforcing sheets, a lower surface of the surface plate is supported on the one or more elongated reinforcing sheets, each end of each of the one or more elongated reinforcing sheets extends outward and is bent obliquely downward to form a connecting corner, and the connecting corner is connected to a top end of the metal frame.
9. The foldable plastic-steel chair according to claim 2, wherein: the backrest has a convex shape extending rearward.
10. The foldable plastic-steel chair according to claim 1, wherein: an entire outer edge of the backrest is folded rearward to form a buckle edge, the metal supporting frame comprises two front leg pipes symmetrically disposed on a left side and a right side of the seat board assembly and two rear leg pipes symmetrically disposed on the left side and the right side of the seat board assembly, a corresponding one of the two front leg pipes and a corresponding one of the two rear leg pipes which are disposed on a corresponding side of the seat board assembly are hinged to each other to define an X-shaped rotatable connection, the two front leg pipes extend upward and top ends of the two front leg pipes are connected to each other by a connecting pipe, the two front leg pipes cooperate with the connecting pipe to define a U-shaped frame, the backrest is fixed on a top portion of the U-shaped frame, the U-shaped frame is formed by bending a metal pipe, and a slot or an insertion groove is located on a junction of the connecting pipe and the two front leg pipes.
11. The foldable plastic-steel chair according to claim 10, wherein: the metal supporting frame comprises a reinforcing cross pipe, two ends of the reinforcing cross pipe are respectively connected to a junction at which the two front leg pipes are connected to the connecting pipe, and the slot or the insertion groove extends along the reinforcing cross pipe and the connecting pipe, and the buckle edge is disposed in the slot or the insertion groove.
12. The foldable plastic-steel chair according to claim 2, wherein: a middle portion of the surface plate is a concave structure, or the surface plate is a concave structure.
13. The foldable plastic-steel chair according to claim 2, wherein: a connecting portion of the surface plate and the surrounding edge extend inward to define an arc-shaped transition shoulder, so that an upper step and a lower step are formed between the surrounding edge and the surface plate, and the lower step is at least supported by the metal frame.
14. The foldable plastic-steel chair according to claim 2, wherein: a cross section of the metal frame has an enclosed cavity, and a shape of the enclosed cavity is rectangular.
15. The foldable plastic-steel chair according to claim 2, wherein: a cross section of the metal frame has a uniform thickness, a connecting portion of the surface plate and the surrounding edge extend inward to define an arc-shaped transition shoulder, so that an upper step and a lower step are formed between the surrounding edge and the surface plate, and a shape of an upper end of the metal frame corresponds to the arc-shaped transition shoulder so as to abut a lower surface of the arc-shaped transition shoulder.
16. The foldable plastic-steel chair according to claim 9, wherein: an entire outer edge of the backrest is folded rearward to form the buckle edge, the metal supporting frame comprises two front leg pipes symmetrically disposed on a left side and a right side of the seat board assembly and two rear leg pipes symmetrically disposed on the left side and the right side of the seat board assembly, a corresponding one of the two front leg pipes and a corresponding one of the two rear leg pipes which are disposed on a corresponding side of the seat board assembly are hinged to each other to define an X-shaped rotatable connection, the two front leg pipes extend upward and top ends of the two front leg pipes are connected to each other by a connecting pipe, the two front leg pipes cooperate with the connecting pipe to define a U-shaped frame, the backrest is fixed on a top portion of the U-shaped frame, the U-shaped frame is formed by bending a metal pipe, and the slot or the insertion groove is located on a junction of the connecting pipe and the two front leg pipes.
17. A foldable plastic-steel chair, comprising: a seat board assembly, a backrest, and a metal supporting frame, wherein: the seat board assembly and the backrest are connected to the metal supporting frame, the seat board assembly comprises a seat board, the seat board comprises a surface plate and a surrounding edge connected to a periphery of the surface plate and extending downward, the backrest is a vacuum-formed plastic board, an upper edge of the backrest is at least folded rearward to form a buckle edge, the metal supporting frame comprises a slot or an insertion groove corresponding to the buckle edge, the buckle edge is disposed in the slot or the insertion groove, and the slot or the insertion groove is configured to be pressed to enable the buckle edge to be fixedly clamped by the slot or the insertion groove.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION OF THE EMBODIMENTS
[0024] The present disclosure will be further described below in combination with the accompanying drawings and embodiments.
[0025] Referring to
[0026] The metal supporting frame 30 comprises two front leg pipes 31 symmetrically disposed on a left side and a right side of the seat board assembly 20, and two rear leg pipes 32 symmetrically disposed on the left side and the right side of the seat board assembly 20. A corresponding one of the two front leg pipes 31 and a corresponding one of the two rear leg pipes 32 that are disposed on a corresponding side of the seat board assembly 20 are hinged to each other to define an X-shaped rotatable connection. The two front leg pipes 31 extend upward, and top ends of the two front leg pipes 31 are connected to each other by a connecting pipe 33. The two front leg pipes 31 cooperate with the connecting pipe 33 to define a U-shaped frame, and the backrest 10 is fixed on a top portion of the U-shaped frame. In this embodiment, the U-shaped frame is formed by bending a metal pipe. In this embodiment, the connection between the three major structures is the existing structure, so the folding principle of the plastic-steel chair will not be explained. The seat board assembly 20, the backrest 10, and a fixing method of the backrest 10 and the metal supporting frame 30 will be described below.
[0027] Referring to
[0028] Preferably, a middle portion of the surface plate 221 is a concave structure, or the surface plate 221 is a concave structure. In this way, the surface plate 221 is not a flat surface, and the surface plate 221 has a curvature, has better stability, is not easy to deform, and has better tensile strength. The concave structure mentioned here does not necessarily have to be symmetrical along a front-and-rear direction and/or a left-and-right direction, as long as a portion of the concave structure that fits the human body is concave.
[0029] Preferably, a connecting portion of the surface plate 221 and the surrounding edge 222 extend inward to define an arc-shaped transition shoulder 223, so that an upper step 224 and a lower step 225 are formed between the surrounding edge and the surface plate. Therefore, a three-dimensional shape of the seat board 22 is more prominent, and a strong and heavy visual experience can be obtained by the user. Further preferably, the metal frame 24 provides a supporting force to the lower step 225, which will inevitably improve the load-bearing capacity of the seat board 22. Of course, the metal frame 24 can also provide a supporting force to the upper step 224 at the same time.
[0030] Preferably, a cross section of the metal frame 24 has an enclosed cavity 242. In this embodiment, a shape of the enclosed cavity 242 is rectangular. In this way, the metal frame 24 can actually be understood as a supporting pipe, which has better rigidity and strength.
[0031] Referring to
[0032] Referring to
[0033] Referring to
[0034] Referring to
[0035] In this embodiment, the backrest 10 is disposed on a top of the U-shaped frame. That is, the backrest 10 is disposed on the connecting pipe 33 and a junction of the connecting pipe 33 and the two front leg pipes 31. Therefore, the slot 34 is correspondingly located on the connecting pipe 33 and the junction of the connecting pipe 33 and the two front leg pipes 31. The slot 34 corresponds to the buckle edge 12, and the slot 34 is rapid cut by laser.
[0036] Preferably, an entire outer edge of the backrest 10 is folded rearward to form the buckle edge 12. In this way, the buckle edge 12 is not only used for connection with the metal frame 24, but also the buckle edge 12 can increase the strength of all sides of the backrest 10, so that the backrest 10 has better strength and better stability. The entire outer edge of the backrest 10 forms the buckle edge 12, and the buckle edge 12 also comprises one or more gaps processed and formed at corners of the backrest 10.
[0037] Preferably, the backrest 10 has a shape of convex extending rearward, so that a loading capacity of the backrest 10 can be greatly improved. The backrest 10 is a vacuum-formed plastic board that can meet the requirements of use. Specifically, a thickness of the vacuum-formed plastic board is only about 0.5-1 mm, and the backrest 10 has a convex shape. After the entire outer edge of the backrest 10 is folded to form the buckle edge 12, the strength of the backrest 10 is greatly improved. Furthermore, the U-shaped frame is pressed to make a width of the slot 34 smaller and the buckle edge 12 can be firmly clamped by the slot 34. Therefore, not only is the cost of the metal supporting frame 30 very low, but the weight of the metal supporting frame 30 is also reduced. Under the premise of meeting the performance requirements, the weight of the foldable plastic-steel chair becomes lighter and the cost of the foldable plastic-steel chair becomes lower, making the foldable plastic-steel chair have good market competitiveness.
[0038] The two front leg pipes 31 and the two rear leg pipes 32 are not necessarily round pipes. As an alternative embodiment of the metal supporting frame 30, referring to
[0039] Referring to
[0040] The aforementioned embodiments are merely some embodiments of the present disclosure, and the scope of the disclosure is not limited thereto. Thus, it is intended that the present disclosure cover any modifications and variations of the presently presented embodiments provided they are made without departing from the appended claims and the specification of the present disclosure.