INTEGRATED HINGE STRUCTURE

20170342753 ยท 2017-11-30

Assignee

Inventors

Cpc classification

International classification

Abstract

An integrated hinge structure is disclosed herein, comprising a hinge shaft provided on a first connecting member and a hinge arm provided on a second connecting member, the hinge arm being rotatably connected to the hinge shaft, wherein a coupling structure is formed between the hinge shaft and the hinge arm, the coupling structure allowing the hinge arm only to be installed to or detached from the hinge shaft in a certain direction and allowing the installed hinge arm to rotate for any angle or freely while staying connected to the hinge shaft. Furthermore, the hinge shaft and the hinge arm are respectively formed integrally on the corresponding connecting members, providing a simple and firm structure.

Claims

1. An integrated hinge structure, comprising: a hinge shaft (1) provided on a first connecting member; and a hinge arm (2) provided on a second connecting member, the hinge arm (2) configured to be rotatably connected to the hinge shaft (1), wherein a coupling structure is formed between the hinge shaft (1) and the hinge arm (2), the coupling structure allowing the hinge arm (2) only to be installed to or detached from the hinge shaft (1) in a certain direction and allowing the installed hinge arm (2) to rotate at any angle while staying securely connected to the hinge shaft (1).

2. The integrated hinge structure of claim 1, wherein the hinge shaft (1) is a circular shaft having a first cutting face (11) and a second cutting face (12) that are parallel to each other are formed axially on a side of the hinge shaft (1), the first cutting face (11) and the second cutting face (12) both being alternately arranged, and respectively located on two opposite sides of the hinge shaft (1); and wherein, correspondingly, the hinge arm (2) includes a first arc-shaped embracing arm (21) and a second arc-shaped embracing arm (22), the first arc-shaped embracing arm (21) and the second arc-shaped embracing arm (22) being alternately arranged with their arc opening facing each other, and respectively located on two opposite sides of the hinge arm (2); and, a vertical distance between opposite edges of the first arc-shaped embracing arm (21) and the second arc-shaped embracing arm (22) is greater than a vertical distance between the first cutting face (11) and the second cutting face (12) but smaller than a diameter of the hinge shaft (1).

3. The integrated hinge structure of claim 2, wherein the first cutting face (11) and the second cutting face (12) are precisely staggered along an axial direction of the hinge shaft (1), the first cutting face (11) and the second cutting face (12) having an equal cutting depth that is smaller than a radius of the hinge shaft (1); and, correspondingly, the first arc-shaped embracing arm (21) and the second arc-shaped embracing arm (22) are precisely staggered along an axial direction of the hinge arm (2).

4. The integrated hinge structure of claim 3, wherein the first cutting face (11) and the second cutting face (12) are the same in their axial width; and correspondingly the first arc-shaped embracing arm (21) and the second arc-shaped embracing arm (22) are the same in their axial width.

5. The integrated hinge structure of claim 2, wherein the hinge shaft (1) includes one first cutting face (11) and two second cutting faces (12), the first cutting face (11) being located between the two second cutting faces (12); and, correspondingly, the hinge arm (2) includes one first arc-shaped embracing arm (21) and two second arc-shaped embracing arms (22), the first arc-shaped embracing arm (21) being located between the two second arc-shaped embracing arms (22).

6. The integrated hinge structure of claim 1, wherein the first cutting face (11) and the second cutting face (12) are level surfaces.

7. The integrated hinge structure of claim 1, wherein the hinge shaft (1) is integrally formed on the first connecting member and the hinge arm (2) is integrally formed on the second connecting member.

8. The integrated hinge structure of claim 1, wherein the first connecting member is a first connecting board; the second connecting member is a second connecting board; a plurality of hinge mounts (3) and a plurality of the hinge shafts (1) are integrally formed along a length direction of a side edge of the first connecting board, the hinge shafts (1) being arranged on the hinge mounts (3) in an alternate manner with the hinge mounts (3); and, correspondingly, a plurality of the hinge arms (2) are integrally formed in an spaced manner along a length direction of a corresponding side edge of the second connecting board.

9. An integrated hinge structure, comprising: a hinge shaft (1) integrally formed on a first connecting member without any fixation means; and a hinge arm (2) integrally formed on a second connecting member without any fixation means, the hinge arm (2) configured to rotatably embrace the hinge shaft (1), wherein the hinge shaft (1) is configured to: rotate freely and securely in the hinge arm (2); and only attach and detach from the hinge arm (2) at a certain angle.

10. The integrated hinge structure of claim 9, wherein the hinge shaft (1) is a circular shaft having at least one first cutting face (11) and at least one second cutting face (12) that are staggered along an axial direction of the hinge shaft (11), and wherein the hinge arm (2) comprises at least one first arc-shaped embracing arm (21) configured to embrace the at least one first cutting face (11) and at least one second arc-shaped embracing arm (22) configured to embrace the at least one second cutting face (12).

11. The integrated hinge structure of claim 9, wherein the at least one first cutting face (11) and the at least one second cutting face (12) are level surfaces, and the hinge shaft (1) is configured to only attach and detach from the hinge arm (2) at a horizontal direction.

12. The integrated hinge structure of claim 9, wherein the at least one first cutting face (11) and the at least one second cutting face (12) are inclined surfaces that are parallel to each other, and the hinge shaft (1) is configured to only attach and detach from the hinge arm (2) at a corresponding inclined angle.

13. The integrated hinge structure of claim 9, wherein the first connecting member is a cover board of a box, and the second connecting member is a rear board of the box.

14. A hinge structure, comprising: a hinge shaft (1) provided on a first connecting member, the hinge shaft (1) having one or more cutting surfaces configured to be parallel to each other; and a hinge arm (2) provided on a second connecting member, the hinge arm (2) having one or more arc-sharped embracing arms configured to respectively receive the hinge shaft (1) through the one or more cutting surfaces at a predetermined direction; wherein the hinge shaft (1) is configured to: rotate freely and securely in the hinge arm (2); and only attach and detach from the hinge arm (2) at the predetermined direction.

15. The hinge structure of claim 14, wherein the hinge shaft (1) is a circular shaft.

16. The hinge structure of claim 14, wherein the one or more cutting surface are arranged on opposite sides of the hinge shaft (1).

17. The hinge structure of claim 14, wherein the predetermined direction is one of a horizontal direction or an inclined direction.

18. The hinge structure of claim 14, wherein the one or more arc-sharped embracing arms are alternately arranged with one or more arc openings facing each other, and respectively located on opposite sides of the hinge arm (2).

19. The hinge structure of claim 14, wherein the hinge shaft (1) is integrally formed on the first connecting member without any fixation means.

20. The hinge structure of claim 14, wherein the hinge arm (2) is integrally formed on the second connecting member without any fixation means.

Description

BRIEF DESCRIPTION OF DRAWINGS

[0014] FIG. 1 is a structural schematic of the cover board in a fixed position according to an embodiment of the present disclosure;

[0015] FIG. 2 is an enlarged schematic of the portion A in FIG. 1;

[0016] FIG. 3 is a structural schematic of the cover board in a removable position according to an embodiment of the present disclosure;

[0017] FIG. 4 is an enlarged schematic of the portion B in FIG. 3;

[0018] FIG. 5 is a structural schematic of the rear board according to an embodiment of the present disclosure;

[0019] FIG. 6 is an enlarged schematic of the portion C in FIG. 5;

[0020] FIG. 7 is a structural schematic of the cover board according to an embodiment of the present disclosure; and

[0021] FIG. 8 is an enlarged schematic of the portion D in FIG. 7.

DETAILED DESCRIPTION OF EMBODIMENTS

[0022] The present disclosure will be described in further details below with reference to embodiments as shown in the attached figures.

[0023] As shown in FIG. 1 through 8, the integrated hinge structure of this embodiment can be applied to a box for connecting the rear board 4 and the cover board 5, wherein the rear board 4 is the first connecting board, or a first connecting member, and the cover board 5 is the second connecting board, or a second connecting member. A plurality of hinge mounts 3 and a plurality of the hinge shafts 1 are integrally formed along the length direction of a side edge of the rear board 4 without the use of any fixation means such as screws. The hinge shafts 1 are arranged on the hinge mounts 3 in an alternate manner with the hinge mounts 3. And, correspondingly, a plurality of the hinge arms 2 is integrally formed in a spaced manner along a length direction of a corresponding side edge of the cover board 5. Specifically, an integrally formed component is part of the board that is not fixed or attached through any fixation means such as screws or glue.

[0024] According to some embodiments, the following description illustrates a coupling structure between one hinge shaft 1 and one hinge arm 2.

[0025] According to some embodiments, the hinge shaft 1 is a circular shaft. A first cutting face 11 and a second cutting face 12 that are parallel to each other are formed axially on a side of the hinge shaft 1. Particularly, the first cutting face 11 is one upper level surface, and the second cutting faces 12 are two lower level surfaces. The first cutting face 11 is located between the two second cutting faces. That is, the first cutting face 11 and the second cutting face 12 are alternately arranged and respectively located on two opposite sides of the hinge shaft 1.

[0026] Furthermore, the first cutting face 11 and the second cutting face 12 are precisely staggered along an axial direction of the hinge shaft 1, while the first cutting face 11 and the second cutting face 12 have an equal cutting depth that is smaller than a radius of the hinge shaft 1.

[0027] According to some embodiments, a first arc-shaped embracing arm 21 and a second arc-shaped embracing arm 22 are formed axially on the hinge arm 2. The first arc-shaped embracing arm 21 is located between the second arc-shaped embracing arms 22. That is, the first arc-shaped embracing arms 21 and the second arc-shaped embracing arms 22 are alternately arranged, with their arc opening facing each other, and respectively located on two opposite sides of the hinge arm 2. Further, the vertical distance between the opposite edges of the first arc-shaped embracing arm 21 and the second arc-shaped embracing arm 22 is greater than the vertical distance between the first cutting face 11 and the second cutting face 12, but smaller than a diameter of the hinge shaft 1.

[0028] To couple the first cutting face 11 with the second cutting face 12, the first arc-shaped embracing arm 21 and the second arc-shaped embracing arm 22 are precisely staggered along an axial direction of the hinge arm 2, and the first arc-shaped embracing arm 21 and the second arc-shaped embracing arm 22 have the same axial width.

[0029] According to some embodiments, when the rear board 4 is in a vertical installing position, the first cutting face 11 and the second cutting face 12 are able to be both aligned at level surfaces. Therefore, as shown in FIG. 3 and FIG. 4, only when the cover board 5 is in a position perpendicular to the rear board 4, i.e., when the cover board 5 is in a level position, the hinge arm 2 can be installed to or detached from the hinge shaft 1. When the cover board 5 is in a non-level position, the hinge arm 2 cannot be installed on the hinge shaft 1. That is, in this case, the cover board 5 cannot be installed on the rear board 4. Similarly, as shown in FIG. 1 and FIG. 2, after the cover board 5 has been installed on the rear board 4, when the cover board 5 rotates in any angle and is in a non-level position, the cover board 5 will not detach from the rear board 4.

[0030] The embodiments described above are only some of the preferred embodiments of the present disclosure. It would be understood by a person skilled in the art that various changes and modifications can be made to the embodiments described herein without departing from the scope and spirit of the present disclosure. For example, the first cutting face and the second cutting face can be designed as inclined surfaces parallel to each other, so that disassembly and assembly can be done when the second connecting board forms a corresponding included angle with the first connecting board. Another example is that the hinge structure may also be applied in connecting other types of connecting members. Such changes and modifications should be considered as within the protection scope claimed by the present disclosure.