1. Technical Field
The disclosure relates to a hinge.
2. Description of Related Art
A collapsible device, such as a notebook computer, or a clamshell mobile phone, generally including a main body and a cover often uses a hinge to interconnect the main body and the cover. The hinge allows the cover to be rotatable with respect to the main body, and to be folded with the main body for saving space.
A hinge normally includes a first element and a second element fixed to the main body and the cover of the collapsible device, respectively. The first and second elements are rotatable relative to and in friction engagement with each other for maintaining the cover at any angle with respect to the main body. During rotation, the cover can maintain at any angle with respect to the main body by friction between the first and second elements. However, the first and second elements are not durable after frequent usage and due to wear and tear, resulting in preventing the cover from being able to stay at certain desirable positions. When one of the first and second elements is worn out, the cover cannot maintain stability at certain desirable positions with respect to the main body, which creates a quite inconvenience for users. Even worse, the cover can be over-rotated by enough force resulting in damaging the hinge.
Referring to
The shaft 30 includes a fixing portion 32, a shaft body 34, and a resisting portion 36 between the fixing portion 32 and the shaft body 34. The fixing portion 32 has a double-D shaped cross-section for fixing to the first connecting member 10. The shaft body 34 has a double-D shaped cross-section, and forms a threaded portion (not labeled) on a circumference of a distal end of the shaft body 34, for engaging with the fastener 90.
The first connecting member 10 includes a connecting portion 18 defining a plurality of fixing holes 180, and a fixing board 12 extending from an end of the connecting portion 18 and perpendicularly to the fixing board 12. The fixing board 12 defines a fixing hole 14 having a double-D shape, corresponding to the fixing portion 32 of the shaft 30, for fixing the shaft 30 to the first connecting member 10.
The second connecting member 20 includes a fixing body 21 defining a plurality of fixing holes 210, and a curved pivoting portion 22 extending from an end of the fixing body 21. The pivoting portion 22 includes a first side 220 and a second side 222 opposite to the first side 220. The pivoting portion 22 defines a through hole 24 passing through the first and second sides 220, 222 for allowing the shaft body 34 to rotatably pass therethrough. A wedge-shaped first raised portion 27 protrudes out from the first side 220, and one end of the first raised portion 27 smoothly slants to connect to the first side 220. A matching hole 26 is defined in the pivoting portion 22, neighboring to the first raised portion 27. A wedge-shaped second raised portion 29 protrudes out from the second side 222, along an edge of the pivoting portion 22 and neighboring to the through hole 24. One end of the second raised portion 29 smoothly slants to connect to the second side 222.
The first, second, and third stopping members 50, 60, 40 are similar to one another, and all of them are generally washer-shaped. Each of the first, second, and third stopping members 50, 60, 40 defines an arcuate cutout (not labeled) along a circumference thereof, and each of opposite ends of each cutout forms a resisting surface 52, 62, 42. Each of the first, second, and third stopping members 50, 60, 40 defines a shaft hole 54, 64, 44 in a center thereof, having a double-D shape, corresponding to the shaft body 34 of the shaft 30, for unrotatably fitting about the shaft body 34 of the shaft 30.
The positioning member 70 defines a round hole 72 therein, for allowing the shaft body 34 of the shaft 30 to rotatably pass therethrough. A fixing post 76 axially extends from a first side of the positioning member 70, facing the first stopping member 50. A withstanding protrusion 74 protrudes from a second side opposite to the first side of the positioning member 70.
Each elastic ring 80 provides elasticity along an axial direction of the shaft 30, to tighten the first connecting member 10, the second connecting member 20, all the stopping members 40, 50, 60, the positioning member 70, and one of the friction members 92. Each elastic ring 80 defines a round through hole 82, allowing the shaft body 34 of the shaft 30 to rotatably pass therethrough.
Each friction member 92 defines a double-D shaped fixing hole 94, for unrotatably receiving the shaft body 34 of the shaft 30.
Referring to
In the aforementioned assembly, the fixing post 76 of the positioning member 70 is fixed to the matching hole 26 of the second connecting member 20, therefore, the positioning member 70 is rotated with the second connecting member 20. The first and second raised portions 27, 29 of the second connecting member 20 are received in the cutouts of the first and third stopping members 50, 40, respectively. The withstanding protrusion 74 is received in the cutout of the second stopping member 60.
Referring to
It is believed that the present embodiment and its advantages will be understood from the foregoing description, and it will be apparent that various changes may be made thereto without departing from the spirit and scope of the description or sacrificing all of its material advantages, the example hereinbefore described merely being exemplary embodiment.
Number | Date | Country | Kind |
---|---|---|---|
200920302661.4 | Apr 2009 | CN | national |