1. Technical Field
The disclosure relates to a hinge assembly employed in an electronic device.
2. Description of the Related Art
A typical electronic device includes a main body, a cover, and a hinge assembly hinging the cover on the main body. The hinge assembly includes a pivot shaft, a support frame, a rotating member, a plurality of elastic members, and a fixing member. The support frame, the rotating member, and the elastic members are sleeved on the pivot shaft. The support frame is fixed on the main body and is rotatable relative to the pivot shaft. The rotating member is fixed on the cover and is non-rotatable relative to the pivot shaft. The elastic members drive the rotating member such that the rotating member abuts the support frame. Therefore, the rotating member can remain in any desired position due to friction between the rotating member and the support frame.
However, this structure of the electronic device is complicated, and costly to manufacture.
Therefore, there is room for improvement within the art.
The components in the drawings are not necessarily drawn to scale, the emphasis instead being placed upon clearly illustrating the principles of the present disclosure. Moreover, in the drawings, like reference numerals designate corresponding parts throughout the several views.
Referring to
The first rotation member 23 is elastic and may be made of metal, such is stainless steel which has good resistance to abrasion and a long fatigue life. The first rotation member 23 includes a base plate 231 and two coiled support portions 233 formed on opposite sides of an end of the base plate 231. The base plate 231 defines a plurality of assembly holes 2311. Each support portion 233 is coiled, for example, along a first direction OX to define a substantially cylindrical cavity (not labeled) and has a curved outer surface 2331. An end of the support portion 233 away from the base plate 231 does not contact the base plate 231, thus the support portion 233 and the base plate 231 cooperatively define a slot (not labeled). In the illustrated embodiment, the first rotation member 23 can be manufactured from one single piece of sheet metal. Alternatively the coiled support portions 233 can be attached to the base plate 231 by means such as welding.
The second rotation members 21 may be of the same material as the first rotation member 23. Each second rotation member 21 includes a connecting portion 211 and a coiled rotation portion 213. The connecting portion 211 defines a plurality of assembly holes 2111. The rotation portion 213 is coiled from an end of the connecting portion 211, for example, along a second direction OY opposite to the first direction OX, and has a curved inner surface 2131. In other words, the inner surface 2131 of the rotation portion 213 defines a substantially cylindrical cavity 2133. An inner diameter of the cylindrical cavity 213 of the rotation portion 213 of the second rotation member 21 is slightly less than an outer diameter of the support portion 233 of first rotation member 23 before assembly.
Referring to
The first rotation member 23 may be fixed on a cover (not shown) of a notebook computer, and the second rotation member 21 may be fixed on a main body (not shown) of the notebook computer. In one embodiment, a plurality of locking members such as screws (not shown) pass through the assembly holes 2311 of the first rotation member 23 such that the first rotation member 23 is fixed on the cover of the notebook computer, and a plurality of locking members such as screws pass through the assembly holes 2111 of the second rotation members 21 such that the second rotation member 21 is fixed on the main body of the notebook computer.
After the support portions 233 of the first rotation member 23 are received in the two cavities 2133 of the second rotation members 21, the support portions 233 are compressed, thereby storing an elastic force urging against the inner surfaces 2131 of the second rotation members 21. Accordingly, the rotation portions 213 are expanded thereby storing an elastic force urging against the outer surfaces 2331 of the support portions 233. Thus, the outer surfaces 2331 of the support portions 233 resist the inner surfaces 2131 of the rotation portions 213 of the second rotation members 23.
An external force applied to the cover rotates the first rotation member 23. The cover can remain in any desired position due to friction between the outer surfaces 2331 of the support portions 233 of the first rotation member 23 and the inner surfaces 2131 of the rotation portions 213 of the second rotation members 21.
Furthermore, a contact area between the support portions 233 of the first rotation member 23 and the rotation portions 213 of the second rotation members 21 is constant. As a result, friction between the support portions 233 of the first rotation member 23 and the rotation portions 213 of the second rotation members 21 is constant. Therefore, the cover hinges smoothly.
Alternatively, one of the support portions 233 of the first rotation member 23 and one of the second rotation members 21 may be omitted.
Referring to
A shape of the depressions 3133 can be any shape such as hemispherical, wedge-shaped, rectangular, and so on. Alternatively, the depressions 3133 may be defined in outer surfaces 3331 of support portions 333 of a first rotation member 33.
Referring to
Finally, while various embodiments have been described and illustrated, the embodiments are not to be construed as being limited thereto. Various modifications can be made to the embodiments by those skilled in the art without departing from the true spirit and scope of the embodiments as defined by the appended claims.
Number | Date | Country | Kind |
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200910300096.2 | Jan 2009 | CN | national |