1. Technical Field
The disclosure relates to connecting configuration and, more particularly, to a hinge connected to an object.
2. Description of Related Art
A hinge is utilized for a panel and often includes a shaft. When a user closes the panel via the hinge, the shaft often is rotated and exposed, and the user can look at the shaft, therefore, it is easy to affect a whole appearance of the panel.
Therefore, what is needed is a hinge to overcome the described shortcomings.
Referring to
The tubular element 10 defines a first groove 12 in a sidewall of the first through hole 11 and a second groove 14 in an opposite sidewall of the second through hole 13. A first protrusion 31 is formed on the first curved beam 30 and slidably engaged in the first groove 12, and a second protrusion 21 is formed on the second curved beam 20 and slidably engaged in the second groove 14.
The two curved beams 20, 30 are arc-shaped. In the embodiment, the two curved beams 20, 30 have the same configuration. In another embodiment, the two curved beams 20, 30 have different configuration, for example, a thickness of the curved beam 20 is greater than a thickness of the curved beam 30. The first curved beam 30 is slidaby received in the first through hole 11. The first curved beam 30 has a first distal end exposed outside the tubular element 10 adjacent to the first end of the tubular element 10 and an opposing second distal end. A first mounting plate 33 is connected to the first distal end of the first curved beam 30. The second curved beam 20 is slidably received in the second through hole 13. The second curved beam 20 has a first distal end exposed outside the tubular element 10 adjacent to the second end of the tubular element 10 and an opposing second distal end which are arc-shaped. A second mounting plate 23 is connected to the first distal end of the second curved beam 20.
The second distal end of the first curved beam 30 is positioned in the first through hole 11 and the first distal end 33 of the first curved beam 30 is connected to a first sidewall of an object. The first curved beam 30 can slide in the first through hole 11. The first curved beam 30 defines a first protrusion 31 on an external surface thereof and the first protrusion 31 can slide in the first groove 12. When the first curved beam 30 slides along an opposite direction, such as right, the first protrusion 31 slides to a position where the first positioning pin 50 withstands the first protrusion 31, thus the first curved beam 30 cannot move.
The second distal end of the second curved beam 20 is positioned in the second through hole 13 and the first distal end 23 of the curved beam 20 is connected to a second sidewall of the object. The second curved beam 20 can slide in the second through hole 13. The second curved beam 20 defines a second protrusion 21 on an external surface thereof and the second protrusion 21 can slide in the second groove 14. The second protrusion 21 slides to a position where the second positioning pin 40 withstands the second protrusion 21 when sliding along a direction, such as left, thus, the second curved beam 20 cannot move. The first protrusion 31 is arranged at the second distal end of the first curved beam 30 and the second protrusion 21 is arranged at the second distal end of the second curved beam 20.
The positioning pin 50 is fixed on the sidewall of the tubular element 10 and the positioning pin 40 is fixed on the opposite sidewall of the tubular element 10. In another embodiment, the two curved through holes 11, 13 do not define grooves.
In the embodiment, the two positioning pins 40, 50 are screws, a screw thread through hole 16 is formed on the sidewall of the tubular element 10, and a screw thread through hole 15 is formed on the opposite sidewall of the tubular element 10.
The first and second curved beams are slidable relative to the tubular element 10 between a first position where the second distal end of the first curved arm 30 is moved adjacent to the first end of the tubular element 10 and the second distal end of the second curved arm 20 is moved adjacent to the second end of the tubular element 10, and a second position where the second distal end of the first curved arm 30 is moved adjacent to the second end of the tubular element 10 and the second distal end of the second curved arm 20 is moved adjacent to the first end of the tubular element 10.
In another embodiment, both the curved beam 20 and the protrusion 21 slide in the curved through hole 13, and both the curved beam 30 and the protrusion 31 slide in the curved through hole 11.
The sum of a diameter of the curved through hole 11 and a thickness of the groove 12 is equal to or greater than the sum of the thickness of the curved beam 30 and a thickness of the protrusion 31. The sum of a diameter of the curved through hole 13 and a thickness of the groove 14 is equal to or greater than the sum of the thickness of the curved beam 20 and a thickness of the protrusion 21. In the embodiment, the diameter of the curved through hole 11 is equal to the thickness of the curved beam 30, and the thickness of the groove 12 is equal to the thickness of the protrusion 31. The diameter of the curved through hole 13 is equal to the thickness of the curved beam 20, and the thickness of the groove 14 is equal to the thickness of the protrusion 21.
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Although the present disclosure has been specifically described on the basis of the exemplary embodiment thereof, the disclosure is not to be construed as being limited thereto. Various changes or modifications may be made to the embodiment without departing from the scope and spirit of the disclosure.
Number | Date | Country | Kind |
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2012 1 0565206 | Dec 2012 | CN | national |
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