1. Technical Field
The present disclosure relates to an light emitting diode (LED) lamp casing.
2. Description of Related Art
Clasping mechanisms including hooks are commonly used for connecting casings. Usually, a clasping mechanism is made up of an elastic material, the clasping mechanism deforms for assembling and disassembling of the casings. However, the restoring forces of the clasping mechanism become weak or non-existence after repeated use. If this happens, the casing may unexpectedly disassemble when an external force is applied thereto. Thus, the reliability of the casing decreases with use.
Therefore, what is needed is an LED lamp casing alleviating the limitations described above.
The components in the drawings are not necessarily drawn to scale, the emphasis instead being placed upon clearly illustrating the principles of an LED lamp casing. Moreover, in the drawings, like reference numerals designate corresponding parts throughout the several views.
Referring to
The connecting member 10 is hollow and includes a main body 11 and a ring 12 connected to the main body 11 by a number of bars extending radially outward from the main body 11. The main body 11 defines a number of first through openings 101 in its lateral wall. The ring 12 defines a number of notches 103 in its lateral wall.
Referring also to
The lower casing 30 can be a hollow semicircle. The lower casing 30 includes a first open end 303 having a first diameter, and a second open end 304 having a second diameter. A number of first latching members 301 protrude from the inner wall of the lower casing 30 toward the first open end 303. The first latching member 301 includes a second elastic arm 3011 and a second hook 3013 extending from its distal end. The second hook 3013 includes a second sloping surface 3014 and can be received in the second through opening 2012.
Referring to
Referring to
Referring to FIGS. 2 and 7-9, the process of connecting the lower casing 30 with the connecting member 10 is as follows: aligning the first latching members 301 of the lower casing 30 with the notches 103 of the connecting member 10. Aligning the second latching members 302 of the lower casing 30 with the first through openings 101 of the connecting member 10, and rotating the lower casing 20 or the connecting member 10 to cause the first and second latching members 301, 302 to be respectively inserted into the notches 103 and the first through openings 101. Similar to guiding the clasping members 201 to insert into the corresponding notches 103, the first latching member 301 deforms when being inserted into the notch 103, until the second elastic arm 3011 of the second hook 3013 clasps the edge of the second through opening 2012 of the first elastic arm 2011 of the clasping members 201. At the same time, the second latching member 302 deforms when being inserted into the first through opening 101, until the third hook 3023 of the second latching member 302 clasps the edge of the first through opening 101.
In use, the upper casing 20 shifts when an external force is applied thereto, and the clasping members 201 shifts accordingly. However, the clasping members 201 stops shifting because of resisting force of the latching members 301, thus the clasping members 201 will not disengage from the connecting member 10 even when the external force is applied on the upper casing 20. On the other side, the lower casing 30 shifts when an external force is applied thereto, and the latching members 301 shifts accordingly. However, due to the reverse orientations, the hooks 3013, 3023 will not simultaneously disengage from the upper casing 20. Thus, the reliability of the clasping mechanism increases.
Although the present disclosure has been specifically described on the basis of the embodiments thereof, the disclosure is not to be construed as being limited thereto. Various changes or modifications may be made to the embodiments without departing from the scope and spirit of the disclosure.
Number | Date | Country | Kind |
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201010517911.3 | Oct 2010 | CN | national |