This application claims priority of Chinese Application No. 201110125448.2, filed on May 16, 2011, the disclosure of which is incorporated herein by reference.
1. Field of the Invention
This invention relates to a door assembly and a casing, and more particularly to a door capable of being automatically pushed open when unlocked, and a casing having the door.
2. Description of the Related Art
A conventional electronic casing has a casing body and a door that is controlled through operation of a lock to lock or unlock relative to the casing body. When unlocked, the door can be pivoted manually away from the casing body. However, any movement of the door does not occur while the door is being unlocked. That is, the user cannot realize the unlocking of the door from the outer appearance of the electronic casing. As such, if the user wants to know whether the door is unlocked or not, he or she must try to push open the door, thereby resulting in inconvenience during use of the conventional electronic casing.
Moreover, when a force for rotating a key in the lock to unlock the door is released, the lock cannot return to its original position. Hence, the user must rotate frequently the key to convert the door between locked and unlocked states, thereby further resulting in inconvenience during use of the conventional electronic casing.
An object of this invention is to provide a door that can be automatically pushed open when unlocked, and a casing having the door.
Another object of this invention is to provide a door having a lock capable of returning automatically to its original position when a force applied thereto for unlocking the door is released, and a casing having the same.
According to this invention, a door assembly includes a door base, a door, and a locking mechanism. The door is disposed pivotally on the door base for covering openably the door base. The locking mechanism includes a first locking member, a second locking member, and a lock. The first locking member includes a first body disposed movably on the door base and biased to move relative to the door base in a first direction, a first engaging portion disposed at the first body, and a pushing portion disposed at the first body. The second locking member includes a second body disposed at the door, and a second engaging portion disposed at the second body. The lock is disposed on the door base, and is operable to move the first body relative to the door base in a second direction opposite to the first direction. The first engaging portion is biased to move in the first direction to thereby engage the second engaging portion, so as to lock the door at a locked position for covering the door base. When the lock is operated to move the first body in the second direction, the first engaging portion is removed from the second engaging portion, and the second body is pushed by the pushing portion to separate from the door base.
These and other features and advantages of this invention will become apparent in the following detailed description of an embodiment of this invention, with reference to the accompanying drawings, in which:
Referring to
With further reference to
With further reference to
The first locking member 31 includes a first body 35 and three first engaging portions 311 disposed at the first body 35, and a pushing portion 312 disposed at the first body 35. In this embodiment, the first body 35 is vertical and elongate, and includes a base wall 351 disposed behind and adjacent to the panel 13, a plurality of transverse walls 352 extending forwardly from the base wall 351, two vertical walls 353 extending respectively and forwardly from left and right sides of the base wall 351, and a plurality of guiding plates 354 extending respectively and perpendicularly from the vertical walls 353 and arranged in two rows. Any two adjacent guiding plates 354 in each row define cooperatively a notch 350. The base wall 351 has a forward surface 356 (see
The first body 35 is movable vertically on the door base 1. In this embodiment, the first body 35 is connected movably to the back surface 133 of the panel 13, in such a manner to engage the guiding plates 354 with the guiding grooves 154 in the guiding blocks 151, respectively. The function of the notches 350 in the first body 35 now will be described. When it is desired to mount the first body 35 to the back surface 133 of the panel 13, the first body 35 is first moved to a position disposed behind the back surface 133 of the panel 13 and permitting the forward surface 356 to face the back surface 133 of the panel 13 and permitting the notches 350 to align with the guiding blocks 151, respectively. Next, the first body 35 is moved forwardly to allow the guiding blocks 151 to pass through the notches 350, respectively. Subsequently, the guiding plates 354 are engaged respectively into the guiding grooves 154, thereby completing assembly of the first body 35 and the panel 13.
In this embodiment, the door base 1 further includes a guiding rod 16 extending rearwardly from the back surface 133 of the panel 13. The base wall 351 of the first body 35 further includes a vertical slide slot 355. The guiding rod 16 extends movably through the slide slot 355.
With particular reference to
The resilient member 34 is configured as a tension spring, and has two opposite ends connected respectively to the panel 13 and the first body 35. When the first body 35 is moved downwardly relative to the panel 13, the resilient member 34 is stretched to store a return force biasing the first body 35 to move in a first direction (i.e., upward direction). In this embodiment, the resilient member 34 is connected to the guiding rod 16 at an upper end thereof, and to a portion of the base wall 351 adjacent to a bottom end of the slide slot 355 at a lower end thereof.
With particular to
With particular reference to
With particular reference to
With particular reference to
Referring to
Also during upward movement of the first body 345, the first body 35 comes into contact with the projecting plate 331 of the lock 33. Hence, the projecting plate 331 is pushed by the first body 35 to pivot in a clockwise direction d4 to thereby return to its original position whereat no external force is applied to the key and, thus, the lock 33.
Conversely, when it is desired to close the door 2, the door 2 is pivoted rearwardly toward the front surface 132 of the panel 13. During rearward pivoting movement of the door 2, the second bodies 321 of the door 2 are inserted respectively through the holes 131 in the panel 13, so that the second inclined guiding surfaces 323 come into contact with the first inclined guiding surfaces 315, respectively. Hence, the first body 35 is pushed by the second inclined guiding surfaces 323 to move downwardly to thereby stretch the resilient member 34. During sliding movement of the second inclined guiding surfaces 323 over the first inclined guiding surfaces 315, as soon as the second engaging portions 322 are aligned respectively with the first engaging portions 311, the first engaging portions 311 are biased by the resilient member 34 to move upward to engage the second engaging portions 322, thereby locking the door at the locked position.
As such, through cooperation among the pushing portion 312, the first, second, and third inclined guiding surfaces 315, 323, 313, and the resilient member 34, after the first engaging portions 311 are disengaged respectively from the second engaging portions 322, the door 2 is automatically pushed open, and the lock 33 is biased to return to its original position. In addition, through cooperation of the first inclined guiding surfaces 315 with the second inclined guiding surfaces 323, when the door 2 is covered on the door base 1, the first engaging portions 311 can engage the second engaging portions 322 without operating the lock 33.
In view of the above, through operation of the first and second locking members 31, 32 and the lock 33, the first locking member 31 can be locked on or unlocked from the second locking members 32 in such a manner that, when the first locking member 31 is unlocked from the second locking members 32, the door 2 is automatically pushed open, which can be realized by the user. Furthermore, when a force for rotating the lock 33 is released, the lock 33 is pivoted by the first locking member 31 to its original position without additional operation of the user. Thus, the objects of this invention are achieved.
Further, due to design of the first inclined guiding surfaces 315 and/or the second inclined guiding surfaces 323, the first locking member 31 can be locked automatically on the second locking members 32 without operating the lock 33, thereby resulting in convenience during use of the door assembly 100.
With this invention thus explained, it is apparent that numerous modifications and variations can be made without departing from the scope and spirit of this invention. It is therefore intended that this invention be limited only as indicated by the appended claims.
Number | Date | Country | Kind |
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2011 1 0125448 | May 2011 | CN | national |
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