1. Field of the Invention
The present invention relates to an armrest for a chair, and more particularly to an armrest adjustment mechanism.
2. Description of the Prior Arts
Many chairs have armrests which provide elbow support for users, and at the bottom of the chair is normally provided with a height-adjustment mechanism employed to adjust the height of the chair so as to accommodate user with different body shapes. However, there are few height-adjustment mechanisms for armrest can be found on market, and the conventional armrest adjustment mechanism is not only structurally complex, difficult to be assembled, but also the armrest will swing when it is adjusted to slide up and down. This will affect the smoothness of the adjustment process.
The present invention has arisen to mitigate and/or obviate the afore-described disadvantages.
The primary objective of the present invention is to provide an armrest adjustment mechanism that is capable of adjusting the height of the armrest smoothly.
The secondary objective of the present invention is to provide an armrest adjustment mechanism that is capable of horizontally rotating the armrest smoothly.
Another objective of the present invention is to provide an armrest adjustment mechanism that is capable of adjusting the horizontal position of the armrest smoothly.
An armrest adjustment mechanism provided in accordance with the present invention comprises:
The present invention will become more obvious from the following description when taken in connection with the accompanying drawings, which show, for purpose of illustrations only, the preferred embodiments in accordance with the present invention.
Referring to
The sleeve 10 includes a pair of symmetrical covers 11, and at both inner sides of the respective covers 11 are provided a longitudinal toothed portion 12. On the sleeve 10 is mounted a sliding bush 13 having an opening 131.
The bracket 20, on the top of which is mounted a moveable assembly 50 and on the bottom of which is arranged a first hook portion 21 and a gap 22 located adjacent to the first hook portion 21. A sealing piece 23 is provided at the top of the gap 22 so that the gap 22 opens laterally, and two projections 24 are located lengthwise between the top end of the bracket 20 and the gap 22. The bracket 20 is moveable in vertical direction and disposed in the sleeve 10.
The adjustment rod 30, a top end of which is folded to form a pulling head 31, and at a bottom of which is formed a second hook portion 32. Between the pulling head 31 and the second hook portion 32 are provided two elongated hole 33 which are arranged lengthwise. The adjustment rod 30 is adjustably disposed on the bracket 20 in such a manner that the pulling head 31 protrudes out of the opening 131 of the slide bushing 13, and then the pulling head 31 can be covered with a protective jacket for easy pulling during adjustment. The elongated holes 33 are correspondingly engaged with the projections 24 of the bracket 20 to limit the motion of the adjustment rod 30 in up-and-down direction. Between the second hook portion 32 and the first hook portion 21 is arranged a return spring 35 for returning the adjustment rod 30 to its original position after adjustment.
The pair of adjustment blocks 40 are “[”-shaped in cross section, which are assembled to both sides of the adjustment rod 30 by means of positioning pins 41 and located in the gap 22 of the bracket 20. On each of the adjustment blocks 40 is defined a plurality of slant holes 43 for insertion of the positioning pins 41, and the slant holes 43 are slanted gradually upward and outward. Furthermore, the adjustment block 40 is provided at its outer side with a toothed portion 42 for meshing with the toothed portion 12 of the sleeve 10.
For a better understanding of the operation and function of the first embodiment of the present invention, references should be made to
After being adjusted to a desired position, the adjustment rod 30 is released and pulled back to its original position by the return spring 35, meanwhile, the positioning pins 41 slide to the bottom of the slant holes 43 of the adjustment blocks 40. For the same reason that the pair of adjustment blocks 40 are only able to move breadthwise within the gap 22, plus the slant holes 43 on the adjustment blocks 40 are slanted gradually upward and outward, the downward movement of the respective positioning pins 41 will cause outward motion of the adjustment blocks 40 within the gap 22 of the bracket 20, and further lead to an engagement of the toothed portion 42 from the toothed portion 12 of the sleeve 10. Therefore, the armrest can be positioned firmly after adjustment.
Referring to
The moveable assembly 50 on the top of the bracket 20 comprises an upper cover 51, a lower cover 52, a rotary member 53, a pair of locking members 54 and a compression spring 55. On the top end of the bracket 20 is a connecting portion 25 having a transverse hole 251 for accommodation of the locking members 54. On the periphery of the locking members 54 are formed a plurality of teeth 541. The compression spring 55 is biased between the locking members 54, and the rotary member 53 is provided with a central sprocket hole 531 for engaging with the locking members 54.
For a horizontal rotary adjustment of the moveable assembly 50, the user can rotate the armrest, the toothed portion of the sprocket hole 531 of the rotary member 53 will be forced to push the teeth 541 of the locking members 54, so as to make the locking members 54 withdraw and disengage from the sprocket hole 531, and thus the horizontal rotary adjustment of the bracket 20 can be achieved. After adjustment, the locking members 54 will be pushed back by the compression spring 55 and engaged with the sprocket hole 531 of the rotary member 53 again, and consequently the moveable assembly 50 is positioned. Thus, the horizontal rotary adjustment of the armrest is finished.
Referring to
The moveable assembly 50 on the top of the bracket 20 comprises an upper cover 51, a lower cover 52, a rotary member 53, a pair of locking members 54 and a compression spring 55. On the top end of the bracket 20 is a connecting portion 25 that is connected to the rotary member 53 by means of screw 56 and washer 57. On the periphery of the rotary member 53 are provided a plurality of projections 532 on each of which is mounted a roller wheel 533. The lower cover 52 is provided at either side thereof with a positioning portion 521 consisted of a plurality of continuously arranged arc concaves, and an elongated hole 522 is formed between the positioning portions 521. The positioning portions 521 are engaged with the roller wheels 533 so that the upper and lower covers 51, 52 can be positioned after horizontal movement. The elongated hole 522 is used to accommodate the connecting portion 25 so as to restrict the horizontal adjustment of the upper and lower covers 51, 52.
By such arrangements, the horizontal arrangement of the moveable assembly 50 can be performed directly by adjusting the upper and lower covers 51, 52, so as to make them move relative to the bracket 20. After adjustment, the positioning portion 521 of the lower cover 52 will be engaged with the roller wheel 533 of the rotary member 53, and thus the moveable assembly 50 can be positioned, and the horizontal adjustment of the armrest is accomplished.
While we have shown and described various embodiments in accordance with the present invention, it should be clear to those skilled in the art that further embodiments may be made without departing from the scope of the present invention.
Number | Name | Date | Kind |
---|---|---|---|
5388892 | Tornero | Feb 1995 | A |
5393125 | Watson et al. | Feb 1995 | A |
6053579 | Nelson et al. | Apr 2000 | A |
6394553 | McAllister et al. | May 2002 | B1 |
6398309 | Chen | Jun 2002 | B1 |
6419323 | Chu et al. | Jul 2002 | B1 |
6585322 | Lai | Jul 2003 | B1 |
6773072 | Phillips et al. | Aug 2004 | B2 |