The present invention is related to a chucking structure serving to prevent two relatively slidable articles from slipping, and more particularly to a chucking structure for preventing the drawers of a file cabinet or tool cabinet from unexpectedly sliding out of the cabinet.
A conventional file cabinet or tool cabinet is substantially composed of several wallboards which define a rectangular solid internal space. The internal space has a front opening. Several drawers are arranged in the internal space from upper side to lower side for placing papers or tools therein. In order to smoothly draw out and push in the drawers, slide rails are respectively mounted between the cabinet and the drawers. Moreover, ball bearings are laid between the slide rails for more easily drawing out and pushing in the drawers without causing noise.
In case that the file cabinet or tool cabinet is rested on an inclined ground or tilted, it often takes place that the drawers themselves slide out of the cabinet or even drop onto the ground. This leads to inconvenience and is dangerous.
It is therefore a primary object of the present invention to provide an antislip drawer-chucking structure for the drawers of a file cabinet or tool cabinet. In case that the file cabinet or tool cabinet is rested on an inclined ground or tilted, the antislip drawer-chucking structure prevents the drawers of the file cabinet or tool cabinet from unexpectedly sliding out of the cabinet. The drawers can be conveniently released from the drawer-chucking structure as necessary.
According to the above object, the antislip drawer-chucking structure of the present invention includes a cabinet body, at least one drawer and a chucking unit. The drawer can be slid and drawn out of and pushed into the cabinet body. The chucking unit includes a shift member, a first engaging section and a second engaging section. The shift member is disposed on outer face of the front board of the drawer, including a handle section and a shift section. The handle section is fixed on the drawer. The shift section is positioned between the handle section and the drawer and movable between a first position and a second position. The first engaging section is arranged at one end of the shift section. The second engaging section is arranged on the cabinet body corresponding to the first engaging section.
The present invention can be best understood through the following description and accompanying drawings wherein:
Please refer to
The cabinet body 12 is composed of a rear board 121, two sideboards 122, an upper board 123 and a lower board 124 which define a rectangular solid internal space. The cabinet body 12 has a front opening. A first slide section 22 such as a cabinet slide rail is fixedly mounted on inner face of each sideboard 122 of the cabinet body 12.
The drawer 14 is composed of a front board 141, a rear board 142, two sideboards 143 and a lower board 144 which define a rectangular solid internal space. The drawer 14 has an upper opening. A second slide section such as a drawer slide rail is fixedly mounted on outer face of each sideboard 143 of the drawer 14. The second slide section 42 is slidably fitted in the first slide section 22, whereby the drawer 14 can be slid and drawn out of and pushed into the cabinet body 12.
The chucking unit 16 includes a shift member 62, a first engaging section 64 and a second engaging section 66.
The shift member 62 is disposed on outer face of the front board 141 of the drawer 14, including a handle section 621 and a shift section 622. The handle section 621 is fixed on the drawer 14. The shift section 622 is up and down movably positioned between the handle section 621 and the drawer 14.
The first engaging section 64 is arranged at one end or two ends of the shift section 622.
The second engaging section 66 is arranged on the cabinet body 12 such as at outer end of the first slide section 22 corresponding to the first engaging section 64. The second engaging section 66 can be a sectional face. When the drawer 14 is fully pushed into the cabinet 12 and the shift section 622 is positioned in a lower position, the first and second engaging sections 64, 66 are engaged with each other. When the drawer 14 is fully pushed into the cabinet 12 and the shift section 622 is positioned in an upper position, the first and second engaging sections 64, 66 are disengaged from each other.
According to the above arrangement, when the drawer 14 is pushed into the cabinet body 12, due to gravity, the shift section 622 is positioned in the lower position. At this time, the first and second engaging sections 64, 66 are engaged with each other as shown in
Moreover, an upper end of the sectional face is formed with a downward extending guide slope 661. Accordingly, even if the shift section 622 is not manually shifted, the shift section 622 can be also smoothly moved from the lower position to the upper position, permitting the drawer 14 to be pushed into the cabinet body 12.
Moreover, referring to
Referring to
The above embodiments are only used to illustrate the present invention, not intended to limit the scope thereof. Many modifications of the above embodiments can be made without departing from the spirit of the present invention.
Number | Date | Country | Kind |
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096217459 | Oct 2007 | TW | national |