This application claims priority of Taiwanese Patent Application No. 102135855, filed on Oct. 3, 2013.
1. Field of the Invention
The invention relates to a tool storage device, more particularly to a tool storage device with a linkage mechanism.
2. Description of the Related Art
In order to conveniently store and retrieve multiple tools or multiple tool heads of a tool, conventional tool storage devices are provided, such as those disclosed in Taiwanese Patents TW475509, TWM371068, TW582328, TWM241196, TWM241197, TWM389004, TW20137093 and TWM392723.
There are a variety of structures and operational methods for each of the aforementioned Patent cases. As an example, TW475509 and TWM371068 disclose conventional tool storage devices having the same limitation, which is the usage of a slide cap or lift cap that can be slid or lifted open. Storing members for tool heads are biased by springs to stand up so as to facilitate access of the tool heads.
Moreover, in Taiwanese Patents TW582328, TWM241196, TWM241197, TWM389004 and TW20137093, other conventional tool storage devices are disclosed in which the storing members and the caps are associated with a linkage mechanism, so that movement of the caps will simultaneously move the tool heads upright. In addition, in TWM392723, the user has to manually rotate a gear for driving each of the storing members to standup from a flat-lying position (i.e., from the horizontal position to the vertical position).
However, the abovementioned conventional tool storage devices still have a number of drawbacks to be overcome.
First, the movement range of each of the storing members is too small for the tools therein to be easily picked up by the user. The storing members are in parallel arrangement. Each of the storing members is pivotable about a longitudinal axis thereof. As such, the storing members are laid out to be disposed proximate to one another, and the user would not be able to pick up a tool head from a storing member without interference from neighboring tool heads or storing members.
Second, the opening and closing operations of the caps are not convenient and are time-consuming. Great force may be required to slide or lift the cap open.
Therefore, the object of the present invention is to provide a tool storage device that can alleviate the aforesaid drawbacks of the prior art.
According to the pre sent invention, there is provided a tool storage device including a housing, a linkage unit, a biasing member and a locking member. The housing is formed with an accommodating space, and a plurality of side openings. Each of the openings is formed in an outer lateral side of the housing and is in spatial communication with the accommodating space. The linkage unit is disposed in the housing and includes a driving member, a plurality of storing members and a linkage mechanism. The storing members surround the driving member, and each has a first end that is proximate to the driving member and that is pivotally connected to the housing, and a second end that is distal from the first end. The linkage mechanism interconnects the storing members and the driving member. The linkage unit is convertible between a retracted position, where the second ends of the storing members are accommodated in the accommodating space, and an expanded position, where the storing members are driven by the driving member via the linkage mechanism to pivot so that the second ends of the storing members are away from the housing with different orientations via the side openings, respectively. The biasing member is disposed in the housing for biasing the linkage unit from the retracted position to the expanded position. The locking member is mounted to the housing for locking releasably the linkage unit in the retracted position.
Other features and advantages of the present invention will become apparent in the following detailed description of the preferred embodiment with reference to the accompanying drawings, of which:
Referring to
The housing 1 includes a bottom body 11, and a top body 12 opposite to the bottom body 11. The housing 1 is formed with an accommodating space 13 which is cooperatively defined by the bottom and top bodies 11, 12, and a plurality of side openings 14 formed between the bottom and top bodies 11, 12. In this embodiment, each of the side openings 14 is formed in a respective one of outer lateral sides of the housing 1 and is in spatial communication with the accommodating space 13.
The housing 1 also includes a main column 15, a plurality of bottom columns 16 (only one is visible in
The linkage unit 2 is disposed in the housing 1, and includes a driving member 21, a plurality of storing members 22 and a linkage mechanism 23. The driving member 21 is mounted in the housing 1, and has an annular wall 213 that is sleeved rotatably on the main column 15 and that is formed with a slot 212. The main column 15 is formed with a plurality of slits 151, and a plurality of securing hooks 152 at a top end thereof for fixing the driving member 21 between the bottom body 11 and the securing hooks 152. Each of the securing hooks 152 is formed between an adjacent pair of the slits 151 so that the securing hooks 152 are resiliently deformable to facilitate the coupling of the driving member 21 to the main column 15. The storing members 22 surround the driving member 21. Each of the storing members 22 has a first end 221 that is proximate to the driving member 21 and that is pivotally sleeved on a respective one of the top columns 17 and a corresponding one of the bottom columns 16, and a second end 222 that is distal from the first end 221.
In this embodiment, the driving member 21 of the linkage unit 2 is rotatable about a central axis thereof, and each of the storing members 22 is pivotable about a pivot axis which is parallel to the central axis of the driving member 21.
The linkage unit 2 is convertible between a retracted position (see
In this embodiment, the linkage mechanism 23 interconnects the storing members 22 and the driving member 21, and includes a sun gear 231 and a plurality of planet gears 232. The sun gear 231 is mounted on the driving member 21. Each of the planet gears 232 is connected to the first end 221 of a respective one of the storing members 22, and meshes with the sun gear 231. Each of the planet gears 232 is substantially fan-shaped, and has first and second edges 233, 234. Further referring to
When the linkage unit 2 is in the retracted position, the storing members 22 are entirely accommodated in the accommodating space 13. During conversion of the linkage unit 2 from the retracted position to the expanded position, the driving member 21 is rotated to drive rotation of the planet gears 232 via the sun gear 231 of the linkage mechanism 23, thereby causing pivot movement of the storing members 22 outward from the housing 1 respectively through the side openings 14.
The biasing member 3 is disposed in the housing 1 for biasing the linkage unit 2 from the retracted position to the expanded position. In this embodiment, the biasing member 3 is a torsion spring for biasing the storing members 22 away from the retracted position. The bottom body 11 of the housing 1 is formed with an insert hole 111, and the driving member 21 of the linkage unit 2 further has a stopper plate 211 (see
The locking member 4 is mounted on the top body 12 of the housing 1 for locking releasably the linkage unit 2 in the retracted position. The locking member 4 includes a locking bolt 41, a return spring 42 and a release button 43. The locking bolt 41 is movable along an axis (L) (see
To switch the linkage unit 2 from the retracted position to the expanded position, the release button 43 is pushed against a resilient force of the return spring 42 to disengage the locking bolt 41 from the slot 212 of the driving member 21, thereby unlocking the driving member 21. Afterward, a biasing force of the biasing member 3 automatically drives the driving member 21 to rotate via the abutment between the stopper plate 21 and the other end 32 of the biasing member 3 for eventually converting the linkage unit 2 from the retracted position to the expanded position. During the aforesaid conversion of the linkage unit 2, the locking bolt 41 slides on the inner surface of the annular wall 213 of the driving member 21.
Since the storing members 22 have different orientations when the linkage unit 2 is in the expanded position, access to a tool head from any of the storing members 22 would not be easily interfered by a neighboring one of the storing members 22. Moreover, the user can easily conduct the expansion of the storing members 22 by simply pushing the release button 43.
To switch the linkage unit 2 from the expanded position back to the retracted position, the user just needs to push any of the storing members 22 toward the accommodating space 13 in the housing 1. All of the storing members 22 will move simultaneously into the accommodating space 13 by virtue of the linkage between the sun gear 231 and the planet gears 232 of the linkage mechanism 23. Meanwhile, the driving member 21 is driven to rotate reversely until the linkage unit 2 returns to the retracted position, where the slot 212 is registered with the locking bolt 41. The locking bolt 41 of the locking member 4 will then be biased by the return spring 42 to re-engage the slot 212, thereby locking the linkage unit 2 in the retracted position.
With reference to
While the present invention has been described in connection with what is considered the most practical and preferred embodiment, it is understood that this invention is not limited to the disclosed embodiment but is intended to cover various arrangements included within the spirit and scope of the broadest interpretation so as to encompass all such modifications and equivalent arrangements.
| Number | Date | Country | Kind |
|---|---|---|---|
| 102135855 | Oct 2013 | TW | national |