1. Field of the Invention
The present invention relates to a tool box, and more particularly to a tool box with storage members to store tools, such as screwdriver head, and sockets.
2. Description of the Prior Art
Tool boxes used for storage of tools, such as screwdriver head, socket, are normally provided with a cushion or a storage member, and the screwdriver heads or sockets can be inserted in the cushion or storage member for easy recognition or pick up by the user. However, the screwdriver heads or sockets can not be pivoted in the tool boxes for exhibition purpose.
The present invention has arisen to mitigate and/or obviate the afore-described disadvantages.
The primary objective of the present invention is to provide a tool box which storage members, wherein the storage members are allowed to pivot and then fixed in the tool box, so as to improve the functionality of the tool box.
To achieve the above objective, a tool box with storage members in accordance with the present invention comprises: two halves, a plurality of positioning units, and at least one storage member. The two halves are pivoted to each other to form the tool box and capable of being opened and closed with respect to each other, at least one of the two halves is formed with a chamber which includes a bottom and two opposite walls. The positioning units are disposed on the walls, and each of the positioning units includes a positioning cavity which is formed in the walls and located in a first direction, a first arc-shaped guide groove which is formed in the walls and located farther from the bottom than the positioning cavity, a first pivot cavity which is formed at one end of the first arc-shaped guide groove and located in the first direction, a second pivot cavity which is formed at another end of the first arc-shaped guide groove and located in a second direction, a second arc-shaped guide groove which is formed in the walls and located between the first pivot cavity and the positioning cavity, a third pivot cavity which is formed at one end of the second arc-shaped guide groove, located in both the first and second directions and disposed between the first pivot cavity and the positioning cavity, and a fourth pivot cavity which is formed at another end of the second arc-shaped guide groove and located between the second pivot cavity and the bottom. The storage member is pivotally and removably disposed in the chamber, and includes at least one tool-insertion cavity and two lateral surfaces located toward the two walls. Each of the lateral surface includes a first pivot and a second pivot. When the first pivot is pivotally disposed in the positioning cavity, the second pivot is positioned in the third or fourth pivot cavities, and when the first pivot is disposed in the third pivot cavity, the second pivot will be positioned in the first or second pivot cavities.
Preferably, the first direction is perpendicular to the second direction.
Preferably, a distance from the positioning cavity to the third pivot cavity is equal to a distance from the positioning cavity to the fourth pivot cavity.
Preferably, a distance from the third pivot cavity to the first pivot cavity is equal to a distance from the third pivot cavity to the second pivot cavity.
The present invention will be clearer from the following description when viewed together with the accompanying drawings, which show, for purpose of illustrations only, the preferred embodiment in accordance with the present invention.
Referring to
The two halves 20 are pivoted to each other to form the tool box, and capable of being opened and closed with respect to each other. At least one of the two halves 20 is formed with a chamber 21 which includes a bottom 211 and two opposite walls 212. Since the two halves 20 of the tool box are of conventional structures, further description would be omitted here.
The positioning units 30 are disposed on the two walls 212, and each include a positioning cavity 31 which is formed in the walls 212 and located in a first direction 32, a first arc-shaped guide groove 33 which is formed in the walls 212 and located farther from the bottom 211 than the positioning cavity 31, a first pivot cavity 331 which is formed at one end of the first arc-shaped guide groove 33 and located in the first direction 32, a second pivot cavity 332 which is formed at another end of the first arc-shaped guide groove 33 and located in a second direction 34, a second arc-shaped guide groove 35 which is formed in the walls 212 and located between the first pivot cavity 331 and the positioning cavity 31, a third pivot cavity 351 which is formed at one end of the second arc-shaped guide groove 35, located in both the first and second directions 32, 34 and disposed between the first pivot cavity 331 and the positioning cavity 31, and a fourth pivot cavity 352 which is formed at another end of the second arc-shaped guide groove 35 and located between the second pivot cavity 332 and the bottom 211. In this embodiment, the first direction 32 is perpendicular to the bottom 211 of the chamber 21, and the second direction 34 is perpendicular to the first direction 32. A distance L1 from the positioning cavity 31 to the third pivot cavity 351 is equal to a distance L2 from the positioning cavity 31 to the fourth pivot cavity 352, and a distance L3 from the third pivot cavity 351 to the first pivot cavity 331 is equal to a distance L4 from the third pivot cavity 351 to the second pivot cavity 332.
The five storage members 40 are identical structures pivotally and removably disposed in the chamber 21, and each include at least one tool-insertion cavity 41 and two lateral surfaces 42 located toward the two walls 212. Each of the lateral surface 42 includes a first pivot 43 and a second pivot 44. When the first pivot 43 is pivotally disposed in the positioning cavity 31, the second pivot 44 will be positioned in the third or fourth pivot cavities 351, 352. When the first pivot 43 is disposed in the third pivot cavity 351, the second pivot 44 will be positioned in the first or second pivot cavities 331, 332.
What mentioned above are the structures of the present invention, for a better understanding of the invention, its operating advantages and the specific objects attained by its uses, reference should be had to the following descriptive matter.
Each of the storage members 40 can be pivoted and fixed in the following four ways.
First, the storage member 40 (only one storage member 40 described for easy explanation) is pivoted and fixed in the vertical direction in the first manner. As shown in
Second, the storage member 40 is fixed after pivoting an angle. As shown in
Third, the storage member 40 is pivoted and fixed in the vertical direction in a second manner. As shown in
Fourth, the storage member 40 is fixed in a horizontal position. As shown in
As described above, the storage member 40 of the present invention can be pivoted and fixed in four manners with respect to the tool box, namely, the first vertical manner, inclined manner, second vertical manner and horizontal manner.
It is to be noted that, as shown in
While we have shown and described various embodiments in accordance with the present invention, it is clear to those skilled in the art that further embodiments may be made without departing from the scope of the present invention.
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Number | Date | Country | |
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20150258677 A1 | Sep 2015 | US |