1. Field of the Invention
The present invention relates to a locking structure for a tool box, and more particularly to the locking structure among the box body, the handle and the cover, which makes the tool box become a display hand tool box with antitheft protection.
2. Description of the Prior Art
Wrenches, screwdrivers and other hand tools are normally put in a tool box for display when being sold in a shop.
However, most of the existing tool boxes are opened in a flat-spread-out manner, and a user is unable to see the whole inside of the too box, making it inconvenient for the user to find out the desired hand tool. On top of that, the existing tool boxes are mostly not antitheft, and the hand tools are likely to be stolen when being displayed in the tool boxes.
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 locking structure among the box body, the handle and the cover of a tool box, wherein the handle is a rotatable structure which can support the box body to make the box body stand in an inclined manner, so as to allow the user to have a full clear view of the hand tools inside the tool box.
Another objective of the present invention is to provide an antitheft locking structure for a tool box, when the tool box of the present invention is closed, the cover can be tightly locked to the box body and cannot be opened and removed from the box body unless the locking ends of the retainers are destroyed. Therefore, the hand tools cannot be taken out of the tool box without permission.
To achieve the above objectives, a locking structure for a tool box in accordance with the present invention comprises: a box body, a handle, and a cover. The box body includes a top surface and two lateral surfaces at two sides of the top surface, on the top surface are provided two opposed lines of positioning hooks, at one end of the box body is formed an engaging groove, and at another end of the box body are formed two round pivoting holes which are located at the two lateral surfaces. The handle includes two assembling rods and a connecting portion connected to one end of each of the assembling rods. In the middle of each of the assembling rods is formed a rotating hole, and at another end of each of the assembling rods is formed a connecting pivot which is pivotally inserted in the pivoting holes of the box body, so that the handle is pivotally coupled to the box body. The cover includes an engaging end and a pivoting end, at each of two sides of the pivoting end is formed a rotating pivot, between the engaging end and the pivoting end is disposed a plate, the cover is pivoted to the handle by inserting the rotating pivots in the rotating holes of the handle.
To achieve the above objectives, a locking structure for a tool box in accordance with the present invention comprises: a box body, a handle, and a cover. The box body includes a top surface and two lateral surfaces at two sides of the top surface, on the top surface are provided two opposed lines of positioning hooks, at each of top and lower edges of the top surface of the box body is formed a positioning hole, at one end of the box body is formed an engaging groove, and at another end of the box body are formed two round pivoting holes which are located at the two lateral surfaces, an engaging portion and a positioning block are formed around each of the pivoting holes of the box body. The handle includes two assembling rods and a connecting portion connected to one end of each of the assembling rods, in the middle of each of the assembling rods is formed a rotating hole, at another end of each of the assembling rods is formed a connecting pivot which is pivotally inserted in the pivoting holes of the box body, so that the handle is pivotally coupled to the box body. Beside each of the connecting pivots are formed a locking groove and a stop cavity at the end of the locking groove, the engaging portions of the box body are restricted in the stop cavities, and an inferior angle is defined between the handle and the box body. The cover includes an engaging end and a pivoting end, between the engaging end and the pivoting end is disposed a plate, the cover is provided with two positioning retainers to be engaged with the positioning holes of the box body, the cover is pivoted to the handle via the pivoting end.
To achieve the above objectives, a locking structure for a tool box in accordance with the present invention comprises: a box body, a handle, and a cover. The box body includes a top surface and two lateral surfaces at two sides of the top surface, on the top surface are provided two opposed lines of positioning hooks, at each of top and lower edges of the top surface of the box body is formed a positioning hole, at one end of the box body is formed an engaging groove. The handle includes two assembling rods and a connecting portion connected to one end of each of the assembling rods, another end of each of the assembling rods is pivotally coupled to the box body. The cover includes an engaging end and a pivoting end, at a terminal edge of the engaging end is formed an engaging rib. The pivoting end is pivoted to the assembling rods of the handle, between the engaging end and the pivoting end is disposed a plate. The cover is provided with two positioning retainers to be engaged with the positioning holes of the box body, each of the positioning retainers is provided with a locking end, the cover is pivoted to the handle via the pivoting end, the engaging rib is engaged in the engaging groove of the box body, the locking ends are locked in the positioning holes, and when the locking ends are damaged or destroyed, the positioning retainers will be disengaged from the positioning holes of the box body.
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 box body 20 includes a top surface 21 and two lateral surfaces 22 at two sides of the top surface 21. On the top surface 21 are provided two opposed lines of positioning hooks 23 which are arranged in an order from large to small. At each of the top and lower edges of the top surface 21 is formed a positioning hole 24. At one end of the box body 20 is formed an engaging groove 25, and at another end of the box body 20 is formed two round pivoting holes 26 which are located at the two lateral surfaces 22. Around each of the pivoting holes 26 are formed an engaging portion 27 and a positioning block 28.
The handle 30 includes two assembling rods 31 and a connecting portion 36 connected to one end of each of the assembling rods 31. In the middle of each of the assembling rods 31 is formed a rotating hole 32, and at another end of each of the assembling rods 31 is formed a connecting pivot 33 which has an outer diameter equal to or smaller than the inner diameter of the pivoting holes 26. Beside each of the connecting pivots 33 is formed a locking groove 34 and a stop cavity 35 at the end of the locking groove 34. The connecting pivot 33 at the another end of each of the assembling rods 31 is pivotally inserted in the pivoting holes 26 of the box body 20, so that the handle 30 is pivotally coupled to the box body 20, and the pivot angle of the handle 30 with respect to the box body 20 is restricted by the positioning block 28 and the engaging portion 27.
The cover 40 includes an engaging end 41 and a pivoting end 42. At a terminal edge of the engaging end 41 is formed an engaging rib 411, and at each of two sides of the pivoting end 42 is formed a rotating pivot 421. Between the engaging end 41 and the pivoting end 42 is disposed a plate 43 which is provided with two positioning retainers 44 to be engaged with the positioning holes 24. Each of the positioning retainers 44 has a locking end 441. The cover 40 is pivoted to the handle 30 by inserting the rotating pivots 421 in the rotating holes 32, the engaging rib 411 at the engaging end 41 is engaged in the engaging groove 25 of the box body 20, and the positioning retainers 44 with the locking ends 441 are engaged in the positioning holes 24 of the box body 20.
The mentioned above are the structural relations of the main parts of the locking structure for a tool box in accordance with the present invention.
For a better understanding of the operation and functions of the present invention, reference should be made back to
It is to be noted that, as shown in
Referring to
The tool box of the present invention can be opened in different ways. For example, 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.
Number | Name | Date | Kind |
---|---|---|---|
5505316 | Lee | Apr 1996 | A |
6464840 | McCann | Oct 2002 | B1 |
6896136 | Hu | May 2005 | B2 |
7987975 | Lee | Aug 2011 | B1 |
7987981 | Lee | Aug 2011 | B1 |
20050051445 | Meehan et al. | Mar 2005 | A1 |
20050051446 | Chen | Mar 2005 | A1 |
20060096878 | Chen | May 2006 | A1 |