In order to improve the operating conveniences and capabilities of toolboxes when users use them, this invention proposes a toolbox structure that can contain driver bits with firm positioning, and perform different dimension shifts for easy carry-on.
This invention proposes a toolbox structure that is easily assembled with fewer components and lower manufacturing costs. As opposed to prior arts, further, it also provides supreme design and extra safety to users when operating their tasks.
To reach aforementioned purpose, the invention proposes a toolbox structure mainly composed of main, left and right containers.
The main container has multiple storing slots on both of its longer sides for containing driver bits, a rectangular recess with two curved wall on the top, an inserting hole at the bottom of the rectangular recess for keeping a driver bit holder, and a connecting concave for connecting with a pivot connector.
The left and right containers are located on both sides of the main container, and have recessing windows and at their front ends. Inside the recessing windows set equally-spaced separating walls so as to make multiple positioning slots that match with the storing slots of the main container. Further, the said left and right containers have left and right fitting rings on the top respectively, and left and right shaft holes on the bottom respectively. The left and right fitting rings, and left and right shaft holes overlaps to each other when assembled. The left fitting ring further extends a hanger on its top with a hanging hole in the center. On the bottom of the left fitting ring sets a ringed groove for fitting with the ringed convexity located on top of the right fitting ring. The right fitting ring also has a ringed groove for fitting with the curved walls of the main container when assembling. The left and right shaft holes are employed to fit together with the pivot connector located at the bottom of the main container. With aforementioned, the left and right containers can, given the pivot connector as the pivot axis, rotate against the main container to open up or close the toolbox for loading or unloading driver bits.
A preferred embodiment of this invention is described as follows: First,
The main container 10 is rectangular-shaped with proper dimension, concaved on both of the longer sides, and has multiple and symmetrical dividing walls 11 to form multiple equally-spaced storing slots 12 for containing driver bits (not shown in the figures); Moreover, in the center of the main container 10 sets a rectangular recess 13, and two curved walls 14 sharing same circle center. An inserting hole 131 penetrates from the bottom of rectangular recess 13 to the bottom of the main container 10 for keeping a driver bit holder (not shown in the figures); Further, at the bottom of the inserting hole 131 sets a connecting concave 132 for connecting with a pivot connector 15; The pivot connector 15 has a fitting body 151 with same shape as the connecting concave 132 in one side for fitting precisely with the connecting concave 132, and a stopping plate 152 to joint with and prevent right container 30 from loosing.
The left and right containers 20, 30 located on both sides of the main container 10 have recessing windows 21 and 31 at their front ends. Inside the recessing windows 21, 31 set equally-spaced separating walls 211, 311 so as to make multiple positioning slots 212, 213, which fit with storing slots 12 (as shown in
Moreover, the left and right shaft holes 23, 33 overlaps to each other at the bottom of the left, right containers 20, 30, and fit with the pivot connector 15 of the main container 10; The left and right shaft holes 23, 33 have left and right half-circled convexity respectively, and left and right limiting faces 231, 331 at their outer sides respectively, so that left half-circled convexity fits with right limiting face 331, and right half-circled convexity fits with left limiting face 231 (as shown in
With aforementioned structure, the invention of a tool container has fewer components than prior arts and features of quick installation, easy use, and lower manufacturing costs. Thus, it proposes more advanced capabilities that prior arts cannot offer. Please be described of further supplemental information for practical usage as follows. The left and right containers 20, 30, given the pivot connector 15 as the pivot axis, can be rotated backwards to open up for load or unload of driver bits.
Further, as shown in
Furthermore, as shown in
Below refers to a technically equivalent extension of proposed structure of the invention, which makes the best use out of this invention.
With reference to
First, upper left and right containers 60, 70 are mounted on both sides of and can be rotated against the upper main container 40. And, the same fashion of above mechanism applies to lower main, left and right containers 50, 80, and 90. Second, at the bottom of upper left, right containers 60, 70 and on the top of lower left, right containers 80, 90 have slant faces 61, 71, 81, and 91 respectively that fit in shape mutually between upper and lower left containers 60, 80, and between upper and lower right containers 70, 90. Also, symmetrical joint rods 62, 72, 82, and 92 are respectively facilitated at the bottom of both upper left, right containers 60, 70 and on top of left, right containers 80, 90. And then, two rod joints 100 are used to respectively connect both upper and lower left containers 60, 80 by fitting with joint rods 62, 82, and connect both upper and lower right containers 70, 90 by fitting with joint rods 72, 92. (As shown in
There are multiple storing slots 41, 51 on both of the longer sides of upper and lower main containers 40 and 50 respectively for storing driver bits. (Not shown in the figures) Moreover, in the center of the upper main container 40 sets a rectangular recess 42, and two curved walls 43 sharing same circle center, which are facilitated to fit with the ringed groove 732 of the upper right fitting ring 73. An inserting hole 421 is set at the bottom of rectangular recess 42 for keeping a driver bit holder (not shown in the figures). At the bottom of upper main container 40 sets a lower rod 44, on top of the lower main container 50 sets a upper rod 52, and at the bottom of the lower main container 50 sets a pivot connector 53.
Further, the upper left, upper right and lower left, lower right containers 60, 70, 80, and 90 have recessing windows 64, 74, 84, and 94 respectively at their front ends, which match with both the longer sides of the upper and lower main containers 40, and 50. On the top of upper left and right containers 60, 70 respectively set upper left and upper right fitting rings 63, and 73 that overlap when fitting. At the bottom of upper left and right containers 60, 70 respectively set upper left and upper right shaft holes 65, and 75 that overlap when fitting. The upper left and upper right fitting rings 63, and 73 respectively sets a ringed groove 631 and ringed convexity 731 for fitting together, and further at the bottom of the upper right fitting rings 73 sets a ringed groove 732 for fitting with the curved walls 43 of the upper main container 40. The upper left and upper right shaft holes 65, and 75 can fit with the lower rods 44 at the bottom of the upper main container 40, and on their outer side have limiting faces 651, and 751 respectively to confine the rotation angle of both upper left and right containers 60, and 70.
On top of the lower left and right containers 80, and 90 respectively extend upper left and right shaft holes 83, and 93 that overlap when fitting, and at their bottom respectively extend lower left and right shaft holes 85, and 95 that overlap when fitting. The upper left and right shaft holes 83, and 93 can fit with the upper rod 52 of the lower main container 50, while the lower left and right shaft holes 85, and 95 can fit the pivot connector 53 at the bottom of the lower main container 50. Further, on the outer and backside parts of the upper left and right shaft holes 83, 93, and the lower left and right shaft holes 85, 95 respectively have limiting faces 831, 931, 851, and 951 for confining the rotation angle of both lower left and right containers 80, and 90.
With aforementioned structures, the lower left and right containers 80, and 90 can be folded backwards (
Further, On the face of joint as shown in
Furthermore, as shown in
With all aforementioned, the invention deserves grant of a patent based on its capability of industrial application and absolute novelty. The example illustrated above is just an exemplary embodiment for the invention, and shall not be utilized to confine the scope of the patent. Any equivalent modifications within the scope of claims of the patent shall be covered in the protection for this patent.
Number | Date | Country | Kind |
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096200263 | Jan 2007 | TW | national |