The present invention relates to a toolbox, and more particularly to a toolbox that can be stacked up with other toolboxes.
A conventional stackable toolbox, as disclosed in Taiwan Utility Model No. M428033, has multiple protrusions formed on a first body, and multiple recesses formed in a second body and corresponding to the protrusions of the first body in position and shape. When multiple toolboxes are stacked up, the protrusions of the first body of one toolbox are set in the recesses on the second body of another toolbox to stack up the toolboxes stably. However, after stacked, the stacked conventional toolboxes cannot be lifted together.
Another conventional stackable toolbox assembly, as disclosed in Taiwan Utility Model No. M427245, has two bodies, and each body of the toolbox assembly has a fixed sheet mounted on the body and a gap formed between the fixed sheet and the body. When two bodies are assembled, the upper body is slid to insert the fixed sheet of each body into the gap of the other body, and to engage the bodies with each other. However, because the fixed sheets are fixed on the bodies with bolts, the fixed sheets may be broken easily or the bolts may be loosened easily when heavy toolboxes engaged with each other are lifted together.
Another conventional stackable toolbox, as disclosed in Taiwan Utility Model No. M500665, has a body and two connecting elements pivotally connected to the body. When two toolboxes are stacked up with each other, the connecting elements of the upper toolbox are rotated 180 degrees relative to the body of the upper toolbox to engage with corresponding holding recesses of the body of the lower toolbox, and the toolboxes can be stacked and held stably with each other. However, the conventional stackable toolbox has the following disadvantages. The pivotal connection between each connecting element and the body would be destroyed easily by bumping impact or plucking. The engagement between connecting elements of one toolbox and the holding recesses of the other toolbox would be destroyed easily by impact. Because the connecting elements are pressed to engage with the other toolbox or are pulled to separate from the other toolbox, the connecting elements might be broken after a long-term use, and this causes failure of the engagement function of the toolbox.
To overcome the shortcomings, the present invention provides a stackable toolbox to mitigate or obviate the aforementioned problems.
The main objective of the present invention is to provide a toolbox that has simple connection structures, can be stacked up with other toolboxes stably, and can be lifted with other toolboxes.
The stackable toolbox of the present invention has a body and an engaging block. The body has a first face, a second face, multiple side faces, two first recesses, two second recesses, two first protrusions, two second protrusions, and two engaging bumps. The first face and the second face are on opposite sides of the body. The multiple side faces are connected with the first face and the second face, and one of the multiple side faces is defined as a first side face. The two first recesses are formed in opposite side edges of the first face of the body in positions away from the first side face of the body, and each first recess has a bottom wall, multiple sidewalls, and an engaging groove formed with the bottom wall of the first recess and one of the sidewalls of the first recess away from the first side face of the body, and the engaging groove has a triangular cross section having an acute angle. The two second recesses are formed in opposite side edges of the first face of the body in positions near the first side face of the body. The two first protrusions correspond to the two first recesses of the body in position and shape, are formed on and protrude from opposite sides of the second face of the body in positions away from the first side face of the body, and each first protrusion has a top wall, multiple sidewalls, and an engaging rib corresponding to the engaging groove of the corresponding one of the first recesses. The engaging rib is formed on one of the sidewalls of the first protrusion away from the first side face of the body and has a triangular cross section having an acute angle. The two second protrusions correspond to the two second recesses of the body in position and shape, and are formed on and protrude from opposite side edges of the second face of the body in positions near the first side face of the body. The two engaging bumps are formed on and protrude from the first side face at an interval along a direction from the first face of the body to the second face of the body, and each engaging bump has a convex surface formed on a side away from the other engaging bump. The engaging block is rotatably mounted on the first side face of the body, and has a connection portion and two engaging recesses. The connection portion is formed on a middle of the engaging block and is rotatably connected with the first side face of the body at a side of one of the engaging bumps of the body away from the other engaging bump of the body. The two engaging recesses are formed in a side of the engaging block facing the first side face of the body and are located at opposite sides of the connection portion of the engaging block, and each engaging recess has a concave surface away from the other engaging recess.
Other objectives, advantages and novel features of the invention will become more apparent from the following detailed description when taken in conjunction with the accompanying drawings.
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The body 10 is a rectangular case, and has a first face 11, a second face 12, multiple side faces, two first recesses 14, two second recesses 15, two first protrusions 16, two second protrusions 17, and two engaging bumps 18.
The first face 11 and the second face 12 are on opposite sides of the body 10. Each side face is connected with the first face 11 and the second face 12, and one of the side faces is defined as a first side face 13. Preferably, the body 10 has two casings 10A, 10B. The two casings 10A, 10B are pivotally connected with each other at a side opposite the first side face 13 of the body 10. The first face 11 and the second face 12 are respectively formed on the two casings 10A, 10B. The side faces are formed with the two casings 10A, 10B. The body 10 has buckles mounted in a position opposite the pivotal connection of the two casings 10A, 10B for engaging the two casings 10A, 10B with each other.
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The two engaging recesses 22 are formed in the side of the engaging block 20 facing the first side face 13 of the body 10, and are located at opposite sides of the connection portion 21 of the engaging block 20. Each engaging recess 22 has a concave surface away from the other engaging recess 22 and corresponding to the convex surface of each engaging bump 18 of the body 10 in shape. The distance from the concave surface of each engaging recess 22 to the axis of the connection portion 21 is substantially equal to the distance from the convex surface of one of the engaging bumps 18 of the body 10 near the engaging block 20 to the axis of the connection portion 21. The engaging block 20 has an initial position and a connection position. When the engaging block 20 is in the connection position, one of the engaging recesses 22 of the engaging block 20 is engaged with one of the engaging bumps 18 of the body 10 near the engaging block 20. Preferably, the engaging block 20 has a long length and a short length; when the engaging block 20 is in the initial position, the engaging block 20 is kept from extending out from the first face 11 or the second face 12 of the body 10. The two engaging bumps 18 are formed on one of the casings 10B, and the engaging block 20 is rotatably mounted on the other casing 10A. When the engaging block 20 is in the connection position, the two casings 10A, 10B can be connected with each other by the engaging block 20.
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According to the above-mentioned features and structural relationships of the toolbox in accordance with the present invention, the toolbox has the following advantages.
1. The structure of the toolbox in accordance with the present invention is simple and can be manufactured and assembled easily.
2. Multiple toolboxes in accordance with the present invention can be stacked up with together stably and can be lifted together with the stackable features of the present invention.
3. Two toolboxes in accordance with the present invention can be connected stably and easily.
4. The engaging block 20 may be rotatably connected to the body 10 stably and firmly by a pair of corresponding shaft and shaft hole of larger diameters, and the engaging block 20 will not be broken easily and has durable engagement between the engaging recesses 22 and the engaging bumps 18 of the two bodies 10 assembled.
Even though numerous characteristics and advantages of the present invention have been set forth in the foregoing description, together with details of the structure and features of the invention, the disclosure is illustrative only. Changes may be made in the details, especially in matters of shape, size, and arrangement of parts within the principles of the invention to the full extent indicated by the broad general meaning of the terms in which the appended claims are expressed.