1. Field of the Invention
The present invention relates to a toolbox which is made by a blow molding method, and more particularly to a toolbox that may increase the structural strength and extend the life of the toolbox.
2. Description of Related Art
A conventional toolbox is used to store objects such as handheld tools and has a casing and a cover. The cover is pivotally connected to the casing to selectively cover the casing, and this may form a receiving space between the casing and the cover to store the handheld tools. In addition, the conventional toolbox may be made of wood or metal. The wooden toolbox may be inconvenient for manufacturing and prone to wear after using, and this may increase the cost of manufacturing and using the wooden toolbox. Although the metal toolbox may reduce wear after using, the metal toolbox has a certain weight, and this may increase the difficulty of transportation. Therefore, a plastic toolbox may be formed in a mold by a blow molding method, and this may be convenient and time-saving for manufacturing. The casing and the cover of the plastic toolbox respectively have an internal hollow structure to reduce the overall weight of the plastic toolbox and this is convenient in carriage. Consequently, the blow molding method has become one of the common options for manufacturing toolboxes.
Although the plastic toolbox can be made conveniently by the blow molding method and easy to carry, the plastic toolbox has multiple locking elements mounted on the casing and the cover, and the locking elements that are mounted on the casing engage the locking elements that are mounted on the cover. Then, the cover is locked with the casing of the plastic toolbox. However, the casing and the cover of the plastic toolbox are respectively internally hollow structures, and each one of the locking elements is mounted on an external surface of the casing or the cover by extending through the external surface and an internal surface of the casing or the cover. When a user stores multiple handheld tools in the plastic toolbox and holds a handle of the cover to carry the handheld tools with the plastic toolbox, the casing and the cover of the plastic toolbox may be deformed at positions of the locking elements by the weight of the handheld tools since the structural strength between the locking elements of the casing and the cover are insufficient. Furthermore, the locking elements may be separated from the casing or the cover of the plastic toolbox by the deformation of the toolbox after a long time. Then the life of the plastic toolbox will be shortened by the insufficient structural strength of the plastic toolbox.
To overcome the shortcomings, the present invention provides a toolbox to mitigate or obviate the aforementioned problems.
The main objective of the present invention is to provide a toolbox which is made by a blow molding method, and more particularly to a toolbox that may increase the structural strength and extend the life of the toolbox.
The toolbox has a casing and a cover. The casing has a top mounting flange, a first strengthening frame, and at least one engaging ring. The top mounting flange is formed on the casing. The first strengthening frame is mounted around the top mounting flange. The at least one engaging ring is mounted on the casing and has multiple ring fasteners mounted through the engaging ring and the top mounting flange via the first strengthening frame. The cover is connected to the casing and has a bottom mounting flange, a second strengthening frame, and at least one engaging protrusion. The bottom mounting flange is formed on the cover. The second strengthening frame is mounted around the bottom mounting flange. The at least one engaging protrusion is mounted on the cover and has multiple protrusion fasteners mounted through the engaging protrusion and the bottom mounting flange via the second strengthening frame.
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.
With reference to
With further reference to
The top mounting flange 12 is annularly formed on and protrudes upwardly from the external surface of the casing 10 entirely around the top opening of the casing 10. The first strengthening frame 13 is annular, is entirely mounted around the top mounting flange 12 to form a closed shape as shown in
The cover 20 is pivotally connected to the casing 10 and has an external surface, an internal surface, a front side, a rear side, two opposite sides, a bottom side, a top side, a bottom opening, a forming space 21, a bottom mounting flange 22, a second strengthening frame 23, at least one engaging protrusion 24, multiple connecting hinges 25, a supporting element 26, and a handle 27. The opposite sides of the cover 20 are formed with the front side and the rear side of the cover 20 and face to each other. The bottom opening is formed through the bottom side of the cover 20 between the front side, the rear side, and the two opposite sides of the cover 20, and is corresponding in position to the top opening of the casing 10. The forming space 21 is a closed space and is formed in the cover 20 between the internal surface and the external surface of the cover 20 by the blow molding method.
The bottom mounting flange 22 is annularly formed on and protrudes downwardly from the external surface of the cover 20 entirely around the bottom opening of the cover 20. The second strengthening frame 23 is annular, is entirely mounted around the bottom mounting flange 22 to form a closed shape as shown in
Furthermore, the cover 20 has two engaging protrusions 24 securely mounted on the front side of the cover 20 at a spaced interval and respectively and selectively engaging with the two engaging rings 14 of the casing 10 to hold the cover 20 securely with the casing 10 to close the top opening of the casing 10 and the bottom opening of the cover 20.
With reference to
Some of the multiple hinge fasteners 251 are mounted through the middle segment of the connecting hinge 25 and the top mounting flange 12 via the first strengthening frame 13 to connect the middle segment of the connecting hinge 25 securely with the first strengthening frame 13 and the top mounting flange 12 at the rear side of the casing 10, and the others of the multiple hinge fasteners 251 are mounted through the middle segment of the connecting hinge 25 and the bottom mounting flange 22 via the second strengthening frame 23 to connect the middle segment of the connecting hinge 25 securely with the second strengthening frame 23 and the bottom mounting flange 22 at the rear side of the cover 20.
The bottom segment and the top segment of the connecting hinge 25 are formed with the middle segment of the connecting hinge 25 respectively at the rear sides of the casing 10 and the cover 20. The two reinforcing sheets 252 are respectively formed on the bottom segment and the top segment of the connecting hinge 25 and respectively abut the rear sides of the casing 10 and the cover 20. The top fixing elements 253 are mounted through the reinforcing sheet 252 that abuts the rear side of the cover 20 and are connected to the rear side of the cover 20. The bottom fixing elements 254 are mounted through the reinforcing sheet 252 that abuts the rear side of the casing 10 and are connected to the rear side of the casing 10. Additionally, each one of the ring fasteners 141, the protrusion fasteners 241, the top fixing elements 253, and the bottom fixing elements 254 may be a rivet.
With reference to
In use, with reference to
With reference to
Additionally, the middle segment of each one of the multiple connecting hinges 25 is connected to the casing 10 and the cover 20 respectively via the first strengthening frame 13 and the second strengthening frame 23. Then, when the user holds the toolbox, the two strengthening frames 13, 23 can increase the structural strength of the toolbox and maintain the shapes of the casing 10 and the cover 20 to prevent the toolbox from deforming when the user holds the toolbox with the handheld tools. Furthermore, the engaging rings 14 and the engaging protrusions 24 are respectively connected to the casing 10 and the cover 20 via the two strengthening frames 13, 23 without directly connecting to the casing 10 and the cover 20 with the forming spaces 11, 21. The engaging rings 14 and the engaging protrusions 24 can be securely and respectively connected to the casing 10 and the cover 20 without separating from the casing 10 and the cover 20 after a long time of use. In addition, the middle segment of each one of the multiple connecting hinges 25 is connected to the casing 10 and the cover 20 via the two strengthening frames 13, 23, and this also can increase the structural strength of the toolbox. Consequently, the structural strength of the toolbox can be improved by the above-mentioned features, and the life of the toolbox also can be longer than the conventional plastic toolbox.
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.
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