The present invention relates to a blow molding toolbox, and more particularly to a blow molding toolbox that may increase the structural strength, may provide a buffering effect when the blow molding toolbox hits objects or falls on the ground, and may improve the visual appeal of the blow molding toolbox.
A conventional blow molding 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. The conventional blow molding toolbox may be made of plastic and may be formed in a mold by a blow molding method. The casing and the cover of the conventional blow molding toolbox respectively have an internal hollow structure to reduce the overall weight of the conventional blow molding toolbox, and this is convenient in carriage.
Although the conventional blow molding toolbox can be made conveniently by the blow molding method and is easy to carry, the structural strength of the conventional blow molding toolbox is insufficient. Since each one of the casing and the cover of the conventional blow molding toolbox has the internal hollow structure, when the conventional blow molding toolbox knocks against objects or falls on the ground, one of the corners of the casing or the cover may be broken or damaged, and this will shorten the lifespan of the conventional blow molding toolbox. In addition, the conventional blow molding toolbox is made of plastic and cannot provide a buffering effect when the conventional blow molding toolbox knocks against objects or falls on the ground.
To overcome the shortcomings, the present invention provides a blow molding toolbox to mitigate or obviate the aforementioned problems.
The main objective of the present invention is to provide a blow molding toolbox which is made by a blow molding method, and more particularly to a blow molding toolbox that may increase the structural strength, may provide a buffering effect when the blow molding toolbox hits objects or falls on the ground, and may improve the visual appeal of the blow molding toolbox.
The blow molding toolbox in accordance with the present invention has a casing, a cover, and multiple reinforcing elements. The casing has multiple connecting recesses, multiple guiding slots, and multiple positioning recesses. The connecting recesses are deposited on an external surface of the casing at corners of the casing. The cover is pivotally connected to the casing and has a same structure as the casing. Each one of the reinforcing elements is connected to the casing at one of the corners of the casing to cover a corresponding connecting recess of the casing or is connected to the cover at one of the corners of the cover to cover a corresponding connecting recess of the cover, and each reinforcing element has a body, at least one fixing tube, and at least one tapping screw. The reinforcing elements may increase the structural strength of the blow molding toolbox.
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 reference to
The forming space 11 is a closed space and is formed in the casing 10 between the internal surface and the external surface of the casing 10 by the blow molding method. The at least one storage recess 12 is formed in the internal surface of the casing 10, communicates with the top opening of the casing 10, and is used to store a handheld tool. In addition, the casing 10 may have multiple storage recesses 12 formed in the internal surface of the casing 10 at spaced intervals with different sizes for storing handheld tools of different kinds and sizes. The connecting recesses 13 are deposited on the external surface of the casing 10 at the corners of the casing 10. Furthermore, the casing 10 has four connecting recesses 13 respectively deposited on the four corners of the casing 10.
At least one of the guiding slots 14 is deposited in the external surface of the casing 10 at each one of the corners of the casing 10. Furthermore, there are two of the guiding slots 14 deposited in the external surface of the casing 10 at each one of the corners of the casing 10. At least one of the positioning recesses 15 is deposited in the internal surface of the casing 10 at each one of the corners of the casing 10 and aligns with the at least one guiding slot 14 that is formed at the same corner of the casing 10. Additionally, there are two of the positioning recesses 15 formed in the internal surface of the casing 10 at each one of the corners of the casing 10, and respectively align with the two guiding slots 14 that are formed at the same corner of the casing 10. The handgrip 16 is pivotally deposited on the front side of the casing 10.
With reference to
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 connecting recesses 22 of the cover 20 are deposited on the external surface of the cover 20 at the corners of the cover 20. Furthermore, the cover 20 has four connecting recesses 22 respectively deposited on the four corners of the cover 20. At least one of the guiding slots 23 of the cover 20 is deposited in the external surface of the cover 20 at each one of the corners of the cover 20. Furthermore, there are two of the guiding slots 23 of the cover 20 deposited in the external surface of the cover 20 at each one of the corners of the cover 20.
At least one of the positioning recesses 24 of the cover 20 is deposited in the internal surface of the cover 20 at each one of the corners of the cover 20 and aligns with the at least one guiding slot 23 that is formed at the same corner of the cover 20. Additionally, there are two of the positioning recesses 24 formed in the internal surface of the cover 20 at each one of the corners of the cover 20, and respectively align with the two guiding slots 23 that are formed at the same corner of the cover 20. The at least one locking set 25 is deposited between the front sides of the casing 10 and the cover 20 to hold the cover 20 securely with the casing 10 to cover the top opening and the at least one storage recess 12 of the casing 10 by the cover 20. In addition, the cover 20 has two locking sets 25 deposited between the front sides of the casing 10 and the cover 20 beside the handgrip 16.
Each one of the reinforcing elements 30 is connected to the casing 10 at one of the corners of the casing 10 to cover a corresponding connecting recess 13 of the cover 10 or is connected to the cover 20 at one of the corners of the cover 20 to cover a corresponding connecting recess 22 of the cover 20, and each reinforcing element 30 has a body 31, at least one fixing tube 32, at least one tapping screw 33, and a mounting recess 34.
The body 31 of the reinforcing element 30 has a shape corresponding to the corresponding connecting recess 13, 22 of the casing 10 or the cover 20, and has an inner side and an outer side. The inner side of the body 31 faces the corresponding connecting recess 13, 22 of the casing 10 or the cover 20. The at least one fixing tube 32 is formed on and protrudes from the inner side of the body 31, extends into the forming space 11, 21 of the casing 10 or the cover 20 via the at least one of the guiding slots 14, 23 that is deposited in the corresponding connecting recess 13, 22 of the casing 10 or the cover 20, and aligns with the at least one of the positioning recesses 15, 24 of the casing 10 or the cover 20 that corresponds to the guiding slot 14, 23 of the casing 10 or the cover 20.
With further reference to
The mounting recess 34 is formed in the outer side of the body 31 and has a shape corresponding to the shape of the body 31 to form an outer flange 311 around the body 31. Furthermore, the blow molding toolbox has eight reinforcing elements 30 respectively connected to the eight corners of the casing 10 and the cover 20. In addition, each one of the reinforcing elements 30 may be made of acrylonitrile-butadiene-styrene (ABS) and has a color.
The buffering elements 40 are respectively connected to the reinforcing elements 30 at the corners of the casing 10 and the cover 20. Each one of the buffering elements 40 is deposited in the mounting recess 34 of one of the reinforcing elements 30 at one of the corners of the casing 10 or the cover 20, and the outer flange 311 of the body 31 of the corresponding reinforcing element 30 is deposited around the buffering element 40. Additionally, each one of the buffering elements 40 may be made of thermo-plastic rubber and has a color different from the color of each one of the reinforcing elements 30. Then, the outer flange 311 of the body 31 of each one of the reinforcing elements 30 and the buffering element 40 that is deposited on the body 31 of the corresponding reinforcing element 30 may improve the visual appeal of the blow molding toolbox with different colors at the corners of the casing 10 and the cover 20.
In use, with reference to
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.