The invention relates to a safety storage cabinet constructed of injection molded plastic panels. The panels are configured to be snapped together, without the use of tools, to result in an assembled safety storage cabinet. The safety storage cabinet is primarily intended for use in storing acids and corrosive liquids contained in bottles or storage containers.
Cabinets for storing containers of hazardous materials in commercial and industrial settings are required by various safety regulations. Prior art safety storage cabinets, especially those having a large capacity, are bulky and thus difficult and expensive to ship to a purchaser. Other prior art safety cabinets, that are in a dismantled state for shipping, require time-consuming assembly using a variety of tools.
The present invention is a molded plastic storage cabinet having a plurality of panels that can be snap-fit together. The panels are a door panel serving as a door, the door panel being symmetric about a horizontal center line; a back panel; a pair of side panels, each side panel being symmetric about a horizontal centerline; a top panel and a bottom panel, each arranged to connect to the back and side panels, and each having a hinge/latch pin at ends of a front edge. The door panel has a hinge cavity at one end and a door latch at the other end of a top and a bottom edge, to permit latching or hinging of the door panel on the hinge/latch pins.
In one embodiment of the molded plastic storage cabinet having a plurality of panels that can be snap-fit together, one of the pair of side panels is provided with a hasp having an opening for a lock, and the door panel is provided with an opening to receive the hasp, whereby the door may be secured with a padlock or the like.
In another embodiment of the molded plastic storage cabinet having a plurality of panels that can be snap-fit together, the pair of side panels may be reversed and rotated 180 degrees and the door panel is arranged to rotate 180 degrees so as to allow the door to open and close in directions opposite that before the reversal of the side panels.
In still another embodiment, of the molded plastic storage cabinet having a plurality of panels that can be snap-fit together, sumps are provided in at least one of the top and bottom panels.
In still a further embodiment of the molded plastic storage cabinet having a plurality of panels that can be snap-fit together, shelf supports are provided on the pair of side panels and back panel, and shelves are provided that are arranged to be mounted on the shelf supports.
In still a further embodiment of the molded plastic storage cabinet having a plurality of panels that can be snap-fit together, the shelf supports include ridges and the shelves have grooves which interlock with the ridges to hold each shelf from sliding outwardly when containers are removed from the shelves.
In still a further embodiment of the molded plastic storage cabinet having a plurality of panels that can be snap-fit together, locking slots and locking tab retainers are provided in the bottom panel and the top panel, and edges of the side panels and the back panel engage with respective locking tab retainers to retain the side panels and back panel in the bottom panel and top panel.
In still a further embodiment of the molded plastic storage cabinet having a plurality of panels that can be snap-fit together, a lock well is provided in each of the top panel and the bottom panel and a lock key is provided arranged to be inserted into the lock wells to enable locking of one cabinet atop another in locked relationship.
In still a further embodiment of the molded plastic storage cabinet having a plurality of panels that can be snap-lit together, I-beam locks are provided arranged to be inserted into the lock wells to enable locking of one cabinet to another in a side-by-side relationship.
In still a further embodiment of the molded plastic storage cabinet having a plurality of panels that can be snap-fit together, L-brackets are provided and attach to a cabinet for mounting a cabinet to a wall.
In still a further embodiment of the molded plastic storage cabinet having a plurality of panels that can be snap-fit together, lock wells of the top panel and bottom panel are the same configuration and dimensions and are used for attachment with both the snap keys and the I-beam locks.
In still a further embodiment of the molded plastic storage cabinet having a plurality of panels that can be snap-fit together, the cabinet is formed of high-density polyethylene.
Components of the safety storage cabinet 1, in a disassembled state, are shown in
The components are easily assembled to form the cabinet 1, without the use of tools. In the following description of the cabinet, terms such as horizontal and vertical are in relation to the cabinet having its bottom panel on a floor. Terms such as left and right are in relation to facing the outside of the front door panel.
An assembled cabinet 1 using the components shown in
The preferred order of assembly is to first attach the back panel 4 to the bottom panel 2. Next the side panels 5 and 6 are attached to the bottom panel. As shown in
A feature of the invention is the symmetry of both side panels about a horizontal centerline, which enables a horizontal edge of a side panel to be contacting either the top panel 3 or die bottom panel 2, when assembled. It is this symmetry that enables the door panel 7 to have a left-handed or right-handed operation. If a left-handed option is desired, the side panel 6 having the hasp should be on the right side of the cabinet, in relation to facing the front door panel opening. If a right-handed operation is desired, the side panel 6 having the hasp should be on the left side of the cabinet, in relation to facing the front door panel opening.
Following assembly of the bottom, panel 2, back panel 4 and side panels 5 and 6, the front door panel 7 is placed onto hinge/latch pin 13 of the bottom panel by inserting the hinge/latch pin into a hinge cavity 14 of the door panel, as shown in
Following placement of the front door panel 7, top panel 3 is assembled by first aligning all of the top edges of the back panel and side panels with all of the locking slots 10 of the top panel. The locking slots 10 of the top panel are similar to the locking slots 10 of the bottom panel shown in
The safety storage cabinet includes shelf panels 8 (
The bottom panel 2 includes the bottom panel sump 17, which serves to contain any material that might spill from contents of the cabinet. Also, top panel 3 includes in its upper surface a sump 20 provided to contain any material spilled when using the top panel as a working surface.
The hinge/latch pins 13 of the bottom panel and hinge/latch pins 15 of the top panel serve dual purposes. The top panel includes a downward directed hinge/latch pin 15 at each corner near the door opening, as best shown in
Hinge/latch pins 15 of the top panel 3 are used in the same manner as the hinge/latch pins 13 of the bottom panel 2, described in
As described above, the panels of the safety storage cabinet are easily snapped together to form the cabinet. Assembly is performed without the use of any tools. Preferably each locking slot 10 is configured as shown in
The safety storage cabinet 1 is easily disassembled by releasing all of the side and back panel horizontal edges that are inserted into the locking slots 10. Referring to
Two or more cabinets are stackable and inter-lockable when placed on top of each other. Also, two or more cabinets are inter-lockable when placed side-by-side with each other.
Two cabinets are stackable and inter-lockable by using snap keys 24, as shown in
Two cabinets are inter-lockable side-by-side by using I-beam locks 26, as shown in
The lock wells 25 of the top panel 3, and the lock wells 25 of the bottom panel 2 are the same configuration and dimensions, and are used for attachment with both snap keys 24 and I-beam locks 26.
Cabinets of the invention may also include L-brackets 27 as shown in
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Number | Date | Country | |
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20160088936 A1 | Mar 2016 | US |