[0001] The present invention relates to a shelving.
[0002] In particular the present invention relates to a shelving made of metallic material,
of the modular type, i.e. of the type suitable of being mounted and installed by the
end user.
[0003] These types of shelving are usually marketed in assembling kit inside of which are
present the structural components of the shelving and, when provided, the associated
hardware suitable to assemble the structural components.
[0004] The metal shelves are used in any context, usually in the technical rooms destined
for the storage of goods, as for example, small mechanical workshops, clearing rooms,
garages, but also domestic premises as basements, storage rooms and the like.
[0005] The aforementioned shelving is characterized by ease of assembly, in fact no special
technical skills are required for their installation, for their simple transport (each
kit is usually manageable and transportable by a single person), due to the cost-effectiveness
of realization and to the ease of storage in sales warehouses.
[0006] Usually, the shelves of the type indicated above include four vertical uprights,
two or more horizontal shelves generally rectangular in shape and defining a flat
surface able to support the goods.
[0007] Each shelf is coupled to the four uprights at the respective corners and by means
of the said hardware for assembly.
[0008] In particular, are provided screws insertable in holes formed both on the upright
and on a lateral face of the shelf and engageable with respective bolts to define
a stable coupling between the shelves and the uprights. Preferably, each upright consists
of an "L" section that defines a housing seat of the respective corner of the shelf.
[0009] The section has one series of holes for the passage of the screw, distributed along
the whole vertical extent of the same uprights and arranged on both sides defining
the "L" section.
[0010] In this way, the shelves can be associated with the uprights at any height depending
on the number of shelves and the size of the objects that have to be supported by
the shelving.
[0011] The system for coupling the shelves and the uprights, although efficient and easy
to use, is however inconvenient because it needs to screw one series of screws for
each shelf. In particular, considering that for each corner of the shelf there are
two holes for the passage of the screws and that for each shelving numerous shelves
can be provided, the action of assembling then becomes very expensive in terms of
time given the amount of screws to be tightened.
[0012] In addition, a further drawback is derived from the presence of screws and bolts
which have notoriously small size, and which can therefore easily be lost.
[0013] In this situation, it proves to be difficult to find and replace such components.
[0014] To overcome this situation, interlocking coupling systems are provided, integrated
into the metal sheets that define the uprights and the shelves. Such systems are mostly
constituted by inserts projecting from the upright and that can be inserted for mechanical
interlocking in suitable openings formed in the shelf.
[0015] In this way, the bolts and screwing tools are eliminated, thus allowing a practical
assembly in which the user merely inserts the shelves inside the projecting inserts.
[0016] However, even this solution is not free from important drawbacks.
[0017] In fact, it should be noted that the inserts have interlocking surfaces of limited
size and therefore not capable of sustaining high weights on the individual shelves.
[0018] The use of inserts of reduced size, and therefore of limited overall encumbrances
in the direction transverse to the longitudinal extension of the upright, is derived
from the need to facilitate the interlocking operations, and at the same time avoid
accidental impacts of the user during the assembling phase.
[0019] Therefore, the transverse extent of the inserts in the form of a lamina must be limited
to protect the user from possible dangerous conditions.
[0020] In this context, the inserts may not be sufficiently sized to allow a high stability
of the shelves in the conditions of supporting high loads.
[0021] In this context, the technical aim of the present invention is to provide a shelving
without the aforementioned drawbacks.
[0022] In particular, it is an object of the present invention to provide a shelving that
is particularly stable even in conditions of support of very high weights, and at
the same time is able to eliminate hardware elements to allow a quick assembling by
interlocking.
[0023] Another object of the present invention is to provide the end user with a shelving
that is easy to assemble and disassemble, achievable without the use of tools or other
elements that are not constituted merely by the structural elements of the base.
[0024] A further object of the present invention is to propose a shelving of very reduced
overall encumbrance, either assembled or disassembled and which is able to minimize
as much as possible the presence of projecting elements potentially harmful to the
user.
[0025] These and other objects are substantially achieved by a shelving as described in
one or more of the appended claims. Dependent claims correspond to further embodiments
of the shelving according to the present invention.
[0026] Further characteristics and advantages will become more evident from the detailed
description of a preferred but not limitative embodiment of a shelving according to
the invention.
[0027] This description is provided with reference to the appended figures, also provided
only by way of a non-limiting example, wherein:
- Figure 1 is a perspective and schematic view of the shelving according to the present
invention;
- Figure 1a is an enlargement of a detail of the shelving of Figure 1.
- Figures 2a and 2b are side views of a constructive detail of the shelving in respective
operating assembling conditions;
- Figure 3 is an enlarged and side view of the detail of Figure 1a; and
- Figure 4 is an enlarged view of a side portion of a shelf of the shelving according
to the present invention.
[0028] With reference to the attached figures, reference number 1 globally indicates a shelving
according to the present invention.
[0029] The shelving 1 comprising at least one pair of vertical uprights 2, and at least
one shelf 3 engaged with the two uprights 2 and defining a flat support surface 3a
arranged horizontally with respect to said vertical uprights 2.
[0030] In greater detail, the shelving 1 preferably comprises four vertical uprights 2 and
a plurality of shelves 3 engageable to the uprights 2 and arranged overlapped between
them at different heights which are determined in function of the individual operational
requirements.
[0031] By way of example only and therefore not limiting, Figure 1 shows a shelving 1 equipped
with three shelves 3 assembled at different distances from one another.
[0032] However, it should be considered that the number of shelves 3 and the distance between
a shelf 3 and the adjacent one can be any according to the individual needs of use
of the shelving 1.
[0033] Each shelf 3 preferably has a substantially rectangular peripheral development that
defines said support surface 3a.
[0034] In addition, each shelf 3 has four lateral surfaces 4 arranged respectively along
the sides of the rectangular development.
[0035] The side surfaces 4 are perpendicular to the support surface 3a and made of one piece
therewith by bending a metal sheet that constitutes the entire shelf 3.
[0036] Each shelf 3 thus formed is engaged with the four uprights 2 by arranging each angle
to a respective upright 2.
[0037] In particular, each upright 2 is constituted by a bar having a cross section "L"
profile defined by two surfaces 5 perpendicular between each other. The surfaces 5
define in mutual collaboration a space to accommodate a corner of the shelf 3 (Figure
1) and are made of one piece by bending a metal sheet which defines the whole upright
2.
[0038] The shelving 1 further comprises reversible interlocking means 6 of each shelf 4
with said uprights 2.
[0039] In particular, the interlocking means 6, better described in the following present
discussion, extend between each corner of the shelf 3 and the respective upright 2
to allow to manually interlock and then constrain the shelves 3 to the uprights 2.
The means 6, of the reversible type, also allow, from a configuration of assembly,
to provide for removal of the shelves 3 from the uprights 2 and then releasing the
same.
[0040] In greater detail, the interlocking means 6 comprise at least one series 7 of projections
8a, 8b extending from a surface 5 of the respective upright 2. The series 7 of projections
8a, 8b can be housed in an opening 11 formed in the shelf 3.
[0041] In particular, with reference to the construction detail better illustrated in Figure
3, the series 7 comprises at least a first pair 7a and a second pair 7b of projections
8a, 8b in which the projections 8a, 8b of the first pair 7a result closer to the projections
8a, 8b of the second pair 7b.
[0042] Always with reference to Figure 3, it should also be noted that the first pair 7a
of projections 8a, 8b is arranged above the second pair 7b of projections 8a, 8b.
[0043] In this situation, the projections 8a, 8b of the series 7 are arranged according
to a substantially trapezoidal path "P". In other words, the projections 8a, 8b of
each series 7 are arranged at the corners of said path "P" to define a trapezoidal
configuration, in particular in the form of a right trapezium wherein the minor base
"B1" the major base B2" and two sides B3, B4" are identified. The side "B3" defined
between first projections 8a of the two pairs 7a, 7b is perpendicular to the bases
"B1, B2", while the side "B4" defined between the second projections 8b of the two
pairs 7a, 7b is an oblique side.
[0044] In this situation, each projection 8a, 8b presents an edge 9 disposed at a side "B3,
B4" along the path trapezoidal "P".
[0045] As better illustrated in the enlargement of Figure 1a, each projection 8a, 8b consists
of a tab 10a, 10b formed by bending a portion of the upright 2, in particular a part
of the surface 5 of the upright 2.
[0046] Therefore, the edge 9 of each projection 8a, 8b is defined by a bending line of the
tab 10a, 10b with respect to the upright 2.
[0047] Furthermore, it should be noted that the first projection 8a of each pair 7a, 7b
is defined by a first tab 10a having a rectangular development. The second projection
8b of each pair 7a, 7b instead is defined by a second tab 10b having a parallelogram
development (Figure 3).
[0048] The first tabs 10a, of the first and second pairs 7a, 7b are mutually superimposed
and aligned along the respective edges 9 and along said perpendicular side B3.
[0049] The second tabs 10b of the first and second pairs 7a, 7b are mutually superimposed
and aligned along the respective edges 9 and along the oblique side "B4".
[0050] Furthermore, again with reference to Figure 3, the edges 9 of the first tabs 10a
are aligned along vertical development axis "X" parallel to the longitudinal extension
of the upright 2.
[0051] Instead, the edges 9 of the second tabs 10b are aligned along an inclined development
axis "Y" with respect to the longitudinal extension of the upright 2 and converging
towards the vertical axis "X" at the top of the uprights 2.
[0052] In this situation, the minor base "B1" is positioned towards the top of the upright
2, while the major base "B2" is positioned towards the support base of the upright
2.
[0053] As is better illustrated in Figure 2a, and 4, the opening 11 has a trapezoidal shape,
preferably a right trapezium, corresponding to the trapezoidal path "P" for housing
the projections 8a, 8b.
[0054] In this situation, the opening 11 formed on the lateral surface 4 and at the corner
of the shelf 3, presents an access side 11a of access of the projections 8a, 8b. The
access side 11b is formed in the major base of the trapezoidal configuration of the
opening 11.
[0055] In this situation, the opening 11 comprises a tilted side 12 of contact with the
edges 9 of the second tabs 10b and a rectilinear side 13 in contact with the edges
9 of the first tabs 10a (Figures 2a and 2b).
[0056] As can be seen from Figure 2a, the sides 12, 13 of the opening 11 are slidable by
being dragged with the edges 9 of the tabs 10a, 10b up to a respective mechanical
interlocking position.
[0057] In other words, by means of the interlocking means 6, the shelf 3 is switchable between
a coupling configuration (Figure 2a) with the uprights 2 wherein the opening 11 is
fitted on the first and second pairs 7a, 7b of projections 8a, 8b in a mechanical
interlocking condition and along a top-to-base direction of the uprights 2 (from top
to bottom).
[0058] Furthermore, the shelf is switchable in a decoupling configuration (Figure 2b) with
the uprights 1 wherein the opening 11 is removed from the first and the second pairs
7a, 7b of projections 8a, 8b and along a base-to-top direction of the uprights 2 (from
bottom to top).
[0059] In other words, thanks to the particular trapezoidal configuration, a mechanical
interlocking is defined between the opening 11 and the series 7 of projections 8a,
8b suitably configured to allow the insertion into the opening 11 through the access
side 11b and to interlock in a stable manner due to the tilted side 12 which defines
a conical coupling with the aforementioned series 7.
[0060] Preferably, each shelf 3 has eight openings 11, arranged in pairs for each lateral
surface 4. In this way, for each corner of the shelf extend two adjacent openings
11 arranged in the two respective surfaces 4.
[0061] In this situation, it should be noted that for each surface 5 of the upright 2 two
series 7 extend, each of which is intended to be inserted in a respective opening
11 of the shelf 3.
[0062] Still, in order to allow the housing of the shelves 4 at any height of the upright
2, a plurality of series 7 of projections 8a, 8b are provided along the entire longitudinal
extension of each upright.
[0063] Advantageously, the reversible interlocking means 6 allow the coupling of multiple
shelves 3 at any height of the uprights 2.
[0064] The above described invention provides numerous advantages and solves the drawbacks
of the prior art.
[0065] It should first be noted that the interlocking means 6 are completely obtained by
bending and shaping the structural parts of the shelving 1 (uprights 2 and shelves
3). Consequently, bolts, tools, or other external elements suitable for anchoring
the shelves 3 to the uprights 2 are not used.
[0066] The stable and releasable coupling is therefore obtained by means of the insertion
of the projections 8a, 8b in the respective openings 11 formed on the shelves.
[0067] Therefore, the assembling system of the shelving 1 proves to be very simple, limited
in terms of cost and time and feasible even by non-specialized personnel.
[0068] Still, the system, which just provides the positioning of the shelves 3 with respect
to the uprights 2 is particularly versatile in that it allows to place any number
of shelves 3 at any height with respect to the uprights 2. This advantage is given
by the presence of the series 7 being arranged along the entire longitudinal extension
of each upright 2.
[0069] Furthermore, the presence of one series 7 defined by four projections 8a, 8b allows
to limit the size of each projection 8 itself while still maintaining a wide contact
(support) surface between a shelf and the upright.
[0070] In other words, the presence of two pairs 7a, 7b for each series allows to extend
the contact line defined by all the edges 9, while limiting the overall volumetric
encumbrance defined by the projections. This advantage is derived precisely from having
increased the number of projections and therefore of contact surfaces (edges 9) for
each opening 11 of the shelf 3. Accordingly, the present invention allows to considerably
limit the presence of particularly projecting parts and therefore potentially harmful
to the user during assembly.
[0071] Even from the point of view of overall volumetric encumbrance, especially during
disassembly, the entire shelving 1 is more compact and easier to store and handle.
1. A shelving comprising:
- at least one pair of vertical uprights (2);
- at least one shelf (3) engaged with the two uprights (2) and defining a flat support
surface (3a) arranged horizontally with respect to said vertical uprights (2); and
- reversible interlocking means (6) of said shelf (3) with said uprights (2); characterized in that said interlocking means (6) comprise at least one series (7) of projections (8a,
8b) which extend from an inner surface (5) of a respective upright (2) and can be
housed within an opening (11) formed in the shelf (3); said series (7) comprising
at least a first and a second pair (7a, 7b) of projections (8a, 8b), wherein the projections
(8a, 8b) of the first pair (7a) are closer than the projections (8a, 8b) of the second
pair (7b).
2. The shelving according to the previous claim, characterized in that said first pair (7a) of projections (8a, 8b) is arranged above the second pair (7b)
of projections (8a, 8b); said projections (8a, 8b) of the series (7) being arranged
along a substantially trapezoidal path (P).
3. The shelving according to claim 1 or 2, characterized in that each projection (8a, 8b) has an edge (9) arranged at one side (B3, B4) of said trapezoidal
path (P).
4. The shelving according to the previous claim, characterized in that each protrusion (8a, 8b) comprises a tab (10a, 10b) obtained by bending a portion
of the upright (2); said edge (9) of each projection (8a, 8b) being defined by a tab
fold line (10a, 10b) with respect to the upright (2).
5. The shelving according to the previous claim, characterized in that each pair (7a, 7b) has a first tab (10a) having a rectangular development and a second
tab (10b) having a parallelogram development; said first tabs (10a) of the first and
the second pairs (7a, 7b) being mutually superimposed and aligned along the respective
edges (9); said second tabs (10b) of the first and the second pairs (7a, 7b) being
mutually superimposed and aligned along the respective edges (9).
6. The shelving according to the previous claim, characterized in that the edges (9) of the first tabs (10a) are aligned along a vertical development axis
(X) parallel to the longitudinal extension of the upright (2); and in that the edges (9) of the second tabs (10b) are aligned along an inclined development
axis (Y) with respect to the longitudinal extension of the upright (2).
7. The shelving according to the previous claim, characterized in that said inclined axis (Y) converges towards the vertical axis (X) at the top of the
uprights (2); said trapezoidal development has a minor base (B1) towards the top of
said upright (2).
8. The shelving according to claim 6, characterized in that said opening (11) has a trapezoidal shape corresponding to the trapezoidal path (P)
for housing the projections (8a, 8b); said opening (11) also presenting an access
side (11a) of the projections (8a, 8b) formed in the major base (B2) of the opening
(11) itself.
9. The shelving according to the previous claim, characterized in that said opening (11) comprises a tilted side (12) of contact with the edges (9) of the
second tabs (10b) and a rectilinear side (13) in contact with the edges (9) of the
first tabs (10a); said sides (12, 13) of the opening (11) being slidable by being
dragged with the edges (9) of the tabs (10a, 10b) up to a respective mechanical interlocking
position.
10. The shelving according to the previous claim, characterized in that said shelf (3) is switchable between a coupling configuration with the uprights (2),
wherein the opening (11) is fitted on said first and second pairs of projections (8a,
8b) in said mechanical interlocking condition and along a top-to-base direction of
the uprights (2), and a decoupling configuration with the uprights (2) wherein the
opening (11) is removed from the first and the second pairs of projections (8a, 8b)
and along a base-to-top direction of the uprights (2).
11. The shelving according to any one of the preceding claims, characterized in that each upright (2) has a bar having a cross-sectional "L-shaped" profile and defining
two perpendicular surfaces (5) for receiving the shelf (3); each upright (2) being
arranged at a corner of the shelf (3).
12. The shelving according to the previous claim, characterized in that said interlocking means (6) comprise at least two series (7) of projections (8a,
8b) for each corner of the shelf (3); each series (7) extending from a surface (5)
of the upright (2) and being housed within a respective opening (11) formed in the
shelf (3).
13. The shelving according to any of the previous claims, characterized in that said shelf (3) has a substantially rectangular shape and defines four lateral surfaces
(4), each having two openings (11) for housing the respective series (7) of projections
(8a, 8b); and in that it comprises four uprights (2), each arranged on the respective sides of the shelf
(3).