TECHNICAL FIELD
[0001] This invention relates to an easily mounted adjustable shelving system for retail
and residential purposes with no visible brackets.
BACKGROUND
[0002] A commonly used shelving system for fitting out of retail shops is the slat wall-type
system which is very industrial looking, having heavy brackets and limited options
with the sizes of backboard and length of shelves.
[0003] In one aspect, there is a need in the art for a more elegant and adjustable system
that is not industrial looking and would complement the display of a retail shop,
business premises or home.
[0004] It is an aspect of the present invention to overcome or alleviate a problem of the
prior art by providing an improved shelving system, or simply an alternative to prior
art shelving systems.
[0005] The discussion of documents, acts, materials, devices, articles and the like is included
in this specification solely for the purpose of providing a context for the present
invention.
[0006] US 6,363,645 B1 relates to inserts for display panels, wherein the inserts are received within T-shaped
slots in the display panel.
US 2003/189019 A1 relates to a display panel that includes a plurality of horizontal grooves for receiving
an s-shaped hanger end portion of a bracket that is adapted to support articles.
US 4,509,648 relates to a display assembly comprising a panel member with a multiplicity of horizontally
extending track portions into which clip members are received.
SUMMARY OF THE INVENTION
[0008] The present invention provides an anchoring system according to claim 1.
[0009] In one embodiment of the upright member, the channel walls are fabricated from a
material that is resilient to deformation.
[0010] In one embodiment the upright member is a panel, or a board or a wall.
[0011] In one embodiment of the upright member, the channel runs substantially horizontally.
[0012] In one embodiment of the insert, the insert comprises stop member extending from
an upper surface thereof, for instance from the second region, and adjacent to the
bend.
[0013] In one embodiment of the insert, the second region comprises one or more formations
configured to assist in attaching the insert into an attachable item.
[0014] In one embodiment of the insert the attachable item is a shelf.
[0015] Described herein is a method for providing an upright member capable of receiving
an insert, as defined in claim 9, the method comprising the steps of: providing an
upright member, and modifying the member to comprise a channel extending thereinto,
the channel angled downwardly into the member, the channel having an upper wall and
a lower wall, the upper wall having a recess disposed therein.
[0016] Preferably, the step of modifying comprises fitting a receiving means comprising
a channel extending thereinto, the channel angled downwardly into the member, the
channel having an upper wall and a lower wall, the upper wall having a recess disposed
therein.
BRIEF DESCRIPTION OF THE DRAWINGS
[0017]
Fig. 1A is a cross-sectional diagram of a preferred receiving means of the present
invention. The receiving means may be inserted into an upright member, such as a wall,
to provide an anchorage point for an insert of the present invention.
Fig. 1B is a perspective view of the receiving means of Fig. 1A.
Fig. 2 is a perspective diagram of several receiving means as shown in Fig. 1A. The
receiving means has been inserted longitudinally into a generally triangular bore
hole present in a wall.
Fig. 3 is a cross-sectional diagram of a preferred insert of the present invention.
The insert is configured to insert into the receiving means shown in Figs. 1A, 1B
and 2.
Fig. 4 is a perspective diagram of an insert of the present invention attached to
a shelf. The insert is shown more clearly at Fig. 4B.
Fig. 4B is a cross-sectional diagram of a preferred insert of the present invention,
having formations which assist in engaging the insert to an item, such as a shelf.
Fig. 5A is a cross-sectional diagram showing the insert of Fig. 4B inserted into the
receiving means of Fig. 1.
Fig. 5B is a cross-sectional diagram showing the receiving means of Fig. 1 in combination
with the insert of Fig. 4B in the context of a shelving system extending from a panel.
DETAILED DESCRIPTION OF THE INVENTION AND PREFERRED EMBODIMENTS
[0018] Throughout the description and the claims of this specification the word "comprise"
and variations of the word, such as "comprising" and "comprises" is not intended to
exclude other additives, components, integers or steps.
[0019] Reference throughout this specification to "one embodiment" or "an embodiment" means
that a particular feature, structure or characteristic described in connection with
the embodiment is included in at least one embodiment of the present invention. Thus,
appearances of the phrases "in one embodiment" or "in an embodiment" in various places
throughout this specification are not necessarily all referring to the same embodiment,
but may.
[0020] Turning to Fig. 1A there is shown a receiving means 10 of the present invention,
that may be inserted into an upright member (such as a panel or a wall) to provide
an anchorage point for an insert. The receiving means has a channel 12 having an upper
wall 14 and a lower wall 16. At the blind end of the channel 12 is a recess 18.
[0021] The receiving means 20 provides a pivot point 19 at the edge of the lower face 16
of the channel 12. The function of the pivot point 19 is to allow for a slight rocking
of an insert inserted into the channel 12 (more of which is discussed
infra).
[0022] The receiving means 20 provides an abutment point 21 at the edge of the upper face
14 of the channel 12. The function is the abutment point 21 is to engage with an insert
inserted into the channel 12 to prevent the inserted being pushed an excessive distance
into the channel 12 (more of which is discussed
infra).
[0023] The receiving means is shown in the orientation in which it is typically used, such
that the channel 12 runs downwardly with reference to a horizontal floor upon which
the upright member is standing.
[0024] The perspective view of Fig. 1B shows the elongate configuration of the receiving
means. Thus, the channel 12 runs horizontally, but extends downwardly and into the
upright member when fitted. As will be appreciated the receiving means is not required
to extend the entire width of the upright member. For example, only two relatively
short receiving means may be inserted into opposing edges of the upright member so
as to provide two anchorage points.
[0025] The preferred embodiment of Fig. 1 is formed from aluminium, and includes cut out
sections
20 to reduce material usage.
[0026] Exemplary dimensions and angles (including preferred ranges of angles) are as follows:
| 22 |
21.5 mm ± 10 mm |
| 24 |
12.7 mm ± 5 mm |
| 26 |
12.5 mm ± 5 mm |
| 28 |
3.8 mm ± 0.5 mm |
| 30 |
25 ± 10 degrees |
| 32 |
40 ± 20 degrees |
| 34 |
25 ± 10 degrees |
| 36 |
40 ± 20 degrees |
| 38 |
24 ± 24 degrees |
[0027] With regard to these exemplary dimensions and angles, the cited range with respect
to any dimension or angle is not to be construed to mean strict adherence to the upper
or lower dimension or angle is required. Moreover, these exemplary dimensions and
angles (with cited ranges) are useful in application of the receiving means to a board
of about 18 mm thickness. It will be appreciated that a board of different thickness
may be used, in which dimensions and/or angles recited
supra may be modified by routine means.
[0028] Fig. 2 shows an upright member
40 (being a backboard of 18 mm depth in this embodiment) having several receiving means
10 inserted thereinto. A specialised routing tool was used to create the space for accepting
the receiving means
10. The space is substantially triangular in cross-section, although flattened at the
apex. The flattened apex section of the routed space provides the opening for the
channel
12 to present to the outside.
[0029] Turning to Fig. 3 there is shown an insert
42 configured to be inserted into the channel
12 presented at the vertical face of the upright member. The insert is fabricated from
aluminium, and comprises a first region
44 and a second region
46, the two regions demarcated by a bend
48. The first region
44 comprises an engaging member
49 on the upper face.
[0030] The insert
42 is shown in the drawing is in the orientation in which it is intended to be used.
In this orientation, the first region
44 extends downwardly into the channel presented by the receiving means, and the second
region
46 extends substantially horizontally from the vertical face of the upright member.
The horizontal extension of the second region
46 allows for the hanging of an item such as a shelf, a box, a basket or a rod from
the upright member. The item may be configured so as to substantially envelope the
second region
46 to provide for the maximum surface area of contact between the item and the second
region
46. An adhesive may be used at the interface between the item and the second region
46.
[0031] The preferred insert further comprises a stop member
50 extending from the upper surface of the insert
42 at the bend
48. The purpose of the stop member
50 is to prevent the insert
42 being forced an excessive distance into the channel
12 presented at the face of the upright member. This is achieved by the collision of
the stop member
50 with the abutment point
21 upon insertion of the insert. By virtue of the positioning of the stop member
50, the insert
42 is properly located such that the acute angle of the bend
48 sits on the pivot point
19 of the channel
12 thereby allowing for minor rocking of the insert
42.
[0032] The minor rocking allows for the engaging member
49 of the insert to move into the recess
18 of the channel
12 thereby locking the two components together. Thus, upon application of a downward
load placed on the second region
46 of the insert
42 (for example, by placing an item on a shelf attached to the insert
42) the second region is displaced downwardly. This causes pivoting of the insert
42 at the bend
48, thereby causing the terminus of the first region to be displaced upwardly thereby
moving the engaging member
49 into the recess
18.
[0033] It will be appreciated that the greater the load placed on the second region
46, results in a greater upward force being applied to the engaging member
49 against the recess
18 to further increase the resistance against the insert
42 being pulled out of the channel
12.
[0034] It will be appreciated that the engaging member
49 may not be at the terminus of the insert
42, and may be located at any point on the upper face of the first region
44 of the insert
42. However, a greater upward force will be applied to the engaging member if it is
disposed at the terminus this providing for more secure retention of the insert.
[0035] Similarly, while the second region
46 may be any length greater leverage is provided where that region is longer, resulting
in a greater upward force being applied to the engaging member
49.
[0036] Exemplary dimensions and angles for the insert
42 are shown below:
| 44 |
10.2 ± 5 mm |
| 46 |
30 ± 5 mm |
| 52 |
0.36 ± 0.05 mm |
| 54 |
3.25 ± 0.25 mm |
| 56 |
41.54 ± 0.4 mm |
| 58 |
3.5 ± 0.5 mm |
| 60 |
162 degrees ± 18 degrees |
[0037] With regard to these exemplary dimensions and angles, the cited range with respect
to any dimension or angle is not to be construed to mean strict adherence to the upper
or lower dimension or angle is required. These exemplary dimensions and angles (with
cited ranges) are useful for an insert which is matched to a receiving means configured
for use with a board of about 18 mm thickness, having the dimensions and angles as
recited
supra. It will be appreciated that a board of different thickness may be used, in which
dimensions and/or angles recited
supra in respect of the insert may be modified
[0038] Fig. 4A and 4B shows a modified form of the insert
42, having formations
64 in the second region. The function of the formations isto increase the engagement
of the insert
42 with an attached item such as a shelf
62.
[0039] Figs. 5A and 5B show a preferred anchoring system used to secure a series of shelves
to a backboard. The three shelves in Fig. 5B shows sequentially the method by which
a shelf is attached. It will be note that the shelf (with the first region of the
insert extending from a lateral face) is firstly brought toward the backboard, and
the first region inserted into the channel. The shelf is then urged toward the backboard
until the stop member on the insert collides with abutment point of the retaining
means. At the point the weight of the shelf exerts a downward force on the second
region of insert, therefore forcing the engaging member of the first region of the
insert into the recess in the upper channel wall.
[0040] It will be understood that the actual materials, dimensions and angles of the receiving
or the insert means may be alterable according to the practical application of the
invention. For example, where the invention relates to a shelving system designed
to carry significant weight materials of greater strength may be used, or overall
dimensions of the receiving means may be increased as required. Such alteration is
will within the ability of the skilled artisan using only routine means.
[0041] It will be appreciated that in the description of exemplary embodiments of the invention,
various features of the invention are sometimes grouped together in a single embodiment,
figure, or description thereof for the purpose of streamlining the disclosure and
aiding in the understanding of one or more of the various inventive aspects. This
method of disclosure, however, is not to be interpreted as reflecting an intention
that the claimed invention requires more features than are expressly recited in each
claim. Rather, as the following claims reflect, inventive aspects lie in less than
all features of a single foregoing disclosed embodiment.
[0042] Furthermore, while some embodiments described herein include some but not other features
included in other embodiments, combinations of features of different embodiments are
meant to be within the scope of the invention, and form different embodiments, as
would be understood by those in the art.
[0043] In the description provided herein, numerous specific details are set forth. However,
it is understood that embodiments of the invention may be practiced without these
specific details. In other instances, well-known methods, structures and techniques
have not been shown in detail in order not to obscure an understanding of this description.
[0044] Thus, while there has been described what are believed to be the preferred embodiments
of the invention, those skilled in the art will recognize that other and further modifications
may be made thereto without departing from the spirit of the invention, and it is
intended to claim all such changes and modifications as fall within the scope of the
invention. Functionality may be added or deleted from the block diagrams and operations
may be interchanged among functional blocks. Steps may be added or deleted to methods
described within the scope of the present invention.
[0045] Further disclosure of preferred embodiments is provided below.
[0046] The applicant set about coming up with such a design that would satisfy the requirements
of the customer. A number of years of trial and error including manual bending of
steel inserts to come up with a basic design resulted in further testing by way of
3d printer prototypes of 5mm size of the dovetail and insert. This finally progressed
to the first dies being made by the aluminium company to provide the applicant with
full size dovetails and inserts to be able to finally test the concept with actual
production of full size boards and shelves. The concept required very specific tooling
to enable the appropriate cuttings in the backboard and the shelf, these tools were
designed and form part of the specific production process.
[0047] Summary: 'Lock and Load Adjustable Floating Shelving Systems is an innovative, fully
adjustable shelving display system that has no visible brackets giving the end product
an impression of a floating shelf system. It is designed to be mounted on an existing
wall. The system can utilise a range of construction materials including timber, (thickness
18mm-32mm), veneer board, melamine colour board (laminex), glass and stainless steel
laminate. The feature backing board can also be manufactured in multiple colours and
materials as per the customer's requirements. The "Adjustable Floating shelving system"
significantly enhances shelving manufacturing productivity - reducing production time,
cost, wastage and installation time as well as providing unique shelving flexibility
and features for the customer. The system incorporates a dovetail extrusion fitted
into pre-cut grooves on a backboard. An insert extrusion piece is then fitted into
the edge of a shelf and this shelf is then simply placed into the dovetail that is
within the backboard. The particular shape of the dovetail allows the insert to lock
into place. No further brackets are required. The system is not limited to shelves
- hooks, boxes, baskets and other pieces can be attached to the backing board by way
of connection to the dovetail.
[0048] The Adjustable Floating shelving system is significantly different from existing
shelving systems. The major differences are:
No visible brackets, no butt joints. The 'bracket' (locking piece) is inbuilt into
the shelf. Similarly, a backing board insert (dovetail) is separately inbuilt into
the backing board. Thus once the backing board has been secured in place, the shelving
only requires pushing into place in the dovetail extrusion to allow for 'locking'
into place. No extra fittings or tooling is required.
[0049] Utilises a 3.6 mm groove to provide the 'floating shelf feature. Greater length and
height capacity of the backing board - 3.6 metres in length by 1.8 metres in height
relative to the closest competition on the market to date that offers 1.2 metres in
length and 2.4 metres in height
[0050] OH & S compliance - Stability of shelving produced is significantly enhanced - the
locking and load position of the shelving prohibits easy dislodgement. It cannot be
accidentally knocked loose, it requires a combined lift and pull process to release
it from the backing board.
[0051] Load capacity equal to or greater than current competition. Shelves will take up
to 20- 30kg depending on length and depth of shelf. Aesthetically pleasing to the
eye as there are no visible brackets - unlike most adjustable shelving systems that
are currently on the market. Fully customisable to suit customer requirements.
[0052] Flat pack (DIY) options for residential use - easily mounted by the average person
- no cabinetry skills required. Adaptable to use new environmentally friendly and
sustainable products such as bamboo sheeting. Minimal waste products (sawdust and
off-cuts).
[0053] Feature backing board is fully adaptable in shape and size to suit customer requirements.
Allows for additional hanging products such as prongs, baskets etc
[0054] Specific tooling is required in order to produce the locking piece and backing board
insert.
[0055] The Figures show a Side view and Dimensions of Dovetail retaining means: The dovetail
retaining means which is inserted into a pre-cut triangle cut-out in the backboard.
[0056] This triangle has an angle ranging from 20 to 60 Degrees, depending on the circumstances
of the client needs
[0057] The dovetail retaining means extrusion has been reshaped around the external boundary
to allow for reduction in weight and therefore cost of production, however its intention
is to fill the pre-cut triangle groove in the backboard.
[0058] The opening of the dovetail is 3.6-4mm plus or minus 2.0 mm. The rear internal angle
of the opening is 74.8 degrees. Angle ranges from 0 to 45 degrees. Current standard
model is 24 degrees. Length of this section 12.7mm. Overall depth is 12.50 mm plus
or minus 5.0 mm. Angle is 25 degrees plus or minus 10 degrees. Overall height is 21.5
mm plus or minus 5.0 mm
[0059] The figures show 3D Dovetail retaining means and side view Backboard: MDF Backboard
- standard dimensions 18 mm thick, may vary up to 32 mm thick. Height and width vary
depending on customer requirements - up to 1800 mm high, 3600 mm long. Backboard edge
revealing pre-cut triangle grooves, cut with tooling piece as shown in Fig 5.2. Grooves
are a minimum of 70mm apart, on a 1.2m high board, we expect up to 7 grooves cut into
backboard, running the whole length of the backboard. Each groove pre-cut will be
filled with dovetail retaining means extrusion to allow for any number of shelves
or combination of lengths of shelves per backboard.
[0060] The figures show Dovetail retaining means extrusion inserted into grooves. 3D view
of dovetail retaining means extrusion, length according to length of backboard. Opening
cut of triangle in Backboard is 6mm plus or minus 3mm.
[0061] The insert locking piece that is fitted into a shelf. The depth gauge/guide (stop
member) is set to ensure the piece fits correctly into the shelf and the dovetail,
it also provides for consistency of production to minimize variations in the product.
This guide also allows for greater tool life of the tooling piece as it can be sharpened
multiple times without unduly affecting the insert.
[0062] The length of the insert is variable to suit the particular product that will be
connected to the backing board. At present for a standard shelf of 1200 mm the insert
length is 300mm plus or minus 100mm, it is expected two lengths of approximately 300mm
will be inserted into this size shelf. Therefore the inserts will cover from 40% to
60% of the length of the shelf, depending on the use of the shelf. An 800mm shelf
will have two 200mm inserts etc. Height of insert to be 3.5mm, plus 5mm or minus 1.5mm.
[0063] The remainder of the shape (tail) will change to suit the appropriate piece that
will be connected to the backing board - i.e. a hanging rod or basket. Current width
is 30mm, but may range from 15mm to 300mm depending on whether it is inserted into
a shelf or it becomes a shelf itself. The overall width is currently 41.54 mm but
dependant on width of tail as set out above.
[0064] The angle from tail to head is 162 degrees, plus or minus 18 degrees. The head of
the locking piece will remain consistent in shape so as to "lock" into the dovetail
retaining means, width of the head is currently 10.20mm but may change dependant on
size and angle of dovetail changes as specified herein.
[0065] Insert and Shelf. Some figures show actual size of insert - side view. 3D view of
standard shelf, height from 16 mm to 60 mm, Depth 50mm to 300mm. Length up to 2400mm.
Tail of insert now fixed into shelf, with head protruding from shelf so it can be
fitted into dovetail retaining means. Pre-cut groove in shelf cut by tooling.
[0066] Angle of insert to dovetail is 92 degrees, plus or minus 2 degrees.
[0067] The figures show Side view of Backboard with three dovetails inserted - (shaded)
allowing for three shelves to be connected to backboard. Side view of shelf with tail
of insert fixed into it, head protruding, ready to be pushed into the dovetail and
locked into place by unique design of dovetail and insert combination. Side view of
shelf with insert, partly pushed into dovetail. Side view of shelf fully pushed into
dovetail and butting up at right angle to backboard.
[0068] An innovative method to connect shelving and other hanging components to a backing
board without the need to permanently fix by screws or have large and unsightly brackets
gives the impression of floating shelves as the interlocking pieces are hidden within
the back board and the shelf. The shelves have a pre fitted protruding aluminium extrusion
piece that simply fits into and locks into a dovetail piece that is pre-installed
into a cut out triangle groove in the backboard.
[0069] The backing board has a number of pre-cut grooves (to suit customer requirements)
running the length of the board that are filled with the dovetail extrusions, thereby
allowing a range of different placements at various locations on the backing board.
[0070] The shelves can be removed without tools and placed into any other pre-cut groove
in the backboard. The particular shape of the dovetail and the insert allow for an
interlocking system that takes significant weight and cannot be accidently dislodged.
The dovetail and insert design does not limit itself to shelves, it allows for numerous
other hanging items such as hanging baskets, boxes, prongs and Perspex display holders.
[0071] Features of some embodiments of the invention are as follows:
- 1. No visible brackets after shelf is connected to backboard. The shelf has a slot
cut that holds the tail of the fitted extrusion, the projecting head connects to a
dovetail that is fixed within the backing board.
- 2. The backing board has pre-cut grooves running the length of the board that are
filled with the dovetail extrusion.
- 3. Once shelf connected to backboard, it hides the pre-cut groove.
- 4. Results in an adjustable floating shelf system with no visible brackets.
- 5. Opening of the pre-cut grooves in the backing board are 3.5-8 mm.
- 6. Feature backing board is fully adaptable in shape, size and number of pre-cut grooves
to suit customer requirements.
- 7. Shelf length can be up to 2.4M long
- 8. Shelf load capacity is up to 20 KG per 1.2 metre shelf.
- 9. Shelf is easily removed without undoing brackets - uses a lift and angle method
to release shelf from backing board.
- 10. Shelf can be removed from one groove and replaced into any pre-cut groove in the
backing sheet without any tooling requirements.
- 11. Backing board can be customised to any number of pre-cut grooves depending on
customer requirements, with a minimum gap between grooves of 70mm.
- 12. System not limited to shelves, can hang various shapes and sizes of retail fittings
from the backboard such as boxes, baskets and prongs.
- 13. OH& S improvements for commercial use - reduction in accidental dislodgment of
shelf or other hanging item. Reduction in loss of stock damage, reduction in employee
injury or customer injury from accidental dislodgment.
- 14. Reduction in installation time as no requirement of the end user to fit any brackets,
only requirement is fixing of backing board to a wall.
1. An anchoring system comprising
(i) a substantially upright member (40) comprising a channel (12) extending thereinto,
the channel (12) angled downwardly into the member (40), the channel (12) having,
an open end, a blind end, an upper wall (14) and a lower wall (16), each of the upper
and lower wall fabricated from a metal and formed separately to the upright member
(40) and incorporated into the upright member (40), the upper wall (14) having a recess
(18) disposed at or toward the blind end, an edge of the lower wall (16) at the open
end of the channel (12) being configured to form a pivot point (19), and
(ii) an insert (42) configured to be inserted into the channel (12) in the upright
member (40), the insert (42) comprising a first region (44), and a second region (46),
the first and second regions being separated by a bend (48) in the insert (42), the
first region having an upper face with an engaging member (49) extending therefrom,
wherein the channel (12) of the upright member (40) and the insert (42) are configured
such that the region of the insert (42) comprising the engaging member (49) is insertable
into the channel (12), and when inserted into the channel (12) and in response to
a downward force applied at or about the terminus of the insert (42) distal to the
upright member (40), the insert (42) pivots on the pivot point (19) of the channel
(12) such that the engaging member (49) moves into the recess (18) of the channel
(12) thereby locking the channel (12) and insert (42) together.
2. The anchoring system of claim 1, wherein the upright member (40) is a panel, or a
board or a wall.
3. The anchoring system of claim 1 or claim 2, wherein the channel (12) runs substantially
horizontally.
4. The anchoring system of claim 1 wherein the insert (42) comprises a stop member (50)
extending from an upper surface thereof.
5. The anchoring system of claim 4 wherein the stop member (50) extends from an area
about the bend (48).
6. The anchoring system of claim 5 wherein the stop member (50) extends from the second
region, and adjacent to the bend (48).
7. The anchoring system of any one of claims 1 to 6 wherein the second region comprises
one or more formations (64) configured to assist in attaching the insert (42) into
an attachable item.
8. The anchoring system of claim 7 wherein the attachable item is a shelf (62).
9. A method for providing an upright member (40) capable of receiving an insert (42)
according to claim 1, the method comprising the steps of:
providing an upright member (40),
modifying the member (40) to comprise a channel (12) extending thereinto, the channel
(12) angled downwardly into the member (40), the channel (12) having an upper wall
(14) and a lower wall (16), the upper wall (14) having a recess (18) disposed therein.
10. The method of claim 9 wherein the step of modifying comprises fitting a receiving
means (10) comprising the channel (12) extending thereinto, the channel (12) angled
downwardly into the member (40), the channel (12) having an upper wall and a lower
wall, the upper wall having a recess disposed therein.
1. Verankerungssystem, umfassend
(i) ein im Wesentlichen stehendes Element (40), umfassend einen Kanal (12), der sich
in dieses erstreckt, wobei der Kanal (12) nach unten in das Element (40) gewinkelt
ist, wobei der Kanal (12) ein offenes Ende, ein blindes Ende, eine obere Wand (14)
und eine untere Wand (16) aufweist, wobei jede der oberen Wand und der unteren Wand
aus einem Metall hergestellt ist und getrennt vom stehenden Element (40) gebildet
ist und in das stehende Element (40) eingeschlossen ist, wobei die obere Wand (14)
eine Aussparung (18) aufweist, die an oder hin zum blinden Ende angeordnet ist, wobei
eine Kante der unteren Wand (16) am offenen Ende des Kanals (12) konfiguriert ist,
um einen Schwenkpunkt (19) zu bilden, und
(ii) einen Einsatz (42), der konfiguriert ist, um in den Kanal (12) im stehenden Element
(40) eingeführt zu sein, wobei der Einsatz (42) eine erste Region (44) und eine zweite
Region (46) umfasst, wobei die erste und zweite Region durch eine Biegung (48) im
Einsatz (42) getrennt sind, wobei die erste Region eine obere Fläche mit einem Eingriffselement
(49) aufweist, das sich davon erstreckt,
wobei der Kanal (12) des stehenden Elements (40) und der Einsatz (42) derart konfiguriert
sind, dass die Region des Einsatzes (42), die das Eingriffselement (49) umfasst, in
den Kanal (12) eingeführt werden kann, und, wenn sie in den Kanal (12) eingeführt
ist und in Reaktion auf eine nach unten gerichtete Kraft, die an oder um den Endpunkt
des Einsatzes (42) distal zum stehenden Element (40) angewendet wird, der Einsatz
(42) um den Schwenkpunkt (19) des Kanals (12) schwenkt, so dass sich das Eingriffselement
(49) in die Aussparung (18) des Kanals (12) bewegt, wodurch der Kanal (12) und der
Einsatz (42) aneinander gekoppelt werden.
2. Verankerungssystem nach Anspruch 1, wobei das stehende Element (40) ein Paneel oder
ein Brett oder eine Wand ist.
3. Verankerungssystem nach Anspruch 1 oder Anspruch 2, wobei der Kanal (12) im Wesentlichen
horizontal verläuft.
4. Verankerungssystem nach Anspruch 1, wobei der Einsatz (42) ein Stoppelement (50) umfasst,
das sich von einer oberen Fläche davon erstreckt.
5. Verankerungssystem nach Anspruch 4, wobei sich das Stoppelement (50) von einem Bereich
um die Biegung (48) erstreckt.
6. Verankerungssystem nach Anspruch 5, wobei sich das Stoppelement (50) von der zweiten
Region und benachbart zur Biegung (48) erstreckt.
7. Verankerungssystem nach einem der Ansprüche 1 bis 6, wobei die zweite Region eine
oder mehrere Bildungen (64) umfasst, die konfiguriert sind, um die Befestigung des
Einsatzes (42) in einen aufsetzbaren Gegenstand zu unterstützen.
8. Verankerungssystem nach Anspruch 7, wobei der aufsetzbare Gegenstand ein Regal (62)
ist.
9. Verfahren zum Bereitstellen eines stehenden Elements (40), das dazu in der Lage ist,
einen Einsatz (42) aufzunehmen gemäss Anspruch 1, wobei das Verfahren die Folgenden
Schritte umfasst:
Bereitstellen eines stehenden Elements (40),
Modifizieren des Elements (40), um einen Kanal (12) darin zu enthalten, wobei der
Kanal (12) nach unten in das Element (40) gewinkelt ist, wobei der Kanal (12) eine
obere Wand (14) und eine untere Wand (16) aufweist, wobei die obere Wand (14) eine
Aussparung (18) aufweist, die darin angeordnet ist.
10. Verfahren nach Anspruch 9, wobei der Schritt des Modifizierens das Einpassen eines
Aufnahmemittels (10) umfasst, umfassend den Kanal (12), der sich in dieses erstreckt,
wobei der Kanal (12) nach unten in das Element (40) gewinkelt ist, wobei der Kanal
(12) eine obere Wand und eine untere Wand aufweist, wobei in der oberen Wand eine
Aussparung angeordnet ist.
1. Système d'ancrage comprenant
(i) un élément sensiblement vertical (40) comprenant un canal (12) s'étendant dans
celui-ci, le canal (12) étant incliné vers le bas dans l'élément (40), le canal (12)
ayant une extrémité ouverte, une extrémité borgne, une paroi supérieure (14) et une
paroi inférieure (16), chacune des parois supérieure et inférieure étant fabriquée
à partir d'un métal et formée séparément de l'élément vertical (40) et incorporée
dans l'élément vertical (40), la paroi supérieure (14) ayant un évidement (18) disposé
à ou vers l'extrémité borgne, un bord de la paroi inférieure (16) à l'extrémité ouverte
du canal (12) étant configuré pour former un point de pivotement (19), et
(ii) un insert (42) configuré pour être inséré dans le canal (12) dans l'élément vertical
(40), l'insert (42) comprenant une première région (44) et une seconde région (46),
les première et seconde régions étant séparées par un coude (48) dans l'insert (42),
la première région ayant une face supérieure avec un élément d'engagement (49) s'étendant
à partir de celle-ci,
le canal (12) de l'élément vertical (40) et l'insert (42) étant configurés de telle
sorte que la région de l'insert (42) comprenant l'élément d'engagement (49) est apte
à être insérée dans le canal (12) et, lorsqu'elle est insérée dans le canal (12) et
en réponse à une force vers le bas appliquée à ou autour de l'extrémité terminale
de l'insert (42) distale par rapport à l'élément vertical (40), l'insert (42) pivote
sur le point de pivotement (19) du canal (12) de telle sorte que l'élément d'engagement
(49) se déplace dans l'évidement (18) du canal (12), verrouillant ainsi le canal (12)
et l'insert (42) ensemble.
2. Système d'ancrage selon la revendication 1, dans lequel l'élément vertical (40) est
un panneau ou une plaque ou une paroi.
3. Système d'ancrage selon la revendication 1 ou la revendication 2, dans lequel le canal
(12) s'étend sensiblement horizontalement.
4. Système d'ancrage selon la revendication 1, dans lequel l'insert (42) comprend un
élément de butée (50) s'étendant à partir d'une surface supérieure de celui-ci.
5. Système d'ancrage selon la revendication 4, dans lequel l'élément de butée (50) s'étend
à partir d'une zone autour du coude (48).
6. Système d'ancrage selon la revendication 5, dans lequel l'élément de butée (50) s'étend
à partir de la seconde région, et de manière adjacente au coude (48).
7. Système d'ancrage selon l'une quelconque des revendications 1 à 6, dans lequel la
seconde région comprend une ou plusieurs formations (64) configurées pour aider à
fixer l'insert (42) dans un article pouvant être fixé.
8. Système d'ancrage selon la revendication 7, dans lequel l'article pouvant être fixé
est une étagère (62) .
9. Procédé pour fournir un élément vertical (40) apte à recevoir un insert (42) selon
la revendication 1, le procédé comprenant les étapes :
fournir un élément vertical (40),
modifier l'élément (40) pour qu'il comprenne un canal (12) s'étendant dans celui-ci,
le canal (12) étant incliné vers le bas dans l'élément (40), le canal (12) ayant une
paroi supérieure (14) et une paroi inférieure (16), la paroi supérieure (14) ayant
un évidement (18) disposé à l'intérieur de celle-ci.
10. Procédé selon la revendication 9, dans lequel l'étape de modification comprend mettre
en place un moyen de réception (10) comprenant le canal (12) s'étendant dans celui-ci,
le canal (12) étant incliné vers le bas dans l'élément (40), le canal (12) ayant une
paroi supérieure et une paroi inférieure, la paroi supérieure ayant un évidement disposé
dans celle-ci.