Technical field of the invention
[0001] The invention relates in particular to a tray for storage of parts with the aim of
transporting them, as well as a crate for transporting these parts.
Technical background
[0002] It is known to transport parts in a transport crate. Conventionally, the crate has
a generally parallelepiped shape and comprises a base and four side walls extending
respectively along four sides of the base. Parts are arranged in the crate with the
aim of transporting them. For example, these may be parts destined for an assembly
plant, such as vehicle parts destined for a vehicle assembly plant.
[0003] The parts can be relatively fragile, so they need to be blocked as securely as possible
in the crate to prevent them from shifting during transport and colliding with each
other. For example, the parts may have smooth surfaces that must not be scratched,
or flexible portions that must not be deformed or crushed. This is particularly true
of sealing parts for vehicles, especially automobiles.
[0004] Depending on the size of the parts, they may need to be stacked in the crate. To
achieve this, storage trays can be superimposed one on top of the other in the crate,
and each tray can support a stack of several parts. In this configuration, the risk
of displacement and impact of the parts is increased, which further reinforces the
need to lock in the parts stacked on each tray. The present invention offers a simple,
effective and economical solution to this need for prior art.
Summary of the invention
[0005] To this end, the invention proposes a tray for storing parts with the aim of transporting
them, this tray comprising:
- a plane wall comprising an upper face and a lower face, the upper face being capable
of supporting the parts to be transported, and
- positioning studs attached to the wall and projecting from said upper surface so as
to block the parts to be transported,
characterised in that the studs are independent of one another and attached independently
to the upper surface of the wall, at least some of the studs comprising a first rigid
foam portion attached to the upper surface and a second portion made of flexible foam
capable of coming into contact with the parts to be transported.
[0006] The studs are used to block, i.e. to stall or to lock in, the parts to limit their
movement during transportation. The studs are attached to the wall and rest on the
parts to be transported. The studs therefore comprise two portions, each with a specific
function. The first portion of each stud is made of rigid foam and enables the stud
to be attached to the wall. It is therefore understood that each stud is attached
to the wall by this first rigid portion. The second portion of each stud is made of
flexible foam and is designed to come into contact with the parts for blocking purposes.
[0007] In this application, the terms "rigid" and "flexible" refer to the hardness of the
foam. It is understood that a rigid foam has a higher hardness than flexible foam.
This means that the hardness of the first portion of each stud is greater than the
hardness of the second portion of the stud.
[0008] For example, if the hardness measured is type Shore 00, then the hardness of the
flexible foam is less than 20 and the hardness of the rigid foam is greater than 20.
[0009] The tray according to the invention may comprise one or more of the following characteristics,
taken separately from each other or in combination with each other:
- the first portion is XPE-based;
- the first portion has a density greater than 110Kg/m3, and preferably greater than or equal to 120kg/m3;
- the first portion has a Shore 00 hardness greater than 20, and preferably greater
than 30;
- the first portion has an elongation at break greater than 110%, and for example between
110 and 140%;
- the second portion is of the shape memory type;
- the second portion is based on EPDM foam;
- the second portion has a density less than or equal to 110kg/m3, and for example between 80 and 110kg/m3;
- the second portion has a Shore 00 hardness of less than 20, and preferably less than
13;
- the second portion has an elongation at break greater than 150%, and for example between
150 and 300%;
- at least some of the studs are covered with a textile film or a textile layer;
- - the film or layer comprises a polyester, a polyamide or a combination of the two;
- the film or layer has a density of between 50 et 200 g/m2 and preferably of the order of 100g/m2;
- - the film or layer covers two opposite sides of the stud, or even a top and/or a
base of the stud;
-- at least some of the studs, or not all of the studs are identical;
-- the studs each have a generally parallelepiped shape;
-- each of the first and second portions has a parallelepiped shape.
-- the second portion of each stud occupies a volume of the stud which is less than
the volume of the stud occupied by the first portion of this stud;
-- the studs are all the same height;
-- the number of studs is greater than ten;
- the studs are attached to the wall by gluing and/or by attaching screws which pass
through the wall and are screwed into the studs;
-- the upper face of the wall comprises drawings representing the shape and position
of the parts to be transported and blocked between the studs;
-- said wall is made of polypropylene (PP);
-- said wall has a density of between 1000g/m2 and 2000g/m2, and for example between 1200g/m2 and 1800g/m2; the density is for example of the order of 1500g/m2;
-- said wall has a thickness of between 2 and 10 mm, and preferably between 3 and
7 mm; the thickness is, for example, 5 mm;
-- said wall is a hollow or alveolar panel, for example that marketed under the brand
name Triplex®;
-- the film or layer is, for example, a textile marketed under the brand name Evolon®.
[0010] The invention also relates to a crate for storing parts with the aim of transporting
them, comprising a container in which several trays as described above are superimposed,
these trays having walls of the same dimensions. The crate according to the invention
may comprise one or more of the following characteristics, taken in isolation from
each other or in combination with each other:
[0011] The present invention also relates to the use of a tray as described above or a crate
as described above for transporting sealing parts for vehicles, in particular motor
vehicles.
Brief description of the figures
[0012] Further characteristics and advantages will be apparent from the following description
of non-limiting embodiments of the invention with reference to the accompanying drawings
in which:
Figure 1 is a schematic perspective view of a transport crate, in this case empty,
Figure 2 is a schematic perspective view of a transport crate comprising at least
one storage tray on which parts to be transported are stacked,
Figure 3 is a schematic front view of a storage tray according to one embodiment of
the invention,
Figure 4 is a schematic perspective view of a positioning stud,
Figure 5 is a schematic perspective view of another positioning stud, and
Figure 6 is a schematic perspective view of a stack of parts on a storage tray.
Detailed description of the invention
[0013] Figure 1 shows a crate 10 for transporting parts. This crate 10 has, for example,
a generally parallelepiped shape as in the example shown, and comprises or forms a
container with a base 12, or a base wall, and four side walls 14 extending respectively
along the four sides of the base 12.
[0014] In general, the base 12 is horizontal and is associated with one or more feet 16
or legs. The side walls 14 are generally vertical and therefore perpendicular to the
base 12. They are also perpendicular to each other and parallel to each other in the
example shown.
[0015] The base 12 is preferably rigid and is made, for example, of metal, wood or both.
[0016] The side walls 14 can be made of metal and are, for example, screened as in the example
shown.
[0017] Alternatively, the crate 10 could be made of plastic.
[0018] The crate 10 can also be of the type that cannot be dismantled or, on the contrary,
can be dismantled and, in particular, folded.
[0019] The crate 10 comprises or forms a container in which a number of trays 20 are designed
to be placed one on top of the other, as shown in Figure 2. The number of trays 20
that can be stacked in a crate 10 is not limitative.
[0020] Figure 2 shows an upper tray superimposed on a lower tray, which can itself be superimposed
on another tray.
[0021] The trays 20 preferably have the same dimensions, in particular in width and length,
these dimensions corresponding substantially to those of the base 12 so that the lowest
tray can rest on the base 12.
[0022] Each tray 20 supports several parts 22 and is configured to block them as well as
possible to limit any movement of the parts 22 during transport.
[0023] Figure 3 shows an example of a tray 20.
[0024] Each tray 20 essentially comprises two portions, namely a plane wall 24 and positioning
studs 26.
[0025] The plane wall 24 comprises an upper face 24a and a lower face, the upper face 24a
being able to support the parts 22 to be transported.
[0026] It can be seen that the upper surface 24a may comprise marks 28 delimiting the parts
22 to be transported. In the present case, the parts 22 are sealing parts for vehicles,
in particular cars. The parts have relatively complex shapes, with rectilinear and
elongated sections.
[0027] In the example shown, it can be seen that the upper surface 24a comprise four marks
28 so that four stacks of parts 22 can be produced.
[0028] The marks 28 can be made by continuous lines or dotted lines drawn on the wall 24,
as in the example shown.
[0029] The plane wall 24 can also comprise openings 30 to make it easier to grip and handle
the tray 20.
[0030] For example, the wall 24 comprises two openings 30 substantially in the middle so
that an operator can grip the tray 20 by inserting his hands into these openings 30
and folding his fingers over the lower face of the wall 24. The user can therefore
manipulate the tray 20 and, for example, remove it from the crate 10 or insert it
into the crate 10.
[0031] The drawing shows that the openings 30 are at a distance from the marks 28 to prevent
the operator from touching the parts when handling the tray 20. The wall 24 is made
of polypropylene (PP), for example.
[0032] The wall 24 can have a density of between 1000g/m
2 and 2000g/m
2, and for example between 1200g/m
2 and 1800g/m
2. The density of the wall 24 is, for example, around 1500g/m
2.
[0033] The wall 24 can have a thickness of between 2 and 10mm, and preferably between 3
and 7mm. The thickness of the wall 24 is, for example, 5mm. The wall 24 can be a hollow
or honeycomb panel, for example that marketed under the brand name Triplex
®.
[0034] The studs 26 are independent of each other and attached independently to the upper
face 24a of the wall 24.
[0035] Figure 3 shows that the tray 20 can comprise a fairly large number of studs 26. The
number of studs 26 per tray 20 is, for example, greater than or equal to 10 or 20.
[0036] There are two types of studs 26: the blocking studs 26a and the support studs 26b.
[0037] The support studs 26b are designed to support an upper tray.
[0038] The blocking studs 26a are positioned in specific areas, next to the marks 28, so
that the parts 22 are blocked precisely at the marks 28.
[0039] The same part 22 can be blocked by several studs 26a depending on the shape and dimensions
of the part 22. For example, the number of studs 26a per part 22 may be greater than
or equal to 2 or 5.
[0040] Insofar as the parts 22 are placed on the wall 24 or on another part 22 located on
the wall 24, and insofar as the parts 22 are covered by another part 22 or another
tray 20, the function of the studs 26a is to block the parts 22 in a plane parallel
to the wall 24 of the tray 20. In other words, the number and position of the studs
26a for blocking a part 22 are advantageously chosen to block the movements of this
part 22 in any direction in this plane, or at least in several directions in this
plane.
[0041] The studs 26 may each have a generally parallelepiped shape.
[0042] As can be seen more clearly in Figures 4 and 5, the studs 26a comprise a first portion
32a made of rigid foam attached to the upper surface 24a and a second portion 32b
made of flexible foam capable of coming into contact with the parts 22 to be transported.
[0043] It is understood that the studs 26a are attached to the wall 24 by means of their
rigid portions 32a and are resting on the parts by means of their flexible portions
32b.
[0044] It is also understood that the studs 26a must be located on the wall 24 so that their
flexible portions 32b face the nearest marks 28 in order to rest on the parts 22 placed
on these marks 28.
[0045] Each of the first and second portions 32a, 32b of each stud 26a may have a parallelepiped
shape, as in the example shown in Figure 4.
[0046] The second portion 32b of each stud 26a can occupy a volume of the stud 26a which
is less than the volume of the stud 26 occupied by the first portion 32a of this stud
26a, as can be seen in figure 4 for example.
[0047] For example, the first portion 32a has a Shore 00 hardness greater than 20, and preferably
greater than 30.
[0048] The first portion 32a, for example, is XPE-based.
[0049] The first portion 32a may have a density greater than 110Kg/m
3, and preferably greater than or equal to 120kg/m
3.
[0050] For example, the first portion 32a has an elongation at break greater than 110%,
and for example between 110 and 140%.
[0051] The second portion 32b, for example, has a Shore 00 hardness of less than 20, and
preferably less than 13.
[0052] The second portion 32b is preferably of the shape memory type.
[0053] The second portion 32b is made of EPDM foam, for example.
[0054] The second portion 32b may have a density less than or equal to 110kg/m
3, for example between 80 and 110kg/m
3.
[0055] The second portion 32b may have an elongation at break of more than 150%, for example
between 150 and 300%.
[0056] In the case of the support studs 26b, they may be made entirely of rigid material.
[0057] Each of the studs 26 can be covered with a textile film or a textile layer 36, as
shown in Figure 5. The use of such a film or layer is advantageous for several reasons.
The film or layer helps, for example, to preserve the integrity of the second portion
32b over time and prevent it from tearing. The film or layer also serves to facilitate
the placement of the stacked parts 22 on the tray, by preventing the second portion
32b from being torn off when the parts 22 come into contact with the stud 26.
[0058] The film or layer 36 may comprise polyester, polyamide or a combination of the two.
The film or layer 36 is, for example, a textile marketed under the brand name Evolon
®.
[0059] The film or layer 36 can have a density of between 50 and 200 g/m
2 and preferably of the order of 100g/m
2.
[0060] The film or layer 36 may cover two opposite sides of the stud 26, or even a top and/or
a base of the stud 26.
[0061] The film or layer 36 can be attached to the corresponding stud 26, for example by
gluing.
[0062] In the case of figure 5, for example, the film or layer 36 covers the top of the
stud 26, and in particular the top of the two portions 32a, 32b of the stud 26a, and
comprises two portions folded over respectively on one face of the portion 32a intended
to be in contact with part(s) and an opposite face of the other portion 32b. Alternatively,
the film or layer 36 can comprise two portions folded over one of the faces of the
stud 26, or even superimposed on it: in this case, the film or layer 36 completely
surrounds the stud 26.
[0063] At least some of the studs 26, or all of the studs 26 may have the same height H1.
This is particularly the case for studs 26b on which an upper tray 20 is to be placed.
[0064] The studs 26 are attached to the wall 24 by adhesive and/or by attaching screws 38
which pass through the wall 24 and are screwed into the studs 26, advantageously passing
through the film or layer 36, which is an additional guarantee for the best hold of
the film or layer on the stud. Figure 3 illustrates the case where, for example, the
portion 32a of each stud 26a has tapped holes 40 at its base to receive screws 38.
These screws 38 pass through orifices in the wall 24 (not shown) and are screwed and
tightened into the holes 40.
[0065] As shown in Figure 6, at least some parts 22 or layers of parts may be separated
from each other, at least in part, by protective sheets or textiles 42.
[0066] These sheets or textiles 42 may be similar or identical to the aforementioned film
or layer 36.
[0067] These sheets or textiles 42 can be joined together in batches when these sheets or
textiles are intended to be inserted between parts of the same stack of parts to avoid
relative friction between these parts 22, as is the case in Figure 6. In this case,
the sheets or textiles 42 may comprise portions 42a which are superimposed and attached
together. These portions 42a can also be attached to the wall 24, and in particular
to its upper face 24a. This can be achieved by gluing and/or sewing, for example.
[0068] The parts 22 or layers of parts 22 on each of the trays 20 are stacked to a height
H2 which is preferably less than the maximum height H1 of the studs 26 of this tray
20. The difference in height H1-H2 is preferably between 0.5cm and 5cm to prevent
the upper tray coming into contact with parts 22 on the lower tray on which the upper
tray is placed.
[0069] The tray 24 and the crate 10 can be reused, which is particularly advantageous and
environmentally friendly. Each film or layer 36 may be secured to a stud 26 and is
not necessarily replaced when the tray 24 is used again. The same applies to sheets
or textiles 42, especially when they are attached to the wall 24.
[0070] In a particular embodiment of the invention, at least 120 parts are stored on the
trays of a same crate 10.
[0071] The positions of the studs 26 on the trays 24 are advantageously chosen so that two
empty trays from any part can be stacked on top of each other with their upper faces
24a facing each other. In this way, the stacking height of two trays is almost halved
(with respect to stacking the trays resting on their studs), and significantly reduces
the footprint of the empty trays. The crates are also preferably foldable to reduce
their footprint when empty and make them easier to transport with empty trays. Advantageously,
the trays used to transport parts in two crates are all stacked as described above
and housed inside one of the crates. The other crate can be folded and, for example,
placed folded on top of the unfolded crate containing the stack of trays.
1. A tray (20) for storing parts (22) with the aim of transporting them, this tray (20)
comprising:
- a plane wall (24) comprising an upper face (24a) and a lower face, the upper face
(24a) being capable of supporting the parts (22) to be transported, and
- positioning studs (26) attached to the wall (24) and projecting from said upper
surface (24a) so as to block the parts (22) to be transported, characterised in that the studs (26) are independent of one another and attached independently to the upper
face (24a) of the wall (24), at least some of the studs (26a) comprising a first portion
(32a) made of rigid foam attached to the upper face (24a) and a second portion (32b)
made of flexible foam capable of coming into contact with the parts (22) to be transported.
2. The tray (20) according to claim 1, wherein the first portion (32a) is XPE-based.
3. The tray (20) according to claim 1 or 2, wherein the first portion (32a) has:
- a density greater than 110Kg/m3, and preferably greater than or equal to 120kg/m3, and/or
- a Shore 00 hardness greater than 20, and preferably greater than 30, and/or
- an elongation at break greater than 110%, for example between 110 and 140%.
4. The tray (20) according to one of the preceding claims, wherein the second portion
(32b) is of the shape memory type.
5. The tray (20) according to one of the preceding claims, wherein the second portion
(32b) is based on EPDM foam.
6. The tray (20) according to one of the preceding claims, wherein the second portion
(32b) has:
- a density less than or equal to 110kg/m3, and for example between 80 and 110kg/m3, and/or
- a Shore 00 hardness of less than 20, preferably less than 13, and/or
- an elongation at break greater than 150%, for example between 150 and 300%.
7. The tray (20) according to one of the preceding claims, wherein at least some of the
studs (26) are covered at least in part with a textile film or a textile layer (36).
8. The tray (20) according to claim 7, wherein the film or layer (36) has a density of
between 50 and 200 g/m2 and preferably of the order of 100g/m2.
9. The tray (20) according to one of the preceding claims, wherein the studs (26) are
attached to the wall (24) by gluing and/or by attaching screws (38) which pass through
the wall (24) and are screwed into the studs (26).
10. The tray (20) according to one of the preceding claims, wherein several layers of
parts (22) are stacked on each of the trays (20).
11. A crate (10) for transporting parts (22), the crate comprising a container wherein
several trays (20) are superimposed in accordance with one of the preceding claims,
these trays (20) having walls (24) of the same dimensions.
12. The crate (10) according to the preceding claim, wherein each tray (24), called the
upper tray, which is superimposed on a tray, called the lower tray, rests on the tops
of the studs (26) attached to this lower tray.
13. The crate (10) according to claim 11 or 12, wherein parts (22) to be transported are
located on each of the trays (20) and blocked by the studs (26) of these trays (20).
14. The crate (10) according to claim 13, wherein several layers of parts (22) are stacked
on each of the trays (20).
15. The crate (10) according to claim 13 or 14, wherein at least some parts (22) or layers
are separated from each other, at least in part, by protective sheets or textiles
(42).
16. The crate (10) according to claim 11, wherein it does not comprise parts to be transported
and comprises a stack of trays for an empty return, the stack of trays comprising
several pairs of trays stacked and housed in the crate, each pair of trays comprising
two trays which have their upper faces (24a) facing each other and which have their
studs (26) spaced apart from each other.
17. A use of a tray (20) according to one of claims 1 to 10 or of a crate (10) according
to one of claims 11 to 16 for transporting sealing parts for vehicles, in particular
motor vehicles.