[0001] The invention relates to application of designs to garments and other fabrics.
[0002] Conventional appliques or transfers comprise man-made fibres that do not decompose
and therefore are not susceptible to recycling.
[0003] The invention is directed towards achieving more environmentally-friendly fabrics.
Summary of the Invention
[0005] According to the invention, there is provided an applique comprising:
a substrate or carrier,
flock derived from recycled material,
ink in the flock, and
an adhesive for adhering the applique to a fabric;
wherein the flock comprises fibres of random length.
[0006] In a further embodiment, fibres are arranged in predefined areas extending uniformly
across the carrier or substrate.
[0007] In one embodiment, the fibres are in groups comprising of a random number of fibres
which have been flocked in a primarily uniform vertical orientation using an electrostatic
flocking machine.
[0008] In another embodiment, the flock is printed with ink according to a design.
[0009] In a further embodiment, the applique comprises at least two adhesive layers.
[0010] In one embodiment, the recycled flock applique is inserted into a flock print, to
create a combination of surface textures.
[0011] In another embodiment, the recycled flock applique is inserted into a recycled flock
print, to create a combination of surface textures.
[0012] In a further embodiment, the applique comprises flock fibres of a plurality of colours
and/or various recycled flock materials.
[0013] In one embodiment, the applique further comprises a recycled flock applique insert.
[0014] In another embodiment, the flock is over a textile substrate whereby textile creates
structure for the print.
[0015] In a further embodiment, the flock is over sublimated textile.
[0016] In one embodiment, the flock is over a foil, metal or foil film.
[0017] In another embodiment, the foil comprises a holographic pattern.
[0018] In a further embodiment, the flock is over a migration-resistant barrier or migration-resistant
barrier composite.
[0019] In another aspect, there is provided a method of manufacturing an applique as described
above, comprising the steps of depositing the flock onto a carrier or substrate and
applying an ink to the flock.
[0020] In one embodiment, the carrier or substrate is a disposable carrier.
[0021] In another embodiment, the flock is deposited onto a release adhesive.
[0022] In a further embodiment the method comprises forming a printed single colour or multicoloured
recycled flocked surface using recycled flock fibres.
[0023] In one embodiment, the flock is applied by electrostatic flocking machine and flock
fibres are flocked onto the release adhesive which is still wet.
[0024] In another embodiment, the fibres are in groups comprising of a random number of
fibres which have been flocked in a primarily uniform vertical orientation using an
electrostatic flocking machine, vertical flock orientation typically ranging from
60° to 120°.
[0025] In a further embodiment, the method comprises the step of drying in an oven and removing
any surplus and loose excess flock.
Detailed Description of the Invention
[0026] The invention will be more clearly understood from the following description of some
embodiments thereof, given by way of example only with reference to the accompanying
drawings in which:-
Figs. 1(a) to (e) are a series of cross-sectional diagrams showing stages of manufacturing
of an applique of the invention, in which Fig. 1(a) shows a release adhesive on a
disposable carrier, Fig. 1(b) shows application of recycled flock, Fig. 1(c) shows
application of ink into the flock fibres, and Fig. 1(d) shows the stage after adhesive
has been bonded to the flock fibres to complete the applique; and Fig 1.(e) is a view
after heat application bonding to fabric;
Fig. 2 is a view after removal of the disposable carrier;
Figs. 3 to 10 are diagrammatic cross-sectional views showing appliques of various
embodiments, in which:
Fig. 3 shows use of an eco flock encapsulated by a flock print,
Fig. 4 shows an eco flock encapsulated by a recycled flock transfer,
Figs. 5(a), (b), and (c) show stages of manufacture of an applique with a mixed fibre
eco flock transfer,
Fig. 6 shows flocking directly onto an adhesive layer,
Fig. 7 shows flocking directly onto a satin or textile material,
Fig. 8 shows flocking directly onto a sublimated satin textile mat,
Fig. 9 shows flocking directly onto a metal foil or holographic foil film, and
Fig. 10 shows flocking directly onto a migration resistant barrier.
Description of the Embodiments
[0027] A recycled flock applique is created using recycled textiles, inks and adhesive systems.
The applique is "eco friendly" due to the recycled flock fibre surface and with water-based
adhesive binder. Therefore, fewer raw materials are used in the manufacture of the
applique.
[0028] The substrate or carrier may be in any suitable flat sheet format, including a backing
film or parchment. A recycled flock transfer includes a release flock adhesive which
holds one end of the flock fibres which have been colour printed, while a permanent
flocking adhesive binds the fibres together at the other end of the fibre filaments.
[0029] A method of manufacturing a recycled flock applique includes the steps of:
(i) providing a substrate or carrier comprising of recycled flock fibres and a flock
adhesive,
(ii) providing a substrate or carrier comprising of skeleton flock fibres and a flock
adhesive,
(ii) providing a coloured image in the design, and
(iii) providing a permanent adhesive layer to bind recycled flock fibres.
[0030] Figs. 1 to 10 show various manufacturing methods and constituents of appliques of
the invention, indicated in the legends to the right side of the diagrams.
[0031] Fig. 1(a) shows a disposable carrier 5 and a release adhesive 4 printed onto the
carrier 5. The carrier 5 is of polyester, which also may be recycled.
[0032] Fig. 1(b) shows recycled flock 2 deposited into the flock release adhesive 4. This
is performed electrostatically, to achieve a high flock density. The recycled flock
fibres have a sufficient electrical conductivity to respond to the electrostatic flocking
process. Good flocking can only be achieved with correct humidity and temperature
conditions, which are preferably 21°C and 65% relative humidity. The flock is applied
into the wet adhesive using an electrostatic flocking machine. The flocking procedure
is carried out with an electrostatic flocking machine, which charges the flock fibres
with a voltage of 40 to 100 kV, enabling the fibres to be shot from the equipment
to any grounded surface. This process is enabled using open screens to adhere onto
the release adhesive. The flock fibres jump along the electrostatic field lines from
the flocking chamber to any earthed surface. To ensure an evenly flocked surface this
requires that the flocking chamber is moved over the surface of the substrate with
always the same speed and distance for each flock chamber.
[0033] The period of time during which the flocking has to be completed is called the "open
time" of the release adhesive. The flock is dried in an oven or on a conveyor oven
and any surplus flock (excess flock) is cleaned from the flock surface.
[0034] The recycled textile materials are ground and sieved to textile length, typically
0.1mm to 1.2mm. These fibres, unlike conventional fibres, can be of random shape.
The non-recycled material content averages 10% - 75 % of the weight of the transfer.
[0035] The flock skeleton framework helps to provides vertical structure. It is compromised
of recycled flock fibres and/or non-recycled flock fibres, typically known in the
industry as double indexing.
[0036] Fig. 1(c) shows how the applique is coloured using ink deposits 1 on recycled flock
fibres. Colours can be applied to the design using silk screen printing ink application
methods with a water base and/or digitally printing designs and/or sublimating digital
images onto the recycled flock material. If a multi-colour design is printed, graphic
items are allowed to dry between colours (using a batch oven or a conveyor oven),
to allow water and/or solvent to evaporate from the ink. The graphic is then printed
with a different colour. This process is repeated until all colours in the graphics
have been printed. Water based ink and/or eco friendly inks such as soya-based inks
can be used.
[0037] Where digital printing is used for ink application, the flock is printed using digital
print technology according to the design requirements. Graphic items are allowed to
dry after printing, either by air drying at room temperature or at elevated temperature
in a conventional batch oven or a conveyor oven. Water-based digital inks and/or eco
friendly digital inks can be used in this process
[0038] Where sublimation printing is employed for ink application the flock is sublimated
using sublimation print technology according to the design requirements. Graphic items
are allowed to cool after sublimating, before sublimation transfer paper is removed.
[0039] Fig. 1(d) shows an adhesive layer 3 is screen-printed onto the flock 2. A two-component
flocking adhesive system is used during adhesive printing. This flocking adhesive
may contain fillers. Fillers used in the adhesive printing preferably come from recycled
materials. The period of time during which a two-component mixture of adhesive and
catalyst has to be used up, is called "pot life". A flocking adhesive is printed on
top of the coloured graphics according to a design, using silk screen printing techniques.
In order to achieve a sturdy and abrasion-resistant recycled flock product, it is
necessary to ensure that tips of the flock fibres and part of the flock fibre strand
length is immersed in flock adhesive, during the printing process. This means that
the thickness of the dried adhesive has to be typically a fifth of the flock length.
[0040] The adhesive is dried in an oven or on a conveyor oven; this step allows water and/or
solvent to evaporate from the flocking adhesive. After drying has been completed the
adhesive system can by cross-linked in an oven or a conveyor oven.
[0041] A starch-based adhesive may be employed, so that it may be recycled.
[0042] The adhesive layer 3 (and also the adhesive layers 21, 24, 31, and 40 of other embodiments)
may be a permanent adhesive. It comprises of a thermoplast adhesive combined with
a thermoset adhesive. The ratio of thermoplastic adhesive to thermoset adhesive is
in the range of 0:100 to 100:0, preferably 0.1: 99.1 to 99.9:0.1, and most preferably
0.25:99.75 to 99.75:0.25
[0043] Alternatively, it comprises of a thermoset adhesive coupled with thermoplastic powder.
The powder can be made from an aromatic or aliphatic thermoplastic. The thermoset
adhesive can include one or more (but not limited to) acrylic, polyamide; epoxy, polyester;
polyolefin; polyurethane; and silicone and combinations thereof.
[0044] To apply a design to a textile, the applique of this or the other embodiments is
placed on the textile (Fig. 1(e)) heat is applied, and the disposable carrier (5,
in this embodiment) is removed (Fig. 2), leaving the adhesive layer 3 in contact with
the textile. Heat and pressure are applied so that the hot-melt adhesive layer 3 softens
onto the fabric (F) to adhere the applique in place, once above the film's initial
glue line temperature. Alternatively, applications can be carried out using high frequency
welding or ultrasonic bonding.
[0045] The applique is applied by pressing under heat, in this example 160°C and 2 Bar for
20 seconds, allowed to cool, and the disposable carrier is peeled from the applique.
[0046] In various embodiments a heat transfer or applique may incorporate customised ink
layers to create a textured motif. The invention uses waste fibres from textile waste
streams to create a recycled "environmentally responsible flock" heat transfer or
applique.
[0047] Recycled flock can be manufactured from recycled textiles (for example cotton, polyester,
polypropylene, biological, composite, mineral or viscose rayon) and/or post industrial
plastics converted into textiles and/or natural plant materials converted into textiles
and/or renewable textile materials and/or a combination of any of the above which
has been converted into textiles which in turn have been converted into flock.
[0048] The raw materials can be used as a single source fibre or in hybrid format. Single
or multicolour images can be digitally printed and screen printed onto the surface
of the design which may use a range of environmentally-friendly ink systems.
[0049] The design can be further enhanced by using a variety of artwork effects and techniques.
Examples include embossing, encapsulating, and engraving. The product can also incorporate
waste material from a number of in-house manufacturing streams. For example, a milled
waste heat transfer may be recycled by incorporation into the adhesive layer. The
heat transfer can be designed to incorporate a biodegradable carrier. A single or
multicolour design insert may be added to the heat transfer. The design insert may
be made from a range of conventional, alternative or convertible fabrics including
organic textiles, Fig. 5(c).
[0050] An applique of Fig. 3 comprises a disposable carrier 25, and has a similar arrangement
to Figs. 1 and 2 except that there is a recycled flock insert bonded to the flock
applique. The recycled flock applique provides a background texture which can be applied
in any graphic format. In this embodiment, the various layers are applied as follows:
A release adhesive 21 is printed onto the carrier 25 and flock 20 is deposited onto
the release adhesive, and a permanent adhesive 21 is screen printed onto the back
of the flock in areas where a graphic is required. A pre-manufactured recycled flock
graphic (22, 23 & 24) such as shown in Fig. 7 is bonded onto the graphic through heat
application, to create a multilayer graphic. An advantage of this system is that it
is possible to create a multiple layer graphic.
[0051] An applique of Fig. 4 comprises a disposable carrier 35 and has a similar arrangement
to Fig. 1(d) except that there is a recycled flock insert bonded to the recycled flock
applique. The recycled flock applique provides a background texture which can be applied
in any graphic format. In this embodiment, the layers are applied as follows:
A release adhesive is printed onto a carrier 35 and flock 30 is deposited onto the
release adhesive, and a permanent adhesive 31 is screen printed onto the back of the
flock in areas where a graphic is required. A pre-manufactured recycled flock graphic
(22, 23 & 24) such as shown in Fig. 7 is bonded onto the graphic through heat application,
to create a multilayer graphic.
[0052] An advantage of this system is that it is possible to create a multiple-layer recycled
flock graphic.
[0053] An applique of Fig. 5(a).a comprises a disposable carrier 48 and has a similar arrangement
to Fig. 1(d) except that multiple recycled flock fibres 41, 42 can be flocked during
the flocking process. These flock fibres can be the same type of recycled flock but
in different colours or flocks from different sources, for example. a recycled cotton
flock, recycled viscose rayon flock, a recycled polyester flock, all flocked from
different flocking chambers or stations. An adhesive layer is printed on top of all
flock fibres to bond these together. An advantage of this configuration is that infinite
textile patterns can be created through the use of different colours / types of flock
fibres in combination with printing graphics.
[0054] An applique of Fig. 5(b) comprises a disposable carrier 48 and has a similar arrangement
to Fig. 4 except that the recycled flock fibres are made up of different flock colour
flock fibres or different types of flock fibres 41, 42. A recycled flock insert is
bonded to the recycled flock applique (45, 46, 47). The recycled flock applique provides
a background texture which can be applied in any graphic format. In this embodiment,
the various layers are applied as follows:
A release adhesive is printed onto a carrier 48 and flock 41, 42 is deposited onto
the release adhesive, and a permanent adhesive 40 is screen printed onto the back
of the flock in areas where a graphic is required. A pre-manufactured recycled flock
graphic (22, 23 & 24) such as shown in Fig 7 is bonded onto the graphic through heat
application, to create a multilayer graphic.
[0055] An advantage of this system is that it is possible to create a multiple layer recycled
flock graphic.
[0056] An applique of Fig. 5(c) comprises a disposable carrier 48. It has a similar arrangement
to that of Fig. 4 except that the recycled flock fibres are made up of different colour
flock fibres or different types of flock fibres 41, 42. There a recycled fabric composite
49 insert bonded to the recycled flock applique. The recycled fabric composite provides
a background texture and/o colour which can be applied in any graphic format. In this
embodiment, the various layers are applied as follows:
A release adhesive is printed onto a carrier 48 and flock 41, 42 is deposited onto
the release adhesive, and a permanent adhesive 40 is screen-printed onto back of the
flock in areas where graphic is required. A pre-manufactured recycled fabric composite
49 is bonded onto the graphic through heat application, to create a multilayer recycled
applique.
[0057] An advantage of this system is that it is possible to create a multiple layer recycled
flock graphic incorporating recycled fabric.
[0058] Referring to Fig. 6 a hotmelt film 52 is applied to a disposable carrier 53. Recyclable
adhesive 51 is applied to the hotmelt, and this is flocked with flock 50.
[0059] The hotmelt adhesive layer (51, 61, 71, 81, 91) comprises of a thermoplastic film
made from an aromatic or aliphatic thermoplastic. The hotmelt film can include one
or more (but not limited to) polyamide; polyester; polyolefin; polyurethane; polyurethane
urea and polyurethane ester. For example, the hot-melt film can be 76 micron Bemis
Polyester Hotmelt Film 5250.
[0060] To apply a design to a textile, the applique (59, 69, 79, 89, 99) is simply placed
on the textile after removing the disposable carrier (53, 64, 74, 84, 94) with the
hotmelt film adhesive layer in contact with the textile. Heat and pressure are applied
so the hot-melt softens onto the fabric (F) to adhere the applique in place, once
above the film's initial glue line temperature. Alternatively, applications can be
carried out using the high frequency welding method or ultra sonic bonding method.
[0061] Referring to Fig. 7, there is a similar arrangement except that there is textile
(or alternatively another textile) on the hotmelt film. The satin provides a background
so that the recycled flock can be applied in any desired pattern. A hotmelt film 63
is applied to a textile 62 (through a heat application process), adhesive 61 is applied
to the textile prior to flocking and while adhesive is wet flock 60 is deposited into
the wet adhesive.
[0062] An arrangement is shown in Fig. 8 in which there is no disposable carrier, and sublimated
textile acts as a substrate. The textile is sublimated with a colour and/or pattern,
a hotmelt film 73 is applied to a textile 72 (through a heat application process),
adhesive 71 is applied to the textile prior to flocking and while the adhesive is
wet flock 70 is deposited into the wet adhesive.
[0063] An arrangement is shown in Fig. 9 in which a foil, metal or holographic film acts
as a substrate. A hotmelt film 83 is applied to a foil (through a heat application
process), metal or holographic foil/film 82, adhesive 81 is applied to the foil prior
to flocking and while the adhesive is wet flock 80 is deposited into the wet adhesive.
[0064] In an arrangement shown in Fig. 10 foil, a migration resistant barrier or composite
barrier acts as a substrate. A hotmelt film 93 is applied to a barrier (through a
heat application process) 92, adhesive 91 is applied to the barrier prior to flocking
and while adhesive is wet flock 90 is deposited into the wet adhesive.
[0065] Advantages of this arrangement are that this creates a fully dye migration resistant
applique for use of fabrics which have dye migration issues, thereby preventing the
applique from becoming coloured by the fabric dye over time.
[0066] It will be appreciated from the embodiments above that the flock can be applied in
a variety of positions in the layers to achieve the desired effects. For example recycled
fibres may be flocked in-house onto a disposable carrier to produce a heat transfer
in a number of steps. The steps include coating a disposable carrier film with release
adhesive followed by flocking with recycled fibres. The pre-flocked sheets are then
screen printed using environmentally friendly "eco" inks. An adhesive layer/hotmelt
powder layer is screen printed to complete the applique. The resulting transfer is
then applied to the garment using heat and pressure.
[0067] Alternatively, the steps include coating disposable carrier film with release adhesive
followed by flocking with recycled fibres. The pre-flocked sheets are then sublimated
with inks. An adhesive layer/hotmelt powder layer is screen printed to complete invention.
The resulting transfer is then applied to the garment using heat and pressure.
[0068] In another alternative recycled flock fibres are flocked in-house onto a substrate
which includes a hotmelt film. There is application of an adhesive on the substrate
followed by flocking with recycled fibres. The pre-flocked sheets are then screen
printed using inks to complete the process. The resulting design can then be either
laser or die cut and applied to the garment using heat and pressure. The benefit of
an applique is that no additional disposable carrier is necessary, which adds to the
environmental benefits of this product.
[0069] The invention is not limited to the embodiments described but may be varied in construction
and detail.
1. An applique comprising:
a substrate or carrier,
flock derived from recycled material,
ink in the flock, and
an adhesive for adhering the applique to a fabric;
wherein the flock comprises fibres of random length.
2. An applique as claimed in claim 1, wherein the flock fibre length is in the range
of 0.1 mm to 1.2 mm.
3. An applique as claimed in claims 1 or 2, wherein fibres are arranged in predefined
areas extending uniformly across the carrier or substrate.
4. An applique as claimed in any preceding claim, wherein the fibres are in groups comprisinga
random number of fibres which have been flocked using an electrostatic flocking machine
with flock orientation ranging from 60° and 120° with respect to the substrate.
5. An applique as claimed in any preceding claim, wherein the flock is printed with ink
according to a design.
6. An applique as claimed in any preceding claim, wherein the applique comprises at least
two adhesive layers.
7. An applique comprising the applique as claimed in any preceding claim inserted into
a flock print, to create a combination of surface textures.
8. An applique comprising the applique as claimed in any preceding claim inserted into
a recycled flock print, to create a combination of surface textures.
9. An applique as claimed in any preceding claim, comprising flock fibres of a plurality
of colours and/or various recycled flock materials.
10. An applique as claimed in any preceding claim, further comprising a recycled flock
applique insert.
11. An applique as claimed in any preceding claim, wherein the flock is over a textile
substrate whereby textile creates structure for the print.
12. An applique as claimed in any of claims 1 to 10, wherein the flock is over sublimated
textile.
13. An applique as claimed in any of claims 1 to 10, wherein the flock is over a foil,
metal or foil film.
14. An applique as claimed in claims 13, wherein the foil comprises a holographic pattern.
15. An applique as claimed in any preceding claim, wherein the flock is over a migration-resistant
barrier or migration-resistant barrier composite.
1. Applikationsarbeit mit
Trägersubstrat,
aus Recyclat gewonnenem Flock,
Farbe im Flock sowie
Klebstoff zum Aufkleben der Applikationsarbeit auf Stoff,
wobei der Flock Fasern beliebiger Länge umfasst.
2. Applikationsarbeit nach Anspruch 1, bei der die Flockfaserlänge im Bereich von 0,1
mm bis 1,2 mm liegt.
3. Applikationsarbeit nach Anspruch 1 oder 2, bei der Fasern in vorbestimmten, sich gleichmäßig
über das Trägersubstrat erstreckenden Bereichen angeordnet sind.
4. Applikationsarbeit nach einem der vorhergehenden Ansprüche, bei der die Fasern in
eine beliebige Anzahl durch elektrostatische Beflockung unter einer Flockausrichtung
im Bereich von 60° und 120° gegenüber dem Substrat aufgeflockter Fasern umfassenden
Gruppen vorliegen.
5. Applikationsarbeit nach einem der vorhergehenden Ansprüche, bei der der Flock mustermäßig
mit Farbe bedruckt ist.
6. Applikationsarbeit nach einem der vorhergehenden Ansprüche, bei der die Applikationsarbeit
mindestens zwei Klebstoffschichten umfasst.
7. Applikationsarbeit, umfassend die Applikationsarbeit gemäß einem der vorhergehenden
Ansprüche nach Einfügen in einen Flockdruck unter Erzeugung einer Kombination oberflächlicher
Texturen.
8. Applikationsarbeit, umfassend die Applikationsarbeit gemäß einem der vorhergehenden
Ansprüche nach Einfügen in einen Recyclatflockdruck unter Erzeugung einer Kombination
oberflächlicher Texturen.
9. Applikationsarbeit nach einem vorhergehenden Anspruch, umfassend Flockfasern in mehreren
Farbtönen und/oder aus verschiedenen Flockrecyclaten.
10. Applikationsarbeit nach einem der vorhergehenden Ansprüche, ferner umfassend eine
Recyclatflockapplikationseinfügung.
11. Applikationsarbeit nach einem der vorhergehenden Ansprüche, bei der der Flock über
einem textilen Substrat aufgetragen ist, wobei durch das Textil Struktur für den Druck
erzeugt wird.
12. Applikationsarbeit nach einem der Ansprüche 1 bis 10, bei der der Flock über einem
sublimationstechnisch behandelten Textil aufgetragen ist.
13. Applikationsarbeit nach einem der Ansprüche 1 bis 10, bei der der Flock über Folie,
Metall oder Folienfilm aufgetragen ist.
14. Applikationsarbeit nach Anspruch 13, bei der die Folie ein holografisches Muster umfasst.
15. Applikationsarbeit nach einem der vorhergehenden Ansprüche, bei der der Flock über
einer migrationsresistenten Barriere oder über einem migrationsresistenten Barriereverbund
aufgetragen ist.
1. Appliqué comprenant :
un substrat ou un support,
un flocage dérivé d'un matériau recyclé,
de l'encre dans le flocage, et
un adhésif pour faire adhérer l'appliqué à un tissu ;
dans lequel le flocage comprend des fibres de longueur aléatoire.
2. Appliqué selon la revendication 1, dans lequel la longueur des fibres de flocage est
de 0,1 mm à 1,2 mm.
3. Appliqué selon les revendications 1 ou 2, dans lequel les fibres sont disposées dans
des zones prédéfinies qui s'étendent uniformément à travers le support ou le substrat.
4. Appliqué selon l'une quelconque des revendications précédentes, dans lequel les fibres
sont en groupes comprenant un nombre aléatoire de fibres qui ont été floquées en utilisant
une machine de flocage électrostatique, le flocage étant orienté de 60 ° à 120 ° par
rapport au substrat.
5. Appliqué selon l'une quelconque des revendications précédentes, dans lequel le flocage
est imprimé avec de l'encre selon un modèle.
6. Appliqué selon l'une quelconque des revendications précédentes, l'appliqué comprenant
au moins deux couches adhésives.
7. Appliqué comprenant l'appliqué selon l'une quelconque des revendications précédentes
inséré dans un flocage imprimé, pour créer une combinaison de textures de surface.
8. Appliqué comprenant l'appliqué selon l'une quelconque des revendications précédentes
inséré dans un flocage imprimé constitué d'un matériau recyclé, pour créer une combinaison
de textures de surface.
9. Appliqué selon l'une quelconque des revendications précédentes, comprenant des fibres
de flocage d'une pluralité de couleurs et/ou constituées de divers matériaux de flocage
recyclés.
10. Appliqué selon l'une quelconque des revendications précédentes, comprenant en outre
un insert sous la forme d'un appliqué en flocage constitué d'un matériau recyclé.
11. Appliqué selon l'une quelconque des revendications précédentes, dans lequel le flocage
est disposé sur un substrat en textile, le textile formant une structure pour l'impression.
12. Appliqué selon l'une quelconque des revendications 1 à 10, dans lequel le flocage
est disposé sur un textile imprimé par sublimation.
13. Appliqué selon l'une quelconque des revendications 1 à 10, dans lequel le flocage
est disposé sur une feuille métallique, un métal ou une pellicule métallique.
14. Appliqué selon la revendication 13, dans lequel la feuille métallique comprend un
motif holographique.
15. Appliqué selon l'une quelconque des revendications précédentes, dans lequel le flocage
est disposé sur une barrière résistante à la migration ou un composite barrière résistant
à la migration.