[0001] The present invention is concerned with improvements in security articles and papers
such as bank notes, cheques, personal identification documents and the like.
[0002] It is known to partially embed in security articles and papers security elements,
in particular threads, so that they are exposed at one or both sides of the security
paper at intervals along the element, the regions of exposure being referred to as
windows.
Whilst traditional security elements have been narrow and of constant widths, it is
desirable to use wider elements or ones with varying widths, for aesthetic reasons
or because more information/indicia can be applied to the element.
[0003] The process of embedding security elements of varying widths in paper has been described
in
EP-A-0070172. The narrow portions become wholly embedded and the wider portions remain exposed.
One problem that has been identified using this method is that fibres get deposited
around the wider regions in an uneven and unattractive manner. In particular, when
embedding such security elements into security paper, an uneven deposition of paper
fibres along the edges of the elements, where the thread touches the paper, can cause
the windows to appear unsightly and not aesthetically pleasing. It may be possible
to overcome this effect by using air or water jets to clean off excessive fibres but
this is difficult and expensive. The current invention accepts that the fibres will
be deposited and aims to mask their presence.
[0004] Although the unsightly effect of uneven fibre deposition can be limited to acceptable
levels for security elements having a continuous width of less than about 2mm, it
has been found that for element with a varying width, or for elements having widths
greater than about 2mm, this problem can reach an unacceptable level. As a consequence
designs printed onto the security paper over the wider windowed elements may appear
inconsistent and irregular.
[0005] Furthermore, recent approaches to embedding security elements and wide polymeric
bands into paper have suggested binding fibres in discrete regions on the element,
as described in
WO 00/39391. The binding is usually achieved by applying an adhesive onto the thread as a design
or indicia. The approach outlined in
WO 00/39391 is adequate, but the effectiveness of the feature may be reduced by poor paper fibre
deposition.
[0006] The use of matt non-reflective coatings has been described previously in
EP-A-988157. This disclosure describes a security element intended to be wholly non-visible in
reflected light when embedded in windowed security paper.
[0007] However, the exposed part of the security thread described in this document does
not form a visually striking feature of the appearance of the security article in
reflected light.
[0008] A further problem is that there is a continued need to provide ever more secure documents
for an increasing variety of uses to prevent counterfeiting, as counterfeiters have
greater access to more sophisticated reproduction equipment.
[0009] The current invention therefore provides a security substrate comprising a security
element partially embedded therein, such that regions of the security element are
exposed in windows in at least one surface of the substrate, in which a matt non-reflective
coating is applied to at least a part of the security element, characterised in that
the matt non-reflective coating is applied to at least parts of one or both edges
of the element, the regions coated by the matt coating being substantially invisible
to the unaided eye when the substrate is viewed in reflected light.
[0010] It has been found that the aforementioned problems may be overcome by selectively
applying a matt coating to the wider extremities of the security element, which coating
is substantially the same colour as the substrate onto or into which the element is
to be applied or embedded, thereby masking any areas of uneven fibre deposition and
providing further enhancements to the appearance of the security document.
[0011] The present invention enables an additional level of complexity and security to be
built into the security element without compromising the appearance of the thread
once it has been embedded into a security document or the like.
[0012] The matt coating may also have additional machine-detectable functionality such as
luminescence or magnetic properties, though it is preferable to use covert properties,
such as magnetics, as portions of the matt coating will be covered by fibres.
[0013] Although the matt regions themselves are potentially machine-readable, as stated
above, the regions may also conceal other machine-readable materials such as magnetic
materials.
[0014] Furthermore, the matt regions of a security element according to the present invention
are substantially invisible to the unaided eye in reflected light when the security
element is included into a substrate. The matt regions of the security element may
also contain an adhesive to promote adhesion of paper or other fibres within the treated
area. Typically the regions will be coated with a matt non-reflective coating substantially
the same colour as the substrate into which the security element is to be included.
The matt coating may also have additional machine readable or authenticable properties.
[0015] The current invention, seeks to improve and enhance the appearance of the security
element in a windowed substrate in reflected light by masking defects that occur during
the substrate making process. To this end, the matt coating is applied in discreet
regions to enhance and improve visualisation of the element in non-coated areas.
[0016] Preferred embodiments of the present invention will now be described in more detail,
by way of example only, with reference to the following Figures, in which:
Figure 1 shows a plan view of a first embodiment of a security element according to
the present invention having a matt non-reflective coating;
Figure 2 shows a plan view of a second embodiment of a security element according
to the present invention;
Figure 3 shows a plan view of a third embodiment of a security element according to
the present invention;
Figure 4 shows a plan view of a fourth embodiment of a security element according
to the present invention, which has a constant width with two matt non-reflective
areas running along either edge;
Figure 5 shows a plan view of a fifth embodiment of a security element according to
the present invention;
[0017] Figure 1 shows a security element 1 according to a first embodiment of the present
invention for partially embedding into a fibrous substrate, such as a security paper
or the like. The security element 1, which is preferably made from metallised PET,
is of varying width and may be of any desired length. The security element 1 is substantially
elongate in shape and has alternating wide portions 3 and narrow portions 4. The element
1 is preferably symmetrical about a centre axis 5. The extremities of the wide portions
3 are coated with a matt non-reflective coating 2 which is substantially the same
colour as the substrate into which the element 1 is to be embedded. This leaves a
constant strip which is uncoated along the centre of the element 1, which is the width
of the narrow portions 4.
[0018] The security element 1 is partially embedded within the substrate, preferably using
known papermaking or similar apparatus such as cylinder mould or Fourdrinier machines.
The process used is selected to produce a windowed substrate in which portions of
the elements are exposed in windows at one or both surfaces of the substrate. As a
further alternative, a method may be selected which enables a continuous strip of
the element 1 to be exposed on one surface of the substrate, and portions exposed
in windows in the other surface.
[0019] The narrow portions 4 of the element are typically less than 2mm in width. Typically
the wide portion 3 is at least 1mm wider than the narrow portion 4. When embedded
in a windowed substrate such as a security paper, the security element 1 will appear
to be of a constant width in the windows when viewed in reflection. When viewed in
transmission, the viewer will be able to see the overall shape of the element 1 including
the coated parts of the wider portions 3 of the element 1 due to their increased opacity
in contrast to the surrounding substrate.
[0020] Figure 2 shows an alternative embodiment of a security element 1 according to the
present invention. In this embodiment, the security element 1 has been die cut such
that the edges 6 are undulating. Security elements 1 with curved edges are harder
to counterfeit and may also mirror a design applied to a security document or other
article made from the substrate into which the security element 1 is embedded. Such
a design may be created by demetallisation, diffractive effects or printed using inks.
[0021] When viewed in reflective light, the security element 1 will appear as a visible
security element that has a width variation that is less then that of the whole element
and may be designed so as to give the appearance of a security of constant width.
In transmissive light, the whole element 1 will be seen.
[0022] Figure 3 shows a further embodiment of the present invention. In this embodiment,
the edges 6 of the security element 1 are castellated. The wide portions 3 are only
partially coated with the matt non-reflective coating 2 at their very extremities,
leaving the majority of the wide portions 3 and all of the narrow portions 4 uncoated.
[0023] When viewed in reflective light, the security element 1 will appear to be of constant
width. In transmissive light, the whole element 1 will be seen.
[0024] Figure 4 shows how the current invention may be employed in respect of an element
having a constant width. It has been found that, when embedding elements of widths
greater than 2mm, problems can occur with poor fibre deposition along the edges 6
of the element. Again this can be unsightly and is certainly not desirable. The matt
non-reflective coating is therefore used to mask this problem and is applied to the
edges 6 of the security element 1. Although some of the width of the element is "lost"
under the coating 2, the area of the element under the coating 2 may be used for non-visual
information such as magnetic coding as described in
EP-A-0516790.
[0025] In reflective light, only the uncoated portion of the security element 1 will be
visible, whereas the whole element will be visible in transmission.
[0026] Figure 5 shows another embodiment of the present invention in which a security element
1 has a constant width. In this embodiment, a matt non-reflective coating 2 is applied
in a manner such that the uncoated section of the element 1 has undulating edges.
When such a security element 1 is embedded in a windowed substrate it will appear
to have a varying width when viewed in reflection. However, in transmission, the entire
shape of the security element 1 will be visible. This effect is both aesthetically
pleasing and results in a security element 1 that is harder to counterfeit than standard
elements, particularly if elaborate patterns are used along either edge 6. The coating
2 can be applied in patterns which contrast or complement demetallised, holographic
or printed features on the security document or article or to provide visual continuity.
[0027] The matt non-reflective coatings may be combined in register with demetallised regions
7, thus producing a visually striking effect and also an enhancement in the security
of the final document, due to the added complexity of the security element.
[0028] It would also be appreciated by a person skilled in the art that a matt non-reflective
coating 2 may be applied in accordance with the present insertion on one side of the
security element only and the other side of the security element may remain uncoated
or may be provided with a full coating or, alternatively, a partial coating may be
applied on both sides of the security element to prevent thread turnover from being
apparent to the user. Similarly, the security element 1 need not be symmetrical about
the centre axis 5.
[0029] Furthermore, the security element to which the present invention refers may be in
the form of a security thread or equally may be a planchette.
[0030] The security element can be embedded in a security substrate used to make any security
document, such as a banknote, Passport, voucher, passport, bond, certificate and the
like.
[0031] Although several specific embodiments of the present invention have been described
above, the features described may be used in any combination.
1. A security substrate comprising a security element (1) partially embedded therein,
such that regions of the security element (1) are exposed in windows in at least one
surface of the substrate, said security element (1) having at least a coated portion
in which a matt non-reflective coating(2) is applied to at least a part of the security
element (1) and an uncoated portion, characterised in that the matt non-reflective coating (2) is applied to one or both edges of the element
(1), wherein only the uncoated portion of the element (1) is visible when the substrate
is viewed in reflected light, and when the substrate is viewed in transmitted light
the overall shape of the security element (1) is visible.
2. A security substrate as claimed in claim 1 wherein the security element (1) is an
elongate element.
3. A security substrate as claimed in claim 1 or claim 2 wherein the security element
(1) is of constant width.
4. A security substrate as claimed in any one of claims 1 or 2 wherein the security element
(1) is of varying width and has alternating narrow portions (4) and wide portions
(3).
5. A security substrate as claimed in claim 4 wherein the width of the narrow portions
(4) of the security element (1) is no greater than 2mm.
6. A security substrate as claimed in claim 4 or claim 5 wherein the width of the wide
portions (3) of the security element (1) is at least 1mm wider than the width of the
narrow portions (4).
7. A security substrate as claimed in any one of claims 4 to 6 wherein the narrow portions
(4) are uncoated and the matt non-reflective coating (2) is applied to parts of the
edges of the wide portions (3).
1. Sicherheitssubstrat, das ein zum Teil darin eingebettetes Sicherheitselement (1) aufweist,
sodass Bereiche des Sicherheitselements (1) in Fenstern in zumindest einer Oberfläche
des Substrats freiliegen, wobei das Sicherheitselement (1) zumindest einen beschichteten
Abschnitt, in dem eine matte, nicht reflektierende Beschichtung (2) auf zumindest
einen Teil des Sicherheitselements (1) aufgebracht ist, und einen nicht beschichteten
Abschnitt aufweist, dadurch gekennzeichnet, dass die matte, nicht reflektierende Beschichtung (2) auf eine oder beide Kanten des Elements
(1) aufgetragen wurde, wobei nur der nicht beschichtete Abschnitt des Elements (1)
sichtbar ist, wenn das Substrat im Auflicht betrachtet wird, und die gesamte Form
des Sicherheitselements (1) sichtbar ist, wenn das Substrat im Durchlicht betrachtet
wird.
2. Sicherheitssubstrat nach Anspruch 1, wobei das Sicherheitselement (1) ein längliches
Element ist.
3. Sicherheitssubstrat nach Anspruch 1 oder Anspruch 2, wobei das Sicherheitselement
(1) eine konstante Breite aufweist.
4. Sicherheitssubstrat nach Anspruch 1 oder Anspruch 2, wobei die Breite des Sicherheitselements
(1) variiert und das Sicherheitselement (1) abwechselnd schmale Abschnitte (4) und
breite Abschnitte (3) aufweist.
5. Sicherheitssubstrat nach Anspruch 4, wobei die Breite der schmalen Abschnitte (4)
des Sicherheitselements (1) nicht größer als 2 mm ist.
6. Sicherheitssubstrat nach Anspruch 4 oder Anspruch 5, wobei die Breite der breiten
Abschnitte (3) des Sicherheitselements (1) zumindest 1 mm größer ist die Breite der
schmalen Abschnitte (4).
7. Sicherheitssubstrat nach einem der Ansprüche 4 bis 6, wobei die schmalen Abschnitte
(4) nicht beschichtet sind und die matte, nicht reflektierende Beschichtung (2) auf
Teile der Kanten der breiten Abschnitte (3) aufgebracht wurde.
1. Substrat de sécurité comprenant un élément de sécurité (1) partiellement enrobé dans
celui-ci, de telle sorte que les régions de l'élément de sécurité (1) sont exposées
dans des fenêtres dans au moins une surface du substrat, ledit élément de sécurité
(1) ayant au moins une partie revêtue dans laquelle un revêtement mat non réfléchissant
(2) est appliqué sur au moins une partie de l'élément de sécurité (1) et une partie
non revêtue, caractérisé en ce que le revêtement mat non réfléchissant (2) est appliqué sur un ou les deux bords de
l'élément de sécurité (1), dans lequel seule la partie non revêtue de l'élément de
sécurité (1) est visible lorsque le substrat est vu dans une lumière réfléchie, et
lorsque le substrat est vu dans une lumière transmise, la forme globale de l'élément
de sécurité (1) est visible.
2. Substrat de sécurité selon la revendication 1, dans lequel l'élément de sécurité (1)
est un élément allongé.
3. Substrat de sécurité selon la revendication 1 ou 2, dans lequel l'élément de sécurité
(1) a une largeur constante.
4. Substrat de sécurité selon l'une quelconque des revendications 1 ou 2, dans lequel
l'élément de sécurité (1) est de largeur variable et a une alternance de parties étroites
(4) et de parties larges (3).
5. Substrat de sécurité selon la revendication 4, dans lequel la largeur des parties
étroites (4) de l'élément de sécurité (1) ne dépasse pas 2 mm.
6. Substrat de sécurité selon la revendication 4 ou 5, dans lequel la largeur des parties
larges (3) de l'élément de sécurité (1) est d'au moins 1 mm plus large que la largeur
des parties étroites (4).
7. Substrat de sécurité selon l'une quelconque des revendications 4 à 6, dans lequel
les parties étroites (4) sont non revêtues et le revêtement mat non réfléchissant
(2) est appliqué sur des parties des bords des parties larges (3).