Title of Invention

SECURITY PAPER

Abstract There is disclosed a document of value, such as a bank note, check, passport, ID card or the like, made of paper and/or at least partly of polymer fibers, characterized in that only in the margin area of the document of value at least one edge area is provided at least partly with a reinforcement to increase the initial tear resistance.
Full Text [0001] This invention relates to documents of value, such as bank notes, checks,
passports, ID cards or the like with increased fitness for circulation, to a security paper
for producing them, and to a method for producing said security paper and such docu-
ments of value.
[0002] Bank notes are usually made of so-called security papers consisting of cotton
fibers and having special security features, such as intaglio printed motifs, hologram
patches and watermarks. A bank note's period of circulation depends on the stress.
Certain denominations are preferably used in trade and thus have a smaller period of
circulation due to the stronger load through environmental influences. Environmental
influences are for example attack by different chemical substances, such as perspira-
tion, fat, oil, lyes, acids, etc. Particularly smaller note values are subject to increased
wear. The main cause of the restricted period of circulation for bank notes is consid-
ered to be (besides premature soiling) initial tear of the bank note in the edge area.
[0003] US 3 661 700 describes a coated, reinforced paper produced by coating a
support comprising a net of a longitudinally oriented polypropylene film with a mix-
ture of cellulose-containing fibers and/or other fibers and mineral and/or organic pig-
ments or fillers, and binders. Since me net is used for reinforcement, it must have the
same dimensions as the paper to be reinforced therewith.
[0004] British patent no. 3453 describes a paper for bank notes, papers of value and
the like containing a fine, open-mesh fabric with or without figures, patterns or num-
bers. The open-mesh fabric is incorporated into the paper by being passed into the p-
per stock while the stock is being moved over a screen on its way from the tank to the
press rolls, before it reaches the press rolls so that the fabric can be pressed into the
flowable paper stock. In this case, too, the fabric has the same dimensions as the paper.
[0005] British print 1 219 643 relates to the production of reinforced paper whereby
a netlike or meshed reinforcement material is incorporated by different methods. The
reinforcement material has the same dimensions as the paper.

[0006] AU-PS 488,652, for example, has proposed making bank notes completely
from a plastic substrate. Said plastic substrates do have higher initial tear resistance
than paper substrates but the plastic substrate's tear propagation resistance is extremely
low in comparison with a paper substrate. Further, with a plastic bank note there can
be no use of customary and proved security elements such as portrait watermark and
windowed security thread. Also, the steel gravure printing customary in the bank note
field, which serves as an additional tactile authenticity mark due to the relief arising
from the inking, leads only to a flat, hardly perceptible relief on plastic substrates.
[0007] The above-described prior art security papers moreover share the disadvan-
tage that the incorporation of an all-over net or the use of a plastic substrate causes the
special properties, such as sound and feel, of bank note paper to be completely lost.
[0008] The problem of the invention is therefore to produce a document of value
that has increased initial tear resistance and therefore guarantees a high period of cir-
culation, and that remains unchanged in its other typical properties, such as printabil
ity, sound, color, etc.
[0009] In addition, the problem of the invention is to provide a security paper from
which the inventive documents of value can be produced, and to provide methods for
producing the inventive security papers and documents of value.
[0010] The solution to this problem results from the independent claims. Develop-
ments are the subject matter of subclaims.
[0011] According to the invention, the document of value is provided at least in an
edge area at least partly with a reinforcement that prevents initial tear of the document
of value, or at least distinctly delays it compared to prior art documents of value.
[0012] The term "edge area" refers here not only to the one-dimensionally extended
edge itself of the document of value, but also to the two-dimensionally extended mar-
gin area adjoining the edges. The exact dimensions are to be determined by the expert
in the individual case. The reinforced edge area preferably extends parallel to the
edges of the document of value.

[0013] The kind of security paper from which the documents of value are made is
not bound to any conditions, so that customary security papers made of fibers from
annuals, in particular cotton fibers, can be used, as well as security papers consisting at
least partly of polymer fibers, preferably polyamide fibers.
[0014] The reinforcement can extend only on part of at least one edge area, but also
over the total length of at least one edge area. Preferably, an edge area is provided with
the reinforcement over its total length. Especially preferably, the opposite edge areas,
in particular those in the longitudinal direction of the document of value, are rein-
forced or, if the production method allows, all edge areas of the document of value are
reinforced. The extension of the reinforcement longitudinally and transversely to the
document of value is to be dimensioned so as to guarantee optimal protection of the
edges, on the one hand, but largely retain the special properties of the document of
value, on the other hand.
[0015] The local position of the reinforcement with respect to the edges to be pro-
tected on the document of value can be realized in different ways. Firstly, it is possible
that the reinforcement incorporated in or applied to the paper is flush with the paper
edge. On the other hand, the reinforcement can also be slightly set in from the rein-
forced edge area, i.e. the reinforcement is not flush with the edge of the document of
value but the paper protrudes beyond the reinforcement. The dimension of the paper
portion protruding beyond the reinforcement depends on, among other things, the in-
tended use of the paper, the kind of paper and/or the degree of stress. In any case, the
tolerable width of the protruding paper portion at which the inventive purpose is pre-
served can be determined by the expert. Besides the possibility of setting in the rein-
forcement, the reinforcement can also protrude beyond the edge area to be reinforced
on the security paper. In this case, the reinforced edges of the document of value do
not consist of paper but of another material.
[0016] The flush, set in and projecting variants of the reinforcement can each be
embedded into the paper, i.e. incorporated at least partly into the volume of the docu-
ment of value, or applied to the paper. With the variants applied to the paper, it is still
possible to apply the reinforcement to only one, i.e. the front or back, side of the secu-

rity paper, or to provide the reinforcement on the front and back. If a reinforcement is
provided on the front and back, it can be of identical material, or of course be designed
differently according to the possibilities below.
[0017] Depending on the intended use, the abovementioned possibilities of position-
ing the reinforcement locally within the document of value can also be combined with
each other. For example, a reinforcement set in from the paper edge and embedded
parallel to a first long side of the security element can be combined with a reinforce-
ment projecting over the second long side and applied to the paper. Additionally, the
two short sides of a rectangular document of value could be protected with a flush re-
inforcement incorporated into the paper or applied to the paper. In a preferred em-
bodiment, the reinforcements extend parallel to the longitudinal edge of the document
of value since they can be provided on the security paper by a continuous method.
Other variants that are optionally effected on the finally cut paper are likewise possi-
ble, but more elaborate to produce.
[0018] The manner of reinforcement can be realized in a great number of ways. For
clarity's sake the individual variants will be divided up according to whether the rein-
forcement is applied to the paper or embedded into the paper. A further division results
according to whether the reinforcement is processed on the front and/or back, set in,
flush or projecting and whether there is the possibility of realizing the reinforcement
on one, several, all sides or only on opposite sides.
[0019] The principle of initial tear resistance is fundamentally the same for all vari-
ants described below. The edges endangered e.g. by abutment, bending or active initial
tear on documents of value, in particular bank notes, are protected from excessive me-
chanical stress by a reinforcement. Reinforcements that are flush with the document
edges or even protrude beyond them are especially effective since they completely
shield endangered edges from mechanical attacks. However, the variant with the rein-
forcement set in from the document edge also offers sufficient protection. If someone
attempts to damage a thus equipped bank note, the set in reinforcement offers distinct
resistance to further tear so that the edge area cannot be destroyed. According to the

invention the initial tear resistance can also be limited to the areas where bank notes
are exposed to particular loads, for example in the area of the bend creases.
Variant A) Lacquer-reinforced edge area
[0020] The term "lacquer" refers according to the invention to any liquid, pasty or
viscous substance suitable as a printing ink, coating composition or impregnating ma-
terial. It can be applied by basically any printing or paper coating method or any
method for partly applying or transferring the substance to a substrate such as paper.
[0021] With the lacquer-based reinforcement, the lacquer is applied to or incorpo-
rated into the security paper, e.g. by printing or coating methods. Depending on the
adjustment of the lacquer properties and the type of application method, the paper is
either coated with lacquer superficially in the areas to be reinforced, or actually im-
pregnated with lacquer so that the reinforcement is not only present on the surface but
also incorporated into the volume of the paper.
[0022] The lacquer reinforcement can be processed so that the reinforcement is
flush with the paper edge to be reinforced or else accordingly set in.
[0023] Preferably, the dimensions of the reinforced paper area run parallel to the
edges of the document of value, i.e. the paper has a band- or strip-shaped reinforce-
ment. It is also possible to form the reinforced area in a wedge or trapezoidal shape.
[0024] It is possible to process only one side, i.e. the front or back, of the paper or
of course both sides of the paper.
[0025] In regard to the edge areas to be reinforced, all possibilities are available.
For example, only part of an edge area can be reinforced, or else the edge area over the
total paper length. Likewise, several edge areas can be reinforced regardless of their
position relative to each other. However, the reinforced edge areas are preferably lo-
cated opposite and relate to the long sides of the security paper, so that the greatest
possible edge length and the most stressed edges are protected in the finished docu-
ment of value. The lacquer reinforcement preferably has a width of from about 1 to 20

millimeters, especially preferably from 2 to 10 millimeters, in particular preferably of
5 millimeters.
[0026] The lacquers used can be water or solvent-based, one or multicomponent
systems. Suitable lacquers are based on natural and synthetic binders, styrene butadi-
ene latex, acrylic latex, rubber-containing coating compounds, emulsion polymers,
two-component polyurethanes, dispersions, etc. The lacquer is preferably a curable
resin composition which is for example chemically or radiation curing, preferably UV
curing.
[0027] The lacquer wets the fibers in the surface area of the paper and forms a com-
plete surface film over the fiber. This maximizes cohesion between the individual fi-
bers while at the same time minimizing access of dirt to the fiber as a positive side-
effect.
[0028] If the lacquer is to penetrate into the paper, this can be optimized in a great
variety of ways.
[0029] For example, a laser or corona treatment can obtain a selective opening of
the paper surface so that the applied lacquer penetrates more easily into the paper. The
laser or corona treatment can be controlled so as to adjust any intermediate stage from
slight roughening of the paper surface to perforation of the paper.
[0030] Further, a watermark can be incorporated into the paper in the area of the re-
inforcement. In the area of the watermark the paper has thinner and thicker places. If
the paper is lacquered in this area the lacquer can penetrate into the paper more easily
in the area of the thin places. The thus reinforced area is actually plasticized in the
process. Lacquering can be done on one or both sides. Depending on the nature of the
lacquer and the paper and the desired reinforcement effect, one-sided lacquering might
suffice, since at very thin places in the paper in the watermark area the lacquer can
penetrate optimally or even come through on the other side. Penetration of lacquer is
particularly facilitated in the area of a so-called highlight watermark. This is a water-
mark having especially light areas when viewed in transmitted light, i.e. especially thin
paper areas. Lacquering can be done only in the area of the watermark, but of course

also on the total paper surface, the actual reinforcement effect according to the inven-
tion being strongest in the area of the watermark.
[0031] In the document of value, for example bank note, the watermark can extend
over the whole area of the document or be located along all edges or only on selected
edges or sections of edges. It can be either set in from the edge or flush with the edge.
[0032] The lacquer is knife-coated or printed onto the security paper after its pro-
duction, i.e. onto the paper web or paper sheet. Printing of the lacquer is preferably
done by screen printing or the flexographic process. This can be done directly subse-
quent to papermaking in the paper machine or in a separate operation, for example di-
rectly before or after cutting and/or printing of the security paper.
[0033] Then the inventive security paper is printed and possibly further processed in
accordance with the paper of value to be produced. The lacquer must be applied to the
security paper, and the thus treated security paper cut, such that the lacquer reinforce-.
ment is positioned at the desired places in the document of value to be produced.
[0034] If a document of value with reinforcements flush with the longitudinal edges
is desired, the lacquer is thus applied to the security paper in parallel strips, the strips
being accordingly wide and spaced apart. Cutting of the security paper is then done
e.g. along the center lines of the lacquer strips and at right angles thereto.
[0035] If a document of value is to be produced whose reinforcements are set in
from its edges, parallel extending lacquer strips must likewise be applied to the paper,
the lacquer strips being spaced apart alternately widely and narrowly. The wider spac-
ing specifies the width of the document of value, the narrower spacing the width of the
paper strip protruding over the reinforcement. Cutting is done along the center line
extending between the narrowly spaced strips and at right angles thereto.
[0036] According to a preferred embodiment, the lacquer additionally contains in
low concentration at least one additive with a visually and/or machine detectable
physical property. The additive can have for example magnetic, electroconductive,
luminescent, diffractive, light-polarizing or light-interfering properties. For example, it

can comprise interference layer or liquid crystal pigments or other special-effect pig-
ments, such as lustrous metallic effect coloring pigments, etc., or luminescent sub-
stances that are excitable with UV light and emit in the visible spectral region. In the
case of a machine check, however, luminescent substances emitting in the invisible
spectral region, preferably in the IR spectral region, can also be used. Photochromic or
thermochromic additives are likewise conceivable.
[0037] The additive can be present uniformly distributed throughout the coating or
be applied in the form of patterns. For producing the patterns, a composition in the
form of a certain pattern is printed on in a first step, said composition containing in
small quantities in the manner of a doping (less than 1 wt%) at least one additive with
at least one visually and/or machine detectable physical property. The remaining part
of the surface of the paper is provided only in a second step, in register to the first pat-
tern, with the same composition but not containing the detectable additive.
[0038] Instead of physically detectable substances, however, chemically reacting
additives can also be used. For example, a component of a color reaction system can
be added to the lacquer. When the second component of the color reaction system is
applied at a later time, a colored area, pattern, writing or the like becomes visible on
the security paper. This can serve as an authenticity feature or also as a cancellation
mark for a check, ticket or the like.
[0039] The use of a plurality of additives and/or variation of the concentration of
one or more additives permits any desired codings, for example in the form of a bar
code, to be produced very simply on the security paper. Said coding can for example
constitute an independent additional security feature, or serve as a reference feature for
other data already provided on the security paper.
[0040] According to the inventive principle, a plurality of different codings can of
course also be produced. For example, the lacquers containing the particular additive
are applied simultaneously or successively to the paper in the form of the desired cod-
ings. Alternatively, the different codings can be disposed on different surfaces of the
security paper. Double-sided coating with the same additive is of course likewise pos-
sible.

[0041] In an especially preferred embodiment, the lacquer is transparent or adapted
to the color of the security paper so that the reinforced area cannot, or hardly, be per-
ceived with the naked eye.
Variant B) Foil-reinforced edge area
[0042] With the foil material based reinforcement, the foil material is at least partly
applied to the paper or embedded into the paper.
[0043] The foil material can be processed so that the reinforcement is flush with the
paper edge to be reinforced or is accordingly set in. In this embodiment there is also
the possibility that the foil material protrudes over the edge to be reinforced on the pa-
per.
[0044] In the variant with foil material applied to the paper, the front and/or back of
the paper can be equipped with foil material.
[0045] In regard to the edge areas to be reinforced, there are different possibilities
depending on the production method. If the reinforcements are laminated to the paper,
part of an edge area can be reinforced, for example, or else the edge area over the total
paper length. A plurality of edge areas can likewise be reinforced regardless of their
position relative to each other. However, the reinforced edge areas are preferably lo-
cated opposite and relate to the long sides of the document of value, so that the great-
est possible edge length and most stressed edges are protected in the finished docu-
ment of value.
[0046] If the foil reinforcements are embedded into the paper, this is done during
papermaking. The security paper is usually made on a cylinder paper machine, to
which foil material is supplied in the area of the stock feed so that foil material is in-
corporated into the sheet during sheet formation. The production method can be con-
trolled so that foil material is embedded completely into the paper, designed as a win-
dowed thread or incorporated in the form of a strip separating the individual paper
strips. To guarantee improved cohesion between paper and foil material, the foil mate-
rial can additionally be adhesive-coated. When the finished paper web is cut, cutting

can be controlled so that the foil material is flush with the paper edge, set in or projects
over the paper edge in the finished document of value. If band-shaped foil material,
e.g. strip-shaped material, is incorporated, the foil material normally travels parallel
with the fiber direction of the paper. Consequently, one or at most two edge areas,
namely the parallel edge areas, will have the foil reinforcement depending on cut in
the long grain or the short grain. To achieve reinforcements embedded into the paper
in all edge areas in the finished paper of value, e.g. bank note, grid-shaped reinforce-
ments will preferably be embedded into the security paper. Grid-shaped reinforce-
ments refer to flat shaped articles that are comparable with a large-meshed grid, the
mesh width of said grid corresponding e.g. approximately to the size of the paper of
value. The grid itself is constructed for example of strip-shaped foil material, the indi-
vidual strips extending parallel and perpendicular to each other.
[0047] Preferably, the dimensions of the reinforced paper area run parallel to the
edges of the security paper, i.e. the paper has a band- or strip-shaped reinforcement.
[0048] Foil material according to the invention refers to any suitable material that
increases the initial tear resistance of the document of value in the edge area. The term
"foil material" is not intended to mean any limitation to plastic materials, although
these are preferably used. Rather, this term is intended to indicate that the foil material
should be a relatively thin material so that the appearance of the security paper or
document of value and its properties, in particular in regard to its processibility, are not
negatively affected. However, the use of thicker material is not excluded in general.
[0049] The foil material is preferably tear-resistant material, preferably foil made of
plastic, metal or a plastic-metal laminate. Depending on the manner of use, the foil
material is designed to be transparent or adapted to the color of the security paper or
document of value so that, the foil material is as inconspicuous as possible or, as far as
possible, practically imperceptible with the naked eye. For special uses, in particular in
embodiments where the reinforcement is visible on the surface of the security paper,
the foil material is optionally equipped with further security features, such as holo-
grams, Kinegrams® or other diffraction structures, or printing inks containing interfer-
ence layer or liquid crystal pigments or other special-effect pigments, such as lustrous

metallic effect coloring pigments, etc. Additionally, the transitions from foil material
to paper can be overprinted with a printed pattern, in particular by intaglio printing.
Additionally or alternatively, the foil material can be equipped with the additives de-
scribed under variant A).
[0050] If a pure plastic thread is involved the foil material used is preferably polyes-
ter; as a metal foil aluminum-coated plastic foil is preferred.
[0051] In a further variant, the foil reinforcements consist of one or more layers
transferred by the transfer method. Preferably, these are reinforcements with embossed
holograms consisting substantially of an embossed plastic layer, a metal layer and an
adhesive layer.
[0052] The foil material can likewise involve netlike structures. Said netlike struc-
tures can consist of natural, polymer and/or glass fibers, the fibers preferably being
welded together, glued, interwoven or plaited. If desired, the structures can be accord-
ingly colored. This can be done by printing, spraying or vapor-deposition, in particular
in a vacuum, preferably using suitable masks. The polymer fibers can be produced
with a diameter of a few microns. A fiber diameter between about 1 micron and about
40 microns is preferred.
[0053] For equipping with additional security features and additives, the possibili-
ties described under variant A) and those described for the above-described foil mate-
rial apply to the same degree.
Variant C) Special fiber reinforced edge area
[0054] A further possibility of reinforcing edge areas of documents of value is to
incorporate special fibers in the endangered areas during papermaking.
[0055] i) Firstly, these are fibers having increased tear strength in comparison with
the fibers used for the basic substrate, without any further treatment of the
fibers being necessary before or after incorporation into the paper pulp. This
does not exclude additional pre- or aftertreatment, however. These special
fibers are in particular synthetic fibers, or synthetic fibers incorporated into

the paper web as endless threads, or fibers of especially long form with a
length of several millimeters that are incorporated into the paper pulp. It is of
course also possible to use synthetic fibers of endless form and mixtures of
endless synthetic fibers with fibers of long form.
The fiber reinforcement can be incorporated into the security paper so that
the reinforcement is flush with the paper edge to be reinforced, set in, or pro-
jects accordingly in the finished document of value.
Preferably, the dimensions of the reinforced paper area run parallel to the
edges of the security paper, i.e. the paper has a band- or strip-shaped rein-
forcement. The spatial arrangement of the reinforcement and the cut of the
security paper are effected according to a similar principle as the designs de-
scribed under variant A).
The special fibers can be supplied to the paper pulp e.g. in the area of the
headbox via a separate inlet. On the one hand, the inflow of special fibers
can be regulated so that the paper pulp containing the original "normal" fi-
bers is enriched with the special fibers in the area of the inflow; on the other
hand, the special fibers can replace the "normal" fibers by 100% in the area
of the inflow.
ii) Secondly, the special fibers are fibers that are preprocessed by beating
such that a dense, strong sheet with increased initial tear resistance is formed
in the area where said fibers are used, during the actual papermaking. For
this purpose, wet beating can be performed so that the fibers are crushed and
defibrillated. This causes hydration of the fiber and enlargement of the spe-
cific surface. The contact surfaces of the fibers within the sheet increase
considerably so that hydrogen bridges can form that cause the strength of the
fiber structure. Alternatively, chemical beating of the fibers can be effected,
i.e. additives are used that act as a lubricant during beating, increase the con-
tact area between fibers and produce intimate contact between fibers and fi-
brils on the molecular scale. The choice of beating, of the degree of beating
and of the duration of beating and the specific conditions for increasing the

strength of the fibrous composite are to be adapted to the particular fibers
used, and determined by the expert.
The thus pretreated fibers can be incorporated into the security paper locally
and technically like the special fibers under i). The special fibers can consist
of the same kind of fiber as used for the basic substrate or be different there-
from. If cotton fibers are used, for example, the total document of value can
consist of cotton fibers but in the area of the reinforcement there are cotton
fibers that have been subjected to special beating.
iii) Further, the special fibers are fibers that are subjected to aftertreatment
after being incorporated into the paper during its production, and acquire in-
creased tear strength through said aftertreatment. The fibers can be e.g. ther-
moplastic fibers that are fused together by the action of heat. However, any
other chemical or physical process can be used that causes crosslinking,
fusion, welding, gluing, etc., of the fibers used. For example, the desired re-
inforcement can be achieved by gluing, the action of solvents or the trigger-
ing of chemical crosslinking reactions.
The fibers requiring aftertreatment can be incorporated into the security pa-
per locally and technically like the special fibers under i). Besides the possi-
bility of incorporating the fibers into the paper only in the area of the rein-
forcement, the security paper can be equipped with said special fibers over
the whole area, the aftertreatment being done only locally in the margin ar-
eas to be reinforced. Whole-area treatment has the great disadvantage over
such locally limited treatment that the paper to be processed is exposed to
external influences, such as heat treatment by a heated roller, in its whole
surface and thus strongly impaired over the whole area. In contrast, only the
margin area is treated according to the invention, thereby guaranteeing effec-
tive initial tear resistance while saving energy, chemicals, time and thus
costs. If, for example, a paper web is present with special fibers incorporated
in a strip shape, which can be crosslinked thermally, the required thermal
energy can be transferred to the paper easily likewise in a strip shape using

an accordingly narrow heated roller, a laser, an infrared source, etc., after
papermaking
[0063] The special fibers under i) to iii) can additionally be equipped with the addi-
tives described under variant A), it being possible to incorporate a coding into the edge
area of the document of value by a combination of additives. For example, a separate
feed of differently equipped fibers to the paper pulp could produce two strips located
side by side and running parallel in an edge area. If the fibers are fibers with e.g. dif-
ferent luminescent properties, a kind of simple bar code can be generated in this way.
It is also possible to supplement the coding via different width of the strips. The spe-
cial fibers under i) to iii) can moreover be used not only singly but also in any con-
ceivable combination or mixture.
Variant D) Further components to promote durability
[0064] In addition to reinforcing the edge areas, the durability of the security paper
can be increased further by performing the following measures singly or in combina-
tion:
[0065] i) In the production of security paper, in particular bank note paper, the basic
substrate used is customarily a paper with a weight of 90 to 95 grams per
square meter. In the inventive security papers a thicker paper can instead be
used with e.g. 100 grams per square meter. The higher weight per unit area
and resulting higher thickness of the paper already causes a reinforcement of
the security paper to be obtained, without any substantial impairment of the
properties desired in particular for bank notes.
[0066] ii) The use of double-sided steel printing on the security paper increases the
compression and thus stability of the paper substrate.
[0067] iii) The security paper, but above all the printed security paper, can addition-
ally be lacquered to protect the print and the paper from soiling. The lacquer
layer is preferably coordinated in its composition with the inventive lacquer
layer, if present, to permit a good bond of the two layers. The bond can pos-

sibly be improved further by an additional crosslinking step. This can be ef-
fected by the action of heat or irradiation (e.g. with UV radiation).
[0068] Variants A) to D) can be used singly but also in any desired combination for
increasing durability, in particular initial tear strength.
[0069] The inventive security paper can for example also be used advantageously
for producing ID cards and passports. Since it has increased tear resistance and dirt
resistance, the usual lamination with plastic foils might be omitted. This eliminates an
elaborate additional step, thereby obtaining a considerable time and cost saving.
[0070] Due to the increased initial tear strength along with high tear propagation re-
sistance of paper, the present invention provides an extremely durable security paper.
Looking at the European and North American regions and disregarding tropical zones,
the period of circulation of an inventive bank note may be more than three times the
period of circulation of a conventional bank note.
[0071] Hereinafter some examples of the inventive security paper will be explained:
Example 1 Foil-reinforced edge area (net-shaped structure)
[0072] A square grid cloth of 5 micron thick polypropylene fibers with a mesh
width of 0.1 millimeters is incorporated into the paper material in the form of bands
spaced 10 centimeters apart and with all-over cover during the dipping process in the
production of bank note paper. The polypropylene fibers are colored in a color close to
the paper.
Example 2 Foil-reinforced edge area (strip-shaped plastic foil)
[0073] 3 millimeter wide and 15 micron thick transparent polyester strips are sup-
plied to the drum of a cylinder paper machine alternately spaced 6 and 1 centimeters
so that the foil strips are embedded into the paper during sheet formation. Subsequent
to completion of the paper web, the latter is cut in the middle between the 1 centimeter
spaced foil strips and at right angles thereto at a spacing of 12 centimeters. The result

is a 12 centimeter by 7 centimeter document of value with two foil reinforcements ex-
tending parallel to the longitudinal edges and set in 0.5 centimeters therefrom.
Example 3 Synthetic fiber reinforced edge area
[0074] Special fibers, namely polyamide fibers, and cotton fibers are processed in a
Willcox plant so as to produce a paper web having strips with a width of 2 centimeters
and extending at a spacing of 6 centimeters, and the fiber composition of said strips is
not 100% cotton fibers but 50% cotton fibers and 50% synthetic fibers. In the remain-
ing area of the paper web there are 100% cotton fibers. The paper web is optionally
printed after production and cut so as to yield bank notes with a length of 16 centime-
ters and a width of 8 centimeters, the polymer fiber reinforcement extending along the
longitudinal edges of the bank note and flush therewith.
[0075] Further advantages and embodiments will be explained in more detail with
reference to the figures. It is pointed out that the figures show the layer structure of the
inventive security paper or document of value only schematically.
[0076] Fig. 1 shows an inventive document of value in a front view,
[0077] Figs. 2 and 3 show a section along A-A through the inventive document of
value according to Fig. 1,
[0078] Figs. 4 and 5 show further embodiments of inventive documents of value in
a front view,
[0079] Fig. 6a shows a front view of a detail of an inventive security paper,
[0080] Fig. 6b shows a section along B-B through the inventive security paper ac-
cording to Fig. 6a,
[0081] Fig. 7a shows a front view of a detail of an inventive security paper,
[0082] Fig. 7b shows a section along B-B through the inventive security paper ac-
cording to Fig. 7a,
[0083] Fig. 8a shows a front view of a detail of an inventive security paper,

[0084] Fig. 8b shows a section along B-B through the inventive security paper ac-
cording to Fig. 8a,
[0085] Fig. 9 shows the schematic representation of a two cylinder paper machine
for producing a security paper.
[0086] Fig. 1 shows inventive document of value 1. Such a document of value is
usually made of cotton fibers or other fibers from annuals. For some applications,
however, it can be expedient to replace part of said natural fibers by polymer fibers, in
particular polyamide fibers. During production of security paper 7 inventive rein-
forcements 3a, 3b shown in Fig. 1 are already embedded into the paper. If desired, in-
dividual security elements, for example portrait watermark 2, are additionally incorpo-
rated during production. Reinforcements 3a, 3b can be any of variants A) to C). In the
present case, document of value 1 was provided with flush reinforcement 3a at the top
edge and with set in reinforcement 3b at the bottom edge. However, the reinforce-
ments are preferably formed symmetrically, i.e. either both reinforcements set in or .
aligned flush with the edge of the document of value. Width d of the reinforcements
depends on, among other things, the material to be processed for the reinforcements
and the desired purpose. The more tear-resistant the material for the reinforcements is,
the narrower the reinforcement can be. With use of plastic strips, in particular polyes-
ter, width d ranges preferably from 1 to 10 millimeters, especially preferably from 2 to
3 millimeters. Distance x of the reinforcement from the edge of the document of value
likewise depends on the materials used. Preferably, "x" ranges between 0 and 5 milli-
meters, whereby values of 0 and 2 millimeters are especially preferred. The values for
"d" and "x" are in any case to be selected so as to achieve the inventive purpose,
namely reinforcement of the edge areas. These values can be determined by the expert
by suitable tests.
[0087] Fig. 2 shows a section through inventive document of value 1 along dash-
dotted line A-A in Fig. 1. The embodiments of inventive reinforcements 3a, 3b shown
in Fig. 2 are lacquer reinforcements that have been knife-coated or printed all over in
two strip-shaped areas of document of value 1. Reinforcement 3a has been applied to
security paper 7 on both sides. The lacquer of reinforcement 3b is additionally doped

with additive 4 which is visually and/or machine testable. The additive can be for ex-
ample a luminescent substance transparent under normal lighting that emits in the visi-
ble spectral region when irradiated with UV light and thus shows an intensive color
tone. In this case the luminescence is only visible under UV lighting. However, a plu-
rality of additives can also be provided that are individually detectable. The mixture
ratio of the additives can serve e.g. to produce a coding.
[0088] Fig. 3 shows a section through document of value 1 comparable to that in
Fig. 1, along dash-dotted line A-A. The embodiments of inventive reinforcements 3a,
3b shown in Fig. 3 are foil reinforcements that are applied, e.g. glued, in two strip-
shaped areas of document of value 1. Reinforcement 3a has been applied to security
paper 7 on both sides in such a way that foil material protrudes over the edge of the
finished document of value. Width y of the protruding foil and width z of the overlap
depend on the reinforcement materials used. The values for "y" are advantageously
within the range of about 0.1 to 10 millimeters, the value for "z" should be at least
about 1 millimeter, preferably 5 millimeters. The foil material in Fig. 3 is a plastic foil
of polyester. Width d of reinforcement 3a is 7 millimeters with "z" equal to 5 millime-
ters and "y" equal to 2 millimeters. Width d of reinforcement 3b is 3 millimeters with
"x" equal to 2 millimeters. The foil material can additionally be doped with additive 4
which is visually and/or machine testable. For example, the foil can also be equipped
with additional optical security elements such as holograms, Kinegrams® or other dif-
fraction structures, but also printing inks containing interference layer or liquid crystal
pigments or other special-effect pigments, such as lustrous metallic effect coloring
pigments, iridescent pigments, etc.
[0089] Fig. 4 shows inventive document of value 1 into which strip-shaped foil ma-
terial 5 was already incorporated during papermaking. Foil material 5 is quasi embed-
ded into the paper, so that it is embedded completely into the paper pulp in the areas
marked by dash lines. This strip can be provided with any machine-readable security
features, such as an electroconductive, metallic layer or the like. However, it is pref-
erably a polyester band which is of transparent design or given the color of security
paper 7 or document of value 1 so that it is preferably hardly or not at all visible. The
foil strips of this embodiment are about 2 to 3 millimeters wide (d) and set in about 2

to 3 millimeters (x) from the edge of the document of value. The thickness of the foil
ranges from about 10 to 50 microns, and is preferably about 15 microns.
[0090] Fig. 5 shows inventive document of value 1 into which polymer fibers 6
were already incorporated during papermaking so as to be flush with the edge of the
document of value. The polymer fibers are polypropylene fibers. Width d of the rein-
forcement by polymer fibers advantageously has a value between 0.5 and 10 millime-
ters.
[0091] Fig. 6a shows a detail of inventive security paper web 7 as used for example
for producing bank notes. Strip-shaped reinforcements 8 were applied to paper web 7
on the front side of the paper web after papermaking. Reinforcements 8 can be for ex-
ample laminated-on plastic foils, a printed-on lacquer layer or embedded special fi-
bers. The width of the reinforcements on the paper web must be twice as great, i.e. 2 x
d, as width d desired in the finally cut note. Number I designates the area where rein-
forcements overlap with paper, and number II designates the area where paper is pres-
ent without reinforcement. Cutting paper web 7 along the dashed lines yields e.g. bank
notes having reinforcements running parallel along the longitudinal edges and flush
therewith.
[0092] Fig. 6b shows a section through inventive security paper web 7 along dash-
dotted line B-B in Fig. 6a.
[0093] Fig. 7a shows a detail of inventive security paper web 7 as used for example
for producing bank notes. Strip-shaped reinforcements 9 were embedded into paper
web 7 during papermaking. Reinforcements 9 can be for example strip-shaped plastic
foils with e.g. perforated edges or net-shaped structures. The width of the reinforce-
ments on the paper web must be twice as great, i.e. 2 x d, as width d desired in the f-
nally cut note. Number I designates the area where reinforcements are embedded into
paper, number II designates the area where paper is present without reinforcement, and
number III designates the area where only reinforcement is present. Cutting paper web
7 along the dashed lines yields e.g. bank notes having reinforcements running parallel
along the long sides and protruding over the longitudinal edges of the bank note.

[0094] Fig. 7b shows a section through inventive security paper web 7 along dash-
dotted line B-B in Fig. 7a.
[0095] Fig. 8a shows a detail of inventive security paper web 7 as used for example
for producing bank notes. Grid-shaped reinforcement 18 was already embedded into
paper web 7 during papermaking, so that it is embedded completely into the paper
pulp in the areas shown by dotted lines. Grid-shaped reinforcement 18 can consist e.g.
of above-described foil material, preferably of plastic foils or netlike structures. The
grid-shaped reinforcement can be provided with any machine-readable security fea-
tures, such as an electroconductive, metallic layer or the like. The width of the rein-
forcements on the paper web must be twice as great, i.e. 2 x d, as width d desired in
the finally cut note. Number I designates the area where reinforcements are embedded
into paper, number II designates the area where paper is present without reinforce-
ment. Cutting paper web 7 along the dashed lines yields e.g. bank notes having rei-
forcements running along all sides, i.e. the longitudinal and transverse sides, and flush
therewith.
[0096] Fig. 8b shows a section through inventive security paper web 7 along dash-
dotted line B-B in Fig. 8a.
[0097] Fig. 9 shows the schematic representation of a two cylinder paper machine
as used for producing the inventive security paper. The plant comprises two cylinder
paper machines 10 and 11. Paper web 13 is formed in paper machine 10 on cylinder
12. Paper machine 11 is used to make second paper web 14 simultaneously with pro-
duction of paper web 13. Paper webs 13 and 14 are removed from cylinders 12, 16
using so-called "pickup felts" 15, interconnected in the area of pressure roll 17 and
supplied together to the further processing stations (calender, paper sizing, etc.) of the
manufacturing plant. To produce the security paper shown in Figs. 8a and 8b, grid-
shaped foil material 18 is additionally supplied between paper webs 13 and 14 in the
area of pressure roll 17, so that grid-shaped foil material 18 is embedded into the fin-
ished security paper.

WE CLAIM:
1. A document of value, such as a bank note, check, passport, ID card or the like,
made of paper and/or at least partly of polymer fibers, characterized in that only in the
margin area of the document of value at least one edge area is provided at least partly
with a reinforcement to increase the initial tear resistance.
2. A document of value as claimed in claim 1, wherein the reinforcement is applied
to the front and/or back of the document of value.
3. A document of value as claimed in claim 1, wherein the reinforcement is at least
partly incorporated into the volume of the document of value.
4. A document of value as claimed in any of claims 1 to 3, wherein the
reinforcement comprises special fibers.
5. A document of value as claimed in claim 4, wherein the special fibers comprise
synthetic fibers and/or long fibers and/or wet beaten fibers and/or after-treated fibers.
6. A document of value as claimed in any of claims 1 to 3, wherein the
reinforcement comprises a lacquer.
7. A document of value as claimed in claim 6, wherein the lacquer is printed on by
screen printing.
8. A document of value as claimed in any of claims 1 to 3, wherein the
reinforcement comprises a foil material.
9. A document of value as claimed in claim 8, wherein the foil material comprises
polyester, metal, polyester-metal laminate or another tear-resistant material
10. A document of value as claimed in claim 8 or 9, wherein the foil material
comprises a 15 micron thick polyester foil.

11. A document of value as claimed in any of claims 8 to 10, wherein the foil material
has a width of from 1 to 4 millimeters, preferably 2 or 3 millimeters.
12. A document of value as claimed in claim 8, wherein the reinforcement is a net-
shaped structure.
13. A document of value as claimed in claim 12, wherein the net-shaped structure
comprises natural, synthetic and/or glass fibers.
14. A document of value as claimed in any of claims 1 to 13, wherein the
reinforcement is grid-shaped or strip-shaped and extends parallel to the edge of the
document of value.
15. A document of value as claimed in any of claims 1 to 14, wherein the
reinforcement protrudes over the edge of the security paper, is flush with the edge or set
in from the edge.
16. A document of value as claimed in any of claims 1 to 14, wherein the
reinforcement has luminescent, magnetic, electroconductive, diffractive, light-interfering
or light-polarizing properties.
17. A document of value as claimed in any of claims 1 to 16, wherein the paper used
for the document of value consists of fibers from annuals, in particular cotton fibers.
18. A document of value as claimed in any of claims 1 to 17, wherein the paper used
for the document of value consists at least partly of polymer fibers, preferably polyamide
fibers.
19. A document of value as claimed in any of claims 1 to 18, wherein the paper used
for the document of value has a weight of 100 grams per square meter.
20. A document of value as claimed in any of claims 1 to 19, wherein the document of
value is equipped with double-sided intaglio printing.

21. A document of value as claimed in any of claims 1 to 20, wherein the document of
value has a print covered by a coating, e.g. a lacquer layer.
22. A document of value as claimed in any of claims 1 to 21, wherein the document of
value is a bank note.
23. A security paper for producing a document of value as claimed in any of claims 1
to 22, wherein it is provided only in the margin area of the document of value at least in a
certain area with a reinforcement to increase the initial tear resistance.
24. A security paper as claimed in claim 23, wherein the reinforcement is applied to
the front and/or back of the security paper.
25. A security paper as claimed in claim 23 or 24, wherein the reinforcement is
incorporated at least partly into the volume of the document of value.
26. A security paper as claimed in any of claims 23 to 25, wherein the reinforcement
comprises synthetic fibers and/or long fibers.
27. A security paper as claimed in any of claims 23 to 25, wherein the reinforcement
comprises a lacquer.
28. A security paper as claimed in any of claims 23 to 25, wherein the reinforcement
comprises a foil material.
29. A security paper as claimed in any of claims 23 to 28, wherein the reinforcement
is grid-shaped or strip-shaped and extends parallel to the edge of the security paper.
30. A security paper as claimed in any of claims 23 to 29, wherein the reinforcement
has luminescent, magnetic, electroconductive, diffractive, light-interfering or light-
polarizing properties.
31. A security paper as claimed in any of claims 23 to 30, wherein the security paper
consists of fibers from annuals, in particular cotton fibers.

32. A security paper as claimed in any of claims 23 to 31, wherein the security paper
has a weight of 100 grams per square meter.
33. A method for producing a security paper as claimed in any of claims 23 to 32,
wherein a paper web is produced in a paper machine and a reinforcement is incorporated
only in the margin area of the document of value at least in an area of the security paper
to increase the initial tear resistance.
34. A method for producing a document of value as claimed in any of claims 1 to 22,
wherein a security paper, as claimed in any of claims 23 to 32, is provided and is cut to
size.

There is disclosed a document of value, such as a bank note, check, passport, ID
card or the like, made of paper and/or at least partly of polymer fibers, characterized in
that only in the margin area of the document of value at least one edge area is provided at
least partly with a reinforcement to increase the initial tear resistance.

Documents:

313-CAL-1999-CORRESPONDENCE.pdf

313-CAL-1999-FORM 27.pdf

313-KOLNP-2004-FORM-27.pdf

313-kolnp-2004-granted-abstract.pdf

313-kolnp-2004-granted-assignment.pdf

313-kolnp-2004-granted-claims.pdf

313-kolnp-2004-granted-correspondence.pdf

313-kolnp-2004-granted-description (complete).pdf

313-kolnp-2004-granted-drawings.pdf

313-kolnp-2004-granted-examination report.pdf

313-kolnp-2004-granted-form 1.pdf

313-kolnp-2004-granted-form 18.pdf

313-kolnp-2004-granted-form 2.pdf

313-kolnp-2004-granted-form 3.pdf

313-kolnp-2004-granted-form 5.pdf

313-kolnp-2004-granted-gpa.pdf

313-kolnp-2004-granted-reply to examination report.pdf

313-kolnp-2004-granted-specification.pdf

313-kolnp-2004-granted-translated copy of priority document.pdf


Patent Number 231387
Indian Patent Application Number 313/KOLNP/2004
PG Journal Number 10/2009
Publication Date 06-Mar-2009
Grant Date 04-Mar-2009
Date of Filing 10-Mar-2004
Name of Patentee GIESECKE & DEVRIENT GMBH
Applicant Address PRINZREGENTENSTRASSE 159, 81677 MUNCHEN
Inventors:
# Inventor's Name Inventor's Address
1 PLASCHKA REINHARD LINDENSTRASSE 6, 86949 WINDACH
2 BOHM MICHAEL STOCKACKERRING 15, 85551 KIRCHHEIM-HEIM-STETTEN
3 KRETSCHMAR FRIEDRICH ERCHANBERTSTRASSE 8,81929 MUNCHEN
PCT International Classification Number B32B 29/02
PCT International Application Number PCT/EP2002/10815
PCT International Filing date 2002-09-26
PCT Conventions:
# PCT Application Number Date of Convention Priority Country
1 101 48 122.5 2001-09-28 Germany