[0001] The present invention relates to a light-sensitive photographic film and to a process
for its production.
[0002] The adhesion of light-sensitive photographic emulsions applied directly to the surface
of a plastics support film is generally inadequate to withstand the conditions of
handling and treat-
ment to which photographic films are subject-
ed. In order to provide acceptable adhesion it has become common practice in the photographic
art to interpose two or more subbing layers between the support film and the light-sensitive
photographic emulsion. The subbing layers of typical conventional photographic films
generally comprise, outwardly from the support film, a copolymeric subbing layer and
a gelatinous subbing layer, a light-sensitive photographic emulsion such as a gelatinous
emulsion containing a light-sensitive silver halide being adhered to the gelatinous
subbing layer.
[0003] GB 1 001 716 describes certain emulsion copolymers of alkyl esters of a, f3 ethylenically
unsaturated monocarboxylic acids, especially copolymers with a monoalkyl ester of
itaconic acid including half esters of itaconic acid. The alkyl esters of a, f3 ethylenically
unsaturated monocarboxylic acids may be chosen from soft comonomers such as ethyl
acrylate and hard comonomers such as methyl methacrylate, whilst the preferred copolymers
contain at least some hard and at least some soft comonomer. Various end uses for
the copolymers are described such as coating uses including the coating of metal,
cellulosic, masonry and plastic substrates. It is also contemplated that the copolymers
may be used as subbing layers for the light-sensitive portion of a lithographic printing
plate.
[0004] GB 1 146 215 describes a subbing layer for photographic films which includes a subbing
copolymer comprising:
a) an unsaturated ester of monocarboxylic acid examples of which are alkyl acrylates
and methacrylates,
b) an aliphatic polyfunctional compound containing at least two sites of carbon-carbon
unsaturation at least one of which is an allyl or vinyl group, or glycidyl acrylate,
glycidyl methacrylate, a methacrylate ester in which the alcohol portion of the ester
has a free hydroxy group, or fumaric acid, and
c) itaconic acid, fumaric acid, acrylic acid or methacrylic acid provided that c)
is itaconic acid when b) is fumaric acid.
[0005] DE-OS 2 409 969 describes an adhesive subbing layer for a photographic film comprising
a copolymer of at least one acrylic monomer selected from alkyl esters of acrylic
acid and alkyl esters of methacrylic acid and an ethylenically unsaturated comonomer
having a specified structure such as esters, amides, imides and the like of certain
acids which include itaconic acid. Optional comonomers include itaconic acid. The
coating composition is applied to the film support surface such that the amount of
solid copolymer applied is preferably in the range of 0.05 to 5 g/m
2 (0.5 to 50 mg/dm2)
.
[0006] US 2 698 235 describes photographic subbing copolymers derived from vinylidene chloride,
an acrylic ester and itaconic acid. Adhesion of a photographic emulsion directly to
the copolymer subbing layer with the elimination of the usual gelatin sublayer is
contemplated.
[0007] Whilst the benefits, such as simplification of the coating process, which would result
from the elimination of one or more of the subbing layers have been recognised in
the art. Applicants are not aware of any proposals which have resulted in successful
commercial exploitation.
[0008] Applicants have now discovered that photographic emulsions adhere directly to a specific
class of subbing copolymers without the interposition of a gelatinous subbing layer.
[0009] According to the present invention a light-sensitive photographic film comprises
a self-supporting plastics film, a copolymeric subbing layer applied to at least one
surface thereof, and a light-sensitive photographic emulsion layer bonded directly
to the copolymeric subbing layer, characterised in that said copolymeric subbing layer
comprises a copolymer prepared from a comonomer mixture comprising 35 to 55 mole %
acrylic acid or a lower alkyl ester thereof in which the alkyl group comprises up
to 8 carbon atoms, 35 to 55 mole % methacrylic acid or a lower alkyl ester thereof
in which the alkyl group comprises up to 8 carbon atoms, and 1 to 15 mole % of itaconic
acid, a half ester of itaconic acid or itaconic anhydride, said copolymeric subbing
layer having a dry coat weight in the range 0.05 to 3.00 mg/dm
2.
[0010] Also according to the present invention, a process for the production of a light-sensitive
photographic film comprises coating at least one surface of a self-supporting plastics
film with a subbing composition comprising an aqueous dispersion or a solution in
an organic solvent of a copolymer prepared from a comonomer mixture comprising 35
to 55 mole % acrylic acid or a lower alkyl ester thereof in which the alkyl group
comprises up to 8 carbon atoms, 35 to 55 mole % methacrylic acid or a lower alkyl
ester thereof in which the alkyl group comprises up to 8 carbon atoms, and 1 to 15
mole % of itaconic acid, a half ester of itaconic acid or itaconic anhydride, causing
or allowing the coating to dry to a layer having a coat weight in the range 0.05 to
3.00 mg/dm
2 and coating the dried subbing layer directly with a light-sensitive photographic
emulsion.
[0011] According to this invention, light-sensitive. photographic emulsions are adhered
directly to the copolymeric subbing layer, i.e. adequate emulsion adhesion under conventional
conditions for handling and treating photographic films is achieved by coating the
photographic emulsion layer in face-to-face contact with the copolymeric subbing layer
and without the need for an interposed gelatinous subbing layer or any treatment or
surface modification of the copolymeric subbing layer, such as corona discharge treatment
as described in British patent specification 1 259 506.
[0012] The self-supporting plastics film may consist of a cellulose ester such as cellulose
triacetate or any suitable thermoplastics film which is preferably biaxially oriented,
such as films of polysulphones, polystyrene and linear polyesters which may be obtained
by condensing one or more dicarboxylic acids or their lower alkyl diesters, e.g. terephthalic
acid, isophthalic, phthalic, 2,5-, 2,6- and 2,7-naphthalene dicarboxylic acid, succinic
acid, sebacic acid, adipic acid, azelaic acid, diphenyl dicarboxylic acid, and hexahydroterephthalic
acid or bis-p-carboxyl phenoxy ethane, optionally with a monocarboxylic acid, such
as pivalic acid, with one or more glycols, e.g. ethylene glycol, 1,3-propanedioi,
1,4-butanediol, neopentyl glycol and 1,4-cyclohexanedimethanol. Biaxially oriented
and heat-set films of polyethylene terephthalate are particularly useful for the production
of the photographic films according to this invention. Such self-supporting thermoplastics
films may be transparent and light-transmitting, optionally including photographically
inert dyestuffs, e.g. blue dyestuffs for X-ray films, or may be rendered opaque by
the addition of additives, such as pigments and fillers, and may in particular have
a white and paper-like texture which may be achieved by the addition of suitable fillers
and/or by voiding. The white and paper-like films may be used as bases for photographic
prints. Films suitable for use in "instant" photography may be pigmented black with
carbon black particles.
[0013] The lower alkyl (up to 8 carbon atoms in the alkyl group) esters of acrylic and methacrylic
acid as comonomers of the subbing copolymer may comprise the methyl, ethyl, propyl,
isopropyl, butyl, pentyl, hexyl, heptyl, n-octyl and 2-ethylhexyl esters, the preferred
esters being ethyl acrylate and methyl methacrylate.
[0014] Itaconic acid is particularly effective as the third comonomer. Half esters of itaconic
acid wherein one carboxylic acid group is esterified are also effective comonomers.
It has been found that the use of itaconic acid, a half ester of itaconic acid or
itaconic anhydride as comonomers in the subbing copolymer is effective not only in
providing the desired adhesive properties of the photographic emulsion applied thereto
but also in enhancing the wetting of the plastics film during the application of the
subbing composition.
[0015] Stronger adhesion of light-sensitive photographic emulsions to the subbing layer
is achieved when the subbing copolymer is prepared from a comonomer mixture containing
a molar excess of itaconic acid, a half ester of itaconic acid or itaconic anhydride
such that free unpolymerised acid, half ester or anhydride is present in the subbing
layer. Stronger dry adhesions are obtained with at least 1.0% by weight of free itaconic
acid, half ester or itaconic acid, or itaconic anhydride based on the weight of the
copolymer.
[0016] The subbing copolymer, may if desired, be derived from four or more comonomers, the
additional comonomers being employed to modify such properties as dry adhesion and
being present in the copolymer in an amount comprising up to.8 mole %. Suitable additional
comonomers include acrylamide, methacrylamide, N-methylol acrylamide, N-ethanol acrylamide,
N-propanolacrylamide, N-methylol methacrylamide, N-ethanol methacrylamide, N-methyl
acrylamide, N-tertiary-butylacrylamide, acrylonitrile, halo-substituted acrylonitrile
and methacrylonitrile, dimethylaminoethyl-methacrylate.
[0017] Proportions in the range 35 to 55 mole % of acrylic acid or a lower alkyl ester (up
to 8 carbon atoms in the alkyl group) thereof and 35 to 55 mole % of methacrylic acid
or a lower alkyl ester (up to 8 carbon atoms in the alkyl group) thereof are effective
in providing satisfactory adhesions to light-sensitive photographic emul- .sions;
smaller or greater proportions result in weaker adhesion. Optimum adhesions to conventional
photographic emulsions are achieved with preferred proportions of acrylic acid or
the lower alkyl ester (up to 8 carbon atoms in the alkyl group) thereof in the range
42 to 50 mole % and of methacrylic acid or the lower alkyl ester (up to 8 carbon atoms
in the alkyl group) thereof in the range 44 to 55 mole %.
[0018] Ethyl acrylate and methyl methacrylate are particularly effective comonomers and
provide satisfactory subbing properties when both are copolymerised together with
itaconic acid. Particularly beneficial subbing properties and especially adhesion
to photographic emulsions are achieved with subbing copolymers consisting of 43 to
50 mole % ethyl acrylate, 45 to 53 mole % methyl methacrylate and 4 to 10 mole % of
itaconic acid.
[0019] The subbing copolymer may be prepared by conventional emulsion polymerisation techniques
in water in the presence of a suitable emulsifying agent or a mixture of emulsifying
agents. The total amount of emulsifying agent can influence the adhesion of photographic
emulsions to the copolymeric subbing layer and it is therefore preferred to employ
up to 5% by weight of emulsifying agent based on .the total weight of the comonomers
and preferably about 4% by weight. Anionic emulsifying agents such as unbranched sodium
dodecyl benzene sulphonate, which is available commercially as 'Nansa' 1106 provide
particularly good adhesions to photographic emulsions which may if desired be used
in admixture with other emulsifying agents. 'Nansa' is a registered Trade Mark.
[0020] Conventional additives such as adhesion promoters, slip and anti-static agents may
be included in the copolymeric subbing composition in amounts not exceeding 10% by
weight based upon the weight of the subbing copolymer, since larger amounts may adversely
affect the adhesion of photographic emulsions.
[0021] When the self-supporting thermoplastics film is an oriented film, e.g. a biaxially
oriented film of polyethylene terephthalate, the subbing composition may be applied
to the film before, during or after the stretching process employed to achieve orientation.
A convenient procedure is to coat the film between the two stretching operations which
are applied in mutually perpendicular directions to orient the film, particularly
as this enhances the adhesion between the film and the subbing layer.
[0022] The procedure for applying the subbing composition may be any of the known coating
techniques, such as dip coating, bead coating, reverse roller coating, air knife,
direct gravure or slot coating and the composition may be applied as an aqueous latex
or solution or as a solution in an organic solvent.
[0023] The pH of the subbing composition should preferably be in the range 2.0 to 5.0 and
most preferably 2.5 to 3.0. Whilst coating quality is better with pHs up to 7, it
has been found that a satisfactory combination of adhesion and coating quality is
obtained in the range 2.5 to 3.0.
[0024] It is preferred that the subbing copolymer should comprise from 2 to 10% by weight
and particularly 5% by weight of the subbing composition since compositions of such
concentration dry slowly and provide subbing layers of uniform coating quality having
particularly satisfactory adhesions to photographic emulsions.
[0025] The dried copolymeric subbing layer has a coat weight in the range 0.05 to 3.00 mg/dm
2 and most preferably 0.5 to 1.00 mg/dm
z for optimum adhesion to photographic emulsions. Such coat weights may be accomplished
by appropriate modifications to the concentration of the subbing composition and/or
the conditions of coating.
[0026] The copolymeric subbing layers applied according to this invention to linear polyester
films such as polyethylene terephthalate films are such that the film base, i.e. the
polyester film carrying the copolymeric subbing layer but not the light-sensitive
photographic emulsion, is suitable for recycling through the film-forming extruder
and stretching equipment.
[0027] Any suitable light-sensitive photographic emulsion such as a conventional gelatinous
silver halide emulsion, may be applied by conventional techniques directly to the
subbing layer. Alternative light-sensitive emulsions based upon binding resins other
than gelatin, e.g. those binding resins described in United States patent 4 033 772,
may also be applied with good adhesion to the subbing copolymer layers of this invention.
Such emulsions may contain any of the conventional additives. It has been found that
light-sensitive photographic emulsions bond with good adhesion after direct application
to the surface modified layer.
[0028] Light-sensitive photographic emulsions, such as conventional gelatinous silver halide
X-ray and graphic arts emulsions, adhere to the copolymeric subbing layers with good
adhesions before and after accelerated ageing by incubation when evaluated by the
tests described below.
[0029] The tests referred to in this specification were effected as follows:
Dry adhesion refers to the adhesion of a gelatinous silver halide emulsion via the
copolymeric subbing layer to the self-supporting thermoplastics film in the final
photographic film after incubation at 50°C and 75% relative humidity for 16 hours,
assessed, both before and after processing in standard photographic chemicals, by
sticking a self-adhesive tape along the torn edge of the film and rapidly separating
the tape from the film. The adhesion of the emulsion was graded in five progressive
grades 1 to 5, Grade 1 being when no emulsion was removed after 8 separations of the
adhesive tape and Grade 5 being when all the emulsion was removed with one separation
of the tape.
[0030] Wet adhesion refers to the adhesion of a gelatinous silver halide emulsion via the
copolymeric subbing layer to the self-supporting thermoplastics film in the final
photographic film, assessed, after processing in the standard photographic chemicals
and washing in water for 15 minutes by rubbing with a sponge over a series of lines
scored in the still wet emulsion. The adhesion of the emulsion was graded in five
progressive grades 1 to 5, Grade 1 being when no emulsion was removed by rubbing 10
times over the scored lines and Grade 5 being when all of the emulsion was removed
by rubbing 10 times.
[0031] The invention is further illustrated by the following examples.
Examples 1 to 19
[0032] The subbing compositions for each Example were prepared in batches by conventional
emulsion polymerisation in water, the comonomers and other polymerisation ingredients
and the quantities employed being shown in Tables 1 to 3 together with the amount
of unpolymerised acid in % by weight based on the weight of the copolymer and the
pH of the latices.
[0033] A polyethylene terephthalate film was melt extruded and quenched to the amorphous
state on a cooled rotating drum. The resulting film was stretched in the direction
of extrusion to 3.0 times its original length. It was then coated on one side with
the aqueous subbing composition described in each of the Examples and passed into
a stenter oven where the coating was dried. In each Example the coating composition,
which was applied by a roller coating technique, contained 5% by weight of the subbing
copolymer based on the total weight of the composition. The dried coated film was
then stretched sideways 3.0 times its original width and finally heat set at the temperature
of 220°C. The resulting films had an overall thick ness of 100 microns and the dry
coat weights of the applied subbing are shown in Tables 1 to 3.
[0034] A conventional aqueous gelatinous silver halide emulsion was applied directly to
the subbing layers and tested for dry and wet adhesions by the procedures described
above, the adhesions also being shown in Tables 1 to 3. The measured adhesions between
the emulsion layers and the subbing layers are sufficient to resist the conditions
of handling and treatment, including wet processing, to which photographic films are
normally subjected.
1. A light-sensitive photographic film which comprises a self-supporting plastics
film, a copolymeric subbing layer applied to at least one surface thereof, and a light-sensitive
photographic emulsion layer bonded directly to the copolymeric subbing layer characterised
in that said copolymeric subbing layer comprises a copolymer prepared from a comonomer
mixture comprising 35 to 55 mole % acrylic acid or a lower alkyl ester thereof in
which the alkyl group comprises up to 8 carbon atoms, 35 to 55 mole % methacrylic
acid or a lower alkyl ester thereof in which the alkyl group comprises up to 8 carbon
atoms, and 1 to 15 mole 96 of itaconic acid, a half ester of itaconic acid or itaconic
anhydride, said copolymeric subbing layer having a dry coat weight in the range 0.05
to 3.00 mg/dm2.
2. A light-sensitive photographic film according to claim 1, in which the self-supporting
plastics film comprises a biaxially oriented and heat-set film of polyethylene terephthalate.
3. A light-sensitive photographic film according to claim 1 or 2, in which the subbing
copolymer is prepared from a comonomer mixture which includes ethyl acrylate and methyl
methacrylate.
4. A light-sensitive photographic film according to claim 1, 2 or 3, in which the
subbing layer comprises at least 1.0% by weight based on the weight of the subbing
copolymer of free unpolymerised itaconic acid, half ester of itaconic acid, or itaconic
anhydride.
5. A light-sensitive photographic film according to any preceding claim, in which
the subbing copolymer consists of 43 to 50 mole % ethyl acrylate, 45 to 53 mole 96
methyl methacrylate and 4 to 10 mole 96 of itaconic acid.
6. A light-sensitive photographic film according to any preceding claim, in which
the dried coat weight of the subbing layer is 0.5 to 1.00 mg/dm2;
7. A process for the production of a light-sensitive photographic film according to
any of claims 1 to 6, which comprises coating at least one surface of the self-supporting
plastics film with a subbing composition comprising an aqueous dispersion or a solution
in an organic solvent of the subbing copolymer, causing or allowing the coating to
dry to a layer having a coat weight in the range 0.05 to 3.00 mg/dm2 and coating the dried subbing layer directly with a light-sensitive photographic
emulsion.
8. A process according to claim 8, in which the self-supporting plastics film is biaxially
oriented and the subbing composition is applied to the surface of the film between
the two stretching operations employed to orient the film.
9. A process according to claim 8 or 9, in which the subbing composition has a pH
in the range 2.5 to 3.0.
1. Film photographique photosensible comportant une pellicule de matière plastique
autoporteuse, une couche d'ancrage de type copolymère appliquée sur au moins une surface
de cette pellicule et une couche d'émulsion photographique photosensible liée directement
à la couche d'ancrage de type copolymère, caractérisé en ce que cette couche d'ancrage
de type copolymère est constituée par un copolymère préparé à partir d'un mélange
de comonomères renfermant de 35 à 55 moles % d'acide acrylique ou d'un ester d'alkyle
inférieur de celui-ci dans lequel le groupe alkyle renferme jusqu'à 8 atomes de carbone,
de 35 à 55 moles % d'acide méthacrylique ou d'un ester d'alkyle inférieur de celui-ci
dans lequel le groupe alkyle renferme jusqu'à 8 atomes de carbone, et de 1 à 15 moles
% d'acide itaconique, d'un hémi-ester d'acide itaconique ou d'anhydride itaconique,
cette couche d'ancrage de type copolymère ayant un poids de revêtement à sec compris
entre 0,05 et 3,00 mg/dm2.
2. Film photographique photosensible suivant la revendication 1, caractérisé en ce
que la pellicule de matière plastique autoporteuse est constituée par une pellicule
à orientation biaxiale stabilisée thermiquement en téréph- talate de polyéthylène.
3. Film photographique photosensible suivant la revendication 1 ou 2, caractérisé
en ce que le copolymère d'ancrage est préparé à partir d'un mélange de comonomères
qui renferme de l'acrylate d'éthyle et du méthacrylate de méthyle.
4. Film photographique photosensible suivant la revendication 1, 2 ou 3, caractérisé
en ce que la couche d'ancrage comprend au moins 1,0 % en poids, sur la base du poids
du copolymère d'ancrage, d'acide itaconique libre non polymérisé, d'hémi-ester d'acide
itaconique ou d'anhydride itaconique.
5. Film photographique photosensible suivant l'une quelconque des revendications précédentes,
caractérisé en ce que le copolymère d'ancrage renferme de 43 à 50 moles % d'acrylate
d'éthyle, de 45 à 53 moles 96 de méthacrylate de méthyle et de 4 à 10 moles % d'acide
itaconique.
6. Film photographique photosensible, suivant l'une quelconque des revendications
précédentes, caractérisé en ce que le poids de revêtement séché de la couche d'ancrage
va de 0,5 à 1,00 mg/dm2.
7. Procédé pour la production d'un film photographique photosensible suivant l'une
quelconque des revendications 1 à 6, caractérisé en ce qu'on enduit au moins une surface
de la pellicule en matière plastique autoporteuse avec une composition d'ancrage constituée
par une dispersion aqueuse ou une solution dans un solvant organique du copolymère
d'ancrage, on provoque ou on permet le séchage du revêtement pour donner une couche
ayant un poids de revêtement compris entre 0,05 et 3,00 mg/dm2 et on enduit directement
la couche d'ancrage séchée avec une émulsion photographique photosensible.
8. Procédé suivant la revendication 7, caractérisé en ce que la pellicule de matière
plastique autoporteuse est orientée biaxialement et en ce que la composition d'ancrage
est appliquée sur la surface de la pellicule entre les deux opérations d'étirage utilisées
pour orienter cette pellicule.
9. Procédé suivant la revendication 7 ou 8, caractérisé en ce que la composition d'ancrage
à un pH compris entre 2,5 et 3,0.
1. Lichtempfindlicher fotografischer Film aus einer selbsttragenden Kunststoffolie,
einer auf mindestens eine Oberfläche der selbsttragenden Kunststoffolie aufgebrachten,
copolymeren Grundierschicht und einer lichtempfindlichen Fotoemulsionsschicht, die
direkt mit der copolymeren Grundierschicht verbunden ist, dadurch gekennzeichnet,
daß die copolymere Grundierschicht ein Copolymerisat enthält, das aus einer Comonomerenmischung,
die aus 35 bis 55 Mol-% Acrylsäure oder eines niederen Alkylesters der Acrylsäure,
bei dem die Alkylgruppe bis zu 8 Kohlenstoffatome enthält, 35 bis 55 Mol-% Methacrylsäure
oder eines niederen Alkylesters der Methacrylsäure, bei dem die Alkylgruppe bis zu
8 Kohlenstoffatome enthält, und 1 bis 15 Mol-% Itaconsäure, eines Halbesters der Itaconsäure
oder Itaconsäureanhydrid besteht, hergestellt worden ist, wobei die copolymere Grundierschicht
im trockenen Zustand ein Flächengewicht von 0,05 bis 3,00 mg/dm2 hat.
2. Lichtempfindlicher fotografischer Film nach Anspruch 1, bei dem die selbsttragende
Kunststoffolie aus einer biaxial orientierten und heißfixierten Polyäthylenterephthalatfolie
besteht.
3. Lichtempfindlicher fotografischer Film nach Anspruch 1 oder 2, bei dem das Copolymerisat
der Grundierschicht aus einer Äthylacrylat und Methylmethacrylat enthaltenden Comonomerenmischung
hergestellt worden ist.
4. Lichtempfindlicher fotografischer Film nach Anspruch 1, 2 oder 3, bei dem die Grundierschicht
mindestens 1,0 Gew.%, auf das Gewicht des Copolymerisats der Grundierschicht bezogen,
freie, nicht polymerisierte Itaconsäure, freien, nicht polymerisierten Halbester der
Itaconsäure oder freies, nicht polymerisiertes Itaconsäureanhydrid enthält.
5. Lichtempfindlicher fotografischer Film nach einem der vorhergehenden Ansprüche,
bei dem das Copolymerisat der Grundierschicht aus 43 bis 50 Mol-% Äthylacrylat, 45
bis 53 Mol-% Methylmethacrylat und 4 bis 10 Mol-% Itaconsäure hergestellt worden ist.
6. Lichtempfindlicher fotografischer Film nach einem der vorhergehenden Ansprüche,
bei dem die Grundierschicht im trockenen Zustand ein Flächengewicht von 0,5 bis 1,00
mg/dm2 hat.
7. Verfahren zur Herstellung eines lichtempfindlichen fotografischen Films nach einem
der Ansprüche 1 bis 6, bei dem mindestens eine Oberfläche der selbsttragenden Kunststoffolie
mit einer Grundiermasse beschichtet wird, die aus einer wäßrigen Dispersion des Copolymerisats
der Grundierschicht oder aus einer Lösung des Copolymerisats der Grundierschicht in
einem organischen Lösungsmittel besteht, bei dem man die Beschichtung unter Ausbildung
einer Schicht, die ein Flächengewicht von 0,05 bis 3,00 mg/dm2 hat, zum Trocknen bringt oder trocknen läßt und bei dem man die getrocknete Grundierschicht
direkt mit einer lichtempfindlichen Fotoemulsion beschichtet.
8. Verfahren nach Anspruch 7, bei dem die selbsttragende Kunststoffolie biaxial orientiert
wird und bei dem die Grundiermasse zwischen den zwei Reckvorgängen, die zur Orientierung
der Kunststoffolie angewendet werden, auf die Oberfläche der Kunststoffolie aufgebracht
wird.
9. Verfahren nach Anspruch 8 oder 9, bei dem die Grundiermasse einen pH-Wert im Bereich
von 2,5 bis 3,0 hat.