EP1588866B1 - Carte de couleur et procédé pour sa fabrication - Google Patents

Carte de couleur et procédé pour sa fabrication Download PDF

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Publication number
EP1588866B1
EP1588866B1 EP05008597A EP05008597A EP1588866B1 EP 1588866 B1 EP1588866 B1 EP 1588866B1 EP 05008597 A EP05008597 A EP 05008597A EP 05008597 A EP05008597 A EP 05008597A EP 1588866 B1 EP1588866 B1 EP 1588866B1
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Prior art keywords
paint
color
effect
particles
anyone
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German (de)
English (en)
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EP1588866A1 (fr
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Martin Robert
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Individual
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Individual
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B44DECORATIVE ARTS
    • B44DPAINTING OR ARTISTIC DRAWING, NOT OTHERWISE PROVIDED FOR; PRESERVING PAINTINGS; SURFACE TREATMENT TO OBTAIN SPECIAL ARTISTIC SURFACE EFFECTS OR FINISHES
    • B44D3/00Accessories or implements for use in connection with painting or artistic drawing, not otherwise provided for; Methods or devices for colour determination, selection, or synthesis, e.g. use of colour tables
    • B44D3/003Methods or devices for colour determination, selection or synthesis, e.g. use of colour tables

Definitions

  • the present invention relates to a method for producing a color card with one or more color fields for colors, wherein at least one color field carries a color with a visible and / or tactile effect, which is generated by located in and / or on the color effect particles.
  • each individual color field consists of a small blank of a carrier to which the color has been applied over the entire surface or in strips. Each color patch is then glued to the color cards one at a time.
  • a continuous web or a number of larger sheets are coated in the doctoring process with the paint into which the effect particles were previously mixed. After drying the paint, the web or sheet is cut into the hue fields of the desired size. After that, the individual blanks have to be sorted according to color and correctly positioned, glued to the color chart.
  • Another disadvantage is that the grain size of the effect particles is limited to a certain maximum size to achieve the desired effect, which is determined by the width of the doctor blade gap when the paint is sprayed onto the web or sheets.
  • the use of higher particle sizes would lead to jamming of effect particles in the doctor blade gap, which would lead to unacceptable quality losses, in particular to coating in the direction of scratches or stripes on the finished color field.
  • only relatively weak effects can be achieved with the known method, which are often far away from a desired, realistic as possible reproduction.
  • the document DE-A-32 09 028 discloses a method of making a rough-surfaced color gamut card.
  • the hue forming color is applied to a support, wherein the color is combined with plastic flakes and rock flour.
  • the color is mixed with the plastic flakes and the rock flour and then aufgerakelt on continuous paper rolls.
  • the paint, the plastic flakes and the rock flour are applied to the support in different process steps.
  • this document does not provide any information as to how the different process steps mentioned should look concretely and in what order they should be executed.
  • the disadvantage here is in particular that can be achieved only correspondingly limited effects with the plastic flakes and the rock flour.
  • the DE-A-42 0.8 034 shows a method for producing a paint job and a product produced thereafter.
  • a color layer is applied to a substrate by means of offset printing. During production, this color layer can be checked by colorimetric measurement and corrected if necessary.
  • an effect-particle-containing, at least transparent effect lacquer layer is applied, which may contain as effect particles, for example metallic, mica or mother-of-pearl platelets, but also plastic particles, silicone and the like. Depending on the effect particles used, a large number of lacquer effects can be reproduced as far as possible true to the original.
  • hue which comprises a substrate, at least one color and / or effect layer and at least one clear, transparent, organically modified ceramic layer superimposed in the order given.
  • These hue templates are used by the automotive industry and other industries as so-called "master panels" to define a particular hue of single or multi-layered color and / or effect paint to reproduce this hue safely and with consistent quality.
  • the hue templates are often brought into abutment with to be compared color plates, whereby the hue templates are exposed to a strong mechanical stress. In order to increase the mechanical resistance of the hue templates, they are coated with the ceramic layer as the uppermost layer according to this prior art document.
  • the color and / or effect layer is here preferably a pigmented lacquer layer, wherein as effect pigments metal flake pigments, such as aluminum bronzes, chromatized aluminum bronzes, commercially available stainless steel bronzes and non-metallic effect pigments, such as.
  • effect pigments metal flake pigments, such as aluminum bronzes, chromatized aluminum bronzes, commercially available stainless steel bronzes and non-metallic effect pigments, such as.
  • pearlescent or interference pigments can be used.
  • the hue template also has a thermally cured electrocoating as a primer under the salmon.
  • the hue primer may have fillers that are present between the primer and the color and / or effect paint layer.
  • a clearcoat can be located between the color and / or effect paint layer and the topmost ceramic layer.
  • This known hue color chart comprises at least two, preferably even more, layers, namely the color and / or effect layer and the clear, transparent, organically modified ceramic layer applied above this as the uppermost layer. If effect particles are used in this hue, these are in the lacquer layer which represents the lowermost layer and are suspended in the lacquer prior to the application of this lacquer layer.
  • the top ceramic layer serves to make the hue template mechanically particularly resistant and to protect it against scratching during use. Due to the purpose of use while a smooth and clear uppermost layer is desired to ensure a true color impression of the underlying paint layer.
  • the inventive method for producing the color card is cheaper because the costly steps of cutting and sticking the individual color fields omitted. This also eliminates the disadvantage that the hue fields on the color chart apply relatively thick. As a result, the color chart as a whole obtains a substantially improved appearance, while at the same time manufacturing costs can be saved.
  • the paint is applied in the paint printing process, it is possible to apply the color within individual color fields on the color chart. Since, according to the invention, furthermore, the color and the effect particles are applied one after the other to the color chart, it is achieved that the application of the color is not affected by the color Effect particles is affected or impaired.
  • the method of application by which the color is applied to the color chart has no influence on the distribution of the effect particles in the color and within the color tone field.
  • the separately applied effect particles allow a targeted adjustment of a desired reproduction image by a suitable amount and distribution of the effect particles over the surface of the individual color tone fields.
  • the production of the color card is simplified and accelerated and thus more cost-effective, especially because the costly cropping, sorting and sticking of individual color fields is no longer necessary.
  • the previously required for this expensive handwork or alternatively used expensive device is saved.
  • the color and the effect particles are successively applied to the color chart, in particular the advantage is achieved that the application of the color is not influenced or impaired by the effect particles contained therein.
  • the application method, with which the color is applied to the color chart has no effect on the distribution of the effect particles in the color and within the hue field.
  • the subsequent application of the effect particles permits a targeted distribution of the effect particles over the area of the individual color tone fields corresponding to the desired reproduction image.
  • the method according to the invention requires only a single paint application step and then an effect particle application step, which is much simpler than another color application step and which allows the generation of a wider range of effects than is possible with effect paint application.
  • the ink is preferably applied in stencil printing or screen printing or flexographic printing or gravure printing or offset printing processes.
  • the color when applied to the color card yet contains this application possibly disturbing effect particles.
  • the different colors for all color fields are applied simultaneously to the color card.
  • the individual color tone fields can be spaced apart from one another or else adjacent to one another.
  • multiple color cards can be provided simultaneously with the different hue fields, in which case preferably first several color cards are still combined to form a larger sheet, which then after applying the color fields is tailored to the individual color charts.
  • the invention provides that the effect particles are applied or applied in or onto the ink applied to the color card before it is dried or cured. This ensures that the effect particles permanently and safely combine with the color, without the need for a special compound, such as additional adhesive or clearcoat must be used.
  • the liquid layer thickness the color of their order on the color chart and the material and the grain size or the particle size spectrum of the effect particles are coordinated so that the introduced into the color effect particles are completely wetted by the color and after drying or curing of the color felt from the surface of the / each color field protrude.
  • the layer thickness of the paint after drying or curing is significantly lower than in the still liquid state immediately after application, in the dry or cured state of the ink, the color-coated effect particles then clearly emerge from the surface of the hue field, whereby the desired feeling and visible roughness is achieved particularly effectively.
  • the material of the effect particles is matched to the color such that the color in Having its adhering to the effect particles and / or the effect particles immediately surrounding areas after drying or curing a darker hue than in their other areas.
  • the liquid layer thickness of the color in their application to the color chart and the material and the grain size or grain size spectrum of the effect particles are coordinated so that the on the color applied effect particles remain on the color and that after drying or curing of the color, the effect particles are connected to the underside of the color and visible on the surface of / each color field.
  • a further modification of the method provides that the liquid layer thickness of the color in their application to the color chart and the material and the grain size or the grain size spectrum of the effect particles are coordinated so that the introduced into the color effect particles only over a part of their height in the Color sink and that after drying or curing of the color, the effect particles with their upper, unweakened by the color part visible from the surface of / each color field project.
  • the effect particles are anchored particularly securely in the color and remain visible at the same time on the color tone field surface with their own color and surface texture.
  • the invention provides that the color card is printed before or after the application of the color with an informing and / or advertising lettering and / or imaging.
  • This pre- or post-printing can be done with any standard printing method, because a prior printing has no disturbing effect on the subsequent application of color and effect particles on the color card and because the previous application of color and effect particles on the color card no disturbing effect has a ansch manendes printing.
  • a water-based paint or a solvent-based paint may be used as the paint applied in the individual hue fields of the hue chart.
  • a water-based paint there are no dangers due to solvents. It is then expedient to perform the color card itself waterproof or equip it with a water-barrier coating on the areas to be provided with the color fields.
  • a solvent based ink has the specific advantage of not damaging the color card material, even if it is paper or relatively thin cardboard.
  • the color used is a multicomponent color or a radiation-curing ink. These colors are characterized in particular by a very fast drying or Hardening, which allows a very fast production process.
  • a color opaque color or alternatively a translucent color can be used.
  • the effect particles are at least partially formed by an effect powder.
  • the effect particles used are particles with which a tactile and visible roughness effect is produced on the surface of the ink.
  • the invention further proposes that particles are used as effect particles, with which an optical pointy shading effect is produced.
  • This can be generated purely optically or in addition to the tactile roughness of the surface of the hue field and an optical impression of roughness, which allows a very realistic reproduction of colors that are applied, for example, on a wall or plaster surface.
  • particles are used as effect particles, with which a visible gloss effect is produced on the surface of the paint, and / or that particles are used as effect particles with which a visible metallic effect on the surface of the paint is generated, and / or that particles are used as effect particles with which a visible reflection effect is generated at the surface of the color. It can the effects can be used individually or in combination as needed and desired effect.
  • the invention proposes that the effect particles are formed at least proportionally by a plastic powder.
  • the effect particles are advantageously lightweight and it is possible to choose from a large number of plastics and related properties a suitable material or material mixture.
  • the effect particles are formed at least proportionally by a mineral powder. This further increases the material selection for the effect particles and further advantageous properties for the effect particles can be achieved.
  • the effect particles are formed at least proportionally by a metal powder.
  • metal powder in combination with the color further effects can be achieved, which are not achievable with particles of plastics or minerals.
  • bronzing is known from the prior art, but a thin surface coated with an adhesive or with a sticky color with the finest bronze dust is first coated in an over-all dense and opaque in excess, for example to give the impression of printing with a gold color . If a color is used in this case, then this has a hue close to the color of the bronze, for example yellow, in order to achieve a particularly rich golden hue.
  • the bronze dust excess is brushed off after application, which is only possible is when the adhesive or ink layer is relatively thin, otherwise the adhesive or paint would be brushed off.
  • the color card according to the invention is concerned with the generation of hue fields with an effect which leaves the color having the effect but still visible. The effect particles occupy only a part, usually only a small part of the area of the color field.
  • effect particles are formed at least proportionally by an iriodines pigment. This can be an effect comparable to a mother of pearl shine.
  • the effect particles are used in a maximum particle size of up to several hundred ⁇ m, preferably up to 700 ⁇ m.
  • This grain size allows particularly clear effects and allows, for example, a reproduction of a strong roughness in order to come as close as possible to the real surface to be reproduced by the hue fields.
  • the color in the individual color fields for themselves, so particle-free is applied directly to the color chart, eliminating the limitation of the maximum grain size by the width of the doctor gap, which is usually about 150 microns in practice.
  • Textile fibers or synthetic fibers or mineral fibers are preferably used here as fibers, with which different effects can be achieved.
  • the inventive method for producing color cards for the display of plaster or wall paints is suitable because they have in reality after their application to a plaster or wall surface present in the surface tactile and visible roughness.
  • colors which can be used as colors for the automotive sector are represented, in particular vehicle paint colors.
  • paints are often used, which can be reproduced well on the color chart by means of the method according to the invention.
  • usable colors are colors for the packaging area. Also in this field, effect colors are often used today, which can be reproduced well on the color chart with the method according to the invention.
  • a color card In order to keep the color card in terms of their basic material cost, is preferably used as a color card a blank made of paper or cardboard or plastic or metal foil or a laminate.
  • a laminate may e.g. a foil-coated paper.
  • the reproducible effects are very diverse and can be, for example, rough effects, gloss effects, metallic effects, reflection effects or shading effects, individually or in combinations with one another.
  • the color charts may take the form of loose individual, smooth or folded blanks, the form of color fans or color books, or the form of color displays or color labels.
  • the color chart 1 consists of an arcuate blank 10, e.g. from a strong paper or light cardboard.
  • each hue field 2.1 to 2.3 here has a rectangular outline shape, wherein the hue fields 2.1 to 2.3 each have a small distance, e.g. of a few mm, from each other.
  • hue field 2.3 To the right of the lower hue field 2.3 is an image 4 'which has the same format here as the individual hue fields 2.1 to 2.3 and which has the same distance from the adjacent hue fields 2.2 and 2.3 as the hue fields 2.1 to 2.3 with one another.
  • the image 4 ' is prepared in advance in a first production step or finally printed in a final manufacturing step on the paper blank 10 in a conventional printing process.
  • any suitable common printing method can be used for the production of the label 4 and the image 4 'on the color chart 1.
  • the application of the color 2 for each color field 2.1 to 2.3 is carried out here by means of a suitable printing process, such as paint printing, preferably a simultaneous and positionally accurate application of all color fields 2.1 allowed until 2.3.
  • a suitable printing process such as paint printing
  • this production step first of all each color 2 is applied to the paper blank 10 alone or in its purest form, that is to say still without effect particles 3, in a predeterminable liquid layer thickness.
  • the paint 2 already applied to the paper blank 10 is added in its still liquid state effect particles 3.
  • the effect particles 3 are pure particles which are not suspended in a clearcoat or other liquid.
  • the effect particles 3 are used in the form of an effect powder, which is spread to the still liquid color 2 in a desired amount and distribution targeted. In the example shown, these effect particles 3 have the property that they are completely wetted by the latter after application to the paint 2.
  • the effect particles 3 enveloped by the paint 2 protrude the surface of the hue fields 2.1 to 2.3.
  • a palpable roughness is generated in the hue fields 2.1 to 2.3, which allows a very realistic reproduction of color-coated rough surfaces, such as plaster or wall surfaces of buildings.
  • the effect particles 3 may have the property that they lead in their immediate vicinity to a darker hue of the color 2 than in the other areas of the color 2. In this way, the effect of a color-coated rough surface with an oblique or flat light incidence.
  • the color chart 1 may also contain a smaller or larger number of hue fields. It is also possible to bind a plurality of blanks 10 to a color sample book or to size the paper blank 10 larger and to make it by folding in the form of a hinged, multi-page shade leaflet.

Landscapes

  • Application Of Or Painting With Fluid Materials (AREA)
  • Electrochromic Elements, Electrophoresis, Or Variable Reflection Or Absorption Elements (AREA)
  • Heterocyclic Carbon Compounds Containing A Hetero Ring Having Oxygen Or Sulfur (AREA)
  • Materials For Photolithography (AREA)
  • Credit Cards Or The Like (AREA)

Claims (33)

  1. Procédé pour la fabrication d'un nuancier (1) avec un ou plusieurs champs de nuance (2.1 à 2.3) pour des peintures (2), au moins un champ de nuance (2.1 à 2.3) portant une peinture (2) avec un effet visible et/ou tactile qui est généré par des particules d'effet (3) se trouvant dans et/ou sur la peinture (2),
    caractérisé en ce
    - que la peinture (2) est appliquée en soi à chaque fois dans la/chaque région de surface définie par un champ de nuance (2.1 à 2.3) directement sur le nuancier (1),
    - que la peinture (2) est appliquée dans le procédé d'impression sous forme de laque et
    - que les particules d'effet (3) sont appliquées séparément après la peinture (2) sur le nuancier (1).
  2. Procédé selon la revendication 1, caractérisé en ce que la peinture (2) est appliquée dans le procédé d'impression sous forme de pochoir ou de sérigraphie ou de flexographie ou d'héliogravure ou d'impression offset.
  3. Procédé selon la revendication 1 ou 2, caractérisé en ce que les champs de nuance (2.1 à 2.3) sont fabriqués avec une forme de contour figurative.
  4. Procédé selon l'une quelconque des revendications 1 à 3, caractérisé en ce que les différentes peintures (2) pour l'ensemble des champs de nuance (2.1 à 2.3) sont appliquées simultanément sur le nuancier (1) lors de la fabrication d'un nuancier (1) avec plusieurs champs de nuance (2.1 à 2.3) de différentes nuances.
  5. Procédé pour la fabrication d'un nuancier (1) avec un ou plusieurs champs de nuance (2.1 à 2.3) pour des peintures (2), au moins un champ de nuance (2.1 à 2.3) portant une peinture (2) avec un effet visible et/ou tactile qui est généré par des particules d'effet (3) se trouvant dans et/ou sur la peinture (2),
    caractérisé en ce
    - que la peinture (2) est appliquée en soi à chaque fois dans la/chaque région de surface définie par un champ de nuance (2.1 à 2.3) directement sur le nuancier (1),
    - que la peinture (2) est appliquée dans le procédé de raclage et
    - que les particules d'effet (3) sont appliquées séparément après la peinture (2) sur le nuancier (1).
  6. Procédé selon l'une quelconque des revendications 1 à 5, caractérisé en ce que les particules d'effet (3) sont introduites ou appliquées dans ou sur la peinture (2) appliquée sur le nuancier (1) avant son séchage ou durcissement.
  7. Procédé selon la revendication 6, caractérisé en ce que l'épaisseur de couche liquide de la peinture (2) lors de son application sur le nuancier (1) et le matériau et la taille de grain ou le spectre de taille de grain des particules d'effet (3) sont adaptés ensemble de sorte que les particules d'effet (3) introduites dans la peinture (2) sont entièrement mouillées par la peinture (2) et dépassent de manière tactile de la surface du/de chaque champ de nuance (2.1 à 2.3) après le séchage ou durcissement de la peinture (2).
  8. Procédé selon la revendication 6 ou 7, caractérisé en ce que le matériau des particules d'effet (3) est adapté à la peinture (2) de sorte que la peinture (2) présente dans ses régions adhérant aux particules d'effet (3) et/ou entourant directement les particules d'effet (3) une nuance plus foncée que dans ses autres régions après le séchage ou durcissement.
  9. Procédé selon la revendication 6, caractérisé en ce que l'épaisseur de couche liquide de la peinture (2) lors de son application sur le nuancier (1) et le matériau et la taille de grain ou le spectre de taille de grain des particules d'effet (3) sont adaptés ensemble de sorte que les particules d'effet (3) appliquées sur la peinture (2) restent couchées sur la peinture (2) et que les particules d'effet (3) sont reliées à la peinture (2) au niveau de leur face inférieure et se trouvent de manière visible à la surface du/de chaque champ de nuance (2.1 à 2.3) après le séchage ou durcissement de la peinture (2).
  10. Procédé selon la revendication 6, caractérisé en ce que l'épaisseur de couche liquide de la peinture (2) lors de son application sur le nuancier (1) et le matériau et la taille de grain ou le spectre de taille de grain des particules d'effet (3) sont adaptés ensemble de sorte que les particules d'effet (3) introduites dans la peinture (2) ne s'enfoncent que sur une partie de leur hauteur dans la peinture (2) et que les particules d'effet (3) dépassent avec leur partie supérieure, non mouillée par la peinture (2) de manière visible de la surface du/de chaque champ de nuance (2.1 à 2.3) après le séchage ou durcissement de la peinture (2).
  11. Procédé selon la revendication 6, caractérisé en ce qu'une peinture glacée (2) est utilisée et que l'épaisseur de couche liquide de la peinture (2) lors de son application sur le nuancier (1) et le matériau et la taille de grain ou le spectre de taille de grain des particules d'effet (3) sont adaptés ensemble de sorte que les particules d'effet (3) introduites dans la peinture (2) s'enfoncent entièrement dans la peinture (2) et que les particules d'effet (3) sont couchées dans la peinture (2) entièrement mouillées par la peinture (2) mais visibles après le séchage ou durcissement de la peinture (2),
  12. Procédé selon l'une quelconque des revendications 1 à 11, caractérisé en ce que le nuancier (1) est imprimé avant ou après l'application de la peinture (2) avec une inscription (4) et/ou illustration (4') d'information et/ou publicitaires.
  13. Procédé selon l'une quelconque des revendications 1 à 12, caractérisé en ce qu'une peinture à base d'eau ou une peinture à base de solvant est utilisée en tant que peinture (2).
  14. Procédé selon l'une quelconque des revendications 1 à 12, caractérisé en ce qu'une peinture multicomposants ou une peinture durcissant aux rayons est utilisée en tant que peinture (2).
  15. Procédé selon l'une quelconque des revendications 1 à 14, caractérisé en ce qu'une peinture couvrante est utilisée en tant que peinture (2).
  16. Procédé selon l'une quelconque des revendications 1 à 14, caractérisé en ce qu'une peinture glacée est utilisée en tant que peinture (2).
  17. Procédé selon l'une quelconque des revendications précédentes, caractérisé en ce que les particules d'effet (3) sont formées au moins en partie par une poudre d'effet.
  18. Procédé selon l'une quelconque des revendications précédentes, caractérisé en ce que des particules avec lesquelles un effet rugueux tactile et visible est généré à la surface de la peinture (2) sont utilisées en tant que particules d'effet (3).
  19. Procédé selon l'une quelconque des revendications précédentes, caractérisé en ce que des particules avec lesquelles un effet de nuance ponctuel optique est généré sont utilisées en tant que particules d'effet (3).
  20. Procédé selon l'une quelconque des revendications précédentes, caractérisé en ce que des particules avec lesquelles un effet brillant visible est généré à la surface de la peinture (2) sont utilisées en tant que particules d'effet (3).
  21. Procédé selon l'une quelconque des revendications précédentes, caractérisé en ce que des particules avec lesquelles un effet métallique visible est généré à la surface de la peinture (2) sont utilisées en tant que particules d'effet (3).
  22. Procédé selon l'une quelconque des revendications précédentes, caractérisé en ce que des particules avec lesquelles un effet de réflexion visible est généré à la surface de la peinture (2) sont utilisées en tant que particules d'effet (3).
  23. Procédé selon l'une quelconque des revendications précédentes, caractérisé en ce que les particules d'effet (3) sont formées au moins en partie par une poudre synthétique.
  24. Procédé selon l'une quelconque des revendications précédentes, caractérisé en ce que les particules d'effet (3) sont formées au moins en partie par une poudre minérale.
  25. Procédé selon l'une quelconque des revendications précédentes, caractérisé en ce que les particules d'effet (3) sont formées au moins en partie par une poudre métallique.
  26. Procédé selon l'une quelconque des revendications précédentes, caractérisé en ce que les particules d'effet (3) sont formées au moins en partie par un pigment d'iriodine.
  27. Procédé selon l'une quelconque des revendications précédentes, caractérisé en ce que les particules d'effet (3) sont utilisées dans une taille de grain maximale allant jusqu'à plusieurs centaines de µm.
  28. Procédé selon l'une quelconque des revendications précédentes, caractérisé en ce que les particules d'effet (3) sont formées au moins en partie par des fibres.
  29. Procédé selon la revendication 28, caractérisé en ce que des fibres textiles ou des fibres synthétiques ou des fibres minérales sont utilisées en tant que fibres.
  30. Procédé selon l'une quelconque des revendications 1 à 29, caractérisé en ce que des peintures pour crépi ou murales sont représentées en tant que peintures (2).
  31. Procédé selon l'une quelconque des revendications 1 à 29, caractérisé en ce que des peintures pouvant être utilisées pour le domaine automobile, notamment des peintures laquées pour voiture, sont représentées en tant que peintures (2).
  32. Procédé selon l'une quelconque des revendications 1 à 29, caractérisé en ce que des peintures pouvant être utilisées pour le domaine de l'emballage sont représentées en tant que peintures (2).
  33. Procédé selon l'une quelconque des revendications précédentes, caractérisé en ce qu'une coupe (10) en papier ou carton ou en une feuille plastique ou métallique ou en stratifié est utilisée en tant que nuancier (1).
EP05008597A 2004-04-22 2005-04-20 Carte de couleur et procédé pour sa fabrication Active EP1588866B1 (fr)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
DE102004019494 2004-04-22
DE102004019494A DE102004019494A1 (de) 2004-04-22 2004-04-22 Farbtonkarte und Verfahren zur Herstellung der Farbtonkarte

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EP1982845B1 (fr) * 2007-04-19 2014-06-04 Matherson S.p.A. Procédé pour produire cartes de couleur et carte ainsi obtenue
JP6372036B2 (ja) * 2014-12-26 2018-08-15 関西ペイント株式会社 調色補助カード、調色補助カードセット、塗料の調色方法及び補修塗装方法

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DE3209028A1 (de) * 1982-03-11 1983-09-15 Deutsche Amphibolin-Werke Von Robert Murjahn, 6105 Ober-Ramstadt Farbtonkarte mit rauher oberflaeche
DE4208034A1 (de) * 1992-03-13 1993-09-16 Helmut Schmidt Verfahren zum herstellen eines farbauftrages sowie danach hergestelltes produkt
DE10017652C2 (de) * 2000-04-08 2002-02-14 Basf Coatings Ag Verwendung eines Substrates als Bunttonvorlage

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DE102004019494A1 (de) 2005-11-17
DE502005005730D1 (de) 2008-12-04
ATE411910T1 (de) 2008-11-15

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