EP1700713B1 - Process for manufacturing of coatings with structured surface, applied especially for pencils, and object with structured surface - Google Patents

Process for manufacturing of coatings with structured surface, applied especially for pencils, and object with structured surface Download PDF

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Publication number
EP1700713B1
EP1700713B1 EP20050005101 EP05005101A EP1700713B1 EP 1700713 B1 EP1700713 B1 EP 1700713B1 EP 20050005101 EP20050005101 EP 20050005101 EP 05005101 A EP05005101 A EP 05005101A EP 1700713 B1 EP1700713 B1 EP 1700713B1
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EP
European Patent Office
Prior art keywords
coating
particles
pin
raised
expanded
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EP20050005101
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German (de)
French (fr)
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EP1700713A1 (en
Inventor
Udo Beck
Walter Oetter
Gerhard Dr. Lugert
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Faber Castell AG
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Faber Castell AG
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Priority to AT05005101T priority Critical patent/ATE375260T1/en
Application filed by Faber Castell AG filed Critical Faber Castell AG
Priority to DE200520021097 priority patent/DE202005021097U1/en
Priority to EP20050005101 priority patent/EP1700713B1/en
Priority to DE200550001677 priority patent/DE502005001677D1/en
Priority to PE2006000248A priority patent/PE20061259A1/en
Priority to MXPA06002606A priority patent/MXPA06002606A/en
Priority to BRPI0600811A priority patent/BRPI0600811B1/en
Priority to CNB2006100589524A priority patent/CN100490995C/en
Priority to US11/372,436 priority patent/US7351469B2/en
Publication of EP1700713A1 publication Critical patent/EP1700713A1/en
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Publication of EP1700713B1 publication Critical patent/EP1700713B1/en
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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B43WRITING OR DRAWING IMPLEMENTS; BUREAU ACCESSORIES
    • B43KIMPLEMENTS FOR WRITING OR DRAWING
    • B43K19/00Non-propelling pencils; Styles; Crayons; Chalks
    • B43K19/16Making non-propelling pencils
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B05SPRAYING OR ATOMISING IN GENERAL; APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
    • B05DPROCESSES FOR APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
    • B05D5/00Processes for applying liquids or other fluent materials to surfaces to obtain special surface effects, finishes or structures
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B05SPRAYING OR ATOMISING IN GENERAL; APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
    • B05DPROCESSES FOR APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
    • B05D5/00Processes for applying liquids or other fluent materials to surfaces to obtain special surface effects, finishes or structures
    • B05D5/06Processes for applying liquids or other fluent materials to surfaces to obtain special surface effects, finishes or structures to obtain multicolour or other optical effects
    • B05D5/061Special surface effect
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B43WRITING OR DRAWING IMPLEMENTS; BUREAU ACCESSORIES
    • B43KIMPLEMENTS FOR WRITING OR DRAWING
    • B43K19/00Non-propelling pencils; Styles; Crayons; Chalks
    • B43K19/14Sheathings
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B43WRITING OR DRAWING IMPLEMENTS; BUREAU ACCESSORIES
    • B43KIMPLEMENTS FOR WRITING OR DRAWING
    • B43K23/00Holders or connectors for writing implements; Means for protecting the writing-points
    • B43K23/008Holders comprising finger grips
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B44DECORATIVE ARTS
    • B44CPRODUCING DECORATIVE EFFECTS; MOSAICS; TARSIA WORK; PAPERHANGING
    • B44C1/00Processes, not specifically provided for elsewhere, for producing decorative surface effects
    • B44C1/18Applying ornamental structures, e.g. shaped bodies consisting of plastic material
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B05SPRAYING OR ATOMISING IN GENERAL; APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
    • B05DPROCESSES FOR APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
    • B05D7/00Processes, other than flocking, specially adapted for applying liquids or other fluent materials to particular surfaces or for applying particular liquids or other fluent materials
    • B05D7/06Processes, other than flocking, specially adapted for applying liquids or other fluent materials to particular surfaces or for applying particular liquids or other fluent materials to wood
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y10TECHNICAL SUBJECTS COVERED BY FORMER USPC
    • Y10TTECHNICAL SUBJECTS COVERED BY FORMER US CLASSIFICATION
    • Y10T428/00Stock material or miscellaneous articles
    • Y10T428/24Structurally defined web or sheet [e.g., overall dimension, etc.]
    • Y10T428/24479Structurally defined web or sheet [e.g., overall dimension, etc.] including variation in thickness
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y10TECHNICAL SUBJECTS COVERED BY FORMER USPC
    • Y10TTECHNICAL SUBJECTS COVERED BY FORMER US CLASSIFICATION
    • Y10T428/00Stock material or miscellaneous articles
    • Y10T428/24Structurally defined web or sheet [e.g., overall dimension, etc.]
    • Y10T428/24479Structurally defined web or sheet [e.g., overall dimension, etc.] including variation in thickness
    • Y10T428/24496Foamed or cellular component
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y10TECHNICAL SUBJECTS COVERED BY FORMER USPC
    • Y10TTECHNICAL SUBJECTS COVERED BY FORMER US CLASSIFICATION
    • Y10T428/00Stock material or miscellaneous articles
    • Y10T428/24Structurally defined web or sheet [e.g., overall dimension, etc.]
    • Y10T428/24479Structurally defined web or sheet [e.g., overall dimension, etc.] including variation in thickness
    • Y10T428/24595Structurally defined web or sheet [e.g., overall dimension, etc.] including variation in thickness and varying density
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y10TECHNICAL SUBJECTS COVERED BY FORMER USPC
    • Y10TTECHNICAL SUBJECTS COVERED BY FORMER US CLASSIFICATION
    • Y10T428/00Stock material or miscellaneous articles
    • Y10T428/249921Web or sheet containing structurally defined element or component
    • Y10T428/249953Composite having voids in a component [e.g., porous, cellular, etc.]
    • Y10T428/249975Void shape specified [e.g., crushed, flat, round, etc.]
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y10TECHNICAL SUBJECTS COVERED BY FORMER USPC
    • Y10TTECHNICAL SUBJECTS COVERED BY FORMER US CLASSIFICATION
    • Y10T428/00Stock material or miscellaneous articles
    • Y10T428/25Web or sheet containing structurally defined element or component and including a second component containing structurally defined particles
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y10TECHNICAL SUBJECTS COVERED BY FORMER USPC
    • Y10TTECHNICAL SUBJECTS COVERED BY FORMER US CLASSIFICATION
    • Y10T428/00Stock material or miscellaneous articles
    • Y10T428/31504Composite [nonstructural laminate]
    • Y10T428/31971Of carbohydrate
    • Y10T428/31989Of wood

Definitions

  • a coating composition is applied in which expandable particles are contained, and in a partial area of the coating, the particles are brought to expand, whereby the partial surface area protrudes from the coating as a raised structure.
  • This procedure results in a variety of design options, by surface areas of different thickness and thus, for example, raised structures to increase the grip can be produced in a technically simple manner on a surface of an article, in particular a lead, color, and cosmetic pencil.
  • This is done by a selective expansion of the particles preferably contained in the applied coating thermally expandable.
  • the proportion of the raised surface areas may be greater than the remaining areas of the coating, so that the design elements such as patterns or lettering are recessed.
  • the expanding particles may partially breach the surface of the coating, resulting in cracks and burrs that give an optical and a haptic effect on the one hand. It is conceivable that a material is used for a non-slip coating or non-slip grip.
  • the expanded particles are then used primarily to form raised partial surface areas or structures and, for example, as a result of the mentioned formation of cracks and burrs, to further increase the grip. It is also conceivable, however, that the particles are preferably expanded contactlessly when the coating composition is not fully hardened, for example, is still viscous. As a result, raised areas could be obtained in which the expanded particles do not break the surface of the coating but are coated with coating material.
  • the above-mentioned contact technique may be modified so that the object to be treated is unrolled on a surface of a body at least the expansion temperature of the particles having contact surfaces are arranged. With this rolling technique, it is possible to produce raised structures in complex patterns in a technically very simple way.

Landscapes

  • Application Of Or Painting With Fluid Materials (AREA)
  • Manufacture Of Porous Articles, And Recovery And Treatment Of Waste Products (AREA)
  • Paints Or Removers (AREA)
  • Coating Apparatus (AREA)
  • Pens And Brushes (AREA)
  • General Preparation And Processing Of Foods (AREA)

Abstract

The method involves application of the coating (4) on the part of the surface (3), which contains expandable particles. In the surface range of the coating, the particle to be expanded are brought, through which a raised structure develops in this surface range. The method also involves use of thermally expandable particles.

Description

Die Erfindung betrifft ein Verfahren zur Herstellung von Oberflächenbeschichtungen von Stiften und einen Stift mit einer Oberflächenbeschichtung. Oberflächen von Gebrauchsgegenständen werden vielfach mit einer Beschichtung, beispielsweise durch Sprühen oder Tauchen mit einem Lacküberzug versehen. Für eine optisch ansprechende Oberfläche eines Gegenstands sind meist weitere Maßnahmen zur Oberflächengestaltung erforderlich. Auch kommt es häufig vor, dass eine Beschichtung besondere haptische Eigenschaften, beispielsweise eine erhöhte Griffigkeit aufweisen soll. Das Aufbringen einer zusammenhängenden, die Griffigkeit erhöhenden Beschichtung bereitet in der Regel keine besonderen Schwierigkeiten. Anders ist dies, wenn die Griffigkeit der Oberfläche durch aus dieser vorstehende Flächenbereiche der Beschichtung, beispielsweise erhabene Strukturen aus rutschfesten Massen in Form von Noppen, Rippen oder dergleichen erreicht werden soll. Bei einem aus DE 203 14 274 U1 bekannten Stift sind eine Vielzahl von Noppen in Form einer zunächst fließfähigen, später sich verfestigenden Masse auf die Stiftoberfläche aufgebracht. In EP 0376322 ist ein Verfahren beschrieben, bei dem dreidimensionale Bilder hergestellt werden, indem auf eine expandierbare Partikel enthaltende Grundschicht ein Bild mit einer Farbe erzeugt wird, die Licht unter Erwärmung absorbiert. Unterhalb der Farbe befindliche Partikel gehen durch die Erwärmung in einen expandierten Zustand über. Aus GB 1 442 823 ist es bekannt, auf eine Oberfläche eine zunächst fließfähige und später zu erhabenen Strukturen aushärtende Masse zu applizieren. Bei dem bekannten Verfahren enthält die aufgebrachte Masse Partikel, welche bei Erwärmung in einen expandierten Zustand übergehen und dadurch das Volumen der aufgebrachten Strukturen vergrößern. Aufgrund der Fließfähigkeit im Zeitpunkt der Applikation ist eine exakt reproduzierbare Form nur schwierig zu erreichen, was insbesondere dann zu nicht tolerierbaren Ergebnissen führt, wenn ein aus einer Vielzahl gleichförmiger Strukturen bestehendes Muster erzeugt werden soll. Durch das Verfließen der aufgebrachten Massen entstehen Strukturen oder Muster mit unscharfen oder ineinanderfließenden Rändern. Das exakte kontrollierte Aufbringen von fließfähigen Massen ist außerdem technisch relativ aufwendig, da Vorrichtungen mit exakt arbeitenden Dosiersystemen erforderlich sind.The invention relates to a method for the production of surface coatings of pens and a pin with a surface coating. Surfaces of everyday objects are often provided with a coating, for example by spraying or dipping with a paint coating. For a visually pleasing surface of an object, further measures for surface design are usually required. It is also common for a coating to have special haptic properties, for example increased grip. The application of a coherent, the grip-increasing coating prepares usually no special difficulties. This is different if the grip of the surface is to be achieved by protruding surface regions of the coating, for example raised structures of non-slip masses in the form of knobs, ribs or the like. At one off DE 203 14 274 U1 known pen are a variety of nubs in the form of an initially flowable, later solidifying mass applied to the pin surface. In EP 0376322 For example, a method is described in which three-dimensional images are produced by forming on an expandable particle-containing base layer an image having a color which absorbs light under heating. Below the color particles go through the heating in an expanded state. Out GB 1 442 823 It is known on a surface of an initially flowable and later to raised structures apply hardening mass. In the known method, the applied mass contains particles which when heated in an expanded state and thereby increase the volume of the applied structures. Due to the flowability at the time of application, a precisely reproducible form is difficult to achieve, which leads to intolerable results, in particular, when a pattern consisting of a plurality of uniform structures is to be produced. The flowing of the applied masses creates structures or patterns with blurred or merging edges. The exact controlled application of flowable masses is also technically relatively expensive, since devices with exactly working metering systems are required.

Davon ausgehend ist es die Aufgabe der Erfindung, ein verfahren vorzuschlagen, mit dem sich auf technisch einfache Weise auf Stiften qualitativ hochwertige, optisch und haptisch ansprechende Beschichtungen mit erhabenen Bereichen herstellen lassen. Aufgabe ist es weiterhin, einen Stift mit einer qualitativ hochwertigen, optisch und haptisch ansprechenden Oberflächenbeschichtung zu schaffen.On this basis, it is the object of the invention to propose a method with which can produce in a technically simple manner on pens high-quality, optically and haptically pleasing coatings with raised areas. The task is still to create a pen with a high-quality, optically and haptically pleasing surface coating.

Diese Aufgaben werden nach Anspruch 1 bzw. nach Anspruch 11 gelöst. Bei dem Verfahren nach Anspruch 1 wird zumindest auf einem Teil der Oberfläche eine Beschichtungsmasse aufgebracht, in der expandierbare Partikel enthalten sind, und in einem Teilflächenbereich der Beschichtung die Partikel zur Expansion gebracht werden, wodurch der Teilflächenbereich als erhabene Struktur aus der Beschichtung hervorsteht. Durch diese Verfahrensweise ergeben sich eine Vielzahl von gestalterischen Möglichkeiten, indem auf technisch einfache Weise auf einer Oberfläche eines Gegenstandes, insbesondere eines Blei-, Farb-, und Kosmetikstiftes Flächenbereiche mit unterschiedlicher Dicke und dadurch beispielsweise erhabene Strukturen zur Erhöhung der Griffigkeit erzeugt werden können. Dies erfolgt durch eine selektive Expansion der in der aufgebrachten Beschichtung enthaltenen vorzugsweise thermisch expandierbaren Partikel. Der Anteil der erhabenen Flächenbereiche kann z.B. größer sein als die übrigen Bereiche der Beschichtung, so dass die Designelemente wie Muster oder Schriftzüge vertieft sind.These objects are achieved according to claim 1 and claim 11, respectively. In the method according to claim 1, at least on a part of the surface, a coating composition is applied in which expandable particles are contained, and in a partial area of the coating, the particles are brought to expand, whereby the partial surface area protrudes from the coating as a raised structure. This procedure results in a variety of design options, by surface areas of different thickness and thus, for example, raised structures to increase the grip can be produced in a technically simple manner on a surface of an article, in particular a lead, color, and cosmetic pencil. This is done by a selective expansion of the particles preferably contained in the applied coating thermally expandable. For example, the proportion of the raised surface areas may be greater than the remaining areas of the coating, so that the design elements such as patterns or lettering are recessed.

Als expandierbare Partikel werden bei einer besonders bevorzugten Verfahrensweise Mikrohohlkugeln, insbesondere solche verwendet, die im nicht expandierten Zustand eine mittleren Partikelgröße von 2 µm bis 45 µm haben. Mikrohohlkugeln bestehen aus einem thermisch erweichbaren Polymermantel, der eine leicht verdampfbare Flüssigkeit umschließt. Bei Erwärmung erweicht das Polymermaterial und die Mikrohohlkugel wird durch die im Inneren verdampfende Flüssigkeit um ein Vielfaches ihrer ursprünglichen Größe aufgebläht. Die expandierenden Mikrohohlkugeln führen so zu einer Volumenvergrößerung der Beschichtung, wodurch erhabene Strukturen bzw. Flächenbereiche entstehen, die eine erhöhte Oberflächenrauhigkeit und Griffigkeit aufweisen.In an especially preferred procedure, hollow hollow spheres, in particular those which have an average particle size of 2 μm to 45 μm in the unexpanded state, are used as expandable particles. Hollow microspheres consist of a thermally softenable polymer sheath that encloses an easily evaporable liquid. Upon heating, the polymer material softens and the hollow microsphere is inflated by the liquid evaporating inside many times its original size. The expanding hollow microspheres thus lead to an increase in the volume of the coating, resulting in raised structures or surface areas having an increased surface roughness and grip.

Darüber hinaus ist aber auch die Verwendung von anorganischen Partikeln wie Blähglimmer oder insbesondere Blähgraphit oder von Partikeln aus expandierbaren Kunststoffen denkbar.In addition, however, the use of inorganic particles such as expanded mica or in particular expandable graphite or particles of expandable plastics is conceivable.

Die Expansion der Partikel erfolgt vorzugsweise in Kontakttechnik. Dabei wird ein mindestens auf die erforderliche Expansionstemperatur erhitzter Körper mit einer der Umrissform und Fläche des erhabenen Flächenbereichs der Beschichtung entsprechenden Kontaktfläche mit der Beschichtung in Berührung gebracht. Im Gegensatz zu den eingangs erwähnten herkömmlichen Methoden lassen sich Muster mit scharf umgrenzten und vor allen Dingen exakt gleichförmigen erhabenen Strukturen erzeugen. Zur Erwärmung eines dem späteren erhabenen Flächenbereichs entsprechenden Areals werden bei einer bevorzugten Verfahrensvariante etwa in einem Hubstempel integrierte erhitzte Körper zur Oberfläche des Gegenstandes hin und nach der Expansion der Partikel von dieser wieder weg bewegt.The expansion of the particles is preferably carried out in contact technology. This is a heated at least to the required expansion temperature body with one of the outline shape and surface of the raised surface area of the coating corresponding contact surface brought into contact with the coating. In contrast to the conventional methods mentioned in the introduction, patterns can be produced with sharply delimited and, above all, exactly uniform, raised structures. In order to heat an area corresponding to the later raised surface area, in a preferred variant of the method, heated bodies integrated in a lifting ram, for example, are moved away from the surface of the object towards and after expansion of the particles.

Die Expansion der Partikel kann auch kontaktlos erfolgen, indem beispielsweise ein einem erhabenen Flächenbereich entsprechender Bereich der Beschichtung mit einem energiereichen Lichtstrahl, etwa einem Laserstrahl beaufschlagt wird. Die Querschnittsfläche eines solchen Lichtstrahls lässt sich ebenfalls exakt festlegen, insbesondere wenn Laserlicht verwendet wird.The expansion of the particles can also take place without contact, for example by applying a region of the coating corresponding to a raised surface area to a high-energy light beam, for example a laser beam. The cross-sectional area of such a light beam can also be set exactly, in particular if laser light is used.

Die Applikation der Beschichtung ist in jedem Fall problemlos beispielsweise durch Tauchen, Sprühen, Streichen, mit dem Durchstoßverfahren oder auch durch Siebdruck möglich. Letzteres Verfahren eignet sich beispielsweise dann, wenn nur Teilbereiche der Oberfläche mit einer expandierende Partikel enthaltenden Beschichtung versehen werden sollen. Bei einem Durchstoßverfahren werden beispielsweise holzummantelte Stifte über eine Eingangsöffnung in einen flüssige Beschichtungsmasse enthaltenden Behälter eingeschoben, wobei die Stifte den Behälter über eine Ausgangsöffnung wieder verlassen, an welcher überflüssige Beschichtungsmasse abgestreift wird. Nach Trocknung oder bereits im nicht ausgehärteten Zustand der Beschichtung werden die Partikel eines bestimmten Teilflächenbereiches auf die jeweils geeigneten Art und Weise, insbesondere durch Wärmeeinwirkung in ihren expandierten Zustand überführt.The application of the coating is in any case easily possible for example by dipping, spraying, brushing, with the puncture process or by screen printing. The latter method is suitable, for example, if only partial areas of the surface are to be provided with a coating containing expanding particles. In a puncture method, for example, wood-sheathed pins are inserted via an input opening into a container containing liquid coating material, the pins leaving the container again via an exit opening, on which superfluous coating material is stripped off. After drying or already in the uncured state of the coating, the particles of a certain partial surface area in the appropriate manner, in particular converted by heat in its expanded state.

Die expandierenden Partikel können zum Teil die Oberfläche der Beschichtung durchbrechen, wodurch Risse und Grate entstehen, die einerseits eine optischen und andererseits einen haptischen Effekt ergeben. Es ist denkbar, dass für eine griffige Beschichtung ein Material verwendet wird, das selbst rutschfest bzw. griffig ist. Die expandierten Partikel dienen dann in erster Linie dazu, erhabene Teilflächenbereiche bzw. Strukturen zu bilden und etwa infolge der genannten Riss- und Gratbildung die Griffigkeit weiter zu erhöhen. Denkbar ist aber auch, dass die Partikel vorzugsweise kontaktlos expandiert werden, wenn die Beschichtungsmasse noch nicht vollständig erhärtet ist, beispielsweise noch zähflüssig ist. Als Ergebnis könnten erhabene Flächenbereiche erhalten werden, in denen die expandierten Partikel die Oberfläche der Beschichtung nicht durchbrechen, sondern mit Beschichtungsmasse überzogen sind.The expanding particles may partially breach the surface of the coating, resulting in cracks and burrs that give an optical and a haptic effect on the one hand. It is conceivable that a material is used for a non-slip coating or non-slip grip. The expanded particles are then used primarily to form raised partial surface areas or structures and, for example, as a result of the mentioned formation of cracks and burrs, to further increase the grip. It is also conceivable, however, that the particles are preferably expanded contactlessly when the coating composition is not fully hardened, for example, is still viscous. As a result, raised areas could be obtained in which the expanded particles do not break the surface of the coating but are coated with coating material.

In Fällen von Stiften oder sonstigen Gegenständen mit rundem oder ovalem Querschnitt, etwa von Werkzeugstielen wie Pinsel- oder Hammerstielen kann die oben erwähnte Kontakttechnik so abgewandelt werden, dass der zu behandelnde Gegenstand auf einer Fläche eines Körpers abgerollt wird, auf der mindestens die Expansionstemperatur der Partikel aufweisende Kontaktflächen angeordnet sind. Mit dieser Rolltechnik können auf technisch sehr einfache Weise erhabene Strukturen in komplexen Mustern erzeugt werden.In cases of pens or other objects of circular or oval cross-section, such as tool handles such as brush or hammer handles, the above-mentioned contact technique may be modified so that the object to be treated is unrolled on a surface of a body at least the expansion temperature of the particles having contact surfaces are arranged. With this rolling technique, it is possible to produce raised structures in complex patterns in a technically very simple way.

Ein die eingangs erwähnte Aufgabe lösender Stift weist eine Beschichtung mit expandierbaren Partikeln auf, wobei in einem Teilflächenbereich der Beschichtung die Partikel expandiert sind, wodurch dieser als erhabene Struktur aus der Beschichtung hervorsteht. Wie bereits weiter oben geschildert, ist neben der vorteilhaften einfachen Herstellung insbesondere der gestalterische Freiheitsgrad für Oberflächengestaltungen hervorzuheben. Beispielsweise kann der jeweilige Anteil der erhabenen bzw. nicht erhabenen Teilflächenbereiche variieren. Erhabene Beschichtungsbereiche können etwa den weitaus größeren Teil einer beschichteten Fläche bilden, d.h. die geschmacklich prägenden Elemente der beschichteten Oberfläche werden, wie weiter oben schon erwähnt, durch Vertiefungen z.B. in Form eines Schriftzuges gebildet. Eine weitere Gestaltungsmöglichkeit besteht darin, dass die Beschichtungsmasse und die beigemengten Partikel unterschiedliche Färbungen aufweisen. Dadurch lassen sich erhabene und nicht erhabene bzw. vertiefte Teilflächenbereiche mit deutlich unterschiedlichem farblichen Erscheinungsbild erzeugen.One of the above-mentioned object solving pin has a coating with expandable particles, wherein in a partial surface area of the coating, the particles expands are, whereby this protrudes as a raised structure of the coating. As already described above, in addition to the advantageous simple production in particular the degree of design freedom for surface designs should be emphasized. For example, the respective proportion of the raised or non-raised partial surface areas may vary. Raised coating areas can form about the much larger part of a coated surface, ie the flavor-influencing elements of the coated surface, as already mentioned above, formed by depressions, for example in the form of a lettering. Another design option is that the coating composition and the admixed particles have different colorations. As a result, raised and not raised or recessed partial surface areas can be produced with a distinctly different color appearance.

Besonders vorteilhaft lassen sich die gestalterischen Effekte bei Massenprodukten wie Blei-, Farb- und Kosmetikstiften anwenden. Insbesondere gilt dies für holzummantelte Stifte. Bevorzugt sind Mikrohohlkugeln als expandierbare Partikel, wobei diese im Ausgangszustand eine mittlere Partikelgröße von 5-20 µm aufweisen und im expandierten Zustand mindestens um das Doppelte vergrößert sind.The design effects can be used particularly advantageously for mass products such as lead, color and cosmetic pencils. This applies in particular to wood-clad pins. Preference is given to hollow microspheres as expandable particles, these having an average particle size of 5-20 μm in the initial state and being at least doubled in the expanded state.

Die Erfindung wird nun unter Bezugnahme auf die beigefügten Zeichnungen näher erläutert. Es zeigen:

Fig. 1
eine schematische Querschnittsdarstellung durch einen Oberflächenbereich eines Gegenstands, beispielsweise eines Stifts, welche die thermische Behandlung einer expandierbaren, Partikel enthaltenden Beschichtung in Kontakttechnik verdeutlicht,
Fig. 2
den Oberflächenbereich von Fig. 1 nach der thermischen Behandlung,
Fig. 3
eine Draufsicht auf einen Stift, dessen Oberfläche nur teilweise mit einer expandierbare Partikel enthaltenden Beschichtung versehen ist,
Fig. 4
eine schematische Querschnittsdarstellung, welche eine Verfahrensvariante der Kontakttechnik nach Fig. 1 zeigt,
The invention will now be explained in more detail with reference to the accompanying drawings. Show it:
Fig. 1
3 shows a schematic cross-sectional view through a surface region of an object, for example a pin, which illustrates the thermal treatment of an expandable, particle-containing coating in contact technology,
Fig. 2
the surface area of Fig. 1 after the thermal treatment,
Fig. 3
a top view of a pin whose surface is only partially provided with a coating containing expandable particles,
Fig. 4
1 is a schematic cross-sectional view showing a variant of the method according to FIG. 1,

Ein Gegenstand, im Folgenden wird auf einen holzummantelten Stift 1 bezug genommen, dessen Oberfläche mit erhabenen Strukturen bzw. Flächenbereichen 2,2a versehen werden soll, wird zunächst entweder auf seiner gesamten Oberfläche 3 oder einer Teilfläche 3a (Fig. 3), eine expandierbare Partikel, beispielsweise Mikrohohlkugeln enthaltende Beschichtung 4 aufgebracht. Dabei können z.B. Mikrohohlkugeln mit einem Mantel aus Mischpolymer (CAS-Nr. 25214) verwendet werden, die von der Akzo Nobel Chemicals GmbH, D-46446 Emmerich erhältlich sind. Als Ausgangsmasse für die Beschichtung kann etwa eine Zubereitung gemäß den weiter unten aufgeführten Beispielen verwendet werden. Im Falle eines Stiftes 1, der insgesamt mit einer Beschichtung 4 versehen werden soll, wird zweckmäßigerweise das weiter oben schon kurz geschilderte Durchstoßverfahren verwendet. Sollen dagegen nur Teilflächen 3a mit einer expandierbare Partikel enthaltenden Beschichtung 4 versehen werden, wie etwa bei dem in Fig. 3 gezeigten Stift 1a, so kann dies z.B. im Siebdruckverfahren erfolgen. Nachdem die Beschichtung 4 erhärtet ist, wird eine selektive Expansion vorgenommen. Dazu wird ein Areal 5 der Oberfläche 3 bzw. der Beschichtung 4 auf eine Temperatur erwärmt, die oberhalb der Expansionstemperatur der jeweils verwendeten Partikel liegt. Die Größe des Areals 5 entspricht dabei einem späteren erhabenen Flächenbereich 2,2a. Wird, wie in Fig. 1 gezeigt, für die Expansion der Partikel die Kontakttechnik angewendet, wird ein auf mindestens die jeweilige Expansionstemperatur erhitzter Körper 6 mit einer einem erhabenen Flächenbereich 2,2a entsprechenden Kontaktfläche 7 mit der Beschichtung 4 in Kontakt gebracht. Wenn eine Vielzahl von erhabenen Strukturen 2,2a erzeugt werden soll, sind eine entsprechende Anzahl von Körpern 6 erforderlich. Diese können allesamt an einen gemeinsamen Träger 8, beispielsweise in einer oder mehreren Reihen angeordnet sein. Die Kontaktfläche 7 ist im wesentlichen der Kontur der zu behandelnden Oberfläche angepasst, beispielsweise bei einem Stift ebenso wie dessen Oberfläche zylinderförmig gekrümmt. Die Querschnittsform eines erhabenen Flächenbereiches 2,2a lässt sich in gewissem Ausmaß durch die Form der Kontaktfläche 7 beeinflussen. Wie in Fig. 2 verdeutlicht ist, kann die Oberseite eines Flächenbereiches 2 etwa entsprechend der Oberfläche des Stiftes 1 ausgeformt sein, d.h. sie verläuft etwa koaxial zur Stiftoberfläche 3. Denkbar ist jedoch auch eine z.B. ballige Ausformung eines erhabenen Flächenbereiches 2a. Eine solche Ausgestaltung wird etwa durch eine komplementär, also konkav ausgeformte Kontaktfläche 7a unterstützt.An article, hereinafter referred to a wood-clad pencil 1, whose surface with raised structures or surface areas 2.2a to be provided, is initially applied either on its entire surface 3 or a partial surface 3a (Fig. 3), an expandable particles, such as hollow microspheres coating 4 containing. In this case, for example, hollow microspheres with a coat of mixed polymer (CAS No. 25214) can be used, which are available from Akzo Nobel Chemicals GmbH, D-46446 Emmerich. As a starting material for the coating can be used as a preparation according to the examples below. In the case of a pin 1, which is to be provided with a total of 4 coating, the above-mentioned puncture method is advantageously used. If, on the other hand, only partial surfaces 3a are to be provided with a coating 4 containing expandable particles, as in the case of the pen 1a shown in FIG. 3, this can be done, for example, by screen printing. After the coating 4 has hardened, a selective expansion is performed. For this purpose, an area 5 of the surface 3 or the coating 4 is heated to a temperature which is above the expansion temperature of the particles used in each case. The size of the area 5 corresponds to a later raised area 2.2 a. If, as shown in FIG. 1, the contact technique is used for the expansion of the particles, a body 6 heated to at least the respective expansion temperature is brought into contact with the coating 4 with a contact surface 7 corresponding to a raised surface area 2. When a plurality of raised structures 2,2a are to be produced, a corresponding number of bodies 6 are required. These can all be arranged on a common carrier 8, for example in one or more rows. The contact surface 7 is substantially adapted to the contour of the surface to be treated, for example in a pen as well as its surface curved in a cylindrical shape. The cross-sectional shape of a raised surface area 2,2a can be influenced to some extent by the shape of the contact surface 7. As illustrated in FIG. 2, the upper side of a surface region 2 can be formed approximately corresponding to the surface of the pin 1, ie it runs approximately coaxially to the pin surface 3. However, it is also conceivable, for example, a spherical shape of a raised surface region 2 a. Such a configuration is supported, for example, by a complementary, ie concavely shaped, contact surface 7a.

Bei dem Stift 1a von Fig. 3 sind auf dessen Oberfläche 3 Teilflächen 3a mit Hilfe eines Siebdruckverfahrens oder auch auf andere Weise aufgebracht. Innerhalb der Teilflächen 3a sind erhabene Strukturen bzw. Flächenbereiche 2b vorhanden, die beispielsweise mit der oben beschriebenen Kontakttechnik erzeugt wurden.In the case of the pin 1a of FIG. 3, 3 partial surfaces 3a are applied on the surface thereof by means of a screen-printing method or else in another way. Within the partial surfaces 3 a, there are raised structures or surface regions 2 b which have been produced, for example, by the contact technique described above.

In Fig. 4 ist eine Verfahrensvariante schematisch dargestellt, bei der ein zylindrischer Gegenstand, etwa ein Stift 1b auf der Oberfläche eines beispielsweise plattenförmigen Werkzeugs 10 in Richtung des Pfeiles 11 gerollt wird, um in bestimmten Oberflächenbereichen eine Partikelexpansion auszulösen. Zu diesem Zweck sind in dem Werkzeug erhitzten Körpern entsprechende Heizelemente 12 vorhanden, die eine mit der Oberfläche des Werkzeugs fluchtende Kontaktfläche 7a aufweisen. Die Heizelemente 12 sind in einem dem späteren Muster der erzeugten erhabenen Strukturen entsprechenden Raster angeordnet. Ihre Kontaktfläche 7a entspricht der Größe der zu erzeugenden erhabenen Flächenbereiche 2c. Die jeweils erforderliche Relativgeschwindigkeit zwischen dem Stift 1b und dem Werkzeug 10 hängt von der gewünschten Kontaktdauer zwischen der Beschichtung 4 und einem Heizelement 12 ab. Die thermische Behandlung in der Beschichtung 4 kann auch so erfolgen, dass der Stift ortsfest und drehbar um seine Mittellängsachse gehalten ist, wobei das Werkzeug 10 beispielsweise in Richtung des Pfeiles 11 bewegt wird.FIG. 4 schematically shows a variant of a method in which a cylindrical object, such as a pin 1b, is rolled on the surface of, for example, a plate-shaped tool 10 in the direction of the arrow 11 in order to trigger particle expansion in certain surface areas. For this purpose, in the tool heated bodies corresponding heating elements 12 are present, which have a flush with the surface of the tool contact surface 7a. The heating elements 12 are arranged in a grid corresponding to the later pattern of the raised structures produced. Its contact surface 7a corresponds to the size of the raised surface areas 2c to be generated. The respectively required relative speed between the pin 1b and the tool 10 depends on the desired contact duration between the coating 4 and a heating element 12. The thermal treatment in the coating 4 can also be carried out so that the pin is held stationary and rotatable about its central longitudinal axis, wherein the tool 10 is moved, for example in the direction of the arrow 11.

Als Beschichtung kommen exemplarisch folgende Rezepturen in Betracht (Prozentangaben sind Gewichtsprozent):By way of example, the following formulations may be considered as a coating (percentages are by weight):

Beispiel 1:Example 1: Für das Durchstoßverfahren geeigneter Lack auf WasserbasisFor the puncture process suitable water-based paint

Bindemittel: wässrige Polyurethan-Dispersion (Alberdingk APU 1061)Binder: aqueous polyurethane dispersion (Alberdingk APU 1061) 1)1) 83 %83% Polyurethan-Verdicker (Rheolate 255)Polyurethane thickener (Rheolate 255) 2)2) 1 %1 % Polyurethan-Verdicker (Rheolate 244)Polyurethane thickener (Rheolate 244) 2)2) 2,3 %2.3% Dispergier-Additiv (Disperbyk-192)Dispersing additive (Disperbyk-192) 3)3) 1 %1 % expandierbare Mikrohohlkugeln (Expancel 551 DU40)Expandable hollow microspheres (Expancel 551 DU40) 4)4) 9 %9% Netzmittel (Tego Wet 510)Wetting agent (Tego Wet 510) 5)5) 0,3 %0.3% mineralöl-basierter Entschäumer (Drewplus T 4202)Mineral oil-based defoamer (Drewplus T 4202) 6)6) 0,4 %0.4% wässrige Pigmentpräparation (Levanyl Blau G-LF) (Expancel 820 SL 40)aqueous pigment preparation (Levanyl Blue G-LF) (Expancel 820 SL 40) 7)7) 3 %3%

Beispiel 2:Example 2: Farbloser Decklack auf WasserbasisColorless water-based topcoat

Bindemittel: wässrige Polyurethan-Dispersion (Alberdingk U 210)Binder: aqueous polyurethane dispersion (Alberdingk U 210) 1)1) 80 %80% expandierbare Mikrohohlkugeln (Expancel 820 SL 40)expandable hollow microspheres (Expancel 820 SL 40) 4)4) 18 %18% Polyurethan-Verdicker (Rheolate 244)Polyurethane thickener (Rheolate 244) 2)2) 1,5 %1.5% Verdicker (DSX 3290)Thickener (DSX 3290) 8)8th) 0,2 %0.2% mineralöl-basierter Entschäumer (Drewplus T 4202)Mineral oil-based defoamer (Drewplus T 4202) 6)6) 0,3 %0.3%

Beispiel 3:Example 3: Farbiger UV-härtbarer LackColored UV-curable lacquer

UV-Bindemittel: (Genomer 1343)UV binder: (Genome 1343) 9)9) 13 %13% Polymerisationsinhibitor (Genorad 16)Polymerization inhibitor (Genorad 16) 9)9) 0,3 %0.3% UV-Bindemittel (Genomer 5275)UV binder (Genome 5275) 9)9) 11 %11% Verdicker (Aerosil 380)Thickener (Aerosil 380) 10)10) 0,3 %0.3% UV-Bindemittel, (Speciality Resin 01-554)UV binder, (Specialty Resin 01-554) 9)9) 16 %16% UV-Photoinitiator (Irgacure 819)UV photoinitiator (Irgacure 819) 11)11) 1 %1 % UV-Photoinitiator, (Darocur 1173)UV photoinitiator, (Darocur 1173) 11)11) 2 %2% UV-Pigmentpräparation, (Microlith Black C-K)UV pigment preparation, (Microlith Black C-K) 11)11) 0,5 %0.5% Entschäumer (Byk 020)Defoamer (Byk 020) 3)3) 0,2 %0.2% Softfeeling-Additiv (Daiplacoat RHC-731 Clear)Softfeeling additive (Daiplacoat RHC-731 Clear) 12)12) 11 %11% Mattierungsmittel (Syloid Rad 2105)Matting agent (Syloid Rad 2105) 13)13) 3 %3% UV-Bindemittel, (Genomer 6050/TM)UV binder, (Genomer 6050 / TM) 9)9) 29 %29% expandierbare Mikrohohlkugeln (Expancel 551 DU 40)Expandable hollow microspheres (Expancel 551 DU 40) 4)4) 12,7 %12.7%

Beispiel 4:Example 4: Farbloser lösemittelhaltiger DecklackColorless solvent-based topcoat

Bindemittel (Nitrocellulose H 22)Binding agent (nitrocellulose H 22) 14)14) 19 %19% Weichmacher auf der Basis von Tributylcitrat (Citrofol A 1)Plasticizer based on tributyl citrate (Citrofol A 1) 4)4) 5 %5% Harz-Bindemittel, (Kunstkarz SK)Resin binder, (Kunstkarz SK) 15)15) 6 %6% Lösungsmittel (Aceton)Solvent (acetone) 16)16) 60 %60% expandierbare Hohlkugeln (Expancel 091 DU 120)expandable hollow spheres (Expancel 091 DU 120) 4)4) 10 %10%

Beispiel 5:Example 5: Für den Siebdruck geeigneter Farblack auf WasserbasisFor water-based printing inks suitable for screen printing

Bindemittel: wässrige Polyurethan-Dispersion (Liopur 97-282)Binder: aqueous polyurethane dispersion (Liopur 97-282) 17)17) 50,6 %50.6% Polyurethan-Verdicker (Rheolate 244)Polyurethane thickener (Rheolate 244) 2)2) 3 %3% wässrige Pigmentpräparation (Levanyl Blau G-LF)aqueous pigment preparation (Levanyl Blue G-LF) 7)7) 0,7 %0.7% wässrige Pigmentpräparation (Levanox Weiß RNZ-SF)aqueous pigment preparation (Levanox white RNZ-SF) 7)7) 5 %5% Lösungsmittel (1,2 Propandiol)Solvent (1,2-propanediol) 18)18) 10 %10% Entschäumer (EFKA 2526)Defoamer (EFKA 2526) 19)19) 0,7 %0.7% expandierbare Mikrohohlkugeln (Expancel 091 DU 140)Expandable hollow microspheres (Expancel 091 DU 140) 4)4) 30 %30%

Hersteller:Manufacturer:

  1. 1) Alberdingk Boley GmbH, D-47829 Krefeld1) Alberdingk Boley GmbH, D-47829 Krefeld
  2. 2) Elementis, Ambachtsweg 8, 4906 CH Oosterhout, Holland2) Elementis, Ambachtsweg 8, 4906 CH Oosterhout, The Netherlands
  3. 3) Byk Chemie GmbH, D-46462 Wesel3) Byk Chemie GmbH, D-46462 Wesel
  4. 4) Akzo Nobel Chemicals GmbH, D-46446 Emmerich4) Akzo Nobel Chemicals GmbH, D-46446 Emmerich
  5. 5) Tego Chemie Service GmbH, D-45127 Essen5) Tego Chemie Service GmbH, D-45127 Essen
  6. 6) Drew Ameroid Deutschland GmbH, D-63073 Offenbach6) Drew Ameroid Germany GmbH, D-63073 Offenbach
  7. 7) Bayer AG, D-51368 Leverkusen7) Bayer AG, D-51368 Leverkusen
  8. 8) Cognis Deutschland GmbH, D-40551 Düsseldorf8) Cognis Germany GmbH, D-40551 Dusseldorf
  9. 9) Rahn AG, CH-8050 Zürich9) Rahn AG, CH-8050 Zurich
  10. 10) Degussa AG, D-60287 Frankfurt a. M.10) Degussa AG, D-60287 Frankfurt a. M.
  11. 11) Ciba, CH-4002 Basel11) Ciba, CH-4002 Basel
  12. 12) Gustav Grolman GmbH & Co. KG, D-41468 Neuss12) Gustav Grolman GmbH & Co. KG, D-41468 Neuss
  13. 13) Grace Davison Europe, D-67547 Worms13) Grace Davison Europe, D-67547 Worms
  14. 14) Hagedorn AG, D-49078 Osnabrück14) Hagedorn AG, D-49078 Osnabrück
  15. 15) Degussa Hüls / Creanova Spezialchemie GmbH, D 53859 Niederkassel15) Degussa Hüls / Creanova Specialty Chemicals GmbH, D 53859 Niederkassel
  16. 16) Biesterfeld Spezialchemie GmbH, D-20095 Hamburg16) Biesterfeld Spezialchemie GmbH, D-20095 Hamburg
  17. 17) Synthopol Chemie, D-21605 Buxtehude17) Synthopol Chemistry, D-21605 Buxtehude
  18. 18) Merck KGaA, D-64293 Darmstadt18) Merck KGaA, D-64293 Darmstadt
  19. 19) EFKA Additives B.V., 8440 AN Heerenveen, Netherlands19) EFKA Additives B.V., 8440 AN Heerenveen, Netherlands
BezugszeichenlisteLIST OF REFERENCE NUMBERS

11
Stiftpen
22
erhabener Flächenbereichraised surface area
33
Oberflächesurface
3a3a
Teilflächesubarea
44
Beschichtungcoating
55
ArealAreal
66
Körperbody
77
Kontaktflächecontact area
88th
Trägercarrier
99
Oberseitetop
1010
WerkzeugTool
1111
Pfeilarrow
1212
Heizelementheating element

Claims (14)

  1. Method for the surface coating of pins, in which
    - a coating (4) in which thermally expandable particles are contained is applied onto at least one part of the surface (3), and
    - in a part surface area (2, 2a, 2b, 2c) of the coating (4), the particles are brought to expansion, as a result of which the part surface area (2, 2a, 2b, 2c) projects as a raised structure from the coating.
  2. Method according to Claim 1, characterised by the use of thermally expandable particles.
  3. Method according to Claim 2, characterised in that thermally expandable micro hollow spheres are used.
  4. Method according to Claim 3, characterised by the use of micro hollow spheres with a mean size from 2 µm to 45 µm in the non-expanded state.
  5. Method according to any one of Claims 2 to 4, characterised in that the heating of an area (5) corresponding to a later raised part surface area (2, 2a) is effected by contact with the contact surface (7) of a body (6) heated at least to the expansion temperature of the particles.
  6. Method according to Claim 5, characterised in that for the heating of the area (5), the body (6) is brought towards the surface (3) and moved away from it after the expansion of the particles.
  7. Method according to Claim 6, characterised in that it is used for pins which are triangular or hexagonal in cross-section.
  8. Method according to Claim 5, characterised in that a pin with round or oval cross-section is rolled on the surface of a tool (10), arranged on which are contact surfaces (7a) having at least the expansion temperature of the particles.
  9. Method according to one or more of the preceding claims, characterised in that raised part surface areas (2, 2a) are thereby produced on the surface (3) of a pin (1) made of wood.
  10. Pin, the surface of which is provided at least in part with a coating (4), characterised in that the coating (4) contains expandable particles and in that the particles are expanded in a raised part surface area (2, 2a) of the coating, as a result of which the part surface area (2, 2a, 2b, 2c) projects as a raised structure from the coating.
  11. Pin according to Claim 10, characterised in that the pin (1) is a pin encased in wood.
  12. Pin according to Claim 10 or 11, characterised in that the coating (4) contains micro hollow spheres as expandable or expanded particles.
  13. Pin according to Claim 12, characterised in that the micro hollow spheres have in the initial state a mean particle size of 2 to 45 µm and in the expanded state are enlarged to at least double the size.
  14. Pin according to any one of Claims 10 to 13, characterised in that the portion of the part surface areas (2, 2a, 2b, 2c) with expanded particles is larger than the portion of the surface areas with non-expanded particles.
EP20050005101 2005-03-09 2005-03-09 Process for manufacturing of coatings with structured surface, applied especially for pencils, and object with structured surface Active EP1700713B1 (en)

Priority Applications (9)

Application Number Priority Date Filing Date Title
DE200520021097 DE202005021097U1 (en) 2005-03-09 2005-03-09 Pen with a surface coating
EP20050005101 EP1700713B1 (en) 2005-03-09 2005-03-09 Process for manufacturing of coatings with structured surface, applied especially for pencils, and object with structured surface
DE200550001677 DE502005001677D1 (en) 2005-03-09 2005-03-09 Process for the preparation of coatings with structured surface, used in particular for pens, and article with structured surface
AT05005101T ATE375260T1 (en) 2005-03-09 2005-03-09 METHOD FOR PRODUCING COATINGS WITH A STRUCTURED SURFACE, USED IN PARTICULAR FOR PINS, AND OBJECTS WITH A STRUCTURED SURFACE
PE2006000248A PE20061259A1 (en) 2005-03-09 2006-03-06 METHOD FOR COATING THE SURFACE OF PENCILS, AND PENCIL WHOSE SURFACE IS COATED IN ACCORDANCE WITH SUCH METHOD
MXPA06002606A MXPA06002606A (en) 2005-03-09 2006-03-07 Method of producing surface coatings on articles, and article having a surface coating.
BRPI0600811A BRPI0600811B1 (en) 2005-03-09 2006-03-09 process for the manufacture of pencil and pencil surface coatings with a surface coated with a
CNB2006100589524A CN100490995C (en) 2005-03-09 2006-03-09 Method of producing surface coatings on articles, particularly the pole body and the article having a surface coating
US11/372,436 US7351469B2 (en) 2005-03-09 2006-03-09 Method of producing surface coatings on articles, and article having a surface coating

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EP20050005101 EP1700713B1 (en) 2005-03-09 2005-03-09 Process for manufacturing of coatings with structured surface, applied especially for pencils, and object with structured surface

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EP (1) EP1700713B1 (en)
CN (1) CN100490995C (en)
AT (1) ATE375260T1 (en)
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DE502005001677D1 (en) 2007-11-22
US7351469B2 (en) 2008-04-01
CN100490995C (en) 2009-05-27
BRPI0600811B1 (en) 2016-09-27
BRPI0600811A (en) 2006-11-07
PE20061259A1 (en) 2006-12-07
ATE375260T1 (en) 2007-10-15
US20060204743A1 (en) 2006-09-14
DE202005021097U1 (en) 2007-03-01
CN1830580A (en) 2006-09-13

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