The present invention claims the benefit of and priority to German Patent Application No. 10 2019 118 684.6, filed on Jul. 10, 2019. The entire content of the aforementioned patent application is incorporated herein by reference.
The invention relates to a method for producing a molded part, in particular a decorative part and/or trim part designed as a molded part for a vehicle interior.
Numerous decorative and trim parts are installed in vehicle interiors, such as door trim, console panels, and instrument panels. The decorative and trim parts also include control buttons and their covers.
With such molded parts, there are always high demands on the visual design and great value is placed on attractive patterns and sometimes filigree designs with special effects.
One way to create different patterns is to use resist lacquer. Until now, the screen printing method has normally been used for printing resist lacquer. However, this requires a lot of effort for preparing, storing, and cleaning the screen. In addition, the graphic possibilities are limited when using the screen printing method and there may be inaccuracies in the fit for large screens.
The underlying object of the invention is therefore to provide a novel method for producing a molded part, in particular a method which at least largely overcomes the aforementioned disadvantages.
This object is achieved by the features of claim 1. Advantageous embodiments and refinements are provided in each of the dependent claims.
The inventive method for producing a molded part, in particular a decorative part and/or a trim part designed as a molded part for a vehicle interior, the molded part comprising a decorative coating with a molded part front side designed as visible side and a rear side opposing the front side and a substrate arranged on the rear side of the decorative coating, wherein the decorative coating comprises a decorative layer or is formed from a decorative layer, comprises the steps:
Surprisingly, it has been found that resist lacquer can also be processed with known digital printing machines. The advantages of the invention are thus, in particular, that molded parts can be printed with resist lacquer by means of known digital printing machines with the method according to the invention, which opens up new possibilities for different types of decorative patterns. Furthermore, the direct pressure on the material simplifies the process and achieves a flexible, rapid, and inexpensive method. Both vector and pixel graphics can be used for printing the molded part, and it is possible to place them on the molded part in a precise manner. In addition, semi-tones and color gradients can be realized, and it is also possible to implement particularly delicate decorative patterns.
The digital printing machine preferably comprises a 4-color print head, the resist lacquer being applied by means of the 4-color print head, and/or the digital printing machine comprising a print head with resist lacquer nozzle, the resist lacquer being applied by means of the resist lacquer nozzle. Thus it is possible to achieve good resolution even at 300 dpi; resolutions up to 700 dpi and higher are possible. In addition, the printing carried out by means of a digital printing machine can be combined with color and haptic printing and/or with screen or roller printing.
One refinement of the invention provides that the decorative layer is a metal sheet, preferably an aluminum sheet, the application of the resist lacquer being followed by a milling and/or brushing step in which the surface of the metal sheet is milled and/or brushed, the applied resist lacquer withstanding the milling and/or brushing, so that in the lacquer-free surface areas a surface hatching is produced on the metal sheet by means of the milling and/or brushing.
It can be provided that the resist lacquer is removed, in particular washed off, following the milling and/or brushing step, so that the surface of the metal sheet on the surface areas previously covered with resist lacquer remains untreated, that is, without surface hatching, compared to the milled and/or brushed surface areas.
The resist lacquer is preferably removed in a system, in particular a stripping system.
It can be provided that the resist lacquer is removed in one or more sub-steps, in particular in a number of washing and/or etching steps and/or chemical cleaning steps and/or radiation steps.
It can also be provided that the milling and/or brushing step is carried out with a milling and/or brushing tool.
One refinement of the invention provides that the milling and/or brushing step is carried out once or several times, in particular in succession, and/or that the surface of the metal sheet is partially milled and/or brushed or is milled and/or brushed across the entire surface.
For example, milling and/or brushing creates a cut with one or more cut directions on the surface of the metal sheet.
It can be provided that the pattern and/or symbol to be printed or the negative of the pattern and/or symbol to be printed is provided digitally by scanning a template or by using templates from a database and is made available to the digital printer.
According to one embodiment of the invention, in a final step, in particular after application of the resist lacquer and/or following the milling and/or brushing step and/or after removal of the resist lacquer, a protective and/or optical layer, in particular, a protective lacquer or a protective film, is applied to the front side of the decorative coating.
One refinement of the invention provides that the pattern and/or symbol, or the negative of the pattern and/or symbol to be printed, represents or embodies a textured structure and/or lettering. Other design options include organic decorative patterns, gradients or photo-realistic decorative patterns.
It can be provided that the resist lacquer is applied in one or more colors, and/or that one or more colored coatings are applied in addition to the resist lacquer.
Furthermore, it can be provided that the resist lacquer for forming the decorative coating is printed partially or over the entire surface area on the front side of the decorative layer in one or more coatings, in particular in order to form a three-dimensional surface structure on the front side of the decorative layer.
The inventive method is explained in more detail below also with regard to further features and advantages on the basis of the description of exemplary embodiments of the method and with reference to the accompanying schematic drawings. In the figures:
Corresponding parts and components are also identified with the same reference numbers in each of the various figures and exemplary embodiments.
Number | Date | Country | Kind |
---|---|---|---|
102019118684.6 | Jul 2019 | DE | national |
Number | Name | Date | Kind |
---|---|---|---|
5294 | Levett et al. | Sep 1847 | A |
1433892 | Kelly | Oct 1922 | A |
3365321 | Adler | Jan 1968 | A |
4271224 | Mizuno | Jun 1981 | A |
5721007 | Lynch | Feb 1998 | A |
20070026203 | Yamano | Feb 2007 | A1 |
20150042084 | Staub | Feb 2015 | A1 |
20180215190 | Reuther | Aug 2018 | A1 |
20200001647 | Reuther | Jan 2020 | A1 |
20210008914 | Rohmer | Jan 2021 | A1 |
Number | Date | Country |
---|---|---|
102013108666 | Mar 2015 | DE |
102010016794 | Jun 2018 | DE |
102017104658 | Sep 2018 | DE |
Entry |
---|
English translation of DE10201308666. |
English translation of DE102017104658. |
English translation of DE102010016794. |
Number | Date | Country | |
---|---|---|---|
20210008914 A1 | Jan 2021 | US |