The present invention relates to the production of flame-retardant plastic workpieces.
An injection molding method and an injection molding machine are described in German Patent No. 20 2007 018 370 111.
For many applications, such as household appliances or electric cars, there are increased demands on the plastic workpieces used, with regard to flame protection. Increased flame protection is usually achieved by incorporating additives in the compounds.
There is the necessity, however, for alternative methods for incorporating such additives.
Consequently, it is the object of the present invention to provide an alternative production method for producing flame-retardant plastic workpieces. The object is attained by the method according the present invention. According to that, a method is provided for producing flame-retardant plastic workpieces, including the steps:
It has turned out surprisingly that flame-retardant plastic workpieces are able to be produced in that way in a simple manner. In particular, it has turned out that the plastic workpieces thus produced frequently have one or more of the following advantages:
By the term “plastic workpiece” one may particularly understand, within the meaning of the present invention, that a plastic is brought into a form required for a specific application in an original form method or a converting method. Suitable plastics are particularly thermoplastics, such as polyolefins, polyamides, polyesters, polyacetals and/or polyketones, but also thermosetting plastics, glass fiber composites, aramid fiber composites and/or carbon fiber composites and/or elastomers, as well as mixtures of these materials.
By the term “flame-retardant” or “flame-retarded” within the meaning of the present invention one should understand especially that, by at least one additive, there results a minimization of the risk of fire, a reduction in the probability of ignition and/or a delayed development of fire. Suitable flame-retardant materials are, for example, red phosphorus, polybrominated and/or polychlorinated organic compounds, antimony trioxide, metal hydroxides, organic phosphorus compounds, melamine cyanurate, zinc borate, expandable graphite, PTFE, aluminum oxide and/or hexagonal boron nitride or mixtures of these materials.
By the term “material mold” within the meaning of the present invention one should particularly understand a mold with the aid of which the plastic workpiece is able to be produced, formed or modified, such as an injection molding tool, an extrusion tool, a compression molding die and/or a thermoforming tool.
By the term “molding” within the meaning of the present invention one should understand particularly any production method in which a plastic workpiece is produced, formed or modified using the material mold.
According to one preferred specific embodiment of the present invention, the method according to the present invention is an injection molding method, a thermoforming method, an extrusion method or an. extrusion blow-molding method. These methods have particularly proven themselves in practice.
By the term “injection molding method” one should understand particularly that a plastic is plasticized in an assembly and cyclically introduced into a material mold that has been brought to the correct temperature.
By “thermoforming method” one should particularly understand that at least one plastic semi-finished product is converted to a plastic state and then has its geometry changed by a material mold.
By the term “extrusion blow-molding” one should particularly understand that a plastic is continuously plasticized and is cyclically transferred to a material mold where, for example, its geometry is able to be changed by an inside pressure.
According to one preferred specific embodiment of the method, step a) is carried out in such a way that a solution of the flame retardant is applied to the material mold, or specific areas of the same, and the solvent is subsequently removed.
The application may take place in an open and/or closed tool, for instance, by spraying on, brushing on and/or injecting. The removal of the solvent may be done by drying, heating, applying a vacuum and/or blowing it off.
Alternatively or in supplement, the flame retardant may also be applied in powder form, for example.
The components named above as well as the ones described in the exemplary embodiments to be used according to the present invention are not subject to exceptional conditions as to their size, design, material selection and technical conception, so that the selection criteria known in this field of application may be applied without restriction.
In
The mold is then closed (
After the separation of die side 11 and ejector side 10 (
The individual combinations of the components and the features of the embodiments already mentioned are examples; the exchange and the substitutions of these teachings with other teachings included in this document with the cited documents are also explicitly taken into consideration. One skilled in the art will recognize that variations modifications and other embodiments that are described in this instance may also occur without deviating from the idea of the invention and the scope of the invention. Accordingly, the above description is to be regarded as exemplary and not as limiting. The word “include” used in the claims does not exclude other components or steps. The indefinite article “a” does not exclude the meaning of a plural. The mere fact that certain measures are recited in mutually different claims does not make it clear that a combination of these measures cannot be used to advantage. The scope of the present invention is defined in the following claims and the associated equivalents.
Number | Date | Country | Kind |
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102012204486.8 | Mar 2012 | DE | national |
Filing Document | Filing Date | Country | Kind |
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PCT/EP2013/053104 | 2/15/2013 | WO | 00 |