The invention relates to a method for producing an applicator for applying fluid or pasty media, comprising a container, which stores the medium in question, and an application element, which is attached to the container in a usage position in such a way that said application element provides the medium for application outside of the container through capillary action.
Applicators of this generic type are used for writing, drawing or painting and are particularly widely used as marking devices in the form of what are referred to as markers for forming color markings, for example for sections of text or drawings that are to be highlighted. In view of this wide range of applications, applicators of this kind are produced in large quantities, so that the level of the production costs incurred is a significant factor.
In view of this problem, the object of the invention is to provide a method, which makes it possible to produce applicators of the type being considered in a particularly efficient and therefore, cost-effective manner.
This object is achieved according to the invention by a method having the features of Claim I, in its entirety.
According to the characterizing part of claim 1, the invention provides that the container, which stores the medium in question, is formed in such a way that a flexible tube is formed out of a thermoplastic plastic material by extrusion, is inserted into a mold', and is expanded into a container in said mold, wherein the container that is formed is filled with the medium while said container is still inside the mold, in so doing, the invention exploits the production-related advantages of the known blow and fill process, which makes possible a particularly fast and efficient production of plastic containers, for example having an ampule form, wherein in the case of mass production, an especially short production rhythm can be achieved because the essential production processes such as forming the shape of the container can be carried out by means of applying an overpressure and/or a vacuum, as well as filling, while the container is still located inside the mold in a plastic, and therefore adaptable state.
While the formed and at least partially filled container is still located in the mold, the invention further provides that by separating the container from the extrusion tube at the upper side of the container, an opening is formed, by means of which the container is accessible at the upper side thereof for affixing the associated application element, in particular for inserting said application element into the interior of the container, wherein the application element, which is disposed in the usage position at the opening of the container, is affixed by means of a closing movement of movable mold parts, in that the malleable plastic material of the container is correspondingly molded, preferably in order to simultaneously form a closure to the container. This approach makes it possible to produce applicators at a higher speed of production so that large production numbers are particularly economically feasible.
The container can be advantageously formed in such a way that the flexible tube is inserted through the opened, movable head jaws of the mold into a lower mold, which forms the container, and in such a way that the head jaws are then closed in order to subsequently affix the inserted application element.
The configuration may be advantageously such that an application element is inserted, which has a retaining element, which forms an enclosure for a capillary material, a, strip-shaped material or a band-shaped material of the application element between a feed section, which extends into the container when in the usage position, and a delivery section, which is located outside of the container for the application, wherein the application element is affixed by molding the flexible tube on the retaining element by closing the head jaws.
It is of particular advantage that the flexible tube be separated above the head jaws in order to form a section of the flexible tube that protrudes over the fixing point on the retaining element of the application element. As a result, a free section of the flexible tube is available on the upper side of the container, which free section of said tube makes it possible , for a closure part, which encloses the delivery section of the application element, to be formed when closing the head jaws after inserting the application element.
It is of particular advantage in this case that, when molding the closure part, a predetermined breaking point is formed, at which the closure part, for example in the form of a cap formed in the manner of a toggle fastener, can be separated, and therefore removed, from the container.
In order to make the process of inserting the application element through the free section of the flexible tube, which is located above the container, simple and reliable, the protruding section of the flexible tube can be held open for the insertion of the application element in a defined shape by retaining jaws provided on the head jaws, by applying a vacuum to the outside of said protruding section of the flexible tube.
For a use as what is referred to as a marker, the container may be provided with a marking fluid, which in particular also makes color markings possible, for example in a transparent form for highlighting text or the like.
According to claim 9, the subject matter of the invention is also an applicator, which is produced using the method according to one of the claims 1 through 8.
The invention is explained in greater detail below on the basis of the drawings. Shown are:
a through 3d schematic depictions in order to clarify the sequence of the method according to the invention and
The invention is described below based on the example of the production of an applicator in the form of what is referred to as a marker, as is shown by way of example in
As can most clearly be seen in the detailed depiction of
Alternatively, instead of the method described thus far, instead of the above mentioned, movable mold parts 29 of the mold 31 for affixing the radially protruding collar 15 to the next section 17, a welding process may be used subsequent to the molding of the container 3, for example implemented by means of externally applied, heated molding plates (not shown) or by using an ultrasonic method or a laser welding method.
Number | Date | Country | Kind |
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10 2013 001 182.5 | Jan 2013 | DE | national |
Filing Document | Filing Date | Country | Kind |
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PCT/EP2014/000041 | 1/10/2014 | WO | 00 |