The present invention relates to a cutting device for flexible material, wherein a sheet of flexible material is cut by a blade.
Currently there are known devices that cut flexible material with a blade, which either moves across a sheet of the flexible material to be cut, or moves said sheet of flexible material relative to a stationary blade.
A problem associated with this type of devices for cutting flexible material is that depending on the characteristics of the flexible material, for example if it is very thin or flexible, the flexible material cannot be correctly cut; instead, said blade tears, rips or wrinkles and jams the flexible material, but does not cut it. Said wrinkles are caused depending on the flexibility of the material to be cut and wear to the blade's sharpness.
Some systems incorporate rigid or flexible systems for holding down or guiding the material, at the top or bottom thereof. They cause wrinkles and often do not ensure a correct cut for all types of flexible materials, requiring different designs for different materials.
With a correct stabilization of the material to be cut and the blade, an optimal and faster cut is obtained, while making it possible to cut a wider range of flexible material with the same device, without adjustments, and for a longer period of time, the wearing and sharpening of the blade becoming less crucial.
Therefore, there is a clear need for a cutting device in which any type of flexible material can be correctly cut, even the thinnest flexible materials, by incorporating to the cutting device means that stabilize the flexible material with an adequate pressure such that the cut is correctly carried out.
With the cutting device for flexible material of the invention, the aforementioned problems are solved, in addition to having further advantages, which will be described below.
The cutting device for flexible material according to the present invention, comprises a blade, either said blade being movable with respect to a sheet of flexible material or said sheet of flexible material being movable with respect to said blade, and is characterized in that said blade is associated with a plurality of elastic bristles, which press the flexible material vertically and/or horizontally against a base where the flexible material being cut is supported, said bristles adapting themselves to the material and uniformly distributing the pressure across the surface area that it has to cut.
Advantageously, said plurality of elastic bristles are attached to a support on one of the ends thereof, thus defining a brush.
Said plurality of bristles may adopt different shapes according to the flexible material required to be cut.
According to a preferred embodiment, at least some of said plurality of bristles comprise a sphere at their tip in contact with the flexible material during the cutting operation.
Preferably, said bristles are made of synthetic or natural materials, although they could be made of any suitable elastic material that exerts sufficient pressure onto said base.
According to a preferred embodiment, said bristles have a diameter comprised between 0.05 mm and 2.5 mm, for example, 0.7 mm, and said bristles are variable in length, according to the shape, size and design of the blade, for example, between 3 mm and 500 mm, bearing a relation with the flexible material to be cut, the separation between said bristles being comprised between 0.001 and 5 mm.
In the cutting device for flexible material according to the present invention, said blade is straight or curved, and preferably said base, where the flexible material being cut is supported, is curved so as to correctly guide the flexible material.
Advantageously, said elastic bristles form an acute angle with the upper surface of said base, and said angle is advantageously adjustable in order to regulate the pressure against the base.
Preferably, said elastic bristles form an acute angle with one another, and said acute angle formed by the elastic bristles with one another is variable.
At least the following advantages are obtained with the cutting device according to the invention:
For a better understanding of all the foregoing, a set of drawings is attached therein, in which a practical embodiment is schematically represented only by way of non-limiting example.
The cutting device for flexible material, comprises a blade 1, which may be straight, curved, or with a design to be defined, placed on a base 5 for cutting a sheet of flexible material 4. In order to carry out this cut, either said blade 1 may move relative to said sheet of flexible material 4, or vice versa, i.e., a sheet of flexible material 4 may move relative to said blade 1.
As it has been mentioned earlier, in the conventional cutting devices for flexible material it is common that wrinkles are produced in the zone where the blade 1 is in contact with the sheet of flexible material 4, the cut not being correctly made, instead the sheet of flexible material 4 is torn or ripped, rather tan cut.
In order to solve this drawback, the cutting device according to the present invention, comprises a plurality of bristles 2 placed above said base 5, such that they vertically and horizontally press the sheet of flexible material 4 when the cut of the sheet of flexible material 4 is being carried out.
The pressure exerted by the bristles 2 onto the sheet of flexible material 4 has been represented in
Said elastic bristles 2 form an acute angle with the upper surface of said base 5, and said angle is advantageously adjustable to regulate the pressure exerted onto the base 5.
Said bristles 2 are elastic, and according to a preferred embodiment, are made of a synthetic or natural material, with a diameter comprised between 0.05 mm and 2.5 mm, for example, 0.7 mm. Moreover, said bristles are variable in length, according to the shape, size and design of the blade, for example, between 3 mm and 500 mm, bearing a relation with the flexible material to be cut, the separation between said bristles being comprised between 0.001 and 5 mm.
In this way, the individual pressure applied by each bristle 2 onto the sheet of flexible material 4 is very low and distributed (in such a way that the material closer to the blade receives more pressure), however the set of bristles 2 allows a suitable pressure to be applied so as to hold the sheet of flexible material in order to avoid wrinkles and obtain a clean cut.
Said bristles 2 are attached to a support 3 on the end that is not in contact with the sheet of flexible material 4, such that the assembly of said bristles 2 and said support 3 define an element in the form of a brush.
As can be appreciated in the figures, the upper surface of said base 5 is preferably curved, although it could have any suitable form.
If desired, at the end of the bristles 2 that is in contact with the sheet of flexible material 4 during the cut, a sphere 6 may be placed, with a diameter slightly larger than the diameter of the bristles 2.
As an alternative, the end of the bristles 2 that is in contact with the sheet of flexible material 4 during the cut, may be straight.
Although reference has been made to a specific embodiment of the invention, it is obvious for a person skilled in the art that the cutting device for flexible material described may be the object of numerous variants and modifications, and that all the details mentioned may be suitably substituted with others, which are technically equivalent without departing from the scope of protection defined by the attached claims.
Number | Date | Country | Kind |
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P201331785 | Dec 2013 | ES | national |
Filing Document | Filing Date | Country | Kind |
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PCT/ES2014/070899 | 12/5/2014 | WO | 00 |