The present invention relates to a cutting machine knife which is designed and precisely intended for kiss-cut cutting or through-cut cutting of stickers.
For such a cutting of stickers, cutting machines are used which provide a kiss-cut cutting mode and a through-cut cutting mode and in whose cutting tool the cutting machine knife according to the invention is inserted.
Kiss-cut cutting involves cutting through a top side, i.e. the sticker itself, so that it can be removed in the desired shape. In doing so, an underside, i.e. the backing layer to which the sticker adheres, remains undamaged or is only slightly scored, scratched or incised. To facilitate removal, the backing layer is usually provided with an adhesion-reducing coating, wherein the sticker, which has a special adhesive layer, adheres detachably to this adhesion-reducing coating.
During through-cut cutting, both sides—the sticker and the backing layer—should be cut through, as it is desired that the sticker as a whole (i.e. with the backing layer) already shows its shape. To make it easier to remove the sticker, an additional flap can also be cut out, wherein here a small kiss-cut is usually made at the transition between flap and sticker so that the flap is not part of the sticker.
For a perfect cutting result there are special requirements for the knives used in the cutting modes mentioned above. Cutting machine knives are known from the prior art which have a pointed blade tip or a blade tip formed parallel to the cutting direction. Such knives are not optimal for the cutting process and have a limited service life, as their blade tips tend to wear out early.
It is therefore an object of the invention to create an improved to provide generic cutting machine knives for kiss-cut cutting and through-cut cutting. Due to its design, the cutting machine knife according to the invention is significantly less susceptible to wear, thus enabling a more stable cutting process and offering a longer service life with constant cutting precision.
The invention relates to a cutting machine knife for use in a cutting tool of a cutting machine, designed and precisely provided for cutting a sticker in a kiss-cut cutting mode of the cutting machine, in particular in addition to cutting the sticker in a through-cut cutting mode of the cutting machine, wherein the sticker has a cover layer and an adhesive layer, wherein the sticker backing has an adhesion-reducing layer and a backing layer, wherein the adhesive layer adheres releasably to the adhesion-reducing layer, wherein, within the scope of the kiss-cut cutting mode, the cutting machine knife is automatically guided by the cutting machine along the sticker in a cutting direction and in this process does not or only partially cut through the sticker and the sticker backing, optionally wherein, within the scope of the through-cut cutting mode, the cutting machine knife is automatically guided by the cutting machine along the sticker in a cutting direction and in this process completely cuts through the sticker and the sticker backing, wherein the cutting machine knife comprises the following: a holding section for inserting the cutting machine knife into a knife holder of the cutting tool, a longitudinal axis which is rectangular to the cutting direction, a blade having a cutting edge and a back, wherein the cutting edge, when viewed in a plane defined by the cutting direction and the longitudinal axis, forms with the cutting direction a first angle which is less than 90°, and an intermediate zone between the cutting edge and the back, which, again when viewed in said plane, forms with the cutting direction a second angle which is between 130° and 170°.
The second angle is between 140° and 160°, in particular 150° in one embodiment.
The first angle is less than 70° in a further embodiment, in particular between 20° and 65°, in particular 35°, 45° or 60°.
The blade between the cutting edge and the intermediate zone shows preferably a point which is formed in a pointed or rounded manner, in particular wherein the cutting edge and the intermediate zone include a third angle resulting from subtracting the second angle from the first angle.
The blade may taper along the longitudinal axis and in relation to an axis perpendicular to the longitudinal axis and to the direction of cutting, at least on one side, in particular on both sides, towards the tip, and taper in particular in a linear or curved concave or convex manner.
A normal distance of the tip to the longitudinal axis is less than 0.04 mm in one embodiment, in particular 0.02 mm, and especially 0.01 mm.
The back may taper parallel to the direction of cutting and in relation to an axis perpendicular to the longitudinal axis and to the cutting direction, at least on one side, in particular on both sides, and taper in particular in a linear or curved concave or convex manner.
The intermediate zone forms in particular a wedge-shaped triangular area, which extends from the tip to the back.
The longitudinal axis is preferably an axis of symmetry of at least part of the cutting machine knife, in particular a central shaft, and wherein the axis of symmetry extends through the back with a tolerance of −0.01 mm to +0.01 mm, in particular wherein the back extends parallel to the longitudinal axis.
The intermediate zone may have a length, in particular between the tip and the back, of less than 0.04 mm, in particular between 0.03 mm and 0.01 mm, especially 0.02 mm.
At least one of: the cutting edge, the intermediate zone and the back, again when viewed in said plane, especially extends in a linear or curved concave or convex manner.
The cutting machine knife preferably has a length of between 10 mm and 30 mm, in particular a length of less than 20 mm.
The cutting edge has a depth along the longitudinal axis of between 0.5 mm and 3 mm, in particular a depth of between 1 mm and 2.6 mm.
The holding section has a diameter of between 2 mm and 4 mm in one embodiment, in particular a diameter of 3 mm.
The invention further relates to a use of the cutting machine knife according to the description herein used in a cutting machine with cutting tool.
The invention also relates to a cutting machine having a cutting tool into which the cutting machine knife is inserted according to the description herein, wherein the cutting machine provides a kiss-cut cutting mode or a through-cut cutting mode intended for cutting a sticker, wherein the sticker has a cover layer and an adhesive layer, wherein the sticker backing has an adhesion-reducing layer and a backing layer, wherein the adhesive layer is releasably adhered to the adhesion-reducing layer, wherein, within the scope of the kiss-cut cutting mode, the cutting machine knife is automatically guided by the cutting machine in a cutting direction along the sticker and in this process cuts through the sticker completely and does not or only partially cut through the sticker backing, wherein, within the scope of the through-cut cutting mode, the cutting machine knife is automatically guided by the cutting machine in a cutting direction along the sticker and in this process completely cuts through the sticker and the sticker backing.
Further advantages of the present invention can be seen from the detailed description and drawings.
If the defined pressing force is increased in a defined manner, or if a defined cutting depth is set, the cutting machine knife according to the invention can also be used to advantage for through-cut cutting, in which the object 5 is completely cut through and the knife tip only slightly touches the machine table 4. The machine table 4 is usually permeable to air, because the object 5 can be held on the table 4 by an air suction by the force of a vacuum created by this. The surface material of the table 4 can be based on polyurethane or a non-woven fabric.
Object 5 is preferably a sticker that adheres to its backing material, or more generally speaking: a material that carries one or more stickers. Usually such stickers are self-adhesive foils or paper.
A pressure mode is used for cutting stickers (pressing already mentioned above). Which foil type is cut with which pressure depends on the material specifications and must be determined and thus defined by means of cutting tests if necessary. The cutting machine is designed to measure the pressure exerted by the tip on the material. When the defined pressure is reached, this can optionally be indicated by a green LED.
The optimum processing depth is achieved in kiss cutting when the knife cuts through the cover layer 100, the adhesive layer 101 and part of the sticker backing 11. This means that the adhesion-reducing layer 111 is scored, cut or severed, and the backing layer 110 is cut or remains intact. The components are marked in
In through-cutting, the optimum machining depth is achieved when the knife cuts through all layers, i.e. the sticker 10 and the sticker backing 11, without damaging the machine table 4.
The knife can be surrounded by a (e.g. cylindrical) slider on the cutting tool, which presses the object 5 to be cut against the table 4 at the cutting area. This again (i.e. in addition to a possible vacuum suction function of the table 4, which fixes the object 5 securely) ensures that the cut is performed cleanly. The use of the slider is particularly suitable for processing reflective foils.
A pressure mode can be designed in such a way that the module (cutting tool) exerts a constant pressure, adjustable between 30 and 3500 grams, on the machining material 5.
In addition to the pressure mode, there is also a so-called position mode, which is not suitable for kiss cutting, but only for cutting through (through cutting), in which a cutting depth is set (and therefore no pressure), which ensures that the material is cut through completely and the table is not cut. The position mode is therefore an alternative to the pressure mode for through-cutting.
The cutting machine knife 3 according to the invention is designed precisely for the kiss-cut cutting mode and the through-cut cutting mode and ensures that precise and predictive cutting results are achieved by setting defined cutting pressures or defined cutting depths. An embodiment of the invention is shown in
Cutting machine knives are usually made of a cylindrical raw material. In the middle section of knife 3, this cylinder is essentially still intact and in relation to this, a longitudinal axis L is defined for the cutting machine knife 3, which is a symmetry axis for this same middle section.
With the cutting edge 7, the cutting machine knife 3 naturally comes into contact with the object to be cut first, as the cutting direction S in
The blade of knife 3 also has a back 8, which is located away from the first slice. According to the invention, there is an angled intermediate zone 9 between the cutting edge 7 and the back 8, which ensures a surprisingly high wear resistance of the knife in the mentioned cutting modes and thus a long lasting and constant precision of the cutting results. In addition, the cutting machine knife, which is in accordance with the invention, allows a lower piercing force in both cutting modes as well as a lower cutting force (along the cutting direction) compared to known knives.
The view of
If reference is made to the cutting edge, the back and the intermediate zone, their edges are generally referred to. These edges are preferably straight in each case, i.e. linear. However, in other embodiments they can also have a curve-like course.
Within the scope of kiss-cutting, the tip 12 of the blade protrudes “just so” into the sticker backing 11, so that the sticker backing 11 is not damaged, but the sticker 10 is completely cut through. In this situation, load peaks occur, which require special demands on the design of the cutting machine knife. Similar load peaks occur during through-cutting, where the knife tip touches the machine table.
The intermediate zone 9 has—considered normal to the longitudinal axis L or parallel to the cutting direction S—between the tip 12 and the back 8 a length Z, which is preferably less than 0.04 mm, in particular between 0.03 mm and 0.01 mm, in particular 0.02 mm.
By its design, the knife 3 according to the invention specifically improves the process of cutting stickers and minimizes the wear and tear that occurs on prior-art knives, which is briefly explained below.
The cutting process of such a knife 13 known from the prior art is, however, not optimal, because depending on the design of the flat point 16, the area of the knife back 15 rests on the backing layer. This causes higher cutting forces and vibrations during cutting, which impairs the cutting result. Furthermore, the service life is severely limited by this effect. This is due to wear, which is shown by first breaks 17 in the area of the flat point 16 and second breaks 18 in the area of the back 15. The results of kiss-cut cutting and through-cut cutting therefore no longer meet the requirements at a relatively early stage and the blade has to be replaced. In addition, flat point 16 causes higher piercing forces, which is relevant because the cutting machine knife is usually lifted off frequently in a sticker-cutting process and pierced again (at a different position or in a different orientation).
The knife 3 according to the invention avoids all these wear and tear phenomena and thus offers a significantly better cutting quality as well as an increased service life.
Although the invention has been explained in terms of its preferred embodiment(s), many other changes and variations can be made without going beyond the scope of the present invention. It is therefore provided that the enclosed claims cover amendments and variations which are contained in the actual scope of the invention.
Number | Date | Country | Kind |
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19182081.0 | Jun 2019 | EP | regional |