The invention relates to a cutting device for cutting or notching capsules or closures or caps made of plastics of the type used to close containers, such as for example bottles. In particular the invention relates to a cutting device arranged for cutting a so-called tethered capsule, or for cutting the side wall of a capsule so as to obtain on the side wall a tamperproof band or ring and one or more connecting portions, also known as straps or strips, which connect the tamperproof band or ring to a different portion of the capsule, for example to the main body of the capsule, i.e. to a portion of the side wall having a closed end of the capsule.
In particular, these connecting straps enable the main body to be maintained of the capsule attached to the tamperproof ring also after the container has been opened so as not to accidentally disperse the capsule in the environment.
For such capsules, the various blades are generally arranged separated from one another on one or more levels. Such blades generally have a limited angular extension, i.e. a revolution of less than 360° of the capsule. In other words, in particular to make connecting portions like straps, the blades make distinct and separate cuts so as to prevent total separation of the main body of the capsule from the tamperproof ring, once the capsule is removed from the container to which it is applied.
Cutting apparatuses are known with a carousel structure that rotates a plurality of spindles, each rotating on itself, fitted to the periphery of the carousel. Each spindle is arranged for taking a capsule, rotating the capsule on itself and moving the capsule along a circular advancement path through one or more cutting zones of the capsule, where at least one cutting device is arranged that cuts or notches the side wall of the capsule.
Known prior art cutting devices comprise cutting edges arranged for penetrating a thickness of said capsule in order to make cuts that generate the straps in the capsule. The cuts end on the capsule with a cusp.
The cusp made (capsule side) by known cutting devices has the drawback caused by the sharpened conformation thereof of being a source of concentration of tensions and contributes, together with the notch effect due to the sudden change of section between the ring (or equivalently, between the body of the capsule) and the strap, weakening the mechanical resistance of the strap and the capsule in general. This means that by removing the capsule from the ring a fracture is triggered that originates from the tip of the cusp and continues in the material of the capsule, damaging the strap until it is broken, thus losing the function of connection between tamperproof ring and main body of the capsule.
The poor resistance of the straps entails both a fall in productivity, increasing production waste and costs, and poor quality of the produced capsule.
One object of the invention is to improve known cutting devices for cutting capsules.
One object is to provide a device that is able to solve one or more of the aforesaid limits and drawbacks of the prior art.
One object is to provide a device for cutting capsules that is alternative to those of the prior art.
One object is to provide a device for cutting capsules limiting the weakening of the capsules at cuts, in particular in cutting zones for generating straps.
One advantage is to improve cutting quality, in particular to notch tethered capsules.
One advantage of the invention is to ensure cutting that limits concentration of stress at the cuts, in particular in cutting zones for generating straps.
One advantage is to make available a cutting device for notching capsules that is constructionally simple and cheap.
Another advantage is to reduce waste in the production of capsules provided with notches.
Such objects and advantages and still others, are achieved by a device according to one or more of the following claims.
In one embodiment, a cutting device for forming, on a capsule closing a container, at least one connecting strap to keep the capsule attached to said container after opening, comprises at least one cutting edge configured to perform the at least one cut on the capsule, the capsule rolling on the at least one blade during performance of at least one cut, with a cut start and a cut end that are suitable for forming at least one part of the at least one connecting strap, the at least one cutting edge being provided with a capsule inlet, where the capsule meets the at least one cutting edge to start the at least one cut, and with a capsule outlet, where the capsule leaves the at least one cutting edge to end the at least one cut, the at least one cutting edge comprising at least one transition cutting portion arranged on the capsule inlet and/or on the capsule outlet to form at least one cusp-shaped end zone at the cut start and/or the cut end, the at least one transition cutting portion being retracted with respect to a remaining part of the at least one cutting edge so as to penetrate less one thickness of the capsule with respect to the remaining part of the at least one cutting edge so as to reduce the stress concentration and discourage the triggering of a fracture in the at least one cusp-shaped end zone.
In one embodiment, a cutting device to form on a capsule for closing a container with at least one connecting strap that keeps the capsule attached to the container after opening, comprises at least one cutting edge to make at least one cut on the capsule. The at least one cutting edge comprises a cut start capsule inlet, a cut end capsule outlet, and at least one transition cutting portion arranged on the capsule inlet and/or on the capsule outlet to form at least one cusp-shaped end zone, the at least one cutting portion being retracted with respect to a remaining part of the at least one cutting edge so as to provide a step between the at least one transition cutting portion and the remaining part of the at least one cutting edge so as to penetrate less the capsule of a remaining part of the at least one cutting edge reducing stress concentration and discouraging the triggering of a fracture in the at least one cusp-shaped end zone.
In one embodiment, a cutting device to form on a capsule for closing a container with at least one connecting strap that keeps the capsule attached to the container after opening, comprises at least one cutting edge to make at least one cut on the capsule. The at least one cutting edge comprises a cut start capsule inlet, a cut end capsule outlet, and at least one transition cutting portion arranged on the capsule inlet and/or on the capsule outlet to form at least one cusp-shaped end zone, the at least one cutting portion being retracted with respect to a remaining part of the at least one cutting edge so as to penetrate less the capsule of a remaining part of the at least one cutting edge reducing stress concentration and discouraging the triggering of a fracture in the at least one cusp-shaped end zone.
The invention can be better understood and implemented with reference to the enclosed drawings that illustrate some embodiments thereof by way of non-limiting example, in which:
With respect to the figures mentioned above, a cutting device 1 for cutting or notching a cap or a capsule 2 is disclosed. The capsule 2 is usable, in particular, as a closure of a container, such as a bottle.
In particular, the cutting device 1 is used for cutting a capsule 2 provided with at least one connecting strap, a so-called tethered capsule, suitable for maintaining the capsule 2 attached to the container after opening of the container.
With reference to
The base wall 23 can be in particular disc-shaped and can comprise a central region traversed by a longitudinal axis C that can be transverse, in particular orthogonal, to the base wall 23 and a peripheral region near a peripheral edge of the disc and further from the longitudinal axis C with respect to the central region. The capsule 2 can comprise, in particular, a side wall 21 that is contiguous with the base wall 23 that extends from the peripheral region of the base wall 23 around the longitudinal axis C of the capsule 2 as far as a free edge of the side wall 21 that defines the annular end of the cup body.
The capsule 2 can comprise, in particular, a plurality of cuts that defines a plurality of facilitated fracture lines, or weakening lines. The plurality of cuts comprises at least one cut, each of which can be arranged on the capsule 2 according to a tilt with respect to the longitudinal axis C, in particular, the at least one cut can form an acute, or obtuse, or flat or right angle with the longitudinal axis C. The plurality of cuts can define on the capsule 2 a main body 20, a tamperproof ring 22 and at least one connecting strap 27, 28 that connects the main body 20 to the tamperproof ring 22. In particular, the main body 20 comprises the closed end of the cup body, the tamperproof ring 22 comprises the open annular end of the cup body of the capsule 2.
The at least one cut is provided with a cut start, i.e. a start end, and with a cut end, i.e. a final end. The cut start and the cut end are suitable, in particular, for forming at least one part of the at least one connecting strap 27, 28.
At one cut end, i.e. the start and/or the end of the cut, at least one cusp-shaped end zone 24a, 24b, 24c, 24d is formed that generates one part of the at least one strap 27, 28. In other words, at the cut end the penetration of a cut edge of the device generates a sudden narrowing of a section of the capsule 2 having a tip or cusp shape. The end (capsule side) of the cusp end 24a, 24b, 24c, 24d zone through the confirmation thereof is a source of concentration of the stress inside the material of capsule 2. This stress can increase in particular when the capsule 2 is subjected to force acting from the outside, for example when the main body 20 is moved away from the tamperproof ring 22. This occurs when a user opens the container to which the capsule 2 is applied or during movement of the capsule 2 inside a capsule 2 machining apparatus. The concentration of the stress can trigger a fracture that originates from the end of the cusp and continues inside the side wall 21 causing breakage of the at least one strap 27, 28 and/or damage to other portions of the capsule 2.
In the specific embodiment of
In the specific embodiment of
The cutting device 1 can notch tethered capsules that are different from that illustrated in
The number and the specific conformation of the strap/s depend on an arrangement of cutting edges of the cutting device 1.
The cutting device 1 can be fitted in a cutting apparatus 100 for cutting a capsule 2, in particular for cutting a tethered capsule.
With reference to
The advancement path of the capsule 2 extends at least partially along a circumferential arc defined by the carousel 70.
The cutting apparatus 100 can comprise, in particular, a feeding zone 40 in which the capsule 2 is fed according to the feeding direction A entering the carousel 70. The feeding zone 40 can be positioned downstream of a preceding machining zone (not shown) from which the capsule 2 originates, like for example a forming zone in which capsule 2 is moulded.
The cutting apparatus 100 comprises, in particular, a cutting zone 50 positioned downstream of the feeding zone 40 in which cutting zone 50 the capsule 2 is cut. In the cutting zone 50, one or more cutting devices can be positioned to notch the capsule 2, for forming the cuts and fracture lines on the capsule, in particular, a cutting device 1 is arranged for forming cuts so as to obtain at least one strap 27, 28 on the capsule 2.
The cutting apparatus 100 comprises, in particular, an unloading zone 60 positioned downstream of the cutting zone 50 in which the capsule 2 is unloaded, for example along an unloading direction S exiting the carousel 70, or is transferred to a subsequent machining zone (not shown) of the capsule 2.
In the specific embodiment of
Once the cutting zone 50 is traversed, the spindle 71 conveys the cut capsule 2 to the unloading zone 60 where the capsule abandons the carousel 70 to be transferred to the subsequent machining zone.
In the specific embodiment of the cutting apparatus 100 of
The cutting device 1 comprises, in particular, at least one plate body 30, 30′, 30″, 30′″ having a rectangular plan shape having two substantially flat faces that are opposite one another. The at least one plate body 30, 30′, 30″, 30′″ comprises a peripheral portion shaped as a half circle or crescent the centre of which is positioned on an axis that is transverse, in particular orthogonal, to one of the two faces outside the plate body. In particular, this centre can be on the rotation axis R′ of the carousel 70.
The cutting device 1 comprises, in particular, at least one cutting edge 31, 31′, 31″, 31′″ configured to perform the at least one cut on the capsule 2 whilst the capsule rolls on the at least one cutting edge 31, 31′, 31″, 31′″. The at least one cutting edge 31, 31′, 31″, 31′″ can be arranged on the peripheral portion of the at least one plate body 30, 30′, 30″, 30′″.
The at least one cutting edge 31, 31′, 31″, 31′″ is provided, in particular, with a capsule inlet 30a, 30a′, 30a″, 30a′″, where the capsule 2 meets the at least one cutting edge 31, 31′, 31″, 31′″ to start the at least one cut. In other words, the capsule inlet 30a, 30a′, 30a″, 30a′″ is arranged for forming the start cut on the capsule 2.
The at least one cutting edge 31, 31′, 31″, 31′″ is provided, in particular, with a capsule outlet 30b, 30b′, 30b″, 30b′″, where the capsule leaves the at least one cutting edge 31, 31′, 31″, 31′″ to end the at least one cut. In other words, the capsule outlet 30b, 30b′, 30b″, 30b′″ is arranged for forming the cut end on the capsule 2.
The at least one cutting edge 31, 31′, 31″, 31′″ comprises, in particular, at least one transition cutting portion 32, 32′, 32″, 32′″ arranged on the capsule inlet 30a, 30a′, 30a″, 30a′″ and/or on the capsule outlet 30b, 30b′, 30b″, 30b′″ to form at least one cusp-shaped end zone 24a, 24b, 24c, 24d at the cut start and/or the cut end.
The transition cutting portion 32, 32′, 32″, 32′″ is retracted with respect to a remaining part of the at least one cutting edge 31, 31′, 31″, 31′″ so as to penetrate at least one thickness of the capsule 2, in particular one thickness of the side wall 21, with respect to the remaining part of the at least one cutting edge 31, 31′, 31″, 31′″ so as to reduce the stress concentration and discourage the triggering of a fracture in the at least one cusp-shaped end zone 24a, 24b, 24c, 24d.
In other words, the position in which the transition cutting portion 32, 32′, 32″, 32′″ is retracted with respect to the remaining part enables part of the material of the capsule 2 to be left intact at the at least one cusp-shaped end zone 24a, 24b, 24c, 24d such that the cut start and/or the cut end do not excessively weaken the at least one strap 27, 28.
The transition cutting portion 32, 32′, 32″, 32′″ extends for an angular sector that is less than the remaining part of the at least one cutting edge 31, 31′, 31″, 31′″ such that most of the at least one cut, in particular the central part of the at least one cut, not affected by a concentration of the stress that is critical for the structure of the capsule 2, is made from the remaining part of the at least one cutting edge 31, 31′, 31″, 31′″.
The at least one cutting edge 31, 31′, 31″, 31′″ comprises, in particular, a wedge-shaped portion that extends on a median plane M, M′, M″, M′″. The wedge-shaped portion is provided with an end facing outside that defines a profile of the at least one cutting edge 31, 31′, 31″, 31′″. During performance of the cut, the at least one cutting edge penetrating at least partially the thickness of the capsule 2, in particular of the side wall 21, shows negatively the profile of the cutting edge on the cutting capsule making the at least one cut. The wedge-shaped portion is further provided with a base connected to the plate body 30, 30′, 30″, 30′″ on which the at least one cutting edge 31, 31′, 31″, 31′″ is obtained.
Similarly, also the at least one transition portion 32 and the remaining part of the cutting edge comprise respective wedge-shaped bodies like the one disclosed, which define a profile of the transition cutting portion 32 and a profile of the remaining part of the cutting edge 31.
With reference to the cross sections illustrated in
Alternatively, in a further embodiment, the at least one transition cutting portion 32, 32′, 32″, 32′″ can provide single sharpening, i.e. can be sharpened on one side. In other words, the upper side 32a, 32a′, 32a″ can be arranged parallel to the median plane M, M′, M″, M′″ and the lower side 32b, 32b′, 32b″ can be tilted by an acute angle with respect to the median plane M, M′, M″, M′″, or vice versa.
The transition cutting portion 32, 32′, 32″, 32′″ is in particular contiguous with the remaining part of the at least one cutting edge 31, 31′, 31″, 31′″ so that the at least one cutting edge 31, 31′, 31″, 31′″ makes the at least one cut continuously.
The profile of the at least one transition cutting portion 32, 32′, 32″, 32′″ and the profile of the remaining part of the transition cutting edge 31, 31′, 31″, 31′″ lie on the same plane, in particular on the median plane M, M′, M″, M′″.
The cutting device 1 can comprise, in particular, a layer structure comprising at least two plate bodies 30, 30′, 30″, 30′″ stacked on one another in a stacking direction that is transverse, in particular orthogonal, to at least one face of one of the at least two plate bodies 30, 30′, 30″, 30′″, so as to make an arrangement of cutting edges, in which at least two cutting edges 31, 31′, 31″, 31′″ are arranged on at least two distinct levels along the stacking direction for cutting the capsule 2 for forming the at least one strap 27, 28.
In one alternative embodiment, the cutting device 1 can comprise, in particular, a single cutting plate-formed element that comprises at least two cutting edges 31, 31′, 31″, 31′″ arranged on at least two distinct levels along a direction parallel to a thickness of the single plate-shaped element for forming the at least one strap 27, 28 on the capsule 2.
With reference to the specific embodiment shown in
In the specific embodiment of
The remaining part of the cutting edge 31 has an at least partially curved, in particular partially circumference arc profile, in which the circumference arc is centred on an axis outside the cutting device 1 and orthogonal to the median plane M. In particular, this circumference arc can be centred on the rotation axis R′ of the carousel 70. In a further embodiment that is not illustrated, the remaining part of the cutting edge 31 can have an at least partially rectilinear profile.
In the specific embodiment of
The specific embodiment shown in
Referring again to
With reference to the specific embodiment of
With reference in particular to
With reference now to
With reference to
The specific embodiment shown in
In the specific embodiment of
With reference in particular to
The two transition cutting portions 32″ are separated by a further recess 34″ so as to perform two distinct cuts on the capsule 2.
As shown in
In the specific embodiment of
The at last one curve surface 32a′″, 32b′″ is curved in at least one direction transverse to the median plane M′″ of the at least one cutting edge 31′″ along which the at least one cut is performed. The at last one curve surface 32a′″, 32b′″ can be cone shaped, in particular semi-cone shaped (as in the illustrated embodiment). A peak H of the cone can be obtained at the remaining part of the cutting edge 31′″ (or equivalently at the profile of the remaining part of the cutting edge 31′″).
In the specific embodiment of
The plate body 30′″ (
The cutting device 1 (according to the embodiment of
Referring to the embodiment of
The transition cutting portion 32′″, owing to the structure thereof allows to form a curved cut (or a curved perforation) in the thickness of the capsule 2 at the start of the cut and/or the end of the cut so as to reduce the concentration of stresses and prevent the initiation of a fracture in the at least one cusp end zone 24a, 24b, 24c, 24d. In particular, the curved surface 32a′″, 32b′″ is effective in forming the upper cusp end zones 24a, 24b. The upper cusp end zones 24a, 24b can be obtained in the capsule 2 near the cuts intended to form the tab portion 29 (
The cutting device 1 can comprise, in particular, at least one recess 33 (
As can be seen from what has been disclosed above, the cutting device 1 according to the present invention enables the limits and drawbacks of the devices of the prior art to be overcome. The cutting device 1 according to the invention is particularly useful for forming connecting straps with a mechanical quality and resistance that are greater than known cutting devices. This is owing to at least one transition cutting portion that enables the size of the cut in the thickness of the capsule to be reduced to at least one cusp-shaped end zone of the cut, thus reducing the concentration of the stress that can lead to the triggering of a fracture in the connecting straps and in the capsule.
Number | Date | Country | Kind |
---|---|---|---|
102021000007262 | Mar 2021 | IT | national |
Filing Document | Filing Date | Country | Kind |
---|---|---|---|
PCT/IB2022/052702 | 3/24/2022 | WO |