DEVICE WITH QUICK CHANGE BLADES, FOR TRANSVERSE CUTTING OR PERFORATION, FOR THE WHOLE OF THE WIDTH AND PROGRESSIVELY, OF MOVING WEBS OF PAPER, PLASTIC OR OTHER MATERIALS
20180200910 ยท 2018-07-19
Inventors
- Stefano Cassoli (Casalecchio Di Reno, IT)
- Marco Cassoli (Casalecchio Di Reno, IT)
- Paolo Cassoli (Casalecchio Di Reno, IT)
Cpc classification
B26D2001/0073
PERFORMING OPERATIONS; TRANSPORTING
B26D7/2614
PERFORMING OPERATIONS; TRANSPORTING
B26D7/2628
PERFORMING OPERATIONS; TRANSPORTING
B26F1/20
PERFORMING OPERATIONS; TRANSPORTING
B26D1/385
PERFORMING OPERATIONS; TRANSPORTING
International classification
B26D7/26
PERFORMING OPERATIONS; TRANSPORTING
B26D1/38
PERFORMING OPERATIONS; TRANSPORTING
Abstract
There is described a device with quick change blades for the transverse cutting or perforation, for the whole of the width and progressively, of continuous and moving webs of paper, plastic or other materials, also with different thicknesses, wherein the fixed blade assembly and the rotary blade assembly are installed on the side members of a main base frame, with the drive means and with the means for adjusting the parallelism and the degree of interference between said two blades, said main base frame being installed removably on a secondary base frame, with means for adjusting the transverse alignment of the same main frame with the blade assemblies with respect to the longitudinal axis of the web to be cut, to allow dynamic execution on this web of a cut perpendicular to the longitudinal sides of the same web, this device being provided with means that allow quick installation and, when necessary, replacement with a new device each time both said blades require in-depth maintenance and adjustments, all for the purpose of limiting the downtimes of the packaging machine during replacement of the same device.
Claims
1. Device with quick change blades for the transverse cutting or perforation, for the whole of the width and progressively, of continuous and moving webs of paper, plastic or other materials, also with different thicknesses, provided with a fixed blade assembly and a rotary blade assembly between which the web is guided transversely by a sliding plane and is fed longitudinally by suitable driving and thrust means characterised in that the same fixed blade assembly and rotary blade assembly are installed on the side members of a main base frame, with the drive means and with the means for adjusting the parallelism and the degree of interference between said two blades, said main base frame being installed removably on a secondary base frame, with means for adjusting the transverse alignment of the same main frame with the blade assemblies with respect to the longitudinal axis of the web to be cut, to allow dynamic execution on this web of a cut perpendicular to the longitudinal sides of the same web, this device being provided with means that allow quick installation and, when necessary, replacement with a new device each time both said blades require in-depth maintenance and adjustments, all for the purpose of limiting the downtimes of the packaging machine during replacement of the same device.
2. Device according to claim 1, wherein said main base frame rests with its side members on brackets fixed to the lower side of large vertical slots provided on the side members of the secondary base frame, said brackets being provided with longitudinal slotted holes through which there pass screws screwed into corresponding threaded holes provided under the main base of the same device, all so that by exploiting sufficient transverse clearance existing between the shank of said screws and the corresponding slotted holes or by exploiting a suitable curved form of the same slotted holes and acting on screw and lead screw adjusters provided on opposite transverse sides of said brackets and such as to interact with their screw perpendicularly on opposite sides of the same main base, it is possible to adjust the transverse orientation of the cutting device in question with rotation thereof on a vertical axis passing through the centreline of the same cutting device, so that it can make cuts on the moving web perpendicular to the longitudinal sides of the same web.
3. Device according to claim 2, wherein the rotary blade assembly is placed over the fixed blade assembly and is provided with a sturdy rectilinear body with end hubs rotatably supported by the side members of the main base, by means of respective bearing cases, eyebolts being installed on one face of said body to facilitate handling of the whole device in question in the installation and removal steps, while on the face opposite the one with the eyebolts, said body carries a removable blade with a cutting edge with helical extension and with centre of curvature on the rotation axis of said hubs, one of which passes through its bearing case and is connected with interposing of a safety joint to a rotation gear motor, preferably with electric motor for electronic speed and phase control, supported on a bracket fixed to the nearby side member of said main base frame and which projects through one of said large vertical slots of said secondary base frame.
4. Device according to claim 3, wherein said fixed blade assembly is provided with a sturdy rectilinear body on the face of which oriented towards the rotary blade assembly above there is removably installed a fixed blade with a rectilinear cutting edge, said body being provided at the opposite ends with respective transverse horizontal holes for articulation by means of respective pins to the upper end of corresponding vertical slides installed on related outer supporting plates, with the possibility of independent and selective adjustment of the position in height of said slides, through guiding and blocking systems with slotted holes and screws and by means of screw and lead screw height adjusters that interact between the same slides and the small brackets below integral with said outer plates, all being provided to be able to ensure a rigorously precise and parallel arrangement between the rectilinear cutting edge of the fixed blade in relation to the plan projection of the helical cutting edge of the rotary blade, even in the absence of high precision in the machining of the main base frame and in the installation thereon of all the parts that support the same fixed blade.
5. Device according to claim 4, wherein said outer plates are provided on the top part thereof with respective identical and symmetrical extensions, positioned downstream of the fixed blade, oriented upwards and that with their upper end are articulated on pivot pins constrained to the side members of the main base, these pivot pins being aligned with each other axially, being parallel to the same fixed blade, being positioned on an ideal horizontal plane on which the cutting edge of the fixed blade substantially lies and being horizontally positioned at a short distance from the same cutting edge, said outer plates being provided in the lower part thereof with respective identical and symmetrical appendages that extend downwards, below the height of said small brackets and on the lower ends of these appendage there are fixed perpendicularly identical pins, oriented one in the direction of the other, positioned with the axis on a common ideal plane that also contains the upper pivot pins and that is spaced by a few degrees from the verticality, for example by around 7-10 degrees, it being provided that there cooperate with said pins respective vertically opening forks, which rest against said extensions and are provided on the foot with respective lead screws cooperating with horizontal screws, orthogonal to the pins, rotatably supported with one end by bushings fixed to a lower cross member of the main base frame and that with the other end are connected to bevel gearboxes, supported by the other lower cross member of the same main frame, these gearboxes being interconnected by a synchroniser shaft and at least one of the same gearboxes being provided with a manual power take off usable through one of the large lateral vertical slots provided on said secondary base frame, it being provided that through this power take off it is possible to adjust the degree of interference of the lower blade with respect to the upper rotary blade, to be able to adapt the cutting device in question to act on webs of different thickness and/or different materials and to take up wear on the same blades.
6. Device according to claim 5, characterised in that, after adjustment of the fixed blade by means of said power take off, it is possible to block said oscillating plates against the side members of the main base, by means of screws screwed into the same oscillating plates, which pass through the slotted holes obtained on said side members and having the shape of a circle sector, with centre of curvature on said pivot pins, the head of said screws being positioned on the outer faces of said side members that are exposed through said large vertical slots of said secondary base frame.
7. Device according to claim 3, wherein both said blades are installed on respective rectilinear holder blocks that can be inserted with high precision into longitudinal channels of said respective supporting bodies in which the same holder blocks can be fixed and released quickly and securely by means of respective mushroom shaped clamping bolts stressed towards the release position by respective springs and that can be blocked with screw and lead screw means at least for the holder block with rotary blade, while for the holder blocker of the fixed blade they can be fixed by means of eccentric levers, it being provided that the head of said mushroom shaped bolts is prevented from rotating by suitable means and it being provided that in the blocked position they cooperate with friction with parts with a C-shaped profile of the lower and grooved profile of said holder blocks with said blades, all so as to allow quick replacement of the same blocks with the blades each time the blades become worn during operation.
8. Device according to claim 6, characterised in that when the holder block with the rotary blade is in the highest angular position of its rotation orbit, the same holder body is positioned over the side members of the main base frame, so as to be able to easily replace said holder block with a longitudinal removal movement, without interfering with the same main base, while the holder body with the fixed blade is provided at one end with a cantilevered handle that passes through an opening of the nearby side member of the main base, all so as to be usable also through one of the large vertical slots of said secondary base.
9. Device according to claim 7, wherein said rectilinear holder blocks of the rotary blade and of the fixed blade support these blades by means of an intermediate flattened surface and a subsequent lowered flattened surface on which there is arranged a strip of elastomeric material that is arranged substantially coplanar to said flattened surface and that with this forms the support for the transversely unexposed section of the blade, said intermediate flattened surface being preceding by a flattened surface that is substantially coplanar to the exposed face of the blade and that forms the abutment step for the non-operating edge of the same blade and the same flattened surface is followed by a raised flattened surface resting on which is the longitudinal side of a metal pressure plate that overlaps and pinches the blade on the intermediate flattened surface and to a lesser extent also on the insert, with the interposing of an elastomeric strip with greater rigidity than the opposed insert, it being provided that said flattened surface is provided with a plurality of threaded holes distributed adequately spaced from one another on the whole of the length of the holder blocks and there being screwed into these holes the shanks of screws that pass through corresponding through holes of the clamping plate, it being provided that due to the presence of said inserts made of elastomeric material, the blades can react in an elastic and non-traumatic way to the stresses deriving from mutual cooperation and cooperation with the web to be cut.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0007] Further features of the invention and the advantages deriving therefrom will be more apparent from the description below of a preferred embodiment of the invention, illustrated purely by way of non limiting example in the figures of the six accompanying drawings, wherein:
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DETAILED DESCRIPTION
[0019] From
[0020] Again from the details of
[0021] By instead unscrewing the same counter-bolts 17 it is possible to loosen the grip of the heads 112 and to remove from or insert into the channel 10, the holder body 19 of the rotary blade. The grooved part 119 of the holder body 19 is provided with end of travel means for longitudinal insertion into the channel 10, analogous to those to be described below with reference to
[0022] In
[0023] In
[0024] The rotary blade 20 is formed by a rectangular steel strip, without holes and other fixing constraints, so that the same blade 20 can be arranged with both the longitudinal edges in the cutting function, so that when the exposed cutting edge 120 of the same blade is worn, the same blade can be reversed and installed with the other cutting edge opposite and parallel to the worn cutting edge exposed. From the details of
[0025] In
[0026] The assembly 30 comprises a flat rectangular blade 300, made of the same material as the rotary blade 20 considered previously, which forms with the orbit 29 of the same blade 20 an acute angle , for example of around 45 and the cutting edge K of which is parallel to the rotation axis of the same blade 20. From the same
[0027] Fixing of the fixed blade 300 on the holder 31, illustrated in
[0028] To be able to produce the device with large operating tolerances and simultaneously allow positioning of the lower rectilinear blade 300 with high precision in relation to the upper rotary helical blade 20, it has been provided that the supporting body 33 of the fixed blade has end sections projecting from the holder 31 with the same fixed blade 300, provided with respective transverse horizontal holes to be able to be articulated through respective pins 40, 40 to the upper end of corresponding vertical slides 41, 41 installed on related outer supporting plates 42, 42, with the possibility of independent and selective adjustment of the position in height of these slides 41, 41, through guiding and blocking systems with slotted holes and screws 43, 43 and by means of screw and lead screw height adjusters 44, 44 that interact between the same slides 41, 41 and the small brackets 45, 45 below integral with said outer plates 42, 42. With these independent adjustments it is possible to ensure a rigorously precise and parallel, or equidistant, arrangement between the rectilinear cutting edge K of the fixed blade 300 in relation to the plan projection of the helical cutting edge 120 of the rotary blade 20, even in the absence of high precision in the machining of the main frame 1, and in the installation thereon and in the mutual installation of all the parts that support the same fixed blade 300.
[0029] The invention also provides for the possibility of adjusting the degree of interference of the fixed blade 300 in relation to the rotary blade 20, to adapt the cutting system of webs of different thickness and materials and to take up the small amounts of wear that progressively occur on the two blades.
[0030] For this type of adjustment the outer plates 42, 42 are provided, on the top part thereof, with respective identical and symmetrical extensions 142, 142, positioned downstream of the fixed blade 300, oriented upwards and that with their upper end are articulated to pivot pins 46, 46 constrained to the side members 101, 101 of the base 1, these pivot pins being axially aligned with each other and being parallel to the same fixed blade 300. The axes of the pivot pins 46, 46 are positioned on an ideal horizontal plane on which the cutting edge K of the fixed blade 300 lies or is vertically positioned at a short distance and the same pivot pins 46, 46 are horizontally positioned at a short distance from the same cutting edge K. The outer plates 42, 42 have, in the lower part thereof, respective identical and symmetrical appendages 242, 242 that extend downwards, below the height of the small brackets 45, 45 and on the lower ends of which there are fixed perpendicularly identical pins 47, oriented one in the direction of the other, positioned with the axis on a common ideal plane that also contains the upper pivot pins 46, 46 and that is spaced by a few degrees from the verticality, for example by around 7-10 degrees. As the distance between the pins 47 and related pivot pins 46, 46 is almost seven or eight times greater than the horizontal distance between the same pivot pins 46, 46 and the cutting edge K of the fixed blade 300, a large movement imparted to the same pins 47 translates into a very small movement of the cutting blade K of the same fixed blade 300, useful for the purposes indicated above. With reference to
[0031] From
[0032] In
[0033] From
[0034] It is understood that the description refers to a preferred embodiment of the invention, to which numerous variants and construction changes can be made, all without departing from the informing principle of the invention, as described, illustrated and as claimed below. In the claims, the references indicated in brackets are purely indicative and do not limit the scope of protection of these claims.