Unwinder for rolls of paper web material
11292684 · 2022-04-05
Assignee
Inventors
Cpc classification
B65H16/106
PERFORMING OPERATIONS; TRANSPORTING
B65H2301/413526
PERFORMING OPERATIONS; TRANSPORTING
B65H2301/413246
PERFORMING OPERATIONS; TRANSPORTING
B65H2301/41522
PERFORMING OPERATIONS; TRANSPORTING
B65H2515/10
PERFORMING OPERATIONS; TRANSPORTING
B65H16/103
PERFORMING OPERATIONS; TRANSPORTING
B65H2403/55
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
An unwinder for rolls of paper web material includes: a support frame; a spindle cylinder, rotationally associated with the frame, supporting a parent roll with a longitudinal axis; unwinder to unwind a paper web from the parent roll; actuator keeping the unwindier contacting the parent roll; a command and control unit; first motor rotating the spindle cylinder; two support and drive rollers; units to measure instantaneous radius of the parent roll, rotational speed of the spindle cylinder, quantity of web unrolled from the parent roll per unit time, and weight unloaded from the parent roll onto the support and drive rollers; second motor synchronously rotating the support and drive rollers; and third motor moving the spindle cylinder vertically. The control unit receives and processes values detected by the measurement unit, causing the motor to maintain the weight force unloaded onto the rollers from the roll as the diameter varies.
Claims
1. Unwinder (1) for rolls (B) of paper web material comprising: a support frame; a spindle cylinder (4), rotationally associated with said support frame, capable of supporting a parent roll (B) having a longitudinal axis (x); unwinding means acting by contact with said parent roll (B) to unwind from the parent roll a web (N) of paper material; actuator means capable of keeping said unwinding means in contact with said parent roll (B); a command and control unit (C), comprising first motor means (M1) capable of applying a rotation movement to said spindle cylinder (4); two support and drive rollers (5, 6) for said roll (B), provided with respective longitudinal axes (y, y′), arranged symmetrically with respect to a vertical plane (n) passing through said longitudinal axis (x) of the parent roll (B); measurement means to measure the instantaneous radius of said parent roll (B); measurement means to measure the rotation speed of said spindle cylinder (4); measurement means to measure the quantity of web (N) unrolled from said parent roll (B) by unit of time; measurement means to measure the weight unloaded from said parent roll (B) onto said two support and drive rollers (5, 6); second motor means (M2), associated with said two support and drive rollers (5, 6), capable of giving them a synchronous rotation movement around their respective axis (y, y′); third motor means (M3) associated with said actuator means and capable of moving said spindle cylinder (4) vertically, wherein said command and control unit (C) is capable of receiving and processing the values detected by said measurement means to command said first (M1), second (M2) and third (M3) motor means, so as to maintain constant the weight force unloaded onto said support and drive rollers (5, 6) from said roll (B) as the diameter of the latter varies.
2. Unwinder (1) according to claim 1, wherein said measurement means to measure the instantaneous radius of said parent roll (B) comprise means to measure the distance between said longitudinal axis (x) of the parent roll (B) and said longitudinal axes (y, y′) of said two support and drive rollers (5, 6).
3. Unwinder (1) according to claim 2, wherein said means to measure the distance between said longitudinal axis (x) of the parent roll (B) and said longitudinal axes (y, y′) of said two support and drive rollers (5, 6) comprise magnetostrictive sensors.
4. Unwinder (1) according to claim 1, wherein said means to measure the instantaneous radius of said parent roll (B) comprise an electromagnetic wave instrument.
5. Unwinder (1) according to claim 1, wherein said means to measure the quantity of web (N) unrolled from said parent roll (B) by unit of time comprise means to measure the rotation speed of the support and drive rollers (5, 6), associated with said second motor means (M2).
6. Unwinder (1) according to claim 5, wherein said means to measure the rotation speed of said spindle cylinder (4) and said support and drive rollers (5, 6) comprise an encoder (14, 15).
7. Unwinder (1) according to claim 1, wherein said means to measure the weight unloaded from said parent roll (B) onto said two support and drive rollers (5, 6) comprise a load cell (7).
8. Unwinder (1) according to claim 7, wherein said load cell (7) is associated with said spindle cylinder (4).
9. Unwinder (1) according to claim 7, wherein said load cell (7) is associated with said support and drive rollers (5, 6).
10. Unwinder (1) according to claim 1, wherein said support frame comprises two columns (2, 3) and said actuator means comprise a first rack (8) and a second rack (9), stably associated with said two columns (2, 3), on which the two ends (4′, 4″) of said spindle cylinder (4) slide.
11. Unwinder (1) according to claim 1, further comprising fourth motor means (M4), capable of adjusting the position of the pair of support and driver rollers (5, 6) along the direction of the respective longitudinal axes (y, y′).
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) Further features and advantages of the invention will become apparent from the more detailed description set forth below, with the aid of the drawings which show a preferred embodiment thereof, illustrated by way of non-limiting example, in which:
(2)
(3)
(4)
DETAILED DESCRIPTION OF A PREFERRED EMBODIMENT OF THE INVENTION
(5) With reference to the details in the figures, an unwinder 1 for rolls B of paper web material having a longitudinal axis x is shown.
(6) Said paper web material may be, by way of non-limiting example: conventional tissue paper, normally used for the production of toilet paper or napkins; structured tissue paper, i.e. large-thickness single-ply paper, with a structured and inflated texture (very sensitive to crushing and elongation problems and therefore particularly adapted to be managed by unwinders according to the invention); TNT (non-woven fabric) or TAD (through air dryer paper).
(7) Unwinders 1 work on parent rolls B of large dimensions, up to three meters in diameter. At the beginning of the processing step, the standard parameters of these parent rolls B are known: total weight, diameter, density, length of the web, weight of the web per unit of surface, which are previously set in software contained in a command and control unit of the unwinder.
(8) Said unwinder 1 essentially comprises: a support frame substantially comprising two columns 2, 3 resting on the ground; a spindle cylinder 4, rotationally and slidably associated with said support frame, capable of supporting a parent roll B having a longitudinal axis x; unwinding means acting by contact with said parent roll B to unwind from it a web N of paper material; actuator means capable of keeping said unwinding means in contact with said parent roll B; two support and drive rollers 5, 6 for said roll B, called helpers in jargon, provided with respective longitudinal axes y, y′, arranged symmetrically with respect to a vertical plane π passing through said longitudinal axis x; two return rollers 10, located downstream of the support and drive rollers 5, 6, adapted to keep the web N aligned and tensioned while unwinding.
(9) By the term spindle cylinder it is meant alternatively a rod, or a core, or a pair of punches adapted to axially support said parent roll.
(10) Said spindle cylinder 4, advantageously made of steel, is provided with a first 4′ and a second 4″ end.
(11) Each end 4′, 4″ is rotatably and slidably associated with one of said two columns 2, 3, by means of bearings and a plurality of slides, support plates and counterplates and sliding and centering shoes.
(12) Said actuator means are of the linear type and act on said spindle cylinder 4.
(13) In particular, said actuator means comprise two racks 8, 9, each stably associated with a column 2, 3 resting on the ground of said support frame.
(14) On said racks 8, 9 slides 11 are slidable, each provided with a pinion. Said slides 11 are therefore adapted to move vertically along said racks 8, 9.
(15) Plate 17 for supporting the ends 4′, 4″ of said spindle cylinder 4 are associated with said slides 11, and said plates 17 are adapted to move horizontally with respect to said slides 11.
(16) Centering shoes 18 are in fact provided between said slides 11 and said plates 17, adapted to allow translation of said spindle cylinder with respect to said columns 2, 3, so that the center line of the parent roll B is aligned with the machine axis of the unwinder 1, i.e. the center line between the two columns 2, 3 resting on the ground of said support frame.
(17) Said support and drive rollers 5, 6 are arranged below said parent roll B, they are preferably made of carbon fiber and therefore very light. In order to ensure a good grip on the web N being unrolled, and therefore always maintain control over unwinding, said support and drive rollers 5, 6 are coated with suitable materials, for example tungsten carbon.
(18) Both said support and drive rollers 5, 6 are motorized, rotate in the same direction, right or left, according to the direction of unwinding of the web N from the parent roll B.
(19) Basically, said support and drive rollers 5, 6 have both a support function along two generatrix lines of roll B to prevent the ovalization thereof, especially for very soft and low density papers, as well as an accompanying and thrusting function for the unwinding of web N.
(20) Said support and drive rollers 5, 6 comprise centering shoes 12 for the horizontal displacement along the longitudinal axis y, y′ thereof.
(21) Said support and drive rollers 5, 6 by translating horizontally also move the overlying parent roll B, so as to make the machine axis of the unwinder 1 coincide with the center line of the roll B itself.
(22) The horizontal displacement of said support and drive rollers 5, 6 is coordinated and serves the sliding of said plates 17 which support the ends 4′, 4″ of the spindle cylinder 4.
(23) Said unwinder 1 further comprises: measurement means to measure the instantaneous radius of said parent roll B; measurement means to measure the rotation speed of said spindle cylinder 4; measurement means to measure the quantity of web N unrolled from said parent roll B by unit of time; measurement means to measure the weight unloaded from said parent roll B onto said support and drive rollers 5, 6.
(24) Said unwinder 1 further comprises: first motor means M1, adapted to impose a rotation movement to said spindle cylinder 4, slidably associated with said plates 17, so as to be able to move along the axis of said spindle cylinder; second motor means M2, adapted to impart a rotation movement to said support and drive rollers 5, 6, about the respective longitudinal axis y, y′; third motor means M3, associated with said actuator means and capable of moving said spindle cylinder 4 vertically; fourth motor means M4, adapted to adjust the position of said support and drive rollers 5, 6 along their longitudinal axis y, y′, acting on said centering shoes 12; fifth drive means M5, adapted to impart a rotation movement to said return rollers 10; sixth motor means M6, adapted to adjust the position of said plates 17 along the longitudinal axis x of said parent roll B; a command and control unit C which oversees all the kinematic adjustments of said unwinder 1, both instantaneous and over time, in which there is software adapted to impose the appropriate acceleration and deceleration ramps to the unwinder and to oversee all the functions of the unwinder itself.
(25) As said above, said first motor means M1 are slidably associated with said plates 17, so as to be able to be moved horizontally in order to always be gripped on the ends 4′, 4″ of said spindle cylinder 4.
(26) In particular, said first motor means M1 are fixed to counterplates 19 sliding by means of shoes 20 on said plates 17 by action of a hydraulic cylinder 21.
(27) Said measurement means to measure the instantaneous radius of said parent roll B substantially comprise means to measure the distance between said longitudinal axis x of said roll B and said longitudinal axes y, y′ of said support and drive rollers 5, 6.
(28) In the variant illustrated, said means for measuring the distance between said longitudinal axis x and said longitudinal axes y, y′ comprise magnetostrictive sensors 13, particularly advantageous for their high precision, repeatability and durability due to resistance to vibrations and mechanical shocks.
(29) Said magnetostrictive sensors 13 are associated with the columns 2, 3 resting on the ground of said frame structure.
(30) The measurement of the distance between said longitudinal axis x and said longitudinal axes y, y′ basically allows the control unit C to know the real dimension of the parent roll B as the web N is unwound.
(31) In an alternative embodiment not shown, said means for measuring the instantaneous radius of said coil B comprise an optical reader, for example ultrasound, associated with said support frame structure and facing towards the roll B. The generated electromagnetic waves are intercepted by the roll and depending on the return speed, it is possible to estimate the size of the roll itself.
(32) Said means to measure the quantity of web N unrolled from said parent roll B by unit of time comprise means to measure the rotation speed of the support and drive rollers 5, 6 associated with said second motor means M2 (also related to the rotation speed of the return rollers 10 associated to said fifth motor means M5).
(33) The measurement of the amount of web N unrolled from said parent roll B per unit of time can be substantially related to the rotation speed of the support and drive rollers 5, 6 (and of the return rollers 10) and allows the control unit C to set the speed at which said spindle cylinder 4, and therefore said parent roll B, should rotate.
(34) If, in fact, the rotation speed of the spindle cylinder 4 is too low with respect to the rotation speed of the support and drive rollers 5, 6, there would be a risk of tearing the web N on the outermost winding of the parent roll B.
(35) If, on the other hand, the rotation speed of the spindle cylinder 4 is too high with respect to the speed of the support and drive rollers 5, 6, an excess of unwound web N and not correctly arranged along the processing line would be produced, with the risk of jamming of the unwinder 1 and wrinkling and damaging the web itself.
(36) Said means for measuring the rotation speed of the support and drive rollers 5, 6, of said spindle cylinder 4, and of the return rollers 10, each comprise an encoder 14, 15, 16.
(37) Said means to measure the weight unloaded from said parent roll B onto said two support and drive rollers 5, 6 comprise a load cell 7.
(38) In the variant shown, said load cell 7 is associated with said spindle cylinder 4. In particular, said load cell 7 is connected between two portions of said slide 11.
(39) The measurement of the weight unloaded from said parent roll B on said support and drive rollers 5, 6 is substantially indicative of the pressure exerted by the roll B on the support and drive rollers 5, 6, or of the “NIP”.
(40) In order to ensure the correct work of the unwinder 1, said pressure must be kept substantially constant, also to ensure a uniform final quality of the web N.
(41) In order to ensure a constant NIP, in spite of the roll B being reduced in diameter during the unwinding, it is necessary to act on the distance of the roll B from the support and drive rollers 5, 6: while the roll B unwinds it is clear that the NIP would tend to decrease and it is therefore necessary to lower said roll B to increase the unloading thereof on the support and drive rollers 5, 6. At the same time, it is important not to increase too much the NIP in order not to risk the deformation and the stretching of the material during the unwinding, if not even the tearing thereof.
(42) An indicative value of NIP for tissue unwinders is approximately 0.2 kg/cm.
(43) In an alternative variant, said load cell is associated with said support and drive rollers. In this case, the weight loaded on the support and drive rollers is measured (always and in any case related to the weight unloaded from the roll).
(44) Said third motor means M3 also comprise an encoder adapted to measure the rotation of the pinions adapted to read the racks 8, 9 of the actuator means: in this way, the linear displacement carried out by the spindle cylinder 4 along the racks 8, 9 and the speed of this displacement are also indirectly measured. Knowing the latter speed of movement allows the control unit C to also coordinate all the rotation speeds of the various components, be they the spindle cylinder 4 or the support and drive rollers 5, 6, also due to the fact that all the motor means M1, M2, M3, M4, M5, M6 used on the unwinder are under inverter.