Device and machine for making filter bags of tetrahedral shape
10889398 ยท 2021-01-12
Assignee
Inventors
Cpc classification
B65B51/303
PERFORMING OPERATIONS; TRANSPORTING
B65B29/028
PERFORMING OPERATIONS; TRANSPORTING
B65B9/2056
PERFORMING OPERATIONS; TRANSPORTING
International classification
B65B29/02
PERFORMING OPERATIONS; TRANSPORTING
B65B9/20
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A forming tube for making filter bags of tetrahedral shape for infusion products including a forming element, which is elongate and hollow, which defines a longitudinal axis and which has a first opening through which the product enters in the forming element, a second opening through which the product leaves from the forming element to be dosed inside a filter bag being formed, and an inner through cavity which connects the first opening to the second opening and inside of which flows the infusion product. The forming element includes a main body substantially tubular including the first opening and a forming end including the second opening and mobile in rotation with respect to the main body about the longitudinal axis.
Claims
1. A machine for forming filter bags of tetrahedral shape containing infusion product, the machine comprising: a forming and joining station to form a continuous strip of filter material and create a continuous tube of filter material, the forming and joining station comprising: i) a forming tube configured to be wound by the continuous strip of filter material moving along a feed direction, the forming tube comprising a hollow forming element extended along a longitudinal axis parallel to the feed direction and having a first opening and a second opening communicating by means of an inner through cavity through which the infusion product entering from the first opening flows to exit from the second opening so as to be dosed inside a filter bag in formation, the forming element comprising a main cylindrical body and a forming member, the forming member having a connecting portion proximal to the main cylindrical body and a forming portion distal from the main cylindrical body, the forming portion being provided with the second opening and having a maximum transversal dimension greater than the maximum transversal dimension of the connecting portion; ii) a longitudinal sealing element configured to form a continuous longitudinal seal at a free longitudinal edges of the continuous strip of filter material, in order to form the continuous tube of filter material; a feeding station for feeding the infusion product inside the inner through cavity; a sealing station comprising transversal sealing elements configured to make transversal seals on the continuous tube of filter material, the transversal seals being alternately rotated by 90 on a plane perpendicular to the longitudinal axis, wherein the forming member is rotatable joined to the main cylindrical body to rotate about the longitudinal axis, and wherein the connecting portion of the forming member has a transversal cross section which is circular relative to a plane transversal to the longitudinal axis and the forming portion of the forming member has a transversal cross section which is elongate relative to a plane transversal to the longitudinal axis.
2. The machine according to claim 1, wherein the forming member comprises a hollow cylindrical body provided with the inner through cavity.
3. The machine according to claim 2, wherein the hollow cylindrical body of the forming member is positioned inside the main cylindrical body.
4. The machine according to claim 3, wherein the hollow cylindrical body of the forming member is in contact with an internal surface of the main cylindrical body.
5. The machine according to claim 2, wherein the connecting portion is between the hollow cylindrical body and the forming portion.
6. The machine according to claim 2, wherein the hollow cylindrical body, the connecting portion and the forming portion are made in a single piece.
7. The machine according to claim 1, wherein the forming portion of the forming member has a tapered shape along the longitudinal axis relative to a first direction and a flared shape along the longitudinal axis relative to a second direction perpendicular to the first direction.
8. The machine according to claim 1, comprising a transmission device connected to the forming member and coupled with a drive device to rotate the forming member about the longitudinal axis.
9. The machine according to claim 1, wherein the feeding station comprises: a feed hopper configured to contain the infusion products and connected to the forming tube at the first opening; and a dosing piston, linearly movable inside the through inner cavity and along the longitudinal axis, between a first operating position wherein it leaves open the second opening and allows the infusion product to exit from the forming element and fall inside a filter bag in formation, and a second operating position wherein it closes the second opening, blocking the infusion product within the through inner cavity.
10. The machine according to claim 9, comprising a tubular element, positioned inside the through inner cavity of the forming element, the dosing piston being positioned and movable inside the tubular element.
11. The machine according to claim 9, wherein the tubular element has an outer cylindrical surface distanced from an inner surface of a hollow cylindrical body of the forming member, the space between said outer cylindrical surface of the tubular element and said inner surface of the hollow cylindrical body forming a passage for the infusion product when the infusion product flows from the first opening to the second opening.
12. The machine according to claim 1, wherein the forming and joining station further comprises a folding device comprising at least one folding wall for folding the continuous strip of filter material, so as to modify from a flat configuration to a tubular configuration.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) A preferred embodiment of the invention will now be described with reference to the accompanying drawings, provided by way of example only and in which:
(2)
(3)
(4)
(5)
DETAILED DESCRIPTION OF PREFERRED EMBODIMENTS OF THE INVENTION
(6)
(7) The machine 100 has a substantially vertical extension, with operating stations located along a vertical feed direction A, but this does not mean that this invention cannot also be advantageously used on machines with operating stations located along a feed direction A which is not vertical, for example horizontal, or transversal to a vertical direction.
(8) The operating stations of the machine 100 may be moved in step-like fashion or continuously, without thereby limiting the scope of protection of this invention.
(9) The machine 100 comprises a plurality of operating stations including: a forming and joining station 2, to form a continuous strip of filter material and join free longitudinal edges of the strip so as to create a continuous tube 3 of filter material; a feeding station 5 for feeding doses of product inside a continuous tube 3 of filter material; a sealing station 6 designed to make continuous transversal seals on the tube 3 of filter material.
(10) The forming and joining station 2 comprises a forming tube 200 about which is wound the continuous strip of filter material, and an longitudinal sealer 24 element (shown as a dotted line with a block), designed to form a continuous longitudinal seal at the longitudinal free edges of the continuous strip of filter material, so as to form the continuous tube 3 of filter material.
(11) Advantageously, the forming and joining station 2 also comprises a folding device, or tie, 23 comprising at least one folding wall for folding the continuous strip of filter material, unwound from a reel (not illustrated), so as to change from a flat configuration to a tubular configuration.
(12) The forming tube 200 comprises a forming element 4, which is elongate and hollow, which defines a longitudinal axis Z.
(13) The forming element 4 is advantageously associated with the folding device 23.
(14) The continuous tube 3 of filter material which is wound around the forming element 4 is fed along the feed direction A parallel to the longitudinal axis Z, with continuous motion or, alternatively, with intermittent motion. For this purpose, the machine 100 comprises pulling means, advantageously rollers or grippers, located downstream of, or at, the forming tube 200 and not illustrated here for reasons of simplicity, for pulling with continuous motion, or with intermittent motion, the continuous tube 3 of filter material.
(15) The forming tube 4 comprises a first opening 41 through which the product enters in the forming element 4, a second opening 42 through which the product leaves from the forming element 4 to be dosed inside a filter bag 1 being formed, and an inner through cavity 43 which connects the first opening 41 to the second opening 42 and inside of which flows the infusion product
(16) The forming element 4 also comprises a main body 44 which is substantially tubular which comprises the first end opening 41 and a forming end 45 which comprises the second opening 42 and designed to connect to the main body 44.
(17) The forming end 45 comprises a connecting portion 14, designed to connect the forming end 45 to the main body 44 and having a first maximum transversal dimension d1, and a forming portion 46 having a second maximum transversal dimension d2, greater than the first maximum transversal dimension d1.
(18) The forming end 45, in particular the forming portion 46, is rotatable relative to the main body 44 about the longitudinal axis Z.
(19) The forming and joining station 2 comprises a drive device 11 designed to rotate the forming end 45, in particular the forming portion 46, relative to the main body 44 about the longitudinal axis Z.
(20) Advantageously, the forming end 45 has a tapered shape along the longitudinal axis Z relative to a first direction and a flared shape along the same longitudinal axis Z relative to a second direction perpendicular to the first direction.
(21) Advantageously, the forming end 45 has a transversal cross section circular relative to a plane transversal to the longitudinal axis Z at the connecting portion 14 and an elongate cross section, advantageously substantially slot-like, transversal relative to a plane transversal to the longitudinal axis Z at the forming portion 46.
(22) The forming end 45 may advantageously comprise two forming projections 9 connected to opposite end portions of the forming portion 46.
(23) The forming end 45, and in particular the forming portion 46 and forming protuberances 9 if present, is configured for keeping in tension, in a predetermined shape, the continuous tube 3 of filter material. In use, therefore, the forming end 45 is positioned inside the continuous tube 3 of filter material, upstream of the sealing station 6.
(24) Advantageously, the forming element 4 comprises a hollow cylindrical body 16. Advantageously, the hollow cylindrical body 16 is positioned inside the main body 44.
(25) The hollow cylindrical body 16 is connected at a first end to the forming end 45, in particular to the connecting portion 14.
(26) Advantageously, the forming tube 200 also comprises a transmission device 47, connected to a second end, opposite the first end along the longitudinal axis Z, of the hollow cylindrical body 16.
(27) The transmission device 47 is designed to be coupled with a drive device 11, to rotate the forming portion 46 about the longitudinal axis Z.
(28) Advantageously, the transmission device 47 comprises a gear wheel 17.
(29) According to the preferred embodiment illustrated in
(30) In use, therefore, the transmission device 47, the hollow cylindrical body 16, and the forming end 45 rotate relative to the main body 44.
(31) Advantageously, the hollow cylindrical body 16 and the forming end are made in a single body. In other words, the hollow cylindrical body 16, the connecting portion 14 and the forming portion 46 are made in a single piece.
(32) In short, the drive device 11 is designed to actuate the forming end 45 rotating about the longitudinal axis Z in a synchronised fashion with the sealing station 6.
(33) The sealing station 6 is positioned downstream of the forming tube 200, in particular of the forming end 45, and comprises a first pair 7 and a second pair 8 of sealing units, positioned on the same plane. In the preferred embodiment illustrated, the pairs 7, 8 of sealing units are arranged at an equal distance Q from the main body 44.
(34) Each pair 7, 8 of sealing units comprises a first and a second sealing unit, positioned on the side opposite the continuous tube 3 of filter material.
(35) The pairs 7, 8 of sealing units are configured to obtain, in a synchronised fashion, a first and a second transversal seal on the continuous tube 3 of filter material oriented differently to each other by a right angle on a plane perpendicular to the longitudinal axis Z, in such a way as to divide, at regular intervals along the feed direction A, pieces of continuous tube 3 of filter material which define individual filter bags 1 of tetrahedral shape joined to each other.
(36) Cutting means (for example blade-like devices, or devices of the punch/die type, of known type and therefore not illustrated) are positioned downstream of the sealing station 6 for separating individual filter bags 1.
(37) In an alternative embodiment not illustrated, cutting means (for example blade-like devices, or devices of the punch/die type) can be integrated in the sealing units, so as to seal and simultaneously separate a filter bag 1 formed from a next filter bag 1 being formed.
(38) In short, each transversal seal made in the sealing station 6 defines a head of a finished filter bag 1 and a bottom end of a next filter bag 1 being formed.
(39) Preferably, the forming end 45 (see
(40) Preferably, the forming end 45 has a second pair of faces 12, or surfaces, in contact opposite each other, connected to the first pair of surfaces 13, extending, starting from the connecting portion 14 inclined and towards the longitudinal axis Z of the forming element 4.
(41) In short, the forming end 45 and in particular the forming portion 46, is able to tension and keeping taut transversely the continuous tube 3 of filter material.
(42) It should be noted that the continuous tube 3 of filter material has, at the main body 44, a circular transversal cross section with diameter substantially equal to d1, that is to say, substantially equal to the first maximum transversal dimension d1 of the connecting portion 14 of the forming end 45.
(43) As a result of the shape of the forming end 45, tapered along the longitudinal axis Z relative to a first direction and flared along the same longitudinal axis Z relative to a second direction perpendicular to the first direction, the continuous tube 3 of filter material has, immediately downstream of the forming tube 200, an elongate transversal cross section, for example slot-like, which defines a main direction of transversal extension Y of the continuous tube 3 of filter material, perpendicular to the longitudinal axis Z of the forming element 4. Basically, the continuous tube 3 of filter material has, immediately downstream of the forming tube 200, a transversal cross section with maximum dimension equal to d2, that is to say, equal to the second maximum transversal dimension d2 of the forming portion 46 of the forming end 45.
(44) In other words, the forming end 45 modifies the shape, in transversal cross section relative to, and along, the longitudinal axis Z, of the continuous tube 3 of filter material, from circular to elongate, for example slot-like, and simultaneously increases a maximum transversal dimension of the continuous tube 3 of filter material, from d1 to d2.
(45) The forming end 45, rotating in a stepwise fashion about the longitudinal axis Z, rotates, consequently in a step-like fashion, the main direction of transversal extension Y of the continuous tube 3 of filter material in a plane perpendicular to the longitudinal axis Z of the forming element 4.
(46) As a result of the step-like rotation of the forming end 45, the main direction of transversal extension Y rotates in a step-like fashion on a plane perpendicular to the longitudinal axis Z of the forming element 4.
(47) It should be noted that, as a result of the rotation of the forming end 45, the continuous tube 3 of filter material does not rotate about the longitudinal axis Z, rather it is the main direction of transversal extension Y of the continuous tube 3 of filter material which rotates. In other words, the forming end 45 slides on the filter material, in particular on an inner surface of the continuous tube 3 of filter material.
(48) The sealing station 6 operates in a synchronised fashion with the forming end 45.
(49) The sealing station 6 comprises movement means (not illustrated) for moving each pair 7, 8 of sealing units between a non-active position, wherein the sealing units are moved away from the continuous tube 3 of filter material, and an active position, wherein the sealing units are in contact with a portion of the continuous tube 3 of filter material and create a transversal seal.
(50) In detail, the forming end 45 is rotated so as to place the main direction of transversal extension Y of the continuous tube 3 of filter material parallel to the pair (7 or 8) of sealing units which must carry out the transversal sealing.
(51) Once the first transversal seal has been made, for example by the first pair 7 of sealing units (as illustrated in
(52) In use, therefore, the opposite surfaces of contact of the second pair 12 of the forming end 45 are always facing each other and parallel with the sealing units of the pair (7 or 8) which is making the transversal seal, or in other words, that is in the active position.
(53) Therefore, thanks to the possibility to rotate, the forming end 45 is always correctly positioned relative to the pairs 7 and 8 of sealing units, and the continuous tube 3 of filter material is correctly tensioned and oriented relative to the same pairs 7 and 8 of sealing units.
(54) Once the transversal seal has been formed, the sealing units of the pair (7 or 8) move away from each other, to move from the active position to the non-active position, allow the forming end 45 to rotate and the continuous tube 3 of filter material to feed along the feed direction A.
(55) The feeding station 5 is configured for feeding doses of product inside the filter bag 1 being formed.
(56) In detail, the feed station 5 comprises a feed hopper 25, designed to contain the product and connected to the forming tube 200 at the first opening 41, and a dosing piston 20, linearly movable inside the inner through cavity 43 of the forming element 4 along the longitudinal axis Z, between a first operating position (
(57) Advantageously, the feed station 5 further comprises a tubular element 19, positioned inside the through inner cavity 43 of the forming element 4, the dosing piston 20 being positioned and movable inside the tubular element 19.
(58) The tubular element 19 is positioned coaxially to the main body 44 of the forming element 4. The tubular element has an outer cylindrical surface which defines with an inner surface 15 of the hollow cylindrical body 16 of the forming end 45 a toroidal space inside of which the infusion product flows.
(59) The dosing piston 20 is driven in a synchronised fashion with the sealing station 6, to feed a dose of product inside a filter bag 1 being formed, once the sealing station 6 has made on the continuous tube 3 of filter material a first transversal seal, which defines the bottom of the filter bag 1 being formed.
(60) In other words, therefore, the dosing piston 20 doses a dose of product inside the filter bag 1, once the bottom has been made.
(61) Advantageously, the forming end 45 comprises a seat 21, which connects the second opening 42 with the through inner cavity 43 of the forming element 4. The seat 21 is engaged by the dosing piston 20 in the second operating position, so as to prevent passage of product through the second opening 42.
(62) A forming tube 200 as described achieves the preset aims, thanks to the presence of a forming end 45 rotating about an axis of rotation parallel to the feed direction A of the continuous tube 3 of filter material.
(63) The forming end 45 therefore allows the continuous tube 3 of filter material to be kept suitably tensioned transversely, to prepare the continuous tube 3 of filter material in a configuration (a slot-like transversal cross section) suitable to perform the transversal seals, and to rotate the main direction of transversal extension Y of the continuous tube 3 of filter material for conveniently positioning the continuous tube 3 of filter material in front of the pairs 7, 8 of sealing units of the sealing station 6 which must make the transversal seals.