EP4674780A1 - Opening device for a package and package having an opening device - Google Patents

Opening device for a package and package having an opening device

Info

Publication number
EP4674780A1
EP4674780A1 EP25183611.0A EP25183611A EP4674780A1 EP 4674780 A1 EP4674780 A1 EP 4674780A1 EP 25183611 A EP25183611 A EP 25183611A EP 4674780 A1 EP4674780 A1 EP 4674780A1
Authority
EP
European Patent Office
Prior art keywords
closure
rotation
opening device
cam
around
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Pending
Application number
EP25183611.0A
Other languages
German (de)
French (fr)
Inventor
Angelo Sorbara
Pietro Martini
Elena ZUNARELLI
Stefano GIORDANO
Tiziano VIANI
Martina LINGUITI
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Tetra Laval Holdings and Finance SA
Original Assignee
Tetra Laval Holdings and Finance SA
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Tetra Laval Holdings and Finance SA filed Critical Tetra Laval Holdings and Finance SA
Publication of EP4674780A1 publication Critical patent/EP4674780A1/en
Pending legal-status Critical Current

Links

Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65DCONTAINERS FOR STORAGE OR TRANSPORT OF ARTICLES OR MATERIALS, e.g. BAGS, BARRELS, BOTTLES, BOXES, CANS, CARTONS, CRATES, DRUMS, JARS, TANKS, HOPPERS, FORWARDING CONTAINERS; ACCESSORIES, CLOSURES, OR FITTINGS THEREFOR; PACKAGING ELEMENTS; PACKAGES
    • B65D5/00Rigid or semi-rigid containers of polygonal cross-section, e.g. boxes, cartons or trays, formed by folding or erecting one or more blanks made of paper
    • B65D5/42Details of containers or of foldable or erectable container blanks
    • B65D5/72Contents-dispensing means
    • B65D5/74Spouts
    • B65D5/746Spouts formed separately from the container
    • B65D5/747Spouts formed separately from the container with means for piercing or cutting the container wall or a membrane connected to said wall
    • B65D5/748Spouts formed separately from the container with means for piercing or cutting the container wall or a membrane connected to said wall a major part of the container wall or membrane being left inside the container after the opening
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65DCONTAINERS FOR STORAGE OR TRANSPORT OF ARTICLES OR MATERIALS, e.g. BAGS, BARRELS, BOTTLES, BOXES, CANS, CARTONS, CRATES, DRUMS, JARS, TANKS, HOPPERS, FORWARDING CONTAINERS; ACCESSORIES, CLOSURES, OR FITTINGS THEREFOR; PACKAGING ELEMENTS; PACKAGES
    • B65D41/00Caps, e.g. crown caps or crown seals, i.e. members having parts arranged for engagement with the external periphery of a neck or wall defining a pouring opening or discharge aperture; Protective cap-like covers for closure members, e.g. decorative covers of metal foil or paper
    • B65D41/32Caps or cap-like covers with lines of weakness, tearing-strips, tags, or like opening or removal devices, e.g. to facilitate formation of pouring openings
    • B65D41/34Threaded or like caps or cap-like covers provided with tamper elements formed in, or attached to, the closure skirt
    • B65D41/3442Threaded or like caps or cap-like covers provided with tamper elements formed in, or attached to, the closure skirt with rigid bead or projections formed on the tamper element and coacting with bead or projections on the container
    • B65D41/3447Threaded or like caps or cap-like covers provided with tamper elements formed in, or attached to, the closure skirt with rigid bead or projections formed on the tamper element and coacting with bead or projections on the container the tamper element being integrally connected to the closure by means of bridges
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65DCONTAINERS FOR STORAGE OR TRANSPORT OF ARTICLES OR MATERIALS, e.g. BAGS, BARRELS, BOTTLES, BOXES, CANS, CARTONS, CRATES, DRUMS, JARS, TANKS, HOPPERS, FORWARDING CONTAINERS; ACCESSORIES, CLOSURES, OR FITTINGS THEREFOR; PACKAGING ELEMENTS; PACKAGES
    • B65D55/00Accessories for container closures not otherwise provided for
    • B65D55/16Devices preventing loss of removable closure members
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65DCONTAINERS FOR STORAGE OR TRANSPORT OF ARTICLES OR MATERIALS, e.g. BAGS, BARRELS, BOTTLES, BOXES, CANS, CARTONS, CRATES, DRUMS, JARS, TANKS, HOPPERS, FORWARDING CONTAINERS; ACCESSORIES, CLOSURES, OR FITTINGS THEREFOR; PACKAGING ELEMENTS; PACKAGES
    • B65D2401/00Tamper-indicating means
    • B65D2401/15Tearable part of the closure
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65DCONTAINERS FOR STORAGE OR TRANSPORT OF ARTICLES OR MATERIALS, e.g. BAGS, BARRELS, BOTTLES, BOXES, CANS, CARTONS, CRATES, DRUMS, JARS, TANKS, HOPPERS, FORWARDING CONTAINERS; ACCESSORIES, CLOSURES, OR FITTINGS THEREFOR; PACKAGING ELEMENTS; PACKAGES
    • B65D2401/00Tamper-indicating means
    • B65D2401/15Tearable part of the closure
    • B65D2401/30Tamper-ring remaining connected to closure after initial removal

Definitions

  • the present invention relates to an opening device for a package, in particular for a sealed package, filled with a pourable product, more in particular filled with a pourable food product.
  • the present invention also relates to a package having a main body filled with a pourable product, in particular filled with a pourable food product, and an opening device arranged on the main body.
  • liquid or pourable food products such as fruit juice, UHT (ultra-high-temperature treated) milk, wine, tomato sauce, etc.
  • UHT ultra-high-temperature treated milk
  • wine tomato sauce
  • etc. are sold in packages made of sterilized packaging material.
  • a typical example is the parallelepiped-shaped package for pourable food products known as Tetra Brik Aseptic (registered trademark), which is made by sealing and folding a laminated strip packaging material.
  • the packaging material has a multilayer structure comprising a fiber-based base layer, covered on both sides with layers of heat-seal plastic material, e.g. polyethylene.
  • the packaging material also comprises a layer of oxygen-barrier material, e.g. an aluminum foil, which is superimposed on a layer of heat-seal plastic material and is in turn covered with another layer of heat-seal plastic material forming the inner face of the package eventually contacting the food product.
  • Some of the known packages comprise a designated pour opening surface area, which allows the outpouring of the pourable product from the package.
  • the designated pour opening surface area is covered by a separation membrane, which isolates the inside of the package from the outer environment and which is to be opened or to be removed or to be ruptured or to be cut or to be pierced prior to the first outpouring of the pourable product so as to allow for the outpouring of the pourable product.
  • an opening device having a collar and a closure coupled and/or couplable to the collar on the main body about the designated pour opening surface area so as to control the outpouring of the pourable product.
  • the collar has a pouring outlet so as to allow a controlled outpouring of the pourable product from the package and the closure allows to selectively close and open the pouring outlet.
  • Some of the known opening devices comprise an opening assembly so as to pierce and/or open the pour opening surface area in a controlled manner.
  • opening devices as e.g. described in EP-A-3805126 , which comprise a collar, a closure and a connecting element connected to the closure and coupled to the collar.
  • the collar is provided with a cam and a pair of cam followers protruding from an inner face of the closure and configured to interact with the cam during rotation of the closure around a rotation axis for moving the closure from a closed position to a partially open position.
  • opening devices require an angular movement of the closure with respect to the connecting element around a turning axis to move the closure from the partially open position to an opening position. Moreover, it is possible to angularly move the closure around the rotation axis or to simply flip the closure with respect to the connecting element around the turning axis to move the closure from the opening position to the closing position.
  • an opening device according to the independent claim.
  • Number 1 indicates as a whole a package, in particular a package, comprising:
  • Main body 2 is obtained from a multilayer packaging material, e.g. being provided in the form of a web.
  • the packaging material comprises at least a layer of fibrous material, such as e.g. paper or cardboard, and at least two layers of heat-seal plastic material, e.g. polyethylene, interposing the layer of fibrous material in between one another.
  • a layer of fibrous material such as e.g. paper or cardboard
  • heat-seal plastic material e.g. polyethylene
  • the packaging material also comprises a layer of gas- and light-barrier material, e.g. aluminum foil or ethylene vinyl alcohol (EVOH) film, in particular being arranged between one of the layers of heat-seal plastic material and the layer of fibrous material.
  • the packaging material also comprises a further layer of heat-seal plastic material being interposed between the layer of gas- and light-barrier material and the layer of fibrous material.
  • Opening devices 3 may be applied onto the respective main bodies 2 prior to, during or after forming, filling and sealing main bodies 2 by means of a molding process and/or adhesive bonding and/or ultrasonic bonding.
  • opening devices 3 may be applied onto the packaging material prior to arranging the packaging material within or during advancement of the packaging material within a packaging machine for forming, filling and sealing main bodies 2 from the packaging material.
  • each main body 2 extends along a longitudinal axis. Additionally, main body 2 extends along a first transversal axis perpendicular to the longitudinal axis and a second transversal axis perpendicular to the longitudinal axis and the first transversal axis.
  • the designated pour opening surface area of main body 2 is configured to be at least partially (non-reversibly) opened and/or ruptured and/or cut and/or pierced so as to allow out-pouring of the pourable product from main body 2, in particular through opening device 3.
  • the pour opening surface area is configured to allow out-pouring of the pourable product after its loss of integrity and to protect the pourable product from the outer environment prior to its cutting and/or opening and/or rupturing and/or piercing.
  • the pour opening surface area comprises a separation membrane (not shown and known as such) configured to be ruptured and/or opened and/or cut and/or pierced.
  • the separation membrane separates in the area of, in particular at, the designated pour opening surface area the inside of main body 2 from the outside of main body 2.
  • the separation membrane comprises a gas- and light-barrier material, e.g. aluminum foil or ethylene vinyl alcohol (EVOH) film.
  • the separation membrane may be defined by a portion of the packaging material, in particular a portion of the layers of the packaging material being different from the layer of fibrous material.
  • opening device 3 comprises at least:
  • Closure 6 is controllable between at least:
  • Closure 6 is also controllable in an intermediate position (see Figure 4B ) in which closure 6 is interposed between the closing position and the opening position.
  • opening device 3 also comprises a coupling ring 8 rotatably arranged around collar 4, in particular such that coupling ring 8 is inseparable from collar 4.
  • closure 6 is connected, in particular hinged, to coupling ring 8 and is angularly movable with respect to coupling ring 8 around a respective turning axis.
  • opening device 3 comprises a connecting element connected to coupling ring 8 and closure 6.
  • the connecting element is a hinge element.
  • the connecting element is different from a hinge element, such as a tethering element.
  • closure 6 is movable in the opening position, the closing position and the intermediate position by an angular movement around the turning axis. Moreover, closure 6 performs an angular movement around the turning axis when moving in the opening position, the closing position and the intermediate position.
  • opening device 3 is configured such that the angular movement of closure 6 around the turning axis for moving closure 6 from the closing position to the intermediate position is possible only during rotation of closure 6 around rotation axis B (and in a first direction of rotation).
  • closure 6 is in a first angular position, a second angular position and a third angular position with respect to the turning axis when being in, respectively, the closing position, the opening position and the intermediate position.
  • the third angular position is interposed between the first angular position and the second angular position.
  • collar 4 extends along a longitudinal axis A (and away from base frame 7), preferentially but not necessarily parallel to the longitudinal axis of main body 2.
  • longitudinal axis A defines (is equal to) a central axis of collar 4 and/or pouring outlet 5.
  • collar 4 and pouring outlet 5 have a (substantially) circular cross-sectional profile, in particular with respect to a cross-sectional plane perpendicular to longitudinal axis A.
  • opening device 3 comprises a coupling element configured to connect closure 6 to coupling ring 8 and defining the turning axis.
  • control of closure 6 from the closing position to the opening position requires at first control from the closing position to the intermediate position and then from the intermediate position to the opening position.
  • control of closure 6 from the first angular position to the second angular position requires at first control of closure 6 from the first angular position to the third angular position and then from the third angular position to the second angular position.
  • closure 6 comprises:
  • main wall 13 is transversal, in particular perpendicular, to longitudinal axis A and side wall 14 is (substantially) parallel to longitudinal axis A.
  • side wall 14 comprises an inner surface, in particular the inner surface of side wall 14 faces collar 4 with closure 6 being in the closing position (and in the intermediate position).
  • opening device 3 comprises an interaction device 16 partially associated to (and/or connect to and/or carried by) collar 4 and partially associated to (and/or connect to and/or carried by) closure 7 and being configured to control closure 6 from the closing position to the intermediate position during rotation of closure 6, preferentially of closure 6 and coupling ring 8, around a (common) rotation axis B, and in particular in a first direction of rotation.
  • interaction device 16 is configured such that control of closure 6 from the closing position to the intermediate position is possible only by rotation of closure 6, preferentially of closure 6 and coupling ring 8, around rotation axis B.
  • rotation axis B is parallel, even more particular coaxial, to longitudinal axis A.
  • interaction device 16 is configured such to actuate a movement of closure 6 around the turning axis for moving closure 6 from the closing position to the intermediate position during rotation of closure 6 around rotation axis B (and in the first direction of rotation).
  • interaction device 16 is configured to actuate a movement of closure 6 from the first angular position to the third angular position.
  • Control of closure 6 from the intermediate position to the opening position is obtained by (the user) angularly moving closure 6 around the turning axis.
  • control of closure 6 from the opening position to the intermediate position is obtained by angularly moving closure 6 around the turning axis.
  • control of closure 6 from the intermediate position to the closing position is possible during rotation of closure 6 around rotation axis B in a second direction of rotation opposite to the first direction of rotation.
  • control of closure 6 from the intermediate position to the closing position is selectively possible:
  • a user can freely choose whether to control closure 6 from the intermediate position to the closing position by the sole angular movement around the turning axis or whether to control closure 6 from the intermediate position to the closing position by the rotation of closure 6 around rotation axis B. It should be further noted that also a combination of both means of controlling closure 6 from the intermediate position to the closing position is possible.
  • a sole angular movement of closure 6 around the turning axis is an angular movement of closure 6 around the turning axis that occurs while closure 6 remains angularly fixed with respect to rotation axis B.
  • any angular movement of closure 6 around the turning axis is a sole angular movement if closure 6 does not rotate around rotation axis B.
  • Opening device 3 may also comprise:
  • control device is configured to control cutter 70 from the rest position to the operative position upon rotation of closure 6 around rotation axis B. Even more particular, the control device is configured to control cutter 70 from the rest position to the operative position the first time closure 6 is, in use, moved from the closing position to the intermediate position.
  • collar 4 delimits a flow channel 18.
  • collar 4 comprises an inner surface 19 facing flow channel 18 and an outer surface 20 being opposite to inner surface 19.
  • cutter 70 is at least partially placed within flow channel 18.
  • cutter 70 is configured to at least translate, in particular to rotate and translate, during its movement from the rest position to the operative position.
  • cutter 70 comprises a cutting section (arranged at and/or defining an axial end portion of cutter 70) configured to open and/or cut and/or rupture and/or pierce the designated pour opening surface area, in particular the separation membrane. Even more preferentially, the cutting section has a serrated profile.
  • control device comprises a cam group configured to guide movement of cutter 70 from the rest position to the operative position.
  • the cam group comprises a cam profile and at least one, preferentially a plurality of, guiding element(s) 71 configured to interact with the cam profile.
  • the cam profile and guiding element(s) 71 cooperate in such a manner that cutter 70 executes, in use, a rototranslatory movement when moving from the rest position to the operative position.
  • the cam profile is associated and/or connected and/or integral to cutter 70 and guiding element(s) 71 is/are connected and/or associated and/or integral to collar 4, even more particular to inner surface 19.
  • control device comprises:
  • each interaction member 73 is coupled and/or connected to closure 6 such that rotation of closure 6 around rotation axis B leads also to rotation of interaction members 73 around rotation axis B.
  • rotation of closure 6 and interaction members 73 around rotation axis B causes at least a translatory, preferentially a rototranslatory, movement of cutter 70 by means of the interaction between interaction members 73 and the interaction elements and the cooperation between the cam profile and guiding element(s) 71.
  • opening device 3 may also comprise a tamper-evidence ring 21 arranged around collar 4 and preferentially also rupturable coupling bridges 22 connected to coupling ring 8 and tamper-evidence ring 21 and configured to rupture during a first-time rotation of collar 6 and/or coupling ring 8 around rotation axis B (thereby separating tamper-evidence ring 21 from coupling ring 8 as shown in Figures 4A , 4B and 4D ).
  • opening device 3 may also comprise further rupturable coupling bridges 23 connected to coupling ring 8 and closure 6 and configured to rupture during a first-time rotation of collar 6 around rotation axis B (thereby separating coupling ring 8 from closure 6 as shown in Figures 4A , 4B and 4D ) and the first-time control of closure 6 from the closing position to the intermediate position.
  • collar 4 comprises an interaction ring 24, in particular protruding from outer surface 20 and configured to interact with coupling ring 8.
  • interaction ring 24 is configured to inseparably couple coupling ring 8 to collar 4 and to allow for rotation of coupling ring 8 around rotation axis B.
  • interaction device 16 comprises at least:
  • Main cam 30 is designed such that interaction between the one or more main cam followers 31 and main cam 30 during rotation of closure 6 around rotation axis B in the first direction of rotation leads to movement of closure 6 from the closing position to the intermediate position.
  • main cam 30 comprises and extends between a first terminal portion 32 and a second terminal portion 34 opposite to first terminal end 32.
  • first terminal portion 32 has a first end 33 and second terminal portion 34 has a second end 35 opposite to first end 33.
  • first end 33 and second end 35 defines respective ends of main cam 30.
  • second end 35 is closer to pouring outlet 5 than first end 33.
  • main cam 30 is inclined towards pouring outlet 5 extending from first end 33 to second end 35.
  • main cam 30 and the one or more main cam followers 31 is such that when rotation of closure 6 around rotation axis B is actuated for the first time, angular movement of closure 6 around the turning axis, in particular from the closing position to the intermediate position, is executed only after movement of cutter 70 from the rest position to the operative position.
  • first end 33 and second end 35 are arranged at, respectively, a first angular position u and a second angular position v with respect to rotation axis B.
  • first angular position u is chosen such that cutter 70 is moved in the operative position before closure 6 reaches the intermediate position.
  • each main cam follower 31 comprises an engagement surface 36 configured to slide along a guiding surface 37 of main cam 30 extending from first end 33 to second end 35 so as to actuate movement of closure 6 from the closing position to the intermediate position.
  • each engagement surface 36 is inclined with respect to rotation axis B.
  • main cam 30 The Applicant has observed that the forces acting on main cam 30 are, in particular when considering at least two main cam followers 31, the highest in the proximity of second end 35.
  • main cam 30 comprises a reinforcing element 38 connected to second end 35 and designed to strengthen and/or enhance the mechanical stability of second terminal portion 34.
  • the Applicant has observed that the stability is particularly improved when reinforcing element 38 together with second terminal portion 34 delimits a substantially triangular area.
  • reinforcing element 38 comprises a center portion 39 void of any material and/or being a cavity.
  • center portion 39 cooperates with collar 4, in particular outer surface 20, to define the cavity.
  • outer surface 20 defines an end closing wall of the cavity.
  • second terminal portion 34 extends from an intermediate point 40 of main cam 30 to second end 35 with intermediate point 40 being interposed between first end 33 and second end 35.
  • reinforcing element 38 is also connected to intermediate point 40.
  • reinforcing element 38 comprises a first wall 44 transversal to main cam 30 and connected to second end 35 and a second wall 45 connected to intermediate point 40, transversal to main cam 30 and connected to first wall 44.
  • second terminal portion 34, first wall 44 and second wall 45 define a triangle, even more particular defining center portion 39 void of any material and/or being a cavity.
  • a first distance between first end 33 and intermediate point 40 and a second distance between intermediate point 40 and second end 35 substantially equal one another.
  • first distance and the second distance are obtained by projecting first end 33, second end 35 and intermediate point 40 on a common plane.
  • second end 35 comprises a curved surface 46, in particular merging into reinforcing element 38.
  • curved surface 46 may define an angle different from 90° with outer surface 20.
  • opening device 3 also comprises an auxiliary cam 50 connected to collar 4, in particular to outer surface 20, and being angularly and axially spaced apart from main cam 42.
  • auxiliary cam 50 has a first end 48 and a second end 49. Even more particular, second end 49 is closer to pouring outlet 5 than first end 48.
  • auxiliary cam 50 extends from a third angular position w to a fourth angular position x with respect to rotation axis B.
  • third angular position w is interposed between first angular position u and second angular position v.
  • opening device 3 comprises one or more auxiliary cam followers 51, in the specific case shown one, configured to interact with auxiliary cam 50 for contributing to the movement of closure 6 from the closing position to the intermediate position during rotation of closure 6 around rotation axis B, in particular during rotation of closure 6 around rotation axis B in the first direction of rotation.
  • each auxiliary cam follower 50 comprises an engagement surface 52 configured to engage auxiliary cam 50, in particular a guiding surface 53 of auxiliary cam 50, during rotation of closure 6 around rotation axis B.
  • guiding surface 53 bevels from outer surface 20.
  • guiding surface 53 comprises a first section and a second section.
  • the first section is closer to outer surface 20 than the second section.
  • auxiliary cam follower 51 is connected to the inner surface of lateral wall 14.
  • auxiliary cam follower 51 comprises a connection portion in contact with the inner surface of lateral wall 14 and an end portion opposite to, and in particular connected to, the connection portion.
  • the end portion carries engagement surface 52.
  • connection portion does not carry and/or comprise a portion of engagement surface 52.
  • auxiliary cam follower 51 facing (during movement of closure 6 from the closing position to the intermediate position) guiding surface 53 is effectively intended to engage with guiding surface 53.
  • control of closure 6 from the intermediate position to the closing position can occur by rotation of closure 6 around rotation axis B in the second direction of rotation.
  • auxiliary cam follower 51 comprises an auxiliary surface 65 opposite to engagement surface 52 and configured to interact with main cam 30 during rotation of closure 6 around rotation axis B in the second direction of rotation and to guide auxiliary cam follower 51 into a space 54 delimited between main cam 30 and auxiliary cam 50.
  • auxiliary surface 65 is inclined with respect to main wall 13.
  • auxiliary surface 65 comprises a first terminal section 55 and a second terminal section 56 opposite to first terminal section 55.
  • first terminal section 55 is closer to main wall 13 than second terminal section 56.
  • second terminal section 56 is arranged upstream of first terminal section 55 during rotation of closure 6 around rotation axis B in the second direction of rotation (hence, second terminal section 56 engages with main cam 30 prior to first terminal section 55 during rotation of closure 6 in the second direction of rotation).
  • main cam 30 comprises a surface section 57 opposite to guiding surface 37.
  • reinforcement element 38 carries surface section 57.
  • auxiliary surface 65 is configured to engage surface section 57 during rotation of closure 6 around rotation axis B in the second direction of rotation for guiding auxiliary cam follower 51 into space 54.
  • opening device 3 also comprises a locking mechanism configured to lock closure 6 in the closing position and such that control of closure 6 from the closing position to the intermediate position is possible only by rotation of closure 6 around rotation axis B.
  • the locking mechanism is configured to block control of closure 6 from the closing position to the intermediate position by means of a sole flipping of closure 6 (i.e. the locking mechanism inhibits the possibility of a sole angular movement of closure 6 around the turning axis from the first angular position to the third angular position without any rotation of closure 6 around rotation axis B).
  • the locking mechanism comprises a locking element 59, in particular having an arc-shaped portion, arranged on outer surface 20.
  • the locking mechanism comprises an engagement element configured to abut against locking element 59 for impeding movement of closure 6 from the closing position to the intermediate position.
  • auxiliary cam follower 51 defines the engagement element. Moreover, auxiliary surface 65 of auxiliary cam follower 51 opposite to engagement surface 52 is configured to abut against locking element 59 for impeding movement of closure 6 from the closing position to the intermediate position.
  • opening device 3 further comprises an abutment element connected to collar 4, in particular outer surface 20 and an interaction element connected to closure 6 and configured to abut against the abutment element during rotation of closure 6 around rotation axis B in the second direction of rotation such that a further rotation of closure 6 in the second direction of rotation is inhibited.
  • closure 6 from the closing position to the intermediate is inhibited, in particular as an angular movement of closure 6 around the turning axis is inhibited.
  • the abutment element and the interaction element define a rotation inhibition mechanism.
  • the abutment element comprises an abutment surface 61 and the interaction element an interaction surface configured to abut against abutment surface 61.
  • the interaction surface is complementary to abutment surface 61.
  • auxiliary cam follower 51 defines the interaction element.
  • auxiliary surface 65 defines the interaction surface.
  • abutment surface 61 comprises a first abutment portion 62 and a second abutment portion 63 transversal to first abutment portion 62.
  • first abutment portion 62 is interposed between and connected to second abutment portion 63 and third abutment portion 64.
  • first abutment portion 62 is inclined with respect to third abutment portion 64.
  • auxiliary cam 50 carries and/or defines at least a portion of the abutment element, in particular abutment surface 61.
  • the portion of abutment portion 61 being opposite to guiding surface 53 carries and/or defines at least a portion of the abutment element.
  • auxiliary cam 50 carries first abutment portion 62.
  • locking element 59 carries third abutment portion 64.
  • outpouring of the pourable product from package 1, in particular main body 2, requires liberating pouring outlet 5. This is done by controlling closure 6 from the closing position to the opening position. Even more particular, at first closure 6 is controlled from the closing position to the intermediate position and then from the intermediate position to the opening position.
  • the first time closure 6 is to be controlled from the closing position to the intermediate position cutter 70 is controlled from the rest position to the operative position for opening and/or rupturing and/or piercing the pour opening surface area, in particular the separation membrane.
  • control of cutter 70 from the rest position to the operative position occurs prior to closure 6 reaching the opening position.
  • closure 6 When a user intends to newly impede the outflow of the pourable product, the user can control closure 6 again (during a re-closing operation) in the closing position.
  • closure 6 needs to be controlled from the opening position to the intermediate position, followed by controlling closure 6 from the intermediate position to the closing position.
  • the latter can be obtained by a sole angular movement of closure 6 around the turning axis (sole flipping) or by a rotation of closure 6 around rotation axis B in the second direction of rotation or by an angular movement of closure 6 around the turning axis (flipping) and by a rotation of closure 6 around rotation axis B in the second direction of rotation.
  • interaction between the abutment element and the interaction element allows to indicate to a user that closure 6 has reached the closing position after being controlled from the intermediate position to the closing position by rotation of closure 6 around rotation axis B.
  • auxiliary cam follower 51 acts as the interaction element.
  • reinforcing element 38 allows to strengthen main cam 30 at a point of maximum load, in particular in the case of having more than one main cam follower 31.
  • center portion 39 being void of any material and/or being a cavity guarantees the desired strength by limiting the raw material consumption.
  • auxiliary surface 65 is designed to interact in a desired manner with main cam 30 so as to avoid an unwanted impact between auxiliary cam follower 51 and main cam 50. This is further improved when having surface section 57.

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Closures For Containers (AREA)

Abstract

There is described an opening device (3) comprising a collar (4) and a closure (6) controllable between a closing position, an opening position and an intermediate position. The opening device (3) comprises an interaction device (16) comprising a cam element (50) and one or more cam follower elements (51). The opening device (3) further comprises an abutment element (50; 66) connected to the collar (4) and an interaction element (51) configured to abut against the abutment element (50; 66) during rotation of the closure (6) around a rotation axis (B) and such that a further rotation of the closure (6) is inhibited.

Description

    TECHNICAL FIELD
  • The present invention relates to an opening device for a package, in particular for a sealed package, filled with a pourable product, more in particular filled with a pourable food product.
  • The present invention also relates to a package having a main body filled with a pourable product, in particular filled with a pourable food product, and an opening device arranged on the main body.
  • BACKGROUND ART
  • As is known, many liquid or pourable food products, such as fruit juice, UHT (ultra-high-temperature treated) milk, wine, tomato sauce, etc., are sold in packages made of sterilized packaging material.
  • A typical example is the parallelepiped-shaped package for pourable food products known as Tetra Brik Aseptic (registered trademark), which is made by sealing and folding a laminated strip packaging material. The packaging material has a multilayer structure comprising a fiber-based base layer, covered on both sides with layers of heat-seal plastic material, e.g. polyethylene. In the case of aseptic packages for long-storage products, the packaging material also comprises a layer of oxygen-barrier material, e.g. an aluminum foil, which is superimposed on a layer of heat-seal plastic material and is in turn covered with another layer of heat-seal plastic material forming the inner face of the package eventually contacting the food product.
  • Some of the known packages, in particular respective sealed main bodies of the packages formed from the packaging material, comprise a designated pour opening surface area, which allows the outpouring of the pourable product from the package. Typically, the designated pour opening surface area is covered by a separation membrane, which isolates the inside of the package from the outer environment and which is to be opened or to be removed or to be ruptured or to be cut or to be pierced prior to the first outpouring of the pourable product so as to allow for the outpouring of the pourable product. It is also known to arrange an opening device having a collar and a closure coupled and/or couplable to the collar on the main body about the designated pour opening surface area so as to control the outpouring of the pourable product. The collar has a pouring outlet so as to allow a controlled outpouring of the pourable product from the package and the closure allows to selectively close and open the pouring outlet.
  • Some of the known opening devices comprise an opening assembly so as to pierce and/or open the pour opening surface area in a controlled manner.
  • There are known opening devices as e.g. described in EP-A-3805126 , which comprise a collar, a closure and a connecting element connected to the closure and coupled to the collar. The collar is provided with a cam and a pair of cam followers protruding from an inner face of the closure and configured to interact with the cam during rotation of the closure around a rotation axis for moving the closure from a closed position to a partially open position.
  • It is also known that such opening devices require an angular movement of the closure with respect to the connecting element around a turning axis to move the closure from the partially open position to an opening position. Moreover, it is possible to angularly move the closure around the rotation axis or to simply flip the closure with respect to the connecting element around the turning axis to move the closure from the opening position to the closing position.
  • Even though the known opening devices work satisfyingly well, a desire is felt in the sector to further improve the opening devices and/or the packages having the opening devices.
  • DISCLOSURE OF INVENTION
  • It is therefore an object of the present invention to provide an improved opening device for a package filled with a pourable product, in particular filled with a pourable food product.
  • It is a further object of the present invention to provide an improved package having a main body filled with a pourable product, in particular filled with a pourable food product, and an opening device applied on the main body.
  • According to the present invention, there is provided an opening device according to the independent claim.
  • Further advantageous embodiments of the opening device are specified in the respective dependent claims.
  • According to the present invention, there is also provided a package according to claim 15.
  • BRIEF DESCRIPTION OF THE DRAWINGS
  • A non-limiting embodiment of the present invention will be described by way of example with reference to the accompanying drawings, in which:
    • Figure 1 is a schematic perspective view of a portion of a package having an opening device according to the present invention, with parts removed for clarity;
    • Figure 2 is a side view of a detail of the opening device of Figure 1, with parts removed for clarity;
    • Figure 3 is a side perspective view of the detail of the opening device of Figure 2, with parts removed for clarity;
    • Figures 4A to 4D are side views of the opening device of Figure 1 being in different configurations, with parts removed for clarity;
    • Figures 5A to 5C are side views of details of the opening device of Figure 1 being in different configurations, with parts removed for clarity;
    • Figures 6A to 6C are perspective views of details of the opening device of Figure 1 when being in different configurations, with parts removed for clarity; and
    • Figure 7 is an enlarged perspective view of another detail of the opening device, with parts removed for clarity.
    BEST MODES FOR CARRYING OUT THE INVENTION
  • Number 1 indicates as a whole a package, in particular a package, comprising:
    • a main body 2, in particular a sealed main body 2, being filled with a pourable product, in particular a pourable food product, and in particular having a designated pour opening surface area (not shown and known as such); and
    • an opening device 3, in particular a plastic opening device 3, fitted to the package, in particular to main body 2 about the designated pour opening surface area.
  • Main body 2 is obtained from a multilayer packaging material, e.g. being provided in the form of a web.
  • The packaging material comprises at least a layer of fibrous material, such as e.g. paper or cardboard, and at least two layers of heat-seal plastic material, e.g. polyethylene, interposing the layer of fibrous material in between one another. One of these two layers of heat-seal plastic material defines the inner face of main body 2 contacting the pourable product.
  • Preferably but not necessarily, the packaging material also comprises a layer of gas- and light-barrier material, e.g. aluminum foil or ethylene vinyl alcohol (EVOH) film, in particular being arranged between one of the layers of heat-seal plastic material and the layer of fibrous material. Preferentially but not necessarily, the packaging material also comprises a further layer of heat-seal plastic material being interposed between the layer of gas- and light-barrier material and the layer of fibrous material.
  • Opening devices 3 may be applied onto the respective main bodies 2 prior to, during or after forming, filling and sealing main bodies 2 by means of a molding process and/or adhesive bonding and/or ultrasonic bonding.
  • Alternatively, opening devices 3 may be applied onto the packaging material prior to arranging the packaging material within or during advancement of the packaging material within a packaging machine for forming, filling and sealing main bodies 2 from the packaging material.
  • With particular reference to Figure 1, each main body 2 extends along a longitudinal axis. Additionally, main body 2 extends along a first transversal axis perpendicular to the longitudinal axis and a second transversal axis perpendicular to the longitudinal axis and the first transversal axis.
  • In particular, the designated pour opening surface area of main body 2 is configured to be at least partially (non-reversibly) opened and/or ruptured and/or cut and/or pierced so as to allow out-pouring of the pourable product from main body 2, in particular through opening device 3. Even more particular, the pour opening surface area is configured to allow out-pouring of the pourable product after its loss of integrity and to protect the pourable product from the outer environment prior to its cutting and/or opening and/or rupturing and/or piercing.
  • The pour opening surface area comprises a separation membrane (not shown and known as such) configured to be ruptured and/or opened and/or cut and/or pierced. In particular, the separation membrane separates in the area of, in particular at, the designated pour opening surface area the inside of main body 2 from the outside of main body 2. Preferentially but not necessarily, the separation membrane comprises a gas- and light-barrier material, e.g. aluminum foil or ethylene vinyl alcohol (EVOH) film.
  • The separation membrane may be defined by a portion of the packaging material, in particular a portion of the layers of the packaging material being different from the layer of fibrous material.
  • With particular reference to Figures 1 to 7, opening device 3 comprises at least:
    • a collar 4 having a pouring outlet 5 configured to allow for an (controlled) outflow of the pourable product from package 1; and
    • a closure 6 coupled to the collar 4 and configured to cover the pouring outlet 5.
  • Closure 6 is controllable between at least:
    • a closing position (see Figures 1 and 4C) in which closure 6 covers pouring outlet 5;
    • an opening position (see Figure 4D) in which closure 6 opens pouring outlet 5.
  • Closure 6 is also controllable in an intermediate position (see Figure 4B) in which closure 6 is interposed between the closing position and the opening position.
  • Opening device 3 may also comprise a base frame 7 carrying collar 4 and being configured to be fitted and/or being fitted about the designated pour opening surface area of main body 2.
  • In further detail, opening device 3 also comprises a coupling ring 8 rotatably arranged around collar 4, in particular such that coupling ring 8 is inseparable from collar 4.
  • Preferentially, closure 6 is connected, in particular hinged, to coupling ring 8 and is angularly movable with respect to coupling ring 8 around a respective turning axis.
  • In particular, opening device 3 comprises a connecting element connected to coupling ring 8 and closure 6.
  • According to the example shown, the connecting element is a hinge element. Alternatively, the connecting element is different from a hinge element, such as a tethering element.
  • Moreover, closure 6 is movable in the opening position, the closing position and the intermediate position by an angular movement around the turning axis. Moreover, closure 6 performs an angular movement around the turning axis when moving in the opening position, the closing position and the intermediate position.
  • Advantageously, opening device 3 is configured such that the angular movement of closure 6 around the turning axis for moving closure 6 from the closing position to the intermediate position is possible only during rotation of closure 6 around rotation axis B (and in a first direction of rotation).
  • In particular, closure 6 is in a first angular position, a second angular position and a third angular position with respect to the turning axis when being in, respectively, the closing position, the opening position and the intermediate position. The third angular position is interposed between the first angular position and the second angular position.
  • In further detail, collar 4 extends along a longitudinal axis A (and away from base frame 7), preferentially but not necessarily parallel to the longitudinal axis of main body 2.
  • In particular, longitudinal axis A defines (is equal to) a central axis of collar 4 and/or pouring outlet 5.
  • Preferentially, collar 4 and pouring outlet 5 have a (substantially) circular cross-sectional profile, in particular with respect to a cross-sectional plane perpendicular to longitudinal axis A.
  • In even more detail, opening device 3 comprises a coupling element configured to connect closure 6 to coupling ring 8 and defining the turning axis.
  • In particular, in use, control of closure 6 from the closing position to the opening position requires at first control from the closing position to the intermediate position and then from the intermediate position to the opening position. In other words, in use, control of closure 6 from the first angular position to the second angular position requires at first control of closure 6 from the first angular position to the third angular position and then from the third angular position to the second angular position.
  • Preferentially, closure 6 comprises:
    • a main wall 13 configured to cover pouring outlet 5 with closure 6 being in the closing position; and
    • a lateral wall 14 protruding from main wall 13 and configured to at least partially surround collar 4 with closure 6 being in the closing position.
  • In particular, and with closure 6 being in the closing position, main wall 13 is transversal, in particular perpendicular, to longitudinal axis A and side wall 14 is (substantially) parallel to longitudinal axis A.
  • According to some possible non-limiting embodiments, closure 6 is, in particular main wall 13 and/or side wall 14 are, coupled to collar 4 when closure 6 is, in use, in the closing position (and in the intermediate position).
  • Preferentially, side wall 14 comprises an inner surface, in particular the inner surface of side wall 14 faces collar 4 with closure 6 being in the closing position (and in the intermediate position).
  • Advantageously, opening device 3 comprises an interaction device 16 partially associated to (and/or connect to and/or carried by) collar 4 and partially associated to (and/or connect to and/or carried by) closure 7 and being configured to control closure 6 from the closing position to the intermediate position during rotation of closure 6, preferentially of closure 6 and coupling ring 8, around a (common) rotation axis B, and in particular in a first direction of rotation.
  • In particular, interaction device 16 is configured such that control of closure 6 from the closing position to the intermediate position is possible only by rotation of closure 6, preferentially of closure 6 and coupling ring 8, around rotation axis B.
  • In particular, rotation axis B is parallel, even more particular coaxial, to longitudinal axis A.
  • Furthermore, interaction device 16 is configured such to actuate a movement of closure 6 around the turning axis for moving closure 6 from the closing position to the intermediate position during rotation of closure 6 around rotation axis B (and in the first direction of rotation).
  • In particular, interaction device 16 is configured to actuate a movement of closure 6 from the first angular position to the third angular position.
  • Control of closure 6 from the intermediate position to the opening position (i.e. from the third angular position to the second angular position) is obtained by (the user) angularly moving closure 6 around the turning axis.
  • Similarly, control of closure 6 from the opening position to the intermediate position (i.e. from the second angular position to the third angular position) is obtained by angularly moving closure 6 around the turning axis.
  • Advantageously, control of closure 6 from the intermediate position to the closing position is possible during rotation of closure 6 around rotation axis B in a second direction of rotation opposite to the first direction of rotation.
  • Advantageously, control of closure 6 from the intermediate position to the closing position is selectively possible:
    • by a sole angular movement of closure 6 around the turning axis from the third angular position to the first angular position (i.e. by a sole flipping); or
    • by an angular movement of closure 6 around rotation axis B in the second direction of rotation; or
    • by an angular movement of closure 6 around the turning axis from the third angular position to the first angular position and by an angular movement of closure 6 around rotation axis B in the second direction of rotation.
  • In other words, control of closure 6 from the intermediate position to the closing position is possible by rotating closure 6 around rotation axis B, by flipping closure 6 around the turning axis or by rotating closure 6 around rotation axis B and by flipping of closure 6 around the turning axis.
  • Hence, a user can freely choose whether to control closure 6 from the intermediate position to the closing position by the sole angular movement around the turning axis or whether to control closure 6 from the intermediate position to the closing position by the rotation of closure 6 around rotation axis B. It should be further noted that also a combination of both means of controlling closure 6 from the intermediate position to the closing position is possible.
  • It should be noted that a sole angular movement of closure 6 around the turning axis is an angular movement of closure 6 around the turning axis that occurs while closure 6 remains angularly fixed with respect to rotation axis B. In other words, any angular movement of closure 6 around the turning axis is a sole angular movement if closure 6 does not rotate around rotation axis B.
  • Opening device 3 may also comprise:
    • a (ring-shaped) cutter 70 (only shown in Figure 3) movably coupled to collar 4 and being configured to at least partially cut and/or rupture and/or open and/or pierce the designated pour opening surface area, in particular the separation membrane; and
    • a control device configured to interact with and to control cutter 70 between a rest position, in which cutter 70 is configured to be and/or is retracted from the designated pour opening surface area, and an operative position, in which cutter 70 is configured to at least partially cut and/or rupture and/or open and/or pierce the designated pour opening surface area.
  • In particular, the control device is configured to control cutter 70 from the rest position to the operative position upon rotation of closure 6 around rotation axis B. Even more particular, the control device is configured to control cutter 70 from the rest position to the operative position the first time closure 6 is, in use, moved from the closing position to the intermediate position.
  • With particular reference to Figures 3 and 6A to 6C, collar 4 delimits a flow channel 18.
  • More specifically, collar 4 comprises an inner surface 19 facing flow channel 18 and an outer surface 20 being opposite to inner surface 19.
  • Furthermore, cutter 70 is at least partially placed within flow channel 18.
  • Moreover, cutter 70 is configured to at least translate, in particular to rotate and translate, during its movement from the rest position to the operative position.
  • Preferentially, cutter 70 comprises a cutting section (arranged at and/or defining an axial end portion of cutter 70) configured to open and/or cut and/or rupture and/or pierce the designated pour opening surface area, in particular the separation membrane. Even more preferentially, the cutting section has a serrated profile.
  • Advantageously, the control device comprises a cam group configured to guide movement of cutter 70 from the rest position to the operative position.
  • Preferentially, the cam group comprises a cam profile and at least one, preferentially a plurality of, guiding element(s) 71 configured to interact with the cam profile. In particular, the cam profile and guiding element(s) 71 cooperate in such a manner that cutter 70 executes, in use, a rototranslatory movement when moving from the rest position to the operative position.
  • Preferentially, the cam profile is associated and/or connected and/or integral to cutter 70 and guiding element(s) 71 is/are connected and/or associated and/or integral to collar 4, even more particular to inner surface 19.
  • Advantageously, the control device comprises:
    • one or more interaction elements connected to, in particular integrally connected to, cutter 70; and
    • one or more interaction members 73, e.g. flaps, connected to and/or coupled to closure 6 and each one being configured to interact with one respective interaction element.
  • In particular, each interaction member 73 is coupled and/or connected to closure 6 such that rotation of closure 6 around rotation axis B leads also to rotation of interaction members 73 around rotation axis B.
  • Preferentially, in use, rotation of closure 6 and interaction members 73 around rotation axis B causes at least a translatory, preferentially a rototranslatory, movement of cutter 70 by means of the interaction between interaction members 73 and the interaction elements and the cooperation between the cam profile and guiding element(s) 71.
  • With particular reference to Figures 4A to 4C, opening device 3 may also comprise a tamper-evidence ring 21 arranged around collar 4 and preferentially also rupturable coupling bridges 22 connected to coupling ring 8 and tamper-evidence ring 21 and configured to rupture during a first-time rotation of collar 6 and/or coupling ring 8 around rotation axis B (thereby separating tamper-evidence ring 21 from coupling ring 8 as shown in Figures 4A, 4B and 4D).
  • Additionally, opening device 3 may also comprise further rupturable coupling bridges 23 connected to coupling ring 8 and closure 6 and configured to rupture during a first-time rotation of collar 6 around rotation axis B (thereby separating coupling ring 8 from closure 6 as shown in Figures 4A, 4B and 4D) and the first-time control of closure 6 from the closing position to the intermediate position.
  • Advantageously, collar 4 comprises an interaction ring 24, in particular protruding from outer surface 20 and configured to interact with coupling ring 8. Preferentially, interaction ring 24 is configured to inseparably couple coupling ring 8 to collar 4 and to allow for rotation of coupling ring 8 around rotation axis B.
  • Advantageously and with particular reference to Figures 2, 3 and 5A to 6C, interaction device 16 comprises at least:
    • a main cam 30 protruding from collar 4, in particular outer surface 20; and
    • one or more main cam followers 31, preferentially at least two, even more preferentially exactly two, protruding from closure 6, in particular the inner surface of side wall 14, and configured to interact with main cam 30 during rotation of closure 6 around rotation axis B.
  • Main cam 30 is designed such that interaction between the one or more main cam followers 31 and main cam 30 during rotation of closure 6 around rotation axis B in the first direction of rotation leads to movement of closure 6 from the closing position to the intermediate position.
  • In particular, main cam 30 comprises and extends between a first terminal portion 32 and a second terminal portion 34 opposite to first terminal end 32.
  • Additionally, first terminal portion 32 has a first end 33 and second terminal portion 34 has a second end 35 opposite to first end 33. In particular, first end 33 and second end 35 defines respective ends of main cam 30.
  • Moreover, second end 35 is closer to pouring outlet 5 than first end 33. In other words, main cam 30 is inclined towards pouring outlet 5 extending from first end 33 to second end 35.
  • Preferentially, the interaction of main cam 30 and the one or more main cam followers 31 is such that when rotation of closure 6 around rotation axis B is actuated for the first time, angular movement of closure 6 around the turning axis, in particular from the closing position to the intermediate position, is executed only after movement of cutter 70 from the rest position to the operative position.
  • In particular, first end 33 and second end 35 are arranged at, respectively, a first angular position u and a second angular position v with respect to rotation axis B.
  • In particular, first angular position u is chosen such that cutter 70 is moved in the operative position before closure 6 reaches the intermediate position.
  • Preferentially, each main cam follower 31 comprises an engagement surface 36 configured to slide along a guiding surface 37 of main cam 30 extending from first end 33 to second end 35 so as to actuate movement of closure 6 from the closing position to the intermediate position.
  • In particular, each engagement surface 36 is inclined with respect to rotation axis B.
  • The Applicant has observed that the forces acting on main cam 30 are, in particular when considering at least two main cam followers 31, the highest in the proximity of second end 35.
  • Therefore, main cam 30 comprises a reinforcing element 38 connected to second end 35 and designed to strengthen and/or enhance the mechanical stability of second terminal portion 34.
  • The Applicant has observed that the stability is particularly improved when reinforcing element 38 together with second terminal portion 34 delimits a substantially triangular area.
  • Advantageously, reinforcing element 38 comprises a center portion 39 void of any material and/or being a cavity. In the embodiment shown, center portion 39 cooperates with collar 4, in particular outer surface 20, to define the cavity. In particular, outer surface 20 defines an end closing wall of the cavity.
  • In more detail, second terminal portion 34 extends from an intermediate point 40 of main cam 30 to second end 35 with intermediate point 40 being interposed between first end 33 and second end 35.
  • Preferentially, reinforcing element 38 is also connected to intermediate point 40.
  • In further detail, reinforcing element 38 comprises a first wall 44 transversal to main cam 30 and connected to second end 35 and a second wall 45 connected to intermediate point 40, transversal to main cam 30 and connected to first wall 44. In particular, second terminal portion 34, first wall 44 and second wall 45 define a triangle, even more particular defining center portion 39 void of any material and/or being a cavity.
  • Advantageously, a first distance between first end 33 and intermediate point 40 and a second distance between intermediate point 40 and second end 35 substantially equal one another.
  • In particular, the first distance and the second distance are obtained by projecting first end 33, second end 35 and intermediate point 40 on a common plane.
  • Advantageously, second end 35 comprises a curved surface 46, in particular merging into reinforcing element 38.
  • Moreover, curved surface 46 may define an angle different from 90° with outer surface 20.
  • With particular reference to Figures 2, 3, 4B and 5A to 6C, opening device 3 also comprises an auxiliary cam 50 connected to collar 4, in particular to outer surface 20, and being angularly and axially spaced apart from main cam 42.
  • In particular, auxiliary cam 50 has a first end 48 and a second end 49. Even more particular, second end 49 is closer to pouring outlet 5 than first end 48.
  • Additionally, auxiliary cam 50 extends from a third angular position w to a fourth angular position x with respect to rotation axis B. In particular, third angular position w is interposed between first angular position u and second angular position v.
  • Additionally, opening device 3 comprises one or more auxiliary cam followers 51, in the specific case shown one, configured to interact with auxiliary cam 50 for contributing to the movement of closure 6 from the closing position to the intermediate position during rotation of closure 6 around rotation axis B, in particular during rotation of closure 6 around rotation axis B in the first direction of rotation.
  • In more detail, each auxiliary cam follower 50 comprises an engagement surface 52 configured to engage auxiliary cam 50, in particular a guiding surface 53 of auxiliary cam 50, during rotation of closure 6 around rotation axis B.
  • In particular, guiding surface 53 bevels from outer surface 20.
  • In more detail, guiding surface 53 comprises a first section and a second section. The first section is closer to outer surface 20 than the second section.
  • In further detail, auxiliary cam follower 51 is connected to the inner surface of lateral wall 14. In particular, auxiliary cam follower 51 comprises a connection portion in contact with the inner surface of lateral wall 14 and an end portion opposite to, and in particular connected to, the connection portion.
  • In particular, the end portion carries engagement surface 52.
  • In particular, the connection portion does not carry and/or comprise a portion of engagement surface 52. In other words, only a part of auxiliary cam follower 51 facing (during movement of closure 6 from the closing position to the intermediate position) guiding surface 53 is effectively intended to engage with guiding surface 53.
  • As mentioned above, control of closure 6 from the intermediate position to the closing position can occur by rotation of closure 6 around rotation axis B in the second direction of rotation.
  • In order to avoid undesired interferences between auxiliary cam follower 51 and main cam 30, auxiliary cam follower 51 comprises an auxiliary surface 65 opposite to engagement surface 52 and configured to interact with main cam 30 during rotation of closure 6 around rotation axis B in the second direction of rotation and to guide auxiliary cam follower 51 into a space 54 delimited between main cam 30 and auxiliary cam 50.
  • In more detail, auxiliary surface 65 is inclined with respect to main wall 13.
  • In even more detail, auxiliary surface 65 comprises a first terminal section 55 and a second terminal section 56 opposite to first terminal section 55.
  • In particular, first terminal section 55 is closer to main wall 13 than second terminal section 56. Additionally, second terminal section 56 is arranged upstream of first terminal section 55 during rotation of closure 6 around rotation axis B in the second direction of rotation (hence, second terminal section 56 engages with main cam 30 prior to first terminal section 55 during rotation of closure 6 in the second direction of rotation).
  • Advantageously, auxiliary surface 65 is chamfered from the connection portion to the end portion.
  • Advantageously, main cam 30 comprises a surface section 57 opposite to guiding surface 37.
  • In particular, reinforcement element 38 carries surface section 57.
  • In particular, auxiliary surface 65 is configured to engage surface section 57 during rotation of closure 6 around rotation axis B in the second direction of rotation for guiding auxiliary cam follower 51 into space 54.
  • Advantageously, surface section 57 is inclined with respect to rotation axis B.
  • With reference to Figures 4B, 4D and 5A to 6C, opening device 3 also comprises a locking mechanism configured to lock closure 6 in the closing position and such that control of closure 6 from the closing position to the intermediate position is possible only by rotation of closure 6 around rotation axis B.
  • In other words, the locking mechanism is configured to block control of closure 6 from the closing position to the intermediate position by means of a sole flipping of closure 6 (i.e. the locking mechanism inhibits the possibility of a sole angular movement of closure 6 around the turning axis from the first angular position to the third angular position without any rotation of closure 6 around rotation axis B).
  • In particular, the locking mechanism comprises a locking element 59, in particular having an arc-shaped portion, arranged on outer surface 20.
  • Additionally, the locking mechanism comprises an engagement element configured to abut against locking element 59 for impeding movement of closure 6 from the closing position to the intermediate position.
  • Preferentially, auxiliary cam follower 51 defines the engagement element. Moreover, auxiliary surface 65 of auxiliary cam follower 51 opposite to engagement surface 52 is configured to abut against locking element 59 for impeding movement of closure 6 from the closing position to the intermediate position.
  • With particular reference to Figures 5C and 6C, opening device 3 further comprises an abutment element connected to collar 4, in particular outer surface 20 and an interaction element connected to closure 6 and configured to abut against the abutment element during rotation of closure 6 around rotation axis B in the second direction of rotation such that a further rotation of closure 6 in the second direction of rotation is inhibited.
  • Additionally, upon interaction of the abutment element and the interaction element also movement of closure 6 from the closing position to the intermediate is inhibited, in particular as an angular movement of closure 6 around the turning axis is inhibited.
  • In particular, the abutment element and the interaction element define a rotation inhibition mechanism.
  • In this way, it is possible to indicate to the user that closure 6 is in the closing position.
  • More specifically, the abutment element comprises an abutment surface 61 and the interaction element an interaction surface configured to abut against abutment surface 61.
  • Advantageously, the interaction surface is complementary to abutment surface 61.
  • Advantageously, at least a portion of auxiliary cam follower 51 defines the interaction element.
  • Advantageously, auxiliary surface 65 defines the interaction surface.
  • In further detail, abutment surface 61 comprises a first abutment portion 62 and a second abutment portion 63 transversal to first abutment portion 62.
  • Additionally, abutment surface 61 comprises a third abutment portion 64.
  • In particular, first abutment portion 62 is interposed between and connected to second abutment portion 63 and third abutment portion 64.
  • Moreover, first abutment portion 62 is inclined with respect to third abutment portion 64.
  • Advantageously, auxiliary cam 50 carries and/or defines at least a portion of the abutment element, in particular abutment surface 61. In particular the portion of abutment portion 61 being opposite to guiding surface 53 carries and/or defines at least a portion of the abutment element. Preferentially, auxiliary cam 50 carries first abutment portion 62.
  • Additionally, the abutment element comprises a stopper portion 66 transversal to auxiliary cam 50, and in particular carrying second abutment portion 63.
  • Furthermore, locking element 59 carries third abutment portion 64.
  • In use, outpouring of the pourable product from package 1, in particular main body 2, requires liberating pouring outlet 5. This is done by controlling closure 6 from the closing position to the opening position. Even more particular, at first closure 6 is controlled from the closing position to the intermediate position and then from the intermediate position to the opening position.
  • In particular, movement of closure 6 from the closing position to the intermediate position requires rotation of closure 6 around rotation axis B. During rotation of closure 6 around rotation axis B, main cam follower(s) 31 interact with main cam 30 for actuating movement of closure 6 from the closing position to the intermediate position.
  • Once closure 6 is in the intermediate position, the user can manually move closure 6 in the opening position by rotating closure 6 around the turning axis.
  • Preferentially, the first time closure 6 is to be controlled from the closing position to the intermediate position cutter 70 is controlled from the rest position to the operative position for opening and/or rupturing and/or piercing the pour opening surface area, in particular the separation membrane. In particular, control of cutter 70 from the rest position to the operative position occurs prior to closure 6 reaching the opening position.
  • When a user intends to newly impede the outflow of the pourable product, the user can control closure 6 again (during a re-closing operation) in the closing position. At first closure 6 needs to be controlled from the opening position to the intermediate position, followed by controlling closure 6 from the intermediate position to the closing position. The latter can be obtained by a sole angular movement of closure 6 around the turning axis (sole flipping) or by a rotation of closure 6 around rotation axis B in the second direction of rotation or by an angular movement of closure 6 around the turning axis (flipping) and by a rotation of closure 6 around rotation axis B in the second direction of rotation.
  • The advantages of opening device 3 and/or package 1 according to the present invention will be clear from the foregoing description.
  • In particular, interaction between the abutment element and the interaction element allows to indicate to a user that closure 6 has reached the closing position after being controlled from the intermediate position to the closing position by rotation of closure 6 around rotation axis B.
  • It is advantageous that at least a portion of auxiliary cam follower 51 acts as the interaction element.
  • Moreover, reinforcing element 38 allows to strengthen main cam 30 at a point of maximum load, in particular in the case of having more than one main cam follower 31.
  • Additionally, center portion 39 being void of any material and/or being a cavity guarantees the desired strength by limiting the raw material consumption.
  • Additionally, auxiliary surface 65 is designed to interact in a desired manner with main cam 30 so as to avoid an unwanted impact between auxiliary cam follower 51 and main cam 50. This is further improved when having surface section 57.
  • Clearly, changes may be made to opening device 3 and/or package 1 as described herein without, however, departing from the scope of protection as defined in the accompanying claims.

Claims (15)

  1. An opening device (3) for a package (1) filled with a pourable product;
    the opening device (3) comprises at least:
    - a collar (4) having a pouring outlet (5) configured to allow out-pouring of the pourable product; and
    - a closure (6) coupled to the collar (4);
    wherein the closure (6) is controllable between at least:
    - a closing position in which the closure (6) covers the pouring outlet (5);
    - an opening position in which the closure (6) opens the pouring outlet (5); and
    - an intermediate position in which the closure (6) is interposed between the closing position and the opening position;
    wherein the opening device (3) comprises an interaction device (16) partially associated to the collar (4) and partially associated to the closure (6) and configured to control the closure (6) from the closing position to the intermediate position during rotation of the closure (6) around a rotation axis (B);
    wherein the interaction device (16) comprises a cam element (50) protruding from the collar (4) and one or more cam follower elements (51) protruding from the closure (6) and configured to interact with the cam element (50) during rotation of the closure (6) around the rotation axis (B);
    wherein the cam element (50) is designed such that interaction between the one or more cam follower elements (51) and the cam element (50) during rotation of the closure (6) around the rotation axis (B) at least contributes to movement of the closure (6) from the closing position to the intermediate position;
    wherein the closure (6) is designed such that control of the closure (6) from the closing position to the intermediate position occurs during rotation of the closure (6) in a first direction of rotation and control of the closure (6) from the intermediate position to the closing position is actuatable by rotation of the closure (6) in a second direction of rotation opposite to the first direction of rotation;
    wherein the opening device (3) further comprises an abutment element (50; 66) connected to the collar (4) and an interaction element (51) connected to the closure (6) and configured to abut against the abutment element (50; 66) during rotation of the closure (6) around the rotation axis (B) in the second direction of rotation and such that a further rotation of the closure (6) in the second direction of rotation is inhibited.
  2. Opening device according to claim 1, wherein the abutment element (50; 66) comprises an abutment surface (61) and the interaction element (51) comprises an interaction surface (65) configured to abut against the abutment surface (61).
  3. Opening device according to claim 2, wherein the interaction surface (65) is complementary to the abutment surface (61).
  4. Opening device according to claim 2 or 3, wherein the abutment surface (61) comprises a first abutment portion (62) and a second abutment portion (63) transversal to the first abutment portion (62).
  5. Opening device according to claim 4, wherein the abutment surface (61) comprises a third abutment portion (64);
    wherein the first abutment portion (62) is interposed between and connected to the second abutment portion (63) and the third abutment portion (64);
    wherein the first abutment portion (62) is inclined with respect to the third abutment portion (64).
  6. Opening device according to claim 4 or 5, wherein the cam element (50) carries the first abutment portion (62) of the abutment surface (61).
  7. Opening device according to any one of the preceding claims, wherein at least a portion of the cam element (50) defines at least a portion of the abutment element.
  8. Opening device according to any one of the preceding claims, wherein at least a portion of the one or more cam follower elements (51) define the interaction element.
  9. Opening device according to claim 8, wherein the one or more cam follower elements (51) comprise an engagement surface (52) configured to interact with the cam element (50) for contributing to the movement of the collar (9) from the closing position to the intermediate position and an interaction surface (65) configured to interact with the abutment element (50; 66).
  10. Opening device according to any one of the preceding claims, comprising:
    - a main cam (30);
    - an auxiliary cam (50), the auxiliary cam (50) being angularly and axially spaced apart from the main cam (42);
    - one or more main cam followers (31) configured to interact with the main cam (30) for contributing to the movement of the closure (6) from the closing position to the intermediate position during rotation of the closure (6) around the rotation axis (B); and
    - one or more auxiliary cam followers (51) configured to interact with the auxiliary cam (50) for contributing to the movement of the closure (6) from the closing position to the intermediate position during rotation of the closure (6) around the rotation axis (B);
    wherein the auxiliary cam (50) defines the cam element and the one or more auxiliary cam followers (51) define the one or more cam follower elements.
  11. Opening device according to claim 10, wherein at least a portion of the one or more auxiliary cam followers (51) define the interaction element and at least a portion of the auxiliary cam (50) defines at least a portion of the abutment element.
  12. Opening device according to any one of the preceding claims, and further comprising a coupling ring (8) rotatably arranged around the collar (4);
    wherein the closure (6) is connected to the coupling ring (8) and angularly movable with respect to the coupling ring (8) around a respective turning axis;
    wherein the closure (6) is angularly movable around the turning axis for moving the closure (6) between the closing position, the intermediate position and the opening position;
    wherein the interaction device (16) is configured such that control of the closure (6) from the closing position to the intermediate position is possible only by rotation of the closure (6) and the coupling ring (8) around the rotation axis (B).
  13. Opening device according to claim 12, wherein control of the closure (6) from the intermediate position to the closing position is selectively possible:
    - by a sole angular movement of the closure (6) around the turning axis; or
    - by a rotation of the closure (6) and the coupling ring (8) around the rotation axis (B); or
    - by an angular movement of the closure (6) around the turning axis and by a rotation of the closure (6) and the coupling ring (8) around the rotation axis (B).
  14. Opening device according to any one of the preceding claims, and further comprising a locking mechanism (51; 59) configured to impede a movement of the closure (6) from the closing position to the intermediate position;
    wherein the locking mechanism comprises the interaction element.
  15. A package (1) comprising a main body (2), in particular formed from a multilayer packaging material, filled with a pourable product and comprising a designated pour outlet surface area and an opening device (3) according to any one of the preceding claims fitted about the designated pour outlet surface area.
EP25183611.0A 2024-07-01 2025-06-18 Opening device for a package and package having an opening device Pending EP4674780A1 (en)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
IT202400015133 2024-07-01

Publications (1)

Publication Number Publication Date
EP4674780A1 true EP4674780A1 (en) 2026-01-07

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Application Number Title Priority Date Filing Date
EP25183611.0A Pending EP4674780A1 (en) 2024-07-01 2025-06-18 Opening device for a package and package having an opening device

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EP (1) EP4674780A1 (en)
WO (1) WO2026008332A1 (en)

Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP3805126A1 (en) 2019-09-30 2021-04-14 Tetra Laval Holdings & Finance S.A. Closure assembly for a container and container having a closure assembly
WO2021165131A1 (en) * 2020-02-19 2021-08-26 Tetra Laval Holdings & Finance S.A. Spout for a container and package-spout assembly

Patent Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP3805126A1 (en) 2019-09-30 2021-04-14 Tetra Laval Holdings & Finance S.A. Closure assembly for a container and container having a closure assembly
WO2021165131A1 (en) * 2020-02-19 2021-08-26 Tetra Laval Holdings & Finance S.A. Spout for a container and package-spout assembly

Also Published As

Publication number Publication date
WO2026008332A1 (en) 2026-01-08

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