SPOUT FOR A CONTAINER AND PACKAGE-SPOUT ASSEMBLY
20250304316 ยท 2025-10-02
Assignee
Inventors
- Angelo SORBARA (Rubiera, IT)
- Rocco DE PAOLA (Modena, IT)
- Franco CANI (Asti, IT)
- Tiziano VIANI (Bibbiano, IT)
- Martina LINGUITI (Soliera Modena, IT)
- Luca GORI (Bologna, IT)
Cpc classification
B65D2401/30
PERFORMING OPERATIONS; TRANSPORTING
B65D55/16
PERFORMING OPERATIONS; TRANSPORTING
B65D5/748
PERFORMING OPERATIONS; TRANSPORTING
B65D43/163
PERFORMING OPERATIONS; TRANSPORTING
B65D43/164
PERFORMING OPERATIONS; TRANSPORTING
B65D41/3447
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
A spout for a container filled with pourable product includes a collar having a pouring outlet to allow out-pouring of the product and a lid assembly having a coupling ring rotatably arranged around the collar and a lid hinged to the coupling ring and angularly movable around a hinge axis. The lid is controllable between a closing configuration, an open configuration and an intermediate configuration. An interaction device is partially associated to the collar and to the lid, and is configured such that control of the lid from the closing configuration to the intermediate configuration is possible only by rotation of the lid and the coupling ring around a rotation axis and such that control of the lid from the intermediate configuration to the closing configuration is possible by a sole angular movement of the lid around the hinge axis from the intermediate angular position to the closing angular position.
Claims
1. A spout for a container filled with a pourable product; the spout comprising: a base frame configured to be fitted about a designated pour opening surface area of package and having a collar being provided with a pouring outlet, configured to allow for an outflow of the pourable product from the package; a lid assembly coupled to the collar, and being configured to at least selectively close or open the pouring outlet; wherein the collar extends along a longitudinal axis; a ring-shaped cutter moveably coupled to the collar, and being configured to at least partially cut the designated pour opening surface area; a control device configured to interact with and to control the cutter between a rest position, in which cutter is configured to be retracted from the designated pour opening surface area, and an operative position in which the cutter is configured to at least partially cut the designated pour opening surface area; the lid assembly comprising: a coupling ring rotatably arranged around the collar; a lid hinged to the coupling ring and angularly movable around a respective hinge axis, being orthogonal to longitudinal axis; a coupling element configured to hinge the lid to the coupling ring and defining said hinge axis; the spout also comprising a tamper-evidence ring arranged around the collar.
2. Spout according to claim 1, wherein the spout also comprises rupturable auxiliary coupling bridges coupling the tamper evidence ring and the coupling ring to one another.
3. Spout according to claim 2, wherein in use, the auxiliary coupling bridges are configured to rupture prior to movement of the cutter from the rest position to the operative position.
4. Spout according to claim 1, wherein the base frame further comprises a coupling base configured to couple the spout to the package, wherein the coupling base carries the collar, and wherein the tamper evidence ring is arranged between the coupling base and coupling ring.
5. Spout according to claim 4, wherein at least a portion of the coupling base has substantially a plate-like configuration.
6. Spout according to claim 1, wherein the tamper evidence ring is parallel to the coupling ring and is axially displaced from the coupling ring.
7. Spout according to claim 1, wherein the lid is controllable between: a closing configuration in which the lid is in a closing angular position with respect to the hinge axis and in which the lid is configured to cover the pouring outlet; an open configuration in which the lid is in an open angular position with respect to the hinge axis and in which the lid is configured to be detached from the pouring outlet; and an intermediate configuration in which the lid is in an intermediate angular position with respect to the hinge axis, the intermediate angular position being interposed between the closing angular position and the open angular position.
8. Spout according to claim 1, comprising a plurality of rupturable main coupling bridges connecting the coupling ring and the lid to one another.
9. Spout according to claim 7, wherein the main coupling bridges connect the coupling ring and the lid to one another prior to the first time the lid is, in use, controlled from the closing angular position to the intermediate angular position, and wherein during the first time of controlling the lid from the closing angular position to the intermediate angular position, the main coupling bridges are configured to irreversibly rupture.
10. Spout according to claim 9, wherein, in use, the main coupling bridges are configured to rupture after control of the cutter from the rest position to the operative position.
11. A spout for a container, in particular a sealed package, filled with a pourable product; wherein the spout comprises: a base frame configured to be fitted about a designated pour opening surface area of package and having a collar being provided with a pouring outlet, configured to allow for an outflow of the pourable product from the package; a lid assembly coupled to the collar, and being configured to at least selectively close or open the pouring outlet; wherein the collar extends along a longitudinal axis; a ring-shaped cutter moveably coupled to the collar, and being configured to at least partially cut the designated pour opening surface area; a control device configured to interact with and to control the cutter between a rest position, in which cutter is configured to be retracted from the designated pour opening surface area, and an operative position in which the cutter is configured to at least partially cut the designated pour opening surface area; wherein the lid assembly comprises: a coupling ring rotatably arranged around the collar; a lid hinged to the coupling ring and angularly movable around a respective hinge axis, being orthogonal to longitudinal axis; a coupling element configured to hinge the lid to the coupling ring and defining said hinge axis; wherein the spout also comprises a plurality of rupturable main coupling bridges connecting the coupling ring and the lid to one another.
12. Spout according to claim 11, wherein the spout also comprises a tamper-evidence ring arranged around the collar.
13. Spout according to claim 12, wherein the spout also comprises rupturable auxiliary coupling bridges coupling the tamper evidence ring and the coupling ring to one another.
14. Spout according to claim 13, wherein in use, the auxiliary coupling bridges are configured to rupture prior to movement of the cutter from the rest position to the operative position.
15. Spout according to claim 12, wherein the tamper evidence ring is parallel to the coupling ring and is axially displaced from the coupling ring.
16. Spout according to claim 11, wherein the base frame further comprises a coupling base configured to couple the spout to the package, wherein the coupling base carries the collar, and wherein the tamper evidence ring is arranged between the coupling base and coupling ring.
17. Spout according to claim 16, wherein at least a portion of the coupling base has substantially a plate-like configuration.
18. Spout according to claim 11, wherein the lid is controllable between: a closing configuration in which the lid is in a closing angular position with respect to the hinge axis and in which the lid is configured to cover the pouring outlet; an open configuration in which the lid is in an open angular position with respect to the hinge axis and in which the lid is configured to be detached from the pouring outlet; and an intermediate configuration in which the lid is in an intermediate angular position with respect to the hinge axis, the intermediate angular position being interposed between the closing angular position and the open angular position.
19. Spout according to claim 18, wherein the main coupling bridges connect the coupling ring and the lid to one another prior to the first time the lid is, in use, controlled from the closing angular position to the intermediate angular position, and wherein during the first time of controlling the lid from the closing angular position to the intermediate angular position, the main coupling bridges are configured to irreversibly rupture.
20. Spout according to claim 11, wherein, in use, the main coupling bridges are configured to rupture after control of the cutter from the rest position to the operative position.
21. A package-spout assembly comprising a sealed package, filled with a pourable product and comprising a designated pour outlet surface area, and a spout according to claim 1 fitted about the designated pour outlet surface area.
22. A package-spout assembly comprising a sealed package, filled with a pourable product and comprising a designated pour outlet surface area, and a spout according to claim 11 fitted about the designated pour outlet surface area.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Three non-limiting embodiments of the present invention will be described by way of example with reference to the accompanying drawings, in which:
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DETAILED DESCRIPTION
[0030] Number 1 indicates as a whole a container-spout assembly, in particular a package-spout assembly, comprising: [0031] a container, in particular a sealed package 2, even more particular a sealed carton package, 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 [0032] a spout 3, in particular a plastic spout, fitted to the container, in particular to package 2 about the designated pour opening surface area.
[0033] Package 2 is obtained from a packaging material, in particular being in the form of a web, and having a multilayer structure (not shown). The packaging material comprises at least a layer of fibrous material, such as e.g. a 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 defining the inner face of package 2 contacting the pourable product.
[0034] 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 the 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.
[0035] According to a preferred non-limiting embodiment, spout(s) 3 is (are) applied to package(s) 2 prior, during or after the formation, filling and sealing of package(s) 2 by means of a molding process and/or adhesive bonding and/or ultrasonic bonding.
[0036] Alternatively, spout(s) 3 can 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 packages 2 from the packaging material.
[0037] With particular reference to
[0038] Preferentially but not necessarily, package 2 is parallelepiped-shaped.
[0039] In particular, the designated pour opening surface area of package 2 is configured to be at least partially (non-reversibly) opened and/or ruptured and/or cut and/or pierced so as to allow the out-pouring of the pourable product from package 2, in particular through spout 3. Even more particular, the pour opening surface area is configured to allow the 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.
[0040] According to a preferred non-limiting embodiment, 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 package 2 from the outside of package 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.
[0041] According to a preferred non-limiting embodiment, the separation membrane is 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.
[0042] With particular reference to
[0045] In particular, collar 5 extends along a longitudinal axis B (and away from package 2), preferentially but not necessarily parallel to longitudinal axis A.
[0046] In particular, longitudinal axis B defines (is equal to) a central axis of collar 5 and/or pouring outlet 6.
[0047] Preferentially, collar 5 and pouring outlet 6 present a (substantially) circular cross-sectional profile, in particular with respect to a cross-sectional plane perpendicular to longitudinal axis B.
[0048] Advantageously, lid assembly 7 comprises: [0049] a coupling ring 8 rotatably arranged around collar 5, in particular such that coupling ring 8 is inseparable from collar 5; and [0050] a lid 9 hinged to coupling ring 8 and angularly movable around a respective hinge axis C, in particular being transversal, even more particular orthogonal, to longitudinal axis A and/or longitudinal axis B.
[0051] In particular, lid assembly 7 comprises a coupling element 10 configured to hinge lid 9 to coupling ring 8 and defining hinge axis C.
[0052] Advantageously, lid 9 is controllable between at least: [0053] a closing configuration (see
[0056] In particular, in use, control of lid 9 from the closing configuration to the open configuration requires at first control from the closing configuration to the intermediate configuration and then from the intermediate configuration to the open configuration. In other words, in use, control of lid 9 from the closing angular position to the open angular position requires at first control of lid 9 from the closing angular position to the intermediate angular position and then to the open angular position.
[0057] Preferentially, lid 9 comprises: [0058] a top portion 13 configured to cover pouring outlet 6 with lid 9 being in the closing angular position; and [0059] a side wall 14 protruding from top portion 13 and configured to at least partially surround collar 5 with lid 9 being controlled in the closing angular position.
[0060] In particular, and with lid 9 being in the closing angular position, top portion 13 is transversal, in particular perpendicular, to longitudinal axis B and side wall 14 is (substantially) parallel to longitudinal axis B.
[0061] According to some possible non-limiting embodiments, lid 9 is, in particular top portion 13 and/or side wall 14 are, coupled to collar 5 when lid 9 is, in use, in the closing angular position (and in the intermediate angular position).
[0062] Preferentially, lid 9 comprises an inner surface 15, in particular inner surface 15 faces collar 5 with lid 9 being in the closing angular position (and intermediate angular position). In particular, top portion 13 and side wall 14 carry inner surface 15.
[0063] Advantageously, spout 3 comprises an interaction device 16 partially associated to (and/or connect to and/or carried by) collar 5 and partially associated to (and/or connect to and/or carried by) lid 7 and being configured such that control of lid 9 from the closing configuration to the intermediate configuration (in other words from the closing angular position to the intermediate angular position) is possible only by rotation of lid 9 and coupling ring 8 around a (common) rotation axis E, in particular parallel, even more particular coaxial, to longitudinal axis B, and such that control of lid 9 from the intermediate configuration to the closing angular configuration (in other words, from the intermediate angular position to the closing angular position) is at least possible by a sole angular movement of lid 9 around hinge axis C from the intermediate angular position to the closing angular position.
[0064] Preferentially, control of lid 9 from the intermediate angular position to the closing angular position is selectively possible by a sole angular movement of lid 9 around hinge axis C from the intermediate angular position to the closing angular position and by rotation of lid 9 and coupling ring 8 around rotation axis E.
[0065] It should be noted that according to such a non-limiting embodiment a user can freely choose whether to control lid 9 by the sole angular movement around hinge axis C or whether to induce the control of lid 9 from the intermediate angular position to the closing angular position by rotation of lid 9 around rotation axis E. It should be further noted that also a combination of both means of controlling lid 9 from the intermediate angular position to the closing angular position is possible.
[0066] According to some preferred non-limiting embodiments, spout 3 also comprises: [0067] a (ring-shaped) cutter 17 moveably coupled to base frame 4, in particular collar 5, 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 [0068] a control device 18 configured to interact with and to control cutter 17 between a rest position, in which cutter 17 is configured to be and/or is retracted from the designated pour opening surface area, and an operative position in which cutter 17 is configured to at least partially cut and/or rupture and/or open and/or pierce the designated pour opening surface area.
[0069] In particular, control device 18 is configured to control cutter 17 from the rest position to the operative position upon rotation of lid 9 and coupling ring 8 around rotation axis E. Even more particular, control device 18 is configured to control cutter 17 from the rest position to the operative position the first time lid 9 and coupling ring 8 are, in use, rotated around rotation axis E for moving lid 9 for the first time from the closing angular position to the intermediate angular position.
[0070] With particular reference to
[0071] Preferentially, collar 5 has a circular cross-sectional shape with respect to a sectional plane being orthogonal to longitudinal axis B.
[0072] According to a preferred non-limiting embodiment, collar 5 comprises an inner surface 20 facing inner space 13 and an outer surface 21 being opposite to inner surface 15 (and inner space 19).
[0073] In particular, with lid 9 being in the closing angular position (or in the intermediate angular position) inner surface 15 faces outer surface 21.
[0074] According to some preferred non-limiting embodiments, cutter 17 is configured to at least translate, in particular to rotate and translate, during its movement from the rest position to the operative position.
[0075] Preferentially, cutter 17 comprises a cutting section 22 (arranged at and/or defining an axial end portion of cutter 17) configured to open and/or cut and/or rupture and/or pierce the designated pour opening surface area, in particular the separation membrane. Preferentially, cutting section 22 has (comprises) a serrated profile.
[0076] According to a preferred non-limiting embodiment, control device 18 comprises a cam group configured to guide movement of cutter 17 from the rest position to the operative position.
[0077] Preferentially, the cam group comprises a cam profile and at least one, preferentially a plurality of, guiding element(s) configured to interact with the cam profile. In particular, the cam profile and the guiding element(s) cooperate in such a manner that cutter 17 executes, in use, a rototranslatory movement when moving from the rest position to the operative position.
[0078] Preferentially, the cam profile is associated and/or connected and/or integral to cutter 17 and the guiding element(s) is/are connected and/or associated and/or integral to base frame 4, in particular to collar 5, even more particular to inner surface 19.
[0079] With particular reference to
[0080] Preferentially, coupling base 23 is configured to be fixed and/or is fixed to an outer surface of package 2, in particular in the area of, even more particular at, the designated pour opening surface area. In particular, at least a portion of coupling base 23 has substantially a plate-like configuration.
[0081] Preferentially but not necessarily, collar 5 extends from coupling base 23 along, in particular parallel to, longitudinal axis B.
[0082] With particular reference to
[0085] In particular, each interaction member 25 is coupled and/or connected to lid 9 such that a rotation of lid 9 around rotation axis E leads also to a rotation of interaction members 25 around rotation axis E.
[0086] Preferentially, in use, the rotation of lid 9 and interaction members 25 around rotation axis E causes at least a translatory, preferentially a rototranslatory, movement of cutter 17 by means of the interaction between interaction members 25 and interaction elements 24 and the cooperation between the cam profile and the guiding element(s).
[0087] With particular reference to
[0088] With particular reference to
[0089] In particular, spout 3 also comprises rupturable auxiliary coupling bridges 28 coupling tamper evidence ring 27 and coupling ring 8 to one another. Auxiliary coupling bridges 28 are configured to irreversibly rupture the first time a rotation of lid 9 and coupling ring 8 around rotation axis E is actuated. Preferentially, in use, auxiliary coupling bridges 28 rupture prior to movement of cutter 17 from the rest position to the operative position.
[0090] According to some preferred non-limiting embodiments, collar 5 comprises an interaction ring 29, in particular protruding from outer surface 21 and configured to interact with coupling ring 8. Preferentially, interaction ring 29 is configured to inseparably couple coupling ring 8 to collar 5 and to allow for rotation of coupling ring 8 around rotation axis E.
[0091] Advantageously and with particular reference to
[0094] In particular, interaction of main interaction unit 34 with main interaction structure 33 is such that, in use, movement of lid 9 from the closing angular position to the intermediate angular position requires rotation of lid 9 (and of coupling ring 8) around rotation axis E (i.e. the interaction between main interaction unit 34 and main interaction structure 33 does not allow a sole angular movement of lid 9 around hinge axis C for controlling lid 9 from the closing angular position to the intermediate angular position).
[0095] It should be noted that within the scope of the present description a sole angular movement of lid 9 around hinge axis C is an angular movement of lid 9 around hinge axis C that occurs while lid 9 remains angularly fixed with respect to rotation axis E. In other words, any angular movement of lid 9 around hinge axis C is a sole angular movement if lid 9 does not rotate around rotation axis E.
[0096] Preferentially, the interaction of main interaction structure 33 and main interaction unit 34 is such that the first time rotation of lid 9 around rotation axis E is actuated, angular movement of lid 9 around hinge axis C, in particular from the closing angular position to the intermediate angular position, is executed only after movement of cutter 17 from the rest position to the operative position.
[0097] Preferentially, main interaction unit 34 comprises: [0098] a first engagement surface 35 configured to abut against an abutment surface 36 of main interaction structure 33 so as to hinder an angular movement of lid 9 around hinge axis C, in particular from the closing angular position to the intermediate angular position; and [0099] a second engagement surface 37, in particular opposed to first engagement surface 35 and, configured to slide along a guiding surface 38 of main interaction structure 33 so as to control and/or actuate the angular movement of lid 9 around hinge axis C and from the closing angular position to the intermediate angular position.
[0100] In particular, the interaction of first engagement surface 35 and abutment surface 36 defines a locking mechanism of lid 9 in the closing angular position.
[0101] In particular, second engagement surface 37 and guiding surface 38 define a respective cam mechanism.
[0102] Preferentially (see
[0103] Preferentially, main interaction structure 33 and main interaction unit 34 are designed such that first engagement surface 35 and abutment surface 36 interact with one another (see
[0104] In particular, with lid 9 being positioned with respect to rotation axis E between the first angular lid position and the second angular lid position, second engagement surface 37 and guiding surface 38 do not interact with one another (see
[0105] In other words, first engagement surface 35 is configured to abut against abutment surface 36 during a rotation of lid 9 around rotation axis E and with lid 9 being arranged between the first angular lid position and the second angular lid position with respect to rotation axis E and second engagement surface 37 is configured to slide on guiding surface 38 during a rotation of lid 9 around rotation axis E and with lid 9 being arranged between the third angular lid position and the fourth angular lid position.
[0106] In particular, it should be noted that with rotation of lid 9 around rotation axis E in a sense such that lid 9 rotates from the third angular lid position to the fourth angular lid position, the angular movement of lid 9 around hinge axis C is such to move lid 9 from the closing angular position to the intermediate angular position.
[0107] Furthermore, in use, during rotation of lid 9 from the fourth angular lid position to the third angular lid position it is possible to angularly move lid 9 around hinge axis C and from the intermediate angular position to the closing angular position.
[0108] In particular, main interaction unit 34 and main interaction structure 33 are also configured such that a sole angular movement around hinge axis C is possible for controlling lid 9 from the intermediate angular position to the closing angular position (during a re-closing operation). In such a case (i.e. during a re-closing operation), main interaction unit 34 can overcome main interaction structure 33 and once lid 9 is again in the closing angular position the reverse movement from the closing angular position to the intermediate angular position is prevented by the interaction between abutment surface 36 and first engagement surface 35.
[0109] According to some preferred non-limiting embodiments, main interaction structure 33 and main interaction unit 34 are also configured to retain lid 9 in the intermediate angular position after movement from the closing angular position to the intermediate angular position has been terminated.
[0110] Preferentially, guiding surface 38 is opposed to abutment surface 36.
[0111] In particular, while abutment surface 36 faces coupling base 23, guiding surface 38 faces away from coupling base 23.
[0112] According to some preferred non-limiting embodiments, main interaction structure 33 comprises: [0113] a locking portion 39, which extends between a first angular position X and a second angular position Y around longitudinal axis B and carries abutment surface 36; and [0114] a cam portion 40 carrying guiding surface 38 and extending between a third angular position V and a fourth angular position W around longitudinal axis B and interposed between second angular position Y and first angular position X.
[0115] According to some preferred non-limiting embodiments, cam portion 40 comprises at least a main cam portion 42, and in particular also an auxiliary cam portion 43 spaced apart from main cam portion 42. Preferentially, auxiliary cam portion 43 is angularly and axially spaced apart from main cam portion 42 with respect to rotation axis E.
[0116] Preferentially, main cam portion 42 carries (comprises) a main guiding portion 44 of guiding surface 38, and in particular auxiliary guiding portion 43 carries (comprises) an auxiliary guiding portion 45 of guiding surface 38.
[0117] In particular, locking portion 39 is (substantially) arc-shaped.
[0118] Preferentially, locking portion 39 and/or abutment surface 36 lie(s) within a first plane transversal, in particular perpendicular, to longitudinal axis B.
[0119] Preferentially, cam portion 40 and/or guiding surface 38 is inclined with respect to locking portion 39 and/or abutment surface 36. Even more preferentially, main cam portion 42 and main guiding portion 44, in particular also auxiliary cam portion 43 and auxiliary guiding portion 45, are inclined with respect to locking portion 39 and/or abutment surface 36.
[0120] In particular, main cam portion 42 and/or main guiding portion 44 lies within a second plane (distinct from the first plane) transversal to longitudinal axis B. Even more particular, auxiliary cam portion 43 and/or auxiliary guiding portion 45 lies within a third plane (distinct from the first plane and the second plane) spaced apart from the second plane.
[0121] Preferentially, the second plane, and in particular the third plane, is/are inclined with respect to the first plane.
[0122] In particular, in use, sliding of second engagement surface 37 on guiding surface 38 results in a force in a direction so as to distance lid 9 from coupling ring 8.
[0123] According to some preferred non-limiting embodiments, main interaction structure 33, in particular locking portion 39, comprises an auxiliary surface 41 (opposed to abutment surface 36 and) designed such to allow for lid 9 angularly moving from the intermediate angular position to the closing angular position by means of a sole angular movement of lid around hinge axis C. In particular, auxiliary surface 41 is designed such that main interaction unit 34 overcomes main interaction structure 33, in particular locking portion 39, during a sole angular movement of lid 9 around hinge axis C.
[0124] According to some preferred non-limiting embodiments, auxiliary surface 41 is also configured to interact with main interaction unit 34 with lid 9 being controlled in the intermediate angular position so as to retain lid 9 in the intermediate angular position.
[0125] According to some preferred non-limiting embodiments, main interaction structure 33, in particular locking portion 39 and cam portion 40, is/are connected to, in particular protrude from, outer surface 21.
[0126] According to some preferred non-limiting embodiments, main interaction unit 34 comprises at least a first interaction element 50 carrying (comprising) first engagement surface 35 and a second interaction element 51 carrying (comprising) at least a first portion 52 of second engagement surface 37. In particular, first portion 52 is configured to slide, in use, along main guiding portion 44 for controlling lid 9 from the closing angular position to the intermediate angular position.
[0127] According to some preferred non-limiting embodiments, first interaction element 50 carries (comprises) an interaction surface 53 opposite to first engagement surface 35 and being at least configured to engage auxiliary surface 41 with lid 9 being arranged in the intermediate angular position. In particular, engagement of interaction surface 53 with auxiliary surface 41 allows retaining lid 9 in the intermediate angular position after termination of movement of lid 9 from the closing angular position to the intermediate angular position (see
[0128] According to the embodiment shown in
[0129] Preferentially, first interaction element 50 comprises a main wall 54 carrying (comprising) first engagement surface 35 and at least one tooth 55 protruding from main wall 54.
[0130] In particular, tooth 55 carries (comprises) interaction surface 53.
[0131] According to some preferred non-limiting embodiments, main interaction unit 34, in particular first interaction element 50 and second interaction element 51, is/are connected to, in particular protrude(s) from, inner surface 15, and in particular from side wall 14.
[0132] Preferentially, first interaction element 50 and second interaction element 51 are axially, and in particular also angularly, displaced from one another with respect to rotation axis E.
[0133] In use, outpouring of the pourable product from package-spout assembly 1, in particular package 2, requires liberating pouring outlet 6. This is done by controlling lid 9 from the closing configuration to the open configuration. Even more particular, at first lid 9 is controlled from the closing configuration to the intermediate configuration and then from the intermediate configuration to the open configuration.
[0134] In particular, movement of lid 9 from the closing configuration to the intermediate configuration requires rotation of lid 9 around rotation axis E. Even more particular, control from the intermediate configuration to the open configuration is to be done by the user by angularly moving lid 9 around hinge axis C.
[0135] Preferentially, the first time lid 9 is to be controlled from the closing configuration to the intermediate configuration cutter 17 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 17 from the rest position to the operative position occurs prior to control of lid 9 from the closing configuration to the open configuration.
[0136] In more detail, during control of lid 9 from the closing configuration to the intermediate configuration the angular position of lid 9 with respect to hinge axis C is to be changed from the closing angular position to the intermediate angular position. As first engagement surface 35 abuts against abutment surface 36, lid 9 needs to be rotated around rotation axis E and from the first angular lid position to the fourth angular lid position and through the second angular lid position and the third angular lid position. Second engagement surface 37, slides on guiding surface 38 while lid 9 rotates around rotation axis E and angularly moves from the third angular lid position to the fourth angular lid position so as to actuate the angular movement around hinge axis C and from the closing angular position to the intermediate angular position.
[0137] In even more detail, while second engagement surface 37 slides on guiding surface 38 at least first portion 52 slides along main guiding portion 44, in particular also interaction surface 53 slides along auxiliary guiding portion 45.
[0138] Preferentially, after lid 9 has been controlled in the intermediate angular position, engagement of interaction surface 53 with auxiliary surface 41 guarantees that the angular position of lid 9 with respect to hinge axis C remains fixed.
[0139] When a user intends to newly impede the outflow of the pourable product, the user can control lid 9 again (during a re-closing operation) in the closing angular position. At first lid 9 needs to be controlled from the open angular position to the intermediate angular position, followed by controlling lid 9 from the intermediate angular position to the closing angular position. The latter can be obtained by a sole angular movement of lid 9 around hinge axis C, and in particularly alternatively by a rotation of lid 9 around rotation axis E.
[0140] With reference to
[0141] In particular, spout 3 differs from spout 3 in that cam portion 40 comprises main cam portion 42 and does not comprise auxiliary cam portion 43. Even more particular, interaction surface 53 is configured to engage auxiliary surface 41 but does not promote movement of lid 9 from the closing angular position to the intermediate angular position. In other words, only second interaction element 51 contributes to the angular movement of lid 9 from the closing angular position to the intermediate angular position.
[0142] Preferentially, spout 3 also differs from spout 3 in that first interaction element 50 comprises two teeth 55 protruding from main wall 54. In particular, teeth 55 being parallel to one another and each one carrying a respective portion of interaction surface 53.
[0143] With reference to
[0144] In particular, spout 3 differs from spout 3 in that main interaction unit 34 comprises at least a third interaction element 56 distinct (and detached) from second interaction element 51, carrying (comprising) at least a third portion 57 of second engagement surface 37. In particular, third interaction element 56 is angularly displaced from second interaction element 51 with respect to rotation axis E. Even more particular, third interaction element 56 is arranged such that, in use and during a control of lid 9 from the closing configuration to the intermediate configuration, at first third portion 57 engages with main guiding portion 44 and subsequently first portion 52 engages with main guiding portion 44.
[0145] Preferentially, third portion 57 and first portion 52 lie within a common plane, in particular being parallel to the second plane.
[0146] Preferentially, spout 3 also differs from spout 3 in that main interaction structure 33, in particular cam portion 40, comprises a plurality of spaced-apart support ridges 58, in particular integral with main cam portion 42, configured to support main cam portion 42, in particular for enhancing the mechanical stability of main cam portion 42.
[0147] The advantages of spouts 3, 3 and 3 and/or the package-spout assembly 1 according to the present invention will be clear from the foregoing description.
[0148] In particular, lid 9 by being connected to coupling ring 8 cannot be separated from the other portions of package-spout assembly 1. This hinders the possibility of littering lid 9.
[0149] A further advantage resides in that the operation of lid 9 is intuitive as the opening of package-spout assembly 1 (opening of pouring outlet 6) is to be done by rotation of lid 9 according to a user's experience with known types of spouts.
[0150] An even further advantage is to be seen in that the interaction of second engagement surface 37 with guiding surface 38 (and in support also by auxiliary guiding portion 45 and auxiliary cam portion 43) moves lid 9 in the intermediate angular position indicating to the user that it is possible to further move lid 9 to the open angular position.
[0151] Another advantage is related to providing also for third interaction element 56 allowing to increase the surface area of the portion of second engagement surface 37 interacting, in use, with main guiding portion 44.
[0152] Clearly, changes may be made to spout 3, 3 and 3 and/or package-spout assembly 1 as described herein without, however, departing from the scope of protection as defined in the accompanying claims.
[0153] According to an alternative non-limiting embodiment not shown, main interaction unit 34 comprises only first interaction element 50 and first interaction element 50 carries (comprises) both first engagement surface 35 and second engagement surface 37. Furthermore, cam portion 40 only comprises auxiliary cam portion 43.
[0154] According to an alternative non-limiting embodiment not shown, main interaction unit 34 comprises also third interaction element 56.