Spout for container, and package spout assembly

The package spout assembly with a rotating lid system addresses the issue of lid separation and scattering, offering a reliable, cost-effective, and user-friendly solution for sealed packages of pourable products.

JP2025148474APending Publication Date: 2025-10-07TETRA LAVAL HOLDINGS & FINANCE SA
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Patent Information

Application Number
JP2025116922
Authority / Receiving Office
JP · JP
Patent Type
Applications
Current Assignee / Owner
Priority Date
2020-02-19
Filing Date
2025-07-11
Publication Date
2025-10-07

AI Technical Summary

Technical Problem

Existing pour spouts for sealed packages of pourable products, such as food products, often result in the loss or scattering of lids due to complete separation, leading to an undesirable user experience and increased costs.

Method used

A package spout assembly with a spout attached to the package via molding or adhesive bonding, featuring a collar with a lid assembly that rotates to control flow, where the lid moves from a closed to an open position through a combination of rotational and angular movements, ensuring the lid remains connected and the spout is intuitive to use.

Benefits of technology

The solution provides a reliable and cost-effective spout assembly that prevents lid separation, maintains user experience by being simple and intuitive, and ensures controlled product flow without scattering.

✦ Generated by Eureka AI based on patent content.

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Abstract

To provide a spout for a container filled with a product that can be poured.SOLUTION: A spout comprises a lid assembly 7 comprising a collar 5 provided with a pouring port 6, a connection ring 8 rotatably provided around the collar 5, and a lid 9 hinge-connected to the connection ring 8. The lid 9 is controllable among at least a closed configuration, an open configuration and an intermediate configuration. The spout comprises an interaction device 16 partially associated with the lid 9, that is partially associated with the collar 5. The interaction device 16 is constituted in such a manner that it is made possible only by rotating the lid 9 and the connection ring 8 around a rotation axis E to control the lid 9 from the closed configuration to the intermediate configuration, and only by angularly moving the lid 9 around a hinge axis C from an intermediate angle position to a closed angle position to control the lid 9 from the intermediate configuration to the closed configuration.SELECTED DRAWING: Figure 4
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Description

[Technical Field]

[0001] The present invention relates to a pour spout for a container filled with a pourable product, and more particularly for a sealed package, further for a pourable food product.

[0002] The present invention also relates to a package pour spout assembly that is filled with a pourable product and further includes a sealed package that is filled with a pourable food product and a spout disposed on the sealed package. [Background technology]

[0003] As is known, many liquid or pourable food products, such as fruit juices, UHT (ultra-high-temperature treated) milk, wine, tomato sauce, etc., are sold in packages made from sterilized packaging material.

[0004] A typical example is the parallelepiped-shaped package for pourable food products known as Tetra Brik Aseptic®, which is made by sealing and folding a laminated strip packaging material. The packaging material has a multi-layer structure comprising a base layer of cardboard and / or paper covered on both sides with layers of heat-sealable plastic material, e.g., polyethylene. In the case of aseptic packages for long-term storage products, the packaging material comprises a layer of oxygen barrier material, e.g., aluminum foil, which is laminated to the heat-sealable plastic material layer and then covered with another layer of heat-sealable plastic material that forms the inner surface of the package that will ultimately contact the food product.

[0005] Some known packages, particularly the respective sealed bodies of packages formed from packaging materials, have a designated pouring opening surface area that allows the pourable product to flow out of the package. Typically, the designated pouring opening surface area is covered by a separation membrane that separates the interior of the package from the external environment and is to be opened, removed, torn, cut, or perforated before the first flow of the pourable product to allow the pourable product to flow out. It is also known to place a pour spout having a collar and a lid on the body around the designated pouring opening surface area to control the flow of the pourable product. The collar has a pouring spout to allow controlled flow of the pourable product from the package, and the lid allows selective opening and closing of the pouring spout.

[0006] Some known spouts include an opening assembly to pierce and / or unseal the pouring opening face area in a controlled manner.

[0007] A known drawback of these types of spouts is that separating the lid from the collar means a complete separation of the lid from the collar, which in some cases can lead to the unwanted loss of the lid or to its scattering by irresponsible users.

[0008] Thus, there is a felt need in the art for further improved spouts and / or package spout assemblies. Summary of the Invention [Problem to be solved by the invention]

[0009] It is therefore an object of the present invention to provide an improved pour spout for containers filled with pourable products, and more particularly for sealed packages, filled with pourable food products, in a reliable and cost-effective manner.

[0010] In particular, it is an object of the present invention to provide an improved spout for containers filled with pourable products, and in particular for sealed packages, filled with pourable food products, in a reliable and low-cost manner, thereby improving the user experience by being simple and intuitive to use.

[0011] A further object of the present invention is to provide in a reliable and low-cost manner a package pour spout assembly comprising a sealed package filled with a pourable product, in particular a pourable food product, and a pour spout.

[0012] A further object of the present invention is to provide a package spout assembly comprising a sealed package filled with a pourable product, in particular a pourable food product, and a spout in a reliable and low-cost manner, thereby improving the user experience by being simple and intuitive to use. [Means for solving the problem]

[0013] According to the present invention, there is provided a pour spout as claimed in the independent claim.

[0014] Further advantageous embodiments of the spout are specified in the respective dependent claims.

[0015] According to the present invention there is also provided a package spout assembly as set forth in claim 15.

[0016] Three non-limiting embodiments of the present invention will now be described by way of example with reference to the accompanying drawings, in which: [Brief explanation of the drawings]

[0017] [Figure 1] 1 is a schematic perspective view, with parts removed for clarity, of a package spout assembly having a spout according to a first embodiment of the invention arranged in a first configuration; FIG. [Figure 2]2 is a schematic enlarged perspective view of the package spout assembly of FIG. 1 with the spout positioned in a second configuration and parts removed for clarity; FIG. [Figure 3] 2 is a schematic enlarged perspective view of the package spout assembly of FIG. 1 with the spout positioned in a third configuration and parts removed for clarity; FIG. [Figure 4] FIG. 4 is an enlarged view of the spout of FIGS. 1-3 arranged in a third configuration with parts removed for clarity; [Figure 5] FIG. 4 is an enlarged view of some details of the spout of FIGS. 1-3 arranged in a first configuration, with parts removed for clarity; [Figure 6] FIG. 4 is an enlarged view of some details of the spout of FIGS. 1-3 during control from a first configuration to a second configuration, with parts removed for clarity; [Figure 7] FIG. 4 is an enlarged view of some details of the spout of FIGS. 1-3, in a configuration between the first and second configurations, with parts removed for clarity. [Figure 8] FIG. 10 is a perspective view, with parts removed for clarity, of a detail of a spout according to a second embodiment of the invention; [Figure 9] FIG. 10 is a perspective view, with parts removed for clarity, of some further details of a spout according to a second embodiment of the invention; [Figure 10] FIG. 10 is a further perspective view, with parts removed for clarity, of some more details of a spout according to a second embodiment of the invention; [Figure 11] FIG. 10 is a perspective view of some details of a spout according to a third embodiment of the present invention, in a first configuration, with parts removed for clarity; [Figure 12] FIG. 12 is a perspective view of the spout of FIG. 11 in a second configuration, with parts removed for clarity. DETAILED DESCRIPTION OF THE INVENTION

[0018] The number 1, as a whole, a container, in particular a sealed package 2, even more in particular a sealed cardboard package, filled with a pourable product, in particular a pourable food product, and in particular having a designated pouring opening surface area (not shown, but known per se), - a spout 3, in particular a plastic spout, attached to a container, in particular a package 2, around a designated spout opening surface area; 1 shows a container spout assembly, in particular a package spout assembly, comprising:

[0019] The package 2 is obtained from a packaging material, in particular in the form of a web, having a multi-layer structure (not shown). The packaging material comprises at least a layer of fibrous material, for example paper or cardboard, and at least two layers of heat-sealable plastic material, for example polyethylene, between which the layers of fibrous material are arranged. One of these two layers of heat-sealable plastic material defines the inner surface of the package 2 that comes into contact with the pourable product.

[0020] Preferably, but not necessarily, the packaging material also comprises a layer of gas and light barrier material, for example aluminum foil or an ethylene vinyl alcohol (EVOH) film, in particular arranged between one of the layers of heat-sealable plastic material and the layer of textile material. Preferentially, but not necessarily, the packaging material also comprises a further layer of heat-sealable plastic material arranged between the layer of gas and light barrier material and the layer of textile material.

[0021] According to a preferred, non-limiting embodiment, the spout 3 is attached to the package 2 by a molding process and / or adhesive bonding and / or ultrasonic bonding before, during, or after the forming, filling, and sealing of the package 2.

[0022] Alternatively, the spout 3 can be attached to the packaging material before it is placed into a packaging machine for forming, filling and sealing the package 2 from the packaging material, or while the packaging material is advancing through the packaging machine.

[0023] Referring specifically to FIG. 1, the package 2 extends along a longitudinal axis A.

[0024] Preferentially, but not necessarily, the package 2 is parallelepiped-shaped.

[0025] In particular, a designated pouring opening surface area of ​​the package 2 is configured to be at least partially (irreversibly) opened and / or torn and / or cut and / or perforated to allow the flow of pourable product from the package 2, in particular through the spout 3. Even more particularly, the pouring opening surface area is configured to allow the flow of pourable product after loss of its integrity and to protect the pourable product from the external environment prior to its cutting and / or opening and / or torn and / or perforation.

[0026] According to a preferred, non-limiting embodiment, the pouring opening surface area comprises a separation membrane (not shown, but known per se) configured to be torn and / or opened and / or cut and / or perforated. In particular, the separation membrane separates, in the area of ​​the designated pouring opening surface area, in particular at the designated pouring opening surface area, from the outside of the package 2 to the inside of the package 2. Preferentially, but not necessarily, the separation membrane comprises a gas and light barrier material, for example, an aluminum foil or an ethylene vinyl alcohol (EVOH) film.

[0027] According to a preferred, non-limiting embodiment, the separator membrane is defined by a portion of the packaging material, in particular by a portion of a layer of the packaging material that is different from the layer of fibrous material.

[0028] With particular reference to Figures 1 to 7, the spout 3 has at least: - a base frame 4 configured and / or mounted around a designated pouring opening surface area of ​​the package 2, and having a collar 5 provided with at least a pouring outlet 6 and configured to allow a (controlled) flow of the pourable product from the package spout assembly 1 and / or the package 2; a lid assembly 7 coupled and / or coupleable to the base frame 4, in particular to the collar 5, and configured to at least selectively open and close the spout 6; Equipped with.

[0029] In particular, the collar 5 extends along a longitudinal axis B, which is preferentially, but not necessarily, parallel to the longitudinal axis A (and away from the package 2).

[0030] In particular, the longitudinal axis B defines the central axis of the collar 5 and / or the spout 6 (equal to the central axis of the collar 5 and / or the spout 6).

[0031] Preferentially, the collar 5 and the spout 6 present a (nearly) circular cross-sectional profile, in particular with respect to a cross-sectional plane perpendicular to the longitudinal axis B.

[0032] Advantageously, the lid assembly 7 comprises: a coupling ring 8 arranged rotatably around the collar 5, in particular so that the coupling ring 8 cannot be separated from the collar 5; a lid 9 hinged to the coupling ring 8 and angularly movable about a respective hinge axis C, in particular transverse, and even more particularly perpendicular to, the longitudinal axis A and / or the longitudinal axis B; Equipped with.

[0033] In particular, the lid assembly 7 comprises a coupling element 10 configured to hinge the lid 9 to the coupling ring 8 and defining a hinge axis C.

[0034] Advantageously, the lid 9 comprises at least a closed configuration (see FIG. 1 ), in which the lid 9 is in a closed angular position with respect to the hinge axis C, in particular configured to cover and / or covering the spout 6 to prevent the spillage of the pourable product from the package spout assembly 1 and / or the package 2; an open configuration (see FIG. 3 ) in which the lid 9 is in an open angular position with respect to the hinge axis C and the lid 9 is configured to be separated from and / or is separated from the spout 6; an intermediate configuration (see FIG. 2 ), in which the lid 9 is in an intermediate angular position relative to the hinge axis C, the intermediate angular position being located between the closed and open angular positions; It is controllable between

[0035] In particular, during use, controlling the lid 9 from a closed configuration to an open configuration requires first controlling it from the closed configuration to an intermediate configuration and then controlling it from the intermediate configuration to the open configuration. In other words, during use, controlling the lid 9 from a closed angular position to an open angular position requires first controlling it from the closed angular position to an intermediate angular position and then to the open angular position.

[0036] Preferentially, the lid 9 is a top 13 configured to cover the spout 6 when the lid 9 is in a closed angular position; a side wall 14 projecting from the top 13 and adapted to at least partially surround the collar 5 when the lid 9 is controlled in a closed angular position; Equipped with.

[0037] In particular, when the lid 9 is in the closed angular position, the top 13 is transverse, in particular perpendicular, to the longitudinal axis B, and the side walls 14 are (substantially) parallel to the longitudinal axis B.

[0038] According to some possible non-limiting embodiments, when the lid 9 is in use in a closed angular position (and in an intermediate angular position), the lid 9, in particular the top 13 and / or the side wall 14, is coupled to the collar 5.

[0039] Preferentially, the lid 9 comprises an inner surface 15, in particular the inner surface 15 facing the collar 5 when the lid 9 is in the closed angular position (and in the intermediate angular position). In particular, the top 13 and the side wall 14 carry the inner surface 15.

[0040] Advantageously, the spout 3 comprises an interaction device 16 that is partially associated with (and / or partially associated and / or held in a connecting manner with) the collar 5 and partially associated with (and / or partially associated and / or held in a connecting manner with) the lid 7, and that is configured so that control of the lid 9 from the closed configuration to the intermediate configuration (in other words, from the closed angular position to the intermediate angular position) is only possible by rotation of the lid 9 and the coupling ring 8, in particular around a (common) rotation axis E that is parallel to the longitudinal axis B, and even more particularly coaxial with the longitudinal axis B, and so that control of the lid 9 from the intermediate configuration to the closed angular configuration (in other words, from the intermediate angular position to the closed angular position) is at least possible by only angular movement of the lid 9 around the hinge axis C from the intermediate angular position to the closed angular position.

[0041] Preferentially, control of the lid 9 from the intermediate angular position to the closed angular position is selectively possible by only angular movement of the lid 9 around the hinge axis C from the intermediate angular position to the closed angular position and by rotation of the lid 9 and the coupling ring 8 around the rotation axis E.

[0042] It should be noted that according to such a non-limiting embodiment, the user can freely choose whether to control the lid 9 by only angular movement about the hinge axis C or whether to cause control of the lid 9 from the intermediate angular position to the closed angular position by rotation of the lid 9 about the rotation axis E. It should further be noted that it is also possible to combine both means of control of the lid 9 from the intermediate angular position to the closed angular position.

[0043] According to some preferred, non-limiting embodiments, the spout 3 also includes: - a (ring-shaped) cutter 17 movably coupled to the base frame 4, in particular to the collar 5, and adapted to at least partially cut and / or tear and / or open and / or perforate a designated pouring opening surface area, in particular a separator membrane; a control device 18 configured to interact with the cutter 17 and control the cutter 17 between a rest position configured to retract the cutter 17 from the designated dispensing opening surface area and / or retracted from the designated dispensing opening surface area, and an operating position configured to at least partially cut and / or tear and / or open and / or perforate the designated dispensing opening surface area; Equipped with.

[0044] In particular, the control device 18 is configured to control the cutter 17 from the rest position to the operative position upon rotation of the lid 9 and the coupling ring 8 about the axis of rotation E. Even more particularly, the control device 18 is configured to control the cutter 17 from the rest position to the operative position only when the lid 9 and the coupling ring 8 are rotated about the axis of rotation E in order to move the lid 9 from the closed angular position to the intermediate angular position in use.

[0045] With particular reference to Figures 3-7, collar 5 defines an interior space 19 within which cutter 17 is at least partially disposed.

[0046] Preferentially, the collar 5 has a circular cross-sectional shape in a cross section perpendicular to the longitudinal axis B.

[0047] According to a preferred, non-limiting embodiment, the collar 5 comprises an inner surface 20 facing the interior space 13 and an outer surface 21 opposite the interior space 15 (and the interior space 19).

[0048] In particular, when the lid 9 is in the closed angular position (or in the intermediate angular position), the inner surface 15 faces the outer surface 21 .

[0049] According to certain preferred, non-limiting embodiments, the cutter 17 is configured to at least translate, particularly rotate and translate, during movement from the rest position to the active position.

[0050] Preferentially, the cutter 17 comprises a cutting portion 22 (located at and / or defining the axial end of the cutter 17) configured to open and / or cut and / or tear and / or perforate a designated pouring opening surface area, in particular a separator membrane. Preferentially, the cutting portion 22 has (has) a sawtooth profile.

[0051] According to a preferred, non-limiting embodiment, the control device 18 comprises a cam group configured to guide the movement of the cutter 17 from a rest position to an active position.

[0052] Preferentially, the cam group comprises a cam profile and at least one, and preferentially a plurality of, guide elements configured to interact with the cam profile, in particular the cam profile and the guide element cooperating to perform a rotational translation when the cutter 17 moves from the rest position to the active position, in use.

[0053] Preferentially, the cam profile is associated with and / or connected to and / or integral with the cutter 17, and the guide element is connected with and / or associated to and / or integral with the base frame 4, in particular with the collar 5, and even more particularly with the inner surface 19.

[0054] 3-7, the base frame 4 further comprises a coupling base 23 configured to couple and / or connect the spout 3 to the package 2. In particular, the coupling base 23 holds the collar 5.

[0055] Preferentially, the coupling base 23 is configured to be fixed to and / or is fixed to the outer surface of the package 2, in particular in the region of the designated pouring opening surface area, even more particularly at the designated pouring opening surface area. In particular, at least a part of the coupling base 23 has a substantially plate-like configuration.

[0056] Preferentially, but not necessarily, the collar 5 extends from the coupling base 23 along the longitudinal axis B, in particular parallel to the longitudinal axis B.

[0057] With particular reference to FIGS. 4-7, the control device 18 a plurality of interaction elements 24 connected to the cutter 17, in particular integral with the cutter 17; a plurality of interaction members 25 connected and / or coupled to the lid 9, each configured to interact with one respective interaction element 24; Equipped with.

[0058] In particular, each interaction member 25 is coupled and / or connected to the lid 9 such that rotation of the lid 9 about the axis of rotation E also leads to rotation of the interaction member 25 about the axis of rotation E.

[0059] Preferentially, during use, rotation of the lid 9 and the interacting member 25 about the rotation axis E causes at least a parallel, and preferentially rotationally parallel, movement of the cutter 17 due to the interaction of the interacting member 25 with the interacting element 24 and the cooperation of the cam profile and the guide element.

[0060] 1-4, the spout 3 also includes a plurality of breakable primary connecting bridges 26 that connect the connecting ring 8 and the lid 9 to one another, particularly before the lid 9 is initially controlled from the closed angular position to the intermediate angular position during use. In particular, the primary connecting bridges 26 irreversibly break during use during the initial control of the lid 9 from the closed angular position to the intermediate angular position. Even more particularly, in use, the primary connecting bridges 26 break after the control of the cutter 17 from the rest position to the activated position.

[0061] 1-4, spout 3 also includes a tamper-evidence ring 27 disposed around collar 5, particularly between coupling base 23 and coupling ring 8. In particular, tamper-evidence ring 27 is parallel to coupling ring 8 and is axially displaced from coupling ring 8.

[0062] In particular, spout 3 also includes a breakable auxiliary coupling bridge 28 that couples tamper-evident ring 27 and coupling ring 8 to one another. Auxiliary coupling bridge 28 is configured to irreversibly break upon the first rotation of lid 9 and coupling ring 8 about rotation axis E. Preferentially, during use, auxiliary coupling bridge 28 breaks prior to movement of cutter 17 from the rest position to the activated position.

[0063] According to some preferred, non-limiting embodiments, the collar 5 comprises, in particular, an interaction ring 29 protruding from the outer surface 21 and configured to interact with the coupling ring 8. Preferentially, the interaction ring 29 is configured to inseparably couple the coupling ring 8 to the collar 5 and to allow rotation of the coupling ring 8 around the rotation axis E.

[0064] Advantageously, and with particular reference to FIGS. 1 to 7, the interaction device 16 comprises at least: a main interaction structure 33 associated with, in particular connected to and / or carried by, the collar 5; a main interaction unit 34 associated with the lid 9, in particular connected to and / or carried by the lid 9, and configured to interact with the main interaction structure 33; Equipped with.

[0065] In particular, the interaction between the main interaction structure 33 and the main interaction unit 34 is such that, during use, movement of the lid 9 from the closed angular position to the intermediate angular position requires rotation of the lid 9 (and the coupling ring 8) about the rotation axis E (i.e., the interaction between the main interaction unit 34 and the main interaction structure 33 does not allow for the sole angular movement of the lid 9 about the hinge axis C to control the lid 9 from the closed angular position to the intermediate angular position).

[0066] It should be noted that within the scope of this specification, the only angular movement of the lid 9 about the hinge axis C is the angular movement of the lid 9 about the hinge axis C that occurs while the lid 9 remains fixed at an angle relative to the axis of rotation E. In other words, if the lid 9 does not rotate about the axis of rotation E, any angular movement of the lid 9 about the hinge axis C is the only angular movement.

[0067] Preferentially, the interaction of the main interaction structure 33 and the main interaction unit 34 is such that when the lid 9 rotates around the rotation axis E for the first time, the angular movement of the lid 9 around the hinge axis C, in particular from the closed angular position to the intermediate angular position, is performed only after the movement of the cutter 17 from the rest position to the operating position.

[0068] Preferentially, the main interaction unit 34 is a first engagement surface 35 configured to abut against an abutment surface 36 of the main interaction structure 33 so as to prevent angular movement of the lid 9 about the hinge axis C, in particular from the closed angular position to the intermediate angular position; a second engagement surface 37 opposite the first engagement surface 35 and adapted to slide along a guide surface 38 of the main interaction structure 33 in particular to control and / or actuate the angular movement of the lid 9 about the hinge axis C from the closed angular position to an intermediate angular position; Equipped with.

[0069] In particular, the interaction of the first engagement surface 35 and the abutment surface 36 defines a locking mechanism for the lid 9 in the closed angular position.

[0070] In particular, the second engagement surface 37 and the guide surface 38 define respective cam mechanisms.

[0071] Preferentially (see Figures 5 and 6), the first engagement surface 35 and the second engagement surface 37 are configured to interact with the abutment surface 36 and the guide surface 38 respectively depending on the angular position of the lid 9 relative to the rotation axis E.

[0072] Preferentially, the main interaction structure 33 and the main interaction unit 34 are designed such that when the lid 9 is positioned with respect to the rotation axis E between the first and second angle lid positions, the first engagement surface 35 and the abutment surface 36 interact with each other (see FIG. 5), and when the lid 9 is arranged with respect to the rotation axis E between the third and fourth angle lid positions, the second engagement surface 37 and the guide surface 38 interact with each other (see FIG. 6). In particular, the third and fourth angle lid positions are arranged between the second and first angle lid positions.

[0073] In particular, when the lid 9 is positioned relative to the rotation axis E between the first angle lid position and the second angle lid position, the second engagement surface 37 and the guide surface 38 do not interact with each other (see Figure 5), and when the lid 9 is positioned relative to the rotation axis E between the third angle lid position and the fourth angle lid position, the first engagement surface 35 and the abutment surface 36 do not interact with each other (see Figure 6).

[0074] In other words, when the lid 9 is positioned relative to the rotation axis E between the first angle lid position and the second angle lid position, the first engagement surface 35 is configured to abut against the abutment surface 36 during rotation of the lid 9 around the rotation axis E, and when the lid 9 is positioned between the third angle lid position and the fourth angle lid position, the second engagement surface 37 is configured to slide on the guide surface 38 during rotation of the lid 9 around the rotation axis E.

[0075] In particular, it should be noted that when the lid 9 rotates to a certain extent about the rotation axis E, such that the lid 9 rotates from the third angle lid position to the fourth angle lid position, the angular movement of the lid 9 about the hinge axis C is such that the lid 9 moves from the closed angle position to the intermediate angle position.

[0076] Furthermore, during use, during rotation of the lid 9 from the fourth angle lid position to the third angle lid position, it is possible to move the lid 9 angularly about the hinge axis C from an intermediate angle position to a closed angle position.

[0077] In particular, the primary interaction unit 34 and the primary interaction structure 33 are also configured to allow only one angular movement about the hinge axis C for controlling the lid 9 from the intermediate angular position to the closed angular position (during a re-closing operation). In such a case (i.e., during a re-closing operation), the primary interaction unit 34 can overcome the primary interaction structure 33, and once the lid 9 is again in the closed angular position, movement in the reverse direction from the closed angular position to the intermediate angular position is prevented by the interaction between the abutment surface 36 and the first engagement surface 35.

[0078] According to some preferred non-limiting embodiments, the main interaction structure 33 and the main interaction unit 34 are also configured to maintain the lid 9 in the intermediate angle position after the movement from the closed angle position to the intermediate angle position is completed.

[0079] Preferentially, the guide surface 38 is opposite the abutment surface 36 .

[0080] In particular, the abutment surface 36 faces the coupling base 23 and the guide surface 38 faces away from the coupling base 23 .

[0081] According to some preferred, non-limiting embodiments, the primary interaction structure 33 is: a stop 39 extending about the longitudinal axis B between a first angular position X and a second angular position Y and holding the abutment surface 36; a cam portion 40 carrying the guide surface 38 and extending about the longitudinal axis B between a third angular position V and a fourth angular position W and being arranged between the second angular position Y and the first angular position X; Equipped with.

[0082] According to some preferred, non-limiting embodiments, the cam portion 40 comprises at least a primary cam portion 42, and in particular also an auxiliary cam portion 43 spaced apart from the primary cam portion 42. Preferentially, the auxiliary cam portion 43 is angularly and axially spaced apart from the primary cam portion 42 with respect to the axis of rotation E.

[0083] Preferentially, the main cam portion 42 holds (has) the main guide portion 44 of the guide surface 38 , and in particular, the auxiliary guide portion 43 holds (has) the auxiliary guide portion 45 of the guide surface 38 .

[0084] In particular, the locking portion 39 is (approximately) arc-shaped.

[0085] Preferentially, the stop 39 and / or the abutment surface 36 lie in a first plane transverse, in particular perpendicular, to the longitudinal axis B.

[0086] Preferentially, the cam portion 40 and / or the guide surface 38 are inclined relative to the locking portion 39 and / or the abutment surface 36. Even more preferentially, the main cam portion 42 and the main guide portion 44, and in particular, furthermore, the auxiliary cam portion 43 and the auxiliary guide portion 45, are inclined relative to the locking portion 39 and / or the abutment surface 36.

[0087] In particular, the primary cam portion 42 and / or the primary guide portion 44 lie in a second plane (different from the first plane) transverse to the longitudinal axis B. Even more particularly, the auxiliary cam portion 43 and / or the auxiliary guide portion 45 lie in a third plane (different from the first and second planes) spaced apart from the second plane.

[0088] Preferentially, the second plane, and in particular the third plane, are inclined relative to the first plane.

[0089] In particular, during use, sliding of the second engagement surface 37 over the guide surface 38 results in a force in a direction that moves the lid 9 away from the coupling ring 8 .

[0090] According to some preferred non-limiting embodiments, the main interaction structure 33, in particular the locking portion 39, comprises an auxiliary surface 41 (opposite the abutment surface 36) designed to allow angular movement of the lid 9 from the intermediate angular position to the closed angular position by only one angular movement of the lid 9 about the hinge axis C. In particular, the auxiliary surface 41 is designed such that the main interaction unit 34 clears the main interaction structure 33, in particular the locking portion 39, during only one angular movement of the lid 9 about the hinge axis C.

[0091] According to some preferred non-limiting embodiments, the auxiliary surface 41 is also configured to interact with the main interaction unit 34 when the lid 9 is controlled to an intermediate angular position so as to maintain the lid 9 in the intermediate angular position.

[0092] According to some preferred, non-limiting embodiments, the primary interacting structure 33 , in particular the locking portion 39 and the cam portion 40 , are connected to the outer surface 21 and in particular protrude from the outer surface 21 .

[0093] According to some preferred non-limiting embodiments, the main interaction unit 34 comprises at least a first interaction element 50 that carries (has) the first engagement surface 35 and a second interaction element 51 that carries (has) at least a first portion 52 of the second engagement surface 37. In particular, the first portion 52 is configured to slide along the main guide 44 in use to control the lid 9 from a closed angular position to an intermediate angular position.

[0094] According to some preferred non-limiting embodiments, the first interface element 50 carries (has) an interface surface 53 opposite the first engagement surface 35, which is configured to engage at least the auxiliary surface 41 when the lid 9 is disposed in the intermediate angular position. In particular, the engagement of the interface surface 53 with the auxiliary surface 41 allows the lid 9 to be maintained in the intermediate angular position after completion of movement of the lid 9 from the closed angular position to the intermediate angular position (see FIG. 7 ).

[0095] 1-7, the interaction surface 53 also defines a second portion of the second engagement surface 37. In particular, the interaction surface 53 is configured to slide along the auxiliary guide 45 in use to facilitate movement of the lid 9 from the closed angular position to the intermediate angular position in use.

[0096] Preferentially, the first interface element 50 comprises a main wall 54 carrying (comprising) the first engagement surface 35 and at least one tooth 55 protruding from the main wall 54 .

[0097] In particular, the teeth 55 carry (have) an interaction surface 53 .

[0098] According to some preferred non-limiting embodiments, the main interaction unit 34, in particular the first interaction element 50 and the second interaction element 51, are connected to protrusions, in particular from the inner surface 15, in particular from the side wall 14.

[0099] Preferentially, the first and second interface elements 50, 51 are displaced from one another axially, in particular also obliquely, with respect to the axis of rotation E.

[0100] In use, the flow of pourable product from the package spout assembly 1, and in particular from the package 2, requires the release of the spout 6. This is done by controlling the lid 9 from a closed configuration to an open configuration. Even more particularly, the lid 9 is first controlled from the closed configuration to an intermediate configuration, and then controlled from the intermediate configuration to the open configuration.

[0101] In particular, movement of the lid 9 from the closed configuration to the intermediate configuration requires rotation of the lid 9 about rotation axis E. Even more particularly, control from the intermediate configuration to the open configuration is achieved by the user angularly moving the lid 9 about hinge axis C.

[0102] Preferentially, the first time the lid 9 is controlled from the closed configuration to the intermediate configuration, the cutter 17 is controlled from the rest position to the working position in order to open and / or tear and / or perforate the pouring opening surface area, in particular the separator membrane. In particular, the control of the cutter 17 from the rest position to the working position occurs before the control of the lid 9 from the closed configuration to the open configuration.

[0103] More specifically, during control of the lid 9 from the closed configuration to the intermediate configuration, the angular position of the lid 9 relative to the hinge axis C is changed from the closed angular position to the intermediate angular position. When the first engagement surface 35 abuts the abutment surface 36, the lid 9 must rotate about the rotation axis E from the first angular lid position to the fourth angular lid position, past the second angular lid position and the third angular lid position. The second engagement surface 37 slides on the guide surface 38 while the lid 9 rotates about the rotation axis E and moves angularly from the third angular lid position to the fourth angular lid position about the hinge axis C to actuate the angular movement from the closed angular position to the intermediate angular position.

[0104] Even more specifically, while the second engagement surface 37 slides on the guide surface 38, at least the first portion 52 slides along the main guide portion 44, and in particular also the interaction surface 53 slides along the auxiliary guide portion 45.

[0105] Preferentially, after the lid 9 has been controlled to an intermediate angular position, the engagement of the interaction surface 53 with the auxiliary surface 41 ensures that the angular position of the lid 9 relative to the hinge axis C remains fixed.

[0106] When the user intends to re-block the spill of the pourable product, he can control the lid 9 again (during a re-closing operation) to the closed angular position. First, the lid 9 has to be controlled from the open angular position to the intermediate angular position, and subsequently the lid 9 is controlled from the intermediate angular position to the closed angular position. The latter can be obtained by a sole angular movement of the lid 9 about the hinge axis C, or in particular by a rotation of the lid 9 about the rotation axis E.

[0107] 8-10, numeral 3' denotes an alternative embodiment of a spout according to the present invention. Because spout 3' is similar to spout 3, the following description will be limited to the differences between them, using the same reference numerals for identical or corresponding parts where possible.

[0108] In particular, spout 3' differs from spout 3 in that cam portion 40 comprises primary cam portion 42 and does not comprise auxiliary cam portion 43. Even more particularly, interacting surface 53 is configured to engage auxiliary surface 41 but does not facilitate movement of lid 9 from the closed angular position to the intermediate angular position. In other words, only second interacting element 51 contributes to the angular movement of lid 9 from the closed angular position to the intermediate angular position.

[0109] Preferentially, the spout 3' also differs from the spout 3 in that the first interaction element 50 comprises two teeth 55 protruding from the main wall 54. In particular, the teeth 55 are parallel to each other and each bears a respective portion of the interaction surface 53.

[0110] 11 and 12, numeral 3" indicates a further alternative embodiment of a spout according to the present invention. Because spout 3" is similar to spout 3', the following description will be limited to the differences between them, using the same reference numerals for identical or corresponding parts where possible.

[0111] In particular, spout 3'' differs from spout 3' in that primary interaction unit 34 comprises at least a third interaction element 56 that carries (has) at least a third portion 57 of second engagement surface 37 that is distinct from (and separated from) second interaction element 51. In particular, third interaction element 56 moves angularly from second interaction element 51 relative to rotation axis E. Even more particularly, third interaction element 56 is positioned such that, during use, while controlling lid 9 from the closed configuration to the intermediate configuration, initially third portion 57 engages primary guide 44, and thereafter first portion 52 engages primary guide 44.

[0112] Preferentially, the third portion 57 and the first portion 52 lie in a common plane that is in particular parallel to the second plane.

[0113] Preferentially, spout 3'' also differs from spout 3' in that main interacting structure 33, in particular cam portion 40, is provided with a plurality of spaced apart support ridges 58 that are integral with and configured to support main cam portion 42, in particular to increase the mechanical stability of main cam portion 42.

[0114] The advantages of the spouts 3, 3', and 3'' and / or package spout assembly 1 according to the present invention will be apparent from the foregoing description.

[0115] In particular, the lid 9 cannot be separated from the rest of the package spout assembly 1 by being connected to the coupling ring 8. This prevents the lid 9 from potentially scattering.

[0116] Opening of the package spout assembly 1 (opening of the spout 6) is achieved by rotating the lid 9 in accordance with user experience with known types of spouts, which has the further advantage that operation of the lid 9 is intuitive.

[0117] An even further advantage is that the interaction of the second engagement surface 37 with the guide surface 38 (and further support by the auxiliary guide portion 45 and auxiliary cam portion 43) moves the lid 9 to an intermediate angle position indicating to the user that it is possible to move the lid 9 further towards the open angle position.

[0118] Another advantage relates to also providing the third interaction element 56 which allows for an increased surface area of ​​the portion of the second engagement surface 37 which interacts with the primary guide portion 44 in use.

[0119] Obviously, modifications may be made to the spouts 3, 3', and 3'' and / or package spout assembly 1 as described herein without departing from the scope of protection defined in the appended claims.

[0120] According to an alternative non-limiting embodiment not shown, the primary interaction unit 34 comprises only the first interaction element 50, which carries (has) the first engagement surface 35 and the second engagement surface 37. Furthermore, the cam portion 40 comprises only the auxiliary cam portion 43.

[0121] According to an alternative non-limiting embodiment not shown, the main interaction unit 34 also comprises a third interaction element 56 .

Claims

1. A pour spout (3, 3') for a container (2) filled with a pourable product, in particular a sealed package (2), comprising at least: a collar (5) with a spout (6) configured to allow the outflow of said pourable product; a lid assembly (7) comprising a coupling ring (8) rotatably arranged around said collar (5) and a lid (9) hinged to said coupling ring (8) and angularly movable about a respective hinge axis (C); Equipped with The lid (9) comprises at least a closed configuration in which the lid (9) is in a closed angular position with respect to the hinge axis (C), the lid (9) being configured to cover and / or covering the outlet (6); an open configuration in which the lid (9) is in an open angular position with respect to the hinge axis (C) and the lid (9) is configured to be separated from the spout (6) and / or is separated from the spout (6); an intermediate configuration in which the lid (9) is in an intermediate angular position with respect to the hinge axis (C) located between the closed and open angular positions; It is controllable between the spout (3) comprises an interaction device (16) partly associated with the collar (5) and partly associated with the lid (9); the interaction device (16) is configured such that control of the lid (9) from the closed configuration to the intermediate configuration is possible only by rotation of the lid (9) and the coupling ring (8) about a rotation axis (E), and such that control of the lid (9) from the intermediate configuration to the closed configuration is possible only by angular movement of the lid (9) about the hinge axis (C) from the intermediate angular position to the closed angular position. Spout (3, 3').

2. Control of the lid (9) from the intermediate configuration to the closed configuration is selectively possible by a sole angular movement of the lid (9) about the hinge axis (C) and by rotation of the lid (9) and the coupling ring (8) about the rotation axis (E). The spout of claim 1.

3. The interaction device (16) comprises at least a primary interaction structure (33) associated with said color (5); a main interaction unit (34) associated with said lid (9) and configured to interact with said main interaction structure (33); Equipped with The main interaction unit (34) a first engagement surface (35) configured to abut against an abutment surface (36) of said main interaction structure (33) so as to prevent angular movement of said lid (9) about said hinge axis (C) from said closed angular position to said intermediate angular position; a second engagement surface (37) configured to slide along a guide surface (38) of said main interaction structure (33) so as to control the angular movement of said lid (9) about said hinge axis (C) from said closed angular position to said intermediate angular position; Equipped with A spout according to claim 1 or 2.

4. the first engagement surface (35) and the second engagement surface (37) are configured to interact with the abutment surface (36) and the guide surface (38), respectively, as a function of the angular position of the lid (9) relative to the rotation axis (E); The spout of claim 3.

5. The main interaction structure (33) is a stop (39) extending about the longitudinal axis (B) of said spout (6) and / or said collar (5) between a first angular position (X) and a second angular position (Y) and holding said abutment surface (36); a cam portion (40) which carries said guide surface (38) and extends between a third angular position (V) and a fourth angular position (W) about said longitudinal axis (B) and is arranged between said second angular position (Y) and said first angular position (X); Equipped with A spout according to claim 3 or 4.

6. the stop (39) and / or the abutment surface (36) are in a plane transverse, in particular perpendicular, to the longitudinal axis (B), The spout of claim 5.

7. The cam portion (40) is inclined with respect to the locking portion (39). A spout according to claim 5 or 6.

8. The guide surface (38) is opposite the abutment surface (36). The spout according to any one of claims 5 to 7.

9. when the lid (9) is positioned relative to the axis of rotation (E) between a first angular lid position and a second angular lid position with respect to the axis of rotation (E), the first engagement surface (35) is configured to abut against the abutment surface (36) during rotation of the lid (9) around the axis of rotation (E); When the lid (9) is positioned relative to the rotation axis (E) between a third angle lid position and a fourth angle lid position, and when the lid (9) is disposed between the second angle lid position and the first angle lid position, the second engagement surface (37) is configured to slide along the guide surface (38) during rotation of the lid (9) around the rotation axis (E). A spout according to any one of claims 3 to 8.

10. The lid (9) has an inner surface (15) and the collar (5) has an outer surface (21); When the lid (9) is controlled to the closed configuration, the inner surface (15) and the outer surface (21) face each other; The main interaction structure (33) is connected to the outer surface (21) and the main interaction unit (34) is connected to the inner surface (15). The spout according to any one of claims 3 to 9.

11. the primary interaction structure (33) protrudes from the outer surface (21); and / or The main interaction unit (34) protrudes from the inner surface (15). The spout of claim 10.

12. The main interaction unit (34) a first interface element (50) that holds said first engagement surface (35); a second interface element (51) that holds at least a first portion (52) of said second engagement surface (37); Equipped with The spout of claim 11.

13. the first interface element (50) holds a second portion (53) of the second engagement surface (37); The guide surface (38) comprises a main guide portion (44) and an auxiliary guide portion (45), In use, the second interaction element (51) is configured to interact with the main guide (44) and the first interaction element (50) is configured to interact with the auxiliary guide (45). The spout of claim 12.

14. the main interaction unit (34) comprises a third interaction element (56) different from the second interaction element (51) and holding at least a third portion (57) of the second engagement surface (37); A spout according to claim 12 or 13.

15. The main interaction structure (33) and the main interaction unit (34) are also configured to maintain the lid (6) at the intermediate angular position after the movement from the closed angular position to the intermediate angular position is completed. A spout according to any one of claims 1 to 14.

16. In particular, a sealed package (2) formed from a multi-layer packaging material, filled with a pourable product and having a designated pouring outlet surface area; a spout (3) according to any one of claims 1 to 15 mounted around said designated pouring outlet surface area; Equipped with Package spout assembly (1).