Fluid product dispensing device

The fluid product dispensing device addresses the issue of accidental dual dose dispensing by using a lug and axial grooves with biasing means to ensure precise dose separation, enhancing user control and accuracy.

FR3148419B1Active Publication Date: 2025-05-23APTAR FRANCE SAS
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Patent Information

Application Number
FR2023004538
Authority / Receiving Office
FR · FR
Patent Type
Patents
Current Assignee / Owner
Filing Date
2023-05-05
Publication Date
2025-05-23
Estimated Expiration
2043-05-05

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Abstract

Device for dispensing a fluid product comprising a body (1) receiving a reservoir (10) intended to contain a fluid product and a piston (20) sliding in said reservoir (10), said body (1) and said piston (20) comprising dose fractionation means (15, 16, 17;25) for separating the fluid product to be dispensed contained in said reservoir (10) into at least two doses intended to be dispensed during several successive actuations of said device, said dose splitting means comprising a lug (25), integral with said piston (20), sliding in a first axial groove (15), integral with said body (1), said first groove (15) comprising a shoulder (17) for locking said lug (25) after dispensing the first dose of fluid product, said shoulder (17) separating said first axial groove (15) from a second axial groove (16) parallel and laterally offset from said first axial groove (15), said lug (25) passing from said first axial groove (15) to said second axial groove (16) by rotation of said lug (25) relative to said axial grooves (15, 16), said device comprising biasing means (40, 60;17a, 25a) to, at the end of the actuation stroke, urge said lug (25) laterally away from said second groove part (16). “figure for the abstract: figure 1”;
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Description

Title of the invention: Device for dispensing fluid product

[0001] The present invention relates to a device for dispensing fluid product.

[0002] Devices for dispensing fluid products are well known. They generally comprise a reservoir, dispensing means and a dispensing head. The dispensing head may be a spray head, for example of the nasal type.

[0003] Certain dispensing devices comprise a reservoir 10 of the syringe type and a piston 20 sliding in said reservoir between a retracted position and a depressed position. When the product contained in the reservoir must be dispensed in two or more successive doses, the device comprises dose splitting means.

[0004] Document WO2023047067A1 describes a two-dose device in which the dose splitting means comprise two parallel vertical grooves offset laterally and connected by a horizontal shoulder, with a lug secured to the piston sliding in the first groove during the first actuation and coming into abutment against the horizontal shoulder to stop the first actuation stroke. To be able to dispense the second dose, the user must turn the piston and therefore the lug to bring it opposite the second groove. A disadvantage of this type of structure is that if the user presses sufficiently strongly and / or with a slightly off-axis actuation force, there is a risk that the lug will slide on the horizontal shoulder and pass directly into the second groove, thereby dispensing two doses in a single actuation.

[0005] The aim of the present invention is to provide a fluid product dispensing device which does not reproduce the aforementioned drawbacks.

[0006] The present invention aims in particular to provide a fluid product dispensing device which guarantees perfect separation of the doses by preventing the accidental dispensing of two doses during actuation.

[0007] The present invention also aims to provide a fluid product dispensing device which is simple and inexpensive to manufacture and assemble.

[0008] The present invention thus relates to a fluid product dispensing device comprising a body receiving a reservoir intended to contain a fluid product and a piston sliding in said reservoir, said body and said piston comprising dose splitting means for separating the fluid product to be dispensed contained in said reservoir into at least two doses intended to be dispensed during several successive actuations of said device, said dose splitting means comprising at least one lug, integral with one of said piston and said body, sliding in at least one first axial groove, integral with the other of said piston and said body, each first groove comprising a shoulder for blocking said respective lug after dispensing the first dose of fluid product, said shoulder separating said first axial groove from a second axial groove parallel and laterally offset from said first axial groove, said lug passing from said first axial groove to said second axial groove by rotation of said lug relative to said axial grooves, said device comprising biasing means for, at the end of the actuation stroke, biasing said lug laterally away from said second groove part.

[0009] According to a first advantageous embodiment, said stressing means comprise at least one radial projection integral with one of said piston rod and said body, which, when said lug approaches said shoulder, cooperates with a corresponding projecting rib integral with the other of said piston rod and said body, said projecting rib comprising an inclined front end edge.

[0010] Advantageously, each radial projection comprises a rounded axial edge which cooperates with said corresponding inclined front end edge.

[0011] According to a second advantageous embodiment, said stressing means are formed directly on said lug and on said shoulder.

[0012] Advantageously, said shoulder comprises an inclined part, said lug comprising a complementary profile, with an inclined surface, which at the end of the first stroke cooperates with said inclined part of said shoulder.

[0013] Advantageously, said shoulder comprises a flat part and said lug comprises a flat surface, which cooperates with the flat part of the shoulder.

[0014] Advantageously, said inclined part of the shoulder is located on the outside, on the side opposite said second axial groove.

[0015] Alternatively, said inclined portion is located inside.

[0016] Alternatively, the entirety of said shoulder is inclined.

[0017] Advantageously, said body and / or said piston comprises(s) energy accumulation means requiring the application of at least one predetermined force to enable the spraying of said fluid product to be dispensed.

[0018] Advantageously, said at least one lug is integral with said piston and said at least one first axial groove is formed in said body.

[0019] Alternatively, said at least one lug is integral with said body and said at least one first axial groove is formed in said piston.

[0020] Advantageously, said at least one radial projection is integral with said piston rod and said at least one projecting rib is formed in said body.

[0021] Alternatively, said at least one radial projection is integral with said body and said at least one projecting rib is formed in said piston rod.

[0022] These and other advantages and characteristics of the present invention will appear more clearly during the following detailed description, made with reference to the attached drawings, given as non-limiting examples, and in which:

[0023] [Fig-1] [Fig.l] is a schematic perspective view of a device for distribution according to a first advantageous embodiment, before the first actuation,

[0024] [Fig.2] [Fig.2] is a view similar to that of [Fig.l], during actuation,

[0025] [Fig.3a] Figures 3a to 3d are detailed cross-sectional views of the state-of-the-art dose fractionation means,

[0026] [Fig.3b] cf [Fig.3a]

[0027] [Fig.3c] cf [Fig.3a]

[0028] [Fig.3d] cf [Fig.3a]

[0029] [Fig.4a] Figures 4a and 4b are detailed cross-sectional views of the dose splitting means according to a first advantageous embodiment, just before the end of the first actuation stroke,

[0030] [Fig.4b] cf [Fig.4a]

[0031] [Fig.5a] Figures 5a and 5b are views similar to those of Figures 4a and 4b, at the end of the first actuation stroke,

[0032] [Fig.5b] cf [Fig.5a]

[0033] [Fig.6a] Figures 6a and 6b are views similar to those of Figures 5a and 5b, at start of the second actuation stroke,

[0034] [Fig.6b] cf [Fig.6a]

[0035] [Fig.7a] Figures 7a and 7b are views similar to those of Figures 6a and 6b, at during the second actuation stroke,

[0036] [Fig.7b] cf [Fig.7a]

[0037] [Fig.8] [Fig.8] is a schematic perspective view of a device for distribution according to a second advantageous embodiment, before the first actuation,

[0038] [Fig.9] [Fig.9] is a view similar to that of [Fig.8], just before the end of the first actuation stroke,

[0039] [Fig. 10] [Fig. 10] is a view similar to that of [Fig.9], at the end of the first actuation stroke, and

[0040] [Fig. 11] Figures 11 and 12 are detailed cross-sectional views of two alternative embodiments of the dose fractionation means according to the second embodiment.

[0041] [Fig. 12] cf [Fig. 11]

[0042] The terms "axial" and "radial" refer to the longitudinal central axis A of the dispensing device shown in [Fig.2].

[0043] The dispensing device comprises a reservoir 10 of the syringe type and a piston 20 sliding in said reservoir between a retracted position and a depressed position. The reservoir 10 can be fixed in a body 1. Alternatively, the reservoir 10 can be molded in a single piece with said body 1.

[0044] The reservoir 10 or the body 1 can receive a dispensing head, which can comprise a needle or a cannula in the case of an injection device, or a nasal or oral dispensing head, in particular a spray head for generating a spray.

[0045] Optionally, a sampling needle may be fixed to the reservoir 10, and a spray head provided with a dispensing orifice may be removably assembled on said sampling needle. In the sampling phase, the spray head is removed to expose the sampling needle which can then be inserted into a container containing fluid product to be drawn into the reservoir 10 through said sampling needle. After this sampling phase, the spray head is replaced, around said sampling needle, which makes it possible to dispense the fluid product contained in the reservoir 10 in the form of a spray, for example for a nasal spray.

[0046] The piston 20 comprises a piston element 22 secured to an actuating rod 21 actuated by the user at the time of dispensing, in particular by manually pressing on an end collar 23 of the piston rod 21. The piston element 22 may be made in one piece with the piston rod 21, for example by molding a plastic material, or form a separate element fixed, for example overmolded, to said piston rod. In this case, the piston element 22 may be made of a material different from the piston rod 21.

[0047] The body 1 comprises an upper part 11 intended to receive or form the reservoir 10 and a lower part 12 intended to cooperate with the actuating rod 21 of the piston 20. A radial flange 13 forming a finger rest is advantageously provided between said first and second parts 11, 12 of the body 1.

[0048] To distribute the contents of the reservoir 10 in several doses, in particular two doses, the device comprises dose splitting means adapted to split the actuation stroke of the piston 20 into several partial strokes, in particular two partial strokes.

[0049] Figures 3a to 3d illustrate state-of-the-art splitting means, in particular as described in document WO2023047067A1.

[0050] In this implementation, the lower part 12 of the body 1 comprises a first axial groove 15 which cooperates with a lug 25 of said piston rod 21. This lug 25 projects radially outwards and slides in said first groove 15 during the first actuation of said dispensing device. Advantageously, two first axial grooves 15 diametrically opposed may be provided, as well as two diametrically opposed lugs 25.

[0051] The first axial groove 15 comprises a shoulder 17 forming a dose-splitting means. Thus, the first axial groove 15 extends axially by a second axial groove 16 offset laterally or angularly. Thus, when the piston 20 is actuated to dispense the fluid contained in the reservoir 10, the lug 25 of the piston 20 slides axially in the first axial groove 15, and this lug 25 is stopped by said shoulder 17. This defines the first dose, by cutting the actuation stroke of the piston 20 in the reservoir 10. The user must then turn the piston 20 slightly to bring the lug 25 opposite the second axial groove 16 in order to be able to dispense the second dose. Of course, the invention also applies to devices containing more than two doses, for example three or four doses.

[0052] Advantageously, the first and second axial grooves 15, 16 comprise energy accumulation means, such as for example bosses 18, 19, which can cooperate with the lug 25 at the start of each actuation stroke to force the user to exert at least sufficient force on the piston 20 to overcome the resistance generated by said energy accumulation means. When this force is reached, the lug 25 passes beyond said energy accumulation means, which suddenly releases the energy stored in the user's hand, thus ensuring that the actuation stroke, in particular the half-actuation stroke in the example shown of a bidose, is completed in full. Of course, these energy accumulation means can be made in any suitable manner, and the bosses 18, 19 are only one example of an advantageous embodiment.For example, it is possible to envisage constrictions or breakable bridges in said grooves 15, 16.

[0053] According to the invention, the device comprises biasing means for, at the end of the first actuation stroke, biasing said lug 25 away from said second groove part 16.

[0054] This prevents the lug 25 from accidentally passing directly into the second groove 16, and thus guarantees reliable dose splitting.

[0055] Figures 1, 2 and 4a to 7b illustrate a first advantageous embodiment.

[0056] In this first embodiment, the stressing means comprise a radial projection 40 secured to the piston rod 21, which, when the lug 25 approaches the shoulder 17, will cooperate with a projecting rib 60 of the body 1, said projecting rib 60 comprising an inclined front end edge 61. Optionally, two diametrically opposite radial projections 40 may be provided, as well as two diametrically opposite projecting ribs 60.

[0057] The radial projection 40, which advantageously has a rounded axial edge, will cooperate with said inclined front end edge 61, which will stress it laterally on the side of the inclination, as visible in Figures 4b and 5b.

[0058] The radial projection 40 and the lug 25 being integral with the same part, in this case the piston rod 21, the lug 25 is also stressed laterally on one side.

[0059] The inclination of the inclined front end edge 61 is thus chosen to urge the lug 25 laterally away from the second axial groove 16, which makes it possible to avoid the risk of unwanted simultaneous actuation of the first and second doses.

[0060] As can be seen in Figures 6a and 6b, when the user wishes to dispense the second dose, he must move the piston rod in rotation to bring the lug 25 opposite the second axial groove 16. This rotational movement generates a slight displacement of the piston rod axially upwards to allow the passage of the radial projection 40 over the rib 60.

[0061] It should be noted that in this first embodiment, the radial projection 40 could alternatively be integral with the body 1, and the projecting rib 60 could be formed on the piston rod 21.

[0062] Figures 8 to 12 illustrate a second embodiment.

[0063] In this second embodiment, the stressing means are formed directly on the lug 25 and on the shoulder 17.

[0064] Thus, the shoulder 17 comprises an inclined part 17a, the lug 25 comprising a complementary profile, with an inclined surface 25a, which at the end of the first stroke cooperates with the inclined part 17a of the shoulder.

[0065] Advantageously, the shoulder also comprises a flat part 17b and the lug 25 also comprises a flat surface 25b, which cooperates with the flat part 17b of the shoulder.

[0066] In the example of [Fig. 1 1], the inclined part 17a of the shoulder is located on the outside, on the side opposite the second axial groove 16, whereas in the example of [Fig. 12], it is the opposite, the inclined part 17a is located on the inside.

[0067] It should be noted that the flat part 17b is not obligatory, the shoulder 17 being able to be inclined in its entirety.

[0068] When the lug 25 approaches the shoulder 17, at the end of the first actuation stroke, the inclined part 17a of the shoulder will force the lug 25 away from the second axial groove 16.

[0069] When the user wishes to dispense the second dose, he must move the piston rod in rotation to bring the lug 25 opposite the second axial groove 16. This rotational movement generates a slight displacement of the piston rod axially upwards to allow the lug 25 to pass over the inclined portion 17a of the shoulder 17.

[0070] It should be noted that the invention has been described above with reference to two embodiments in which the lug 25 is integral with the piston rod 21 and the grooves 15, 16 are formed in the body 1. Alternatively, the lug 25 could be integral with the body 1 and the grooves 15, 16 could be formed in the piston rod 21.

[0071] Although the present invention has been described with reference to several embodiments and variants thereof, it is understood that a person skilled in the art can make any useful modifications thereto, without departing from the scope of the present invention as defined by the appended claims.

Claims

Claims

1. A fluid product dispensing device comprising a body (1) receiving a reservoir (10) intended to contain a fluid product and a piston (20) sliding in said reservoir (10), said body (1) and said piston (20) comprising dose-splitting means (15, 16, 17; 25) for separating the fluid product to be dispensed contained in said reservoir (10) into at least two doses intended to be dispensed during several successive actuations of said device, said dose-splitting means comprising at least one lug (25), integral with one of said piston (20) and said body (1), sliding in at least one first axial groove (15), integral with the other of said piston (20) and said body (1), each first groove (15) comprising a shoulder (17) for locking said respective lug (25) after dispensing the first dose of fluid product,said shoulder (17) separating said first axial groove (15) from a second axial groove (16) parallel and laterally offset from said first axial groove (15), said lug (25) passing from said first axial groove (15) to said second axial groove (16) by rotation of said lug (25) relative to said axial grooves (15, 16), said device comprising biasing means (40, 60) for, at the end of the actuation stroke, biasing said lug (25) laterally away from said second groove portion (16), characterized in that said biasing means comprise at least one radial projection (40) integral with one of said piston rod (21) and said body (1), which, when said lug (25) approaches said shoulder (17), cooperates with a corresponding projecting rib (60) integral with the other of said piston rod (21) and said body (1),said projecting rib (60) having an inclined front end edge (61).,

2. Device according to claim 1, wherein each radial projection (40) has a rounded axial edge which cooperates with said corresponding inclined front end edge (61).

3. Device according to any one of the preceding claims, wherein said body (1) and / or said piston (20) comprises energy accumulation means (18, 19) requiring the application of at least one predetermined force to enable the spraying of said fluid product to be dispensed.

4. Device according to any one of the preceding claims, wherein said at least one lug (25) is integral with said piston (20) and said at least one first axial groove (15) is formed in said body (1).

5. Device according to any one of claims 1 to 3, wherein said at least one lug (25) is integral with said body (1) and said at least one first axial groove (15) is formed in said piston (20).

6. A device according to any preceding claim, wherein said at least one radial projection (40) is integral with said piston rod (21) and said at least one projecting rib (60) is formed in said body (1).

7. Device according to any one of claims 1 to 5, wherein said at least one radial projection (40) is integral with said body (1) and said at least one projecting rib (60) is formed in said piston rod (21). * * *