IP Library › Granted Patent US 12,559,289
Granted Patent B2
US 12,559,289 · App. 17/925,742 · Granted Feb 24, 2026

Aroma container

Inventors: Magdalena Jüngst (Munich, DE); Jannis Koppitz (Munich, DE); Tim Jäger (Munich, DE); Fabian Schlang (Munich, DE)
Assignee: air up group GmbH
B65D51/2892A47G19/2205A61L9/12B65D43/0231A47G2400/04A61L2209/133B65D2203/12B65D2543/00092B65D2543/00537
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Quick Facts
Patent No.
US 12,559,289
App. No.
17/925,742
Granted
Feb 24, 2026
Kind
B2
Abstract

An aroma container for adding an aroma substance to an air flow flowing through the aroma container. The aroma container comprises an upper wall, a lower wall and at least one side wall, which surround an aroma chamber. The container includes at least one air inlet opening into the aroma chamber, and at least one air outlet opening out of the aroma chamber, wherein a carrier substance for the aroma substance is present in the aroma chamber. A head space may be provided between the carrier substance and the side of the upper wall facing the aroma chamber. The carrier substance comprises a nonwoven material, wherein the air permeability L of the nonwoven material at a differential pressure of 100 Pa is L≥200 l/(m 2 ·s), and preferably between 220 l/(m 2 ·s) and 280 l/(m 2 ·s).

Claims (58)

1 . An aroma container configured for adding an aroma substance to an air flow flowing through the aroma container for retronasal perception, the aroma container comprising:

an upper wall, a lower wall and at least one side wall, which surround an aroma chamber,

at least one air inlet opening into the aroma chamber; and

at least one air outlet opening out of the aroma chamber; wherein

a carrier substance for the aroma substance is present in the aroma chamber; and

the carrier substance includes a nonwoven material; wherein

the air permeability L of the nonwoven material at a differential pressure of 100 Pa is L≥200 l/(m 2 ·s).

2 . The aroma container according to claim 1 , wherein a head space between the carrier substance and the side of the upper wall facing the aroma chamber is provided.

3 . The aroma container according to claim 1 , wherein the side wall includes a protruding region, at least in portions.

4 . The aroma container according to claim 3 , wherein the protruding region extends outwards, substantially perpendicularly to the side wall.

5 . The aroma container according to claim 1 , wherein the nonwoven material has a specific flow resistance of less than 500 Pa·s/m.

6 . The aroma container according to claim 5 , wherein the nonwoven material has a specific flow resistance of less than 400 Pa·s/m.

7 . The aroma container according to claim 6 , wherein the nonwoven material has a specific flow resistance of approximately 380 Pa·s/m.

8 . The aroma container according to claim 1 , wherein

the nonwoven material has an area density of less than 1500 g/m 2 ; and

the nonwoven material has a density of less than 300 kg/m 3 .

9 . The aroma container according to claim 8 , wherein the nonwoven material has an area density of approximately 1000 g/m 2 ; and a density of approximately 200 kg/m 3 .

10 . The aroma container according to claim 1 ,

wherein the thickness of the carrier substance is at least 50% of the height between the upper wall of the aroma container and the lower wall of the aroma container.

11 . The aroma container according to claim 10 , wherein the thickness of the carrier substance is at least 80% of the height between the upper wall of the aroma container and the lower wall of the aroma container.

12 . The aroma container according to claim 1 ,

wherein the at least one air inlet opening has a diameter of at least 0.2 mm or a different geometry having an equivalent minimum opening cross-section.

13 . The aroma container according to claim 12 , wherein the at least one air inlet opening has a diameter of no more than 20 mm.

14 . The aroma container according to claim 1 ,

wherein porosity of the nonwoven material is between 70% and 93.

15 . The aroma container according to claim 14 , wherein the porosity of the nonwoven material is between 70% and 80%.

16 . The aroma container according to claim 1 , wherein the Reynolds number Re in the air inlet region of the aroma container is greater than 2000;

wherein the Reynolds number is defined as Re=(w·d)/v, with the kinematic viscosity of air v [m 2 /s], the diameter d [m] of the air inlet opening, and the flow speed w [m/s] upon inflow into the aroma container at an averaged volume flow between 250 ml/min and 600 ml/min.

17 . The aroma container according to claim 1 , wherein the aroma container has a substantially annular geometry comprising an outer side wall and an inner side wall.

18 . The aroma container according to claim 17 , wherein the inner side wall surrounds a space, the cross-sectional area of which is of a geometry that deviates from a circular shape.

19 . The aroma container according to claim 18 , wherein the geometry of the inner side wall allows the aroma container to remain stationary in response to a rotational movement of a corresponding cover element.

20 . The aroma container according to claim 19 , wherein the space surrounded by the inner side wall has a substantially drop-shaped cross-sectional area.

21 . The aroma container according to claim 18 , wherein

for the ratio between a maximum extension L max of the cross-sectional area of the space surrounded by the inner side wall, and the minimum extension L min of the cross-sectional area of the space surrounded by the inner side wall, the following applies: 1.05≤L max /L min ≤1.15.

22 . The aroma container according to claim 21 , wherein L max /L min is approximately 1.1.

23 . The aroma container according to claim 18 , further comprising slide ribs in the region of the inner side wall.

24 . The aroma container according to claim 1 , wherein

the air inlet opening is located in the region of the lower wall of the aroma container; and the air outlet opening is arranged in a side wall of the aroma container.

25 . The aroma container according to claim 24 , wherein the air outlet opening is arranged in an inner side wall in the case of a substantially annular geometry of the aroma container having an outer side wall and an inner side wall.

26 . The aroma container according to claim 1 , wherein

the aroma container comprises a lower shell and an upper shell that is connected to the lower shell, wherein the air outlet opening is arranged in a connection region between the lower shell and upper shell.

27 . The aroma container according to claim 1 , wherein the air permeability L of the nonwoven material at a differential pressure of 100 Pa is between 220 l/(m 2 ·s) and 280 l/(m 2 ·s).

28 . A drinking device, comprising

an aroma container according to claim 1 ; and

a head part, to which the aroma container is connectable such that at least a part of the aroma container is movable from an activated position into a non-activated position; wherein

in the activated position, the air outlet opening is in flow connection with a transport channel for drinking liquid in the drinking device; and

in the non-activated position, there is no flow connection between the air outlet opening and the transport channel for drinking liquid.

29 . The drinking device according to claim 28 , wherein

the drinking device comprises a removable cover which is configured to be fitted to the head part of the drinking device; and

the drinking device comprises at least one force-exerting element configured to move the aroma container from the non-activated position into the activated position when the cover is removed.

30 . The drinking device according to claim 29 , wherein

the at least one force-exerting element includes an entrainment surface on the cover configured to rotate the aroma container from the non-activated position into the activated position in the case of a rotation of the cover when the cover is unscrewed.

31 . The drinking device according to claim 29 , wherein

the side wall of the aroma container includes a protruding region, at least in portions, which extends outwards; and

the at least one force-exerting element includes a hook-shaped element on the cover, which is arranged and designed so as to encompass the protrusion in a form-fitting manner during removal of the cover, and to move the aroma container from the non-activated position into the activated position.

32 . The drinking device according to claim 29 , wherein

the force-exerting element includes a resilient preload element which is arranged between the aroma container and the head part of the drinking device, and preloads the aroma container into the activated position when the cover is removed.

33 . The drinking device according to claim 28 , wherein the air inlet opening is substantially sealed in the non-activated position.

Assignments (1)
CONFIRMATORY ASSIGNMENT Recorded Jun 15, 2023
From: JÜNGST, MAGDALENA; KOPPITZ, JANNIS; JÄGER, TIM; SCHLANG, FABIAN
To: AIR UP GROUP GMBH
Reel/Frame 064004/0907 →
Continuity (1)
Related Publication 20230312197A1 · Oct 5, 2023
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