TECHNICAL FIELD
[0001] This invention is on the storage chamber for secondary material. In detail, this
invention is on the structure of storage chamber required for effectively mixing the
concentrate and water or concentrate and general beverage or granule and water or
powder and water and so on.
[0002] This invention is on the formed pressure by mixing secondary material which leads
to generating inside pressure such as carbonic acid or air pressure, which shall be
treated effectively.
Background Technologies
[0003] Additional space is required in the container for mixing the powder or concentrate
with the liquid beverage stored in the container.
[0005] However, this structure has not been popularized because it shows some problems in
terms of function, mixing efficiency, barrier of storage chamber, adaptability to
production line and use convenience.
[0006] The technology (
PCT/EP2002/004523:2002. 01. 17) invented or developed by a joint venture organized among an American company, German
company and Austrian company and another technology invented or developed by a Japanese
company are highlighted in the global market. However, the technology invented or
developed by a Japanese company is commercialized for the first time in the world.
[0007] However, the technology (
JP-P-2001-00185428: 2001.06.19.) invented or developed by a Japanese company shows a problem. In other words, the
part forming a part of opening section drops in the container and children may swallow
this dropped part, so the container neck of new form focused on preventing the separation
of exhaust device is developed. However, this neck is inapplicable to the existing
container, so this new container neck has some problem as well.
[0008] This invention is directly related to the invention (
US Patent No. 6,620,444 and
US 2001/0001196) invented or developed by an American company. In other words, secondary material
is in the container and when the closure is opened, it is forced to be mixed by the
inside pressure. In order to prevent the above storage chamber of secondary material
from coming out of the container, additional preventing measure is required. Technologically,
can container is appropriate to be used, which is a problem.
[0009] The
US Patent No. 6,620,444 have some difficulties to put into the storage chamber and control it. Occasionally,
the technology to fix the chamber on the bottom of the container is used.
Detailed Descriptions of Invention
Technical Problems
[0010] The basic purpose of this invention is to effectively mix contents pressured in the
container and secondary material.
[0011] Another purpose of this invention is to prevent users from swallowing storage chamber
of secondary material which is separated from the container at the same time when
the closure is opened and secondary material is mixed in the container.
How to Technically Solve the Problems
[0012] Storage chamber for secondary material, invented or developed by this invention under
the intention of accomplishing above goals, consists of a storage chamber according
to the appended claims 1 and 2. The content stored in the receiving section of this
storage chamber is opened when the operating section moves up and down and then is
dropped and mixed with contents stored in the container.
[0013] The structure for mixing the secondary materials developed or invented by this invention
is adapted to be assembled to a container. Above storage for mixing the secondary
materials consists of receiving section with storing space or body with receiving
section and operating section to drop and mix the contents stored in the storage space
mounted on the bottom of receiving section.
[0014] Above operating section is separated or distanced to some extent in the storage chamber
of secondary material to mix secondary materials. The operating section or some part
of receiving section is equipped with check valve.
[0015] Above storage chamber is combined to the container in which pressure is generated
and then the inside pressure in the container instantly moves to the storage space
of receiving section. Check valve is required to be formed to the one direction or
two-way direction to maintain regular pressure both in the container and the chamber.
Effects
[0016] This invention forms additional storage space separated from the main contents stored
in the container. Additional storage space is required to store powder, granules,
or concentrate. And then the pressure by simple operation to open the chamber makes
the pressure in the storage chamber of secondary material moderated. In the process,
the operating section is opened to mix secondary material which is easy and convenient.
[0017] Also, this invention in which receiving section is combined to the body is characterized
by preventing children from swallowing the chamber parts such as operating section
or the body.
BRIEF DESCRIPTION OF THE DRAWINGS
[0018]
The figure 1 shows the first operation of this invention.
The figure 2 and 3 show another operation of this invention.
The figure 4 thru 6 show another operation of this invention.
The figure 7 and 8 show another operation of this invention.
The figure 9 and 10 show another operation of this invention.
The figure 11 shows another operation of this invention.
The figure 12 thru 15 show another operation of this invention.
The figure 16 and 17 show another operation of this invention.
The figure 18, 19 and 21 show the other operation of this invention whereas 20 and
22 thru 27 show a related technology.
BEST MODE FOR CARRYING OUT THE INVENTION
[0019] The operation examples of this invention recommended according to enclosed drawings
or figures are as follows.
[0020] The figure 1 shows a recommended operation example of this invention. The storage
chamber of this invention (1) is recommended to be assembled to the container by the
screws or one-touch method or adhesives. The screws are more desirable for the safety.
[0021] Above storage chamber of secondary material (1) is assembled to the neck of the container
(100). Inside the container (100), carbonic acid gas or air pressure is desirable
to be enough to generate swelling pressure.
[0022] When the chamber (1) is combined to above container (100), the pressure in the container
(100) (desirably pressured air) moves to storing space (4) of the receiving section
(3) in the chamber (1), and at the same time the pressure in the container (100) and
that in the storing space (4) keeps balance which suspend the movement of pressured
air.
[0023] Above chamber of this invention (1) comprises check valve (6) to seek the method
for the pressure in the storing space (4) to move. Above check valve (6) may be formed
in the operating section (5) closing the storing space (4), or in the arbitrary point
of the receiving section (3).
[0024] Explaining the figure as a reference based on those above, the receiving section
(3) which has storing space (4) inside the body (2) is formed, and secondary material
is put into above storing space (4) and the operating section (5), that is, airtight
closure assembles the bottom part of above receiving section (3).
[0025] Also, above operating section (5) is structured to be separated or distanced to some
extent from the receiving section (3) by pressure at which the contents in the storing
space (4) can be dropped inside the container (100).
[0026] In the above storing space (4), check valve (6) to enable air to move is attached
to the some arbitrary part of operating section (5) or receiving section (3) as well
as the protection cover (7) with dropping space for secondary material is formed to
prevent above operating section (5) from falling in the container (100) after separation.
[0027] The chamber of this invention (1), as shown in the figure 1, has both the container
(100) and storing space (4) injected with pressured air. In this state, when the chamber
(1) is opened, the inside pressure of the container (100) is removed at the moment.
And then the operating section (5) cannot help but be opened not withstanding the
pressure in the storing space (4) because of the remove of the counter-pressure of
the pressured air in the storing space (4).
[0028] In the above process, secondary material in the storing space (4) is dropped and
mixed in the container (100) but the operating section (5) is still attached to the
body (2) thanks to the bottom protection cover (7).
[0029] In the process to open the chamber (1), the pressure in the container (100) is removed
at the moment so that the pressured air in the storing space (4) separates the operating
section (5) regardless of the operation of check valve (6).
[0030] Therefore, it is desirable for the slow movement of the pressured air amount to storing
space (4) along check valve (6) to be designed, as well as for the operating section
(5) and check valve (6) to be united.
[0031] As well, if the operating section (5) is made of silicon, check valve (6) is desirable
to be cut on its certain part or be holed by a sharp metal with needle shape and to
be expanded instantly in order to move the air.
[0032] As another operating example, the figure 2 and 3 show the variation of the shape
of receiving section (3) and operating section (5) but the process of the invention
is one and the same. The structure to receive protection cover (7) outside the receiving
section (3) differs as well as it is possible to change the design of the position
of check valve (6).
[0033] The receiving section (3) and the body (2) can be separated in one and the figure
2 shows the various assembling examples of protection cover (7).
[0034] As another operating example, the figure 4 thru 6 show that the receiving section
(3) is possibly to be attached to the lower side of soft packing (10) mounted on the
bottom of the body (2). The operating section (5) to close the storing space (4) is
overturned by the pressure and is structured to drop secondary material.
[0035] When this invention is used, the chamber (1) is opened and at the same time the pressure
in the container (100) is removed and the operating section (5) is overturned by the
pressure in storing space (4), only to mix contents in the storing space (4) and that
in the container (100).
[0036] The figure 5 shows the possibility for receiving section (3) to be combined to the
lower part of the body (2). The figure 6 shows the attachment of receiving section
(3) to soft packing (10).
[0037] As another operating example, the figure 7 and 8 show the design that operating section
(5) adhered to the lower part of receiving section (3) is combined to receiving section
(3) thanks to fixing section (12). If the pressure in the container (100) is removed,
the pressure in storing space (4) pushes operating section (5) and drops secondary
material in the container (100). At that time, operating section (5) is closely attached
to the fixing section (12) by connecting section (13). The figure 7 shows the state
before airtight section (11) in the upper part of the globe is attached to the container
(100).
[0038] As another operating example, the figure 9 and 10 show the variation of operation
of operating section (5). Desirably, as shown in the figure 10, operating section
(5) moves to certain extent to the lower direction to open storing space (4). The
figure 10 shows the specific operation of the figure 8.
[0039] As another operating example, the figure 11 shows the possibility to variously change
designs of receiving section (3).
[0040] As another operating example, the figure 12 shows the design change of receiving
section (3) and various changes of operating section (5) which is moved to some extent
to the lower direction and is attached to receiving section (3). The enlarged picture
shows check valve (6) which can be equipped to one arbitrary side as explained before.
[0041] As another operating example, the figure 13 shows that the storage of this invention
(1) can discharge the mixed contents via the additional discharging route adhered
to the upper direction of the body (2).
[0042] As another operating example, the figure 14 shows that the storage (1) can be equipped
with check valve (6) in various ways.
[0043] As another operating example, the figure 15 shows that the operating section (5)
is structured to be opened by seesaw method.
[0044] As another operating example, the figure 16 is the specific representation of what
is mentioned in figure 4. The figure 17 shows that the pressured air is separately
in the second storing space (15) and then is structured to open operating section
(5). This process can be applied to the technological process of operating section
(5) and receiving section (3), mentioned ahead of the figure 17. The special point
is the advantage for the contents in the storing space (4) not to be exposed outside.
[0045] As another operating example, the figure 18 shows this invention is the variation
example of the figure 17. That is, the storage (1) is combined to the globe of the
container (100) and then the pressured air moves via hole-typed check valve (6). In
the process to open the storage (1), the operating section (5) goes down to the lower
direction and the content in the storing space (4) is dropped via the dropping space
(16) and is mixed.
[0046] As another operating example, the figure 19 shows the variation example of figure
18. In detail, the storage (1) is opened and operating section (5) withdraws to the
lower direction which leads to opening the storing space (4). The content in the storing
space (4) is dropped via a number of holes made in the side of operating section (5).
[0047] As another operating example, the figure 20 shows that the storage (1) mentioned
in the figure 20, 22 thru 27 is the technology which does not form part of the invention
but in which the pressured air is contained in the storing space (4) from the beginning.
The pressured air is once solid and then changes to air as the temperature goes up
to the ordinary one. In that process, even though pressure is generated in the storing
space (4), the pressure remains consistently in the container (100) so that the storing
space (4) of the storage (1) is not opened. To open the storage (1) means the operating
section (5) to be opened, however, as seen in the figure 20, it is designed that operating
section (5) overturns to the lower direction and the contents in storing space (4)
is dropped.
[0048] As another operating example, the figure 21 shows this invention is the variation
of the design of the figure 4. When opening the storage (1), the storing space (4)
is structured to be opened by overturning the operating section (5) to the back side.
It is characterized by additional discharge route attached to the upper part of the
body (2).
[0049] As another operating example, the figure 22 refers to the design changes of the figure
20. The operating section (5) is structured to be combined to the connecting section
(13).
[0050] As another operating example, the figure 23 shows the design change of figure 20.
The operating section (5) goes down to the lower direction and then is structured
not to move down any more at certain line.
[0051] As another operating example, the figure 24 involves in the design change of figure
20. The operating section (5) is opened and is structured not to be separated by the
upper part of the body (2).
[0052] As another operating example, the figure 25 shows the variation example of figure
20. The storing space (4, 15) is structured to be plural in receiving section (3).
[0053] As another operating example, the figure 26 is the variation example of figure 20.
The pressured air imposes pressure on thin membrane (17) and the membrane (17) is
destroyed by the bottom sharp operating section (5) in which contents in the storing
space (4) is dropped.
[0054] As another operating example, the figure 27 is the design change of figure 20. The
operating section (5) is structured to be opened by seesaw method.
INDUSTRIAL APPLICABILITY
[0055] This invention is on structure of storage chamber required for effectively mixing
the concentrate and water or concentrate and general beverage or granule and water
or powder and water. This invention may be used for diverse purposes to improve the
mixing efficiency of secondary materials such as beverages with pressured air including
carbonated drinks, highly concentrated beverages and so on.
1. Eine Vorratskammer (1) für Sekundärmaterial, die angepasst ist, auf einen Container
(100), der Druckluft beherbergt, montiert zu werden, umfassend
i) einen Körper (2) umfassend eine Eingangsstelle (3) mit einem Lagerraum (4), in
dem verschiedene Inhalte, wie z.B. Extrakt und Pulver, untergebracht sind, wobei die
Eingangsstelle (3) mit dem Körper (2) verbunden ist; und dadurch gekennzeichnet, dass sie ferner umfasst:
ii) einen Betriebsbereich (5), der dazu geeignet ist, die Inhalte, die in dem Lagerraum
(4) untergebracht sind, in den Container fallen zu lassen und zu mischen,
wobei ein Rückschlagventil (6) an dem Betriebsbereich (5) oder der Eingangsstelle
(3) vorgesehen ist,
die Vorratskammer (1) angepasst ist, auf einen Container (100), der Druckluft beherbergt,
montiert zu werden, sodass die Druckluft in dem Container (100) dazu geeignet ist,
sich über das Rückschlagventil (6) in den Lagerraum (4) der Vorratskammer (1) zu bewegen,
und, falls die Vorratskammer (1) geöffnet ist, die Druckluft im Lagerraum (4) dazu
geeignet ist, das Öffnen des Betriebsbereichs (5) zu erzwingen und das Fallen der
im Lagerraum (4) gespeicherten Inhalte und das Mischen mit den im Container (100)
gespeicherten Inhalten zu erzwingen.
2. Eine Vorratskammer (1) für Sekundärmaterial, die angepasst ist, an einen Container
(100), der Druckluft beherbergt, montiert zu werden, umfassend
i) einen Körper (2) enthaltend eine Eingangsstelle (3) mit
a) einem ersten Lagerraum (4), in dem verschiedene Inhalte, wie z.B. Extrakt und Pulver,
untergebracht sind, wobei die Eingangsstelle (3) mit dem Körper (2) verbunden ist;
und dadurch gekennzeichnet, dass sie ferner enthält:
b) einen zweiten Lagerraum (15); und
ii) einen Betriebsbereich (5), der dazu geeignet ist, die Inhalte, die in dem Lagerraum
(15) untergebracht sind, in den Container (100) fallen zu lassen und in ihn zu mischen,
wobei ein Rückschlagventil (6) an dem Betriebsbereich (5) oder der Eingangsstelle
(3) vorgesehen ist,
die Vorratskammer (1) angepasst ist, auf einen Container (100), der Druckluft beherbergt,
montiert zu werden, sodass die Druckluft in dem Container (100) dazu geeignet ist,
sich über das Rückschlagventil (6) in den zweiten Lagerraum (15) der Vorratskammer
(1) zu bewegen, und, falls die Vorratskammer (1) geöffnet ist, die Druckluft im zweiten
Lagerraum (15) dazu geeignet ist, das Öffnen des Betriebsbereichs (5) zu erzwingen
und das Fallen der im ersten und zweiten Lagerraum (4, 15) gespeicherten Inhalte und
das Mischen mit den im Container (100) gespeicherten Inhalten zu erzwingen.