The present invention relates to a method and structure for mixing different materials, and more particularly, to a method and structure for effectively mixing different materials such as powder and beverage.
Generally, a special space should be prepared in a beverage container to mix powder with beverage in the beverage container,
Korean utility model No. 118,156 discloses a structure for mixing different materials in the container. The structure is designed to mix the different materials in the container by pressing a punching pin. This has a problem in that the punching pin should be removed to drink the contents.
To solve this problem, a structure that is designed to allow contents stored in a special space to be dropt in the container when a cap coupled to the container is opened. This has a problem in that it is difficult to drink the beverage.
Therefore, the present invention has made in an effort to solve the above-described problems of the conventional art. It is an objective of the present invention to provide a structure and method for mixing different materials, which can improve the drinking convenience by providing a spout portion that is designed to vertically move.
It is another object of the present invention to provide a structure and method for mixing different materials, which is designed to allow contents stored in a special space to be dropt in the container upon opening a cap, thereby providing convenience in use.
It is another object of the present invention to provide a structure and method for mixing different materials, which is designed in a simple structure.
To achieve the above objects, the present invention provides a method for mixing a different material, the method comprising the steps of forming a space for storing a different material in a spout assembly coupled or attached on a spouting portion of a container; and allowing the different material to be mixed with content in the container by selectively opening the space by moving a cap of the spout assembly upward.
In another aspect of the present invention, there is provided a structure for mixing different materials, comprising a main body having a lip portion with an upper opening portion, the main body coupled to an opening of a container containing a first material; a spouting guide member movably inserted in the lip portion by a predetermined distance; a cap ascending and descending together with the spouting guide member, the cap being coupled to the main body; and a seal closer separately formed on a lower portion of the spouting guide member.
A structure and method for mixing different materials according to the present invention can improve the drinking convenience by providing a spout portion that is designed to vertically move.
In addition, a structure and method for mixing different materials can allow contents stored in a special space to be dropt in the container upon opening a cap, thereby providing convenience in use.
Furthermore, a structure and method for mixing different materials can be designed in a simple structure.
A preferred embodiment of the present invention will be described more in detail hereinafter in conjunction with the accompanying drawings.
FIGS. 1 to 3 are views of a structure for mixing different materials according to a first embodiment of the present invention. A spout assembly 1 is removably coupled on a container such as a beverage container.
The spout assembly 1 includes a main body 10 having a lip portion 11 having an opened upper end and a lower end coupled to the container, a spouting guide member 20 inserted in the lip portion to be vertically slidable 1, and a cap 30 coupled on an upper portion of the main body 10.
The spouting guide member 20 is provide at its inside with a space portion 21 in which a content such as powder is stored and at an upper-outer portion with a circumferential projection 22 that is coupled in a hook portion 31 formed on an inner surface of the cap 30 to move in the vertical direction together with the cap 30, and at a lower-outer portion with a fixing projection 24.
A seal closer 23 is coupled on a lower portion of the spouting guide member 20. The spouting guide member 20 is provided at an outer surface with an air introducing portion 25 in a vertical direction.
The seal closer 23 is removably coupled on the lower portion of the spouting guide member 20. However, the present invention is not limited to this case. That is, the seal closer 23 may be integrally formed on a lower end of the spouting guide member 20.
In the above-described spout assembly 1 formed of synthetic resin, the lip portion 11 is formed on a side of the main body 10 and the spouting guide member 20 having the space portion 21 having a predetermined volume and formed about the lip portion 11 is coupled inside the main body 10. In the space portion 21 of the spouting guide member 20, the content such as powder is stored and the seal closer 23 is tightly coupled on the lower portion of the spouting guide member 20.
As shown in
The ascending extent is limited by the fixing projection 24 formed on a lower-outer circumference of the spouting guide member 20.
The spouting guide member 20 is ascended and descended by the rotational operation of the cap 30. That is, in a state where the circumferential projection 22 formed on an upper-outer circumference of the spouting guide member 20 is coupled to the hook portion 31 formed on an inner surface of the cap 30, the spouting guide member 20 is ascended and descended together with the cap 30 by a predetermined distance. Before the cap 30 is separated from the main body 10, the circumferential projection 22 is separated from the hook portion 31. As a result, as shown in
In a state where the cap 30 is separated from the main body 10, the spouting guide member 20 is projected upward so that the user can easily drink the content.
Since the air introducing portion 25 is formed on the spouting guide member 20, the air is injected in the container while drinking, thereby making it easy for the user to easily drink the mixed content.
The spout assembly 1 of this embodiment can be varied in a variety of structures. For example, the spout assembly 1 can be coupled to the neck portion of the container by a screw coupling or a one-touch coupling.
A space portion 21 of the spouting guide member 20 can be varied in a variety of designs. For example, the lower portion of the space portion 21 may be widened or the lip portion 11 may be varied to be curved to a side by a folding portion.
In addition, the spouting guide member 20 may be designed to be projected upward so that it can be sealed on an upper portion of the container neck.
If required, another space S may be formed on a lower end of the lip portion 11 and an upper portion of the seal closer 230 so that the content can be stored in the space S, thereby storing the more amount of the content.
Accordingly, when the cap 30 moved upward, the spouting guide member 20 moves upward, and as shown in
A character is coupled on a top of the cap 30.
A movable member 105 provided with a storing portion 104 storing the different material is coupled on the upper portion of the main body 10. A cap 30 is coupled to the upper portion of the movable member 105.
A seal member 103 is inserted in a lower portion of the storing portion 104 and a spout member 106 is inserted in an upper portion of the movable member 105. An air introducing portion is formed on an outer surface of the spout member 106 in a longitudinal direction.
An outer hook step 104a is projected on an outer surface of the storing member 104. An inner hook step 10a on which the outer hook step 104a is hooked is formed on an inner surface of the main body 10.
In this embodiment, when the movable member 105 moves upward by a screwing operation, the storing portion 104 is separated from the seal member 103 inserted in a lower portion of the storing portion 104, thereby allowing the different material to be dropt in the opening portion 102. After this, when the cap 30 is separated from the movable member 105, the mixed material in the container is exhausted through the opening portion 102 and the spout member 106.
At this point, the upward movement of the movable member 105 is limited by the inner hook step 10a formed on the inner surface of the main body 10, which is hooked on the outer hook step 104a formed on the outer surface of the storing portion 104.
As a plurality of air introducing portions 107 are formed on the outer surface of the spout member 106 in the longitudinal direction, outer air is introduced into the container 100 when the mixed material is exhausted.
A spouting guide member 20 is elevatably inserted in the lip portion 11. A seal member 114 is formed on a lower portion of the spouting guide member 20 to selectively seal the lower portion of the inner closer 112.
A cap 30 is coupled on an upper-outer portion of the lip portion 11 and a fixing portion 114 for fixing a character C is formed on an upper portion of the cap 30.
The spouting guide member 20 and the inner closer 112 are communicable by an introducing hole 113 to store the different material.
Accordingly, when the cap 30 moves upward, the spouting guide member 20 moves together, thereby opening a center of the inner closer by a seal portion 114 to allow the different material to be dropt into the container. In drinking, the mixed material introduced into the space portion 111 is directed to the spouting guide member 20 through the introducing hole 113.
The inner closer 120 extends downward to define a space portion 121 storing a different material. The inner closer 120 is provided at a center with a dropping portion 122 in which a packing 123 is inserted in the dropping portion 122 to allow a seal surface 124 formed on a lower portion of the spouting guide member 20 to tightly contact, thereby preventing the different material from being inadvertently dropt.
The spouting guide member 20 is provided at a lower portion with lo an introducing hole 125 allowing the mixed material to be easily exhausted out of the container.
The inner closer 120 includes an upper seal portion 126 contacting a neck portion of the container and a side seal portion 127 contacting an inner surface of the neck portion.
The spouting guide member 20 is provided at an outer surface with a hook step 128 being limited in its upward movement.
A cap 30 is coupled to an outer surface of the lip portion 11 of the main body 10 and the spouting guide member 20 inserted in the lip portion 11 moves upward together with the cap 30 by a predetermined distance.
The packing 123 is installed on the dropping portion 122 to tightly contact the seal surface 124. The packing 123 may be formed in a check valve type that is convex downward and inserted to be opened by pressure sucked through the spouting guide member 20 or by the pressure increase in the container. Alternatively, as shown in
Accordingly, when the cap 30 moves by the screwing operation, the spouting guide member 20 moves upward, thereby the seal surface 124 is spaced away from the packing 123, thereby opening the dropping portion 122 to allow the different material to be dropt in the container. Accordingly, the content mixed with the different material in the container is exhausted through the spouting guide member 20 via the introducing hole 125 when using the content.
The spouting guide member 20 is sealed at its lower portion and is provided with a communication hole 130 communicating with the inside of the inner closer 120. A seal portion 131 extending from the spouting guide member 20 is formed inside a dropping portion 122 formed on a lower portion of the inner closer 120. A packing 132 is installed on an outer surface of the seal portion 131, thereby making it possible to store and release the different material.
As shown in
Accordingly, the seal is realized by the packing 132 installed between the dropping portion 122 of the inner closer 120 and the seal portion 131 in a state where the different material is stored in the spouting guiding member 20 and the inner closer 120. By allowing the inner projection 133 formed on the cap 30 to tightly contact the upper-outer surface of the lip portion 11, the perfect seal is realized through the cap 30.
At this point, when the cap 30 coupled to the lip portion 11 of the main body 10 moves upward by a screwing operation, the spouting guide member 20 moves upward, and at the same time, the seal portion 131 and the packing 132 are separated from the dropping portion 122 of the inner closer 120. As a result, the different material in the spouting guide member 20 is exhausted into the inner closer 120 through the exhaust hole 13 and dropt into the container 100 through the dropping portion 122. The different material in the inner closer 120 is dropt through the dropping portion 122.
The mixed content in the container 100 is directed into the inner closer 120 through the dropping portion 122 and further directed to the spouting guide member 20 through the exhaust hole 130 so that the user drinks the content.
Accordingly, when the cap 30 moves upward by the screwing operation, the spouting guide member 20 is inserted in the seal member 141 to provide a seal.
Accordingly, when the spouting guide member 20 moves upward by the upward operation of the cap 30, the seal member 151 coupled on a lower portion of the spouting guide member 20 and supported by the guide steps 150 is separated and dropt. By this, the lower portion of the spouting guide member 20 is opened so that the different material can be dropt in the container 100.
The a plurality of sealing plate removing portion 162 are formed on an inner-lower portion of the main body 10.
It is not limited that the sealing plate 160 is horizontally formed. For example, as shown in
Accordingly, when a cap 30 moves upward to move a spouting guide member 20 upward, the seal plate 160 is separated by the seal plate removing portion 162 to open an lower portion of the spouting guide member 20, thereby allowing the different material to be dropt in the container.
When the seal plate 160 is inclined, it can be more easily separated from the spouting guide member 20.
As described above, the present invention can be applied all kinds of container storing the liquid material. Particularly, a different material is stored in the container and mixed with the liquid material so that it can be easily used for a user.
Number | Date | Country | Kind |
---|---|---|---|
10-2003-0080378 | Nov 2003 | KR | national |
10-2004-0004030 | Jan 2004 | KR | national |
10-2004-0004884 | Jan 2004 | KR | national |
10-2004-0004883 | Jan 2004 | KR | national |
10-2004-0023921 | Apr 2004 | KR | national |
10-2004-0023923 | Apr 2004 | KR | national |
10-2004-0027306 | Apr 2004 | KR | national |
10-2004-0028841 | Apr 2004 | KR | national |
10-2004-0060997 | Jul 2004 | KR | national |
10-2004-0064912 | Aug 2004 | KR | national |
10-2004-0074774 | Sep 2004 | KR | national |
10-2004-0079737 | Sep 2004 | KR | national |
10-2004-0086931 | Oct 2004 | KR | national |
10-2004-0086929 | Oct 2004 | KR | national |
10-2004-00869930 | Oct 2004 | KR | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/KR04/02842 | 11/5/2004 | WO | 6/22/2006 |