Plug and container provided with same
By designing a stopper that includes a cap component and a foreign matter separation component, and utilizing a tight-fitting membrane and filter structure, the problem of inconvenient foreign matter separation in containers is solved, achieving convenient foreign matter filtration and stable storage of contents, thus improving user experience and shelf life.
Patent Information
- Application Number
- CN202380095994.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2023-04-27
- Publication Date
- 2025-11-04
AI Technical Summary
Foreign objects in existing containers are difficult to separate effectively, which causes inconvenience to users and poses a risk of foreign objects mixing into the drinking contents, affecting user satisfaction and the shelf life of the contents.
A stopper was designed, comprising a cap component and a foreign matter separation component. By utilizing a tight-fitting membrane and filter structure, foreign matter can be separated and filtered, ensuring that the contents are stably stored in the container and convenient for drinking.
Foreign objects are filtered out by the filter screen, and the foreign object separation component is stably positioned to prevent the contents from mixing, improving user convenience and the shelf life of the contents, and ensuring that foreign objects can be separated without additional operation when drinking.
Smart Images

Figure CN120897879A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present invention relates to a plug and a container provided with the same, and more particularly, to a plug for removing foreign matter or separating heterogeneous substances and a container provided with the same. BACKGROUND
[0002] Containers (e.g., bottles) for containing various beverages or seasonings, etc. are widely used in modern life.
[0003] When the container is used as a container for containing tea or the like brewed with tea leaves, foreign matter such as tea leaves that has not been completely removed can exist in the content contained in the container.
[0004] In this case, when the user ingests the content in the container, there is inconvenience in that the foreign matter needs to be picked out, and depending on the situation, there can be a case in which the foreign matter is ingested together with the content. SUMMARY
[0005] PROBLEMS TO BE SOLVED BY THE INVENTION
[0006] The problem to be solved by the present invention is to make the separation of heterogeneous substances contained in the container easy to improve the satisfaction of the user.
[0007] Another problem to be solved by the present invention is to simplify the structure of the plug for separating foreign matter to improve the convenience of manufacturing.
[0008] MEANS FOR SOLVING THE PROBLEMS
[0009] The plug according to one aspect of the present invention includes a cap member,
[0010] combined with a container body for containing a first content in a liquid state and a second content in a different state from the first content and provided with a first coupling portion, the cap member including a tight film extending from an upper portion to a lower side, and a heterogeneous separation member provided with a second coupling portion and a filter mesh, the second coupling portion being coupled with the first coupling portion of the container body and being adhered to the tight film so that the second coupling portion is tightly adhered to the container body side by the tight film, the filter mesh being connected to the second coupling portion and being used to block the discharge of the second content.
[0011] The plug according to another aspect of the present invention includes:
[0012] A cap member combined with a container body for containing a first content in a liquid state and provided with a first coupling portion, the cap member including a close contact film extending downward from a lower portion, and a heterogeneous separation member provided with a second coupling portion and a placement portion, the second coupling portion being coupled to the first coupling portion of the container body and adhered to the close contact film so that the second coupling portion is close contacted to the container body side by the close contact film, the placement portion being connected to the second coupling portion and separating a second content in a different state from the first content.
[0013] The second coupling portion can be sequentially provided with a first coupling protrusion, a coupling groove, and a second coupling protrusion from an upper to a lower direction, the first coupling protrusion being contactable with the close contact film so that the first coupling protrusion is close contacted to the first coupling portion side by the close contact film.
[0014] The heterogeneous separation member can include a placement portion provided with the second content, and a plurality of column portions protruding upward from the placement portion to be connected to the second coupling portion, and having a through hole between adjacent two column portions.
[0015] The cap member can further include a blocking film provided separately from the close contact film and extending downward from a lower portion, and the heterogeneous separation member can further include a coupling insertion groove portion located at a position lower than the placement portion between the placement portion and the column portion, and having a groove into which the blocking film is inserted.
[0016] A container according to still another feature of the present application includes a container body for containing a first content in a liquid state and a second content in a different state from the first content, and having a first coupling portion, and a plug combined with the container body, the plug including a cap member combined with the container body and including a close contact film extending downward from an upper portion, and a heterogeneous separation member provided with a second coupling portion and a filter mesh, the second coupling portion being coupled to the first coupling portion of the container body and adhered to the close contact film so that the second coupling portion is close contacted to the container body by the close contact film, the filter mesh being connected to the second coupling portion and being used to block discharge of the second content.
[0017] A container according to still another feature of the present application includes a container body for containing a first content in a liquid state, the container body being provided with a first coupling portion; and a plug coupled with the container body, the plug including a cap member including a tight film extending downward from a lower portion, the cap member being coupled with the container body, and a heterogeneous separation member provided with a second coupling portion and a placement portion, the second coupling portion being coupled with the first coupling portion of the container body and being adhered to the tight film so as to be tightly adhered to the container body side by the tight film, the placement portion being connected to the second coupling portion and separating a second content in a different state from the first content.
[0018] The first coupling portion can be provided in order from the top downward with a first coupling protrusion, a coupling groove, and a second coupling protrusion, and the second coupling portion can have a first coupling groove, a coupling protrusion, and a second coupling groove coupled with the first coupling protrusion, the coupling groove, and the second coupling protrusion, respectively, and the first coupling groove of the second coupling portion can be in contact with the tight film so as to be tightly adhered to the first coupling protrusion side of the first coupling portion by the tight film.
[0019] The heterogeneous separation member can further include a plurality of column portions protruding upward from the placement portion so as to be connected with the second coupling portion, and through-holes between adjacent two of the column portions.
[0020] The cap member can further include a blocking film disposed apart from the tight film and extending downward from a lower portion, and the heterogeneous separation member can further include a coupling insertion groove portion located at a position lower than the placement portion between the placement portion and the column portions, and the coupling insertion groove portion can have a groove into which the blocking film is inserted.
[0021] Inventive Effects
[0022] According to the above feature, a filter screen can be used to filter foreign matter such as tea leaves contained in the container body, so that a user can conveniently drink the contents contained in the container body without an additional filter screen.
[0023] In addition, since the heterogeneous separation member is tightly adhered by the tight film of the cap member, it can be stably positioned at the injection inlet portion of the container body.
[0024] Further, since the contents in the container body and the contents different therefrom are separately stored in the heterogeneous separation member, the contents in the container body and the contents in the heterogeneous separation member do not mix with each other during distribution and storage. Accordingly, the different kinds of contents contained in the container body and the plug, respectively, can be stored without mixing and without deterioration, so that the shelf life of the contents can be increased.
[0025] In addition, when the cap member is separated from the container body in order to take out the contents contained in the container body, the heterogeneous separation member remains in the container body, so that the contents in the container body can be taken out together with the contents contained in the heterogeneous separation member. Therefore, without any action for taking out the contents stored in the heterogeneous separation member, the user can take out the contents in the container body and the contents in the plug at the same time by performing only the action of opening the plug, thereby improving the convenience of the user. BRIEF DESCRIPTION OF DRAWINGS
[0026] Figure 1 is a sectional view of a container according to an embodiment of the present application.
[0027] Figure 2 is a sectional view of a container according to another embodiment of the present application.
[0028] Figure 3 is a bottom perspective view of a plug of a container according to another embodiment of the present application.
[0029] Figure 4 is a sectional view of a plug of a container according to another embodiment of the present application.
[0030] Figure 5 and Figure 6 are perspective views of a heterogeneous separation member of a plug of a container according to another embodiment of the present application, which are taken from different directions from each other. DETAILED DESCRIPTION
[0031] Hereinafter, embodiments of the present application will be described in detail with reference to the accompanying drawings.
[0032] In explaining the present application, if it is judged that a specific description of a known technology or structure in the art can cause the gist of the present application to be unclear, a part of the description thereof will be omitted in the detailed description. In addition, the terms used in the present specification are used to appropriately describe embodiments of the present application, and can be changed according to the related person or custom, etc. Therefore, the definition of the terms should be made based on the content of the entire specification.
[0033] The professional terms used herein are used only to refer to specific embodiments, and are not intended to limit the present application. Unless explicitly defined otherwise, the singular form of the statement used herein also includes the plural form. The meaning of "include" used in the specification is to specifically incorporate a particular feature, region, integer, step, action, element, and / or component, and not to exclude the presence or addition of other specific features, regions, integers, steps, actions, elements, components, and / or groups.
[0034] Next, with reference to Figure 1 , a container according to an embodiment of the present application will be described.
[0035] As Figure 1 shown, the container 1 in this example includes a plug 100, and a container body 200 provided with a coupling portion (e.g., a first coupling portion) 202 having a thread 2021 on a side outer side (e.g., an outer side surface) to be coupled with the plug 100 through the first coupling portion 202.
[0036] The plug 100 coupled with the first coupling portion 202 of the container body 200 can prevent the content accommodated inside the container body 200 from flowing to the outside through the injection port 204.
[0037] At this time, the plug 100 is coupled with the first coupling portion 202 of the container body 200 in a thread-coupled manner, so that the plug 100 can be closed or opened according to the rotation direction of the plug 100.
[0038] Therefore, a thread 1121 for coupling with the thread 2021 of the container body 200 can also be provided on a portion of the plug 100 opposite the first coupling portion 202 of the container body 200.
[0039] The plug 100 includes a cap member 110 coupled with the first coupling portion 202 of the container body 200, and a heterogeneous separation member 120 to separate and discharge the content (first content) accommodated in the container body 200 from other heterogeneous substances (e.g., second content).
[0040] In this example, although the heterogeneous separation member 120 is described as a constituent element constituting a part of the plug 100, it is not limited thereto, and can be constituted as a constituent element different from the plug 100.
[0041] As Figure 1 shown, the heterogeneous separation member 120 can be coupled not only with the cap member 110 but also with the container body 200.
[0042] Therefore, as Figure 1 shown, in order to be coupled with the heterogeneous separation member 120, the container body 200 can be provided with a first coupling groove 211 on a portion of the first coupling portion 202 opposite a corresponding portion of the heterogeneous separation member 120, a coupling protrusion 220, a second coupling groove 212, and a support table 230 in a portion of the inner side surface of the container body 200 (i.e., a coupling portion in a surface directly contacting the first content).
[0043] In this example, these first coupling groove 211, coupling protrusion 220, second coupling groove 212, and support table 230 can constitute a part of the coupling portion 202.
[0044] The first coupling groove 211, the coupling protrusion 220, the second coupling groove 212, and the support platform 230 can be sequentially arranged in the height direction of the inner side surface, for example, the first coupling groove 211 can be located at the uppermost, among the first coupling groove 211, the second coupling groove 212, the coupling protrusion 220, and the support platform 230, the support platform 230 can be arranged at the lowermost.
[0045] In the present example, although the first coupling groove 211, the second coupling groove 212, and the coupling protrusion 220 are continuously arranged at respective corresponding positions, they can be arranged with a predetermined interval.
[0046] The support platform 230 is used to define the descending range of the heterogeneous separation member 120 combined with the container body 200, and thus can be arranged at the outer side surface of the heterogeneous separation member 120 in contact with the inner side surface of the container body 200 (i.e., the side surface adjacent to the heterogeneous separation member 120) and the lower end of the heterogeneous separation member 120.
[0047] Therefore, the heterogeneous separation member 120 can be inserted into the inside of the container body 200 and then descend to the depth defined by the support platform 230, and thus the heterogeneous separation member 120 can be prevented from falling into the inside of the container body 200.
[0048] Subsequently, the plug 100 combined with the container body 200 will be described in detail.
[0049] As described above, the plug 100 of the present example can include a cover member 110 and a heterogeneous separation member 120.
[0050] The cover member 110 of the present example can include an upper portion 111, a side portion 112, and a film abutting portion 113 extending downward from a corresponding position of the inner side surface of the upper portion 111.
[0051] The upper portion 111 is a part constituting the upper side surface of the cover member 110, can be constituted by a plate structure in a circular planar shape, and can have a prescribed thickness.
[0052] The side portion 112 is seamlessly connected with the outer side edge portion of the upper portion 111 and extends downward from the outer side edge of the upper portion 111, and can be coupled with the outer peripheral surface of the first coupling portion 202 of the container body 200.
[0053] Specifically, the side portion 112 can extend downward from the outer side edge portion of the upper portion 111 in a perpendicular manner to the upper portion 111. Among them, the outer side edge portion of the upper portion 111 can be a portion opposite to the inner side edge portion on the opposite side of the inner side edge portion adjacent to the first coupling portion 202 of the container body 200.
[0054] The inner side surface of such a side portion 112 can be provided with a thread 1121 for coupling with the thread 2021 of the first coupling portion 202.
[0055] When the heterogeneous separation member 120 is installed in the container body 200, the adhesion film 113 can adhere the heterogeneous separation member 120 to the inner side surface of the container body 200, thereby stably maintaining the combined state of the heterogeneous separation member 120 combined with the container body 200.
[0056] Such an adhesion film 113 can be provided with a groove portion 1131 formed by oblique cutting at the outer lower end portion thereof, to secure the combined force and adhesion force with the heterogeneous separation member 120.
[0057] Accordingly, the groove portion 1131 is provided in contact with the corresponding portion 1211 of the heterogeneous separation member 120, so that the corresponding portion of the heterogeneous separation member 120 can be securely in contact with the adhesion film 113.
[0058] As described above, the adhesion film 113 firmly adheres the heterogeneous separation member 120 to the container body 200, so that the heterogeneous separation member 120 can normally maintain the combined state with the container body 200 even when the cap member 110 is separated from the container body 200 in the threaded direction, thereby preventing the heterogeneous separation member 120 from being separated upward together with the cap member 110.
[0059] Accordingly, when the cap member 110 is separated from the container body 200 by the operation of opening the stopper 100, the heterogeneous separation member 120 can stably maintain the combined state with the combined grooves 211 and 212 and the combined protrusion 220 of the container body 200.
[0060] Accordingly, even when the stopper 100 is in a completely opened state from the container body 200, the heterogeneous separation member 120 can maintain the combined state with the container body 200 at a predetermined position inside the container body 200.
[0061] When the stopper 100 is in a completely opened state, the cap member 110 covering the upper portion of the heterogeneous separation member 120 is in a released state, and thus the first contents contained in the container body 200 can be in a state in which they can be taken.
[0062] In addition, in the combined state of the stopper 100 and the container body 200, the adhesion film 113 further performs a sealing function to prevent the first contents of the container body 200 from flowing out to the outside through the heterogeneous separation member 120.
[0063] The adhesion film 113 can have, for example, a circular wall structure that can extend downward from a predetermined portion of the inner surface of the upper portion 111 by a prescribed length.
[0064] Therefore, when the cover member 110 is combined with the container body 200, the close contact film 113 can be in contact with the inner side surface of the container body 200 or the inner surface of the dissimilar separation member 120 combined with the container body 200.
[0065] Next, the dissimilar separation member 120 will be described.
[0066] The dissimilar separation member 120 can be manufactured as a separate member from the cover member 110 and combined with the cover member 110 through a separate mounting process to constitute the plug 100, and the plug 100 combined with the dissimilar separation member 120 can be recombined with the container body 200.
[0067] The dissimilar separation member 120 can include a combination portion (for example, a second combination portion 121) for combination with the container body 200, and a filter mesh 122 connected to the second combination portion 121.
[0068] The second combination portion 121 is an edge portion of the dissimilar separation member 120 and can have a predetermined length and be in a hollow band shape.
[0069] The inner surface of the second combination portion 121 (that is, the surface adjacent to the filter mesh 122) can have a flat surface substantially perpendicular to the arrangement surface.
[0070] However, the outer surface of the second combination portion 121 (that is, the surface opposite to the inner surface and combined with the first combination portion 202 of the container body 200) can have a shape for combination with the first combination portion 202.
[0071] For example, the outer surface of the second combination portion 121 can include a first combination protrusion 1211 for combination with the first combination groove 211, a combination groove 1212 located at the lower portion of the first combination protrusion 1211 and for combination with the combination protrusion 220, and a second combination protrusion 1213 for combination with the second combination groove 212.
[0072] The first combination protrusion 1211 protrudes upward from the end of the inner surface of the second combination portion 121 and can be inserted into the first combination groove 211 of the container body 200.
[0073] Therefore, the outer surface of the first combination protrusion 1211 of the second combination portion 121 can be in contact with the inner portion of the first combination groove 211 of the first combination portion 202.
[0074] As described above, the first combination protrusion 1211 of the second combination portion 121 is inserted into the groove portion 1131 of the close contact film 113, and thus the inner surface of the first combination protrusion 1211 can be in contact with the close contact film 113.
[0075] As a result, the first coupling protrusion 1211 of the second coupling portion 121 can be inserted between the groove portion 1131 of the cover 113 and the first coupling groove 211 of the first coupling portion 202, and can be positioned on the first coupling groove 211 side of the first coupling portion 202 by the cover 113.
[0076] The coupling groove 1212 and the second coupling protrusion 1213, which are continuously provided at the lower portion of the first protrusion 1211, can also be coupled to the corresponding portions (the second coupling groove 212 and the coupling protrusion 220) of the first coupling portion 202 of the container body 200, which are opposite to each other.
[0077] The shapes of the first coupling protrusion 1211, the second coupling protrusion 1213, and the coupling groove 1212 of the second coupling portion 121 can be determined according to the shapes of the first coupling groove 211, the second coupling groove 212, and the coupling protrusion 220 of the first coupling portion 202 of the container body 200, which correspond to each other.
[0078] The lower end of the second coupling portion 121 can be positioned above the support platform 230 of the first coupling portion 202, can be supported by the support platform 230, and its position can be limited. That is, the position of the second coupling portion 121 can be supported by the support platform 230, so as not to fall inside the container body 200.
[0079] As described above, by the coupling action of the first coupling portion 202 of the container body 200 and the second coupling portion 121 of the heterogeneous separation member 120, the heterogeneous separation member 120 can be securely coupled to the container body 200 to maintain the position.
[0080] The filter 122 is provided at a substantially middle height of the second coupling portion 121, is provided in a horizontal direction parallel to the arrangement surface, and has a circular planar shape and a mesh structure.
[0081] In the present example, the second coupling portion 121 can include a material having elasticity such as plastic, and the filter 122 can be made of the same material as the second coupling portion 121 or a different material such as metal.
[0082] The heterogeneous separation member 120 can have a substantially "H" shaped cross-sectional shape by the filter 122.
[0083] By the filter 122 having a mesh structure, when different kinds of substances (the first content and the second content) are contained in the container body 200, the second content such as tea leaves can be prevented from being discharged by the filter 122.
[0084] Therefore, when a user drinks the first contents inside the container body 200, the second contents, such as tea leaves, which are different in form from the first contents, can be filtered by the filter screen 122, so that the user can drink or ingest only the first contents contained in the container body 200.
[0085] Next, refer to Figures 2 to 6 The following describes containers according to other embodiments of the present invention.
[0086] and Figure 1 By comparing the illustrated embodiments, constituent elements having the same structure and performing the same function are assigned... Figure 1 The same reference numerals are used in the accompanying drawings, and detailed descriptions thereof are omitted.
[0087] like Figure 2 As shown, the container 1a in this example also includes: a plug 100a; and a container body 200, the outer side of which is provided with a first engagement portion 202 having threads 2021 to engage with the plug 100a through the first engagement portion 202.
[0088] In this example, the plug 100a is also threadedly engaged with the first joint 202 of the container body 200, which also prevents the contents contained inside the container body 200 (e.g., the first contents) from flowing to the outside through the inlet 204.
[0089] Such a stopper 100a may include: a cap member 110a, which engages with a first joint 202 of the container body 200; and a species separation member 120a, which separates a species of content (second content) that is different from the first content from the first content contained in the container body 200.
[0090] In this example, the heterogeneous separation member 120a may contain an elastic material (e.g., silicon or natural rubber), in which case the heterogeneous separation member 120a may be elastic.
[0091] and Figure 1 Similar to the cover member 110, the cover member 110a of this example may include: an upper portion 111; a side portion 112; and a film 113 extending downward from a corresponding position on the inner surface of the upper portion 111.
[0092] However, as Figure 3 and Figure 4 As shown, the cover member 110a in this example is... Figure 1 Unlike the cover member 110, it also includes a blocking membrane 114, which is spaced apart from the close-fitting membrane 113 and extends downward from a corresponding position on the inner surface of the upper part 110.
[0093] As described above, the upper portion 111 is a portion constituting the upper surface of the cover member 110, and the side portion 112 is seamlessly connected to the outer edge portion of the upper portion 111 and extends downward, and can be combined with the outer circumferential surface of the first combining portion 202 of the container body 200.
[0094] Therefore, the side portion 112 can be provided with a thread 1121 for threadedly combining with the first combining portion 202.
[0095] As described above, when the heterogeneous separation member 120a is installed in the container body 200, the close-contact film 113 provided with the groove portion 1131 can also come into contact with the inner surface of the heterogeneous separation member 120a and make the heterogeneous separation member 120a close-contact to the inner surface side of the container body 200, thereby stably maintaining the combined state of the heterogeneous separation member 120a combined with the container body 200.
[0096] Unlike the example shown in Figure 1 , the container body 200 of the present example can be provided with only the first content, and the heterogeneous separation member 120a can be provided with only the second content.
[0097] Therefore, the blocking film 114 can stably position the second content provided in the heterogeneous separation member 120a inside the heterogeneous separation member 120a, and also can make the cover member 110 and the heterogeneous separation member 120a combined with each other.
[0098] To this end, the blocking film 114 can be disposed more inward than the close-contact film 113, and have a circular wall shape structure extending perpendicularly from the inner surface of the upper portion 111.
[0099] As shown in Figure 1 , the blocking film 114 and the close-contact film 113 can have different lengths of extension downward.
[0100] For example, the blocking film 114 can have a longer length of extension than the close-contact film 113. As an example, the blocking film 114 can extend to contact or be adjacent to the inner side of the lower surface of the heterogeneous separation member 120a (inner lower surface). In contrast, the close-contact film 113 can extend to the upper end portion of the heterogeneous separation member 120 (for example, the first combining protrusion 1211) located at a higher portion than the case of the blocking film 114.
[0101] Next, the heterogeneous separation member 120a according to the present example will be described with reference to Figure 5 and Figure 6 .
[0102] As described above, the heterogeneous separation member 120a of the present example is not used to filter the second content contained in the container body 200, but is used to perform a function of separating and storing the second content from the first content.
[0103] Accordingly, such a heterogeneous separation member 120a of the present example can include a placement portion 1201, a coupling insertion groove portion 1202 coupled to the placement portion 1201, a plurality of column portions 1203 coupled to the coupling insertion groove portion 1202, and a second coupling portion 121 coupled to the plurality of column portions 1203.
[0104] The placement portion 1201 is a portion where the second content is located, and as a portion having a circular planar shape protruding upward by a prescribed length from the coupling insertion groove portion 1202, can have a side surface coupled to the coupling insertion groove portion 1202 and a circular upper surface coupled to the side surface.
[0105] A recessed portion can exist in a central portion of the upper surface of the placement portion 1201, but according to circumstances, this recessed portion can be omitted.
[0106] The coupling insertion groove portion 1202 is a flat surface coupled to the side surface of the placement portion 1201 and extending in a direction parallel to the setting surface, and can form a circular groove along the edge of the circular placement portion 1201.
[0107] The barrier film 114 provided to the cover member 110 is inserted into the groove formed in the coupling insertion groove portion 1202, and the coupling operation of the cover member 110 and the heterogeneous separation member 120a can be achieved.
[0108] That is, when the cover member 110 is coupled to the heterogeneous separation member 120a, the barrier film 114 of the cover member 110 can be inserted up to the point of contacting the upper surface of the coupling insertion groove portion 1202, that is, the barrier film 114 can be inserted into the coupling insertion groove portion 1202.
[0109] At this time, the width of the groove formed in the coupling insertion groove portion 1202 can have a value less than or equal to the thickness of the barrier film 114, and the barrier film 114 inserted into the coupling insertion groove portion 1202 having elasticity can be inserted into the inside of the coupling insertion groove portion 1202 while being in close contact.
[0110] Accordingly, when the barrier film 114 is inserted into the inside of the groove of the coupling insertion groove portion 1202, the barrier film 114 can be inserted into the corresponding position by pressing and pushing the portion in close contact with the coupling insertion groove portion 1202.
[0111] When the barrier film 114 of the cover member 110 descends to a prescribed position and the coupling of the cover member 110 and the heterogeneous separation member 120a is completed, the corresponding portion of the heterogeneous separation member 120a can return to the original position due to elasticity, and pressure can be applied to the barrier film 114, thereby increasing the sealing force.
[0112] In addition, the coupling insertion groove portion 1202 is pressed from the top to the bottom by the barrier film 114 in contact therewith.
[0113] The plurality of column portions 1203 are connected to the coupling insertion groove portion 1202 and can be positioned outside the coupling insertion groove portion 1202.
[0114] The plurality of column portions 1203 can each have the same shape, can extend in a direction different from the extension direction of the coupling insertion groove portion 1202 (for example, the up-down direction), and can be provided at regular intervals along the outer periphery of the coupling insertion groove portion 1202.
[0115] Accordingly, a through hole S1203 (empty space) can be formed between two adjacent column portions 1203.
[0116] Each through hole S1203 can pass completely through the column portion 1203 and can be positioned between the coupling insertion groove portion 1202 and the second coupling portion 121. Accordingly, one end of each column portion 1203 can be connected to the coupling insertion groove portion 1202, and the other end can be connected to the second coupling portion 121.
[0117] Each column portion 1203 can be inclined outward with respect to the ground as it extends from the lower portion to the upper portion.
[0118] As described above, when the blocking film 114 is inserted into the coupling insertion groove portion 1202 positioned in front of the plurality of column portions 1203 provided with the through holes S1203, the blocking film 114 of the cover member 110 surrounds the inner side of the column portions 1203 provided with the plurality of through holes S1203 so that the plurality of through holes S1203 are blocked by the blocking film 114.
[0119] The first content contained in the container body 200 can be a fluid content (for example, a lactic acid bacteria fermented beverage or the like), and in this case, the fluid content (first content) in the container body 200 can flow into the heterogeneous separation member 120a through the open through hole S1203.
[0120] However, as described above, the coupling insertion groove portion 1202, which is lower than the placement portion 1201, is provided between the column portions 1203 and the placement portion 121, so that the second content positioned in the placement portion 1201 is difficult to mix with the first content.
[0121] In addition, since the plurality of through holes S1203 are blocked by the blocking film 114, the first content can not pass through the through holes S1203 or can be difficult to pass through the through holes S1203.
[0122] Further, as the sealing force of the blocking film 114 that blocks the through holes S1203 is increased, it can become more difficult for the first content in the container body 200 to flow into the internal space of the heterogeneous separation member 120a through the through holes S1203.
[0123] Accordingly, the second contents in the heterogeneous separation member 120a can be safely stored independently from the first contents in the sealed internal space without mixing with the first contents, thereby increasing the storage period of the first and second contents, and also, the circulation period of the corresponding products can be increased thereby.
[0124] However, when a user or the like rotates the cap member 110 in the corresponding direction to release the screw coupling, as the cap member 110 moves upward with the rotating action, the blocking film 114 and the close contact film 113 inserted in the coupling insertion groove portion 1202 are released from the groove of the coupling insertion groove portion 1202 and move upward together with the cap member 110.
[0125] At this time, the heterogeneous separation member 120a can be separated from the cap member 110 and positioned in the injection inlet 204 of the container body 200 by the coupling force of the second coupling portion 121 of the heterogeneous separation member 120a and the first coupling portion 202 of the container body 200.
[0126] In addition, before the release action of the close contact film 113 moving in the upward side direction is completely achieved, the close contact film 113 will maintain the outward pressing action against the first coupling protrusion 1121 close-contacted to the groove portion 1131, and thus, even if the blocking film 114 starts to be released, the heterogeneous separation member 120a can stably maintain the current coupling state without moving upward together with the blocking film 114.
[0127] Accordingly, when a user releases the locking of the cap member 110a, the heterogeneous separation member 120a can be normally positioned at the neck of the container body 200 completely surrounding the injection inlet 204 of the container body 200.
[0128] As described above, in the state in which the cap member 110a is separated from the container body 200, when a user drinks the first contents in the container body 200, the first contents in the container body 200 will flow into the inside of the heterogeneous separation member 120a through the plurality of through-holes S1203 between the column portions, thereby conveniently enabling the second contents positioned in the heterogeneous separation member 120a to be easily and conveniently taken together with the first contents.
[0129] That is, before the cap member 110 is opened, the first contents and the second contents respectively stored in the container body 200 and the plug 100 are prevented from being mixed with each other, thereby preventing problems such as deterioration of the two contents, and the main contents and the sub contents can be stored fresh without deterioration of the respective components.
[0130] The technical features disclosed in each of the embodiments of the present application are not limited to the corresponding embodiment, and the technical features disclosed in the embodiments can be combined and applied to different embodiments unless they are incompatible with each other.
[0131] The embodiments of the present application have been described above. The present application is not limited to the above-described embodiments and the drawings, and various modifications and changes can be made from the viewpoint of a person skilled in the art to which the present application pertains. Therefore, the scope of the present application is not only the claims of the present specification but also should be defined by the equivalents of the claims.
Claims
1. A stopper, characterized in that, include: A lid member, joined to a container body for containing a first liquid content and a second content in a different state from the first content and having a first joint, the lid member comprising a tight-fitting film extending downward from the top, and... The heterogeneous separation component is provided with a second connecting part and a filter screen. The second connecting part is connected to the first connecting part of the container body and is bonded to the tight-fitting film so that the second connecting part is tightly attached to the container body side from the tight-fitting film. The filter screen is connected to the second connecting part and is used to block the discharge of the second contents.
2. The stopper according to claim 1, characterized in that, The second joint portion is provided with a first joint protrusion, a joint groove, and a second joint protrusion in sequence from top to bottom. The first bonding protrusion is in contact with the adhesive film so that the first bonding protrusion is tightly attached from the adhesive film toward the first bonding portion.
3. A stopper, characterized in that, include: A lid member, coupled to a container body for containing a first liquid content and having a first joint, the lid member comprising a sealing film extending downward from a lower portion, and... The heterogeneous separation component has a second connecting part and a placement part. The second connecting part is connected to the first connecting part of the container body and is bonded to the adhesive film so that the second connecting part is tightly attached to the container body side from the adhesive film. The placement part is connected to the second connecting part and separately accommodates a second content that is in a different state from the first content.
4. The stopper according to claim 3, characterized in that, The second joint portion is provided with a first joint protrusion, a joint groove, and a second joint protrusion in sequence from top to bottom. The first bonding protrusion is in contact with the adhesive film so that the first bonding protrusion is tightly attached from the adhesive film toward the first bonding portion side.
5. The stopper according to claim 3, characterized in that, The heterogeneous separation component includes: The placement section is provided with the second contents, and Multiple columnar portions protrude upward from the placement portion to connect with the second connecting portion, and there is a through opening between two adjacent columnar portions.
6. The stopper according to claim 5, characterized in that, The cover component also includes: A blocking membrane is provided spaced apart from the adhesive membrane and extends downward from the bottom; The heterogeneous separation component also includes: The insertion slot is located between the placement portion and the column portion at a position lower than the placement portion, and the insertion slot has a groove for inserting the blocking membrane.
7. A container, characterized in that, include: A container body for containing a first liquid content and a second content in a different state from the first content, and the container body has a first connecting portion, and The stopper is attached to the container body; The plug includes: A lid member, which is coupled to the container body and includes a close-fitting film extending from the top to the bottom, and The heterogeneous separation component is provided with a second connecting part and a filter screen. The second connecting part is connected to the first connecting part of the container body and is bonded to the adhesive film so that the second connecting part is tightly attached to the container body from the adhesive film. The filter screen is connected to the second connecting part and is used to block the discharge of the second contents.
8. The container according to claim 7, characterized in that, The first joint portion is provided with a first joint protrusion, a joint groove, and a second joint protrusion in sequence from top to bottom. The second joint portion has a first joint groove, a joint protrusion, and a second joint groove that respectively engage with the first joint protrusion, the joint groove, and the second joint protrusion. The first joint groove of the second joint portion is connected to the adhesive film so that the adhesive film is tightly attached to the first joint protrusion side of the first joint portion.
9. A container, characterized in that, include: A container body for containing a first liquid content, the container body having a first joint, and The stopper is attached to the container body; The plug includes: A lid member, including a close-fitting film extending downward from the bottom, the lid member being coupled to the container body, and The heterogeneous separation component has a second connecting part and a placement part. The second connecting part is connected to the first connecting part of the container body and is bonded to the adhesive film so that the second connecting part is tightly attached to the container body side from the adhesive film. The placement part is connected to the second connecting part and separately accommodates a second content that is in a different state from the first content.
10. The container according to claim 9, characterized in that, The first joint portion is provided with a first joint protrusion, a joint groove, and a second joint protrusion in sequence from top to bottom. The second joint portion has a first joint groove, a joint protrusion, and a second joint groove that respectively engage with the first joint protrusion, the joint groove, and the second joint protrusion. The first joint groove of the second joint portion is connected to the adhesive film so that the adhesive film is tightly attached to the first joint protrusion side of the first joint portion.
11. The container according to claim 9, characterized in that, The heterogeneous separation component also includes: Multiple columnar portions protrude upward from the placement portion to connect with the second connecting portion, and a through opening is provided between two adjacent columnar portions.
12. The container according to claim 11, characterized in that, The cover component also includes: A blocking membrane is disposed spaced apart from the close-fitting portion and extends downward from the lower part; The heterogeneous separation component also includes: The insertion slot is located between the placement portion and the column portion at a position lower than the placement portion, and the insertion slot has a groove for inserting the blocking membrane.