Contents container
The rotatable inner container design with a slope guide and wedge locking mechanism simplifies the replacement process, enhances usability, and maintains a sleek appearance by minimizing hinge exposure, addressing the operational and aesthetic challenges of conventional containers.
Patent Information
- Application Number
- JP2026508718
- Authority / Receiving Office
- JP · JP
- Patent Type
- Applications
- Current Assignee / Owner
- Priority Date
- 2023-08-22
- Filing Date
- 2024-07-24
- Publication Date
- 2026-08-26
AI Technical Summary
Conventional compact containers require significant operational force for removing and replacing the inner container, have complex and exposed fixing structures, and compromise aesthetic appearance.
A container design where the inner container is rotatable relative to the outer container, utilizing a slope guide portion and wedge portions for easy attachment and detachment, and a magnetic coupling for secure locking, minimizing hinge exposure and simplifying the fixing structure.
Enables easy and efficient replacement of the inner container with improved operability, maintains a sleek appearance, and prevents interference during lid operations, providing a comfortable user experience.
Smart Images

Figure 2026528938000001_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to a container for contents, and more particularly, by configuring a inner container in which the contents are stored to be rotatable so that it can be coupled to an outer container or removed from the outer container, it has excellent operability and relates to a container for contents that can be easily refilled and replaced.
Background Art
[0002] In a conventional compact container, since a storage portion for storing contents and a lower case are integrally formed, when the contents are used up, the inner container cannot be replaced and used, and the entire container case has to be discarded.
[0003] For this reason, a structure of a replaceable (refillable) compact container that can remove the inner container from the outer container and then replace and use a new inner container has been developed. However, in a conventional replaceable compact container, since the user forcibly removes the inner container upward through a through hole formed in the bottom surface of an outer container, there is a drawback that a great operating force is required for removal.
[0004] In addition, there is also a problem that the fastening and fixing structure between the inner container and the outer container is complicated, and the fixing structure is exposed to the outside and visually recognized, etc., and the beauty of the appearance is impaired.
Summary of the Invention
Problems to be Solved by the Invention
[0005] The present invention has been devised to solve the above problems, and by configuring the inner container in which the contents are stored to be rotatable so that it can be coupled to the outer container or removed from the outer container, it has excellent operability, is easy to refill and replace, and aims to provide a container for contents that can form a simple appearance.
[0006] The technical problems of the present invention are not limited in any way to those described above, and other unmentioned technical problems can be clearly understood by a person with ordinary skill in the art to which the present invention pertains from the following description. [Means for solving the problem]
[0007] An embodiment of the present invention provides a container for contents.
[0008] The contents container includes an inner container for holding the contents, an outer container for housing the inner container, and a cap portion that is attached to the outer container. The inner container can be removed from or attached to the outer container by rotating it relative to the outer container. [Effects of the Invention]
[0009] According to the present invention, the inner container holding the contents can be attached to or detached from the outer container by rotating it, resulting in excellent operability and a simple appearance. Furthermore, the inner container can be easily replaced and used.
[0010] Furthermore, according to the present invention, by forming a slope guide portion on the upper outer peripheral edge of the outer container, the second hinge portion, which protrudes from one side of the outer peripheral edge of the inner container, is inserted along the inclined surface of the slope guide portion and coupled to the outer container, or conversely, pulled out along the inclined surface and released from the outer container, the exposure of the second hinge portion during use is minimized, thereby maintaining an aesthetic appearance, and a slim structural design is possible by reducing the protruding height of the second hinge portion. In addition, when replacing the inner container for refilling, the rotational movement of the inner container is naturally linked to the pull-out path of the slope inclined surface, resulting in excellent operability and a high-quality appearance.
[0011] Furthermore, according to the present invention, by forming the slope guide portion within a range of 0° to 45° from the second hinge portion, interference with the cap portion during opening and closing operations of the inner lid can be prevented, thereby improving ease of use.
[0012] Furthermore, according to the present invention, the structure of the locking part that maintains the bond between the inner container and the outer container can be simplified by having a first wedge portion protruding from one side of the outer surface of the inner container and a second wedge portion protruding from one side of the inner surface of the outer container engage with each other in the rotational direction of the inner container. This makes it possible to create a small, inconspicuous structure and improve the aesthetic appearance.
[0013] Furthermore, according to the present invention, the first wedge portion is formed with a first pressing portion that is gradually inclined downward toward the locking rotation direction to transmit downward pressure to the inner container, and the second wedge portion is formed with a second pressing portion that engages with the first pressing portion of the first wedge portion that enters from the side to provide downward pressure, thereby firmly fixing the locked inner container with downward pressure and preventing movement in the vertical direction.
[0014] In addition to the above, according to the present invention, the first wedge portion has a tension portion formed such that the tip of the first pressing portion is separated from the outer surface of the inner container and has elasticity, and a locking groove for preventing rotation is formed on the outer surface of the tension portion, and the second wedge portion has a locking projection that engages with the locking groove at the entrance of the second pressing portion. When locked, the locking groove and the locking projection are made to fit tightly together by the elasticity of the tension portion, which prevents loosening of the contact part due to wear, and conversely, when releasing the lock, it can be operated with little force, thus providing a comfortable user experience.
[0015] According to the present invention, the peripheral edge of the cosmetic tool holder portion of the inner lid is formed such that the shielding portion side to which the second hinge portion is connected is relatively lower, allowing the cosmetic tool to be easily removed by sliding it laterally without the hassle of lifting it up.
[0016] Brief descriptions of the drawings are provided to fully understand the drawings cited in the detailed description of the present invention.
Brief Description of the Drawings
[0017] [Figure 1] It is an exploded perspective view of a cap portion of a content container according to an embodiment of the present invention. [Figure 2] It is a view showing a state in which an inner container according to an embodiment of the present invention is rotated with respect to an outer container. [Figure 3] It is an exploded perspective view of a content container according to an embodiment of the present invention. [Figure 4] It is a perspective view showing a detailed structure of a locking portion according to an embodiment of the present invention. [Figure 5] It is a perspective view showing a detailed structure of a first hinge portion according to an embodiment of the present invention. [Figure 6] It is an exploded cross-sectional view of a cap portion of a content container according to an embodiment of the present invention.
Modes for Carrying Out the Invention
[0018] A content container is provided according to an embodiment of the present invention.
[0019] The content container includes an inner container for containing the content, an outer container for containing the inner container, and a cap portion coupled to the outer container. By rotating the inner container with respect to the outer container, it may be possible to remove it from the outer container or couple it to the outer container.
[0020] Further, the outer container forms a slope guiding portion on the upper outer peripheral edge, and the inner container is loaded along the inclined surface of the slope guiding portion according to the rotation direction by a second hinge portion protruding from one side of the outer peripheral edge and coupled to the outer container, or conversely, pulled out along the inclined surface and decoupled from the outer container.
[0021] Furthermore, a locking portion may be formed to maintain the coupled state between the inner container and the outer container.
[0022] Furthermore, the locking portion may include a first wedge portion protruding from one side of the outer surface of the inner container and a second wedge portion protruding from one side of the inner surface of the outer container so as to engage with the first wedge portion in the rotational direction of the inner container.
[0023] Furthermore, the first wedge portion is formed at the lower end of the outer side surface of the inner container, forms a first pressing portion that is formed at the lower end of the outer side surface of the inner container, gradually inclines downward toward the locking rotation direction, and transmits downward pressure to the inner container, forms a tension portion such that the tip of the first pressing portion is separated from the outer side surface of the inner container and has elasticity, and may form a locking groove for preventing rotation on the outer side surface of the tension portion. The second wedge portion is formed at the lower end of the inner side surface of the outer container, forms a second pressing portion that engages with the first pressing portion of the first wedge portion entering from the lateral direction and provides downward pressure, and may form a locking protrusion that engages with the locking groove at the entrance portion of the second pressing portion.
[0024] Furthermore, the inner container includes a storage portion for storing the contents and an inner lid body that is rotatably coupled to the storage portion by a second hinge portion, and the inner lid body may include a shielding portion that extends horizontally on the outer peripheral edge of the upper end of the peripheral edge of one side and shields the upper side of the second hinge portion.
[0025] In addition to these, a first magnetic member is formed on one side of the outer container, a second magnetic member is formed on one side of the cap portion, and the cap portion and the outer container may be coupled by the magnetic force between the first magnetic member and the second magnetic member. [[ID=
[0027] Furthermore, while ordinal numbers such as "first" and "second" can be used to describe various components, the components are not limited in any way by such wording. Phrases such as "first" and "second" can only be used to distinguish one component from another. For example, within the scope of the rights of this invention, the first component may be named the second component, and similarly, the second component may also be named the first component. The phrase "and / or" may include a combination of multiple related description items or any one of multiple related description items.
[0028] The terms used herein are used solely to describe embodiments and are not intended to limit and / or restrict the invention. Singular expressions include plural expressions unless the context clearly indicates otherwise. In this specification, terms such as “equipment,” “includes,” or “have” merely specify the existence of features, figures, stages, operations, components, parts, or combinations thereof described in the specification, and should be understood not to preclude the existence or addition of one or more other features, figures, stages, operations, components, parts, or combinations thereof.
[0029] Throughout the specification, when a part is described as being "connected (connected, in contact with, joined)" to another part, this includes not only cases where they are "directly connected" but also cases where they are "indirectly connected" with other components in between. Furthermore, when a part is described as "having" or "containing" a certain component, this does not exclude other components unless otherwise specified, but rather means that it may contain other components as well.
[0030] Figure 1 is an exploded perspective view of the cap portion of a contents container according to an embodiment of the present invention; Figure 2 is a diagram showing the contents container being rotated relative to the outer container according to an embodiment of the present invention; Figure 3 is an exploded perspective view of a contents container according to an embodiment of the present invention; Figure 4 is a perspective view showing the detailed structure of the locking portion according to an embodiment of the present invention; Figure 5 is a perspective view showing the detailed structure of the first hinge portion according to an embodiment of the present invention; and Figure 6 is an exploded cross-sectional view of the cap portion of a contents container according to an embodiment of the present invention.
[0031] Referring to Figure 1, the contents container is a compact container or a cosmetic compact, and will be referred to as a compact container hereinafter. The compact container according to the present invention may include a container part 100 consisting of an inner container 110 and an outer container 120, and a cap part 200.
[0032] The inner container 110, which is detachably coupled to the outer container 120, may contain contents. Here, the contents may be liquid, gel, or powder cosmetics. For example, the contents may include lotions, milk lotions, moisturizing lotions, nourishing lotions, skin lotions, skin softeners, skin toners, astringents, massage creams, nourishing creams, moisturizing creams, whitening essences, tone-up creams, UV blockers, sunscreens, sun milks, BB creams, makeup bases, foundations, CC creams, concealers, blushers, shading products, eyeshadows, eyebrow products, eye creams, primers, etc. However, the present invention is not limited to these, and other dosage forms or types of cosmetics, medical contents, etc., are applicable. The contents may be filled directly into the containment space, or they may be filled into the containment space via an impregnation member made of a sponge or the like, a cosmetic tray, etc.
[0033] Depending on the embodiment, the inner container 110 may have at least one storage space for containing contents. If the inner container 110 has multiple storage spaces, each storage space can contain the same or different contents. The storage spaces may be configured to have an open top.
[0034] In this embodiment, the cap portion 200 is rotatable relative to the container portion 100 (particularly the outer container 120) by the first hinge portion 300, allowing the container portion 100 to be opened and closed.
[0035] In this embodiment, the first hinge portion 300 can rotatably connect the container portion 100 and the cap portion 200. In this case, the first hinge portion 300 may be positioned inside the container portion 100 and the cap portion 200. By positioning the first hinge portion 300 inside the container portion 100 and the cap portion 200, it is possible to prevent the first hinge portion 300 from being exposed to the outside. By preventing the first hinge portion 300 from being exposed to the outside of the contents container 1000, a simple appearance of a compact container can be formed.
[0036] Details of the first hinge portion 300 will be described later in the section on Figure 5 to avoid redundant explanations.
[0037] Figure 2 shows the inner container of an embodiment of the present invention rotated relative to the outer container, and Figure 3 is an exploded perspective view of the inner container of an embodiment of the present invention.
[0038] In this embodiment, the inner container 110 can be rotated relative to the outer container 120, thereby enabling removal from or attachment to the outer container 120.
[0039] Referring to Figures 2 and 3, the outer container 120 may have a slope guide portion 130 formed on its upper outer periphery. The inner container 110 is coupled to the outer container 120 by a second hinge portion 113 projecting from one side of its outer periphery, which is inserted along the inclined surface of the slope guide portion 130 in accordance with the direction of rotation, or conversely, is uncoupled from the outer container 120 by being pulled out along the inclined surface. The user can remove the inner container 110 from the outer container 120 or reattach the inner container 110 to the outer container 120 with only a simple operation of rotating the inner container 110 relative to the outer container 120.
[0040] In this embodiment, the slope guide portion 130 can form a downwardly sloping inclined surface 131 that starts from one side of the upper outer peripheral surface of the outer container 120. The slope inclined surface 131 can provide a rotation path that guides the inner container 110 upward or downward during rotation. For example, as shown in Figure 2, when the inner container 110 is rotated relative to the outer container 120 in the direction in which the slope guide portion 130 rises, the inner container 110 rises as the second hinge portion 113 rises along the inclined surface of the slope guide portion 130. When the contents have been used up, the user can easily remove the inner container 110 from the outer container 120 by rotating the inner container 110 in the direction in which the slope inclined surface 131 rises. Conversely, when the inner container 110 is rotated relative to the outer container 120 in the direction that the slope guide 130 descends, the second hinge 113 descends along the inclined surface of the slope guide 130, allowing the inner container 110 to be housed inside the outer container 120. After the contents of the inner container 110 have been used up, the user can replace it with a new inner container 110 and rotate the inner container 110 relative to the outer container 120 in the direction that the slope guide 130 descends to connect it to the outer container 120.
[0041] In some embodiments, a mounting groove 132 may be provided at the end of the sloped surface 131, forming a laterally extended space on which the second hinge portion 113 of the inner container 110 is placed.
[0042] This configuration of the slope guide section 130 minimizes the exposure of the second hinge section 113 during use, improving the aesthetic appearance, and the reduced protrusion height of the second hinge section 113 allows for a slimmer structural design. Furthermore, when replacing the inner container 110 for refill replacement, the rotation of the inner container 110 is naturally linked to the pull-out path of the slope inclined surface 131, resulting in excellent operability and a high-quality appearance.
[0043] In an embodiment of the present invention, the slope guide portion 130 can be formed within a range of 0° to 45° from the second hinge portion 113. This position of the slope guide portion 130 prevents interference with the cap portion 200 when opening and closing the inner cover 112, thereby improving ease of use.
[0044] According to the embodiment of the present invention, a locking portion 140 can be formed to maintain the connected state between the inner container 110 and the outer container 120.
[0045] Figure 4 is a perspective view showing the detailed structure of the locking part according to an embodiment of the present invention.
[0046] Referring to Figure 4, the locking portion 140 may include a first wedge portion 141 protruding from one side of the outer surface of the inner container 110, and a second wedge portion 143 protruding from one side of the inner surface of the outer container 120 so as to engage with the first wedge portion 141 in the rotational direction of the inner container 110. Such a configuration of the locking portion 140 makes it possible to simplify and miniaturize the structure, resulting in a small structure that is less conspicuous in appearance and improving the aesthetic appearance.
[0047] In an embodiment of the present invention, the first wedge portion 141 is formed at the lower end of the outer surface of the inner container 110 and forms a first pressing portion 141a that is gradually inclined downward toward the locking rotation direction to transmit downward pressure to the inner container, and the tip of the first pressing portion 141a is formed to be spaced apart from the outer surface of the inner container 110 and to be elastic and to form a tension portion 141b, and a locking groove 141c for preventing rotation can be formed on the outer surface of the tension portion 141b.
[0048] In an embodiment of the present invention, the second wedge portion 143 is formed at the lower end of the inner surface of the outer container 120 and forms a second pressing portion 143a that engages with the first pressing portion 141a of the first wedge portion 141 which enters from the side and provides downward pressure, and a locking projection 143b that engages with a locking groove 141c can be formed at the entrance of the second pressing portion 143a.
[0049] According to the present invention, the first wedge portion 141 has a first pressing portion 141a that is gradually inclined downward toward the locking rotation direction to transmit downward pressure to the inner container, and the second wedge portion 143 has a second pressing portion 143a that engages with the first pressing portion 141a of the first wedge portion 141 which enters from the side to provide downward pressure. As a result, the locked inner container 110 can be firmly fixed by the downward pressure so that it does not move in the vertical direction.
[0050] According to the present invention, the first wedge portion 141 has a tension portion 141b formed such that the tip of the first pressing portion 141a is spaced apart from the outer surface of the inner container 110 and has elasticity, and a locking groove 141c for preventing rotation is formed on the outer surface of the tension portion 141b, and the second wedge portion 143 has a locking projection 143b formed at the entrance of the second pressing portion 143a that engages with the locking groove 141c. When locked, the locking groove 141c and the locking projection 143b are made to fit tightly together due to the elasticity of the tension portion 141b, thereby preventing loosening of the contact part due to wear from repeated use, and conversely, when releasing the lock, it can be operated with little force, thus providing a comfortable user experience.
[0051] According to embodiments of the present invention, an inclined surface 141d can be formed on the first wedge portion 141 in the direction of unlocking rotation. The inclined surface 141d can work to minimize contact friction with the inner surface of the outer container 120 when rotating in the unlocking direction.
[0052] In embodiments of the present invention, the inner container 110 may include a storage section 111 for storing contents and an inner lid 112 that is rotatably connected to the storage section 111 by a second hinge section 113.
[0053] In an embodiment of the present invention, the inner lid 112 may be provided with a cosmetic tool holder portion 116 that forms a storage space for cosmetic tools by having a peripheral edge portion 116a protrude from the upper outer peripheral edge. Alternatively, a shielding portion 114 may be formed by extending laterally from the upper outer peripheral edge of one side of the peripheral edge portion 116a of the cosmetic tool holder portion 116 to shield the upper side of the second hinge portion 113.
[0054] In this case, the upper outer edge of the other peripheral edge 116a of the cosmetic tool holder portion 116 may be extended laterally to form a gripping portion 115 that allows you to hook your fingers and lift the tool.
[0055] In this case, the shielding portion 114 is formed near the bottom surface of the cosmetic tool resting portion 116, and the peripheral edge portion 116a on the gripping portion 115 side is formed to be relatively higher, thereby providing a path for removing cosmetic tools in the direction of the shielding portion 114.
[0056] According to the present invention, the peripheral edge 116a of the cosmetic tool holder portion 116 of the inner lid 112 is formed such that the shielding portion 114 side to which the second hinge portion 113 is connected is relatively lower, allowing cosmetic tools to be easily removed by sliding them sideways without the hassle of lifting them up.
[0057] In this embodiment, the first hinge portion 300 may include a first rotating member 310 and a second rotating member 320. The detailed structure of the first hinge portion will be described with reference to Figure 5.
[0058] Figure 5 is a perspective view showing the detailed structure of the first hinge portion according to an embodiment of the present invention.
[0059] Referring to Figure 5, the first rotating member 310 may be rotatably connected on one side to the container portion 100 (particularly the outer container 120) and on the other side to the cap portion 200. Alternatively, the second rotating member 320 may be rotatably connected on one side to the cap portion 200 and on the other side to the container portion 100 (particularly the outer container 120).
[0060] Depending on the embodiment, the first rotating member 310 may include a first hinge shaft 311 rotatably coupled to the container portion 100 (particularly the outer container 120) and a first hinge arm 312 extending from the first hinge shaft 311. The second rotating member 320 may also include a second hinge shaft 321 rotatably coupled to the cap portion 200 and a second hinge arm 322 extending from the second hinge shaft 321. The first hinge arm 312 is coupled to the cap portion 200 and can rotate the cap portion 200 about the first hinge shaft 311 as its central axis, and the second hinge arm 322 is coupled to the container portion 100 and can rotate the container portion 100 about the second hinge shaft 321 as its central axis.
[0061] In some embodiments, the first rotating member 310 may include a first guide projection 313 projecting outward from the end of the first hinge arm 312. The second rotating member 320 may also include a second guide projection 323 projecting outward from the end of the second hinge arm 322. In this case, the cap portion 200 may include a first guide groove 210 into which the first guide projection 313 is fitted. The container portion 100 may also include a second guide groove 121 into which the second guide projection 323 is fitted. By fitting the first guide projection 313 into the first guide groove 210, the cap portion 200 is coupled to the first rotating member 310, enabling the first rotating member 310 to rotate the cap portion 200 relative to the container portion 100.
[0062] In this embodiment, the first rotating member 310 can be bent to have a predetermined angle at a first inflection point 314. Similarly, the second rotating member 320 can be bent to have a predetermined angle at a second inflection point 324. If the first rotating member 310 and the second rotating member 320 are formed in a straight line without being bent, when they are placed inside the contents container 1000, they may come into contact with the container portion 100 and the cap portion 200, respectively, which could restrict their outward movement and thus restrict their rotation. In the present invention, the first rotating member 310 and the second rotating member 320 are bent to have predetermined angles at the first inflection point 314 and the second inflection point 324, respectively. As a result, even when the first rotating member 310 and the second rotating member 320 are positioned inside the contents container 1000, they do not come into contact with the container portion 100 and the cap portion 100 when the cap portion 200 and the container portion 100 rotate, thus allowing rotation.
[0063] In this embodiment, the first rotating member 310 and the second rotating member 320 can be connected. By connecting the first rotating member 310 and the second rotating member 320, they can be rotatably coupled to each other. This allows the first rotating member 310 and the second rotating member 320 to stably support each other. Furthermore, by linking the rotation by the first rotating member 310 and the rotation by the second rotating member 320, the opening and closing rotations of the container portion 100 and the cap portion 200 can be achieved smoothly and stably.
[0064] In this embodiment, the first rotating member 310 includes a first hinge connecting portion 315, and the second rotating member 320 includes a second hinge connecting portion 325. The first rotating member 310 and the second rotating member 320 can be rotatably connected by the connection of the first hinge connecting portion 315 and the second hinge connecting portion 325. For example, the first hinge connecting portion 315 may be formed on one side of the first hinge arm 312, and the second hinge connecting portion 325 may be formed on one side of the second hinge arm 322. Furthermore, for example, the first hinge connecting portion 315 may be formed in the shape of a recessed fitting projection on one side of the first hinge arm 312, and the second hinge connecting portion 325 may be formed in the shape of a protruding fitting groove on one side of the second hinge arm 322, with the first hinge connecting portion 315 being fitted into the second hinge connecting portion 325. However, the present invention is not limited in any way, and depending on the embodiment, the first hinge connecting portion 315 and the second hinge connecting portion 325 may be formed in the shape of a fitting groove and a fitting projection, respectively, and are not limited to this, but any coupling structure that rotatably connects the first rotating member 310 and the second rotating member 320 can be adopted.
[0065] Figure 6 is an exploded cross-sectional view of the cap portion of a contents container according to an embodiment of the present invention.
[0066] Referring to Figure 6, a locking member can be formed that includes a first magnetic member 150 and a second magnetic member 220. Specifically, the first magnetic member 150 is formed on one side of the container portion 100 (particularly the outer container 120), and the second magnetic member 220 is formed on one side of the cap portion 200, and the cap portion 200 and the container portion 100 can be coupled by the magnetic force between the first magnetic member 150 and the second magnetic member 220. In this case, the first magnetic member 150 is arranged to be embedded on one side of the container portion 100 (particularly the outer container 120), and the second magnetic member 220 is arranged to be embedded on one side of the cap portion 200, so that they are not exposed to the outside. However, the structure of the locking member is not limited to this, and a wide variety of locking structures that can maintain the coupled state between the container portion 100 and the cap portion 200 can be adopted.
[0067] The optimal embodiments have been disclosed in the drawings and specification. While specific terms have been used, these terms are solely for the purpose of clearly describing the invention and are not intended to limit its meaning or the scope of the claims. Therefore, a person with ordinary skill in the art will understand that various variations and equivalent embodiments are possible. Thus, the true technical scope of protection of the invention should be determined by the claims. [Explanation of Symbols]
[0068] 100: Container part 110: Inner container 111: Detention Unit 112: Inner lid 113: Second hinge section 114: Shielding part 115: Grip part 116: Cosmetic tool holder section 116a: Peripheral area 120: Outer container 121: Second guide groove 130: Slope Information Section 131: Sloping surface 132: Mounting groove 140: Locking section 141: The First Wedge 141a: First pressing part 141b: Tension section 141c: Locking groove 141d: Inner slope 143: The Second Wedge 143a: Second pressing part 143b: Locking protrusion 150: First magnetic member 200: Cap part 210: First guide groove 220: Second magnetic component 300: First hinge section 310: First rotating member 311: First hinge axis 312: First hinge arm 313: First guide projection 314: First inflection point 315: First hinge connection 320: Second rotating member 321: Second hinge axis 322: Second hinge arm 323: Second guide projection 324: Second inflection point 325: Second hinge connection
Claims
1. The contents container, An inner container for holding the contents, An outer container that houses the inner container, A cap portion that is attached to the outer container, Includes, A container for contents, characterized in that the inner container can be removed from or attached to the outer container by rotating the inner container relative to the outer container.
2. The outer container has a slope guide portion formed on its upper outer edge. When the inner container is rotated relative to the outer container, The contents container according to claim 1, characterized in that the inner container has a second hinge portion protruding from one side of its outer periphery which is inserted along the inclined surface of the slope guide portion and coupled to the outer container, or conversely, which is pulled out along the inclined surface and released from the outer container.
3. The aforementioned slope guide section is, A sloped surface that provides a downward-sloping rotation path for the inner container, starting from one side of the upper outer peripheral surface of the outer container, At the point where the sloped surface ends, a lateral expansion space is formed, and a mounting groove is provided on which the second hinge portion of the inner container is placed. The contents container according to claim 2, characterized by including the following.
4. The outer container and the cap portion are rotatably connected by a first hinge portion. The contents container according to claim 2, characterized in that the slope guide portion is formed within a range of 0° to 45° from the second hinge portion.
5. The contents container according to claim 2, characterized in that it has a locking portion that maintains the connected state between the inner container and the outer container.
6. The locking part is, A first wedge portion is provided protruding from one side of the outer surface of the inner container, A second wedge portion is provided protruding from one side of the inner surface of the outer container so as to engage with the first wedge portion in the rotational direction of the inner container, The contents container according to claim 5, characterized by including the following.
7. The first wedge portion is, A first pressing portion is formed at the lower end of the outer surface of the inner container, and is inclined downward in the direction of locking rotation to transmit downward pressure to the inner container; a tension portion is formed at the tip of the first pressing portion so as to be separated from the outer surface of the inner container and to be elastic; and a locking groove for preventing rotation is formed on the outer surface of the tension portion. The aforementioned second wedge portion is, The contents container according to claim 6, characterized in that a second pressing portion is formed at the lower end of the inner surface of the outer container and engages with the first pressing portion of the first wedge portion that enters from the side to provide downward pressure, and a locking projection is formed at the entrance of the second pressing portion that engages with the locking groove.
8. The contents container according to claim 7, characterized in that an inclined surface is formed on the first wedge portion toward the unlocking rotation direction.
9. The aforementioned inner container is A storage section for containing the contents, An inner lid that is rotatably connected to the housing by a second hinge, Includes, The inner cover is, The contents container according to claim 1, characterized in that it includes a shielding portion that extends laterally from the upper outer edge of one peripheral edge and shields the upper side of the second hinge portion.
10. The outer container and the cap portion are rotatably connected by a first hinge portion. The first hinge portion is, A first rotating member, one end of which is rotatably connected to the outer container and the other end of which is connected to the cap portion, A second rotating member, one end of which is rotatably connected to the cap portion and the other end of which is connected to the outer container, The contents container according to claim 1, characterized by containing the following.
11. The first rotating member and the second rotating member are positioned inside the outer container and the cap portion so as not to be exposed to the outside. The first rotating member includes a first hinge shaft rotatably coupled to the outer container and a first hinge arm extending from the first hinge shaft, The second rotating member includes a second hinge shaft rotatably coupled to the cap portion and a second hinge arm extending from the second hinge shaft, A first hinge connecting portion is formed on one side of the first hinge arm. A second hinge connecting portion is formed on one side of the second hinge arm. The contents container according to claim 10, characterized in that the first hinge connecting portion and the second hinge connecting portion are connected so that the first hinge arm and the second hinge arm are rotatably connected to each other.
12. A first magnetic member is formed on one side of the outer container. A second magnetic member is formed on one side of the cap portion. The contents container according to claim 1, characterized in that the cap portion and the outer container are joined by the magnetic force between the first magnetic member and the second magnetic member.