Container
Patent Information
- Application Number
- JP2022149712
- Authority / Receiving Office
- JP · JP
- Patent Type
- Applications
- Current Assignee / Owner
- Filing Date
- 2022-09-21
- Publication Date
- 2025-06-23
- Estimated Expiration
- 2042-09-21
AI Technical Summary
The existing double container design requires the rotating member to be exposed, making it difficult for users to grasp and operate the inner container, leading to challenges in storing and removing it from the outer container.
A container design featuring an outer container, an inner container, and an intervening member between them, with specific structural elements such as annular portions, protrusions, and ribs that facilitate stable attachment and easy replacement of the inner container, enhancing operability.
The design improves the operability of the container by allowing easy attachment and detachment of the inner container, reduces waste through recyclable materials, and minimizes contamination risks while maintaining structural integrity.
Smart Images

Figure 00000000_0000_ABST
Abstract
Description
[Technical field]
[0001] The present invention relates to a container. [Background technology]
[0002] A double container consisting of an inner container and an outer container is known as a cosmetic container. By using a glass outer container in a double container, a sense of transparency, weight, and luxury is created.
[0003] Such a double container is disclosed, for example, in Patent Document 1. Specifically, the double container disclosed in Patent Document 1 has a rotating member between the inner container and the outer container. When a user rotates the rotating member, a protrusion provided on the outer periphery of the inner container slides along an inclined surface provided on the rotating member, causing the inner container to move upward. [Prior art documents] [Patent documents]
[0004] [Patent Document 1] Patent Publication No. 2021-123355 Summary of the Invention [Problem to be solved by the invention]
[0005] In the double container disclosed in Patent Document 1, the rotating member needs to be exposed so that the user can rotate the rotating member. This makes it difficult to provide the inner container with a wall that overlaps with the outer peripheral surface of the rotating member. However, it is difficult for the user to grasp such an inner container. Therefore, it is difficult for the user to store the inner container in the outer container and to remove the inner container from the outer container.
[0006] The present invention relates to a container with improved maneuverability. [Means for solving the problem]
[0007] In order to solve the above-mentioned problems, one aspect of the present invention relates to a container having an outer container, an inner container detachably stored in the outer container, and a container member located between the outer container and the inner container, wherein the outer container has an annular portion having an opening connected to a first space that stores the inner container, the container member has an outer tube portion having a cylindrical shape, and the inner peripheral surface of the outer tube portion and the outer peripheral surface of the annular portion are fitted together, the inner container forms a second space that stores a cosmetic, and the container comprises a cosmetic storage portion stored in the first space, an inner container flange protruding outward from the cosmetic storage portion, and a peripheral wall portion extending from the inner container flange toward a first direction, which is the depth direction side of the second space, and overlapping with the outer peripheral surface of the outer tube portion. Effect of the Invention
[0008] As described above, according to the present invention, it is possible to improve the operability of the container. [Brief description of the drawings]
[0009] [Figure 1] FIG. 1 is an explanatory diagram showing the external configuration of a container 10 according to an embodiment of the present invention. [Diagram 2] FIG. 2 is an explanatory diagram showing the container 10 with the cap 40 removed. [Diagram 3] 3 is a cross-sectional view of the outer container 20 according to one embodiment of the present invention taken along line II in FIG. 2. [Figure 4] FIG. 2 is a perspective view of an inner container 30 according to one embodiment of the present invention. [Diagram 5] 5 is a cross-sectional view of the inner container 30 taken along line II-II in FIG. 4. [Figure 6] 2 is a cross-sectional view of an interposition member 30 according to one embodiment of the present invention. [Figure 7] FIG. 2 is a cross-sectional perspective view of an interposition member 30 according to one embodiment of the present invention. [Figure 8] 4 is an explanatory diagram showing a procedure for attaching the inner container 30. FIG. [Figure 9] 2 is a cross-sectional view showing a state in which an interposition member 40 and an inner container 30 are attached to an outer container 20. FIG. [Figure 10] FIG. 2 is a perspective view of the outer container 20. [Figure 11] FIG. DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
[0010] Hereinafter, preferred embodiments of the present invention will be described in detail with reference to the accompanying drawings. In this specification and the drawings, components having substantially the same functional configurations are designated by the same reference numerals, and duplicated explanations will be omitted.
[0011] <Overall container configuration> An embodiment of the present invention relates to a container for storing cosmetics. First, the overall structure of a container according to an embodiment of the present invention will be described with reference to Fig. 1.
[0012] Fig. 1 is an explanatory diagram showing the external configuration of a container 10 according to one embodiment of the present invention. Fig. 2 is an explanatory diagram showing the container 10 with a cap 40 removed. As shown in Figs. 1 and 2, the container 10 according to one embodiment of the present invention has an outer container 20, an inner container 30, an intervening member 40, and a cap 50.
[0013] The outer container 20 has a first space for accommodating the inner container 30. The outer container 20 may be translucent as shown in Figs. 1 and 2. A typical example of the material of the outer container 20 is glass. However, the material of the outer container 20 is not limited to glass, and may be other materials such as ceramic. In addition, a cap 50 is removably attached to the outer container 20. The cap 50 may be attached to the outer container 20 by screwing, fitting, magnetic coupling, or other methods.
[0014] As shown in FIG. 2, the inner container 30 includes a cosmetic storage section 32 having a cylindrical shape with a bottom. The cosmetic storage section 32 forms a second space 33 for storing the cosmetic. The cosmetic stored in the cosmetic storage section 32 may be cream, such as moisturizing cream, cream foundation, or anti-aging cream. Such a cosmetic storage section 32 is stored in a first space formed in the outer container 20, as shown in FIG. 2. In this specification, the depth direction of the second space 33 in which the cosmetic is stored in the cosmetic storage section 32 (the direction from the opening of the second space 33 toward the bottom of the cosmetic storage section 32) may be referred to as a downward direction, and the opposite direction to the downward direction may be referred to as an upward direction. The downward direction is an example of the first direction, and the upward direction is an example of the second direction.
[0015] The inner container 30 also has an inner container flange 34 that protrudes outward from the upper end of the cosmetic storage section 32. The inner container flange 34 is formed in an annular shape. An annular shape refers to a shape that surrounds a certain area, and in this case, the inner container flange 34 is formed so as to surround the opening of the second space 33.
[0016] In one embodiment of the present invention, the inner container 30 is made of aluminum. However, the material of the inner container 30 is not limited to aluminum, and the inner container 30 may be made of other metals such as stainless steel, or synthetic resins such as polyester, polystyrene, and polyolefin.
[0017] The interposing member 40 is an example of a container member interposed between the outer container 20 and the inner container 30. The interposing member 40 may be formed from, for example, a synthetic resin such as a polyester-based, polystyrene-based, or polyolefin-based resin. A detailed configuration of the interposing member 40 will be described later.
[0018] The cap 50 is detachably attached to the outer container 20. When the cap 50 is attached to the outer container 20, the cap 50 and the inner container flange 34 are in close contact with each other, thereby making the second space 33 that contains the cosmetic airtight.
[0019] In such a container 10, when the cosmetic material runs out in the inner container 30, the outer container 20, the intervening member 40 and the cap 50 can be continuously used by replacing the inner container 30 with a new inner container 30.
[0020] (background) Here, the background of one embodiment of the present invention will be described. As described above, the inner container 30 may be made of synthetic resin, but since it is currently difficult to recycle synthetic resin, there is a concern that the inner container 30 will be discarded after it is removed when the cosmetic runs out. In this regard, a method of refilling the cosmetic from a tube container into the inner container 30 when the cosmetic runs out in the inner container 30 can be considered. However, with this method, the tube container is discarded after use, resulting in a large loss.
[0021] In contrast, in one embodiment of the present invention, the inner container 30 may be made of a metal such as aluminum. In this case, the only thing that is discarded when replacing the inner container 30 is the sealing material that was used to seal the inner container 30, which is a great environmental benefit.
[0022] However, when considering that the inner container 30 is formed by deforming an aluminum plate, the design applicable to the inner container 30 is limited. For example, it is difficult to form an undercut in the inner container 30. In addition, when the outer container 20 is made of glass, the dimensions of the outer container 20 vary widely. For this reason, if the outer container 20 made of glass and the inner container 30 made of aluminum are directly fitted together, there is a concern that rattling and the inclusion of foreign matter due to shavings may occur.
[0023] From this perspective, in one embodiment of the present invention, an intervening member 40 made of, for example, synthetic resin is provided between the outer container 20 and the inner container 30. The intervening member 40 has excellent formability and is therefore capable of absorbing the tolerances of the glass outer container 20. Furthermore, the intervening member 40 can continue to be used even after the inner container 30 is replaced, making it environmentally friendly.
[0024] It is desirable that such an intervening member 40 be stably attached to the outer container 20. In addition, even when the intervening member 40 is provided, it is desirable that the inner container 30 can be easily replaced.
[0025] Taking the above circumstances into consideration, the present inventor has come up with an embodiment of the present invention. The embodiment of the present invention makes it possible to stably attach the interposition member 40 to the outer container 20 and to easily replace the inner container 30. The configurations of the outer container 20, the inner container 30, and the interposition member 40 of the container 10 according to the embodiment of the present invention will be described in detail below.
[0026] <Configuration of outer container 20> Fig. 3 is a cross-sectional view of the outer container 20 according to one embodiment of the present invention taken along line II shown in Fig. 2. As shown in Fig. 3, the outer container 20 according to one embodiment of the present invention includes a lower portion 22, a middle portion 24, and an upper portion 26.
[0027] The lower portion 22, the middle portion 24, and the upper portion 26 each have a cylindrical shape. The hollow regions of the lower portion 22, the middle portion 24, and the upper portion 26 integrally form a first space 23 that accommodates the inner container 30. In the example shown in Fig. 3, the lower portion 22 has a bottom that does not penetrate the first space 23, but the lower portion 22 does not have to have a bottom.
[0028] The outer diameter of the middle stage portion 24 is smaller than the outer diameter of the lower stage portion 22. A screw portion 25 that screws into the inner peripheral surface of the cap 50 is formed on the outer circumferential surface of the middle stage portion 24.
[0029] Upper stage portion 26 is an example of an annular portion having an opening that communicates with first space 23. The outer diameter of upper stage portion 26 is smaller than the outer diameter of middle stage portion 24. A convex portion 27 is formed on the outer circumferential surface of upper stage portion 26 continuously along the circumferential direction.
[0030] <Configuration of inner container 30> Fig. 4 is a perspective view of an inner container 30 according to one embodiment of the present invention. Fig. 5 is a cross-sectional view of the inner container 30 taken along line II-II shown in Fig. 4. As shown in Figs. 4 and 5, the inner container 30 according to one embodiment of the present invention has a cosmetic storage section 32, an inner container flange 34, and a peripheral wall section 36.
[0031] As described above, the cosmetic storage section 32 has a cylindrical shape with a bottom. The cosmetic storage section 32 forms a second space 33 that stores the cosmetic. One or more protrusions 35 are formed on the outer circumferential surface of the cosmetic storage section 32. The one or more protrusions 35 may be, for example, three protrusions formed at the same height and at equal intervals.
[0032] The inner container flange 34 projects outward from the upper end of the cosmetic storage section 32. A peripheral wall portion 36 extends downward from the outer edge of the inner container flange 34.
[0033] <Configuration of Interposition Member 40> Fig. 6 is a cross-sectional view of the interposition member 30 according to one embodiment of the present invention. Fig. 7 is a cross-sectional perspective view of the interposition member 30 according to one embodiment of the present invention. As shown in Figs. 6 and 7, the interposition member 30 according to one embodiment of the present invention includes an inner cylindrical portion 42, a member flange 44, and an outer cylindrical portion 46.
[0034] The inner cylinder portion 42 is a portion located on the inner circumferential side of the outer container 20. A plurality of thick portions 420 and ribs 425 are formed on the inner circumferential surface of the inner cylinder portion 42. The ribs 425 are formed along the vertical direction. The thick portion 420 has a step portion 421 that faces upward and is inclined with respect to the circumferential direction, and a step portion 423 that is located on one side of the rib 425 and is formed to face downward. The step portion 423 is an example of a first step portion, and the step portion 421 is an example of a second step portion. Such a plurality of thick portions 420 and ribs 425 contribute to easy attachment of the inner container 30. Hereinafter, a specific description will be given with reference to FIG. 8.
[0035] Fig. 8 is an explanatory diagram showing the procedure for attaching the inner container 30. As shown in Fig. 8, when a user attempts to attach the inner container 30 to the outer container 20 to which the intervening member 40 is attached, the protrusion 35 formed on the outer circumferential surface of the inner container 30 comes into contact with the stepped portion 421 of the intervening member 40 (position P1). Then, the user rotates the inner container 30 relative to the intervening member 40 and the outer container 20 so that the protrusion 35 slides on the stepped portion 421, while continuing to insert the inner container 30.
[0036] When the protrusion 35 comes off the step portion 421 and reaches position P2, the user rotates the inner container 30 relative to the intervening member 40 and the outer container 20 so that the protrusion 35 climbs over the rib 425. This causes the protrusion 35 to reach position P3. At position P3, the step portion 423 formed on the upper side restricts the upward movement of the protrusion 35, thereby preventing the inner container 30 from falling out. Position P3 at which the upward movement of the protrusion 35 is restricted may be on the counterclockwise side or the clockwise side of the rib 425 in a plan view when the intervening member 40 is viewed from above as shown in FIG. 8.
[0037] When removing the inner container 30, the user rotates the inner container 30 relative to the intervening member 40 and the outer container 20 so that the protrusions 35 climb over the ribs 425, and then pulls out the inner container 30 from the intervening member 40 and the outer container 20 after the protrusions 35 have climbed over the ribs 425.
[0038] Returning to the description of the configuration of the intervening member 40 with reference to Figs. 6 and 7, the member flange 44 of the intervening member 40 extends from the upper end of the inner cylindrical portion 42 to the outer periphery side (i.e., extends from the upper end of the outer cylindrical portion 46 to the inner periphery side) and faces the upper end surface of the upper stage portion 26 of the outer container 20. An upper surface rib 44U is formed on the upper surface of the member flange 44, and a lower surface rib 44L is formed on the lower surface of the member flange 44. The upper surface rib 44U and the lower surface rib 44L are annular ribs. In the example shown in Figs. 6 and 7, there is one each of the upper surface rib 44U and the lower surface rib 44L, but a plurality of upper surface ribs 44U spaced apart in the radial direction and a plurality of lower surface ribs 44L spaced apart in the radial direction may be formed.
[0039] The outer cylindrical portion 46 has a cylindrical shape and extends downward from the member flange 44. A convex portion 47 is formed on the inner peripheral surface of the outer cylindrical portion 46 continuously along the circumferential direction.
[0040] <Wearing state> Next, with reference to FIG. 9, a state in which the interposition member 40 and the inner container 30 are attached to the outer container 20 will be described.
[0041] 9 is a cross-sectional view showing a state in which the intervening member 40 and the inner container 30 are attached to the outer container 20. In this state, the inner tube portion 42 of the intervening member 40 is inserted into the first space 23 of the outer container 20, the member flange 44 of the intervening member 40 abuts against the upper end surface of the upper stage portion 26 of the outer container 20, and the outer peripheral surface of the upper stage portion 26 of the outer container 20 and the inner peripheral surface of the outer tube portion 46 of the intervening member 40 are fitted together. Specifically, the convex portion 27 formed on the outer peripheral surface of the upper stage portion 26 and the convex portion 47 formed on the inner peripheral surface of the outer tube portion 36 are undercut fitted together. Here, a gap is provided between the inner peripheral surface of the outer container 20 and the outer peripheral surface of the inner tube portion 42 of the intervening member 40. The radial length d of the gap is 0.7 mm or more.
[0042] 9, the cosmetic storage section 32 of the inner container 30 is inserted into the inner periphery of the inner tube section 42 of the intervening member 40, and the inner container flange 34 of the inner container 30 abuts against the member flange 44 of the intervening member 40. The peripheral wall section 36 of the inner container 30 overlaps with the outer periphery of the outer tube section 46 of the intervening member 40. The lower end position of the peripheral wall section 36 is located below the lower end position of the outer tube section 46.
[0043] <Action and effect> According to the embodiment of the present invention described above, various effects can be obtained. For example, according to the embodiment of the present invention, an intervening member 40 is provided between the outer container 20 and the inner container 30. Even when a glass outer container 20 is used, the intervening member 40 absorbs the effect of the dimensional tolerance of the outer container 20, so that the degree of freedom in the material used for the inner container 30 is increased. For example, by making the inner container 30 out of a metal such as aluminum, the amount of synthetic resin waste can be reduced. The intervening member 40 can be continuously used even after the inner container 30 is replaced. Meanwhile, since the intervening member 40 can be removed from the outer container 20, separation is possible when the container 10 is disposed of.
[0044] In particular, the length d of the gap between the inner peripheral surface of the outer container 20 and the outer peripheral surface of the inner cylindrical portion 42 of the intervening member 40 is designed to be 0.7 mm or more. When a glass outer container 20 is used, the inner diameter tolerance is expected to be about 0.5 mm. The intervening member 40 can be attached to the outer container 20 without being affected by the inner diameter tolerance of the outer container 20.
[0045] Furthermore, by providing the intervening member 40 between the outer container 20 and the inner container 30, it is possible to suppress rattling of the inner container 30 even when the dimensional tolerance of the outer container 20 is large. In particular, according to one embodiment of the present invention, an upper surface rib 44U is formed on the upper surface of the component flange 44, and a lower surface rib 44L is formed on the lower surface of the component flange 44. The upper surface rib 44 abuts against the inner container flange 34, and the lower surface rib 44L abuts against the upper end surface of the upper stage portion 27 of the outer container 20, thereby further suppressing rattling of the inner container 30.
[0046] Moreover, according to one embodiment of the present invention, the inner container 30 has a peripheral wall portion 36 extending downward from the outer edge of the inner container flange 34. Since a user can attach or detach the inner container 30 while holding the peripheral wall portion 36, operability regarding attachment and detachment of the inner container 30 is improved.
[0047] Furthermore, the peripheral wall portion 36 overlaps the outer peripheral surface side of the outer tube portion 46 of the intervening member 40. With this configuration, the lower end of the outer tube portion 46 of the intervening member 40 is suppressed from spreading outward, and therefore it is possible to prevent the outer tube portion 46 from coming loose from the engagement with the outer container 20 due to the lower end of the outer tube portion 46 spreading outward. This effect is more pronounced when the lower end position of the peripheral wall portion 36 is located at the same height as the lower end position of the outer tube portion 46 or lower than the lower end position of the outer tube portion 46.
[0048] Moreover, the intervening member 40 according to one embodiment of the present invention is formed with a plurality of thick portions 420 and ribs 425. When operated by the user, the protrusion 35 formed on the outer peripheral surface of the inner container 30 moves while sliding on the step portion 421, and climbs over the rib 425 to reach position P3. At position P3, the upward movement of the protrusion 35 is restricted, so that it is possible to prevent the inner container 30 from falling out.
[0049] In addition, the position P3 at which the upward movement of the protrusion 35 is restricted may be on the counterclockwise side of the rib 425 in a plan view when the intervening member 40 is viewed from above as shown in Fig. 8. When a user opens the cap 50, the cap 50 rotates in a counterclockwise direction, and the force of the rotation may be transmitted to the inner container 30 that abuts against the cap 50. At this time, even if the inner tube portion 30 tries to rotate in the same counterclockwise direction as the cap 50, the rib 425 is located on the clockwise side, and therefore, the protrusion 35 can be prevented from going over the rib 425. In other words, the inner container 30 can be prevented from coming off the intervening member 40 unintentionally by the user.
[0050] <Supplementary Information> Although the preferred embodiment of the present invention has been described in detail with reference to the attached drawings, the technical scope of the present invention is not limited to such examples. It is clear that a person having ordinary knowledge in the technical field of the present invention can conceive of various modified or amended examples within the scope of the technical ideas described in the claims, and it is understood that these also naturally belong to the technical scope of the present invention.
[0051] For example, the outer container 20 and the interposition member 40 may have a mechanism for preventing the interposition member 40 from rotating relative to the outer container 20. A specific example of the mechanism will be described below with reference to Figs.
[0052] FIG. 10 is a perspective view of the outer container 20. FIG. 11 is a perspective view of the intervening member 40. As shown in FIG. 10, a rotation prevention rib 28 may be formed along the up-down direction on the outer peripheral surface of the upper stage portion 26 of the outer container 20. The rotation prevention rib 28 protrudes outward from the protruding portion 27. Also, as shown in FIG. 11, a rotation prevention groove 48 may be formed along the up-down direction on the inner peripheral surface of the outer tube portion 46 of the intervening member 40. The rotation prevention rib 28 of the outer container 20 fits into the rotation prevention groove 48 of the intervening member 40, thereby preventing the intervening member 40 from rotating relative to the outer container 20. Note that a plurality of rotation prevention ribs 28 and rotation prevention grooves 48 may be formed at equal intervals in the circumferential direction. Also, a rotation prevention groove may be formed on the outer container 20 side, and a rotation prevention rib may be formed on the intervening member 40 side.
[0053] Further, in relation to the above-mentioned embodiment, the present invention further discloses the following container. <1> A container having an outer container, an inner container detachably accommodated in the outer container, and a container member positioned between the outer container and the inner container, The outer container has an annular portion having an opening connected to a first space that houses the inner container, The container member has an outer cylinder portion having a cylindrical shape, an inner peripheral surface of the outer cylinder portion and an outer peripheral surface of the annular portion are fitted together, The inner container is a cosmetic storage section that forms a second space for storing a cosmetic and is stored in the first space; An inner container flange protruding toward the outside of the cosmetic storage portion; a peripheral wall portion extending from the inner container flange toward a first direction, which is a depth direction side of the second space, and overlapping an outer peripheral surface side of the outer tubular portion; A container comprising:
[0054] <2> an end portion of the peripheral wall portion on the first direction side is located on the first direction side of the outer tubular portion; <1> A container as described in claim 1. <3> The container member has an inner cylindrical portion located on the inner circumferential side of the annular portion, A gap exists between the inner cylindrical portion and the annular portion. <1> or <2> A container as described in claim 1. <4> The radial length of the gap is 0.7 mm or more. <3> A container as described in claim 1. <5> The container member has a member flange that extends from an end portion of the outer tubular portion on a second direction side, which is opposite to the first direction side, toward an inner peripheral side and faces an end face of the annular portion on the second direction side. <1> ~ <4> 13. The container according to any one of claims 1 to 12. <6> An annular rib is formed on the surface of the member flange on the first direction side. <5> A container as described in claim 1. <7> An annular rib is formed on the surface of the member flange on the second direction side. <5> or <6> A container as described in claim 1. <8> A protrusion is formed on the outer circumferential surface of the cosmetic storage portion of the inner container, The inner circumferential surface of the inner cylindrical portion is a rib that the protrusion rides over when the inner container rotates relative to the container member; and a first step portion on one side of the rib, the first step portion limiting movement of the protrusion in the second direction; The above-mentioned <3> or the above <4> A container as described in claim 1. <9> The one side of the rib is a counterclockwise side when the container member is viewed from the second direction side. <8> A container as described in claim 1. <10> The inner peripheral surface of the inner cylindrical portion has a second step portion that faces the second direction and is inclined with respect to the circumferential direction. <8> or <9> A container as described in claim 1. <11> The outer container and the container member have a mechanism for preventing the container member from rotating relative to the outer container. <1> ~ <10> 13. The container according to any one of claims 1 to 12. <12> The mechanism is as follows: An anti-rotation rib is formed on the outer peripheral surface of the annular portion of the outer container along the depth direction of the second space, An anti-rotation groove into which the anti-rotation rib fits is formed on the inner peripheral surface of the outer tubular portion of the container member along the depth direction of the second space. <11> A container as described in claim 1. [Explanation of symbols]
[0055] 10 containers 20 Outer container 22 Lower section 23 1st space 24 Middle section 26 Upper section 27 Convex 28 Anti-rotation rib 30 Inner container 32 Cosmetic storage section 33 Second space 34 Container flange 36 Peripheral wall section 40 Intervening member 42 Inner cylinder 420 Thick part 421 Step 423 Step 425 Ribs 44 Component flange 44U Top rib 44L Bottom rib 46 Outer cylinder 47 Convex 48 Anti-rotation groove
Claims
1. A container having an outer container, an inner container detachably housed in the outer container, and a container member positioned between the outer container and the inner container, The outer container includes an annular portion having an opening leading to a first space for housing the inner container, The container member has an outer cylindrical portion having a cylindrical shape, and the inner peripheral surface of the outer cylindrical portion is fitted to the outer peripheral surface of the annular portion, The inner container, forms a second space for housing cosmetics, a cosmetics housing portion housed in the first space, and an inner container flange protruding in the outer direction of the cosmetics housing portion, and a peripheral wall portion extending from the inner container flange to the first direction side which is the depth direction side of the second space and overlapping the outer peripheral surface side of the outer cylindrical portion, and comprises a container.
2. The container according to claim 1, wherein an end portion of the peripheral wall portion on the first direction side is located on the first direction side of the outer cylindrical portion.
3. The container member has an inner cylindrical portion located on the inner peripheral side of the annular portion, and there is a gap between the inner cylindrical portion and the annular portion. The container according to claim 1.
4. The container according to claim 3, wherein a length of the gap in the radial direction is 0.7 mm or more.
5. The container according to claim 1, wherein the container member extends from an end portion on the second direction side, which is opposite to the first direction side of the outer cylindrical portion, to the inner peripheral side, and has a member flange facing an end surface on the second direction side of the annular portion.
6. The container according to claim 5, wherein an annular rib is formed on a surface of the member flange on the first direction side.
7. The container according to claim 5 or 6, wherein an annular rib is formed on a surface of the member flange on the second direction side.
8. Protrusions are formed on the outer peripheral surface of the cosmetic container portion of the inner container. The inner peripheral surface of the inner cylinder portion has ribs that the protrusions climb over when the inner container rotates with respect to the container member, and on one side of the rib, a first stepped portion that restricts the movement of the protrusion to the second direction side, which is the side opposite to the first direction side. The container according to claim 3, having the above.
9. One side of the rib is the counterclockwise direction side when the container member is viewed from the second direction side. The container according to claim 8.
10. The inner peripheral surface of the inner cylinder portion faces the second direction side and has a second stepped portion that is inclined with respect to the circumferential direction. The container according to claim 8 or 9.