Tablet container
The tablet container design uses a pressure plate and elastic support to hold tablets securely when closed and release them easily when opened, addressing noise and force issues while ensuring easy access.
Patent Information
- Application Number
- JP2024103896
- Authority / Receiving Office
- JP · JP
- Patent Type
- Applications
- Current Assignee / Owner
- Filing Date
- 2024-06-27
- Publication Date
- 2026-01-16
AI Technical Summary
Tablet containers generate noise and subject tablets to external forces when carried, and fixing tablets to prevent this often makes them difficult to remove.
A tablet container design with a pressure plate supported by an elastic part, where the cap presses the pressure plate down when closed to hold tablets securely and releases them when opened, using elastic deformation to suppress noise and movement.
Suppresses external forces on tablets and noise generation while allowing easy removal by elastic displacement of the pressure plate.
Smart Images

Figure 2026005502000001_ABST
Abstract
Description
[Technical Field]
[0001] The present invention relates to a tablet container. [Background technology]
[0002] Conventionally, a tablet container has been known that includes a container body having a storage section for storing tablets, an inner lid that covers the storage section from above, and a cap that covers the inner lid from above (see, for example, Patent Document 1). [Prior art documents] [Patent documents]
[0003] [Patent Document 1] Japanese Patent Application Publication No. 2023-166781 Summary of the Invention [Problem to be solved by the invention]
[0004] In a tablet container such as that described in Patent Document 1, for example, when the tablets are carried around, the tablets may move around inside the container, causing them to collide with each other or hit the inner wall of the container, which may result in external forces acting on the tablets and noise being generated. Also, while fixing the tablets may be thought to be able to suppress the action of external forces on the tablets and the generation of noise, fixing the tablets often makes them difficult to remove.
[0005] In view of the above, an object of the present invention is to provide a tablet container that can suppress external forces acting on tablets and the generation of noise, and also make it easier to remove tablets. [Means for solving the problem]
[0006] The tablet container comprises a container body having a storage section for storing tablets, an inner lid that covers the storage section from above, and a cap that is attached to the container body and covers the inner lid from above, wherein the inner lid comprises a pressure plate that covers the storage section from above and an elastic part that supports the pressure plate so that the pressure plate can be displaced up and down, and when the cap is attached to the container body, the cap presses the pressure plate, elastically deforming the elastic part and displacing the pressure plate downward, and the pressure plate presses the tablet downward, and when the cap is removed from the container body, the pressure plate returns to its upper position due to the elasticity of the elastic part. [Effects of the Invention]
[0007] According to the present invention, it is possible to suppress external forces acting on tablets and the generation of noise in a tablet container. [Brief explanation of the drawings]
[0008] [Figure 1] 1 is a cross-sectional view showing a tablet container according to an embodiment of the present invention. [Figure 2] FIG. 2 is a plan view of the tablet container seen from above. [Figure 3] FIG. 2 is a plan view of the pressing member as seen from above. [Figure 4] FIG. [Figure 5] FIG. 2 is a plan view of the tablet container from above with the cap removed. [Figure 6] 6 is a cross-sectional view taken along the line VI-VI in FIG. 5. DETAILED DESCRIPTION OF THE INVENTION
[0009] Hereinafter, an embodiment of a tablet container according to the present invention will be described with reference to the drawings.
[0010] FIG. 1 is a cross-sectional view showing a tablet container 10 according to an embodiment of the present invention. The tablet container 10 comprises a container body 11 for storing tablets T as contents, an inner lid 12 placed inside the container body 11, and a cap 13 attached to the container body 11 and covering the inner lid 12 from above. The tablet T is not particularly limited, but may be, for example, a tablet-shaped medicine, a supplement, a confectionery, etc. In this embodiment, the tablet T is disk-shaped, and the thickness of the tablet T is smaller than the diameter of the tablet T.
[0011] The container body 11 includes a bottom wall 11a and a cylindrical body portion 11b extending upward from the peripheral edge of the bottom wall 11a. The space surrounded by the bottom wall 11a and the body portion 11b is a storage portion 11c for storing tablets T. The body 11b is cylindrical. In Fig. 1, the tablet container 10 is shown in an upright position, in which the tablet container 10 is placed upright so that an axis 11d passing through the center of the body 11b is oriented in the vertical direction. The axis of the inner lid 12 and the axis of the cap 13 are arranged coaxially with the axis 11d.
[0012] An engagement portion 11e is provided on the outer periphery of the upper portion of the body portion 11b, with which the cap 13 is engaged. The engagement portion 11e is a male thread portion. An annular groove 11f is provided on the inner periphery of the upper part of the body portion 11b, the inner periphery being recessed radially outward. The container body 11 also includes a guide portion 14 that projects upward from the bottom wall 11a and guides the tablets T.
[0013] The cap 13 includes a cap body 20 attached to the container body 11 via the body portion 11b, and a pressing member 21 attached to the lower surface of the cap body 20.
[0014] Fig. 2 is a plan view of the tablet container 10 as seen from above. In Fig. 2, the cap body 20 of the cap 13 is not shown, and only the pressing member 21 is shown. Note that Fig. 1 is a cross-sectional view taken along line II-II in Fig. 2, which also shows the cap body 20. FIG. 3 is a plan view of the pressing member 21 as seen from above.
[0015] 1 to 3, the cap body 20 (FIG. 1) includes a disk-shaped top wall portion 22 that covers the inner lid 12 from above, and a cap peripheral wall portion 23 that extends downward from the peripheral edge of the top wall portion 22.
[0016] The top wall portion 22 (Figure 1) has an inner annular rib 22a extending downward from the lower surface of the central portion of the top wall portion 22, and an outer annular rib 22b extending downward from the lower surface of the top wall portion 22 radially outside the inner annular rib 22a. The outer annular rib 22b has an annular protrusion 22c that protrudes radially inward from the inner periphery of the lower part of the outer annular rib 22b. The top wall portion 22 also includes an annular seal rib 22d that extends downward from the lower surface of the top wall portion 22 radially outside the outer annular rib 22b. The inner annular rib 22a, the outer annular rib 22b, and the seal rib 22d are concentrically shaped about the axis 11d.
[0017] The cap peripheral wall 23 is cylindrical and fits around the outer periphery of the body 11b. A cap-side engaging portion 23a that engages with the engaging portion 11e of the body 11b is provided on the inner periphery of the cap peripheral wall 23. The cap-side engaging portion 23a is a female thread that screws into the engaging portion 11e.
[0018] The pressing member 21 includes a disk-shaped base portion 25, an annular peripheral wall portion 26 that protrudes downward from the peripheral edge of the base portion 25, and a plurality of cap-side elastic portions 27 that extend downward from the base portion 25.
[0019] The base portion 25 has a hole 25a provided in the center of the base portion 25. The peripheral wall portion 26 includes an annular projection 26a that projects radially outward from the outer periphery of the peripheral wall portion 26. The pressing member 21 is attached to the underside of the top wall portion 22 of the cap body 20. In detail, the pressing member 21 is fixed to the underside of the top wall portion 22 by fitting the hole 25a onto the outer periphery of the inner annular rib 22a and the peripheral wall portion 26 onto the inner periphery of the outer annular rib 22b. Furthermore, the pressing member 21 is prevented from coming off in the vertical direction by the protrusion 22c of the outer annular rib 22b abutting against the annular protrusion 26a from below.
[0020] The cap side elastic portion 27 is provided at a position radially closer to the outer periphery of the base portion 25. A plurality of cap side elastic portions 27 are provided at equal intervals in the circumferential direction of the pressing member 21. In this embodiment, the cap side elastic portions 27 are arranged at four locations at 90° intervals in the circumferential direction.
[0021] The cap side elastic portion 27 is a strip-shaped plate that extends in an arc shape in the circumferential direction of the base portion 25 along the outer periphery of the base portion 25 in a plan view. The cap side elastic portion 27 is formed by cutting and raising a part of the base portion 25 downward. Therefore, an opening 25b is formed in the base portion 25 so as to follow the outer shape of the cap side elastic portion 27. More specifically, the cap side elastic portion 27 extends downward and in one direction in the circumferential direction of the pressing member 21 from a base end portion 27a located on the base portion 25 side. As shown in Fig. 3, in this embodiment, the four cap side elastic portions 27 extend clockwise in the circumferential direction of the pressing member 21. The tip end portions 27b of the cap side elastic portions 27 are located below the lower end of the peripheral wall portion 26. The cap side elastic portions 27 are in the form of leaf springs that are cantilevered by the base end portions 27a.
[0022] Fig. 4 is a plan view of the inner lid 12 as viewed from above. Fig. 5 is a plan view of the tablet container 10 as viewed from above with the cap 13 removed. Fig. 6 is a cross-sectional view taken along line VI-VI in Fig. 5. The inner lid 12 comprises a cylindrical wall 30 that fits into the inner circumference of the container body 11, a pressure plate 31 that is positioned inside the cylindrical wall 30 and covers the storage section 11c from above, an elastic section 32 that supports the pressure plate 31 so that the pressure plate 31 can be displaced up and down, and a gripping section 33 that extends radially inward from the top of the cylindrical wall 30.
[0023] The cylindrical wall 30 has a cylindrical shape that fits along the inner periphery of the container body 11. On the outer periphery of the cylindrical wall 30, an annular engaging portion 30a (FIG. 6) that protrudes radially outward is provided.
[0024] The pressure plate 31 is a disk-shaped plate placed inside the cylindrical wall 30. The outer diameter of the pressure plate 31 is smaller than the inner diameter of the cylindrical wall 30, and an annular gap 34 is formed in the radial direction between the outer periphery 31a of the pressure plate 31 and the inner periphery of the cylindrical wall 30. In the radial direction of the pressure plate 31, the size of the gap 34 is smaller than the diameter of the tablet T. As shown in FIG. 1, the presser plate 31 presses the tablet T downward, and holds the tablet T between the presser plate 31 and the bottom wall 11a.
[0025] 4 to 6, the peripheral edge of the pressing plate 31 is provided with an arc-shaped cutout portion 31b formed by cutting the pressing plate 31 radially inward from the outer periphery 31a. Further, the presser plate 31 has a second cutout portion 31c formed by cutting the presser plate 31 radially inward from the outer periphery 31a on the opposite side to the cutout portion 31b in plan view. The presser plate 31 has a plurality of protrusions 31d that protrude downward from the lower surface of the presser plate 31. The protrusions 31d are provided over a wide range from the center of the presser plate 31 toward the outer periphery 31a.
[0026] The elastic portion 32 is a strip-shaped plate that connects the outer periphery 31a of the pressing plate 31 and the inner periphery of the cylindrical wall 30, and is disposed in the gap . A plurality of elastic portions 32 are provided at approximately equal intervals in the circumferential direction of the inner cover 12. In this embodiment, the elastic portions 32 are arranged at four locations at approximately 90° intervals in the circumferential direction. The elastic portions 32 are provided at positions in the circumferential direction that avoid the notch portion 31b and the second notch portion 31c.
[0027] The elastic portion 32 extends along the outer periphery 31a of the pressing plate 31 longer in the circumferential direction of the inner lid 12 than in the radial direction. In detail, referring to Figure 4, the elastic portion 32 includes a circumferential extending portion 32a that extends circumferentially along the outer periphery 31a, an inner connecting portion 32b that extends radially inward from one end of the circumferential extending portion 32a and is connected to the outer periphery 31a, and an outer connecting portion 32c that extends radially outward from the other end of the circumferential extending portion 32a and is connected to the inner periphery of the cylindrical wall 30.
[0028] The elastic portion 32 elastically supports the presser plate 31. When no external force is acting on the presser plate 31 as shown in Figure 6, the outer connection portion 32c (Figure 4) of the elastic portion 32 and the presser plate 31 are at the same height, and the presser plate 31 and the elastic portion 32 are flush with each other. When the presser plate 31 is pressed from above as shown in Figure 1, the elastic portion 32 elastically deforms downward, and the presser plate 31 is displaced downward.
[0029] The gripping portion 33 is provided on the opposite side of the cutout portion 31b in a plan view. The gripping portion 33 includes an upward extending portion 33a extending upward and radially inward from the upper portion of the cylindrical wall 30, and a gripping plate portion 33b extending radially inward from the upper end of the upward extending portion 33a. The gripping plate portion 33b is located above the pressing plate 31 and covers the second cutout portion 31c from above in a plan view.
[0030] The inner lid 12 is attached to the container body 11 by fitting the cylindrical wall 30 to the inner periphery of the container body 11. The inner lid 12 is prevented from coming off in the vertical direction by engaging the engagement portion 30a with the annular groove 11f of the container body 11.
[0031] 5 and 6, the guide portion 14 of the container body 11 includes a pair of outlet-side guide walls 14a extending from the inner periphery of the body portion 11b toward the center of the body portion 11b in the plan view of FIG. 5, and a pair of inclined walls 14b whose spacing increases from the end of the outlet-side guide wall 14a toward the center of the body portion 11b. The distance between the pair of outlet-side guide walls 14a is slightly larger than the diameter of the tablet T.
[0032] The inner lid 12 is disposed above the guide portion 14. The inner lid 12 is fixed to the container body 11 so that the notch portion 31b overlaps between the pair of outlet-side guide walls 14a. In the gap 34, a portion 34a communicating with the cutout portion 31b and the cutout portion 31b are joined together to form an outlet 35 that allows the tablet T to be taken out of the storage portion 11c. The opening diameter of the outlet 35 is larger than the diameter of the tablet T. Note that the cutout portion 31b may be made larger than the diameter of the tablet T, so that the tablet T can be taken out by the cutout portion 31b alone.
[0033] Here, an example of how to use the tablet container 10 will be described. 1 and 2, in the closed state where the cap 13 is attached to the container body 11 by screwing onto the engaging portion 11e, the lower surface of the top wall portion 22 abuts against the upper surface of the body portion 11b, and the outer periphery of the seal rib 22d abuts against the upper part of the inner periphery of the body portion 11b. Furthermore, the lower surface of the seal rib 22d abuts against the upper surface of the cylindrical wall 30 of the inner lid 12. This improves the sealing performance of the tablet container 10.
[0034] 1 and 2, the cap 13 presses the presser plate 31 with the tip 27b of the cap-side elastic portion 27, elastically deforming the elastic portion 32 downward and displacing the presser plate 31 downward. In this state, the presser plate 31 presses the tablet T downward, and the tablet T is sandwiched and held between the lower surface of the presser plate 31 and the bottom wall 11a. 2, all tablets T in the storage section 11c are covered by the presser plate 31 in a plan view and are held between the presser plate 31 and the bottom wall 11a. This prevents the tablets T from moving within the storage section 11c, and prevents the tablets T from colliding with each other or hitting the inner wall of the storage section 11c. This prevents the tablets T from being subjected to external force and from making noise. Since a plurality of protrusions 31d are provided on the underside of the pressing plate 31, the pressing plate 31 can be easily brought into contact with a plurality of tablets T, and the holding force of this contact portion can be increased, so that the tablets T can be held well.
[0035] 1 and 2, the cap 13 presses the pressing plate 31 downward by the reaction force of the cap-side elastic portion 27 that abuts against the pressing plate 31 and is elastically deformed upward. This allows the presser plate 31 to press the tablet T downward with an appropriate amount of force, thereby enabling good holding of the tablet T. Furthermore, dimensional errors such as the vertical position of the presser plate 31 and the thickness of the tablet T can be absorbed by the flexure of the presser plate 31, making it easy to control the dimensions. The elastic force of the cap side elastic portion 27 is set to be larger than the elastic force of the elastic portion 32 so that the pressing plate 31 can be displaced downward against the elastic force (restoring force) of the elastic portion 32 of the inner lid 12. More specifically, the elastic force of the cap side elastic portion 27 is set to be larger than the elastic force of the elastic portion 32 so that the pressing plate 31 displaced downward can abut against the tablet T.
[0036] 5 and 6, when the cap 13 (FIG. 1) is rotated relative to the container body 11 to unscrew the engagement portion 11e, the cap 13 is removed from the container body 11 and placed in an open state. In the open state, the pressure plate 31 is restored to an upper position by the elasticity of the elastic portion 32, and assumes the state shown in Fig. 6. In the open state, the pressure plate 31 is spaced upward from the upper surface of the tablet T, the tablet T is released from the pressure plate 31, and the tablet T becomes movable. In this state, when the user tilts the container body 11 so that the outlet 35 is positioned downward, the tablet T moves downward along the guide portion 14 and moves to the outlet 35. The user can then take out the tablet T from the outlet 35.
[0037] When refilling the storage section 11c with tablets T, the user grips the gripping portion 33 in the open state and pulls the inner lid 12 upward. This releases the engagement between the engaging portion 30a and the annular groove 11f, and the inner lid 12 is removed from the container body 11. After refilling the storage section 11c with tablets T through the top opening of the container body 11, the user reattaches the inner lid 12 to the container body 11.
[0038] 6, in the open state, the distance D between the lower surface of the presser plate 31 and the upper surface of the bottom wall 11a of the container body 11 is smaller than twice the thickness t of the tablet T. This prevents other tablets T from being caught between the upper surface of the tablet T and the lower surface of the presser plate 31 in the open state.
[0039] When switching from the open state to the closed state, the user tilts the container body 11 so that the outlet 35 is positioned upward, and moves the tablets T that were located at the outlet 35 to directly below the presser plate 31. By screwing the cap 13 onto the container body 11 in this state, the presser plate 31 is pressed downward by the cap-side elastic portion 27, and all of the tablets T in the storage section 11c are held by the presser plate 31.
[0040] As described above, according to the embodiment to which the present invention is applied, the tablet container 10 comprises a container body 11 having a storage section 11c for storing tablets T, an inner lid 12 that covers the storage section 11c from above, and a cap 13 that is attached to the container body 11 and covers the inner lid 12 from above. The inner lid 12 comprises a pressure plate 31 that covers the storage section 11c from above, and an elastic portion 32 that supports the pressure plate 31 so that the pressure plate 31 can be displaced up and down. When the cap 13 is attached to the container body 11, the cap 13 presses the pressure plate 31, elastically deforming the elastic portion 32 and displacing the pressure plate 31 downward, and the pressure plate 31 presses the tablets T downward. When the cap 13 is removed from the container body 11, the pressure plate 31 is restored to its upper position by the elasticity of the elastic portion 32. According to this configuration, when the cap 13 is attached to the container body 11, the cap 13 presses the pressure plate 31, elastically deforming the elastic portion 32 and displacing the pressure plate 31 downward, and the pressure plate 31 presses the tablet T downward, suppressing movement of the tablet T. This suppresses external forces acting on the tablet T and the generation of noise. Furthermore, when the cap 13 is removed from the container body 11, the pressure plate 31 returns to its upper position due to the elasticity of the elastic portion 32, and the tablet T is released from the pressure plate 31, allowing the tablet T to move, making it easy to take out the tablet T.
[0041] The cap 13 also includes a top wall portion 22 that covers the inner lid 12 from above, and a cap-side elastic portion 27 that extends downward from the top wall portion 22. The cap 13 presses the pressing plate 31 downward by the reaction force of the cap-side elastic portion 27 that abuts against the pressing plate 31 and elastically deforms upward. According to this configuration, the cap 13 presses the pressure plate 31 downward by the reaction force of the elastically deformed cap side elastic portion 27, so that the tablet T can be pressed downward by the pressure plate 31 with an appropriate amount of force, and the tablet T can be held in place well.
[0042] The elastic force of the cap-side elastic portion is set to be greater than the elastic force of the elastic portion. According to this configuration, the pressing plate 31 can be displaced downward by the cap-side elastic portion 27 against the elastic force of the elastic portion 32 of the inner lid 12, and the tablet T can be held by the pressing plate 31 in a good condition.
[0043] In addition, the inner lid 12 has a cylindrical wall 30 that fits into the inner circumference of the container body 11, and the pressure plate 31 is arranged inside the cylindrical wall 30.The elastic portion 32 is plate-shaped and connects the outer circumference 31a of the pressure plate 31 to the cylindrical wall 30, and multiple elastic portions 32 are provided at intervals around the circumference of the inner lid 12. According to this configuration, the inner lid 12 having the elastic portion 32 can be easily attached to the container body 11 via the cylindrical wall 30. Also, a large area of the pressure plate 31 can be ensured, and multiple tablets T can be well held by the pressure plate 31. Furthermore, the elastic portion 32 can be efficiently arranged by utilizing the gap 34 between the outer periphery 31a of the pressure plate 31 and the cylindrical wall 30.
[0044] Furthermore, the elastic portion 32 extends along the outer periphery 31a longer in the circumferential direction of the inner lid 12 than in the radial direction. According to this configuration, the length of the elastic portion 32 can be increased by utilizing the circumferential gap 34 on the outside of the outer periphery 31a of the presser plate 31, thereby ensuring a large amount of elastic deformation of the elastic portion 32. Therefore, a large amount of vertical displacement of the presser plate 31 can be ensured, and the presser plate 31 can appropriately switch between holding and releasing the tablet T.
[0045] Further, the pressing plate 31 is provided at its peripheral edge with an outlet 35 through which the tablet T can be taken out from the storage section 11c. According to this configuration, the tablets T can be taken out from the storage section 11c with a simple structure in which the take-out port 35 is provided in the presser plate 31. In addition, the take-out port 35 can be provided while minimizing the effect that the take-out port 35 has on the holding of the tablets T by the presser plate 31.
[0046] Furthermore, when the cap 13 is removed from the container body 11, the distance D between the lower surface of the pressing plate 31 and the upper surface of the bottom wall 11a of the container body 11 is smaller than twice the thickness t of the tablet T. According to this configuration, the tablets T are prevented from overlapping in the thickness direction of the tablets T between the pressure plate 31 and the bottom wall 11a of the container body 11, so that the pressure plate 31 can be operated appropriately and the tablets T can be held well by the pressure plate 31.
[0047] Although one embodiment of the present invention has been described above, the present invention is not limited to the specific embodiment, and unless otherwise limited in the above description, various modifications and variations are possible within the spirit and scope of the present invention as defined in the claims. For example, the configurations of the above-described embodiment may be added or deleted as appropriate, and the configurations of one embodiment may be incorporated into other embodiments. Furthermore, the effects of the above-described embodiment are merely examples of the effects resulting from the present invention, and do not mean that the effects of the present invention are limited to the above-described effects. In the above embodiment, the cap 13 is described as pressing the presser plate 31 downward by the reaction force of the elastically deformed cap-side elastic portion 27. However, the present invention is not limited to this. For example, the cap 13 may have a pressing portion instead of the cap-side elastic portion 27, and this pressing portion may be one that is substantially not elastically deformed when pressing the presser plate 31 downward. [Explanation of symbols]
[0048] 10: Pill container 11: Container body 11a: Bottom wall 11b: Torso 11c: Storage area 11d: Axis line 11e: Engagement part 11f: Annular groove 12: Inner lid 13: Cap 14: Guide section 14a: Exit guide wall 14b: Slanted wall 20: Cap body 21: Pressing member 22: Ceiling wall 22a: Inner annular rib 22b:Outer annular rib 22c: Protrusion 22d: Seal rib 23: Cap peripheral wall 23a: Cap side engagement part 25: Base section 25a: hole 25b:Aperture 26: Peripheral wall part 26a: Annular protrusion 27: Cap side elastic part 27a: Proximal end 27b:Tip 30: Cylindrical wall 30a: Engagement part 31: Retaining plate 31a: Outer circumference 31b: Notch 31c: Second notch 31d: Protrusion 32: Elastic part 32a: Circumferential extension part 32b: Inner connection part 32c:Outside connection part 33: Grip part 33a: Upper extension part 33b: Grip plate part 34: Gap 34a:part 35: Outlet D: Spacing T: Tablet t: thickness
Claims
1. A tablet container comprising: a container body having a storage section for storing tablets; an inner lid that covers the storage section from above; and a cap that is attached to the container body and covers the inner lid from above, The inner lid includes a presser plate that covers the storage section from above, and an elastic portion that supports the presser plate so that the presser plate can be displaced up and down, When the cap is attached to the container body, the cap presses the pressing plate to elastically deform the elastic portion, displacing the pressing plate downward, and the pressing plate presses the tablet downward, When the cap is removed from the container body, the pressing plate returns to its upper position due to the elasticity of the elastic portion.
2. The cap includes a top wall portion that covers the inner lid from above, and a cap-side elastic portion that extends downward from the top wall portion, 2. The tablet container according to claim 1, wherein the cap presses the pressing plate downward by a reaction force of the cap-side elastic portion that is in contact with the pressing plate and elastically deformed upward.
3. 3. The tablet container according to claim 2, wherein the elastic force of the cap-side elastic portion is set to be greater than the elastic force of the elastic portion.
4. the inner lid has a cylindrical wall that fits onto the inner periphery of the container body, the pressing plate is disposed inside the cylindrical wall, The tablet container according to claim 1, wherein the elastic portion is a plate-like portion connecting the outer periphery of the pressing plate and the cylindrical wall, and a plurality of the elastic portions are provided at intervals in the circumferential direction of the inner lid.
5. 5. The tablet container according to claim 4, wherein the elastic portion extends along the outer periphery longer in the circumferential direction than in the radial direction of the inner lid.
6. 2. The tablet container according to claim 1, wherein a removal opening for removing the tablet from the storage section is provided on the peripheral edge of the pressing plate.
7. 2. The tablet container according to claim 1, wherein when the cap is removed from the container body, the distance between the lower surface of the pressing plate and the upper surface of the bottom wall of the container body is smaller than twice the thickness of the tablet.
Citation Information
Patent Citations
Tablet container
JP2023166781A