Dispensing container with cutter and solid material storage container

The dispensing container with a cutter employs a screw projection, helical shaft, and rotation restricting member to prevent leakage and simplify manufacturing, addressing the issues of conventional designs.

JP7679574B2Active Publication Date: 2025-05-20SHISEIDO CO LTD
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Patent Information

Application Number
JP2022515449
Authority / Receiving Office
JP · JP
Patent Type
Patents
Current Assignee / Owner
Priority Date
2020-04-17
Filing Date
2021-04-16
Publication Date
2025-05-20
Estimated Expiration
2041-04-16

AI Technical Summary

Technical Problem

Conventional dispensing containers with cutters face complications in manufacturing due to the formation of spiral grooves on the inner peripheral surface and have gaps that can lead to leakage when exposed to high temperatures or turned sideways.

Method used

A dispensing container design featuring a screw projection on the outer peripheral surface, a helical shaft with a helical groove, a cutter-equipped lid, a lifting tray, and a rotation restricting member that prevents rotation between components, ensuring secure engagement and preventing leakage.

Benefits of technology

The design prevents leakage even when the container is placed sideways and simplifies the manufacturing process by eliminating the need for complex grooves on the inner surface.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The present invention comprises: an accommodation part 1 that has a side surface having a screw protrusion 16 formed around an upper end of an outer peripheral surface thereof and a bottom surface and accommodates a solid substance; a spiral shaft 2 that has a spiral groove 21 formed on the outer peripheral surface thereof; a cutter-attached lid 5 in which a cutter 52 for cutting the solid substance is provided below a top surface and which has the top surface having a discharge port 53 formed therein from which the solid substance cut by the cutter 52 is cut out, and a peripheral wall having a screw protrusion 57 formed on the inner peripheral surface thereof; a raising plate 3 disposed to be raised inside the accommodation part 1; and a rotation regulation member 4 that regulates the rotation of the raising plate 3 with respect to the spiral shaft 2, wherein the raising plate 3 includes a central screw hole 31 through which the spiral shaft 2 is inserted and partially screwed and insertion holes 34-37 which are provided outside the screw hole 31 and through which the rotation regulation member 4 is inserted, and when the rotation regulation member 4 and the spiral shaft 2 are rotated relative to each other in a predetermined direction, the raising plate 3 can be raised to cut an upper end of the solid substance, the peripheral wall of the cutter-attached lid 5 covers a part of the upper end of the side surface of the accommodation part 1, and the screw protrusions (57, 16) are screw-coupled to each other.
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Description

[Technical field]

[0001] The present invention relates to a dispensing container with a cutter and a solid substance-containing container that serves as a refill for the dispensing container with a cutter. [Background technology]

[0002] Dispensing containers that are configured to dispense a solid substance stored in advance for use are in widespread use. Furthermore, dispensing containers with a cutting function that has a function of cutting the dispensed solid substance to an appropriate size have been proposed.

[0003] For example, Patent Document 1 proposes a dispensing container with a cutter, which is configured such that by rotating a rotating lid equipped with a cutter and the container body relative to each other, as the rotating lid rotates, a rising bottom screwed onto the inner circumference of the spiral tube of the container body formed integrally with the rotating lid rises in a rotating state relative to the spiral tube. [Prior art documents] [Patent documents]

[0004] [Patent Document 1] Patent No. 4868400 Summary of the Invention [Problem to be solved by the invention]

[0005] In conventional dispensing containers, the manufacturing process is complicated because a spiral groove is formed on the inner peripheral surface.

[0006] In addition, in conventional dispensing containers, the rotating lid and the container rotate relative to each other to scrape off the contents, and the engagement between the rotating lid and the container is made by a ring-shaped protrusion that rides over each other, leaving a gap. Therefore, if left at high temperatures, the solid material melts, and if the container is turned sideways, the contents may leak out through the gap.

[0007] In view of the above circumstances, the present invention has an object to provide a dispensing container with a cutter that can prevent the contents from leaking even when the container is placed sideways while preventing the manufacturing process from becoming complicated. [Means for solving the problem]

[0008] In order to solve the above problems, in one aspect of the present invention, a container having a side surface on which a screw projection is formed around an upper end of an outer peripheral surface, and a bottom surface, the container containing a solid substance; a helical shaft having a helical groove formed on an outer circumferential surface; a cutter-equipped lid having a top surface provided with a cutter for cutting solid materials below the top surface, the top surface being formed with an outlet through which the solid materials cut by the cutter are scraped out, and a peripheral wall having a screw projection formed on an inner peripheral surface; A lifting tray arranged to be liftable inside the storage section; A rotation restricting member that restricts the rotation of the lifting tray relative to the helical shaft, The lifting tray is formed with a central screw hole through which the helical shaft is inserted and partially screwed, and an insertion hole provided outside the screw hole and through which the rotation restricting member is inserted, When the rotation restricting member and the helical shaft are rotated relative to each other in a predetermined direction, the lifting plate rises and can cut the upper end of the solid material, The peripheral wall of the cutter-equipped lid covers a part of the periphery of the upper end of the side surface of the storage part, and the screw protrusions are screw-engaged with each other. A dispenser with a cutter is provided. Effect of the Invention

[0009] According to one aspect, in a dispensing container with a cutter, it is possible to prevent the manufacturing process from becoming complicated, and to prevent the contents from leaking out even when the container is placed sideways. [Brief description of the drawings]

[0010] [Figure 1] 1 is an overall view of a dispensing container with a cutter and a cap according to a first embodiment of the present invention. [Diagram 2] FIG. 2 is a cross-sectional perspective view of the dispensing container with a cutter shown in FIG. 1. [Diagram 3] 2 is an exploded perspective view of the helical shaft, the rotation restricting member, and the lifting tray of FIG. 1. [Figure 4] FIG. 2 is a perspective view of the helical shaft, the rotation restricting member, and the lifting tray of FIG. 1 assembled together. [Diagram 5] FIG. 2 is a cross-sectional view of the dispensing container with cutter in FIG. 1 disassembled into individual rotors. [Figure 6] 2 is a cross-sectional view of the dispensing container with a cutter in FIG. 1 disassembled into a refill and a main body. [Figure 7] An explanatory diagram of attaching a lid with a cutter to a solid material storage container. [Figure 8] An explanatory diagram of attaching an outer case to a solid material storage container equipped with a lid with a cutter. [Figure 9] FIG. 6 is a half cross-sectional view of a dispensing container with a cutter and an outer cover according to a second embodiment of the present invention. [Figure 10] FIG. 11 is an explanatory diagram of attaching an outer lid to a dispensing container with a cutter according to a second embodiment. [Figure 11] 4A to 4C are bottom views of a rotation restricting member and a lifting tray according to the first embodiment, modified example 1, and modified example 2 of the present invention. [Figure 12] FIG. 11 is a bottom view of a rotation restricting member and a lifting tray according to Modification 3 of the present invention. DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS

[0011] DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS Hereinafter, an embodiment of the present invention will be described with reference to the drawings. In the following drawings, the same components are denoted by the same reference numerals, and duplicated explanations may be omitted.

[0012] The present invention relates to a dispensing container with a cutter (a dispensing container with a cutting function) and a solid substance storage container which serves as a refill for the dispensing container with a cutter.

[0013] The solid substance refers to solid or semi-solid cosmetics such as particularly hard hair sticks, hair wax, solid beauty essences (e.g., those with a similar hardness to stick beauty essences), solid cleansing agents, solid soaps, or foods such as cheese, butter, etc. In the present invention, the solid substance is set by filling the storage section in advance, filling the storage section by replacing it as a refill (refill container), or filling the storage section with the replaced solid material later.

[0014] <Overall Overview> First, the overall configuration of a dispensing container with a cutter (a dispensing container with a cutting function) 100 according to a first embodiment of the present invention will be described with reference to Figs. 1 and 2.

[0015] Fig. 1 is an external view of a dispensing container 100 with a cutter according to a first embodiment of the present invention. Fig. 2 is a cross-sectional perspective view of the dispensing container 100 with a cutter according to the first embodiment. The cross-sectional view of Fig. 2 is a cross-sectional view of the X plane indicated by the dashed dotted line in Fig. 1.

[0016] 1 and 2, a dispensing container 100 with a cutter of this embodiment includes a storage section 1, a helical shaft 2, a lifting tray 3, a rotation restricting member 4, a lid 5 with a cutter, and an outer case 6.

[0017] In the configuration of the present invention, the solid contents are dispensed by rotating the outer case 6 relative to the lid 5 with a cutter.

[0018] With reference to FIG. 1, a dispensing container 100 with a cutter may be provided with an outer lid (cap) 8 whose top can be opened and closed.

[0019] 2, the bottomed storage unit 1 is a bottomed tube that is open at the top and stores a solid substance. Storage unit 1 has a circular bottom surface 11 and a cylindrical peripheral wall 14. A through hole 12 is formed in the center of bottom surface 11, and a hanging tube 13 is provided that hangs down from through hole 12.

[0020] The upper end of the peripheral wall 14, which is the side surface, is an upper thin-walled portion 15 that is thinner on the outside than other portions, and a screw projection 16 is formed on the outer circumferential surface of the upper thin-walled portion 15.

[0021] The helical shaft 2 is a shaft portion provided in the center and extending in the vertical direction, and has a helical groove 21 formed on its outer circumferential surface. The upper end portion of the helical shaft 2 has a cross-shaped groove (cross hole, fitting recess) 22 formed therein.

[0022] In the usage state shown in Figure 2, the cross-shaped groove 22 at the upper end of the helical shaft 2 engages with the cross-shaped mating protrusion 54 of the cutter-equipped lid 5, thereby restricting rotation, and the helical shaft 2 rotates together with the cutter-equipped lid 5 when the cutter-equipped lid 5 rotates relative to the outer case 6.

[0023] The lifting tray 3 is a lifting base (lifting stage) on which a solid substance is placed. The lifting tray 3 is screwed onto the helical shaft 2 while its rotation is restricted by a rotation restricting member 4. Therefore, the lifting tray 3 can be lifted relative to the helical shaft 2 by the relative rotation of the rotation restricting member 4 and the helical shaft 2.

[0024] The rotation regulating member 4 extends in the vertical direction, surrounds a portion of the helical shaft 2, and is inserted into the lifting plate 3 to rotatably support the helical shaft 2 and regulate the rotation of the lifting plate 3, thereby enabling the lifting plate 3 to be raised and lowered in the vertical direction.

[0025] The detailed configurations of the helical shaft 2, the lifting tray 3, and the rotation restricting member 4 will be described later with reference to FIGS.

[0026] 1, the cutter-equipped lid 5, which is a lid for scraping solid material, has a top surface 51 and side surfaces 56 (see FIG. 7). A cutter 52 (see FIG. 7) for cutting solid material is provided on the bottom surface of the top surface 51. A discharge port 53, which is a slit hole through which the solid material is scraped out, is formed so as to penetrate the top surface 51. Furthermore, a fitting protrusion 54 is formed in the center of the bottom surface of the top surface 51. A top surface protrusion 55 is formed on the upper surface of the top surface 51, and six discharge ports 53 are formed in the portion raised by the top surface protrusion 55.

[0027] 2, a fitting protrusion 54 is formed in the center of the lower surface of the top surface 51. A screw protrusion 57 is formed on the inner peripheral surface of the side surface 56 of the cutter-equipped lid 5.

[0028] As shown in FIG. 2, the screw projection 57 of the cutter-equipped lid 5 is screw-engaged with the screw projection 16 of the container 1, thereby restricting the rotation of the cutter-equipped lid 5 and the container 1.

[0029] The outer case 6 in this embodiment is an example of an operating member. The outer case 6 has a bottom surface (bottom plate) 61 and a peripheral wall 64 connected to the bottom surface 61. When the storage unit 1 and the lid 5 with cutter are screw-engaged, a part of the storage unit 1 and the lid 5 with cutter are stored inside the outer case 6.

[0030] A cylindrical protrusion 62 is provided at the center of the bottom surface 61 of the outer case 6. The upper end of the peripheral wall 64 forms an upper end thin-walled portion 65 that is thin on the outside, and a threaded protrusion 67 is formed on the outer periphery of the upper end thin-walled portion 65, and an inner peripheral protrusion 66 (see FIG. 6), which is an undercut protrusion, is provided at the upper end of the inner periphery.

[0031] The lower end engagement shaft 48 of the rotation restricting member 4 passes through a through hole 12 in the bottom surface 11 of the housing portion 1 and engages with a cylindrical projection 62 on the bottom surface 61 of the outer case 6. Details will be described later with reference to Figs.

[0032] The outer case 6 is rotatably engaged with the cutter-equipped lid 5 .

[0033] <Internal structure> Next, structures of the helical shaft 2, the lifting tray 3, and the rotation restricting member 4 inside the storage unit 1 according to the first embodiment will be described with reference to Fig. 3 and Fig. 4. Fig. 3 is an exploded perspective view of the helical shaft 2, the rotation restricting member 4, and the lifting tray 3 as viewed from above. Fig. 4 is a bottom perspective view of the helical shaft 2, the rotation restricting member 4, and the lifting tray 3 as assembled as viewed from below.

[0034] 3, a region where the helical groove 21 is not formed is provided near the upper end of the helical shaft 2, and a cross-shaped groove 22 is formed on the lower side, inside the upper end, as a fitting recess.

[0035] 3 shows an example in which the upper end of the helical shaft 2 has a cross-shaped groove 22, but the groove at the upper end of the helical shaft 2 may have another shape as long as it functions as a rotation stopper when engaging with the fitting protrusion 54 and can be formed inside the cylinder. The shape of the groove at the upper end of the helical shaft 2 may be, for example, a polygonal shape such as a square or pentagon, a pentagram or hexagram, a circle with a line pierced through it, a gear with jagged edges, a knurled shape, a spline shape, etc.

[0036] The lifting tray 3 has a tray body 30 formed with a screw hole 31, two arch-shaped holes 34 and 35, and linear holes (slits) 36 and 37.

[0037] In the lifting tray 3, the central screw hole 31 is defined by helical inner walls 32, 33, which are partial inner walls on which helical protrusions are formed. The arched holes 34, 35 are formed continuously from the portion of the central screw hole 31 where there are no helical inner walls 32, 33. The linear holes 36, 37 are formed so as to extend outward from the outer periphery of the arched holes 34, 35.

[0038] The rotation restricting member 4 has two curved extensions 41, 42, two blade members 43, 44, an upper end cylindrical beam 45, lower end connecting portions 46, 47 (see FIG. 4), and a lower end engagement shaft .

[0039] The two curved extensions 41, 42 extend in the vertical direction and are configured as arcs with the same circular cross section so as to surround the outer periphery of the helical shaft 2. That is, the two curved extensions 41, 42 are configured as vertically split partial cylinders that sandwich a part of the outer periphery of the helical shaft 2 without contacting it, at the same distance from the outer periphery of the helical shaft 2. The upper end cylindrical beam 45 is a member that connects the two curved extensions 41, 42 at their upper ends into a cylindrical shape and reinforces them.

[0040] The two blade members 43 and 44 extend outward from the outer surfaces of the curved extensions 41 and 42 and the outer surface of the upper cylindrical beam 45 .

[0041] The lower end engagement shaft 48 extends downward through the center of the arc of the curved extension portions 41, 42. The lower end connection portions 46, 47 are bow-shaped members that connect the lower ends of the curved extension portions 41, 42 and the lower end engagement shaft 48.

[0042] Referring to Figure 4, in the assembled state, the helical shaft 2 is inserted between the curved extension portions 41, 42 of the rotation restricting member 4, and the helical groove 21 of the helical shaft 2 is exposed from the slit-shaped open spaces S1, S2 between the two curved extension portions 41, 42.

[0043] The curved extensions 41, 42 and lower end connecting portions 46, 47 of the rotation restriction member 4 are inserted into the arched holes 34, 35 of the lifting tray 3, and the blade members 43, 44 are inserted into the linear holes 36, 37. In the lifting tray 3, the arched holes 34, 35 and the linear holes 36, 37 serve as insertion holes used to restrict rotation.

[0044] In this state, the helical protrusions of the helical inner walls 32, 33 that define the central screw hole 31 engage with the helical groove 21 of the helical shaft 2 exposed from the slit-like open spaces S1, S2.

[0045] By this engagement, the lifting plate 3 is screwed onto the helical shaft 2 while its rotation is restricted by the rotation restricting member 4, and as the rotation restricting member 4 and the helical shaft 2 rotate relative to each other, the lifting plate 3 can be lifted relative to the helical shaft 2.

[0046] 4, the lower end engagement shaft 48, which is the lower end engagement portion of the rotation restricting member 4, has a polygonal prism shape. The lower end engagement shaft 48 having a polygonal prism shape in this manner engages with the hollow portion 63 (see FIG. 6) of the cylindrical protrusion 62 of the outer case 6 to non-rotatably engage therewith, thereby restricting the rotation of the rotation restricting member 4 relative to the outer case 6.

[0047] Here, the slit-like open spaces S1, S2 extending in the axial direction and used for engagement are the remaining portions not provided with the curved extensions 41, 42 in the cylindrical space surrounding the helical axis 2 at a distance. The angles of the open spaces S1, S2 with respect to the center are substantially equal to the angles at which the helical inner walls 32, 33 of the lifting tray 3 are provided.

[0048] Therefore, it is preferable that the two open spaces S1, S2 in total open at an angle of, for example, about 60° to 300°. Also, in consideration of the balance between the strength, the fixing force of the contents, and the frequency of use of the spiral inner walls 32, 33, it is even more preferable that the two open spaces S1, S2 in total open at an angle of, for example, about 120° to 240°.

[0049] <Rotating body> Fig. 5 is a cross-sectional view in which the rotors of the dispensing container with a cutter in Fig. 1 are disassembled. The cross-sectional view in Fig. 5 corresponds to the cross-sectional view of plane Z in Fig. 1.

[0050] The fitting protrusion 54 of the cutter-equipped lid 5 engages with the cross-shaped groove 22, which is a fitting groove at the upper end of the helical shaft 2, whereby the rotation of the helical shaft 2 with respect to the cutter-equipped lid 5 is restricted.

[0051] In addition, the lid 5 with cutter and the storage unit 1 are firmly connected to each other so as not to rotate by engaging the screw protrusions (57, 16) with each other. That is, the lid 5 with cutter is attached to the storage unit 1 so that its rotation is restricted.

[0052] With this configuration, the rotation of the container 1 and the helical shaft 2 is restricted relative to the cutter-equipped lid 5. Therefore, the container 1, the helical shaft 2, and the cutter-equipped lid 5 shown in FIG.

[0053] On the other hand, as described above, the rotation of the lifting tray 3 is restricted relative to the rotation-restricting member 4 by inserting the curved extension portions 41, 42 of the rotation-restricting member 4 into the arched holes 34, 35 of the lifting tray 3 and inserting the blade members 43, 44 into the linear holes 36, 37.

[0054] Furthermore, in this embodiment, the lower end engagement shaft 48 located at the lower end of the rotation restricting member 4 engages with a cylindrical protrusion 62 which is the bottom surface engagement portion of the outer case 6 and is restricted in rotation.

[0055] With this configuration, the rotation restricting member 4 fixes the lifting tray 3 to the outer case 6 side so as not to rotate when the outer case 6 and the cutter-equipped lid 5 rotate relatively to each other.

[0056] Further, the housing portion 1 and the outer case 6 housing a part of the cutter-equipped lid 5 are rotatably engaged with the cutter-equipped lid 5. Therefore, the lifting tray 3, the rotation restricting member 4, and the outer case 6 move integrally as a rotating body B.

[0057] Therefore, in this embodiment, by rotating the cutter-equipped lid 5 and the outer case 6 relatively in a predetermined direction, the lifting tray 3 can be lifted little by little, and the upper end of the solid material can be cut thinly and uniformly (into a thin plate shape).

[0058] The solid material can be scraped out in various shapes by varying the shape of the solid material and the shapes of cutter 52 and discharge port 53. For example, by making discharge port 53 a substantially circular small hole and cutter 52 a shape curved downward, the solid material can be scraped out in the form of a string (see FIG. 7).

[0059] In this way, after the thread engagement, the lid with cutter 5 of the present invention rotates together with the storage part 1. Therefore, no play space for rotation is required between the lid with cutter 5 and the storage part 1, and the thread engagement seals the inner peripheral surface of the lid with cutter 5 and the outer peripheral surface of the storage part 1. This engagement configuration makes it possible to prevent leakage of the contents even if the dispensing container with cutter 100 of the present invention is placed on its side and left at a high temperature that would melt part of the solid material contained therein.

[0060] Furthermore, in the present invention, the component on which the helical groove for lifting the lifting tray 3 is formed is the central helical shaft 2. The helical shaft has a helical groove formed on its outer peripheral surface, and a helix is ​​formed on the outer peripheral surface by being sandwiched between the outer dies, making it easier to manufacture than a configuration in which a helical groove is formed on the inner peripheral surface using a nest.

[0061] <Refill separation> 6 is a cross-sectional view of the dispensing container with a cutter disassembled into a solid substance storage container (refill) α and a housing unit β. The cross section of FIG. 6 is an exploded view of the cross section of plane Z of FIG.

[0062] As shown in Figs. 6 to 8, the solid substance storage container α is a refill (container) that can be replaced (detached and replaced) with respect to the outer case 6 and the lid 5 with cutter together with the solid substance.

[0063] The refill solid substance storage container α includes a storage section 1, a helical shaft 2, a lifting tray 3, and a rotation restricting member 4. In addition, on the bottom surface 11 of the storage section 1, a portion extending from a peripheral wall 14 serves as a peripheral lip 17, which is located lower than other portions.

[0064] On the other hand, the housing unit β has a cover 5 with a cutter, an outer case 6, and an outer lid 8. The housing unit β is reused after replacing the refill.

[0065] The container 1, the spiral shaft 2, the lifting tray 3, and the rotation restricting member 4 on the main bottle side of the housing unit β can be replaced with a refill that is replaceable together with the solid substance. That is, the housing unit β can be used repeatedly by replacing the empty solid substance container α with a new refill of the same shape.

[0066] FIG. 7 is an explanatory diagram showing how the cutter-equipped lid 5 is attached to the solid substance storage container α.

[0067] In the solid substance storage container α which can be replaced as a refill, the upper surface of the refill, i.e., the upper end of the storage part 1, the upper end of the helical shaft 2, and the upper end of the rotation restricting member 4, can be covered with a film F. This allows the solid substance storage container α which is a refill to be distributed alone.

[0068] 7, in the present invention, the upper end of the rotation restricting member 4 is the upper end of the upper cylindrical beam 45 and the blade members 43, 44, and is disposed so as to be lower than the upper end of the helical shaft 2. In addition, the upper end of the helical shaft 2 is attached at a position lower than the upper end of the peripheral wall 14 of the storage section 1.

[0069] Therefore, when the upper surface of the solid substance storage container α is covered with film F, the upper end of the peripheral wall 14 comes into strongest contact with film F, and even if it comes into contact with the upper end of the helical shaft 2 due to sagging or the like, the most sagging center surrounds the cross-shaped groove 22 and comes into contact with the flat upper end surface, so the load on the film F is small.

[0070] 7, the lid with cutter 5, which is a lid for scraping solid material, has a top surface 51 and a side surface 56. A cutter 52 for cutting solid material is provided on the underside of the top surface 51. Also, a discharge port 53, which is a slit hole through which the solid material is scraped out, is formed in the top surface 51 so as to penetrate the top surface 51. Furthermore, a fitting protrusion 54, which is a top surface fitting portion, is formed in the center of the underside of the top surface 51.

[0071] In this embodiment, six discharge ports 53 are provided at intervals of 60°, and six cutters 52 are provided, the same number as the discharge ports 53. By providing multiple discharge ports 53 and cutters 52 in the lid 5 with cutter, the contents can be scraped off immediately even if the lid 5 with cutter is rotated only by a small rotation angle.

[0072] Further, a screw projection 57 is formed on the inner peripheral surface of the side surface 56 which is the peripheral wall of the cutter-equipped lid 5. An outer peripheral protrusion 58 is provided on the outer peripheral surface of the side surface 56 of the cutter-equipped lid 5.

[0073] <Installation (1)> The procedure for attaching the cutter-equipped lid 5 to the solid substance storage container α will be described with reference to FIG.

[0074] First, if a film F is attached, the film F attached to the upper end of the solid substance storage container α to be refilled is removed.

[0075] Next, the lid 5 with cutter is placed over the upper end of the storage section 1 while fitting the cross-shaped fitting protrusion 54, which is the top surface fitting portion of the lid 5 with cutter, into the cross-shaped groove 22, which is the upper end fitting portion located at the upper end of the helical shaft 2.

[0076] Then, by rotating the cutter-equipped cover 5 relative to the storage part 1, the screw projections (16, 57) are screw-engaged with each other.

[0077] In the present embodiment, an example has been described in which a cross-shaped fitting protrusion is provided on the cutter-equipped lid 5 side and a fitting groove is provided on the helical shaft side in the engagement between the upper end fitting portion of the helical shaft 2 and the top surface fitting portion of the cutter-equipped lid 5, but the fitting may be reversed. That is, a cross-shaped fitting protrusion may be provided as the upper end fitting portion of the helical shaft, and a shaft tube with a cross groove formed on the inside may be provided as the top surface fitting portion of the cutter-equipped lid 5.

[0078] Furthermore, the upper end fitting portion of the helical shaft 2 may be configured as a cylinder having a polygonal prism-shaped hollow portion like the cylindrical protrusion 62, and the top surface fitting portion of the cutter-equipped lid 5 may be configured as a substantially polygonal prism-shaped portion like the lower end engagement shaft 48. Furthermore, this configuration may be reversed, and the upper end fitting portion of the helical shaft 2 may be configured as a substantially polygonal prism-shaped portion like the lower end engagement shaft 48, and the top surface fitting portion of the fitting protrusion 54 may be configured as a cylinder having a polygonal prism-shaped hollow portion like the cylindrical protrusion 62 (see FIG. 8).

[0079] Alternatively, the outer shape of the top fitting portion hanging down from the center of the underside of the lid with cutter 5 may be circumferential, with multiple linear protrusions extending up and down on the outer peripheral surface, and the upper end fitting portion of the helical shaft 2 may be cylindrical with multiple vertical grooves on the circumferential inner peripheral surface, thereby restricting rotation. Furthermore, this structure may be such that the fitting portion of the lid with cutter and the upper end of the helical shaft are reversed. Either configuration may be adopted as long as it is possible to restrict the rotation of the helical shaft relative to the lid with cutter 5.

[0080] FIG. 8 is an explanatory diagram showing how the outer case 6 is attached to the solid substance storage container α to which the cutter-equipped lid 5 is attached.

[0081] 8, the inside of a cylindrical projection 62 formed on a bottom surface 61 of the outer case 6 defines a hollow portion 63 having a substantially polygonal prism shape.

[0082] <Installation (2)> Next, a procedure for attaching the solid substance storage container α having the cutter-equipped lid 5 attached thereto to the outer case 6 will be described with reference to FIG.

[0083] When the outer case 6 is inserted into the outer case 6 from the lower end of the storage section 1 in order to attach the outer case 6, the cylindrical protrusion 62 of the outer case 6 is fitted into the space surrounded by the outer surface of the lower end engagement shaft 48 and the inner circumference of the hanging tube 13 of the storage section 1, while the approximately polygonal contour of the lower end engagement shaft 48 of the rotation restricting member 4 is fitted into the approximately polygonal column-shaped hollow portion 63 of the cylindrical protrusion 62.

[0084] By this fitting, when the outer case 6 rotates relative to the cutter-equipped lid 5 and the storage section 1, the rotation of the rotation restricting member 4 relative to the outer case 6 is restricted.

[0085] Furthermore, by pushing the solid material storage container α, which is screw-engaged with the cutter-equipped lid, into the outer case 6 so that the cutter-equipped lid 5 is not disengaged from the lower end engagement shaft 48, the inner peripheral protrusion 66 at the upper end of the outer case 6 rides over the outer peripheral protrusion 58 on the outer circumferential surface of the cutter-equipped lid 5. Then, the peripheral lip 17 at the lower end of the storage part 1 reaches a position where it reaches the upper surface of the bottom surface 61 of the outer case 6, and the engagement is completed.

[0086] Here, the inner peripheral protrusion 66 at the upper end of the outer case 6 is overcome by the outer peripheral protrusion 58 on the outer surface of the cutter-equipped lid 5, so that the outer case 6 does not easily come off from the solid substance storage container α and the cutter-equipped lid 5, and the cutter-equipped lid 5 and the outer case 6 are connected to each other so as to be rotatable horizontally.

[0087] In addition, in this embodiment, an example has been described in which the rotatable engagement parts that can be overcome are both linear protrusions (outer peripheral protrusions 58, inner peripheral protrusions 66), but either one of the overcome parts of the cutter-equipped lid 5 or the outer case 6 may be in the shape of a bump (short cylinder) or an intermittent linear protrusion.

[0088] Furthermore, as another configuration, the climbing member on the refill α side may be provided around the upper end of the storage part 1 instead of the cover 5 with a cutter. In that case, for example, the outer peripheral protrusion 19 and the inner peripheral protrusion 77 in Fig. 9 described later are configured to be located around the upper end.

[0089] Furthermore, when the outer lid 8, which is a cap, is attached, the screw projection 67 of the outer case 6 engages with the screw projection 83 of the side wall 82 of the outer lid 8. The outer lid 8 has a top surface 81, and the inner surface of the side wall 82 has a step portion 84 formed by the upper side closer to the top surface 81 being thicker than the lower side (see FIG. 6). When the outer lid 8 is engaged with the outer case 6 to cap it, the step portion 84 of the outer lid 8 presses against the top surface of the cutter-equipped lid 5, thereby preventing the cutter-equipped lid 5 from coming off the outer case 6 even if it receives an impact from the outside due to being dropped, etc.

[0090] In this embodiment, the engagement between the outer surface of the lower end engagement shaft 48 and the inner surface of the hollow portion 63 of the cylindrical projection 62 is exemplified by a hexagonal outline and inner shape, but the outline may have any number of sides as long as it is a substantially polygonal shape. It may also be a five-pointed star, a six-pointed star, or the like.

[0091] Furthermore, the configuration of the lower end engagement shaft 48 and the cylindrical protrusion 62 may be reversed. That is, a lower end engagement cylinder having a polygonal columnar hollow portion may be provided as the lower end engagement portion at the lower end of the rotation restricting member 4, and a polygonal columnar fitting protrusion having a polygonal outer shape may be provided as the bottom surface engagement portion on the bottom surface 61 of the outer case 6, and the lower end engagement cylinder of the rotation restricting member 4 may be engaged with the polygonal columnar fitting protrusion of the outer case 6 to restrict rotation.

[0092] Alternatively, the outer shape of the lower end engaging shaft 48 may be circumferential with a plurality of linear projections extending up and down on the outer peripheral surface, and a plurality of vertical grooves may be provided on the circumferential inner peripheral surface of the cylindrical projection 62 of the outer case 6, or a structure in which rotation is restricted by a jagged edge, a gear shape, a knurled shape, a spline shape, etc. Furthermore, even in this structure, the engaging shapes of the lower end engaging portion of the rotation restricting member 4 and the bottom engaging portion of the outer case 6 may be reversed.

[0093] Furthermore, the outer shape of the lower end engagement shaft 48 may be a cross-shaped protrusion like the fitting protrusion 54, and the cylindrical protrusion may have a cross groove formed therein like the upper end of the helical shaft 2. Alternatively, the lower end of the lower end engagement part of the rotation restricting member 4 may have a cross groove formed therein like the upper end of the helical shaft 2, and the fitting part on the outer case 6 side may be a cross-shaped protrusion like the fitting protrusion 54. Whichever configuration is adopted, it is sufficient as long as rotation of the rotation restricting member 4 relative to the outer case 6 can be restricted.

[0094] <Second embodiment> FIG. 9 is a half cross-sectional view of a dispensing container 100A with a cutter according to the second embodiment of the present invention.

[0095] In this embodiment, a rotating grip 7 is provided as an operating member on the underside of the storage unit 1A instead of the outer case 6. The internal structures of the storage unit 1A and the lid with cutter 5A are similar to those of the storage unit 1 and the lid with cutter 5 in the first embodiment.

[0096] The rotating grip 7 is a short cylindrical rotating part that is slightly thicker than the storage part 1A. The rotating grip 7 in this embodiment has a bottom surface (bottom plate) 71 and a peripheral wall connected to the bottom surface 71, and the peripheral wall is composed of a lower thick peripheral wall 74 and an upper thin peripheral wall 75.

[0097] A cylindrical protrusion 72 is provided in the center of a bottom surface 71 of the rotating grip 7. Inside this cylindrical protrusion 72, a polygonal column-shaped hollow portion 73 similar to that shown in FIG.

[0098] A fitting rib 76 is provided at the lower end of the thin peripheral wall 75, at the boundary with the thick peripheral wall 74. In addition, an inner peripheral protrusion 77, which serves as an annular undercut protrusion, is provided at the upper end of the inner peripheral surface of the thin peripheral wall 75.

[0099] On the other hand, in this embodiment, on the refill side, the outer peripheral surface of the peripheral wall 14A of the container 1A is provided with an outer peripheral protrusion 19. Instead, the cutter-equipped lid 5A is not provided with an outer peripheral protrusion.

[0100] In the assembly of this embodiment, the container 1A and the rotating grip 7 may be engaged with each other before or after the container 1A and the cutter-equipped lid 5A are screw-engaged with each other.

[0101] In this embodiment, when the storage unit 1A and the rotating grip 7 are engaged, the lower end engagement shaft 48 of the rotation restricting member 4 penetrates the through hole 12 in the bottom surface 11 of the storage unit 1A and engages with the hollow portion 73 of the cylindrical protrusion 72 in the bottom surface 71 of the rotating grip 7. Then, by pressing the storage unit 1A into the rotating grip 7, the inner peripheral protrusion 77 of the thick peripheral wall 74 of the rotating grip 7 overcomes the annular protrusion of the peripheral wall of the storage unit and engages. This engagement causes the rotating grip 7 to be rotatably fixed to the storage unit 1A.

[0102] In this embodiment, by rotating the rotary grip 7 and the container 1A relatively, the lifting tray 3 is gradually lifted, and the upper end of the solid material can be cut into a thin plate.

[0103] 9, the outer shape of the thick peripheral wall 74 of the rotating grip 7 may be formed with a jagged knurling that provides uneven finger grooves to prevent slipping during rotation. Alternatively, as another anti-slip shape during rotation, the cross section of the outer shape of the rotating grip 7 may be made substantially square, triangular, flower-shaped, heart-shaped, or the like to prevent slipping during rotation.

[0104] In addition, in this embodiment, an example has been described in which the rotatable engagement parts that can be overcome are both linear protrusions (outer peripheral protrusions 19, inner peripheral protrusions 77), but either one of the overcome parts of the storage part 1A or the rotating grip 7 may be in the shape of a bump (short cylinder) or an intermittent linear protrusion.

[0105] In this embodiment as well, the spiral groove 21 is formed on the outer periphery of the spiral shaft 2, and the storage section 1A and the cutter-equipped lid 5A are tightly attached by screw engagement, so that in the cutter-equipped dispensing container 100A, the manufacturing process can be prevented from becoming complicated, and the contents can be prevented from leaking even if the container is placed on its side.

[0106] Fig. 10 is an explanatory diagram showing how to attach an outer cap 8A to a dispensing container with a cutter 100A of the second embodiment. As shown in Figs. 9 and 10, the outer cap 8A of this embodiment is provided with four linear ribs 86a, 86b, 86c, and 86d around a top surface 81A of the inner circumferential surface of a side wall 82A. In addition, a spline-shaped projection 85 that continuously projects in an annular shape from the outside to the inside is provided at the lower end of the inner circumferential surface of the side wall 82A of the outer cap 8A.

[0107] As shown in Figs. 9 and 10, the upper end of the storage section 1A is formed with a gear-shaped recess 18 that is continuously cut out from above and has an annular shape.

[0108] 10, when the outer lid 8A, which is a cap, is engaged, the engagement rib 76 of the rotating grip 7 engages with a spline-shaped protrusion 85 provided at the inner lower end of the side wall 82A of the outer lid 8A, thereby restricting the rotation of the outer lid 8A and the rotating grip 7. As a result, even if forces are applied in different directions on the upper and lower sides when the outer lid 8A is engaged, the outer lid 8A and the rotating grip 7 are restricted from rotating relative to each other.

[0109] Furthermore, the linear ribs 86a-86d on the inside of the outer lid 8A fit into one of the gear-shaped recesses 18, thereby restricting the storage section 1A from rotating relative to the outer lid 8A when the outer lid 8A is capped, and preventing the storage section 1A from coming off the rotating grip 7.

[0110] As a result, in the capped state, the outer lid 8A engages with both the container 1A and the rotating grip 7. Therefore, even if forces are applied in different directions to the upper and lower sides, for example, when the dispensing container with cutter 100A is packed closely together with other cosmetics in a user's pouch, or when it is placed in a pocket and rubs against other carry-on items, the outer lid 8A and the rotating grip 7 can be restricted from rotating relative to each other. This makes it possible to prevent solid substances from being scraped off arbitrarily within the outer lid 8A.

[0111] <Modification> Fig. 11 is a bottom view of the rotation restriction member and lifting tray of the present invention and modified example 1 and modified example 2. In the rotation restriction member and lifting tray shown in Fig. 11, (a) shows the configuration of the first embodiment, (b) shows the configuration of modified example 1, and (c) shows the configuration of modified example 2.

[0112] In the above embodiment, an example was shown in which the rotation regulating member 4 has two curved extension portions 41, 42 extending in the vertical direction and facing each other, and the side of the helical shaft 2 is covered by the gently arc-shaped inner surfaces of the curved extension portions 41, 42, but the rotation regulating member of the present invention is not limited to this configuration.

[0113] For example, the rotation restricting member 4B may be configured to have three curved extensions spaced 120° apart, with the side surface of the helical shaft 2 being partially covered by the gently arcuate inner side surfaces of the curved extensions.

[0114] In this case, as shown in Fig. 11(b), the number of blade members 43a, 43b, 43c extending from the curved extension portion is three, the same number as the number of arc-shaped sides, and they are provided at 120° intervals in order to regulate rotation evenly. Furthermore, in the lifting tray 3B, the spiral inner wall 32a, 32b, 32c partially surrounding the central screw hole 31B, and the sector holes 34a, 34b, 34c and linear holes 36a, 36b, 36c connected to the interrupted portion of the spiral inner wall are provided in three directions at 120° intervals, as shown in Fig. 11(b).

[0115] The holes through which the curved extensions are inserted are not limited to the arch-shaped holes 34 and 35 shown in Fig. 11(a), and may be, for example, sector-shaped holes 34a, 34b, and 34c as shown in Fig. 11(b) as long as the outer periphery is arc-shaped. In accordance with the shape of these holes, the lower end connecting portions 46a, 46b, and 46c of the rotation restricting member 4B are also sector-shaped.

[0116] Similarly, the rotation restricting member 4C may be configured to have four curved extensions spaced 90° apart, with the side surface of the helical shaft 2 being partially covered by the gently arcuate inner side surfaces of the curved extensions.

[0117] In this case, as shown in Fig. 11(c), the number of blade members 44a, 44b, 44c, 44d extending from the curved extension portion is four, the same number as the number of arc-shaped sides, and they are provided at 90° intervals so that the rotation can be evenly restricted. In this configuration, the spiral inner wall 33a-33d partially surrounding the central screw hole 31C of the lifting tray 3C, the sectorial holes 35a-35d connected to the interrupted portion of the spiral inner wall, and the linear holes 37a-37d are provided in four directions at 90° intervals. In this configuration, the shape of the lower end connecting portions 47a-47d of the rotation restriction member 4C is set according to the shape of the sectorial holes 35a-35d.

[0118] In addition, when the number of curved extension portions in the rotation control member is increased, the spiral shaft still needs to screw into the lifting plate, so when the number of curved extension portions is increased, the width of the arc surface per portion is made narrower so that slit-shaped open spaces exposing the spiral grooves are formed between adjacent curved extension portions in the same number as the curved extension portions.

[0119] In this way, even if the number of curved extension portions of the rotation control member is increased to five, six, etc., by similarly providing the same number of blade members of the rotation control member, spiral inner walls partially surrounding the central screw hole in the lifting tray, arched holes (or fan-shaped holes) connected to the interrupted portions of the spiral inner wall, and linear holes as the number of curved extension portions, the lifting tray can be lifted when the rotation control member and the spiral shaft rotate.

[0120] Even in the configuration of the modified example, the lid with cutter and the storage section are threadedly engaged, so that, as in the embodiment described above, in a dispensing container with a cutter, it is possible to prevent the contents from leaking even when the container is placed on its side while preventing the manufacturing process from becoming complicated.

[0121] 11(b) and (c), the outer surfaces of the blade members (43, 44) can be in contact with the inner wall of the storage section, so that different contents can be filled separately without mixing. Therefore, for example, by filling each space with cosmetics of different colors, cosmetics of different colors can be scraped out for each of the multiple discharge ports 53 during rotation.

[0122] Conversely, the rotation restricting member may have only one blade member. Fig. 12 shows a bottom view of a rotation restricting member 4D and a lifting tray 3D according to a third modified example of the present invention. In this configuration, in addition to the blade member 43D, the curved extension portion 41D may also have only one. In this case, the curved extension portion 41D shown by the dotted line in Fig. 12 is configured as a partial cylinder that is part of a cylinder that extends in the vertical direction and is vertically split so as to surround part of the outer periphery of the helical shaft without contacting it.

[0123] 12, in the lifting tray 3D, one arched hole 34D or sector hole, into which one curved extension portion 41D of the rotation restricting member 4D is inserted, is formed continuously from a portion of the central screw hole 31D where there is no spiral inner wall 32D. And, one linear hole 36D, into which one blade member 43D is inserted, is formed so as to extend outward from the outer periphery of the arched hole 34D.

[0124] In the assembled state, the helical groove of the helical shaft is exposed from the arc-shaped open space O where the curved extension 41D of the rotation restricting member 4D is not provided. Then, the lower end connecting portion 46D of the lifting tray 3D, which connects the lower end of one of the curved extensions 41D of the rotation restricting member 4D to the lower end engagement shaft 48D, is inserted into the arched hole 34D. As a result, with one blade member 43D inserted into the linear hole 36D, the helical protrusion of the helical inner wall 32D of the central screw hole 31D engages with the helical groove of the helical shaft exposed from the arc-shaped open space O.

[0125] In this way, even if the number of curved extension portions 41D of the rotation control member 4D is reduced to one, as described above, by providing the same number of blade members 43D of the rotation control member 4D, spiral inner walls 32D partially surrounding the central screw hole 31D in the lifting tray 3D, arched holes 34D (or fan-shaped holes) connected to the interrupted portion of the spiral inner wall 32D, and linear holes 36D as the number of curved extension portions 41D, the lifting tray 3D can be lifted when the rotation control member 4D and the spiral shaft rotate.

[0126] Furthermore, in the above embodiment and modified example, the number of blade members and the number of curved extension parts are equal, but the number of blade members and the number of curved extension parts do not have to be the same. For example, even if there is one blade member as in Fig. 12, by providing two curved extension parts as in Fig. 11(a), the effect of stably holding the solid substance inside can be maintained. Alternatively, two or more blade members may extend from one extension member.

[0127] Although the preferred embodiments of the present invention have been described in detail above, the present invention is not limited to the specific embodiments described above, and various modifications and variations are possible within the scope of the gist of the present invention as described in the claims.

[0128] This application claims priority to Japanese Patent Application No. 2020-073915, filed on April 17, 2020, the entire contents of which are incorporated herein by reference. [Explanation of symbols]

[0129] 1,1A Storage section 2 spiral axis 3,3B,3C rising plate 4, 4B, 4C Rotation restriction member 5,5A Lid with cutter 6 Outer case (operating parts) 7 Rotating grip (operating part) 8,8A Outer lid (cap) 11 Bottom 12 Through hole 13 Hanging tube 14 Peripheral wall (side) 15 Top thin section 16 Screw protrusion 19 Outer ridge 21 Spiral groove 22 Cross-shaped groove (upper end fitting part) 30 Plate body 31 Screw hole 32,33 Spiral inner wall 32a,32b,32c spiral inner wall 33a,33b,33c,33d Spiral inner wall 32D spiral inner wall 34,35 Arcuate hole (insertion hole) 34a, 34b, 34c Fan-shaped holes (insertion holes) 34D arcuate hole 35a, 35b, 35c, 35d Fan-shaped holes (insertion holes) 36,37 Linear hole (through hole) 36a, 36b, 36c Linear holes (insertion holes) 37a, 37b, 37c, 37d Linear holes (insertion holes) 41,42 Curved extension 41a, 41b, 41c Curved extension 42a, 42b, 42c, 42d Blade members 41D Curved extension 43,44 Blade member 43a, 43b, 43c Blade members 44a, 44b, 44c, 44d Blade members 43D Blade member 45 Upper end cylindrical beam 46,47 Lower end connection part 47a, 47b, 47c, 47d Lower end connection part 46D Lower end connection part 48,48A Lower end engagement shaft (lower end engagement part) 48D Lower end engagement shaft 51 Top 52 Cutter (cutting means) 53 Outlet 54 Fitting protrusion (top fitting part) 55 Top surface protrusion 56 Side (peripheral wall) 57 Screw protrusion 58 Outer ridge 61 Bottom surface (bottom plate) 62 Cylindrical protrusion (bottom engagement portion) 63 Hollow part 64 Peripheral wall 65 Upper end thin section 66 Inner circumferential protrusion (undercut protrusion) 67 Screw protrusion 71 Bottom 72 Cylindrical protrusion 73 Hollow part 74 Thick peripheral wall 77 Inner circumferential protrusion (undercut protrusion) 81,81A Top 82,82A side wall 83 Screw protrusion 84 Step 85 Spline-like protrusion 86a, 86a, 86b, 86c, 86d Linear rib 100,100A Dispensing container with cutter A Rotating Body B Rotating body F Film S1, S2 Slit-shaped open space O Arc-shaped open space α Solid substance container (refill) β Housing unit

Claims

1. a container having a side surface on which a screw projection is formed around an upper end of an outer peripheral surface, and a bottom surface, the container containing a solid substance; a helical shaft having a helical groove formed on an outer circumferential surface; a cutter-equipped lid having a top surface provided with a cutter for cutting solid materials below the top surface, the top surface being formed with an outlet through which the solid materials cut by the cutter are scraped out, and a peripheral wall having a screw projection formed on an inner peripheral surface; A lifting tray arranged to be liftable inside the storage section; A rotation restricting member that restricts the rotation of the lifting tray relative to the helical shaft, The lifting tray is formed with a central screw hole through which the helical shaft is inserted and partially screwed, and an insertion hole provided outside the screw hole and through which the rotation restricting member is inserted, When the rotation restricting member and the helical shaft are rotated relative to each other in a predetermined direction, the lifting plate rises and can cut the upper end of the solid material, The peripheral wall of the cutter-equipped lid covers a part of the periphery of the upper end of the side surface of the storage part, and the screw protrusions are screw-engaged with each other. Dispensing container with cutter.

2. The rotation restricting member is One or more curved extensions extending in the axial direction and consisting of a vertically split partial cylinder surrounding a part of the outer periphery of the helical shaft; and one or more blade members extending outward from an outer surface of the one or more curved extension portions, In the lifting plate, the central threaded hole is defined by a partial inner wall having a helical protrusion formed thereon; One or more arched holes or sector holes into which the one or more curved extension portions are respectively inserted are formed continuously from a portion of the central screw hole that has no inner wall, one or more linear holes are formed through which the one or more blade members are inserted and which extend outward from the outer periphery of the arched hole or sector hole, In an assembled state, the helical groove of the helical shaft is exposed from an open space extending in an axial direction in which the one or more curved extension portions of the rotation restricting member are not provided, In the lifting tray, when the one or more curved extensions of the rotation restricting member are inserted into the arched hole or the sector hole and the one or more blade members are inserted into the linear hole, the helical protrusion on the inner wall of the central screw hole engages with the helical groove of the helical shaft exposed from the open space. The dispensing container with a cutter according to claim 1.

3. The rotation restricting member has a lower end engaging portion located at a lower end thereof, The dispensing container with a cutter comprises: an operating member having a bottom plate provided with a bottom surface engaging portion that engages with the lower end engaging portion of the rotation restricting member to restrict rotation of the rotation restricting member, A fitting portion is provided on the top surface of the cutter-equipped lid so as to protrude downward and engage with an upper end of the helical shaft to restrict rotation of the helical shaft relative to the cutter-equipped lid, By rotating the operating member, the rotation restricting member and the helical shaft rotate relatively to each other, thereby lifting the lifting tray. The dispensing container with a cutter according to claim 1 or 2.

4. the operating member is an outer case having a peripheral wall rising from an edge of the bottom plate, The housing portion is housed in the inner periphery of the outer case in a state in which the housing portion and the cutter-equipped lid are screw-engaged with each other, The outer case is rotated relative to the cutter-equipped lid to raise the lifting tray. The dispensing container with a cutter according to claim 3.

5. the operating member is a rotating grip connected to a lower side of the storage portion, The rotating grip is rotated relative to the housing to raise the lifting tray. The dispensing container with a cutter according to claim 3.

6. a through hole through which the lower end engagement portion of the rotation restricting member can be inserted is formed at the center of the bottom surface of the accommodation portion, A cylindrical protrusion protruding upward is provided at the center of the bottom plate of the operating member as the bottom surface engagement portion, the lower end engagement portion of the rotation restricting member is a lower end engagement shaft, The lower end engagement shaft of the rotation restricting member is fitted into the cylindrical protrusion of the operating member, thereby restricting rotation of the rotation restricting member relative to the operating member. The dispensing container with a cutter according to any one of claims 3 to 5.

7. A top surface fitting portion is provided that protrudes downward from the center of the lower surface of the top surface of the cutter-equipped lid, An upper end fitting portion is provided at an upper end of the helical shaft, The top surface fitting portion of the cutter-equipped lid and the upper end fitting portion of the helical shaft are engaged with each other, thereby restricting the rotation of the helical shaft relative to the cutter-equipped lid, By rotating the operating member, the cutter-equipped lid, the storage section, and the helical shaft rotate together with the operating member. The dispensing container with a cutter according to any one of claims 3 to 6.

8. A solid material container that is detachable from a solid material scraping lid, The solid material scraping cover has a cutter for scraping solid material below a top surface and a fitting portion protruding downward, the top surface has an outlet through which the scraped solid material is scraped out, and a peripheral wall having a screw projection formed on an inner peripheral surface thereof, The solid material container comprises: a container having a side surface on which a screw projection is formed around an upper end of an outer peripheral surface, and a bottom surface, the container containing a solid substance; a helical shaft having a helical groove formed on an outer circumferential surface; A lifting tray arranged to be liftable inside the storage section; A rotation restricting member that restricts the rotation of the lifting tray relative to the helical shaft, When the solid material storage container is attached to the solid material scraping lid, the peripheral wall of the solid material scraping lid covers a part of the upper end periphery of the side surface of the storage portion, and the screw protrusions are screw-engaged with each other. Solid material container.

Citation Information

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