Cap for dispenser

A detachable cap with inward ribs maintains a fixed distance from the nozzle tip, preventing soiling and enhancing portability and design aesthetics by stabilizing attachment and removal.

JP2025121663APending Publication Date: 2025-08-20SHISEIDO CO LTD
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Patent Information

Application Number
JP2024017247
Authority / Receiving Office
JP · JP
Patent Type
Applications
Current Assignee / Owner
Filing Date
2024-02-07
Publication Date
2025-08-20

AI Technical Summary

Technical Problem

Existing caps for dispenser bodies become soiled when the inner surface contacts the nozzle tip after use, leading to contamination and poor design aesthetics when enlarged to prevent contact.

Method used

A detachable cap with inward-protruding ribs that maintain a fixed distance from the nozzle tip, ensuring the cap can be pushed or lifted without tilting, preventing soiling and enhancing portability and design.

Benefits of technology

The cap effectively prevents inner surface soiling and maintains a clean, aesthetically pleasing appearance while ensuring easy attachment and removal, improving user experience.

✦ Generated by Eureka AI based on patent content.

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Abstract

To provide a cap for attaching to a dispenser body in which a cap inner surface is prevented from being stained by coming into contact with a liquid sticking to a tip end of a nozzle part of the dispenser body.SOLUTION: A cap 1 is detachably attached to a dispenser body 10. The dispenser body 10 comprises a container connection part 11, a head part 12 and a nozzle part 13. The cap 1 comprises a cap body 1a and a plurality of ribs 1b protruding inwardly from an inner peripheral surface of the cap body 1a. The ribs 1b come into contact with an outer peripheral surface of the container connection part 11 in a state that the cap 1 is attached to the dispenser body 10.SELECTED DRAWING: Figure 1
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Description

[Technical Field]

[0001] The present invention relates to a cap for attachment to a dispenser body. [Background technology]

[0002] BACKGROUND ART Dispensers have been widely known in the past, in which a dispenser body having a liquid dispensing mechanism is attached to a container containing a liquid such as liquid foundation or beauty serum, and the liquid inside the container is sucked up and dispensed from a nozzle by pressing the head portion of the dispenser body.

[0003] For example, when the contents are cosmetics such as liquid foundation or beauty serum, a small dispenser body is attached to take into consideration use on the go, and a cap is attached to cover the button and nozzle to protect them from external pressure and prevent accidental operation when carried (Figure 7).

[0004] Furthermore, when using the dispenser body and cap attached to the cosmetic container, the dispenser body is picked up, the cap is removed, and the head of the dispenser body is pressed, so it is common for the dispenser body to be made smaller, and the cap also to be made smaller. [Prior art documents] [Patent documents]

[0005] [Patent Document 1] Japanese Patent Application Publication No. 2019-177887 Summary of the Invention [Problem to be solved by the invention]

[0006] However, when attaching the cap after use, the ejected liquid is still attached to the tip of the nozzle, so the inner surface of the cap comes into contact with the nozzle and is easily soiled with the liquid.Then, when trying to remove the cap with a soiled inner surface the next time the cap is used, the inner surface of the cap comes into contact with the head, soiling the head and the user's fingers.

[0007] On the other hand, even if the cap is enlarged so that the inner surface of the cap does not come into contact with the tip of the nozzle in order to avoid such a situation, if the cap is tilted when attaching or detaching, the inner surface of the cap will come into contact with the nozzle, so this is not an effective means for preventing the cap from getting dirty. Furthermore, if the cap is enlarged, it becomes cumbersome to carry the dispenser when going out, and the appearance of the dispenser becomes unsightly, resulting in a poor design.

[0008] An object of the present invention is to provide a cap to be attached to a dispenser body, which prevents the inner surface of the cap from being soiled by contact with liquid adhering to the tip of the nozzle portion of the dispenser body. [Means for solving the problem]

[0009] In order to solve the above problems, the inventors conducted extensive research and discovered that the above problems can be solved by providing a cap that is detachably attached to a dispenser body that dispenses liquid with a cap body and ribs as shown in the embodiment, and thus completed the present invention.

[0010] Specific means for solving the above problems include the following embodiments.

[0011] <1> A cap that is detachably attached to a dispenser body that discharges liquid, The dispenser body includes: a columnar container connection portion connected to a container that contains a liquid; a head portion having a smaller diameter than the container connection portion, protruding upward from the container connection portion, and being movable in the up and down direction relative to the container connection portion; a nozzle disposed on a side surface of the head portion and configured to eject a liquid; The cap is A cylindrical cap body having an open end; a plurality of ribs projecting inward from the inner peripheral surface of the cap body and extending in the axial direction of the cap body; The rib abuts against the outer peripheral surface of the container connection portion when the cap is attached to the dispenser body.

[0012] <2> The container connection portion is a base portion located on the container side; a shoulder portion located on an upper surface side of the base portion and having a smaller diameter than the base portion, The rib abuts against the outer peripheral surface of the shoulder portion. <1> The cap described in

[0013] <3> a height of the rib protruding from the inner peripheral surface of the cap body equal to a height of a step formed on a side surface of the container connecting portion by the base portion and the shoulder portion; <2> The cap described in

[0014] <4> The ribs are three in number and are arranged at equal intervals in the circumferential direction of the cap body. <1> ~ <3> A cap according to any one of the preceding items.

[0015] <5> a container for containing a liquid; a dispenser body attached to the container; A dispenser comprising: a cap removably attached to the dispenser body; The dispenser body includes: a columnar container connection portion connected to the container; a head portion having a smaller diameter than the container connection portion, protruding upward from the container connection portion, and being movable in the up and down direction relative to the container connection portion; a nozzle disposed on a side surface of the head portion and configured to eject a liquid; The cap is A cylindrical cap body having an open end; a plurality of ribs projecting inward from the inner peripheral surface of the cap body and extending in the axial direction of the cap body; The rib abuts against the outer peripheral surface of the container connection portion when the cap is attached to the dispenser body.

[0016] <6> The container connection portion is a base portion located on the container side; a shoulder portion located on an upper surface side of the base portion and having a smaller diameter than the base portion, The rib abuts against the outer peripheral surface of the shoulder portion. <5> The dispenser according to claim 1. [Effects of the Invention]

[0017] According to the present invention, a fixed distance is maintained between the inner surface of the cap and the tip of the nozzle, and the cap can be reliably pushed down or lifted up when attaching or removing the cap, thereby making it possible to provide a cap for attachment to a dispenser body and a dispenser using said cap, which prevents the inner surface of the cap from coming into contact with the tip of the nozzle and becoming soiled. [Brief explanation of the drawings]

[0018] [Figure 1] 1A and 1B are views showing a cap (first embodiment) of the present invention ((a) is a perspective view from the side, and (b) is a perspective view from diagonally above). [Figure 2] 1A and 1B are views showing the structure of a cap (first embodiment) of the present invention ((a) is a perspective view from the side, and (b) is a cross-sectional view taken along line bb). [Figure 3]FIG. 2 is a diagram illustrating the relationship between the height A of the rib of the cap (first embodiment) of the present invention and the height B of the step on the side surface of the container connecting portion of the dispenser body. [Figure 4] 1 is a diagram showing a dispenser to which a cap (first embodiment) of the present invention is attached. [Figure 5] 1A and 1B are views showing a cap (second embodiment) of the present invention ((a) is a perspective view from the side, and (b) is a perspective view from diagonally above). [Figure 6] 1A and 1B are views showing a cap (third embodiment) of the present invention ((a) is a perspective view from the side, and (b) is a perspective view from diagonally above). [Figure 7] FIG. 1 shows a dispenser with a conventional cap attached. DETAILED DESCRIPTION OF THE INVENTION

[0019] Hereinafter, embodiments of the cap of the present invention will be described, but the present invention is not limited thereto. Furthermore, the drawings may be drawn in a simplified schematic form to explain the contents of the invention, and the dimensional ratios of the depicted components or between the components may not match the dimensional ratios of those components described in the specification. Furthermore, components described in the specification may be omitted in the drawings, or the number of components may be omitted.

[0020] First, a cap 1 (first embodiment) of the present invention will be described with reference to FIGS. Fig. 1 is a diagram showing the appearance of cap 1 of the present invention. Fig. 2 is a diagram showing the structure of cap 1 of the present invention. Fig. 3 is a diagram explaining the relationship between height A of the rib of the cap of the present invention and height B of the step on the side of the container connection part of the dispenser body. Fig. 4 is a diagram of a dispenser equipped with cap 1 of the present invention.

[0021] The cap 1 of the present invention is detachably attached to the dispenser body 10 .

[0022] (Dispenser body 10) The dispenser body 10 includes a container connection portion 11, a head portion 12, and a nozzle portion 13, and dispenses the liquid in the container 20.

[0023] (container 20) The container 20 is cylindrical with a bottom and includes a body 20a and a bottom 20b. The container 20 contains the liquid to be dispensed by the dispenser body 10. The upper end of the container 20 is provided with a mouth portion having a thread formed on the outer surface, to which the dispenser body 10 can be attached.

[0024] (Container connection part 11) The container connection part 11 is configured in a form that can be attached to a mouth part formed at the upper end of the container 20. Specifically, the container connection part 11 is formed in a columnar shape and has a cylindrical part with an inner diameter larger than the outer diameter of the mouth part of the container 20, and a thread that can be threaded with a thread formed on the outer surface of the mouth part of the container 20 is formed on the inner surface of the cylindrical part. As a result, after the container connection part 11 is placed over the mouth part of the container 20, it is configured to be connected to the container 20 by rotating in one direction to prevent the dispenser body 10 from slipping out, and to be disconnected from the container 20 by rotating in the opposite direction, allowing it to be separated from the container 20.

[0025] (Head part 12) The head portion 12 has a smaller diameter than the container connection portion 11, is biased to protrude upward from the container connection portion 11, and is provided so as to be movable in the vertical direction relative to the container connection portion 11. A flow path is formed inside the head portion 12, and is connected to the inside of the container 20.

[0026] (Nozzle part 13) The nozzle portion 13 is disposed on the side surface of the head portion 12. The discharge port provided in the nozzle portion 13 communicates with a flow path inside the head portion 12, and the liquid in the container 20 is discharged from the discharge port of the nozzle portion 13 through the flow path.

[0027] (Liquid discharge mechanism) A liquid ejection mechanism is disposed below the head portion 12, and the liquid ejection mechanism is activated by pushing the head portion 12 downward. The liquid discharge mechanism is configured to suck up the liquid in the container 20 by the up and down movement of the head part 12 and discharge it from the discharge port of the nozzle part 13 provided in the head part 12. The liquid discharge mechanism can be selected from various conventionally known mechanisms. For example, it may be a pressure accumulator pump type, an aerosol container, or a normal pump type. The liquid ejected from the nozzle portion 13 can be in any form, such as liquid, gel, foam, mist, etc., and will be released from the nozzle portion 13 in a manner appropriate to its form, such as ejection, spray, or atomization.

[0028] (Cap 1) The cap 1 includes a cap body 1a and a plurality of ribs 1b.

[0029] (Cap body 1a) The cap body 1a is in the shape of a lidded cylinder with one end open, and is formed in a form that can be detachably attached to the dispenser body 10.

[0030] Cap body 1a covers nozzle portion 13, thereby preventing dust and dirt from adhering to nozzle portion 13. In addition, head portion 12 is also contained inside cap body 1a, so head portion 12 is not pressed when the dispenser is carried or displayed in a store, preventing accidental dispensing of liquid. In addition, by decorating the surface of cap body 1a, dispenser body 10 can be given an aesthetically pleasing appearance.

[0031] The material of the cap body 1a is generally a transparent or translucent synthetic resin, but is not limited to this and may be an opaque synthetic resin, metal, or a combination of these.

[0032] (Rib 1b) A plurality of ribs 1b protrude inward from the inner peripheral surface of the cap body 1a and extend in the axial direction of the cap body 1a. When the cap 1 is attached to the dispenser body 10, the tip of the rib 1b protruding from the inner peripheral surface of the cap body 1a abuts against the outer peripheral surface of the container connection part 11. This makes it possible to maintain a certain distance between the cap body 1a and the tip of the nozzle part 13, and prevents liquid adhering to the tip of the nozzle part 13 from adhering to the inner surface of the cap body 1a and soiling the cap 1. Furthermore, by providing multiple ribs 1b extending in the axial direction of the cap body 1a, the attachment of the cap 1 to the dispenser body 10 is stabilized, and the cap can be reliably lifted upward when removed, preventing the tip of the nozzle portion 13 from coming into contact with the inner surface of the cap body 1a and soiling the inner surface of the cap body 1a. The rib 1b can be formed integrally with the cap body 1a by using a synthetic resin, but the rib 1b and the cap body 1a may be formed as separate parts and then joined together.

[0033] The multiple ribs 1b protruding from the inner peripheral surface of the cap body 1a are preferably arranged at approximately equal intervals along the inner circumference of the cap body 1a. By arranging multiple ribs 1b along the inner circumference of the cap body 1a, pressure is applied equally from each rib 1b on the inner circumference of the cap 1 to the dispenser body 10, so that the cap 1 can be stably and reliably attached to the dispenser body 10. Furthermore, when attaching or removing the cap 1, the cap 1 can be pushed down or lifted up without tilting, and the tip of the nozzle portion 13 can be prevented from contacting the inner surface of the cap 1.

[0034] 2 shows an embodiment in which three ribs 1b are arranged at equal intervals around the circumferential direction of the cap body 1a. However, the intervals and number of ribs 1b are not limited to this and can be designed appropriately depending on the size, material, etc. of the cap body 1a.

[0035] The container connection portion 11 is preferably configured to have a base portion 11a located on the container 20 side and a shoulder portion 11b located on the upper surface side of the base portion 11a and having a smaller diameter than the base portion 11a, and the rib 1b of the cap 1 is preferably configured to abut against the outer peripheral surface of the shoulder portion. By configuring the container connection part 11 with a base 11a and a shoulder part 11b having a smaller diameter than the base 11a, even if the outer diameter of the mouth of the container 20 is large, there is no need to make the entire container connection part 11 larger, and the container connection part 11 can be attached to the mouth of the container 20 by making only the inner diameter of the base 11a larger than the outer diameter of the mouth of the container 20. Furthermore, since the outer diameter of the shoulder portion 11b can be made smaller in accordance with the outer diameter of the head portion 12, the portability and design of the dispenser body 10 can be improved. Furthermore, by abutting the rib 1b of the cap 1 against the outer peripheral surface of the shoulder portion 11b, the outer diameter of the cap 1 can be reduced, resulting in an excellent portability and design.

[0036] 3, by making the height A of the rib 1b protruding from the inner peripheral surface of the cap body 1a equal to the height B of the step on the side surface of the container connection part 11 formed by the base 11a and the shoulder 11b, the inner diameter of the cap body 1a can be made equal to the outer diameter of the base 11a of the container connection part 11. This allows the outer diameter of the cap 1 to be kept small, improving portability and design.

[0037] The cap of the present invention can be embodied in various forms without departing from the spirit of the present invention.

[0038] 5 shows a second embodiment in which the length of the portion where the rib 1b abuts against the shoulder 11b is increased by extending the shoulder 11b of the container connecting portion 11 and the rib 1b of the cap 1. In this way, by increasing the length of the portion where the rib 1b abuts against the shoulder 11b, it is possible to more reliably maintain a constant distance between the inner surface of the cap 1 and the tip of the nozzle 13, and it is also possible to more reliably push the cap 1 downward or lift it upward when attaching or removing the cap 1.

[0039] 6 shows a form (third embodiment) in which rib 1b of cap 1 abuts against the side surface of container connection part 11. In this way, by lengthening the length of the portion where rib 1b abuts against the side surface of container connection part 11, it is possible to reliably maintain a constant distance between the inner surface of cap 1 and the tip of nozzle 13, and it is also possible to reliably push cap 1 downward or lift it upward when attaching or removing cap 1.

[0040] (dispenser) A dispenser 100 can be used by combining a container 20 for storing a liquid with a dispenser body 10 and a cap 1 that can be attached to the dispenser body 10 . [Explanation of symbols]

[0041] 1 cap 1a Cap body 1b Rib 10 Dispenser body 11 Container connection 11a base 11b Shoulder 12 Head 13 Nozzle section 20 containers 100 Dispensers

Claims

1. A cap that is detachably attached to a dispenser body that discharges liquid, The dispenser body includes: a columnar container connection portion connected to a container that contains a liquid; a head portion having a smaller diameter than the container connection portion, protruding upward from the container connection portion, and being movable in the up and down direction relative to the container connection portion; a nozzle disposed on a side surface of the head portion and configured to eject a liquid; The cap is A cylindrical cap body having an open end; a plurality of ribs projecting inward from the inner peripheral surface of the cap body and extending in the axial direction of the cap body; The rib abuts against the outer peripheral surface of the container connection portion when the cap is attached to the dispenser body.

2. The container connection portion is a base portion located on the container side; a shoulder portion located on an upper surface side of the base portion and having a smaller diameter than the base portion, The cap according to claim 1 , wherein the rib abuts against an outer peripheral surface of the shoulder.

3. The cap according to claim 2 , wherein the height of the rib protruding from the inner peripheral surface of the cap body is equal to the height of a step on a side surface of the container connecting portion formed by the base and the shoulder.

4. The cap according to claim 1 , wherein the ribs are three and are arranged at equal intervals in the circumferential direction of the cap body.

5. a container for containing a liquid; a dispenser body attached to the container; A dispenser comprising: a cap removably attached to the dispenser body; The dispenser body includes: a columnar container connection portion connected to the container; a head portion having a smaller diameter than the container connection portion, protruding upward from the container connection portion, and being movable in the up and down direction relative to the container connection portion; a nozzle disposed on a side surface of the head portion and configured to eject a liquid; The cap is A cylindrical cap body having an open end; a plurality of ribs projecting inward from the inner peripheral surface of the cap body and extending in the axial direction of the cap body; The rib abuts against the outer peripheral surface of the container connection portion when the cap is attached to the dispenser body.

6. The container connection portion is a base portion located on the container side; a shoulder portion located on an upper surface side of the base portion and having a smaller diameter than the base portion, The dispenser of claim 5 , wherein the rib abuts an outer peripheral surface of the shoulder.

Citation Information

Patent Citations

  • Container

    JP2019177887A