Aromatic container

The air freshener container with a knock ring mechanism simplifies scent switching and secure cartridge attachment, addressing the complexity of existing fragrance containers by enabling easy operation and visibility of liquid levels.

JP2025181054APending Publication Date: 2025-12-11MITSUBISHI PENCIL CO LTD
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Patent Information

Application Number
JP2024088802
Authority / Receiving Office
JP · JP
Patent Type
Applications
Current Assignee / Owner
Filing Date
2024-05-31
Publication Date
2025-12-11

AI Technical Summary

Technical Problem

Existing fragrance containers require complex manual operations to switch between scents, especially when switching non-adjacent shafts, and there is a need for a simpler and secure method to attach and replace air freshener cartridges.

Method used

An air freshener container with a knock ring mechanism that engages multiple fragrance cartridges, allowing for simple scent switching through a screw engagement and a locking mechanism, along with a transparent design to monitor liquid levels.

Benefits of technology

Enables easy and secure attachment and replacement of air freshener cartridges, allowing scent switching with a simple operation and visibility into remaining liquid levels.

✦ Generated by Eureka AI based on patent content.

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Abstract

To provide an aromatic container suitable for onboard or room-inside use allowed to change over odor or air freshening by simple handling and simply exchange an aromatic cartridge.SOLUTION: An aromatic container comprises a plurality of aromatic cartridges 10a, 10b, 10c, accommodating aromatic deodorant consisting of volatile liquid in a direct liquid state and having porous volatile having a capillary force, received within a container body 90, 120. In the aromatic cartridges 10a, 10b, 10c, knock-ring members 20, 30, 40 are abutment-arranged respectively. The knock-ring members 20, 30, 40 are provided with a knock-ring mechanism for them to be engaged respectively for cooperation. The aromatic cartridges 10a, 10b, 10c are accommodated to be exchanged within the container body 90, 120 and locked to the container body 90, 120 by screwing (thread scheme).SELECTED DRAWING: Figure 3
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Description

[Technical Field]

[0001] The present invention relates to an air freshener container equipped with multiple air freshener cartridges containing a volatile liquid (aromatic deodorizer), and relates to an air freshener container suitable for use in a vehicle or indoors, which allows the scent or deodorization to be switched with a simple operation. [Background technology]

[0002] Conventionally, fragrance containers of a wide variety of shapes and structures that can be freely attached to predetermined locations such as inside a room or an automobile and that emit multiple scents have been known. For example, fragrance containers for use in vehicles such as automobiles have been known that include multiple fragrance storage units that store liquid or solid fragrances, each storing a different fragrance, and that allow the fragrance that emits the fragrance component to be switched (see, for example, Patent Documents 1 to 5). [Prior art documents] [Patent documents]

[0003] [Patent Document 1] China Utility Model Publication No. 214822492 [Patent Document 2] China Patent Publication No. 115179726 [Patent Document 3] Japanese Patent Application Laid-Open No. 2010-179786 [Patent Document 4] Japanese Patent Application Laid-Open No. 2008-504930 [Patent Document 5] Japanese Patent Application Laid-Open No. 2008-528221 Summary of the Invention [Problem to be solved by the invention]

[0004] However, while the fragrance containers described in Patent Documents 1 to 5 allow the scent to be switched by manually opening and closing the lid at the opening of the fragrance container, which emits multiple scents, it has been desired to be able to switch scents with an even simpler operation.In particular, in fragrance containers having fragrances with multiple shafts, it has been extremely difficult to switch non-adjacent shafts with a simple operation when switching scents.

[0005] The present invention aims to provide an air freshener container that is suitable for use in a vehicle or indoors and that has a plurality of air freshener cartridges containing a volatile liquid (air freshener) and that allows the scent or deodorization to be switched by a simple operation, and further to provide an air freshener container that allows the air freshener cartridges to be securely attached and easily replaced. [Means for solving the problem]

[0006] After extensive research, the inventors discovered that the above-mentioned object of the present invention can be achieved by using a knock ring mechanism that switches between scents and deodorizers in a fragrance container equipped with multiple fragrance cartridges and by using a specific structure to lock the fragrance cartridges to the fragrance container, and thus completed the following invention.

[0007] (1) An air freshener container in which a plurality of air freshener cartridges containing an air freshener composed of a volatile liquid in a liquid state and having a porous volatile body with capillary force are housed within a container body, wherein a knock ring member is arranged in contact with each of the air freshener cartridges, and the knock ring members are each equipped with a knock ring mechanism that engages with and interlocks with each other, and the air freshener cartridges are housed in the container body so as to be replaceable and are engaged with the container body by a screw (spiral) engagement. (2) The fragrance container according to (1), wherein a locking projection and recess are formed on the lower end of the knock ring member and a locking projection and recess are formed on the fragrance cartridge, so that they pass over each other. (3) The fragrance container according to (1) or (2), characterized in that the fragrance cartridge protrudes downward from the bottom surface of the container body when the fragrance deodorizing component is volatilizing. [Effects of the Invention]

[0008] According to the present invention, it is possible to provide an air freshener container suitable for use in a vehicle or indoors, which allows the scent or deodorization to be switched with a simple operation. It is also possible to provide an air freshener container in which the air freshener cartridge can be securely attached and easily replaced. Furthermore, it is possible to easily identify the air freshener cartridge that is currently volatilizing the fragrance. [Brief explanation of the drawings]

[0009] [Figure 1] 1A to 1D are diagrams showing an overall view of an aromatic agent container according to the present embodiment, in which (a) is a plan view, (b) is a front view, (c) is a right side view, and (d) is a rear view. [Figure 2] 1A and 1B are perspective views of an aromatic agent container according to an embodiment of the present invention, in which (a) is a perspective view seen from the front side, and (b) is a perspective view seen from the back side. [Figure 3] 1 is a perspective view showing a state in which an aromatic agent cartridge housed in an aromatic agent container according to the present embodiment has been removed. FIG. [Figure 4] 1A to 1D are component diagrams of an aromatic agent cartridge according to the present embodiment, in which (a) is a front view, (b) is a longitudinal cross-sectional view, (c) is a perspective view, and (d) is a perspective view of the aromatic agent cartridge with a storage cap removed. [Figure 5] 1A is a front view of an aromatic agent cartridge according to an embodiment of the present invention with a storage cap removed, and FIG. 1B is a partially enlarged view of the aromatic agent cartridge. [Figure 6] 1A and 1B are diagrams showing the top of the cover that constitutes the cover upper unit of this embodiment, in which (a) is a perspective view from the front side, (b) a plan view, (c) a bottom view, (d) a rear view, (e) an AA cross-sectional view shown in FIG. 1B, and (f) a B-B cross-sectional view shown in FIG. 1C. [Figure 7]1A and 1B are diagrams showing a slider constituting the cover lower unit of this embodiment, in which (a) is an oblique view seen from above the front side, (b) is an oblique view seen from above the back side, (c) is a plan view, and (d) is a bottom view. [Figure 8] 5A and 5B are diagrams showing a spring bearing that constitutes a cover lower unit according to the present embodiment, in which (a) is a perspective view seen from above, and (b) is a plan view. [Figure 9] 1A and 1B are diagrams showing the underside of the cover that constitute the under-cover unit of this embodiment, in which (a) is an oblique view from above the front side, (b) is an oblique view from above the back side, (c) is a plan view, (d) is a bottom view, and (e) is a CC cross-sectional view of FIG. (c). [Figure 10] 1A and 1B are diagrams showing a knock ring mechanism provided in an aromatic agent container according to the present embodiment, in which (a) is a perspective view seen from above the front side, (b) is a plan view, and (c) is a bottom view. [Figure 11] 1A and 1B are component diagrams of a knock ring member (left) of a knock ring mechanism according to the present embodiment, including (a) a perspective view seen from above the front side, (b) a plan view, (c) a perspective view seen from above the rear side, (d) a front view, (e) a right side view, (f) a bottom view, and (g) a perspective view seen from below the rear side. [Figure 12] 1A and 1B are component views of a knock ring member (center) of a knock ring mechanism according to the present embodiment, including (a) a perspective view seen from above the front side, (b) a plan view, (c) a perspective view seen from above the rear side, (d) a front view, (e) a right side view, (f) a bottom view, (g) a perspective view seen from below the rear side, and (h) a DD cross-sectional view of FIG. 1B. [Figure 13] 1A and 1B are component diagrams of a knock ring member (right) of a knock ring mechanism according to the present embodiment, including (a) a perspective view seen from above the front side, (b) a plan view, (c) a perspective view seen from above the rear side, (d) a right side view, (e) a front view, (f) a bottom view, and (g) a perspective view seen from below the rear side. [Figure 14] FIG. 2 is a parts exploded view of the fragrance container according to the present embodiment. [Figure 15] 1A and 1B are diagrams showing the state of the fragrance container of this embodiment before the fragrance cartridge is attached, where (a) is a plan view, (b) is an E-E cross-sectional view shown in FIG. 1A, and (c) is an F-F cross-sectional view shown in FIG. 1A. [Figure 16] 1A and 1B are diagrams showing the state in which an fragrance cartridge is attached to an fragrance container according to the present embodiment, where (a) is a plan view, (b) is a cross-sectional view taken along line GG shown in FIG. 1A, and (c) is a cross-sectional view taken along line HH shown in FIG. 1A. [Figure 17] 1A and 1B are diagrams showing a state in which the knock ring member (left) of the fragrance container according to the present embodiment has been slid downward, where (a) is a front view and (b) is a cross-sectional view taken along line II of FIG. 1A. [Figure 18] 1A and 1B are diagrams showing the knock ring mechanism of the fragrance container according to the present embodiment with the knock ring member (left) slid downward, and are (a) a perspective view seen from above the front side, (b) a plan view, (c) a perspective view seen from above the back side, (d) a front view, (e) a back view, and (f) an LL cross-sectional view of FIG. 1D. [Figure 19] 10A and 10B are diagrams showing a state in which a knock ring member (center) of the fragrance container according to the present embodiment has been slid downward, where (a) is a front view and (b) is a cross-sectional view taken along the line JJ in FIG. 10A. [Figure 20] 1A and 1B are diagrams showing the knock ring mechanism of the fragrance container according to the present embodiment in a state in which the knock ring member (center) is slid downward, and are (a) a perspective view seen from above the front side, (b) a plan view, (c) a front view, (d) a perspective view seen from above the back side, (e) a rear view, and (f) an MM cross-sectional view of FIG. (c). [Figure 21] 10A and 10B are diagrams showing a state in which the knock ring member (right) of the fragrance container according to the present embodiment has been slid downward, where (a) is a front view and (b) is a cross-sectional view taken along the line KK of FIG. 10A. [Figure 22] 1A and 1B are diagrams showing the knock ring mechanism of the fragrance container according to the present embodiment with the knock ring member (right) slid downward, and are (a) a perspective view seen from above the front side, (b) a plan view, (c) a front view, (d) a perspective view seen from above the rear side, (e) a rear view, (f) a cross-sectional view taken along the line NN of FIG. 1C, and (g) a cross-sectional view taken along the line OO of FIG. 1C. [Figure 23]1A and 1B are diagrams showing the state in which the container body of the fragrance container of this embodiment is equipped with a clip for attaching to the air vent of an air conditioner of a car, etc., where (a) shows the state in which the clip is attached, and (b) shows the state in which the clip is removed. DETAILED DESCRIPTION OF THE INVENTION

[0010] An aromatic agent container according to an embodiment of the present invention will be described below with reference to the drawings. Fig. 1 shows (a) a plan view, (b) a front view, (c) a right side view, and (d) a rear view of an aromatic agent container according to an embodiment. Fig. 2 shows (a) a perspective view of an aromatic agent container according to an embodiment as seen from the front side, and (b) a perspective view of an aromatic agent container according to an embodiment as seen from the rear side. Fig. 3 is a perspective view showing the state in which an aromatic agent cartridge housed in an aromatic agent container according to an embodiment has been removed.

[0011] 1 to 3, the fragrance container X accommodates three fragrance cartridges 10 (10a, 10b, 10c) in the container body. The container body is made up of an upper cover unit 90 and a lower cover unit 120.

[0012] Fragrance container X houses knock ring members 20, 30, 40 that lock fragrance cartridges 10a, 10b, 10c, and the knock ring members 20, 30, 40 engage with each other to form a knock ring mechanism 50 (see FIG. 10). Fragrance cartridges 10a, 10b, 10c are respectively placed in contact with the knock ring members 20, 30, 40 of the knock ring mechanism 50, and by sliding one of the fragrance cartridges 10a, 10b, 10c, for example, knock ring member 20 downward, the fragrance deodorizing ingredients are volatilized from the porous volatile body 15 (see FIG. 4) of fragrance cartridge 10a that is locked with the knock ring member 20, but the fragrance deodorizing ingredients are not volatilized from fragrance cartridges 10b, 10c that are locked with the other knock ring members 30, 40 of the knock ring mechanism 50.

[0013] Fig. 4 shows (a) a front view, (b) a longitudinal sectional view, (c) a perspective view, and (d) a perspective view of the fragrance cartridge according to the embodiment with the storage cap removed. Fig. 5 shows (a) a front view of the fragrance cartridge with the storage cap removed, and (b) a partially enlarged view of the fragrance cartridge (an enlarged view of the circle shown in Fig. 5a).

[0014] As shown in Figures 4(a) to (d), the fragrance cartridge 10 has a bottomed, cylindrical cartridge main body 12 which serves as a container for accommodating a filling 11 containing an aromatic deodorizer composed of a volatile liquid in a liquid state; a front barrel 13 which is fixed to the opening on the upper side of the cartridge main body 12 by fitting or the like; a detection tube 14 whose lower side within the front barrel 13 is fixed to the upper side of the cartridge main body 12 by fitting or the like; a porous volatile material 15 having capillary force which is attached to the upper side of the detection tube 14 and the front barrel 13; a relay wick 16 which is attached to the lower side of the detection tube 14 and whose lower end is fitted into the upper end of the filling 11; and a storage cap 17 which covers the porous volatile material 15.

[0015] As shown in Figures 4(d) and 5(a), the fragrance cartridge 10 has a threaded portion 18 formed on the upper side of the front barrel 13 for threadably engaging with threaded portions 21a, 31a, 41a (see Figures 11, 12, and 13) formed on knock ring members 20, 30, and 40 of the knock ring mechanism 50, which will be described later, when the fragrance cartridge 10 is engaged with the container body of the fragrance container X. Also, as shown in Figures 5(a) and (b), a locking uneven portion 19 is formed on the lower side of the front barrel 13 for locking with locking uneven portions 21b, 31b, and 41b (see Figures 11, 12, and 13) formed on the knock ring members 20, 30, and 40 of the knock ring mechanism 50, which will be described later, when the fragrance cartridge 10 is attached to the container body of the fragrance container X.

[0016] In this fragrance cartridge 10, a deodorizing agent composed of a volatile liquid in a liquid state absorbed in the padding 11 is supplied into the detection tube 14 via the relay wick 16. When the storage cap 17 of the fragrance cartridge 10 is removed, the deodorizing agent in a liquid state supplied into the detection tube 14 is supplied to the porous volatile body 15, and the deodorizing components are volatilized from the porous volatile body 15.

[0017] In this fragrance cartridge 10, by making the front barrel 13 and the detection tube 14 out of a visible material (transparent or translucent material), it is possible to easily see the remaining amount of deodorizing agent liquid in the cartridge body 12. It is also preferable to make the upper cover 60 (see FIG. 6) of the upper cover unit 90 that houses the fragrance cartridge 10, the slider 70 (see FIG. 7) of the lower cover unit 120, the lower cover 100 (see FIG. 9), etc., which will be described later, out of a transparent material, so that the remaining amount of deodorizing agent liquid in the fragrance cartridge 10 housed in the fragrance container X can be seen.

[0018] The fragrance container X according to this embodiment has three fragrance cartridges 10a, 10b, and 10c locked by a knock ring mechanism 50 and housed in a container body made up of an upper cover unit 90 and a lower cover unit 120. Here, the upper cover unit 90 includes an upper cover 60, and the lower cover unit 120 includes a slider 70, a spring retainer 76, a spring 77, and a lower cover 100.

[0019] Figure 6 shows the cover upper 60 that constitutes the cover upper unit 90, and includes (a) an oblique view from above, (b) a plan view, (c) a bottom view, (d) a rear view, (e) an AA cross-sectional view shown in Figure (b), and (f) a B-B cross-sectional view shown in Figure (c).

[0020] As shown in Figures 6(a) to 6(f), the upper cover 60 has a housing shape with an opening on the lower side, and slits 61a, 61b, and 61c are formed at predetermined intervals on the front side for sliding the operating portions 22, 32, and 42 (see Figures 11, 12, and 13) of the knock ring members 20, 30, and 40 constituting the knock ring mechanism 50. Furthermore, openings 62a to 62e for air circulation are formed at predetermined intervals on the rear side corresponding to the slits 61a, 61b, and 61c. Furthermore, an opening 91 for air circulation is formed on the top surface of the upper cover 60. Furthermore, inner lids 63a, 63b, and 63c for covering the respective fragrance cartridges 10a, 10b, and 10c are formed at predetermined intervals on the upper side of the interior of the upper cover 60.

[0021] Figure 7 shows the slider 70 that constitutes the cover lower unit 120, with (a) an oblique view from above the front side, (b) an oblique view from above the back side, (c) a plan view, and (d) a bottom view.

[0022] 7(a) to 7(d), slider 70 has substantially cylindrical holders 71a, 71b, and 71c into which fragrance cartridges 10a, 10b, and 10c are inserted and held. Slits 72a, 72b, and 72c are formed at predetermined intervals on the front side of slider 70 for sliding operation portions 22, 32, and 42 of knock ring members 20, 30, and 40 constituting knock ring mechanism 50. Also, openings 73a, 73b, and 73c for air circulation are formed at predetermined intervals on the rear side corresponding to slits 72a, 72b, and 72c. Furthermore, claws 74a and 74b are formed at the lower end of the rear side for engaging with under cover 100 constituting under cover unit 120, which will be described later.

[0023] In addition, a locking protrusion 75a is provided on the right side of the opening 73a in the retaining portion 71a of the slider 70 to maintain the position of the knock ring member 20 when it is slid downward, and a locking protrusion 75c is provided on the left side of the opening 73c in the retaining portion 71c to maintain the position of the knock ring member 40 when it is slid downward.

[0024] 8A and 8B are diagrams showing the spring bearing 76 that constitutes the cover lower unit 120, with (a) a perspective view from above and (b) a plan view. The spring bearing 76 has the same shape as the bottom surface of the slider 70 in plan view, and has cylindrical portions 76a, 76b, and 76c that communicate with the holding portions 71a, 71b, and 71c of the slider 70.

[0025] Figure 9 shows the under cover 100 that constitutes the under cover unit 120, and includes (a) an oblique view from above the front side, (b) an oblique view from above the back side, (c) a plan view, (d) a bottom view, and (e) a CC cross-sectional view of Figure (c).

[0026] 9(a) to 9(e), under cover 100 is shaped like a housing with an opening at the top, and has substantially circular openings 101a, 101b, and 101c formed in the bottom for inserting aromatic cartridges 10a, 10b, and 10c. Ribs 102a and 102b for positioning spring receiver 76 are formed in the lower inner wall of under cover 100, and locking holes 103a and 103b for locking claws 74a and 74b formed on slider 70 are formed in the upper parts of ribs 102a and 102b.

[0027] 10A to 10C are diagrams showing a knock ring mechanism 50 provided in an aromatic agent container, with (a) a perspective view seen from above the front side, (b) a plan view, and (c) a bottom view. As shown in Fig. 10A to 10C, the knock ring mechanism 50 is made up of knock ring members 20, 30, and 40, which are configured to interlock by engaging with each other.

[0028] FIG. 11 is a component diagram of the knock ring member (left) 20 of the knock ring mechanism according to this embodiment, and includes (a) a perspective view seen from above the front side, (b) a plan view, (c) a perspective view seen from above the rear side, (d) a front view, (e) a right side view, (f) a bottom view, and (g) a perspective view seen from below the rear side.

[0029] 11(a) to 11(g), the knock ring member (left) 20 has a ring portion 21 into which the fragrance cartridge 10a is inserted and held, and a threaded portion 21a for threadably engaging with the threaded portion 18 of the fragrance cartridge 10a is formed on the inner periphery of the upper part of the ring portion 21, and a locking uneven portion 21b for locking the fragrance cartridge 10a is formed on the lower end of the ring portion 21. In addition, an operating portion 22 for sliding the knock ring member 20 downward is provided on the front side of the ring portion 21.

[0030] The knock ring member 20 is equipped with an engagement cam 23 that releases the knock ring member 40 from sliding downward by kicking the engagement cam 44 (see Figure 13) of the knock ring member 40, and an engagement cam 24 that is kicked by the engagement cam 43 of the knock ring member 40 to release the knock ring member 20 from sliding downward.

[0031] The knock ring member 30 also includes an engagement cam 25 that releases the knock ring member 30 from a state in which it has been slid downward by kicking an engagement cam 36 (see FIG. 12) of the knock ring member 30, and an engagement cam 26 that releases the knock ring member 20 from a state in which it has been slid downward by being kicked by an engagement cam 33 of the knock ring member 30. Furthermore, the knock ring member 20 is provided with a locking protrusion 27 that maintains the position of the knock ring member 20 when it is slid downward.

[0032] FIG. 12 is a component diagram of the knock ring member (center) 30 of the knock ring mechanism according to this embodiment, and includes (a) a perspective view seen from above the front side, (b) a plan view, (c) a perspective view seen from above the rear side, (d) a front view, (e) a right side view, (f) a bottom view, (g) a perspective view seen from below the rear side, and (h) a DD cross-sectional view of FIG. (b).

[0033] 12(a) to 12(h), the knock ring member (center) 30 has a ring portion 31 into which the fragrance cartridge 10b is inserted and held, and a threaded portion 31a for threadably engaging with the threaded portion 18 of the fragrance cartridge 10b is formed on the inner periphery of the upper part of the ring portion 31, and a locking uneven portion 31b for locking the fragrance cartridge 10b is formed on the lower end of the ring portion 31. In addition, an operating portion 32 for sliding the knock ring member 30 downward is provided on the front side of the ring portion 31.

[0034] The knock ring member 30 is provided with an engagement cam 33 that kicks the engagement cam 26 of the knock ring member 20 to release the knock ring member 20 from a state in which it has slid downward, and an engagement cam 34 that kicks the engagement cam 46 of the knock ring member 40 to release the knock ring member 40 from a state in which it has slid downward. The knock ring member 30 is also provided with an engagement cam 36 that is kicked by the engagement cam 25 of the knock ring member 20 or the engagement cam 45 of the knock ring member 40 to release the knock ring member 30 from a state in which it has slid downward.

[0035] FIG. 13 is a component diagram of the knock ring member (right) of the knock ring mechanism according to this embodiment, and includes (a) a perspective view seen from above the front side, (b) a plan view, (c) a perspective view seen from above the rear side, (d) a right side view, (e) a front view, (f) a bottom view, and (g) a perspective view seen from below the rear side.

[0036] 13(a) to 13(g), the knock ring member (right) 40 has a ring portion 41 into which the fragrance cartridge 10c is inserted and held, and a threaded portion 41a for threadably engaging with the threaded portion 18 of the fragrance cartridge 10c is formed on the upper inner periphery of the ring portion 41, and a locking uneven portion 41b for locking the fragrance cartridge 10c is formed on the lower end of the ring portion 41. In addition, an operating portion 42 for sliding the knock ring member 40 downward is provided on the front side of the ring portion 41.

[0037] The knock ring member 40 is provided with an engaging cam 43 that releases the knock ring member 20 from sliding downward by kicking the engaging cam 24 of the knock ring member 20, and an engaging cam 44 that is kicked by the engaging cam 23 of the knock ring member 20 to release the knock ring member 40 from sliding downward.

[0038] The knock ring member 30 also includes an engagement cam 45 that releases the knock ring member 30 from a state in which it has slid downward by kicking the engagement cam 36 of the knock ring member 30, and an engagement cam 46 that releases the knock ring member 40 from a state in which it has slid downward by being kicked by the engagement cam 34 of the knock ring member 30. Furthermore, the knock ring member 40 is provided with a locking protrusion 47 that maintains its position when it has slid downward.

[0039] Next, assembly of the fragrance container according to this embodiment will be described with reference to the exploded view of the fragrance container shown in Fig. 14. First, spring retainer 76 is attached to the bottom of slider 70, and slider 70 and spring retainer 76 are placed inside undercover 100 so that the bottom surface of spring retainer 76 abuts against the upper surfaces of ribs 102a and 102b. Next, spring 77 is placed inside retaining portions 71a, 71b, and 71c of slider 70 so that the lower end of spring 77 abuts against the upper end surfaces of cylindrical portions 76a, 76b, and 76c of spring retainer 76.

[0040] Next, the knock ring mechanism 50 is placed on top of the slider 70 so that the operating portions 22, 32, 42 of the knock ring members 20, 30, 40 that make up the knock ring mechanism 50 are positioned within the slits 72a, 72b, 72c of the slider 70, and the lower ends of the ring portions 21, 31, 41 of the knock ring members 20, 30, 40 abut against the upper end of the spring 77. Next, the upper cover 60 is placed over the knock ring mechanism 50 so that the operating portions 22, 32, 42 of the knock ring members 20, 30, 40 that make up the knock ring mechanism 50 are positioned within the slits 61a, 61b, 61c of the upper cover 60.

[0041] Figure 15 shows the state before the fragrance cartridges 10a, 10b, and 10c are attached to the assembled fragrance container X, with (a) a plan view, (b) an E-E cross-sectional view shown in Figure (a), and (c) an F-F cross-sectional view shown in Figure (a).

[0042] 16 is a diagram showing a state in which an fragrance cartridge is attached to an fragrance container according to an embodiment, with (a) a plan view, (b) a GG cross-sectional view shown in (a), and (c) an HH cross-sectional view shown in (a). When attaching the fragrance cartridge 10 to the fragrance container X, first, one of the knock ring members 20, 30, 40 of the knock ring mechanism 50, for example, the operating portion 22 of the knock ring member 20, is slid downward, and the fragrance cartridge 10a, with the storage cap 17 removed, is inserted through the opening 101a formed in the bottom of the case bottom 100 of the fragrance container X. With the tip of the fragrance cartridge 10a positioned in the ring portion 21 of the knock ring member 20, the fragrance cartridge 10a is rotated so that the threaded portion 18 of the fragrance cartridge 10a is screwed (spiral-type) into the threaded portion 21a of the ring portion 21 of the knock ring member 20.

[0043] In this case, the locking uneven portion 19 formed on the side wall of the fragrance cartridge 10a and the locking uneven portion 21b formed on the lower end of the ring portion 21 of the knock ring member 20 climb over each other, thereby locking the fragrance cartridge 10a to the knock ring member 20 and preventing the fragrance cartridge 10a from coming off the knock ring member 20. The attachment of the fragrance cartridges 10b, 10c to the knock ring members 30, 40 is performed in the same manner as the fragrance cartridge 10a to the knock ring member 20.

[0044] In the fragrance container X according to this embodiment, the fragrance cartridges 10a, 10b, and 10c each contain a different volatile liquid (three types of fragrance deodorizers with different fragrance components, etc.), but they may also contain the same volatile liquid.

[0045] In the fragrance container X according to this embodiment, before operation of the operating parts 22, 32, 42 of the knock ring members 20, 30, 40, the fragrance cartridges 10a, 10b, 10c are covered by the inner lids 63a, 63b, 63c formed in the upper cover 60 due to the upward biasing force of the pulling 77 disposed in the slider 70. Therefore, in the state shown in Figure 16, the fragrance deodorizing ingredients are not volatilized from the porous volatile body 15 of the fragrance cartridges 10a, 10b, 10c.

[0046] On the other hand, when any one of the knock ring members 20, 30, 40 in the knock ring mechanism 50 of the fragrance container X is slid downward, the inner lid corresponding to the operated knock ring member is released, and the fragrance deodorizing components are volatilized from the porous volatile body 15 of the fragrance cartridge 10 engaged with the operated knock ring member.

[0047] Each part of the container body and other components of this embodiment is constructed from a multilayer structure in which the outer and inner layers are made of polypropylene (PP) resin, and the middle layer sandwiched between the outer and inner layers is made of nylon or ethyl vinyl alcohol (EVOH) resin, formed by blow molding.

[0048] The material of the fragrance cartridge 10 of this embodiment is not particularly limited as long as it does not affect the physical properties of the volatile liquid stored therein, and can be formed from, for example, at least one of metal, thermoplastic resin such as polyacetal resin, polyethylene resin, acrylic resin, polyester resin, ethylene-vinyl alcohol copolymer resin (EVOH), polyamide resin, polyurethane resin, polyolefin resin, polyvinyl resin, polycarbonate resin, polyether resin, polyphenylene resin, or thermosetting resin.

[0049] Alternatively, a container body or the like made of at least one of thermoplastic resin and thermosetting resin may be further formed with at least two or more layers of a composite material by bonding or vapor-depositing a metal foil, metal vapor deposition, or carbon material (including diamond-like carbon material) that also has air and moisture barrier properties on the inner and / or outer surfaces. Such composite materials can be formed using molding methods such as coextrusion, multilayer injection molding, and multilayer blow molding. They may also be formed from a material that contains a highly solvent-resistant material. Examples of highly solvent-resistant materials include PEN (polyethylene naphthalate) and a composite of PP and PEN.

[0050] The volatile liquid to be filled (stored) in the fragrance cartridge 10 is not particularly limited, but may be any of a variety of synthetic fragrances, natural fragrances, and the components that make up these compositions, as well as volatile liquid fragrance deodorizing components that have deodorizing properties, forest bathing effects, sedative effects, and awakening effects to wake people up from drowsiness, either alone or in combination of two or more types.

[0051] Examples of aromatic deodorizing components include hydrocarbons such as aliphatic hydrocarbons, terpene hydrocarbons, and aromatic hydrocarbons; alcohols such as aliphatic alcohols, terpene alcohols, and aromatic alcohols; ethers such as aliphatic ethers and aromatic ethers; oxides such as aliphatic oxides and oxides of terpenes; aldehydes such as aliphatic aldehydes, terpene aldehydes, aliphatic cyclic aldehydes, thioaldehydes, and aromatic aldehydes; ketones such as aliphatic ketones, terpene ketones, aliphatic cyclic ketones, non-benzene aromatic ketones, and aromatic ketones; acetals, ketals, phenols, phenol ethers, fatty acids, and terpene carboxylic acids. One or more of the following can be used in combination: acids such as aliphatic cyclic carboxylic acids and aromatic carboxylic acids; acid amides; lactones such as aliphatic lactones, macrocyclic lactones, terpene lactones, aliphatic cyclic lactones and aromatic lactones; esters such as aliphatic esters, furan carboxylic acid esters, aliphatic cyclic carboxylic acid esters, cyclohexyl carboxylic acid esters, terpene carboxylic acid esters and aromatic carboxylic acid esters; synthetic fragrances such as nitro musks, nitriles, amines, pyridines, quinolines, pyrrole, indole and other nitrogen-containing compounds; natural fragrances derived from animals and plants; and compound fragrances containing natural fragrances and / or synthetic fragrances.

[0052] For example, synthetic fragrances that can be used include those described in "Synthetic Fragrances: Chemistry and Product Knowledge" by Genichi Indo, published by The Chemical Daily in 1996, and "Perfume and Flavor Chemicals" by Stephen Arctander, published in Montclair, NJ in 1969. Natural fragrances that can be used include those described in "Encyclopedia of Fragrance" edited by the Japan Fragrance Association.

[0053] The main fragrance ingredients are: aldehydes C6-C12, anisaldehyde, acetal R, acetophenone, acetyl cedrene, adoxal, allyl amyl glycolate, allyl cyclohexane propionate, α-damascone, β-damascone, δ-damascone, ambroxan, amyl cinnamic aldehyde, amyl cinnamic aldehyde dimethyl acetal, amyl valerianate, amyl salicylate, isoamyl acetate, isoamyl salicylate, auranthiol, acetyleugenol, bacdanol, benzyl acetate Benzyl alcohol, benzyl salicylate, bergamial acetate, bornyl acetate, butyl butyrate, pt-butylcyclohexanol, pt-butylcyclohexyl acetate, ot-butylcyclohexanol, ot-butylcyclohexyl acetate, benzaldehyde, benzyl formate, caryophyllene, cashmeran, carvone, cedroamber, cedryl acetate, cedrol, celestride, cinnamic alcohol, cinnamic aldehyde, cis-jasmone, citral, citral dimethyl acetate Al, citrasal, citronellal, citronellol, citronellyl acetate, citronellyl formate, citronellyl nitrile, cyclacet, cyclamen aldehyde, cyclaprop, chalon, coumarin, cinnamyl acetate, δ-C6 to C13 lactone, dimethylbenzyl carbinol, dihydrojasmone, dihydrolinalool, dihydromyrcenol, dimetol, dimyrcetol, diphenyl oxide, ethyl vanillin, eugenol, fruitate, fenchyl alcohol, phenylethyl phenylacetate, galaxoli , γ-C6~C13 lactone, α-pinene, β-pinene, limonene, myrcene, β-caryophyllene, geraniol, geranyl acetate, geranyl formate, geranyl nitrile, hedione, helional, heliotropin, cis-3-hexenol, cis-3-hexenyl acetate, cis-3-hexenyl salicylate, hexyl cinnamic aldehyde, hexyl salicylate, hyacinth dimethyl acetal, hydrotropic alcohol, hydroxycitronellal, indole, ionone, isobornyl acetate,Isocyclocitral, Iso E Super, Isoeugenol, Isononyl Acetate, Isobutylquinoline, Jasmal, Jasmolactone, Jasmophillan, Koavon, Ligustral, Lilial, Lime Oxide, Linalool, Linalool Oxide, Linalyl Acetate, Lyral, Manzanate, Mayol, Menthanyl Acetate, Menthonate, Methyl Anthranilate, Methyl Eugenol, Menthol, α-Methyl Ionone, β-Methyl Ionone, γ-Methyl Ionone, Methyl Isoeugenol, Methyl Lavender Ketone, Methyl Tyl salicylate, muguet aldehyde, mugol, musk TM-II, musk 781, musk C14, muscone, civetone, cyclopentadecanone, cyclohexadecenone, cyclopentadecanolide, ambredolide, cyclohexadecanolide, 10-oxahexadecanolide, 11-oxahexadecanolide, 12-oxahexadecanolide, ethylene brassylate, ethylene dodecanedioate, oxahexadecen-2-one, 14-methyl-hexadecanolide, 14-methyl-hexadecanolide, musk ketone, musk tibetine, nopyralkone ol, nopyr acetate, neryl acetate, nerol, methyl phenyl acetate, mirac aldehyde, neobergamate, oakmoss No. 1, oribone, oxyphenylone, p-cresyl methyl ether, pentalid, phenylethyl alcohol, phenylethyl acetate, rubafuran, damascenone, raspberry ketone, dimethylbenzyl carbovinyl acetate, jasmacyclene, methyl naphthyl ketone, rosephenone, rose oxide, sandalore, sandera, Santarex, styraryl acetate, styraryl propionate cereal, terpineol, terpinyl acetate, tetrahydrolinalool, tetrahydrolinalyl acetate, tetrahydrogeraniol, tetrahydrogeranyl acetate, tonalid, traseolide, triplal, thymol, vanillin, verdox, yara yara, anise oil, bay oil, bois rose oil, cananga oil, cardamom oil, cassia oil, cedarwood oil, orange oil, mandarin oil, tangerine oil, basil oil, nutmeg oil, citronella oil, clove oil, coriander oil, elemi oil, eucalyptus oil, fennel oil, galbanum oil, geranium oil,These include cypress oil, Japanese cypress oil, jasmine oil, lavandin oil, lavender oil, lemon oil, lemongrass oil, lime oil, neroli oil, oakmoss oil, ocotia oil, patchouli oil, peppermint oil, perilla oil, petitgrain oil, pine oil, rose oil, rosemary oil, camphor oil, aromatic oils, clary sage oil, sandalwood oil, spearmint oil, spike lavender oil, star anise oil, thyme oil, tonka bean tincture, turpentine oil, wanilla bean tincture, vetiver oil, ylang-ylang oil, grapefruit oil, yuzu oil, benzoin, Peru balsam, tolu balsam, tuberose oil, musk tincture, castoreum tincture, civet tincture, and ambergris tincture.

[0054] Also, diethyl phthalate, dipropylene glycol, benzyl benzoate, isopropyl myristate, hercolin, isopentane, orange terpene, etc. can be used as a solvent or retainer for perfume.

[0055] The blending amount of these liquid deodorizing ingredients is usually selected appropriately from the range of 0.1 to 10% by mass, preferably 1 to 8% by mass, of the total amount (composition) of the deodorizing ingredient composed of a volatile liquid in a neat state. If the blending amount of this liquid deodorizing ingredient is less than 0.1% by mass, an adequate effect cannot be obtained, and if it exceeds 10% by mass, the amount of surfactant required becomes too large, making it difficult to maintain the sustainability of the fragrance and deodorization. It is also uneconomical in terms of cost.

[0056] The fragrance deodorizer used in this embodiment, which is composed of a volatile liquid in a neat state, uses water (purified water, distilled water, ion-exchanged water, pure water, ultrapure water, etc.) as a solvent, and may contain other surfactants or other components that have traditionally been used, as needed, within the scope that does not impair the effects of the present disclosure.

[0057] Specific examples of anionic surfactants among the other surfactants include alkyl sulfates, polyoxyethylene alkyl ether sulfates, alkyl allyl ether sulfates, alkyl benzene sulfonates, alkyl naphthalene sulfonates, α-sulfofatty acid salts, alkyl sulfonates, alkyl sulfosuccinates, α-olefin sulfonates, fatty acid soaps, alkyl ether carboxylates, acyl alaninates, acyl taurates, amino acid-based anionic surfactants or salts thereof typified by N-alkyliminodicarboxylic acids, alkyl phosphates, alkyl ether phosphates, alkyl phenyl ether phosphates, and alkyl phosphate ester salts.

[0058] Specific preferred examples of the amphoteric or semi-polar surfactants in the other surfactants include amine oxides, alkylbetaines, fatty acid amidoalkylbetaines, hydroxysulfobetaines, imidazolines, alkylglycines, and alkylalanines. Examples of nonionic surfactants include polyoxyethylene alkyl ethers, sorbitan fatty acid esters, polyoxyethylene acyl esters, alkyl polyglycosides, fatty acid glycoside esters, fatty acid methyl glycoside esters, alkyl methyl glucamides, and fatty acid alkanolamides.

[0059] Other ingredients that can be added include ingredients that maintain stable evaporation (propylene carbonate), preservatives, antioxidants, ultraviolet absorbers, pH adjusters, hydrotropes, inorganic salts, pigments, etc.

[0060] The deodorant may be imparted with pseudoplasticity in terms of ease of use, leakage resistance, etc. Pseudoplasticity can generally be imparted by using a thickener (gelling agent) or the like. Pseudoplasticity refers to the property of exhibiting non-fluidity in a static state but exhibiting fluidity when a shear force is applied.

[0061] Examples of thickeners include at least one selected from alkali-swellable association emulsions, alkali-swellable emulsions, polyvinylpyrrolidone, cellulose derivatives, xanthan gum, succinoglycan, diutan gum, guar gum, carrageenan, pectin, or inorganic thickeners such as cellulose derivative cross-linked acrylic acid polymers, oxidized cellulose, crystalline cellulose, rheozan gum, gellan gum, and montmorillonite clay minerals.

[0062] Both porous volatile body 15 and relay wick 16 have capillary force, and relay wick 16 is configured to reliably supply the deodorizing aromatic liquid composed of a volatile liquid to detector tube 14, while porous volatile body 15 may be made of any material and have any shape that allows the volatile liquid to volatilize when supplied, for example, both of which may be made of a porous material with pores.Specific examples include sponge bodies, sintered bodies, fiber bundles, foam bodies, spongy bodies, felt bodies, porous bodies, and structures with internal flow channels that have capillary force, and examples of shapes include cylindrical, bullet-shaped, rectangular, pen-core-shaped, elliptical, and square pillar shapes.

[0063] Materials that can be used to form these shapes, porous bodies, etc. include, for example, natural fibers, animal hair fibers, polyacetal resins, polyethylene resins, acrylic resins, polyester resins, polyamide resins, polyurethane resins, polyolefin resins, polyvinyl resins, polycarbonate resins, polyether resins, and polyphenylene resins.

[0064] Examples of fiber bundle cores include parallel fiber bundles made of the above-mentioned fiber materials (for example, fibers such as one or a combination of two or more types of 1 to 20 denier synthetic fibers, natural fibers, polyphenylene resins, etc.) that have been processed or resin-coated.

[0065] Liquid-permeable foams can be prepared by known methods, such as pouring a molten resin into a mold and foaming it, etc. Sintered bodies can be made from porous bodies (sintered cores) obtained by sintering plastic powders such as polyacetal resins, polyethylene resins, acrylic resins, polyester resins, polyamide resins, polyurethane resins, polyolefin resins, polyvinyl resins, polycarbonate resins, polyether resins, and polyphenylene resins.

[0066] The pore size of the porous volatile material 15, including those made from these sintered cores, is preferably 10 μm to 1000 μm, more preferably 20 μm to 300 μm, and particularly preferably 20 μm to 100 μm, as measured by SEM image analysis. The porosity is preferably 20 to 90%, and even more preferably 30 to 80%. In this embodiment, the "porosity" is calculated as follows. First, a porous volatile material having a known mass and apparent volume is immersed in water, and after sufficient water permeation, the mass is measured after removal from the water. From the measured mass, the volume of water permeated into the porous volatile material is calculated. The volume of this water is considered to be the same as the pore volume of the porous volatile material, and the porosity is calculated from the following formula. Porosity (unit: %) = (volume of water) / (apparent volume of porous volatile material 15) × 100

[0067] The porous volatile material 15 can be made of a porous carbon material. The pore size of the porous carbon material is preferably 10 μm to 1000 μm, more preferably 20 μm to 100 μm, as measured by SEM image analysis, and the porosity is preferably 20 to 90% as measured by the same method. As with the above, the shape can be, for example, a cylindrical shape, a bullet shape, a rectangular pillar shape, a pen core shape, an elliptical pillar shape, or a square pillar shape.

[0068] This carbon porous body may be any porous structure having fine interconnected pores, and examples thereof include a carbon composite molded body having a three-dimensional network structure or a point-sintered structure and composed of amorphous carbon and carbon powder, an isotropic high-density carbon molded body, a carbon fiber paper molded body, and an activated carbon molded body. Of these, a carbon composite molded body having the above-mentioned pore diameter and porosity and composed of amorphous carbon and carbon powder, which has fine interconnected pores, is preferred.

[0069] The carbon powder used to prepare this carbon composite having a porous structure is preferably at least one selected from highly oriented pyrolytic graphite (HOPG), kish graphite, natural graphite, artificial graphite, carbon nanotubes, and fullerenes (either alone or in combination of two or more types) in order to further improve reaction efficiency.

[0070] Furthermore, when the porous volatile body 15 is made of a carbon porous body, it may be made up of a liquid-passing section impregnated with an aromatic deodorizer made of a volatile liquid in a neat state and a heat-absorbing section that is not impregnated, and / or slits may be formed in the carbon porous body to further enhance evaporation from the porous volatile body 15.

[0071] The porous volatile material 15 according to this embodiment is cylindrical, but may have a rectangular cross section to further improve fragrance volatilization. A rectangular shape with a different aspect ratio for each side is particularly preferable. The rectangular cross section can increase the surface area compared to a circular cross section of the same volume, thereby improving fragrance performance. The aspect ratio of the rectangular cross section is preferably 1:1 to 1:13, and more preferably 1:1.1 to 1:1.4, which ensures the rigidity of the porous volatile material 15.

[0072] Next, the operating state of the knock ring mechanism when the fragrance container X according to this embodiment is in use will be described. Fig. 17 is a diagram showing a state in which the knock ring member (left) 20 of the fragrance container according to this embodiment has been slid downward, with (a) a front view and (b) a cross-sectional view along line II of Fig. 17(a). Fig. 18 is a diagram showing a state in which the knock ring mechanism 50 when the knock ring member (left) 20 has been slid downward, with (a) a perspective view seen from above the front side, (b) a plan view, (c) a perspective view seen from above the rear side, (d) a front view, (e) a rear view, and (f) a cross-sectional view along line LL of Fig. 17(d).

[0073] In this state, the locking protrusion 27 of the knock ring member 20 is locked with the locking protrusion 75a of the slider 70, and the knock ring member 20 remains slid downward, so the inner lid 63a is removed from the fragrance cartridge 10a, and fragrance is volatilized from the porous volatile material 15 of the fragrance cartridge 10a. In this case, the lower end of the volatilizing fragrance cartridge 10a protrudes downward from the bottom surface of the fragrance container X.

[0074] In this state, when the knock ring member (center) 30 is slid downward, the engagement cam 33 of the knock ring member (center) 30 kicks the engagement cam 26 of the knock ring member 20, releasing the state in which the knock ring member 20 has slid downward. That is, the locking protrusion 27 of the knock ring member 20 disengages from the locking protrusion 75a of the slider 70, the knock ring member 20 is pushed upward by the biasing force of the spring 77, and the porous volatile material 15 of the fragrance cartridge 10a enters the inner lid 63a, thereby closing the fragrance cartridge 10a and preventing fragrance from volatilizing from the fragrance cartridge 10a.

[0075] Fig. 19 is a diagram showing a state in which the knock ring member (center) 30 of the fragrance container according to this embodiment has been slid downward, with (a) a front view and (b) a JJ cross-sectional view of Fig. (a). Fig. 20 is a diagram showing a state in which the knock ring member (center) of the fragrance container has been slid downward, with (a) a perspective view seen from above the front side, (b) a plan view, (c) a front view, (d) a perspective view seen from above the rear side, (e) a rear view, and (f) an MM cross-sectional view of Fig. (c).

[0076] In this state, the upper end of the operating part 32 of the knock ring member 30 is locked in the upper end of the slit 61b of the upper cover 60, and the knock ring member 30 is kept slid downward, so that the inner lid 63b is removed from the fragrance cartridge 10b, and fragrance is volatilized from the porous volatile material 15 of the fragrance cartridge 10b. In this case, the lower end of the volatilizing fragrance cartridge 10b protrudes downward from the bottom surface of the fragrance container X.

[0077] In this state, when the knock ring member (right) 40 is slid downward, the engagement cam 45 of the knock ring member 40 kicks the engagement cam 36 of the knock ring member 30, releasing the state in which the knock ring member 30 has been slid downward. That is, the upper end of the operating portion 32 of the knock ring member 30 disengages from the upper end of the slit 61b of the upper cover 60, the knock ring member 30 is pushed upward by the biasing force of the spring 77, and the porous volatile material 15 of the fragrance cartridge 10b enters the inner lid 63b, thereby closing the fragrance cartridge 10b and preventing fragrance from volatilizing from the fragrance cartridge 10b.

[0078] Fig. 21 is a diagram showing a state in which the knock ring member (right) 40 of the fragrance container according to this embodiment has been slid downward, with (a) a front view and (b) a KK cross-sectional view of Fig. 22. Fig. 22 is a diagram showing a state in which the knock ring mechanism 50 of the fragrance container has been slid downward with (a) a perspective view seen from above the front side, (b) a plan view, (c) a front view, (d) a perspective view seen from above the rear side, (e) a rear view, (f) a NN cross-sectional view of Fig. 22, and (g) an OO cross-sectional view of Fig. 22.

[0079] In this state, the locking protrusion 47 of the knock ring member 40 is locked with the locking protrusion 75c of the slider 70, and the knock ring member 40 remains slid downward, so the inner lid 63c is removed from the fragrance cartridge 10c, and fragrance is volatilized from the porous volatile material 15 of the fragrance cartridge 10c. In this case, the lower end of the volatilizing fragrance cartridge 10c protrudes downward from the bottom surface of the fragrance container X.

[0080] In this state, when the knock ring member (center) 30 is slid downward, the engagement cam 34 of the knock ring member (center) 30 kicks the engagement cam 46 of the knock ring member 40, releasing the state in which the knock ring member 40 has been slid downward. That is, the locking protrusion 47 of the knock ring member 40 disengages from the locking protrusion 75c of the slider 70, the knock ring member 40 is pushed upward by the biasing force of the spring 77, and the porous volatile material 15 of the fragrance cartridge 10c enters the inner lid 63c, thereby closing the fragrance cartridge 10c and preventing fragrance from volatilizing from the fragrance cartridge 10c.

[0081] 21 and 22, when the knock ring member (right) 40 is slid downward, if the knock ring member 20 is slid downward, the engagement cam 23 of the knock ring member 20 kicks the engagement cam 44 of the knock ring member 40, and the knock ring member 40 is released from its downward sliding state. That is, the locking protrusion 47 of the knock ring member 40 disengages from the locking protrusion 75c of the slider 70, the knock ring member 40 is pushed upward by the biasing force of the spring 77, and the porous volatile material 15 of the fragrance cartridge 10c enters the inner lid 63c, thereby closing the fragrance cartridge 10c and preventing fragrance from volatilizing from the fragrance cartridge 10c.

[0082] 17 and 18, when the knock ring member (left) 20 is slid downward, sliding the knock ring member 40 downward causes the engagement cam 43 of the knock ring member 40 to kick the engagement cam 24 of the knock ring member 20, releasing the knock ring member 20 from its downward sliding state. That is, the locking protrusion 27 of the knock ring member 20 disengages from the locking protrusion 75a of the slider 70, the knock ring member 20 is pushed upward by the biasing force of the spring 77, and the porous volatile material 15 of the fragrance cartridge 10a enters the inner lid 63a, thereby closing the fragrance cartridge 10a and preventing fragrance from volatilizing from the fragrance cartridge 10a.

[0083] 19 and 20, when the knock ring member 20 is slid downward, the engagement cam 25 of the knock ring member 20 kicks the engagement cam 36 of the knock ring member 30, and the knock ring member 30 is released from its downward sliding state. That is, the upper end of the operating part 32 of the knock ring member 30 disengages from the upper end of the slit 61b of the upper cover 60, the urging force of the spring 77 pushes the knock ring member 30 upward, and the porous volatile material 15 of the fragrance cartridge 10b enters the inner lid 63b, thereby sealing the fragrance cartridge 10b and preventing fragrance from volatilizing from the fragrance cartridge 10b.

[0084] Figure 23 shows a state in which the container body of the fragrance container X according to this embodiment is provided with a clip for attaching it to the air vent of an air conditioner of a vehicle or the like, with (a) showing the state with the clip attached and (b) showing the state with the clip removed. As shown in Figure 23, by attaching clip 200 to attachment hole 110 formed on the back surface of the container body of fragrance container X, fragrance container X can be easily attached to the air vent of an air conditioner of a vehicle or the like. In this case, all of operating units 22, 32, 42 face the front side (toward the user), allowing scent switching with a simple operation.

[0085] According to the fragrance container X of this embodiment, by arranging multiple engagement cams on the knock ring members 20, 30, 40, scents and the like can be easily switched by a simple sliding operation even when the fragrance cartridges 10 are not adjacent to each other. In this case, the fragrance cartridge that is volatilizing the fragrance protrudes downward from the underside of the fragrance container X, making it easy to identify the fragrance cartridge that is volatilizing the fragrance.

[0086] In the fragrance container of this embodiment, the fragrance cartridges 10a, 10b, 10c are engaged with the knock ring members 20, 30, 40 by screw threads, so that the fragrance cartridges 10a, 10b, 10c can be securely engaged with the knock ring members 20, 30, 40, and the fragrance cartridges can be easily replaced when the fragrance in the fragrance cartridge has been consumed, for example.

[0087] Furthermore, when the fragrance cartridges 10a, 10b, 10c are screwed (screwed) onto the threaded portions 21a, 31a, 41a of the ring portions 21, 31, 41 of the knock ring members 20, 30, 40, the locking uneven portions 19 formed on the side walls of the fragrance cartridges 10a, 10b, 10c and the locking uneven portions 21b, 31b, 41b formed on the lower ends of the ring portions 21, 31, 41 of the knock ring members 20, 30, 40 climb over each other, thereby ensuring a secure lock, and preventing the fragrance cartridges 10a, 10b, 10c from coming off the knock ring members 20, 30, 40. [Industrial Applicability]

[0088] To provide an air freshener container suitable for use in a vehicle or indoors, which allows switching of scents and deodorization by simple operations, and also allows easy attachment of an air freshener cartridge to the air freshener container and easy replacement of the air freshener cartridge. [Explanation of symbols]

[0089] X...fragrance container, 10 (10a, 10b, 10c)...fragrance cartridge, 11...filling, 12...cartridge body, 13...front shaft, 14...detection tube, 15...porous volatile material, 16...relay core, 17...storage cap, 18...screw portion, 19...locking uneven portion, 20...knock ring member (left), 30...knock ring member (center), 40...knock ring member (right), 21, 31, 41...ring portion, 21a, 31a, 41a...screw portion, 21b, 31b, 41b...locking uneven portion, 22, 32, 42...operation portion, 23, 24, 25, 26, 33, 34, 36, 43, 44, 45, 46...engagement cam, 27, 47...locking uneven portion, 50... knock ring mechanism, 60... upper cover, 61a, 61b, 61c... slits, 62a to 62e... openings, 63a, 63b, 63c... inner lid, 70... slider, 71a, 71b, 71c... retaining portion, 72a, 72b, 72c... slits, 73a, 73b, 73c... openings, 74a, 74b... claw portion, 75a, 75c... locking protrusion, 76... spring receiver, 76a, 76b, 76c... openings, 77... spring, 90... upper cover unit, 91... opening, 100... lower cover, 101a, 101b, 101c... openings, 102a, 102b... rib, 103a, 103b... locking hole, 120... lower cover unit

Claims

1. An air freshener container that contains an air freshener composed of a volatile liquid in a liquid state, and has a plurality of air freshener cartridges that are provided with a porous volatile body having capillary force, and is housed in a container body, The fragrance cartridges each have a knock ring member disposed in contact with the knock ring mechanism, and the knock ring members are engaged with each other to interlock with each other. The fragrance container is characterized in that the fragrance cartridge is accommodated in the container body so as to be freely replaceable and is engaged with the container body by screwing.

2. 2. The fragrance container according to claim 1, wherein a locking projection and recess are formed on the lower end of the knock ring member and on the fragrance cartridge, so that the locking projection and recess are disposed to extend over each other.

3. 3. The aromatic agent container according to claim 1, wherein the aromatic agent cartridge protrudes downward from the bottom surface of the container body when the aromatic deodorizing component is being volatilized.

Citation Information

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