Deodorizing device

The deodorizing device addresses the limitation of conventional devices by allowing flexible positioning of a treatment air generator to deodorize both inside and outside surfaces of wigs, enhancing user-friendliness and effectiveness.

JP7761572B2Active Publication Date: 2025-10-28SHARP KK +1
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Patent Information

Application Number
JP2022547612
Authority / Receiving Office
JP · JP
Patent Type
Patents
Current Assignee / Owner
Priority Date
2020-09-14
Filing Date
2021-09-08
Publication Date
2025-10-28
Estimated Expiration
2041-09-08

AI Technical Summary

Technical Problem

Conventional deodorizing devices for wigs and similar items cannot effectively deodorize both the inside and outside surfaces, and are not user-friendly in their operation.

Method used

A deodorizing device with a treatment air generator that generates particles by electric discharge and a stand unit with multiple installation sections, allowing the generator to be positioned at different locations to direct treatment air to various parts of the object, including inside, outside, and ends of the wig.

Benefits of technology

The device provides user-friendly, selective deodorization of desired areas on wigs and similar items, effectively eliminating odors and static electricity while maintaining portability and ease of use.

✦ Generated by Eureka AI based on patent content.

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Abstract

Provided is a deodorization device that is easy to use and can selectively deodorize necessary locations of a target object. A wig storage device (1), serving as a deodorization device, comprises an ion generator (2) that sends out a treatment ion wind, and a stand part (3) that holds a wig, which is a target object, and allows the ion generator (2) to be detachably installed. The stand part (3) is provided with a plurality of installation portions (19) for installing the ion generator (2), and the stand part (3) enables the ion generator (2) to be installed in a plurality of locations, which are different areas of a wig that are struck by an ion wind sent out from the ion generator (2).
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Description

[Technical Field]

[0001] The present invention relates to a deodorizing device that can deodorize objects such as wigs, hats, and boots. [Background technology]

[0002] A conventional device for removing odors and bacteria from wigs and the like is the deodorizing and sterilizing device for wigs and the like described in Patent Document 1. The deodorizing and sterilizing device for wigs and the like described in Patent Document 1 comprises a mounting base on which an object to be deodorized and sterilized, such as a wig, is placed, an ozone generating means for generating ozone from oxygen in the air, and an air blower fan. The mounting base is formed in a hemispherical shape and has an air outlet. The ozone generated by the ozone generating means is blown out from the air outlet of the mounting base, contained in the air flow (hereinafter referred to as wind) generated by the air blower fan. [Prior art documents] [Patent documents]

[0003] [Patent Document 1] Japanese Utility Model Publication "Registered Utility Model No. 3067653" Summary of the Invention [Problem to be solved by the invention]

[0004] However, the device in Patent Document 1 can direct the air from the air outlet toward the inside of the object, but cannot direct it toward the outside of the object. Therefore, while it can remove scalp odors and the like that adhere to the inside of the object, it cannot remove cigarette odors and the like that adhere to the outside of the object, and it cannot be said to be user-friendly.

[0005] An object of one aspect of the present invention is to provide a user-friendly deodorizing device that can selectively deodorize a desired area of ​​an object. [Means for solving the problem]

[0006] In order to solve the above problems, a deodorizing device according to one aspect of the present invention comprises a treatment air generator that generates particles by electric discharge and sends out treatment air, which is air containing the particles, and a stand unit that holds an object to be treated with the treatment air and on which the treatment air generator is detachably installed, and the stand unit can install the treatment air generator at multiple locations on the object where the treatment air sent out from the treatment air generator hits different parts of the object. The stand part is , The apparatus has an object holding section that holds the object by partially contacting the inner surface of the object, an arm section that extends upward from the object holding section and has an upper end located higher than the object holding section, and a plurality of installation sections that detachably install the treatment airflow generation device, the plurality of installation sections including a first installation section that installs the treatment airflow generation device below the object holding section with the airflow facing upward, and a second installation section that installs the treatment airflow generation device at the upper end of the arm section with the airflow facing downward. . [Effects of the Invention]

[0007] According to one aspect of the present invention, it is possible to provide a user-friendly deodorizing device that can selectively deodorize necessary areas of an object. [Brief explanation of the drawings]

[0008] [Figure 1] 1 is a perspective view of a wig storage device as a deodorizing device according to an embodiment of the present invention. [Figure 2] 2 is a perspective view of an ion generator provided in the wig storage device shown in FIG. 1. FIG. [Figure 3] FIG. 2 is an enlarged view of an area A1 in FIG. [Figure 4] 1. FIG. 4 is a diagram showing an example of the shape of a protrusion formed on a wig holding portion of the wig storage device shown in FIG. [Figure 5] FIG. 2 is a diagram showing an example of how the wig storage device shown in FIG. 1 is used, in which an ion generator is installed in a first installation section and the wig storage device is placed thereon. [Figure 6] FIG. 2 is a diagram showing an example of how the wig storage device shown in FIG. 1 is used, in which an ion generator is installed in the second installation section and the wig storage device is placed thereon. [Figure 7] FIG. 2 is a diagram showing an example of how the wig storage device shown in FIG. 1 is used, in which an ion generator is installed in a third installation section and the wig storage device is used in a suspended state. [Figure 8]FIG. 2 is a diagram showing an example of using the wig storage device shown in FIG. 1, in which the ion generator removed from the stand is held in a hand and the wig storage device is placed on the stand. [Figure 9] FIG. 2 is an image diagram of a cover provided in the wig storage device shown in FIG. [Figure 10] FIG. 10 is an image diagram showing an example in which the wig storage device with the cover 30 shown in FIG. 9 attached is used in a hanging state. [Figure 11] FIG. 10 is an image diagram showing an example in which the wig storage device with the cover shown in FIG. 9 attached is used in a laid-down state. DETAILED DESCRIPTION OF THE INVENTION

[0009] An embodiment of the present invention will be described in detail below. In this embodiment, a wig is used as an object, and a wig storage device that can deodorize and store a wig is exemplified as a deodorizing device.

[0010] (1. Overview of Wig Storage Device 1) FIG. 1 is a perspective view of a wig storage device 1 as a deodorizing device according to this embodiment. As shown in FIG. 1, the wig storage device 1 includes an ion generator 2 as a treatment wind generator and a stand unit 3. The ion generator 2 generates ions corresponding to particles by electrical discharge and sends out ion wind as treatment wind. The ions to be generated include positive (+) ions (e.g., H + (H2O) m (m is any natural number)) or negative (-) ions (e.g., O 2- (H2O) n (n is any natural number)) or both.

[0011] Wigs are easily damaged if stored in an electrically charged state. Therefore, when the object is a wig, an ion generator 2 that emits ionized air that can eliminate static electricity in addition to deodorizing is effective, and eliminating static electricity can prevent the wig from deteriorating. Furthermore, regardless of the object, it is preferable to be able to sterilize in addition to deodorizing, and an ion generator 2 that emits ionized air that can sterilize is effective.

[0012] The stand unit 3 holds the wig 4 and detachably mounts the ion generator 2. As will be described later, the stand unit 3 can mount the ion generator 2 at a plurality of different locations on the wig 4 that are exposed to the ion wind emitted from the ion generator 2.

[0013] (2. Ion Generator 2) 2 is a perspective view of the ion generator 2 provided in the wig storage device 1. As shown in FIG. 2, in this embodiment, the ion generator 2 has a bell-shaped case 10, and is provided with a discharge device (not shown) that generates ions inside the case 10 and a blower fan (not shown). An outlet 5 for blowing out ionized air is provided on the circular surface of the case 10 that is the mouth side of the bell shape, and a hook 6 for suspending and installing the ion generator 2 is provided on the curved surface of the case 10 opposite the side with the outlet 5. For ease of explanation, the circular surface with the outlet 5 provided will be referred to as the upper surface, and the curved surface with the hook 6 provided will be referred to as the lower surface.

[0014] Inlet 7, which draws in air to become ionic wind, is provided at the bottom of the side wall of case 10 located below ion generator 2. Inlet 7 is provided on both sides facing each other. An air passage is formed between inlet 7 and outlet 5. The discharge device is installed so that it can release the generated ions into the air passage. By driving the blower fan, air is drawn in through inlet 7, and the drawn-in air contains ions and becomes ionic wind, which is then blown out from outlet 5. In this embodiment, the blower fan is disposed on the curved surface of case 10 opposite the side where outlet 5 is located, and the ion generator 2 has its center of gravity on the side opposite the side where outlet 5 is located.

[0015] The air outlet 5 is located on one side of the top surface of the ion generator 2 in the radial direction, and an operation unit 8 for operating the ion generator 2, such as to turn it on and off, is provided on the other side. A recess 10a recessed radially inward is formed in the upper part of the side wall of the case 10 located below the operation unit 8. The recess 10a forms a protruding portion 10b that protrudes radially outward below the operation unit 8. A circuit board (not shown) that drives the discharge device and the blower fan is disposed inside the protruding portion 10b. A connection portion (not shown) for connecting a power cable 11 is provided on a lower surface 10c of the protruding portion 10b. A cable-side connection terminal 12 provided on one end of the power cable 11 is inserted from the lower side of the protruding portion 10b into the connection portion provided on the lower surface 10c and connected to a board-side connection terminal (not shown) provided on the circuit board.

[0016] A dedicated AC adapter (not shown) is provided at the other end of the power cable 11, and AC (alternating current) power is converted to DC (direct current) and supplied to the circuit board. Note that a USB terminal (not shown) may be provided at the other end of the power cable 11, and the USB terminal may be connected to the AC adapter.

[0017] (3. Stand part 3) As shown in FIG. 1, the stand unit 3 has a wig holding unit (object holding unit) 15, an arm unit 16, a leg unit 17, a hanging unit 18, and a plurality of installation units 19.

[0018] The wig holding part 15 holds the wig 4 from the inside. In this embodiment, the wig holding part 15 holds the wig 4 by partially contacting the inner surface of the wig 4. More specifically, the wig holding part 15 includes a first frame 15a, a second frame 15b, and a fixing ring 15c. The first frame 15a and the second frame 15b have portions that are elliptical in side view, and the fixing ring 15c is formed in a ring shape in plan view. The first frame 15a and the second frame 15b are assembled with the major axes of the ellipses aligned and the minor axes of the ellipses shifted in the circumferential direction, and in this state the fixing ring 15c is fitted from above and fixed.

[0019] When assembled, the major axis of each ellipse of first frame 15a and second frame 15b faces up and down, and four frames extending in four directions from the top hold the wig 4 from the inside. By using such frames to hold the wig 4, the contact area between the inside surface of the wig 4 and wig holder 15 is reduced, allowing more ionic wind to be applied to the inside surface of the wig 4.

[0020] Furthermore, as a more preferable configuration, as shown in FIG. 3, multiple protrusions 20 are formed on the upper surface of the first frame 15a and the second frame 15b, which contact the wig 4. Note that FIG. 3 is an enlarged view of area A1 in FIG. 1. By forming multiple protrusions 20 on the upper surface of the first frame 15a and the second frame 15b, which contact the wig 4, a space is maintained between the inner surface of the wig 4 and the first frame 15a and the second frame 15b, allowing even more ionic wind to be directed at the inner surface of the wig 4. The multiple protrusions 20 also function to prevent the wig 4 from slipping off the wig holder 15.

[0021] The shape of the protrusion 20 may be rounded (e.g., hemispherical, spherical, semicircular in side view, spherical in side view, etc.). FIG. 4 shows an example of the shape of the protrusion 20. The view indicated by reference numeral 1001 is a view of the main part of the stand unit 3 from the middle to the lower part from the front (elliptical surface) of the first arm 15a. The view indicated by reference numeral 1002 is a view of the main part of the stand unit 3 from the middle to the lower part from the front (elliptical surface) of the second arm 15b. The view indicated by reference numeral 1003 is an enlarged view of region A2 in the view indicated by reference numeral 1001, and the view indicated by reference numeral 1004 is an enlarged view of region A3 in the view indicated by reference numeral 1002. By making the protrusion 20 round in this way, it is possible to prevent the inner surface of the wig 4 from being scratched when the wig 4 is held in the wig holder 15 or when the wig 4 is removed from the wig holder 15.

[0022] In this embodiment, as shown in FIG. 1 , the arm portion 16 extends upward above the wig holding portion 15, with its upper end positioned higher than the wig holding portion 15. The arm portion 16 secures space above the wig holding portion 15, allowing the ion generator 2 to be installed above the wig holding portion 15. The arm portion 16 is formed in an arc shape that curves outward. The arm portion 16 is connected to the first frame 15a that constitutes the wig holding portion 15, and the arm portion 16 and the first frame 15a are a single component. The arm portion 16 has a foldable structure and is designed to be unfolded when in use. This allows the arm portion 16 to be folded when not in use for compact storage, thereby improving the storability and portability of the wig storage device 1.

[0023] The legs 17 are provided at the bottom of the stand 3, and enable the stand 3 to stand on its own. By providing the legs 17, the wig storage device 1 can be used while placed on a desk or the like. The legs 17 have four legs 17a, two of which are integral with the arm 16 and the first frame 15a, and the other two legs 17a are integral with the second frame 15b.

[0024] The hanging part 18 is a hook-shaped member provided on the upper part of the stand part 3 facing upward, and allows the stand part 3 to be hung. By providing the hanging part 18, the wig storage device 1 can be used in a state where it is hung from a bar in a closet or the like (see FIG. 7). The hanging part 18 is provided on the upper end of the arm part 16.

[0025] It is preferable that the hanging section 18 is provided so that the open section 18a faces the arm section 16. In this way, the wig storage device 1 can be easily hung from a bar or the like of a closet with the arm section 16 side positioned at the back of the closet and the wig holding section 15 side positioned at the front of the closet. By hanging the wig storage device 1 with the wig holding section 15 side facing the front of the closet, it is easy to place the wig 4 on the wig holding section 15 and to remove the wig 4 placed (held) in the wig holding section 15.

[0026] The installation section 19 is for detachably installing the ion generator 2 on the stand section 3. The installation sections 19 are provided at multiple locations on the stand section 3 so that the ion generators 2 can be installed at multiple locations on the stand section 3. The ion winds emitted from the ion generators 2 installed on the respective installation sections 19 hit different parts of the wig 4. In this embodiment, as shown in FIG. 1, the installation sections 19 are provided at three locations as first to third installation sections 19A to 19C.

[0027] The first installation part 19A is provided below the wig holding part 15, and the ion generator 2 is installed below the wig holding part 15 with the airflow direction facing upward. More specifically, the first installation part 19A is configured as a recess 23 formed in the center of the four legs 17a of the leg part 17. The inner shape of the recess 23 corresponds to the outer shape of the lower side of the ion generator 2, which will be described later, and the ion generator 2 can be stably held.

[0028] 4, a recess (not shown) is formed at the intersection of the first frame 15a and the second frame 15b, which forms the bottom of the recess 23. When the ion generator 2 is installed on the first installation part 19A, the hook 6 of the ion generator 2 fits into this recess.

[0029] The second installation section 19B is provided at the upper end of the arm section 16, and the ion generator 2 is installed at the upper end of the arm section 16 with the airflow direction facing downward. More specifically, the second installation section 19B is configured with a hook 24 formed facing downward at the upper end of the arm section 16. By hooking the hook 6 of the ion generator 2 onto the hook 24, the ion generator 2 can be held in a suspended state.

[0030] The hook 24 is preferably provided so that the open portion 24a faces away from the arm portion 16. In a configuration in which the open portion 24a faces the arm portion 16, it is necessary to first pass the ion generator 2 under the hook 24 and then lift it up to hang it. However, by facing the open portion 24a away from the arm portion 16, the ion generator 2 can be easily hung without passing under the hook 24. The arm portion 16 is provided with a hook 21 that can be used to hang the power cable 11 of the ion generator 2 installed on the second installation portion 19B.

[0031] The third installation section 19C is provided inside the upper part of the wig holding section 15, and the ion generator 2 is installed inside the upper part of the wig holding section 15 with the airflow direction facing downward. More specifically, the third installation section 19C is configured by a hook 25 formed on the second frame 15b of the wig holding section 15. By hooking the hook 6 of the ion generator 2 onto the hook 25, the ion generator 2 can be held in a hanging state.

[0032] Like the hook 24, the hook 25 is preferably provided so that the open portion 25a faces away from the arm portion 16. By facing the open portion 25a away from the arm portion 16, the ion generator 2 can be easily hung on the hook 25 without having to go under it. The second frame 15b is provided with a hook 22 that can be used to hang the power cable 11 of the ion generator 2 installed on the third installation portion 19C. The hook 22 may be provided on the first frame 15a or on the arm portion 16.

[0033] In this embodiment, the arm unit 16, first frame 15a, two legs 17a, and hanging unit 18 are integrally formed, and the second frame 15b and the other two legs 17a are integrally formed. As a result, the stand unit 3 can be easily assembled by unfolding the folded arm unit 16, combining the first frame 15a with the second frame 15b, and fitting the fixing ring 15c. The foldable and assembleable structure of the stand unit 3 makes the wig storage device 1 highly portable.

[0034] In FIG. 1, the circular member attached to the upper part of the arm part 16 is a hanger 27 for hanging a cover 30 (see FIG. 9) described later.

[0035] (4. Usage example) 5 to 8 are diagrams illustrating examples of using the wig storage device 1. FIG. 5 illustrates an example in which the ion generator 2 is installed in the first installation section 19A and the wig storage device 1 is placed in use. As shown in FIG. 5, by installing the ion generator 2 in the first installation section 19A, ionized air can be directed from below onto the inner surface of the wig 4 held in the wig holder 15. This allows the inner surface (the surface facing the scalp) of the wig 4 to be effectively deodorized, disinfected, and neutralized. This method of use can effectively eliminate, for example, scalp odor adhering to the inside of the wig 4. Furthermore, as described above, in this embodiment, the center of gravity of the ion generator 2 is located at the bottom, allowing the ion generator 2 to be stably installed in the first installation section 19A.

[0036] FIG. 6 shows an example in which the ion generator 2 is installed in the second installation section 19B and used with the wig storage device 1 placed thereon. As shown in FIG. 6, by installing the ion generator 2 in the second installation section 19B, ionized air can be directed from above onto the outer surface of the wig 4 held in the wig holding section 15. This effectively deodorizes, disinfects, and neutralizes electricity from the outside of the wig 4. This method of use can effectively eliminate odors such as cigarette smoke that have adhered to the outside of the wig 4, for example.

[0037] FIG. 7 shows an example in which the ion generator 2 is installed in the third installation section 19C and the wig storage device 1 is used in a suspended state. As shown in FIG. 7, by installing the ion generator 2 in the third installation section 19C, ionized air can be directed from the center of the stand section 3 toward the ends of the wig 4 held in the wig holding section 15. Furthermore, when used in a suspended state, ionized air can be directed all the way to the ends of even a wig 4 with long hair. This allows ions to be effectively distributed to the ends of even a wig 4 with long hair, thereby deodorizing, disinfecting, and eliminating static electricity.

[0038] FIG. 8 shows an example in which the ion generator 2 is removed from the stand 3 and held in the hand while the wig storage device 1 is placed on the wig. As shown in FIG. 8, the wig 4 held in the wig holder 15 may be brushed while ionized air is blown onto it (while ionized air is emitted toward the wig 4). This allows ions to be distributed throughout the interior of the wig 4 (deep inside the hair) for treatment. This method of use also allows targeted deodorization, sterilization, and static elimination of specific areas of the wig 4.

[0039] Furthermore, by forming the hook 6 of the ion generator 2 as a rotating hook, it becomes possible to manually change the orientation of the air outlet 5 when the ion generator 2 is hung from the stand unit 3, as shown in Figs. 6 and 7. This makes it possible to change the convection region of ions. Furthermore, in addition to forming the hook 6 of the ion generator 2 as a rotating hook, a louver may be provided at the air outlet 5 of the ion generator 2 so that the ionized wind is blown out obliquely relative to the normal direction of the surface on which the air outlet 5 is formed. With such a configuration, it becomes possible to rotate the ion generator 2 by wind force, thereby further expanding the convection region of ions.

[0040] (5. Accessories) FIG. 9 is an image diagram of the cover 30 of the wig storage device 1. As shown in FIG. 9, the cover 30 accommodates the stand unit 3 holding the wig 4 and the ion generator 2 inside. In this embodiment, the cover 30 is formed into a cylindrical shape with closed upper and lower ends, and is made of a flexible, foldable material. The top surface of the cover 30 is supported from the inside by a circular hanger 27 attached to the upper part of the arm unit 16.

[0041] The cover 30 has a zipper 31 extending vertically on the front surface, and is opened and closed using the zipper 31. The cover 30 also has a transparent window 32 made of a transparent material on the front surface, through which the interior can be seen. A slit 33 is formed on the top surface of the cover 30, through which the hanging portion 18 (see FIG. 1) of the stand unit 3 is pulled out. A cable opening 34 is formed on the bottom surface of the cover 30, through which the power cable 11 of the ion generator 2 is pulled out. The size of such a cylindrical cover 30 can be, for example, 300 mm in diameter and 900 mm in length. In the case of a length of 900 mm, the length of the zipper 31 is preferably about 500 mm to facilitate attachment of the cover 30.

[0042] Fig. 10 is an image diagram showing an example of the wig storage device 1 with the cover 30 attached being used in a hanging state. Fig. 11 is an image diagram showing an example of the wig storage device 1 with the cover 30 attached being used in a laid-down state. In Fig. 11, the view indicated by reference numeral 1005 shows the front side, and the view indicated by reference numeral 1006 shows the back side. As shown in the view indicated by reference numeral 1006 in Fig. 11, a loop 35 for passing a string 36 through is provided on the back side of the cover 30, so that when the cover 30 is used in a laid-down state, the excess part at the bottom of the cover 30 can be gathered up using the string 36.

[0043] By providing such a cover 30, dust floating in the room can be prevented from adhering to the wig 4. Furthermore, since the inside of the cover 30 is an enclosed space, a high ion concentration can be maintained, thereby enhancing the treatment effect of the ions. In this embodiment, the ion generator 2 is exemplified as the treatment airflow generating device, but the treatment airflow generating device may be any discharge device that generates particles such as ions, electrons, ozone, radicals, active species, and charged particles (charged particles) by discharge. When ions, which are an example of charged particles, are generated, the device may be configured to generate both positive and negative ions, or to generate either positive or negative ions.

[0044] Furthermore, in this embodiment, a configuration having three installation locations for the ion generator 2, namely, the first installation section 19A to the third installation section 19C, has been exemplified, but a configuration having two installation locations, namely, the first installation section 19A and the second installation section 19B, or a configuration having four or more installation locations may also be used.

[0045] Furthermore, in this embodiment, a wig is used as an example of the target object, but the target object is not limited to a wig. For example, the target object may be a hat, a helmet, shoes, boots, etc. The shape of the stand 3 can be changed to suit these targets.

[0046] Furthermore, in the present embodiment, the wig storage device 1 is illustrated as having one ion generator 2, but the wig storage device 1 may be configured to have a plurality of ion generators 2. In this case, by installing the ion generators 2 in a plurality of installation locations, it is possible to simultaneously obtain the effects of each installation location.

[0047] 〔summary〕 The deodorizing device (wig storage device 1) according to aspect 1 of the present invention comprises a treatment air generator (ion generator 2) that generates particles by discharge and blows out treatment air (ionic air), which is air containing the particles, and a stand unit 3 that holds an object to be treated with the treatment air and allows the treatment air generator to be detachably installed, and the stand unit 3 is capable of installing the treatment air generator at multiple locations on the object where the treatment air blown out from the treatment air generator hits different parts of the object.

[0048] In the above configuration, it is possible to direct the treatment air to the parts of the object that require treatment by changing the installation position of the treatment air generator relative to the stand unit 3. This makes it possible to provide a user-friendly deodorizing device that can selectively deodorize the necessary parts of the object.

[0049] The deodorizing device (wig storage device 1) of aspect 2 of the present invention is configured in the same manner as in aspect 1, further comprising: an object holding section (wig holding section 15) that holds the object by partially contacting the inner surface of the object; an arm section 16 that extends upward from the object holding section and has an upper end at a higher position than the object holding section; and a plurality of installation sections 19 for detachably installing the treatment air generating device, wherein the plurality of installation sections 19 may include a first installation section 19A that installs the treatment air generating device below the object holding section with the airflow direction facing upward, and a second installation section 19B that installs the treatment air generating device at the upper end of the arm section 16 with the airflow direction facing downward.

[0050] In the above configuration, by installing the treatment air generator in the first installation section 19A, treatment air can be blown from below the object held in the object holding section onto the inside of the object, thereby deodorizing the inside of the object. For example, if the object is a wig, the inside of the wig can be deodorized. By installing the treatment air generator in the second installation section 19B, treatment air can be blown from above the object held in the object holding section onto the outside of the object, thereby deodorizing the outside of the object. For example, if the object is a wig, the outside of the wig can be deodorized.

[0051] The deodorizing device (wig storage device 1) according to aspect 3 of the present invention may be configured such that, in aspect 1, the multiple installation sections 19 further include a third installation section 19C that installs the treatment air generating device inside the upper part of the object holding section with the airflow direction facing downward.

[0052] In the above configuration, a treatment air generator can be further installed in the third installation section 19C. By installing it in the third installation section 19C, treatment air can be blown onto the lower side of the object held in the object holder, thereby deodorizing the lower side of the object. For example, if the object is a wig for long hair, treatment air can also be blown onto the ends of the long hair.

[0053] The deodorizing device (wig storage device 1) according to aspect 4 of the present invention is configured to further include a plurality of the treatment air generators in any of aspects 1 to 3. With this configuration, the treatment air generators can be installed at multiple installation locations at the same time, thereby simultaneously achieving the effects of installing them at each installation location.

[0054] The deodorizing device (wig storage device 1) according to aspect 5 of the present invention can be configured in any one of aspects 1 to 4, further comprising a cover that houses the stand unit 3 holding the object and the treatment airflow generator inside. This configuration can prevent dust floating in the room from adhering to the object, and also forms an enclosed space inside the cover, allowing the ion concentration to be maintained high, thereby enhancing the treatment effect of the ions.

[0055] The deodorizing device (wig storage device 1) according to aspect 6 of the present invention is any one of aspects 1 to 5, and further, the stand part 3 can be configured to have a foldable structure. By configuring it in this way, the portability of the deodorizing device can be improved.

[0056] The deodorizing device (wig storage device 1) according to aspect 7 of the present invention may be configured such that, in any of aspects 1 to 6, the object is a wig, and the treatment air generating device has the function of deodorizing the object by blowing the treatment air onto the object.

[0057] A method of using the deodorizing device (wig storage device 1) according to aspect 8 of the present invention is a method of using the deodorizing device (wig storage device 1) according to aspect 7, in which the wig is brushed while the treatment air generator, which has been removed from the stand 3, emits treatment air toward the wig held on the stand 3. By directing the treatment air toward the wig while brushing it in this way, the treatment air reaches the inside of the wig, enhancing the treatment effect of the ions.

[0058] The present invention is not limited to the above-described embodiments, and various modifications are possible within the scope of the claims. Embodiments obtained by appropriately combining the technical means disclosed in different embodiments are also included in the technical scope of the present invention. Furthermore, new technical features can be formed by combining the technical means disclosed in each embodiment. [Explanation of symbols]

[0059] 1. Wig storage device (deodorizing device) 2 Ion generator (processing air generator) 3 Stand section 4. Wigs 5 Air outlet 7 Intake port 8 Control section 10 cases 11 Power cable 12 Cable side connection terminal 15 Wig holder 15a 1st frame 15b 2nd frame 15c fixing ring 16 Arm section 18 Hanging part 19 Installation part 19A 1st installation section 19B 2nd installation section 19C 3rd installation section 20 protrusions 30 Cover

Claims

1. a treatment air generator that generates particles by discharge and sends out treatment air that is air containing the particles; a stand unit for holding an object to be treated with the treatment air and for detachably installing the treatment air generating device; The stand unit can install the treatment air generation device at a plurality of locations where the treatment air blown from the treatment air generation device hits different portions of the target object, The stand portion is an object holder that holds the object in partial contact with an inner surface of the object; an arm portion extending upward from the object holder and having an upper end portion positioned higher than the object holder; a plurality of installation sections for detachably installing the treatment air generation device; The plurality of installation sections include: a first installation unit that installs the treatment airflow generation device below the object holding unit with the airflow direction facing upward; a second installation section that installs the treatment air generation device at the upper end of the arm section with the airflow direction facing downwards.

2. The deodorizing device according to claim 1 , wherein the plurality of installation sections further include a third installation section that installs the treatment air generation device inside an upper portion of the object holding section with the airflow facing downward.

3. The deodorizing device according to claim 1 or 2, comprising a plurality of the treated air generation devices.

4. The deodorizing device according to claim 1 , further comprising a cover that houses the stand unit holding the object and the treatment air generator inside.

5. The deodorizing device according to claim 1 , wherein the stand portion has a foldable structure.

6. the object is a wig, The deodorizing device according to claim 1 , wherein the treatment air generation device has a function of deodorizing the object by blowing the treatment air onto the object.

7. A method for using the deodorizing device according to claim 6, comprising: A method of using the deodorizing device includes brushing the wig while emitting treatment air from the treatment air generator removed from the stand toward the wig held on the stand.

Citation Information

Patent Citations

  • JP1973025987U

  • JP1974045788U

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