The present invention relates to a hair drier.
It has already been known to emit red LED light to the scalp to improve the scalp environment (see, for example, Patent Literature 1).
Japanese Patent Publication No. 6129392 (Registration date: Apr. 21, 2017)
While Patent Literature 1 discloses that emitting red LED light to the scalp is effective in improving the scalp environment, it neither discloses nor suggests how to emit red LED light to the scalp efficiently.
An aspect of the present invention has been accomplished in view of the above issue. It is an object of an aspect of the present invention to provide a hair drier configured to emit red LED light to the scalp efficiently.
In order to attain the above object, a hair drier in accordance with an aspect of the present invention a cover body that is provided at an air outlet of a blower main body having an air inlet and the air outlet and that is configured to cover at least a portion of a head of a user, the cover body having a facing surface that faces the head of the user in a state where the cover body is covering at least the portion of the head of the user, the facing surface being provided with an LED light-emitting section configured to emit LED light to a scalp of the head.
An aspect of the present invention allows red LED light to be emitted to the scalp efficiently, and can thereby improve the scalp environment.
The description below deals with an embodiment of the present invention in detail.
The hair drier is, as illustrated in
The housing 1, as illustrated in
The hair drier includes an ion generating unit (electrically charged particle generating section) 16 configured to generate air ions (electrically charged particles) in the atmosphere. The ion generating unit 16 is contained in the housing 1. The ion generating unit 16 includes a needle-shaped discharge electrode and a ring-shaped induction electrode around the discharge electrode. Voltage is applied between the discharge electrode and the dielectric electrode to generate corona discharge, which generates air ions around the discharge electrode. The ion generating unit 16 includes two pairs of the discharge electrode and the dielectric electrode to generate both positive air ions such as H+(H2O)m and negative air ions such as O2−(H2O)n. The ion generating unit 16 generates positive and negative air ions in the air inside the housing 1. Air ions generated by the ion generating unit 16 are mixed with air inside the housing 1, so that airflow containing air ions is discharged through the air outlet 12.
The hair drier includes a control section 17 configured to control how each section is operated. The control section 17 is connected to the operation section 21, the blower 14, the heater 15, and the ion generating unit 16. The control section 17 controls the respective operations of the blower 14, the heater 15, and the ion generating unit 16 in accordance with the user's operation accepted by the operation section 21.
The control section 17 is also configured to control light emission of each LED light-emitting section 34 provided on the cover body 3. The control section 17 may be configured to keep the blower 14 and the ion generating unit 16 out of operation while the control section 17 keeps the heater 15 out of operation.
As illustrated in
As illustrated in
The LED light-emitting sections 34, as illustrated in
When the cover body 3 is pressed down against the head H of the user, the hair drier discharges, through the air outlet 12, unheated air containing electrically charged particles. The air then passes through the air flow path inside the cover body 3 and touches the head H of the user.
While the cover body 3 is being pressed down against the head H of the user, the LED 34a of each LED light-emitting section 34 emits red LED light to the scalp of the head H of the user.
Thus, when the cover body 3 is pressed down against the head H of the user, and the LED 34a of each LED light-emitting section 34 emits red LED light, the hair drier discharges, through the air outlet 12, unheated air containing air ions. The air then passes through the air flow path inside the cover body 3 and touches the head H of the user. The air discharged is not dissipated immediately, and remains inside the cover body 3 (which is covering a portion of the head of the user) for a certain time period. The air ions contained in the air are thus not dissipated and remain inside the cover body 3, thereby acting locally on that portion of the head of the user which is covered by the cover body 3. As the air ions act locally, hair and scalp at that portion which is covered by the cover body 3 are acted on by air ions at a density higher than conventional. As the air ions remain inside the cover body 3, hair and scalp are acted on by air ions for a time period longer than conventional.
Air containing air ions touches the head while the plurality of bar-shaped bodies 331 of the head stimulating body 33 have raked through hair. This allows air ions to come into contact with hair and scalp efficiently, so that the air ions act on the hair and scalp with a high efficiency. This in turn makes it possible to improve the environment of hair and scalp by, for example, removing static electricity and bacteria from the hair and scalp and retaining moisture on the hair and scalp. Further, air ions act on the scalp of the user while the head stimulating body 33 is stimulating the scalp. This is expected to improve the scalp environment.
The LED 34a of each LED light-emitting section 34 emits red LED light to the scalp while the plurality of bar-shaped bodies 331 of the head stimulating body 33 have raked through hair. This is expected to improve the environment of hair and scalp.
As described above, in a case where the LED 34a of each LED light-emitting section 34 of the cover body 3 emits light, the heater 15 does not warm air, and no warmed air is discharged from the air outlet 12. If air has been warmed, warmed air will continue to locally touch a portion of the head of the user, so that heat will not be dissipated easily from the surface that the air touches. The present embodiment is configured to not warm air in the case where the LED 34a of each LED light-emitting section 34 of the cover body 3 emits light. This allows unwarmed air to touch the head of the user, so that heat is dissipated easily from the surface that the air touches.
Aspects of the present invention can also be expressed as follows:
A hair drier in accordance with a first aspect of the present invention a cover body 3 that is provided at an air outlet 12 of a blower 14 main body having an air inlet 11 and the air outlet 12 and that is configured to cover at least a portion of a head H of a user, the cover body 3 having a facing surface 31a facing the head H in a state where the cover body is covering the portion of the head H of the user, the facing surface 31a being provided with an LED light-emitting section 34 configured to emit LED light to a scalp of the head H.
With the above arrangement, LED light emitted by the LED light-emitting section provided on the cover body directly strikes the scalp of the user from an extremely small distance. This means that the above arrangement allows LED light to be emitted to the scalp of the user efficiently. Irradiating the scalp of the user with LED light with a high illuminance efficiently as described above makes it possible to improve the scalp environment with LED light.
A hair drier in accordance with a second aspect of the present invention is arranged as in the first aspect and may be further arranged such that the blower 14 main body is provided with an electrically charged particle generating section (ion generating unit 16) configured to generate an electrically charged particle in air, and discharges, through the air outlet 12, air containing the electrically charged particle.
With the above arrangement, discharging air containing electrically charged particles from the air outlet of the blower main body causes the discharged air to remain inside the cover body. This allows the electrically charged particles contained in the air to act locally on that portion of the head of the user which is covered by the cover body. This can improve the scalp environment.
Thus, the hair drier arranged as above allows red LED light to be emitted to the scalp efficiently, and can thereby improve the scalp environment.
A hair drier in accordance with a third aspect of the present invention is arranged as in the first or second aspect and may be further arranged such that the LED light-emitting section 34 emits red light having a peak wavelength within a range of 630 nm to 660 nm.
With the above arrangement, the LED light-emitting section is a red LED configured to emit red LED light. This can improve the scalp environment further.
A hair drier in accordance with a fourth aspect of the present invention is arranged as any one of the first to third aspects and may be further arranged such that the cover body 3 is provided with a head stimulating body 33 configured to stimulate the head H of the user in a state where the cover body 3 is covering the head H of the user.
With the above arrangement, in a case where the head of the user is covered by the cover body, the bar-shaped bodies of the head stimulating body rake through hair and stimulate the scalp, and LED light is emitted to the scalp at the same time. This can improve the scalp environment.
The present invention is not limited to the embodiments, but can be altered by a skilled person in the art within the scope of the claims. The present invention also encompasses, in its technical scope, any embodiment derived by combining technical means disclosed in differing embodiments. Further, it is possible to form a new technical feature by combining the technical means disclosed in the respective embodiments.
1 Housing
2 Grip
3 Cover body
11 Air inlet
12 Air outlet
14 Blower
15 Heater
16 Ion generating unit (electrically charged particle generating section)
17 Control section
21 Operation section
31 Opening section
31
a Facing surface
31
b Opening
33 Head stimulating body
34 LED light-emitting section
34
a LED
331 Bar-shaped body
Number | Date | Country | Kind |
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2017-177024 | Sep 2017 | JP | national |
Filing Document | Filing Date | Country | Kind |
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PCT/JP2018/030619 | 8/20/2018 | WO | 00 |