[0001] The present invention relates to improved technology for a hair iron brush that combines
a brushing function using brush bristles and an ironing function using a heating plate.
[0002] Conventionally, a hair iron brush is known where long brush bristle rows in the brush
longitudinal direction and long heating plates in the brush longitudinal direction
are arranged alternatingly in the brush width direction on the surface of the brush
base connected to the tip end part of the handle (refer to Patent Document 1).
[0003] Furthermore, a hair brush is conventionally known in which the brush bristles contain
the multi-element mineral powder that is made by powderizing multi-element minerals
(refer to Patent Document 2).
[0004] However, with a conventional hair iron brush, a flat bristle implanting surface is
formed on the surface of the brush base that is connected to the tip end part of the
handle. In this manner, when the brush bristle rows and the stripe shaped heating
surfaces are alternatingly arranged on the flat bristle implanting surface, although
the brush has a brushing function, the stripe shaped heating surface cannot sufficiently
and positively come into contact with the hair for the ironing function, because the
bristle implanting surface is flat, and in particular the ironing function that applies
curls and waves to the hair is insufficient.
[0005] Furthermore, conventionally, with the hair iron brush where the brush bristle rows
and the stripe shaped heating surfaces are alternatingly arranged, the brush bristles
and/or stripe shaped heating surfaces do not contain multi-element mineral powder.
Patent Document 1 Japanese Unexamined Patent Application 2006-255349
Patent Document 2 Japanese Registered Utility Model 3094498
[0006] The present invention provides a hair iron brush that can form or straighten (straight
hair) curls and waves in hair by functioning as an iron using the heating plate while
brushing hair by a brushing function using the synthetic resin brush bristles.
[0007] Furthermore, the present invention aims to provide a hair iron brush that can style
hair while providing care by weak energy radiated from a multi-element mineral powder
and/or the far-infrared radiation radiated from far-infrared radiating powder, and
also that can effectively provide care by promoting blood circulation to the scalp.
[0008] In order to resolve the aforementioned problems, the hair iron brush of the present
invention has a configuration in which: an arc shaped bristle implanting surface (20)
is formed on a surface of a brush base (2) that is connected to a tip end part of
a handle (1), and brush bristle rows (3) where synthetic resin brush bristles (31)
are aligned in the brush longitudinal direction and long stripe shaped heating surfaces
(42) in the brush longitudinal direction of the heating plate (4) are alternatingly
arranged in the brush width direction on the arc shaped bristle implanting surface
(20).
[0009] Furthermore, the brush bristle rows (3) may be formed from synthetic resin brush
bristles (31) integrally arranged on long stripe shaped bases (32) in the brush longitudinal
direction that is made of synthetic resins; long stripe shaped grooves (41) in the
brush longitudinal direction may be formed in a plurality of rows in the brush width
on the surface of the heating plate (4); and the brush bristle rows (3) and the stripe
shaped heating surfaces (42) of the heating plate (4) may be alternatingly arranged
in the brush width direction by fitting a stripe shaped base (32) of each of the brush
bristle rows (3) to each of the stripe shaped grooves (41) and exposing the stripe
shaped heating surface (42) of the heating plate (4) between the brush bristle rows
(3).
[0010] Furthermore, the brush bristle rows (3) and/or heating plate (4) may contain multi-element
mineral powder formed by crushing a multi-element mineral.
[0011] Furthermore, the brush bristle rows (3) and/or heating plate (4) contain far-infrared
radiating powder formed by crushing a far-infrared radiating material in addition
to the multi-element mineral powder.
[0012] The hair iron brush of the present invention is a hair iron brush where brush bristle
rows and stripe shaped heating surfaces are alternatingly provided in the brush width
direction, in which the bristle implanting surface of the brush base is formed in
an arc shape. In this manner, the brush bristle rows and the stripe shaped heating
surfaces are alternatingly arranged in the brush width direction, and therefore can
form or straighten curls and waves in hair by an ironing function using the stripe
shaped heating surfaces while brushing the hair by a brushing function using the brush
bristles. In particular, the bristle implanting surface of the brush base is formed
in the shape of an arc, so curls and waves can easily and efficiently be formed in
hair by placing the stripe shaped heating surfaces into sufficiently close contact
with the hair.
[0013] Furthermore, the hair iron brush of the present invention may have a configuration
in which the stripe shaped base of each of the brush bristle rows is fitted to the
stripe shaped groove formed in the surface of the heating plate. Thereby a hair iron
brush can easily be manufactured with a configuration where brush bristle rows and
stripe shaped heating surfaces of the heating plate are alternatingly arranged.
[0014] Furthermore, the iron function can be demonstrated by directly touching the stripe
shaped heating surface of the heating plate to the hair, and the ironing function
can be improved because the synthetic resin brush bristles can be heated via the stripe
shaped base that is fitted to the stripe shaped groove.
[0015] Furthermore, the user may support or grab the brush portion with their hand, but
the brush bristles are made of synthetic resin, so heat transfer from the heating
plate is gradual, and because the heating plate is covered by the synthetic resin
brush bristles, the hand and fingers are blocked from directly touching the heating
plate, and thus burning and feeling heat can be prevented.
[0016] Furthermore, the hair iron brush of the present invention may include multi-element
mineral powder in either one of the brush bristle rows or the heating plate, or both
the brush bristle rows and the heating plate. Herein, hair can be styled while being
cared for by the weak energy radiated from the multi-element mineral powder, and furthermore,
hair growth can be promoted and effective scalp care is possible while promoting blood
circulation of the scalp.
[0017] Furthermore, static electricity cannot be generated while brushing because of the
effect of the multi-element mineral powder, and thus the hair can be easily styled
in conjunction with smoothly curling and the like by brushing and by the heating plate.
[0018] Furthermore, blood circulation of the hair and scalp can be enhanced simply by brushing
due to the minus ions generated from the multi-element mineral powder, and furthermore,
a cluster phenomenon (ability to shrink the molecular assembly of water) is induced
in the moisture of the hair due to the minus ions, a sense of shininess and rehydration
of the hair is enhanced, and thus a silky and manageable hair styling can be achieved.
Furthermore, the minus ions function in the cuticles (glass like fibres) of the hair,
and a shiny state can be sustained, and this is particularly effective on unmanageable
hair that is thin and damaged.
[0019] The hair iron brush of the present invention may include far-infrared radiating powder
in addition to the multi-element mineral powder in the brush bristle row and/or heating
plate. In this manner, when far-infrared radiating powder in addition to multi-element
mineral powder is included, infrared radiation is radiated from the far-infrared radiating
powder, and the hair and scalp can be internally warmed. Thereby, the hair can be
effectively cared for, and blood circulation of the scalp can be favourable.
FIG. 1 is a cross sectional diagram illustrating the hair iron brush according to
the embodiment of the present invention, and is an A-A cross sectional diagram of
FIG. 2.
FIG. 2 is a front surface diagram illustrating the hair iron brush according to the
embodiment of the present invention.
FIG. 3 is a side surface diagram of the hair iron brush according to the embodiment
of the present invention.
FIG. 4 is a side surface view illustrating the brush row of the hair iron brush relating
to the embodiment of the present invention.
[0020] The multi-element mineral used in the present invention refers to a mineral that
contains silicon as a main component such as perlite, pitchstone, and tourmaline,
and includes a good balance of multiple elements, and these multi-element minerals
are known to emit minus ions.
[0021] Multi-element mineral powder is formed into powder by crushing the multi-element
mineral with a ball-mill or the like, and the crushing value in this case is preferably
1 to 3 micrometers, but this value can change.
[0022] The multi-element mineral powder can be used independently or in combination, but
appropriately combining 2 or more types is preferable. The multi-element mineral powder
can also be used as is, or the powder can be mixed with water, heated or compressed,
and then the supernatant is powderized by vacuum freeze drying or spray drying.
[0023] Note that perlite contains components shown below in Table 1.
Table 1
| Anhydrous silicon (SiO2) |
71.94% |
| Aluminium oxide (Al2O3) |
14.94% |
| Iron oxide (Fe2O3) |
2.54% |
| Magnesium oxide (MgO) |
0.44% |
| Calcium oxide (CaO) |
2.47% |
| Alkali oxide (K2O + Na2O) |
6.87% |
| Manganese oxide (MnO) |
0.03% |
| Phosphoric anhydride (P2O5) |
0.14% |
| Loss by heating |
3.43% |
| Loss by drying (at 110°C) |
0.07% |
| Other: Titanium |
Trace |
[0024] The electromagnetic waves (weak energy) with a wavelength of 4 to 14 µm radiated
from the multi-element mineral powder electrically change the area around the nucleus
of the atom and excites the atom as well as the material thereof into an excited state
(vibration), and as a result, cuts and shortens the water cluster polymer, reduces
the volume of the water, increases the specific gravity, and cause sufficient adhesion
of the water (free water) to the cell outer membrane of the plant or animal, and thus
the permeation of water together with the Ca
2+ into the cell is enhanced and there is an effect of activating various functions
of the cell.
[0025] Therefore, the water in the hair and scalp is mineralized, and protein is activated
throughout the hair and scalp by applying the electromagnetic waves (weak energy)
to the hair and scalp, and thus healthy shiny hair can always be achieved.
[0026] Furthermore, far-infrared radiating powder is made by powderizing the far-infrared
radiating materials alumina (Al
2O
3), titania (TiO
2), ferrite (Fe
2O
3), chrome oxide (Cr
2O
3), silica (SiO
2), yttria (Y
2O
3), magnesia (MgO), and the like, so blending and using these far-infrared radiating
powders is preferable in order to radiate far-infrared radiation of an appropriate
wavelength for absorption into the hair and scalp.
[0027] Furthermore, in the term "include" of the present invention, a material is included
that is moulded into a predetermined shape by incorporating the multi-element mineral
powder or far-infrared radiating powder into a synthetic resin brush and/or in an
actual heating plate, and a material is also included in which a coating layer (for
example, a ceramic coating layer, a plating layer, a fluorine coating layer, a nylon
layer, a synthetic resin layer, a silicon rubber layer, a fluorine rubber layer, and
the like) is formed by mixing the multi-element mineral powder or far-infrared radiating
powder in the coating agent and applying onto the surface.
[0028] As illustrated in FIG. 2 and FIG. 3, the hair iron brush of the embodiment has a
configuration in which a brush base 2 is connected to a tip of a handle 1, an arc
shaped bristle implanting surface 20 is formed on the surface of the brush base 2,
and brush bristle rows 3 where synthetic resin brush bristles 31 are aligned in the
brush longitudinal direction and a long stripe shaped heating surface 42 in the brush
longitudinal direction of a heating plate 4 are alternatingly arranged in the brush
width direction on the arc shaped bristle implanting surface 20.
[0029] As illustrated in FIG. 1, a cross sectional shape of the brush base 2 is formed in
a long elliptical shape in the brush width direction, and the front surface is formed
by the heating plate 4 that is formed in a half circle arc shape by metal or ceramic,
and the surface of the heating plate 4 is formed on the arc shaped bristle implanting
surface 20. Furthermore, a back surface plate part 21 is formed in a half circle arc
shape by the synthetic resin (for example, an ABS resin and the like) that is integrally
formed with the handle 1.
[0030] A supporting plate 5 is fixed to the inside of the back surface plate part 21 by
screws, and hook pieces 43 protrude on both sides of the back surface of the heating
plate 4 in conjunction with hook pieces 50 that protrude on the edge of both sides
of the supporting plate 5, and the brush base 2 in which the heating plate 4 and the
back surface plate part 21 are fixed in an elliptical shape can be assembled by engaging
the hook pieces 50 and 43 together and aligning the tip of the back surface plate
part 21 and the tip of the heating plate 4 to insert a cap 6.
[0031] As illustrated in FIG. 4, the brush bristle row 3 is formed by integrally aligning
the synthetic resin brush bristles 31 in one row on a long stripe shaped base 32 in
the brush longitudinal direction that is made of synthetic resin.
[0032] Furthermore, the tip of the synthetic resin brush bristle 31 is formed in the shape
of a sphere, and as a result, hair loss can be prevented while relieving contact with
the scalp when brushing and styling.
[0033] Note that the number, alignment pitch, thickness (bristle diameter), and number of
rows of the synthetic resin brush bristles 31 in the brush bristle row 3 can be determined
appropriately, and silicon rubber, nylon, and other synthetic resins can be used.
[0034] A long stripe shaped groove 41 in the brush longitudinal direction is formed on the
surface of the heating plate 4 by a plurality of rows (9 rows in the embodiment) in
the brush width direction. Furthermore, by dovetailing the stripe shaped base 32 of
each brush bristle row 3 to each stripe shaped groove 41 and exposing the stripe shaped
heating surface 42 of the heating plate 4 between the brush rows 3, the brush bristle
rows 3 and the stripe shaped heating surface 42 of the heating plate 4 are alternately
arranged along the arc shaped bristle implanting surface 20 in the brush width direction.
The cross sectional shape of the stripe shaped heating surface 42 is formed in a half
circle arc convex shape (approximately reverse U shaped) or a mountain shape (approximately
reverse V shaped) so that a good contact with the hair can be achieved, but a flat
shape is also possible.
[0035] Furthermore, an electric heater 7 is mounted on the back surface of the heating plate
4; power is provided by turning ON a switch 8 on the handle 1 to heat the electric
heater 7; and the heat is transferred to the heating plate 4 and then transferred
to the brush bristle rows 3 from the heating plate 4. Note that the power cord is
not illustrated in the drawings. Furthermore, because the tip part of the synthetic
resin brush bristle comes into a direct contact with the scalp of the user, the temperature
is set so that the user does not feel heat or get burned.
[0036] Upon use, the user may support or grab the brush portion with their hands, but the
brush bristles 31 are made of a synthetic resin, so the heat transfer from the heating
plate 4 is gradual, and because the heating plate 4 is covered by the synthetic resin
brush bristles 31, the hand and fingers are blocked from directly touching the heating
plate 4, and thus burning and feeling heat can be prevented.
[0037] Furthermore, in the present embodiment, multi-element mineral powder and far-infrared
radiating powder are included in both the brush bristle rows 3 and the heating plate
4. In this case, the mixed powder is provided in the brush bristle rows 3 by mixing
and melding the mixed powder into the synthetic resin which is a raw material of the
brush bristle rows 3.
[0038] Furthermore, the heating plate 4 includes a ceramic coating layer formed on the surface.
The ceramic coating layer is formed by adding the mixed powder to the heat resistant
Formica, which is a coating agent, applying the paint-like material to the heating
plate, and passing the plate through a heating oven to remove (bake out) the coating
agent.
[0039] The mixing ratio of the mixed powder to the heat resistant Formica is preferably
at a volume ratio of 3 to 15%, but the value can change.
[0040] Therefore, in the hair iron brush of the present embodiment, when the switch 8 is
turned ON to provide power to the electric heater 7 and heat the heating plate 4,
curls and waves in the hair can be formed or straightened by an ironing function of
the heating plate 4 while combing the hair with a brushing function by the synthetic
resin brush bristles 31.
[0041] In particular, because the arc shaped bristle implanting surface 20 is formed on
the brush base 2, the stripe shaped heating surface 42 comes in sufficient contact
with the hair, and thus curls and waves in the hair can easily and effectively be
formed. Furthermore, the hair can be cared while styling by the weak energy radiated
from the multi-element mineral powder and the far-infrared radiation radiated from
the far-infrared radiating powder, and furthermore, the effective care is possible
by promoting circulation of blood in the scalp.
[0042] Note that when the switch 8 is turned OFF, the heating plate 4 is not heated because
the electric heater 7 does not generate heat, and only a brushing function by the
synthetic resin brush bristles 31 is attainable, but the effect of the weak energy
radiated from the multi-element mineral powder and the far-infrared radiation radiated
from the far-infrared radiating powder can be enjoyed.
[0043] An embodiment of the present invention was described above based on the drawings,
but the specific configuration is not limited to the present embodiment, and the present
invention includes design alternates or the like to the extent that does not violate
the gist of the present invention.
[0044] Note that, the hair iron brush of the present invention is used in conjunction with
a hair dryer, hair can be brushed, and curls and waves can be formed or straightened
by the hair iron brush while applying heat to the hair by the hair dryer. In this
case, because the heat of the hair dryer is aimed towards the surface of the synthetic
resin bristles and the heat that is transferred from the heating plate is given to
the hair from the inside of the synthetic resin brush bristles, the hair can be held
between the heat of the hair dryer and the heat from the heating plate, and thus more
effective styling and care are possible. The ion dryer is preferably used as an ion
dryer that emits the minus ions invented by the present inventor together with warm
air or cold air.
Description of reference numerals
[0045]
1 Handle
2 Brush base
20 Arc shaped bristle implanting surface
3 Brush bristle row
31 Synthetic resin brush bristle
32 Stripe shaped base
4 Heating plate
41 Stripe shaped groove
42 Stripe shaped heating surface