FIELD OF THE INVENTION
[0001] The disclosure relates to cosmetology and hairdressing appliances, and particularly
to a heat conducting mechanism for a personal care device and a personal care device.
BACKGROUND
[0002] For an existing personal care device, mostly, its heating plate is directly made
of an aluminum plate. However, the aluminum plate is lower in strength, is easy to
wear, and is not high in heat resistance.
SUMMARY
[0003] To solve the defects in the background, an object of the disclosure is to provide
a heat conducting mechanism for a personal care device and a personal care device
using the heat conducting mechanism.
[0004] The technical solutions used by the disclosure to solve the technical problem thereof
are as follows.
[0005] A heat conducting mechanism for a personal care device includes: a heat conductor
and a mounting rack, wherein, the heat conductor is fixedly mounted on the mounting
rack, the heat conductor is an aluminum plate, and a bamboo fiber layer or a carbon
fiber layer is arranged at a working face of the heat conductor.
[0006] Preferably, the bamboo fiber layer or the carbon fiber layer and the heat conductor
are independent respectively, and the bamboo fiber layer or the carbon fiber layer
is matched with the heat conductor in an insertion way.
[0007] Preferably, cone-shaped grooves are formed at the surface of the heat conductor,
two sides of the bamboo fiber layer or the carbon fiber layer are fitted with the
cone-shaped grooves, and the bamboo fiber layer or the carbon fiber layer is inserted
into the cone-shaped grooves.
[0008] Preferably, convex clamping blocks are arranged on inner topper sides of a groove
of the mounting rack, and concave grooves fitted with the clamping blocks are arranged
at the outer surface of the heat conductor.
[0009] Preferably, a surface of the bamboo fiber layer or the carbon fiber layer is higher
than the surface of the heat conductor.
[0010] A personal care device using the heat conducting mechanism includes: a pair of holding
components, tails of which are hinged, wherein, the heat conducting mechanism is arranged
inside the holding components, a heating body is embedded in the heat conducting mechanism,
and the heat conducting mechanism is in contact with the heating body.
[0011] The beneficial effects of the disclosure are as follows. The aluminum plate and bamboo
fibers are combined, and the aluminum plate is easy to form, low in machining requirements
and low in material cost. For example, for a using face, the bamboo fibers are additionally
arranged at a surface of the aluminum plate. The bamboo fibers have good breathability
and high wear resistance, and have the functions of natural antibiosis, bacteriostasis,
mite removal, deodorizing and ultraviolet ray resistance, and thus the effect of environmental
protection is achieved.
BRIEF DESCRIPTION OF THE DRAWINGS
[0012]
Figure 1 is a stereoscopic structural diagram of a heat conducting mechanism according
to the disclosure.
Figure 2 is a front view of the heat conducting mechanism according to the disclosure.
Figure 3 is a stereoscopic diagram of a personal care device made by using the heat
conducting mechanism.
DETAILED DESCRIPTION
[0013] The disclosure is further explained below in conjunction with the drawings.
[0014] Referred to Figures 1 and 2, the disclosure includes a heat conductor 2 and a mounting
rack 1, wherein, the heat conductor 2 is fixedly mounted on the mounting rack 1, and
wherein, the heat conductor 2 is an aluminum plate, and a bamboo fiber layer or a
carbon fiber layer 3 is arranged at a working face of the heat conductor 2. The bamboo
fiber layer or the carbon fiber layer 3 is laid at the working surface of the heat
conductor 2, allowing a part in contact with hair in a working process to be the bamboo
fiber layer or a carbon fiber layer 3.
[0015] The bamboo fiber layer or the carbon fiber layer 3 and the heat conductor 2 are independent
respectively, and the bamboo fiber layer or the carbon fiber layer 3 is matched with
the heat conductor 2 in an insertion way. Cone-shaped grooves are formed at the surface
of the heat conductor 2, two sides of the bamboo fiber layer or the carbon fiber layer
3 are fitted with the cone-shaped grooves, and the bamboo fiber layer or the carbon
fiber layer 3 is inserted into the cone-shaped grooves. The bamboo fiber layer or
the carbon fiber layer 3 may also be fixed to the heat conductor 2 in a sticking way,
only if it is ensured that the bamboo fiber layer or the carbon fiber layer 3 can
not drop down.
[0016] Convex clamping blocks 4 are arranged on inner topper sides of a groove of the mounting
rack 1, concave grooves fitted with the clamping blocks 4 are arranged at the outer
surface of the heat conductor 2. The clamping blocks 4 are clamped in the concave
grooves of the heat conductor 2, so that the heat conductor 2 is fixed in the mounting
rack 1 and a phenomenon that the heat conductor 2 drops down is prevented from occurring.
[0017] A surface of the bamboo fiber layer or the carbon fiber layer 3 is higher than the
surface of the heat conductor 2, and the bamboo fiber layer or the carbon fiber layer
3 has elasticity. Therefore, in a tightly holding process, in the case that the surface
of the bamboo fiber layer or the carbon fiber layer 3 is higher than the surface of
the heat conductor 2, the bamboo fiber layer or the carbon fiber layer 3 allows a
position which is held tightly to be tighter and allows holding or perming of hair
to be better in effect.
[0018] Bamboo fibers are of cellulosic fibers extracted from a bamboo growing naturally.
The bamboo fibers have properties of good breathability, instant water absorption,
stronger wear resistance and the like, and also have the functions of natural antibiosis,
bacteriostasis, mite removal, deodorizing and ultraviolet ray resistance. Experts
point out that the bamboo fibers are of natural environment-friendly green fibers
in the real sense, and the bamboo fibers have high-quality inverse elasticity, wear
resistance, and flame resistance. The natural bamboo fibers can absorb water which
is 20 percentage of weight of themselves, are highest in water absorption among other
fiber fabric of the same density, and have excellent inverse elasticity and flame
resistance.
[0019] The bamboo fibers and the aluminum plate are combined, that is, the advantages that
the aluminum plate is easy to form, low in machining requirements and low in material
cost are utilized. The bamboo fibers are used at the surface of the aluminum plate,
also the advantages that the bamboo fibers have high strength, moderate elasticity
modulus, good heat resistance, light weight, wear resistance and the like are utilized,
and the heat conducting mechanism is allowed to be more resistant to heat and have
no deformation.
[0020] Referred to Figure 3, a personal care device using the heat conducting mechanism
includes a pair of holding components, tails of which are hinged, wherein, the heat
conducting mechanism is arranged inside the holding components, a heating body is
embedded in the heat conducting mechanism, and the heat conducting mechanism is in
contact with the heating body. Through using the heat conducting mechanism where the
bamboo fiber layer or the carbon fiber layer 3 and the aluminum plate are combined,
and through allowing the bamboo fiber layer or the carbon fiber layer 3 to be the
working face, the defects that the aluminum plate has no heat resistance and no wear
resistance in the past are solved.
[0021] The embodiments should not be regarded as limitation of the disclosure, and moreover
any improvement made based on the spirit of the disclosure should be contained in
the protection scope of the disclosure.
1. A heat conducting mechanism for a personal care device, comprising: a heat conductor
(2) and a mounting rack (1), wherein, the heat conductor (2) is fixedly mounted on
the mounting rack (1), and wherein, the heat conductor (2) is an aluminum plate, and
a bamboo fiber layer or a carbon fiber layer (3) is arranged at a working face of
the heat conductor (2).
2. The heat conducting mechanism for the personal care device according to claim 1, wherein,
the bamboo fiber layer or the carbon fiber layer (3) and the heat conductor are independent
respectively, and the bamboo fiber layer or the carbon fiber layer (3) is matched
with the heat conductor in an insertion way.
3. The heat conducting mechanism for the personal care device according to claim 2, wherein,
cone-shaped grooves are formed at the surface of the heat conductor (2), two sides
of the bamboo fiber layer or the carbon fiber layer (3) are fitted with the cone-shaped
grooves, and the bamboo fiber layer or the carbon fiber layer (3) is inserted into
the cone-shaped grooves.
4. The heat conducting mechanism for the personal care device according to claim 1, wherein,
convex clamping blocks (4) are arranged on inner topper sides of a groove of the mounting
rack (1), and concave grooves fitted with the clamping blocks (4) are arranged at
the outer surface of the heat conductor (2).
5. The heat conducting mechanism for the personal care device according to claim 1, wherein,
a surface of the bamboo fiber layer or the carbon fiber layer (3) is higher than the
surface of the heat conductor (2).
6. A personal care device using the heat conducting mechanism according to claim 1, comprising:
a pair of holding components, tails of which are hinged, wherein, the heat conducting
mechanism is arranged inside the holding components, a heating body is embedded in
the heat conducting mechanism, and the heat conducting mechanism is in contact with
the heating body.