WO2023045658A1 - 美容仪、接触式美容仪和皮肤保养组件 - Google Patents

美容仪、接触式美容仪和皮肤保养组件 Download PDF

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Publication number
WO2023045658A1
WO2023045658A1 PCT/CN2022/113784 CN2022113784W WO2023045658A1 WO 2023045658 A1 WO2023045658 A1 WO 2023045658A1 CN 2022113784 W CN2022113784 W CN 2022113784W WO 2023045658 A1 WO2023045658 A1 WO 2023045658A1
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Prior art keywords
heat sink
carbon
heat
containing layer
cooling
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PCT/CN2022/113784
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English (en)
French (fr)
Inventor
余飞
林小明
潘玉平
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深圳由莱智能电子有限公司
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Priority to CH001294/2022A priority Critical patent/CH719087B8/de
Publication of WO2023045658A1 publication Critical patent/WO2023045658A1/zh

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    • A61NELECTROTHERAPY; MAGNETOTHERAPY; RADIATION THERAPY; ULTRASOUND THERAPY
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    • A61FFILTERS IMPLANTABLE INTO BLOOD VESSELS; PROSTHESES; DEVICES PROVIDING PATENCY TO, OR PREVENTING COLLAPSING OF, TUBULAR STRUCTURES OF THE BODY, e.g. STENTS; ORTHOPAEDIC, NURSING OR CONTRACEPTIVE DEVICES; FOMENTATION; TREATMENT OR PROTECTION OF EYES OR EARS; BANDAGES, DRESSINGS OR ABSORBENT PADS; FIRST-AID KITS
    • A61F7/00Heating or cooling appliances for medical or therapeutic treatment of the human body
    • A61F7/007Heating or cooling appliances for medical or therapeutic treatment of the human body characterised by electric heating
    • AHUMAN NECESSITIES
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    • A61B18/18Surgical instruments, devices or methods for transferring non-mechanical forms of energy to or from the body by applying electromagnetic radiation, e.g. microwaves
    • A61B18/20Surgical instruments, devices or methods for transferring non-mechanical forms of energy to or from the body by applying electromagnetic radiation, e.g. microwaves using laser
    • A61B18/203Surgical instruments, devices or methods for transferring non-mechanical forms of energy to or from the body by applying electromagnetic radiation, e.g. microwaves using laser applying laser energy to the outside of the body
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    • A61N1/0408Use-related aspects
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    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05KPRINTED CIRCUITS; CASINGS OR CONSTRUCTIONAL DETAILS OF ELECTRIC APPARATUS; MANUFACTURE OF ASSEMBLAGES OF ELECTRICAL COMPONENTS
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    • H05K7/20Modifications to facilitate cooling, ventilating, or heating
    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
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    • H05K7/00Constructional details common to different types of electric apparatus
    • H05K7/20Modifications to facilitate cooling, ventilating, or heating
    • H05K7/2029Modifications to facilitate cooling, ventilating, or heating using a liquid coolant with phase change in electronic enclosures
    • H05K7/20336Heat pipes, e.g. wicks or capillary pumps
    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05KPRINTED CIRCUITS; CASINGS OR CONSTRUCTIONAL DETAILS OF ELECTRIC APPARATUS; MANUFACTURE OF ASSEMBLAGES OF ELECTRICAL COMPONENTS
    • H05K7/00Constructional details common to different types of electric apparatus
    • H05K7/20Modifications to facilitate cooling, ventilating, or heating
    • H05K7/2039Modifications to facilitate cooling, ventilating, or heating characterised by the heat transfer by conduction from the heat generating element to a dissipating body
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Definitions

  • the present application relates to the technical field of beauty instruments, in particular to a beauty instrument, a contact beauty instrument and a skin care component.
  • the technical problem to be solved by the invention is how to reduce discomfort while achieving skin beauty.
  • a contact beauty instrument which includes a cold compress, a cooling element, a cooling element and an electrode head.
  • the cold compress has a contact surface and a conduction surface, and the contact surface is used to contact the skin; the cooling side of the refrigeration component is thermally coupled to the conduction surface of the cold compress to cool the cold compress, and the heat sink is thermally coupled to the heating side of the refrigeration component to cool the cold compress.
  • the refrigerating part dissipates heat; there are at least two electrode heads, and the electrode heads are relatively fixed to the cold compressing part.
  • a skin care assembly which includes a cold compress, a refrigeration element, a cooling guide, and at least two electrode heads.
  • the cold compress has a contact surface, which is used to contact the skin and cool down;
  • the cooling component has a cooling surface, and the cooling surface is used for cooling;
  • the cooling guide is located between the cold compress and the cooling component, and the contact surface is arranged so that the cold compress is away from the cooling component
  • the cooling surface is set on the side of the cooling element close to the cold compress; the electrode head is relatively fixed to the cold compress.
  • the present application also provides a skin care component, which includes a cold compress, an electrode tip and a cooling component.
  • the cold compress has a contact surface and a conductive surface, and the contact surface is used to contact the skin part and cool down; at least two electrode heads are used to discharge and heat the skin part, and the electrode heads are relatively fixed to the cold compress part;
  • the cooling part has a cooling surface , the cooling surface is used for cooling and is thermally coupled with the conduction surface; the cold compress and the cooling element are stacked.
  • a beauty instrument which includes a cold compress crystal, a refrigeration element, a cold conduction layer, a clamping mechanism, and an electrode head.
  • Cold compress crystal is used for skin contact for cooling;
  • Cooling element has a cooling side and a cooling side;
  • Cooling layer is located between the cold compressing crystal shown and the cooling side of the cooling element;
  • Clamping mechanism is used to clamp the cold compressing crystal, cooling layer Combination with the cooling element; at least two electrode heads, the electrode heads are relatively fixed with the cold compress crystal or the clamping mechanism.
  • the present application provides a skin care component, including an electrode head, a cooling element and a fixing element. At least two electrode heads are used to discharge and heat the skin; the cooling part includes a contact surface and a conduction surface, the contact surface is used to contact the skin part and cool down, the conduction surface is used to conduct heat, and the cooling part is provided with a Through holes; the fixing part is at least partly located on one side of the cooling part except the contact surface; wherein, one end of the electrode head is located on the contact surface side of the cooling part, and the other end is connected to the rest of the fixing part through the through hole, and then the electrode head and the The cooling part is relatively fixed.
  • a contact beauty instrument which includes a cold compress, a cooling element, a cooling element and an electrode tip.
  • the cold compress has a contact surface and a conduction surface, and the contact surface is used to contact the skin; the cooling side of the refrigeration component is thermally coupled to the conduction surface of the cold compress to cool the cold compress, and the heat sink is thermally coupled to the heating side of the refrigeration component to cool the cold compress.
  • the refrigerating part dissipates heat; at least two electrode heads, the electrode head includes a mounting part and a rolling part, the rolling part is rolled on the mounting part, and the mounting part is relatively fixed to the cold compress.
  • the present application provides a beauty instrument, which includes a cold compress, a refrigeration element, a first casing and an electrode head.
  • the cold pack is used to contact the skin for cooling; the cold pack has a cooling side and a heat generating side, and the cool side is thermally coupled with the cold pack; the first shell has a first opening; at least two electrode heads, the electrode head is connected with the cold pack or the second A housing is relatively fixed.
  • the cooling element is located inside the first shell, the side of the cold compress that is in contact with the skin is exposed to the first opening of the shell, and the other side of the cold compress is used for blocking the first opening of the casing.
  • the present application also provides a beauty instrument, including a heat source, a heat sink, a heat pipe, and an electrode tip.
  • a beauty instrument including a heat source, a heat sink, a heat pipe, and an electrode tip.
  • One end of the heat sink is thermally coupled to the heat source, and the other end extends toward the tail of the beauty instrument;
  • one end of the heat pipe is thermally coupled to the end of the heat sink adjacent to the heat source or the heat source, and the other end extends away from the heat source and is thermally coupled to the heat sink; at least two electrodes
  • the head, the electrode head and the heat sink are relatively fixed.
  • the present application also provides a beauty instrument, including a heat source, a cooling element and an electrode tip.
  • a beauty instrument including a heat source, a cooling element and an electrode tip.
  • One end of the heat sink is thermally coupled to the heat source, and the other end extends toward the tail of the beauty instrument;
  • the airflow driver is arranged relative to the heat sink, and is used to drive the airflow near the heat sink or the heat source to make the air flow; at least two electrode heads, the electrode heads relatively fixed with the heat sink.
  • the present application also provides a device body of a beauty instrument, including an operating head and a heat sink.
  • the operating head includes at least two electrode heads and cooling parts, the electrode heads are relatively fixed to the cooling part, the cooling part has a cooling surface for cooling; the cooling part has a thermal coupling surface for thermal coupling with the heating surface of the operating head, and Dissipate the heat from the operation head, the operation head has a contact surface and a heating surface, the contact surface is used to contact the skin part and cool the skin part; wherein, the heat sink extends from the head of the device body to the tail of the device body.
  • the present application also provides a contact beauty instrument, which includes an operating head, a mounting bracket and a circuit board.
  • the operating head includes at least two electrode heads and a cooling element, the electrode heads are electrically coupled to the circuit board, the cooling element has a cooling surface for cooling, and the contact surface of the operating head is used to contact the skin and cool the skin;
  • the installation bracket has a first installation position and a second installation position, and the operation head is fixed on the installation bracket through the first installation position; the circuit board is fixed on the installation bracket through the second installation position; wherein, the operation head is located at the head of the beauty instrument, and the installation bracket Extend from the head of the beauty instrument to the tail of the beauty instrument.
  • the beauty instrument includes a mounting bracket, an operating head, a supporting element and a housing.
  • the operating head includes at least two electrode heads and cooling parts, the electrode heads are relatively fixed to the mounting bracket or the housing, and the cooling part has a cooling surface for cooling; the supporting element is relatively fixed to the mounting bracket to support the operation of the operating head; the housing Sleeve on the mounting bracket and fix to the mounting bracket.
  • a skin care assembly which includes a cold compress, a cooling element, a heat sink, an electrode tip and a first cover.
  • the cold compress has a contact surface and a conduction surface, and the contact surface is used to contact the skin; the cooling side of the refrigeration component is thermally coupled with the conduction surface of the cold compress to cool down the cold compress, and the heat sink is thermally coupled with the heating side of the refrigeration component to reduce the temperature of the cold compress.
  • the heat from the cooling element is dissipated; at least two electrode heads are used to discharge and heat the skin, and the electrode heads are relatively fixed to the cold compress; the first cover fixes the cold compress and the cold compress to the heat sink.
  • the present application also provides a beauty instrument, which includes a cold compress, a cooling element, a first electrode head group and a second electrode head group.
  • the cold pack is used to contact the skin for cooling; the cold pack has a cooling side and a heating side, and the cold side is thermally coupled with the cold pack; the first electrode head group is arranged opposite to the cold pack; the second electrode head group It is arranged opposite to the cold compress and is insulated from the first electrode head group; wherein, the heights of the first electrode head group and the second electrode head group are different.
  • the present application also provides a beauty instrument, which includes a heating element, a cold compress element, a refrigeration element and an electrode tip.
  • the heating element heats the skin in an electric, magnetic or electromagnetic manner;
  • the cold compress element has a cooling surface and a conduction surface, and the cooling surface is used to cool at least part of the skin or its adjacent tissue;
  • the refrigeration element of the cooling element The side is thermally coupled with the conduction surface of the cold compress, so as to obtain the heat of the cold compress; at least two electrode heads, and the electrode heads are fixed relatively to the cold compress;
  • the surface layer of its adjacent tissue is cooled, and the depth range of the electricity, magnetism or electromagnetic effect on the skin is larger than that of the surface layer, and at the same time, the area of the cooling surface is larger than that of the electricity, magnetism or electromagnetic effect on the skin.
  • the active area of the skin is large; the working power of the heating element meets the following conditions: the skin tissue below the surface is heated to between 45 degrees and 80 degrees; the working power of the cooling element meets the following conditions: Above-mentioned surface layer temperature drops between 15 °C to 45 °C.
  • the contact beauty instrument provided by the application has good comfort and excellent beauty effect.
  • the electrode head and the cold compress are relatively fixed, which can reduce redundant structures and make the design more concise. At the same time, there is no interference from redundant structures, and the touch of the skin is more comfortable.
  • the electrode head provides radio frequency, micro-current and other beauty functions; the cold compress, refrigeration and heat dissipation parts provide a suitable temperature environment to further enhance the beauty effect.
  • Fig. 1 is a three-dimensional exploded schematic diagram of a contact beauty instrument according to an embodiment of the present application
  • Fig. 2 is a three-dimensional exploded schematic view of the operating head in Fig. 1;
  • Fig. 3 is a structural schematic diagram of a carbon-containing layer provided on the surface of the heat sink in Fig. 1;
  • Fig. 4 is a structural schematic diagram of a carbon-containing layer arranged between the cooling element and the cooling element in Fig. 1;
  • Fig. 5 is a structural schematic diagram of a carbon-containing layer partially embedded in the heat sink in Fig. 1;
  • Fig. 6 is a schematic view of the structure of the skin maintenance component in one direction according to an embodiment of the present application.
  • Fig. 7 is a cross-sectional view of a beauty instrument according to an embodiment of the present application.
  • Fig. 8 is an exploded schematic view of the skin maintenance component
  • Fig. 9 is a sectional view of the skin care assembly
  • Fig. 10 is an exploded schematic diagram of a skin care component according to an embodiment of the present application.
  • Fig. 11 is an exploded schematic diagram of a contact beauty instrument according to an embodiment of the present application.
  • Fig. 12 is a sectional view of the beauty instrument
  • Fig. 13 is an enlarged view of the head of the beauty instrument
  • Fig. 14 is a cross-sectional view of a beauty instrument according to an embodiment of the present application.
  • Fig. 15 is a cross-sectional view of a beauty instrument according to an embodiment of the present application.
  • Fig. 16 is an exploded schematic diagram of a beauty instrument according to an embodiment of the present application.
  • Fig. 17 is a structural schematic diagram of a heat sink
  • Fig. 18 is a cross-sectional view of a contact beauty instrument according to an embodiment of the present application.
  • Figure 19 is a schematic structural view of the mounting bracket
  • Fig. 20 is a cross-sectional view of the beauty instrument mounting bracket
  • Fig. 21 is a schematic structural view of a beauty instrument according to an embodiment of the present application.
  • Fig. 22 is a schematic structural view of a heat sink in a beauty instrument according to an embodiment of the present application.
  • Fig. 23 is a partial sectional view of a skin care component according to an embodiment of the present application.
  • Figure 24 is an exploded view of the skin care assembly in one direction
  • Fig. 25 is an exploded schematic diagram of a skin care component according to an embodiment of the present application.
  • Figure 26 is a partial sectional view of the skin care assembly
  • Fig. 27 is a schematic structural view of the cold compress, the first electrode head group, and the second electrode head group;
  • Fig. 28 is an exploded schematic diagram of a beauty instrument in one direction according to an embodiment of the present application.
  • Fig. 29 is an exploded schematic diagram of a skin care component according to an embodiment of the present application in one direction;
  • Fig. 30 is an exploded schematic view of the skin care component in another direction according to an embodiment of the present application.
  • control circuit may include a microprocessor, a power module, a relay, a switch control circuit, a motor drive circuit, etc., and the control circuit can control the beauty instrument to light up or go out,
  • modules are specifically included in the control circuit and the circuit connection manners between the modules are not limited in this application.
  • contact beauty instrument mentioned in this application can also be provided with a similar control circuit, which modules are specifically included in the control circuit and the circuit connection method between each module, and this application does not make a limitation here.
  • the present application discloses a contact beauty instrument, as shown in FIG. 1 and FIG. 2 , which mainly includes a cold compress 10 , a cooling component 20 , a cooling component 30 , and an electrode head 50 .
  • the cold compress 10 has a contact surface 10a and a conductive surface 10b.
  • the contact surface 10a is used to contact the skin;
  • the cooling side of the cold compress 20 is thermally coupled with the conductive surface 10b of the cold compress 10 to cool the cold compress 10.
  • the heat sink 30 and The heating side of the cooling element 20 is thermally coupled to dissipate heat from the cooling element 20 ; at least two electrode heads 50 are arranged and installed on the cooling element 10 at intervals.
  • the cold compress 10 , the cooling element 20 , the heat sink 30 , and all the electrode heads 50 are assembled on the main body of the device through the bracket 60 .
  • the length of the above-mentioned contact beauty instrument is between 50 mm and 500 mm, and the weight is between 100 grams and 2500 grams.
  • a carbon-containing layer 101 is provided on the surface of the heat sink 30 .
  • the carbon-containing layer 101 is bonded, coated or plated on the outer peripheral surface of the heat sink 30 .
  • Carbon materials have the characteristics of low density, high strength, high thermal conductivity, and chemical corrosion resistance.
  • the carbon-containing layer 101 on the surface of the heat sink 30 can help the heat sink 30 conduct heat faster and more efficiently to achieve the purpose of heat dissipation.
  • a carbon-containing layer 101 is provided between the cooling element 30 and the cooling element 20, as shown in FIG. 4 .
  • the heat sink 30 is thermally coupled to the heat generating side of the cooling component 20, and heat transfer can be realized through heat transfer, heat convection or heat radiation.
  • a carbon-containing layer 101 is added to the coupling gap between the cooling component 30 and the cooling component 20 to strengthen the heat transfer connection , can achieve the purpose of heat dissipation faster and more efficiently.
  • the heat sink 30 is at least partially embedded with a carbon-containing layer 101.
  • the heat conduction frame increases the specific surface area as much as possible to obtain better heat dissipation effect without affecting the overall weight of the contact beauty instrument of the present application.
  • the carbon-containing layer 101 includes graphene and/or carbon materials.
  • the graphene material is composed of a two-dimensional planar structure composed of a single layer of carbon atoms closely arranged in regular hexagons.
  • Carbon is a general term for allotropes of carbon and non-metallic solid materials mainly composed of carbon, including graphite, diamond and other carbon-containing layers 101 are all carbon, and one of the characteristics of carbon materials is electrical and thermal conductivity powerful.
  • the material of the cold compress 10 is crystal and/or metal, and the cold compress 10 is provided with a through hole, which penetrates the contact surface 10a and the conduction surface 10b, and the electrode head 50 passes through the through hole to be installed on the cold compress 10 .
  • At least a part of the electrode tips 50 are positive electrode tips 50
  • at least another part of the electrode tips 50 are negative electrode tips 50
  • the positive electrode tips 50 and the negative electrode tips 50 are adjacent.
  • the contact beauty instrument also includes a phototherapy lamp, placed between the cold compress and the heat sink or on the side of the cold compress;
  • the cold compress is a light-transmitting body, and the light emitted by the phototherapy lamp can exit through the cold compress to perform phototherapy on the skin.
  • the light emitted by the phototherapy lamp can be ultraviolet light, visible light, and infrared light.
  • Ultraviolet light is an invisible light with a wavelength of 400-180nm that is outside the violet light in the spectrum and has a wavelength of 400-180nm. It has high photon energy and has obvious phototherapeutic effects.
  • the wavelength of the light emitted by the phototherapy lamp is 480-1200nm, which is mainly effective for acne and acne;
  • the emitted light has a wavelength of 640-1200nm, which may mainly play a role in hair removal.
  • the light absorption spectrum of melanin decreases monotonously with the increase of wavelength, and the short wavelength less than 480 may have tanning effect, in order to avoid the side effects of wavelength less than 480nm, and considering that melanin is only distributed in the epidermis , requiring shallow penetration. Therefore, the use of 540nm wavelength light can effectively remove blackness while treating vascular lesions. If there are no vascular lesions, you can choose light with a wavelength of 590nm. At this time, it can not only remove wrinkles and rejuvenate the skin, but also remove melanin to achieve the effect of "skin rejuvenation and whitening".
  • the electrode tip 50 raises the epidermis temperature and dermis temperature of the skin. Elevated skin temperature includes heat generated by skin cells and heat after conversion of electrical energy.
  • the cooling element 20 cools the cold compress 10, so that the cold compress 10 can continuously cool down the skin epidermis.
  • the process of alternating hot and cold can also expand and contract the skin, enhance the breathing of the skin, protect the skin from damage, and at the same time better stimulate the tightening and regeneration of collagen in the dermis, tighten the skin, and improve the beauty effect.
  • the heat generated by the electrode tip 50 on the facial skin is conducted to the cold compress 10 , so that the temperature of the epidermis is cooled by the cold compress 10 .
  • the cooling element 10 is refrigerated by the cooling element 20 and absorbs the heat conducted through the cooling element 10 .
  • heat will be generated correspondingly on the heat generating side.
  • the heat generated by the cooling of the cooling element 20 is conducted to the cooling element 30 , and is exhausted from the contact beauty instrument 1 through the cooling element 30 .
  • the heat sink 30 is either provided with a carbon-containing layer 101 on the surface, or is provided with a carbon-containing layer 101 between the cooling element 20, or embedded with a carbon-containing layer 101 in the form of a heat-conducting frame to enhance heat transfer faster Dissipate heat more efficiently.
  • the entire heat transfer process can reduce the return of heat in a short time, and can prolong the time for the contact beauty instrument to maintain the temperature balance state.
  • the skin care component 4 includes a cold compress 10 , a cooling component 20 , a cooling guide 40 and at least two electrode tips 50 .
  • the cold compress 10 has a contact surface 10a, and the contact surface 10a is used to contact the skin part and lower the temperature;
  • the cooling element 20 has a cooling surface 20a, and the cooling surface 20a is used for cooling;
  • the cold guide 40 is located between the cold compress 10 and the cooling element 20,
  • the contact surface 10a is arranged on the side of the cold compress 10 away from the cooling element 20, and the cooling surface 20a is arranged on the side of the cold compress 20 close to the cold compress 10; at least two electrode heads 50, the electrode heads 50 and the cold compress 10 are relatively fixed.
  • the skin care component 4 can be applied to a contact beauty instrument.
  • the cold compressing element 10, the cooling element 20 and the cooling guide element 40 are stacked to form a sandwich structure. This setting facilitates the installation of the three.
  • the heat of the skin part is conducted to the cooling element 20 through the cold compress element 10 and the cooling element 40 .
  • the temperature is lowered by the cooling element 20 .
  • the cooling element 10 and the cooling element 20 are relatively close to each other through the stacked arrangement, so that the cooling element 20 can quickly cool down the cooling element 10 .
  • the skin care component 4 works normally but does not touch the skin, and it only takes half a minute for the temperature of the cold compress 10 to drop from normal temperature to below 10 degrees Celsius. Reduce the waiting time for users to use and improve user experience.
  • the above-mentioned skin care component 4 further includes a heat dissipation element 30 and a carbon-containing layer 101 , and the heat dissipation element 30 is thermally coupled to the heat-generating side of the cooling element 20 .
  • the cooling element 30 is used to dissipate the heat of the cooling element 20 .
  • the skin care component also includes a phototherapy lamp, placed between the cold compress and the heat sink or on the side of the cold compress;
  • the cold compress is a light-transmitting body, and the light emitted by the phototherapy lamp can exit through the cold compress to perform phototherapy on the skin.
  • the light emitted by the phototherapy lamp can be ultraviolet light, visible light, and infrared light.
  • Ultraviolet light is an invisible light with a wavelength of 400-180nm that is outside the violet light in the spectrum and has a wavelength of 400-180nm. It has high photon energy and has obvious phototherapeutic effects.
  • a carbon-containing layer 101 is provided on the surface of the heat sink 30 .
  • the carbon-containing layer 101 is bonded, coated or plated on the outer peripheral surface of the heat sink 30 .
  • Carbon materials have the characteristics of low density, high strength, high thermal conductivity, and chemical corrosion resistance.
  • the carbon-containing layer 101 on the surface of the heat sink 30 can help the heat sink 30 conduct heat faster and more efficiently to achieve the purpose of heat dissipation.
  • a carbon-containing layer 101 is provided between the cooling element 30 and the cooling element 20, as shown in FIG. 4 .
  • the heat sink 30 is thermally coupled to the heat generating side of the cooling component 20, and heat transfer can be realized through heat transfer, heat convection or heat radiation.
  • a carbon-containing layer 101 is added to the coupling gap between the cooling component 30 and the cooling component 20 to strengthen the heat transfer connection , can achieve the purpose of heat dissipation faster and more efficiently.
  • the heat sink 30 is at least partially embedded with a carbon-containing layer 101.
  • the heat conduction frame increases the specific surface area as much as possible to obtain better heat dissipation effect without affecting the overall weight of the contact beauty instrument of the present application.
  • the carbon-containing layer 101 includes graphene and/or carbon materials.
  • the graphene material is composed of a two-dimensional planar structure composed of a single layer of carbon atoms closely arranged in regular hexagons.
  • Carbon is a general term for allotropes of carbon and non-metallic solid materials mainly composed of carbon, including graphite, diamond and other carbon-containing layers 101 are all carbon, and one of the characteristics of carbon materials is electrical and thermal conductivity powerful.
  • the area of the side of the cooling guide 40 close to the cold compress 10 is greater than or equal to the area of the contact surface 10a of the cold compress 10, and the area of the cooling surface 20a of the refrigeration element 20 is greater than or equal to the area of the contact surface 10a of the cold compress 10.
  • the cold guide 40 includes aluminum nitride ceramics and/or the cold pack 10 includes sapphire.
  • the present application also discloses a beauty instrument, as shown in FIG. 7 , which mainly includes a cold compress crystal, a cooling element 20 , a cold conduction layer, a clamping mechanism and an electrode head 50 .
  • the cold compress crystal is used to contact the skin for cooling;
  • the cooling element 20 has a cooling side and a heat dissipation side;
  • the cold conduction layer is located between the cold compress crystal and the cooling side of the refrigeration element 20;
  • the clamping mechanism is used to clamp the cold compress crystal, the conduction A combination of the cold layer and the cooling element 20; at least two electrode heads 50, the electrode heads 50 are relatively fixed to the cold crystal or the clamping mechanism.
  • the cold compress crystals cool down the skin.
  • the clamping mechanism fixes the cold compress crystal, the cooling element 20 and the cold conduction layer together. This makes the contact between the cold crystal, the cooling element 20 and the cold conduction layer more closely and fully under pressure, thereby improving the heat transfer effect.
  • the above beauty instrument also includes a heat sink 30 and a carbon-containing layer 101, the heat sink 30 is thermally coupled with the heating side of the cooling element 20, the heat sink 30 is used to dissipate the heat of the cooling element 20, and the carbon-containing layer 101 is used for for faster heat transfer.
  • the beauty instrument also includes a phototherapy lamp, which is placed between the cold compress crystal and the cooling element or arranged on the side of the cold compress element;
  • the cold compress crystal is a light-transmitting body, and the light emitted by the phototherapy lamp can exit through the cold compress crystal to perform phototherapy on the skin.
  • the light emitted by the phototherapy lamp can be ultraviolet light, visible light, and infrared light.
  • Ultraviolet light is an invisible light with a wavelength of 400-180nm that is outside the violet light in the spectrum and has a wavelength of 400-180nm. It has high photon energy and has obvious phototherapeutic effects.
  • a carbon-containing layer 101 is provided on the surface of the heat sink 30 .
  • the carbon-containing layer 101 is bonded, coated or plated on the outer peripheral surface of the heat sink 30 .
  • Carbon materials have the characteristics of low density, high strength, high thermal conductivity, and chemical corrosion resistance.
  • the carbon-containing layer 101 on the surface of the heat sink 30 can help the heat sink 30 conduct heat faster and more efficiently to achieve the purpose of heat dissipation.
  • a carbon-containing layer 101 is provided between the cooling element 30 and the cooling element 20, as shown in FIG. 4 .
  • the heat sink 30 is thermally coupled to the heat generating side of the cooling component 20, and heat transfer can be realized through heat transfer, heat convection or heat radiation.
  • a carbon-containing layer 101 is added to the coupling gap between the cooling component 30 and the cooling component 20 to strengthen the heat transfer connection , can achieve the purpose of heat dissipation faster and more efficiently.
  • the heat sink 30 is at least partially embedded with a carbon-containing layer 101.
  • the heat conduction frame increases the specific surface area as much as possible to obtain better heat dissipation effect without affecting the overall weight of the contact beauty instrument of the present application.
  • the carbon-containing layer 101 includes graphene and/or carbon materials.
  • the graphene material is composed of a two-dimensional planar structure composed of a single layer of carbon atoms closely arranged in regular hexagons.
  • Carbon is a general term for allotropes of carbon and non-metallic solid materials mainly composed of carbon, including graphite, diamond and other carbon-containing layers 101 are all carbon, and one of the characteristics of carbon materials is electrical and thermal conductivity powerful.
  • the clamping mechanism has an adjustment piece and a clamping piece, the clamping piece is used to clamp the cold compress crystal, the cold conduction layer and the refrigeration piece 20, and the adjusting piece is used to adjust the clamping degree of the clamping piece, and at least can Loosen the clamps to increase or decrease the number of cooling layers.
  • the adjusting member may be a spring
  • the clamping member may be a pair of support rods supported on opposite sides of the cooling guide member 40 .
  • the beauty instrument further includes a housing 70, the housing 70 has an opening, the cold compress 10 is located in the opening, and the cold compress 10 has different first radial dimensions and second radial dimensions in the thickness direction, and the opening has a depth
  • the directions have different third radial dimensions and fourth radial dimensions.
  • the part of the cold compress 10 with the first radial dimension is closer to the cooling guide 40 than the part of the cold compress 10 with the second radial dimension, and has the third radial dimension.
  • the opening portion with the fourth radial dimension is closer to the refrigeration element 20 than the opening portion with the fourth radial dimension, the first radial dimension is larger than the second radial dimension, the third radial dimension is smaller than the fourth radial dimension, and the second radial dimension is smaller than the third radial dimension Radial dimension.
  • the housing 70 abuts against the cold compress 10 and presses the cold compress 10 against the cooling element 20 .
  • the present application also provides a skin care assembly 4 , including a cold compress 10 , an electrode head 50 and a cooling element 20 .
  • the cold compress 10 has a contact surface 10a and a conductive surface 10b.
  • the contact surface 10a is used to contact the skin part and cool down; at least two electrode heads 50 are used to discharge and heat the skin part.
  • the cooling element 20 has a cooling surface 20a, the cooling surface 20a is used for cooling, and is thermally coupled with the conduction surface 10b; the cold compress element 10 and the cooling element 20 are stacked.
  • the contact between the stacked cold pack 10 and the cooling guide 40 is more intimate and sufficient, so that the cooling guide 40 cools the cold pack 10 more rapidly. Rapid cooling is necessary for some cosmetic functions.
  • the electrode head 50 is used to perform cosmetic treatment on the skin part, and then the temperature of the skin needs to drop sharply, so as to achieve the effect of tightening the skin and shrinking pores.
  • the cold compress 10 and the refrigeration element 20 are stacked, and the sheet-shaped cold compress 10 and the sheet-shaped refrigeration element 20 may be arranged in parallel up and down, which is beneficial to the close contact between the cold compress 10 and the refrigeration element 20 .
  • the above-mentioned skin care component 4 also includes a heat sink 30 and a carbon-containing layer 101, the heat sink 30 is thermally coupled to the heating side of the cooling element 20, the radiator has a thermal coupling surface 302, the cooling element 20 has a heating surface, and the thermal coupling The surface 302 is thermally coupled to the heating surface of the cooling element 20 , and the ratio of the area of the thermal coupling surface 302 to the area of the heating surface is between 1 and 1.5.
  • the heat dissipation element 30 is used to dissipate the heat of the cooling element 20
  • the carbon-containing layer 101 is used to conduct heat faster.
  • the skin care component also includes a phototherapy lamp, placed between the cold compress and the heat sink or on the side of the cold compress;
  • the cold compress is a light-transmitting body, and the light emitted by the phototherapy lamp can exit through the cold compress to perform phototherapy on the skin.
  • the light emitted by the phototherapy lamp can be ultraviolet light, visible light, and infrared light.
  • Ultraviolet light is an invisible light with a wavelength of 400-180nm that is outside the violet light in the spectrum and has a wavelength of 400-180nm. It has high photon energy and has obvious phototherapeutic effects.
  • a carbon-containing layer 101 is provided on the surface of the heat sink 30 .
  • the carbon-containing layer 101 is bonded, coated or plated on the outer peripheral surface of the heat sink 30 .
  • Carbon materials have the characteristics of low density, high strength, high thermal conductivity, and chemical corrosion resistance.
  • the carbon-containing layer 101 on the surface of the heat sink 30 can help the heat sink 30 conduct heat faster and more efficiently to achieve the purpose of heat dissipation.
  • a carbon-containing layer 101 is provided between the cooling element 30 and the cooling element 20, as shown in FIG. 4 .
  • the heat sink 30 is thermally coupled to the heat generating side of the cooling component 20, and heat transfer can be realized through heat transfer, heat convection or heat radiation.
  • a carbon-containing layer 101 is added to the coupling gap between the cooling component 30 and the cooling component 20 to strengthen the heat transfer connection , can achieve the purpose of heat dissipation faster and more efficiently.
  • the heat sink 30 is at least partially embedded with a carbon-containing layer 101.
  • the heat conduction frame increases the specific surface area as much as possible to obtain better heat dissipation effect without affecting the overall weight of the contact beauty instrument of the present application.
  • the carbon-containing layer 101 includes graphene and/or carbon materials.
  • the graphene material is composed of a two-dimensional planar structure composed of a single layer of carbon atoms closely arranged in regular hexagons.
  • Carbon is a general term for allotropes of carbon and non-metallic solid materials mainly composed of carbon, including graphite, diamond and other carbon-containing layers 101 are all carbon, and one of the characteristics of carbon materials is electrical and thermal conductivity powerful.
  • the area of the cooling surface 20a of the cooling element 20 is greater than or equal to the area of the contact surface 10a of the cold compress 10, and the ratio of the area of the cooling surface 20a of the refrigeration element 20 to the area of the contact surface 10a of the cold compress 10 is between 1.5 and 1. between.
  • the cold compress 10 is sapphire.
  • the contact surface 10a and the conductive surface 10b of the cold compress 10 are set opposite to each other, the end surface of the electrode head 50 is located on the side of the contact surface 10a of the cold compress 10, and is vertically projected on the reference plane where the contact surface 10a of the cold compress 10 is located It is located within the closed circle defined by the peripheral boundary of the contact surface 10 a of the cold compress 10 .
  • the numerical ratio of the thickness of the cold compress 10 to the area of the contact surface 10a of the cold compress 10 is 1:150 ⁇ 1:250.
  • the ratio of the area of the contact surface 10a of the cold compress 10 to the area of the cooling surface 20a of the cooling element 20 is between 0.8 and 1.2.
  • the conduction surface 10b of the cold compress 10 is in direct contact with the cooling surface 20a of the cooling element 20 .
  • FIG. 10 is an exploded schematic view of an embodiment of the skin care component 4 .
  • the aforementioned skin care assembly 4 includes an electrode head 50 , a cooling element 14 and a fixing element 93 .
  • At least two electrode heads 50, the electrode heads 50 are used to discharge and heat the skin part;
  • the cooling element 14 includes a contact surface 10a and a conductive surface 10b, the contact surface 10a is used to contact the skin part and cool down, and the conductive surface 10b is used to conduct heat ,
  • the cooling member 14 is provided with a through hole that runs through the contact surface 10a;
  • the fixing member 93 is at least partially located on one side of the cooling member 14 except the contact surface 10a; wherein, one end of the electrode head 50 is located on the contact surface 10a side of the cooling member 14, and One end is connected with the rest of the fixing member 93 through a through hole, so as to relatively fix the electrode head 50 and the cooling member 14 .
  • the electrode head 50 contacts the skin and discharges the skin. At this time, the current stimulates the skin to cause muscle contraction, which has a cosmetic effect, and the skin temperature will increase at the same time.
  • the temperature of the electrode tip 50 is lowered, which acts as a calming cold compress and prevents the skin from being burned due to excessive temperature. Alternating hot and cold can also play a role in firming the skin.
  • the electrode head 50 is fixed in the through hole of the cooling member 14 by the fixing member 93 , so that the electrode head 50 and the cooling member 14 are relatively fixed. The relatively fixed electrode head 50 and the cooling element 14 cooperate with each other to perform cosmetic treatment on the skin part.
  • the electrode head 50 and the cooling element 14 are fixed together by means of a fixing piece 93 , so that the electrode head 50 and the cooling element 14 form an integral body.
  • the electrode head 50 has threaded holes, and the fixing member 93 is a screw.
  • the electrode head 50 is fixed on the cooling member 14 in a simple manner, which is convenient for disassembly and assembly.
  • the thermal skin treatment assembly includes a cooling element 20 .
  • the cooling element 20 has a cooling surface 20a, and the cooling surface 20a abuts against the conduction surface 10b of the cooling element 14; the through hole expands in diameter on the conduction surface 10b side of the cooling element 14 to form a counterbore, and at least part of the fixing element 93 is embedded in the sinker.
  • the head hole does not protrude from the surface where the conductive surface 10b is located.
  • the cooling element 14 includes a stacked cooling element 10 and a cooling element 40, the cooling element 40 is located between the cooling element 10 and the cooling element 20, and the contact surface 10a is arranged on the side of the cold element 10 away from the cooling element 40
  • the conduction surface 10 b is disposed on the side of the cold guide 40 away from the cold pack 10 , the through hole runs through the cold pack 10 and the cold guide 40 , and the counterbore is formed in the cold guide 40 .
  • the contact beauty instrument may also include a phototherapy lamp, placed between the cold compress and the heat sink or on the side of the cold compress;
  • the cold compress is a light-transmitting body, and the light emitted by the phototherapy lamp can exit through the cold compress to perform phototherapy on the skin.
  • At least part of the electrode head 50 is inserted into the through hole in the cold pack 10, and at least part of the side of the electrode head 50 has a first plane, the inner wall of the through hole has a second plane, and the first plane abuts against the second plane. plane to prevent the electrode head 50 from rotating around its axis.
  • the present application also provides an operating head 100 of a contact beauty instrument, including the aforementioned skin heat treatment assembly and the housing 70 , the skin heat treatment assembly is mounted on the housing 70 .
  • the above-mentioned contact beauty instrument includes a cold compress 10 , a cooling element 20 , a cooling element 30 and an electrode head.
  • the cold compress 10 has a contact surface 10a and a conductive surface 10b.
  • the contact surface 10a is used to contact the skin;
  • the cooling side of the cold compress 20 is thermally coupled with the conductive surface 10b of the cold compress 10 to cool the cold compress 10.
  • the heating side of the element 20 is thermally coupled to dissipate heat from the cooling element 20; at least two electrode heads, the electrode head includes a mounting part and a rolling part, the rolling part is rolled on the mounting part, and the mounting part is relatively fixed to the cold compress 10.
  • the contact beauty instrument is used in contact with the skin and often needs to be moved on the face.
  • the rolling electrode head makes the movement of the contact beauty instrument on the face smoother, and the user experience is more comfortable.
  • the rolling part is rollingly installed on the installation part, and the installation part is relatively fixed to the cold compress 10 , so the rolling part and the cold compress 10 are arranged to roll relative to each other.
  • the electrode head 50 arranged by rolling can also play a certain massage effect and relieve muscle fatigue.
  • a carbon-containing layer 101 is provided on the surface of the heat sink 30 .
  • the carbon-containing layer 101 is bonded, coated or plated on the outer peripheral surface of the heat sink 30 .
  • Carbon materials have the characteristics of low density, high strength, high thermal conductivity, and chemical corrosion resistance.
  • the carbon-containing layer 101 on the surface of the heat sink 30 can help the heat sink 30 conduct heat faster and more efficiently to achieve the purpose of heat dissipation.
  • a carbon-containing layer 101 is provided between the cooling element 30 and the cooling element 20, as shown in FIG. 4 .
  • the heat sink 30 is thermally coupled to the heat generating side of the cooling component 20, and heat transfer can be realized through heat transfer, heat convection or heat radiation.
  • a carbon-containing layer 101 is added to the coupling gap between the cooling component 30 and the cooling component 20 to strengthen the heat transfer connection , can achieve the purpose of heat dissipation faster and more efficiently.
  • the heat sink 30 is at least partially embedded with a carbon-containing layer 101.
  • the heat conduction frame increases the specific surface area as much as possible to obtain better heat dissipation effect without affecting the overall weight of the contact beauty instrument of the present application.
  • the carbon-containing layer 101 includes graphene and/or carbon materials.
  • the graphene material is composed of a two-dimensional planar structure composed of a single layer of carbon atoms closely arranged in regular hexagons.
  • Carbon is a general term for allotropes of carbon and non-metallic solid materials mainly composed of carbon, including graphite, diamond and other carbon-containing layers 101 are all carbon, and one of the characteristics of carbon materials is electrical and thermal conductivity powerful.
  • the electrode head discharges the skin to achieve a corresponding cosmetic effect.
  • the rolling part is electrically connected with the contact beauty instrument.
  • the beauty instrument includes a cold compress 10 , a refrigeration element 20 , a first housing 71 and an electrode head 50 .
  • the cold compress 10 is used to contact the skin for cooling;
  • the cold compress 20 has a cooling side and a heating side, and the cooling side is thermally coupled with the cold compress 10;
  • the first shell 71 has a first opening; at least two electrode heads 50, the electrode head 50 is relatively fixed to the cold compress 10 or the first housing 71 .
  • the cooling element 20 is located inside the first shell 71, the side of the cold compress 10 in contact with the skin is exposed to the first opening of the shell 70, and the other side of the cold compress 10 is used to seal the first opening of the shell 70. Open your mouth.
  • the cold compress 10 contacts the skin.
  • the cold compress 10 is arranged at the first opening, and at the same time the cold compress 10 blocks the first opening, thereby preventing sweat stains or oil stains from leaking into the beauty instrument.
  • the above-mentioned skin care component 4 also includes a heat sink 30 and a carbon-containing layer 101, the heat sink 30 is thermally coupled to the heating side of the cooling element 20, the radiator has a thermal coupling surface 302, the cooling element 20 has a heating surface, and the thermal coupling The surface 302 is thermally coupled to the heating surface of the cooling element 20 , and the ratio of the area of the thermal coupling surface 302 to the area of the heating surface is between 1 and 1.5.
  • the heat dissipation element 30 is used to dissipate the heat of the cooling element 20
  • the carbon-containing layer 101 is used to conduct heat faster.
  • the beauty instrument may also include a phototherapy lamp, which is placed between the cold compress and the cooling element or arranged on the side of the cold compress;
  • the cold compress is a light-transmitting body, and the light emitted by the phototherapy lamp can exit through the cold compress to perform phototherapy on the skin.
  • a carbon-containing layer 101 is provided on the surface of the heat sink 30 .
  • the carbon-containing layer 101 is bonded, coated or plated on the outer peripheral surface of the heat sink 30 .
  • Carbon materials have the characteristics of low density, high strength, high thermal conductivity, and chemical corrosion resistance.
  • the carbon-containing layer 101 on the surface of the heat sink 30 can help the heat sink 30 conduct heat faster and more efficiently to achieve the purpose of heat dissipation.
  • a carbon-containing layer 101 is provided between the cooling element 30 and the cooling element 20, as shown in FIG. 4 .
  • the heat sink 30 is thermally coupled to the heat generating side of the cooling component 20, and heat transfer can be realized through heat transfer, heat convection or heat radiation.
  • a carbon-containing layer 101 is added to the coupling gap between the cooling component 30 and the cooling component 20 to strengthen the heat transfer connection , can achieve the purpose of heat dissipation faster and more efficiently.
  • the heat sink 30 is at least partially embedded with a carbon-containing layer 101.
  • the heat conduction frame increases the specific surface area as much as possible to obtain better heat dissipation effect without affecting the overall weight of the contact beauty instrument of the present application.
  • the carbon-containing layer 101 includes graphene and/or carbon materials.
  • the graphene material is composed of a two-dimensional planar structure composed of a single layer of carbon atoms closely arranged in regular hexagons.
  • Carbon is a general term for allotropes of carbon and non-metallic solid materials mainly composed of carbon, including graphite, diamond and other carbon-containing layers 101 are all carbon, and one of the characteristics of carbon materials is electrical and thermal conductivity powerful.
  • the beauty instrument includes a first sealing ring 01 .
  • the first sealing ring 01 is clamped between the cold compress 10 and the edge of the first opening of the first housing 71 and surrounds the first opening.
  • the contact between the cold compress 10 and the shell 70 may be a rigid contact, its deformation may not be enough to seal the gap between the cold pack 10 and the shell 70 caused by processing errors and the like.
  • Utilizing the first sealing ring 01 can enhance the performance of sealing and preventing liquid infiltration at the part of the beauty instrument that contacts the skin.
  • the beauty instrument includes an electrode head and a second sealing ring 02 .
  • the second sealing ring 02 is sleeved on the outer periphery of the electrode head; wherein, the cold compress 10 is sapphire and has a through hole, the electrode head is at least partly located in the through hole, and the second sealing ring 02 is clamped between the electrode head and the cold compress 10 .
  • the electrode head needs to provide current to the skin, so the electrode head also needs to touch the skin.
  • the electrode head is disposed in the through hole of the cold compress 10 , so attention should be paid to the sealing between the electrode head and the cold compress 10 .
  • a sealing ring is provided between the electrode head and the cold compress 10, which can effectively prevent the infiltration of sweat stains and oil stains.
  • the present application also provides a beauty instrument, including a heat source, a heat sink 30 , a heat pipe 03 and an electrode tip 50 .
  • a beauty instrument including a heat source, a heat sink 30 , a heat pipe 03 and an electrode tip 50 .
  • One end of the heat sink 30 is thermally coupled to the heat source, and the other end extends toward the tail of the beauty instrument;
  • one end of the heat pipe 03 is thermally coupled to the end of the heat sink 30 adjacent to the heat source or the heat source, and the other end extends away from the heat source, and is thermally coupled to the heat sink 30,
  • There are at least two electrode heads 50 and the electrode heads 50 are relatively fixed to the heat sink 30 .
  • the heat dissipation element 30 itself has a heat dissipation function, and the heat pipe 03 assists the heat dissipation element 30 to dissipate heat, thereby improving the heat dissipation efficiency of the heat dissipation element 30 .
  • One end of the heat pipe 03 is thermally coupled with the end of the heat sink 30 near the heat source to absorb heat from the heat source, and the other end extends away from the heat source, for example, toward the tail of the beauty instrument.
  • the heat transfer path is long enough to prevent the heat from returning to the head of the beauty instrument in a short time and prolong the cooling time of the beauty instrument.
  • a carbon-containing layer 101 is provided on the surface of the heat sink 30 .
  • the carbon-containing layer 101 is bonded, coated or plated on the outer peripheral surface of the heat sink 30 .
  • Carbon materials have the characteristics of low density, high strength, high thermal conductivity, and chemical corrosion resistance.
  • the carbon-containing layer 101 on the surface of the heat sink 30 can help the heat sink 30 conduct heat faster and more efficiently to achieve the purpose of heat dissipation.
  • the above beauty instrument also includes a cooling element 20 and a carbon-containing layer 101 .
  • the radiator has a thermal coupling surface 302
  • the cooling element 20 has a heating surface
  • the thermal coupling surface 302 of the radiator is thermally coupled with the heating surface of the cooling element 20 .
  • the carbon-containing layer 101 is arranged between the cooling element 20 and the heat dissipation element 30 to strengthen the heat transfer connection and achieve the purpose of heat dissipation faster and more efficiently.
  • the heat sink 30 is at least partially embedded with a carbon-containing layer 101.
  • the heat conduction frame increases the specific surface area as much as possible to obtain better heat dissipation effect without affecting the overall weight of the contact beauty instrument of the present application.
  • the carbon-containing layer 101 includes graphene and/or carbon materials.
  • the graphene material is composed of a two-dimensional planar structure composed of a single layer of carbon atoms closely arranged in regular hexagons.
  • Carbon is a general term for allotropes of carbon and non-metallic solid materials mainly composed of carbon, including graphite, diamond and other carbon-containing layers 101 are all carbon, and one of the characteristics of carbon materials is electrical and thermal conductivity powerful.
  • the heat sink 30 has a groove body, and the heat pipe 03 is at least partially embedded in the groove body.
  • the heat pipe 03 is embedded in the groove of the heat sink 30 , so that the contact between the heat pipe 03 and the heat sink 30 is more sufficient.
  • the heat dissipation performance of the heat dissipation member 30 can be improved.
  • the end of the heat pipe 03 thermally coupled with the heat sink 30 near the heat source is bent to increase the area of the contact surface 10a with the heat sink 30 near the heat source, so that the heat pipe 03 can strengthen the heat sink 30 in a targeted manner. heat absorption.
  • the present application also provides a beauty instrument, including a heat source, a cooling element 30 and an electrode tip 50 .
  • a beauty instrument including a heat source, a cooling element 30 and an electrode tip 50 .
  • One end of the heat sink 30 is thermally coupled to the heat source, and the other end extends toward the tail of the beauty instrument;
  • the airflow driver 04 is arranged relative to the heat sink 30, and is used to drive the airflow near the heat sink 30 or the heat source to make the airflow flow, and at least two electrode heads 50 , the electrode head 50 is relatively fixed to the heat sink 30 .
  • the heat sink 30 dissipates heat from the heat source by utilizing the property that heat is transferred from a place with a high temperature to a place with a low temperature. Heat is transferred from the heat source into the heat sink 30 and then dissipated.
  • the beauty instrument of the present application uses the airflow driver 04 to make the airflow near the cooling element 30 or the heat source flow, which can accelerate the heat dissipation of the heat source.
  • a carbon-containing layer 101 is provided on the surface of the heat sink 30 .
  • the carbon-containing layer 101 is bonded, coated or plated on the outer peripheral surface of the heat sink 30 .
  • Carbon materials have the characteristics of low density, high strength, high thermal conductivity, and chemical corrosion resistance.
  • the carbon-containing layer 101 on the surface of the heat sink 30 can help the heat sink 30 conduct heat faster and more efficiently to achieve the purpose of heat dissipation.
  • the above beauty instrument also includes a cooling element 20 and a carbon-containing layer 101 .
  • the radiator has a thermal coupling surface 302
  • the cooling element 20 has a heating surface
  • the thermal coupling surface 302 of the radiator is thermally coupled with the heating surface of the cooling element 20 .
  • the carbon-containing layer 101 is arranged between the cooling element 20 and the heat dissipation element 30 to strengthen the heat transfer connection and achieve the purpose of heat dissipation faster and more efficiently.
  • the heat sink 30 is at least partially embedded with a carbon-containing layer 101.
  • the heat conduction frame increases the specific surface area as much as possible to obtain better heat dissipation effect without affecting the overall weight of the contact beauty instrument of the present application.
  • the carbon-containing layer 101 includes graphene and/or carbon materials.
  • the graphene material is composed of a two-dimensional planar structure composed of a single layer of carbon atoms closely arranged in regular hexagons.
  • Carbon is a general term for allotropes of carbon and non-metallic solid materials mainly composed of carbon, including graphite, diamond and other carbon-containing layers 101 are all carbon, and one of the characteristics of carbon materials is electrical and thermal conductivity powerful.
  • the heat source in the beauty instrument may be the heating surface of a semiconductor cooling chip, or the cold compress 10 in the beauty instrument that absorbs the heat of the skin.
  • the airflow driver 04 is arranged on the shell of the beauty instrument near the head.
  • the airflow driver 04 drives the airflow to flow from the head of the beauty instrument to the tail and discharge from the tail.
  • the airflow driver 04 is a fan, and the fan is located at the head to blow air against the cooling element 30, and an air outlet is provided at the tail of the beauty instrument to discharge the airflow carrying heat. This speeds up heat dissipation.
  • the present application also provides a device body of a beauty instrument, including an operating head 100 and a heat sink 30 .
  • the operating head 100 includes at least two electrode heads 50 and cooling elements 20, the electrode heads 50 are relatively fixed to the cooling element 30, the cooling element 20 has a cooling surface 20a for cooling; the cooling element 30 has a thermal coupling surface 302 for The heating surface of the operating head 100 is thermally coupled to dissipate the heat from the operating head 100.
  • the operating head 100 has a contact surface 10a and a heating surface, and the contact surface 10a is used to contact the skin part and cool the skin part; 30 extends from the head of the device body to the tail of the device body.
  • the device main body of the cosmetic instrument of the present application dissipates heat to the operating head 100 through the cooling element 30 .
  • the heat sink 30 extends from the head of the device body to the tail of the device body, so that the heat sink 30 is long enough to increase the heat conduction path, effectively prevent the heat from returning to the head in a short time, and extend the contact surface 10a of the operation head 100. Cooling time.
  • a carbon-containing layer 101 is provided on the surface of the heat sink 30 .
  • the carbon-containing layer 101 is bonded, coated or plated on the outer peripheral surface of the heat sink 30 .
  • Carbon materials have the characteristics of low density, high strength, high thermal conductivity, and chemical corrosion resistance.
  • the carbon-containing layer 101 on the surface of the heat sink 30 can help the heat sink 30 conduct heat faster and more efficiently to achieve the purpose of heat dissipation.
  • a carbon-containing layer 101 is provided between the cooling element 30 and the cooling element 20, as shown in FIG. 4 .
  • the heat sink 30 is thermally coupled to the heat generating side of the cooling component 20, and heat transfer can be realized through heat transfer, heat convection or heat radiation.
  • a carbon-containing layer 101 is added to the coupling gap between the cooling component 30 and the cooling component 20 to strengthen the heat transfer connection , can achieve the purpose of heat dissipation faster and more efficiently.
  • the heat sink 30 is at least partially embedded with a carbon-containing layer 101.
  • the heat conduction frame increases the specific surface area as much as possible to obtain better heat dissipation effect without affecting the overall weight of the contact beauty instrument of the present application.
  • the carbon-containing layer 101 includes graphene and/or carbon materials.
  • the graphene material is composed of a two-dimensional planar structure composed of a single layer of carbon atoms closely arranged in regular hexagons.
  • Carbon is a general term for allotropes of carbon and non-metallic solid materials mainly composed of carbon, including graphite, diamond and other carbon-containing layers 101 are all carbon, and one of the characteristics of carbon materials is electrical and thermal conductivity powerful.
  • the heat sink 30 is provided with an avoidance groove
  • the heat pipe 03 is arranged along the inner wall of the escape groove, and is welded to the inner wall of the escape groove, and the end of the heat pipe 03 away from the bending part extends to the end of the heat sink 30 .
  • an air outlet is provided at the rear of the main body of the device, and the rear of the heat sink 30 is provided corresponding to the air outlet.
  • the thermal coupling surface 302 is located on the end surface of the head of the heat sink 30 ; the end surface is provided with a groove 201 , and the bottom surface of the groove 201 is the thermal coupling surface 302 .
  • the device body further includes a mounting plate and a charging port.
  • the mounting plate is installed at the opening of the groove 201 and extends toward the tail of the device body; the charging port is arranged at the end of the mounting plate and exposed to the device body.
  • the present application also provides a contact beauty instrument, which includes the aforementioned equipment body of the beauty instrument, including an operating head 100 , a mounting bracket 200 and a circuit board.
  • the operating head 100 includes at least two electrode heads 50 and a cooling element 20, the electrode heads 50 are electrically coupled to the circuit board, and the cooling element 20 has a cooling surface 20a for cooling.
  • the operation head 100 has a contact surface 10a, and the contact surface 10a is used to contact the skin part and cool the skin part;
  • the installation bracket 200 has a first installation position and a second installation position, and the operation head 100 is fixed to the installation bracket 200 through the first installation position
  • the circuit board is fixed to the mounting bracket 200 through the second mounting position; wherein, the operating head 100 is located at the head of the beauty instrument, and the mounting bracket 200 extends from the head of the beauty instrument to the tail of the beauty instrument.
  • the operation head 100 and the circuit board of the beauty instrument are installed on the mounting bracket 200, so that the installation of each component of the beauty instrument is more concentrated.
  • the convenient assembly also makes the overall structure of the beauty instrument more compact, which can reduce the volume of the beauty instrument.
  • the compact beauty instrument is more convenient for girls to hold and use, which improves the user experience.
  • the above-mentioned contact beauty instrument also includes a heat sink 30 and a carbon-containing layer 101
  • the heat sink 30 is thermally coupled to the heating side of the cooling element 20
  • the radiator has a thermal coupling surface 302
  • the cooling element 20 has a heating surface
  • the thermal coupling The surface 302 is thermally coupled to the heating surface of the cooling element 20
  • the ratio of the area of the thermal coupling surface 302 to the area of the heating surface is between 1 and 1.5.
  • the heat dissipation element 30 is used to dissipate the heat of the cooling element 20
  • the carbon-containing layer 101 is used to conduct heat faster.
  • a carbon-containing layer 101 is provided on the surface of the heat sink 30 .
  • the carbon-containing layer 101 is bonded, coated or plated on the outer peripheral surface of the heat sink 30 .
  • Carbon materials have the characteristics of low density, high strength, high thermal conductivity, and chemical corrosion resistance.
  • the carbon-containing layer 101 on the surface of the heat sink 30 can help the heat sink 30 conduct heat faster and more efficiently to achieve the purpose of heat dissipation.
  • a carbon-containing layer 101 is provided between the cooling element 30 and the cooling element 20, as shown in FIG. 4 .
  • the heat sink 30 is thermally coupled to the heat generating side of the cooling component 20, and heat transfer can be realized through heat transfer, heat convection or heat radiation.
  • a carbon-containing layer 101 is added to the coupling gap between the cooling component 30 and the cooling component 20 to strengthen the heat transfer connection , can achieve the purpose of heat dissipation faster and more efficiently.
  • the heat sink 30 is at least partially embedded with a carbon-containing layer 101.
  • the heat conduction frame increases the specific surface area as much as possible to obtain better heat dissipation effect without affecting the overall weight of the contact beauty instrument of the present application.
  • the carbon-containing layer 101 includes graphene and/or carbon materials.
  • the graphene material is composed of a two-dimensional planar structure composed of a single layer of carbon atoms closely arranged in regular hexagons.
  • Carbon is a general term for allotropes of carbon and non-metallic solid materials mainly composed of carbon, including graphite, diamond and other carbon-containing layers 101 are all carbon, and one of the characteristics of carbon materials is electrical and thermal conductivity powerful.
  • the installation bracket 200 can also be used as a heat sink 30 while installing various components to dissipate heat for the beauty instrument.
  • the mounting bracket 200 is in close contact with components such as the operating head 100 in the beauty instrument, which is beneficial to sufficient and uniform heat dissipation.
  • the mounting bracket 200 absorbs the heat in the entire beauty instrument, making the heat dissipation more efficient.
  • the mounting bracket 200 extending to the tail enables the heat to stay for a longer time without going back in a short time, so as to prolong the cooling time of the operation head 100 .
  • the contact beauty instrument includes an isolation bracket 60 .
  • the isolation bracket 60 has two opposite sides; the installation bracket 200 has a third installation position for installing the isolation bracket 60 .
  • the side of the mounting bracket 200 has a groove 201 , and the second mounting position and the third mounting position are both disposed in the groove 201 .
  • the operating head 100 is installed at the first installation position, and the second installation position and the third installation position are located at the side groove 201 of the installation bracket 200 .
  • Other components are installed in the second installation position and the third installation position, which are all arranged on the installation bracket 200, making the structure more compact.
  • the second installation position and the third installation position are located at different depths of the groove 201 , so that the circuit board and the isolation bracket 60 are stacked, and the second installation position is farther away from the bottom of the groove 201 than the third installation position.
  • the stacked arrangement makes the arrangement of various parts on the mounting bracket 200 more orderly, and the various components will not interfere with each other.
  • the ratio of the distance from the second installation position to the bottom of the groove 201 to the distance from the third installation position to the bottom of the groove 201 is between 1.5 and 3 times.
  • the contact beauty instrument includes a first installation board and a button assembly.
  • the button assembly is arranged on the first mounting plate; wherein, the side wall of the groove 201 is provided with steps, the circuit board is fixed in the groove 201 through the steps, the isolation bracket 60 surrounds and is fixed on the first mounting plate, and the two sides of the isolation bracket 60 The two surfaces of the first installation board are parallel to and spaced apart from each other.
  • the first installation board is fixed on the side wall of the groove 201 and is located on the side of the circuit board facing away from the bottom of the groove 201 .
  • the touch beauty device includes a second mounting plate.
  • the circuit board is mounted on the second mounting board, the second mounting board is mounted on the steps, and the second mounting board is spaced apart from the bottom of the groove 201 .
  • the first installation board extends to the tail of the touch beauty instrument, and the end of the first installation board away from the operation head 100 is provided with a charging module connected to the circuit board.
  • first mounting board and the second mounting board themselves may also be circuit boards.
  • the ratio of the length of the second mounting plate to the length of the mounting bracket 200 is between 1.2 and 2, and the charging module is separated from the mounting bracket 200 by a certain distance, the distance is between 1 cm and 3 cm.
  • the groove 201 is provided with an installation groove for installing the heat pipe 03 , the installation groove is provided along the inner wall of the groove 201 , and extends from the end of the mounting bracket 200 close to the operation head 100 to the end far away from the operation head 100 .
  • the installation bracket 200 has an accommodating groove, and the accommodating groove is provided on the side of the first installation position for accommodating part of the lead wires in the touch beauty instrument.
  • the installation bracket 200 has a first guide part
  • the operation head 100 has a second guide part
  • the first guide part and the second guide part cooperate with each other
  • the first guide part and the second guide part move relatively to guide the operation head 100 is mounted on a mounting bracket 200 .
  • the first guide part is a guide groove 94
  • the second guide part is a guide bar
  • the guide groove 94 is arranged on the side of the mounting bracket 200 close to the end of the operation head 100 , the guide bar is arranged on the position corresponding to the guide groove 94 on the operation head 100 , and the guide bar slides along the guide groove 94 to guide the installation of the operation head 100 on the installation bracket 200 .
  • the mounting bracket 200 may include a connecting piece 90 on which the guiding groove 94 is located.
  • the beauty instrument includes a mounting bracket 200 , an operating head 100 , a supporting element and a housing 70 .
  • the operating head 100 includes at least two electrode heads 50 and cooling elements 20, the electrode heads 50 are relatively fixed to the mounting bracket 200 or the housing 70, the cooling element 20 has a cooling surface 20a for cooling; the supporting element is relatively fixed to the mounting bracket 200, It is used to support the operation head 100 ; the housing 70 is sheathed on the installation bracket 200 and fixed on the installation bracket 200 .
  • the supporting element supports the operation of the operating head 100, making the operation of the operating head 100 more stable, the mounting bracket 200 is relatively fixed to the operating head 100, the supporting element is relatively fixed to the mounting bracket 200, and the housing 70 is sleeved on the mounting bracket 200 and fixed to the mounting bracket 200.
  • the structure of the device is compact and easy to install.
  • the installation bracket 200 , the operating head 100 , and supporting elements can be assembled first, and then put into the casing 70 as a whole. Easy to install and save space.
  • the above beauty instrument also includes a heat sink 30 and a carbon-containing layer 101
  • the heat sink 30 is thermally coupled to the heating side of the cooling element 20
  • the radiator has a thermal coupling surface 302
  • the cooling element 20 has a heating surface
  • the thermal coupling surface 302 It is thermally coupled with the heating surface of the cooling element 20 , and the ratio of the area of the thermal coupling surface 302 to the area of the heating surface is between 1 and 1.5.
  • the heat dissipation element 30 is used to dissipate the heat of the cooling element 20
  • the carbon-containing layer 101 is used to conduct heat faster.
  • a carbon-containing layer 101 is provided on the surface of the heat sink 30 .
  • the carbon-containing layer 101 is bonded, coated or plated on the outer peripheral surface of the heat sink 30 .
  • Carbon materials have the characteristics of low density, high strength, high thermal conductivity, and chemical corrosion resistance.
  • the carbon-containing layer 101 on the surface of the heat sink 30 can help the heat sink 30 conduct heat faster and more efficiently to achieve the purpose of heat dissipation.
  • a carbon-containing layer 101 is provided between the cooling element 30 and the cooling element 20, as shown in FIG. 4 .
  • the heat sink 30 is thermally coupled to the heat generating side of the cooling component 20, and heat transfer can be realized through heat transfer, heat convection or heat radiation.
  • a carbon-containing layer 101 is added to the coupling gap between the cooling component 30 and the cooling component 20 to strengthen the heat transfer connection , can achieve the purpose of heat dissipation faster and more efficiently.
  • the heat sink 30 is at least partially embedded with a carbon-containing layer 101.
  • the heat conduction frame increases the specific surface area as much as possible to obtain better heat dissipation effect without affecting the overall weight of the contact beauty instrument of the present application.
  • the carbon-containing layer 101 includes graphene and/or carbon materials.
  • the graphene material is composed of a two-dimensional planar structure composed of a single layer of carbon atoms closely arranged in regular hexagons.
  • Carbon is a general term for allotropes of carbon and non-metallic solid materials mainly composed of carbon, including graphite, diamond and other carbon-containing layers 101 are all carbon, and one of the characteristics of carbon materials is electrical and thermal conductivity powerful.
  • the beauty instrument further includes a fixing part 93 .
  • the tail portion of the mounting bracket 200 has at least three abutting positions in the circumferential direction, which are respectively abutted against the inner wall of the tail portion of the housing 70 to limit and fix the tail portion of the mounting bracket 200 in the radial direction.
  • the fixing member 93 fixes the head of the housing 70 on the Install the bracket 200 head.
  • the fixing member 93 fixes the housing 70 and the mounting bracket 200 through the mounting hole 500 on the housing 70 .
  • the radial dimension of the inner space of the tail of the housing 70 is smaller than the radial dimension of the inner space of the head of the housing 70, so that at least one slope is formed on the inner wall of the tail of the housing 70, and at least one of the mounting brackets 200 abuts against The bit abuts against the inclined surface to limit the relative movement of the housing 70 and the mounting bracket 200 from the axial direction.
  • the installation bracket 200 forms a triangular support structure at the rear of the housing 70 , so that the installation bracket 200 is more stable in the housing 70 .
  • the present application also provides a beauty instrument, including a heat source, a cooling element 30 and an electrode tip 50 .
  • a beauty instrument including a heat source, a cooling element 30 and an electrode tip 50 .
  • One end of the heat sink 30 is thermally coupled to the heat source, and the other end extends toward the tail of the beauty instrument; wherein, one side of the heat sink 30 has a heat dissipation fin 303 structure, and at least two electrode heads 50 are relatively fixed to the heat sink 30 .
  • the heat dissipation fin 303 structure increases the area of the contact surface 10 a between the heat dissipation element 30 and the air, which helps to improve heat dissipation efficiency.
  • the cooling element 30 extends to the tail of the beauty instrument, which can effectively absorb the heat from the heat source.
  • the heat dissipation fin 303 structure accelerates the heat dissipation of the heat dissipation element 30, so that the heat can be dissipated quickly at the heat dissipation element 30, which can reduce the trace of heat after a period of time.
  • heat backtracking may occur.
  • the heat dissipation fin 303 structure can further prolong the time before backtracking, which is beneficial to the work of the beauty instrument.
  • a carbon-containing layer 101 is provided on the surface of the heat sink 30 .
  • the carbon-containing layer 101 is bonded, coated or plated on the outer peripheral surface of the heat sink 30 .
  • Carbon materials have the characteristics of low density, high strength, high thermal conductivity, and chemical corrosion resistance.
  • the carbon-containing layer 101 on the surface of the heat sink 30 can help the heat sink 30 conduct heat faster and more efficiently to achieve the purpose of heat dissipation.
  • the above-mentioned beauty instrument also includes a cooling element 20, and the cooling element 30 is thermally coupled with the heating side of the cooling element 20, and heat transfer can be realized through heat transfer, heat convection or heat radiation, as shown in FIG. 4 .
  • a carbon-containing layer 101 is added to the coupling gap between the component 30 and the cooling component 20 to strengthen the heat transfer connection and achieve the purpose of heat dissipation faster and more efficiently.
  • the heat sink 30 is at least partially embedded with a carbon-containing layer 101.
  • the heat conduction frame increases the specific surface area as much as possible to obtain better heat dissipation effect without affecting the overall weight of the contact beauty instrument of the present application.
  • the carbon-containing layer 101 includes graphene and/or carbon materials.
  • the graphene material is composed of a two-dimensional planar structure composed of a single layer of carbon atoms closely arranged in regular hexagons.
  • Carbon is a general term for allotropes of carbon and non-metallic solid materials mainly composed of carbon, including graphite, diamond and other carbon-containing layers 101 are all carbon, and one of the characteristics of carbon materials is electrical and thermal conductivity powerful.
  • the heat source can be the heat generating side of the semiconductor cooling chip in the beauty instrument, or the cold compress 10 that contacts the skin.
  • the beauty instrument also includes a phototherapy lamp, which is placed between the cold compress and the cooling element or arranged on the side of the cold compress;
  • the cold compress is a light-transmitting body, and the light emitted by the phototherapy lamp can exit through the cold compress to perform phototherapy on the skin.
  • the light emitted by the phototherapy lamp can be ultraviolet light, visible light, and infrared light.
  • Ultraviolet light is an invisible light with a wavelength of 400-180nm that is outside the violet light in the spectrum and has a wavelength of 400-180nm. It has high photon energy and has obvious phototherapeutic effects.
  • the wavelength of the light emitted by the phototherapy lamp is 480-1200nm, which is mainly effective for acne and acne;
  • the emitted light has a wavelength of 640-1200nm, which may mainly play a role in hair removal.
  • the grooves extend from one end close to the heat source to the other end far away from the heat source, so as to form a heat dissipation fin 303 structure.
  • the tank and the walls between the tank form fins. Heat is transferred from the heat source to the end away from the heat source, and the groove body extends along the direction of heat transfer, which can promote heat dissipation.
  • the beauty appliance may include an airflow driver 04 .
  • the airflow driver 04 blows air to the groove body, so that the airflow blows the tail of the heat sink 30 from the heat source along the groove body without any obstruction in the middle.
  • the airflow will not be blocked and rebound, so that it will not carry heat back to the heat source, which can improve the heat dissipation effect.
  • the present application provides a skin care assembly 4 , which includes a cold compress 10 , a cooling element 20 , a heat sink 30 , an electrode tip 50 and a first cover 306 .
  • the cold compress 10 has a contact surface 10a and a conductive surface 10b.
  • the contact surface 10a is used to contact the skin; the cooling side of the cold compress 20 is thermally coupled with the conductive surface 10b of the cold compress 10 to cool the cold compress 10.
  • the heat sink 30 and the cooling The heating side of the part 20 is thermally coupled to dissipate the heat from the cooling part 20; the electrode tip 50 is used to discharge and heat the skin part, and the electrode tip 50 is relatively fixed with the cold compress part 10; the first cover 306 covers the cold compress part 10 And the refrigeration element 20 is fixed on the heat dissipation element 30 .
  • the electrode head 50 discharges and heats the skin part, which will increase the temperature of the skin part. At this time, the skin part needs to be cooled, which can play a role in tightening the skin.
  • the cooling element 10 , the cooling element 20 and the cooling element 30 are all thermally coupled. Both the cooling element 10 and the cooling element 20 are fixed to the cooling element 30 so that the cooling element 30 can dissipate heat to the cooling element 20 and/or the cooling element 10 .
  • the cooling element 10 and the cooling element 20 are fixed to the cooling element 30 through the first cover 306 , which is convenient for assembly and installation, and also facilitates the cooling element 30 to dissipate heat from the cooling element 10 and/or cooling element 20 .
  • the skin care component also includes a phototherapy lamp, placed between the cold compress and the heat sink or on the side of the cold compress;
  • the cold compress is a light-transmitting body, and the light emitted by the phototherapy lamp can exit through the cold compress to perform phototherapy on the skin.
  • the light emitted by the phototherapy lamp can be ultraviolet light, visible light, and infrared light.
  • Ultraviolet light is an invisible light with a wavelength of 400-180nm that is outside the violet light in the spectrum and has a wavelength of 400-180nm. It has high photon energy and has obvious phototherapeutic effects.
  • a carbon-containing layer 101 is provided on the surface of the heat sink 30 .
  • the carbon-containing layer 101 is bonded, coated or plated on the outer peripheral surface of the heat sink 30 .
  • Carbon materials have the characteristics of low density, high strength, high thermal conductivity, and chemical corrosion resistance.
  • the carbon-containing layer 101 on the surface of the heat sink 30 can help the heat sink 30 conduct heat faster and more efficiently to achieve the purpose of heat dissipation.
  • a carbon-containing layer 101 is provided between the cooling element 30 and the cooling element 20, as shown in FIG. 4 .
  • the heat sink 30 is thermally coupled to the heat generating side of the cooling component 20, and heat transfer can be realized through heat transfer, heat convection or heat radiation.
  • a carbon-containing layer 101 is added to the coupling gap between the cooling component 30 and the cooling component 20 to strengthen the heat transfer connection , can achieve the purpose of heat dissipation faster and more efficiently.
  • the heat sink 30 is at least partially embedded with a carbon-containing layer 101.
  • the heat conduction frame increases the specific surface area as much as possible to obtain better heat dissipation effect without affecting the overall weight of the contact beauty instrument of the present application.
  • the carbon-containing layer 101 includes graphene and/or carbon materials.
  • the graphene material is composed of a two-dimensional planar structure composed of a single layer of carbon atoms closely arranged in regular hexagons.
  • Carbon is a general term for allotropes of carbon and non-metallic solid materials mainly composed of carbon, including graphite, diamond and other carbon-containing layers 101 are all carbon, and one of the characteristics of carbon materials is electrical and thermal conductivity powerful.
  • the refrigeration element 20 is located between the heat dissipation element 30 and the cold compress element 10 .
  • the cooling element 20 cools the cold compress 10 .
  • the side in contact with the cooling element 30 generates heat, and the cooling element 30 dissipates heat to the cooling element 20 .
  • the first cover 306 is provided with an opening, the size of the opening in at least one radial direction is smaller than the size of the cold compress 10 in the radial direction, the opening of the first cover 306 is set corresponding to the cold compress 10, and through The edge of the opening presses the edge of the cold compress 10 to the heat sink 30 , thereby fixing the cold pack 10 and the cooling element 20 to the heat sink 30 .
  • the electrode heads 50 are arranged on the edge of the opening, and at least two electrode heads 50 are arranged on the outer periphery of the cold compress 10 .
  • the skin care component 4 includes a first buckle 310 and a second buckle 320 .
  • the first buckle 310 is fixed to the first cover 306; the second buckle 320 is fixed to the heat sink 30, and is snapped connected with the first buckle 310 to fix the cold compress 10 and the refrigeration unit 20 on the heat sink. 30 pieces.
  • the first cover 306 is fixed to the heat sink 30 by buckling.
  • the first cover body 306 is fixed to the heat sink 30 through buckles, the first buckle 310 may be a cantilever hook, and the second buckle may be a fixing hole.
  • the cantilever hook hooks the fixing hole, pulls the first cover body 306, and provides a force along the axial direction of the beauty instrument, so that the first head cover is fixed on the heat sink 30.
  • the heat sink 30 has a thermal coupling surface 302 thermally coupled with the cooling element 20 and two sides connected to both sides of the thermal coupling surface 302;
  • a part of the second buckle 320 is located on the side of the thermal coupling surface 302 of the heat sink 30, and is snap-connected with the first buckle 310, and the remaining part extends to both sides of the thermal coupling surface 302, and guides department;
  • the first cover 306 has two side wings corresponding to the two sides of the heat sink 30 , and the two side wings of the first cover 306 are assembled through the guide part.
  • one side wing of the first cover 306 has one of a guide groove 94 and a guide rib extending along the inside of the first cover 306 toward the heat sink 30 ;
  • One side of the heat sink 30 has the other one of the guide groove 94 and the guide rib, and the guide rib and the guide groove 94 are slidably fitted;
  • the other side of the first cover 306 and the other side of the heat sink 30 are both smooth.
  • the skin care component 4 also includes a cooling guide 40; the cooling guide 40 is located between the cold compress 10 and the cooling component 20, the contact surface 10a is arranged on the side of the cold compress 10 away from the cooling member 20, and the conduction surface 10b is arranged on the The cooling guide 40 is away from the side of the cold applicator 10, the size of the cooling guide 40 at least in the radial direction is larger than the size of the opening in the radial direction, and the edge of the opening of the first cover 306 presses the edge of the cooling guide 40 to dissipate heat. 30 pieces.
  • the cold compress 10 is located in the opening, and the cold compress 10 has different first radial dimensions and second radial dimensions in the thickness direction, and the opening has different third radial dimensions and fourth radial dimensions in the depth direction.
  • the part of the cold pack 10 with the first radial dimension is closer to the cold guide 40 than the part of the cold pack 10 with the second radial dimension
  • the opening part with the third radial dimension is closer to the opening part with the fourth radial dimension Close to the cooling guide 40
  • the first radial dimension is smaller than the third radial dimension
  • the second radial dimension is smaller than the fourth radial dimension
  • the second radial dimension is greater than the third radial dimension.
  • the cold compress 10 and the cold guide 40 are disposed at the opening, and the cold pack 10 and the cold guide 40 sandwich the first cover 306 , so that the cold pack 10 , the cold guide 40 and the first cover 306 form a whole. This whole can be replaced when needed.
  • Such an arrangement also enables the cold pack 10 , the cooling guide 40 and the first cover 306 to be assembled as a whole. Modular assembly can be conveniently carried out, the three components are assembled first, and then the first cover 306 is installed on the heat sink 30 , which is convenient for assembly.
  • the heat dissipation element 30 includes a second cover 307 and a heat dissipation main body 304, the second cover 307 is arranged between the heat dissipation main body 304 and the first cover 306, the second cover 307 is fixed to the heat dissipation main body 304, the first The cover 306 is fixed on the second cover 307 .
  • the skin care component 4 includes leads.
  • the lead wires are connected to the cooling element 20 ; wherein, the second cover 307 has a groove 201 , and the lead wires are accommodated in the groove 201 .
  • both the guide part and the second buckle 320 are disposed on the second cover 307, and the second cover 307 is further provided with a limiting hole 308, the limiting hole 308 is located at the opening and communicates with the opening, and the refrigeration
  • the part of the part 20 is set in the limiting hole 308, and the edge of the cooling part 20 is 0.5 to 1 mm away from the edge of the limiting hole 308; the groove 201 is arranged along the edge of the limiting hole 308, and the area of the limiting hole 308 is equal to the opening area
  • the ratio is between 0.8 and 1.2.
  • the present application provides a skin care assembly 4 , which includes a cold compress 10 , a cooling element 20 , a heat sink 30 and an electrode head 50 .
  • the cold compress 10 has a contact surface 10a and a conduction surface 10b, the contact surface 10a is used to contact the skin part; the refrigeration element 20 and the heat dissipation element 30, the cooling side of the refrigeration element 20 is thermally coupled with the conduction surface 10b of the cold compress 10, so that the cold compress
  • the heat sink 30 is thermally coupled with the heating side of the cooling element 20 to dissipate the heat from the cooling element 20; the first cover 306 relatively fixes the cold compress 10 to the heat sink 30; the second cover 307 , at least partly located between the first cover 306 and the heat sink 30, and limit the cooling element 20; at least two electrode heads 50, the electrode head 50 and the cold compress 10, the first cover 306 or the second cover 307 is relatively fixed.
  • the electrode head 50 discharges and heats the skin part, which will increase the temperature of the skin part. At this time, the skin part needs to be cooled, which can play a role in tightening the skin.
  • the cooling element 10 , the cooling element 20 and the cooling element 30 are all thermally coupled.
  • the heating side of the cooling element 20 is thermally coupled with the cooling element 30 .
  • the application utilizes the second cover 307 to limit the position of the cooling element 30 .
  • the cold compress 10 is relatively fixed to the heat sink 30 through the first cover 306 , which is convenient for assembly and relatively compact in structure.
  • the contact beauty instrument also includes a phototherapy lamp, placed between the cold compress and the heat sink or on the side of the cold compress;
  • the cold compress is a light-transmitting body, and the light emitted by the phototherapy lamp can exit through the cold compress to perform phototherapy on the skin.
  • the light emitted by the phototherapy lamp can be ultraviolet light, visible light, and infrared light.
  • Ultraviolet light is an invisible light with a wavelength of 400-180nm that is outside the violet light in the spectrum and has a wavelength of 400-180nm. It has high photon energy and has obvious phototherapeutic effects.
  • the wavelength of the light emitted by the phototherapy lamp is 480-1200nm, which is mainly effective for acne and acne;
  • the emitted light has a wavelength of 640-1200nm, which may mainly play a role in hair removal.
  • a carbon-containing layer 101 is provided on the surface of the heat sink 30 .
  • the carbon-containing layer 101 is bonded, coated or plated on the outer peripheral surface of the heat sink 30 .
  • Carbon materials have the characteristics of low density, high strength, high thermal conductivity, and chemical corrosion resistance.
  • the carbon-containing layer 101 on the surface of the heat sink 30 can help the heat sink 30 conduct heat faster and more efficiently to achieve the purpose of heat dissipation.
  • a carbon-containing layer 101 is provided between the cooling element 30 and the cooling element 20, as shown in FIG. 4 .
  • the heat sink 30 is thermally coupled to the heat generating side of the cooling component 20, and heat transfer can be realized through heat transfer, heat convection or heat radiation.
  • a carbon-containing layer 101 is added to the coupling gap between the cooling component 30 and the cooling component 20 to strengthen the heat transfer connection , can achieve the purpose of heat dissipation faster and more efficiently.
  • the heat sink 30 is at least partially embedded with a carbon-containing layer 101.
  • the heat conduction frame increases the specific surface area as much as possible to obtain better heat dissipation effect without affecting the overall weight of the contact beauty instrument of the present application.
  • the carbon-containing layer 101 includes graphene and/or carbon materials.
  • the graphene material is composed of a two-dimensional planar structure composed of a single layer of carbon atoms closely arranged in regular hexagons.
  • Carbon is a general term for allotropes of carbon and non-metallic solid materials mainly composed of carbon, including graphite, diamond and other carbon-containing layers 101 are all carbon, and one of the characteristics of carbon materials is electrical and thermal conductivity powerful.
  • the second cover 307 is fixed to the heat dissipation main body 304, the first cover 306 is fixed to the second cover 307, and the cooling element 20 is pressed against the heat dissipation element 30 in the first direction through the cooling element 10;
  • the two covers 307 are used to limit the cooling element 20 in the second direction, and the first direction is perpendicular to the second direction.
  • the first cover 306 is provided with an opening, the size of the opening in at least one radial direction is smaller than the size of the cold compress 10 in the radial direction, the opening of the first cover 306 is set corresponding to the cold compress 10, and through The edge of the opening presses the edge of the cold compress 10 to the heat sink 30 , thereby fixing the cold pack 10 and the cooling element 20 to the heat sink 30 .
  • a limiting hole 308 is also provided on the second cover 307.
  • the limiting hole 308 is located at the opening and communicates with the opening.
  • the edge of the bit hole 308 is 0.5-1mm;
  • the cooling element 30 is provided with a groove 201 corresponding to the area of the cooling element 20, the groove 201 corresponds to the limiting hole 308, a part of the cooling element 20 is embedded in the groove 201, and the other part is located in the limiting hole 308, and the area of the limiting hole 308
  • the ratio to the opening area is between 0.8 and 1.2.
  • the groove 201 of the heat sink 30 has a certain limit effect on the cooling element 20, but the limit of the second cover 307 is required to be stable enough.
  • the depth of the groove 201 cannot exceed the thickness of the heat-generating side, otherwise it is easy to cause heat backtracking On to the cooling side.
  • the present application also provides a beauty instrument, including a cold compress 10 , a cooling element 20 , a first electrode tip set 501 and a second electrode tip set 502 .
  • the cold compress 10 is used to contact the skin for cooling;
  • the cold compress 20 has a cooling side and a heating side, and the cooling side is thermally coupled to the cold compress 10;
  • the first electrode head group 501 is arranged opposite to the cold compress 10;
  • the second electrode head group 502 is arranged opposite to the cold compress 10, and is insulated from the first electrode head group 501; wherein, the heights of the first electrode head group 501 and the second electrode head group 502 are different .
  • the electrode head 50 protrudes from the cold pack 10 and the first electrode head group 501 and the second electrode head group 502 of different heights form a ladder.
  • the first electrode head set 501 may first contact the skin, and after a period of time the second electrode head set 502 and the cold compress 10 contact the skin, so as to achieve a specific cosmetic effect.
  • the first electrode tip set 501 is higher than the second electrode tip set 502 , and the first electrode tip set 501 first contacts the skin for current stimulation and heating. After a period of time, the temperature of the skin rises, just as the temperature of the cold compress 10 is relatively low. At this time, the cold compress 10 has a more comfortable cold feeling when it touches the skin. At the same time, the second electrode head group 502 contacts the skin for current stimulation and heating to form a subsequent temperature balance.
  • the beauty instrument also includes a phototherapy lamp, which is placed between the cold compress and the cooling element or arranged on the side of the cold compress;
  • the cold compress is a light-transmitting body, and the light emitted by the phototherapy lamp can exit through the cold compress to perform phototherapy on the skin.
  • the light emitted by the phototherapy lamp can be ultraviolet light, visible light, and infrared light.
  • Ultraviolet light is an invisible light with a wavelength of 400-180nm that is outside the violet light in the spectrum and has a wavelength of 400-180nm. It has high photon energy and has obvious phototherapeutic effects.
  • the above beauty instrument also includes a heat sink 30 and a carbon-containing layer 101
  • the heat sink 30 is thermally coupled to the heating side of the cooling element 20
  • the radiator has a thermal coupling surface 302
  • the cooling element 20 has a heating surface
  • the thermal coupling surface 302 It is thermally coupled with the heating surface of the cooling element 20 , and the ratio of the area of the thermal coupling surface 302 to the area of the heating surface is between 1 and 1.5.
  • the heat dissipation element 30 is used to dissipate the heat of the cooling element 20
  • the carbon-containing layer 101 is used to conduct heat faster.
  • a carbon-containing layer 101 is provided on the surface of the heat sink 30 .
  • the carbon-containing layer 101 is bonded, coated or plated on the outer peripheral surface of the heat sink 30 .
  • Carbon materials have the characteristics of low density, high strength, high thermal conductivity, and chemical corrosion resistance.
  • the carbon-containing layer 101 on the surface of the heat sink 30 can help the heat sink 30 conduct heat faster and more efficiently to achieve the purpose of heat dissipation.
  • a carbon-containing layer 101 is provided between the cooling element 30 and the cooling element 20, as shown in FIG. 4 .
  • the heat sink 30 is thermally coupled to the heat generating side of the cooling component 20, and heat transfer can be realized through heat transfer, heat convection or heat radiation.
  • a carbon-containing layer 101 is added to the coupling gap between the cooling component 30 and the cooling component 20 to strengthen the heat transfer connection , can achieve the purpose of heat dissipation faster and more efficiently.
  • the heat sink 30 is at least partially embedded with a carbon-containing layer 101.
  • the heat conduction frame increases the specific surface area as much as possible to obtain better heat dissipation effect without affecting the overall weight of the contact beauty instrument of the present application.
  • the carbon-containing layer 101 includes graphene and/or carbon materials.
  • the graphene material is composed of a two-dimensional planar structure composed of a single layer of carbon atoms closely arranged in regular hexagons.
  • Carbon is a general term for allotropes of carbon and non-metallic solid materials mainly composed of carbon, including graphite, diamond and other carbon-containing layers 101 are all carbon, and one of the characteristics of carbon materials is electrical and thermal conductivity powerful.
  • the present application provides a skin care assembly 4 , which includes a cold compress 10 , a cooling element 20 , a heat sink 30 , a first cover 306 and an electrode head.
  • the cold compress 10 has a contact surface 10a and a conductive surface 10b.
  • the contact surface 10a is used to contact the skin;
  • the cooling side of the cold compress 20 is thermally coupled with the conductive surface 10b of the cold compress 10 to cool the cold compress 10.
  • the heating side of the element 20 is thermally coupled to dissipate the heat from the cooling element 20;
  • the first cover 306 relatively fixes the cold compress 10 to the heat sink 30; at least two electrode heads, the electrode heads are opposite to the first cover 306 fixed.
  • the cold compress 10 contacts the skin site, and is refrigerated and cooled by the refrigerating element 20 .
  • the cooling element 30 dissipates heat to the cooling element 20 .
  • the first cover 306 relatively fixes the cold compress 10 to the heat sink 30 , so that the heat sink 30 can better cooperate with the cooling element 20 to cool down the cold compress 10 .
  • the electrode head performs current stimulation and heating on the skin site, and the electrode head is relatively fixed to the first cover 306 so that the electrode head is structurally close to the skin site.
  • the electrode head cooperates with the cold compress 10 to achieve cosmetic effects such as tightening the skin and shrinking pores.
  • the contact beauty instrument also includes a phototherapy lamp, placed between the cold compress and the heat sink or on the side of the cold compress;
  • the cold compress is a light-transmitting body, and the light emitted by the phototherapy lamp can exit through the cold compress to perform phototherapy on the skin.
  • a carbon-containing layer 101 is provided on the surface of the heat sink 30 .
  • the carbon-containing layer 101 is bonded, coated or plated on the outer peripheral surface of the heat sink 30 .
  • Carbon materials have the characteristics of low density, high strength, high thermal conductivity, and chemical corrosion resistance.
  • the carbon-containing layer 101 on the surface of the heat sink 30 can help the heat sink 30 conduct heat faster and more efficiently to achieve the purpose of heat dissipation.
  • a carbon-containing layer 101 is provided between the cooling element 30 and the cooling element 20, as shown in FIG. 4 .
  • the heat sink 30 is thermally coupled to the heat generating side of the cooling component 20, and heat transfer can be realized through heat transfer, heat convection or heat radiation.
  • a carbon-containing layer 101 is added to the coupling gap between the cooling component 30 and the cooling component 20 to strengthen the heat transfer connection , can achieve the purpose of heat dissipation faster and more efficiently.
  • the heat sink 30 is at least partially embedded with a carbon-containing layer 101.
  • the heat conduction frame increases the specific surface area as much as possible to obtain better heat dissipation effect without affecting the overall weight of the contact beauty instrument of the present application.
  • the carbon-containing layer 101 includes graphene and/or carbon materials.
  • the graphene material is composed of a two-dimensional planar structure composed of a single layer of carbon atoms closely arranged in regular hexagons.
  • Carbon is a general term for allotropes of carbon and non-metallic solid materials mainly composed of carbon, including graphite, diamond and other carbon-containing layers 101 are all carbon, and one of the characteristics of carbon materials is electrical and thermal conductivity powerful.
  • the first electrode head may be fixedly installed on the first cover 306 .
  • the skin care component 4 can be applied in a beauty instrument.
  • the first cover 306 relatively fixes the cold compress 10 to the heat sink 30 through the electrode heads.
  • the cold compress 10 is relatively fixed to the heat sink 30 through the electrode head. It may be the position where the electrode head 50 constrains the cold compress 10 around the cold compress 10 .
  • the cold compress 10 can be made of sapphire, patoite, crystal and other materials.
  • the cold compress 10 of sapphire material has good thermal conductivity and is skin-friendly. But it is not easy to process, and the processing cost is high.
  • the entire piece of sapphire can be relatively fixed on the heat sink 30 , which saves processing cost and is easy to assemble.
  • the electrode head 50 since the electrode head 50 is also in contact with the skin, the temperature will also increase to a certain extent. However, the electrode head 50 is in contact with the cold compress 10 , therefore, the cold compress 10 can also cool down the electrode head 50 , so that the temperature of the beauty instrument contacting the skin is more uniform.
  • the side of the electrode tip facing the cold compress 10 has a first stepped surface
  • the side of the cold compress 10 has a second stepped surface
  • the second stepped surface is located between the first stepped surface and the heat sink 30, and the first stepped surface on the second step face.
  • the electrode head can press the cold compress 10 to the heat sink 30 .
  • the cold compress 10 , the cooling element 20 and the cooling element 30 are pressed together under the action of pressure. It makes the contact more fully and the heat conduction effect is better.
  • the cold compress 10 and the cooling element 20 may be in direct contact, or may be in indirect contact through a heat-conducting medium such as heat-conducting silicone grease.
  • lamp beads may be arranged around the cold compress 10 .
  • Lamp beads can be used for phototherapy on the skin. Such as phototherapy for hair removal etc.
  • the skin care component 4 may also include a second cover 307, a first mounting plate, a second mounting plate, a casing, a button, a charging port, a heat conduction shell 70, and the like.
  • the present application also provides a beauty instrument, including a heating element, a cold compress element 10 , a cooling element 20 and a cooling element 30 .
  • the heating element heats the skin in an electric, magnetic or electromagnetic manner;
  • the cold compress 10 has a cooling surface, a conduction surface 10b, and the cooling surface is used to cool at least part of the skin or its adjacent tissue;
  • the conduction surface 10b of the cooling element is thermally coupled to obtain the heat of the cold compress 10, and the heat dissipation element 30 is thermally coupled to the heating side of the cooling element 20 to dissipate the heat; wherein, the cold compress 10 cools the surface of the skin or its adjacent tissue,
  • the depth of action of electricity, magnetism or electromagnetics on the skin is larger than that of the surface layer, and at the same time, the area of the cooling surface is larger than the area of action of electricity, magnetism or electromagnetics on the skin;
  • the working power of the heating element meets the following conditions: the skin below the surface The tissue is heated to between
  • the heating element heats the skin
  • the cold compress 10 cools the skin
  • the cooling element 20 cools the cold compress 10
  • the cooling element 30 dissipates heat from the cooling element 20 .
  • Cold pack 10 cools the skin and the surface layer of adjacent tissue.
  • the contact beauty instrument also includes a phototherapy lamp, placed between the cold compress and the heat sink or on the side of the cold compress;
  • the cold compress is a light-transmitting body, and the light emitted by the phototherapy lamp can exit through the cold compress to perform phototherapy on the skin.
  • the above beauty instrument also includes a heat sink 30 and a carbon-containing layer 101
  • the heat sink 30 is thermally coupled to the heating side of the cooling element 20
  • the radiator has a thermal coupling surface 302
  • the cooling element 20 has a heating surface
  • the thermal coupling surface 302 It is thermally coupled with the heating surface of the cooling element 20 , and the ratio of the area of the thermal coupling surface 302 to the area of the heating surface is between 1 and 1.5.
  • the heat dissipation element 30 is used to dissipate the heat of the cooling element 20
  • the carbon-containing layer 101 is used to conduct heat faster.
  • a carbon-containing layer 101 is provided on the surface of the heat sink 30 .
  • the carbon-containing layer 101 is bonded, coated or plated on the outer peripheral surface of the heat sink 30 .
  • Carbon materials have the characteristics of low density, high strength, high thermal conductivity, and chemical corrosion resistance.
  • the carbon-containing layer 101 on the surface of the heat sink 30 can help the heat sink 30 conduct heat faster and more efficiently to achieve the purpose of heat dissipation.
  • a carbon-containing layer 101 is provided between the cooling element 30 and the cooling element 20, as shown in FIG. 4 .
  • the heat sink 30 is thermally coupled to the heat generating side of the cooling component 20, and heat transfer can be realized through heat transfer, heat convection or heat radiation.
  • a carbon-containing layer 101 is added to the coupling gap between the cooling component 30 and the cooling component 20 to strengthen the heat transfer connection , can achieve the purpose of heat dissipation faster and more efficiently.
  • the heat sink 30 is at least partially embedded with a carbon-containing layer 101.
  • the heat conduction frame increases the specific surface area as much as possible to obtain better heat dissipation effect without affecting the overall weight of the contact beauty instrument of the present application.
  • the carbon-containing layer 101 includes graphene and/or carbon materials.
  • the graphene material is composed of a two-dimensional planar structure composed of a single layer of carbon atoms closely arranged in regular hexagons.
  • Carbon is a general term for allotropes of carbon and non-metallic solid materials mainly composed of carbon, including graphite, diamond and other carbon-containing layers 101 are all carbon, and one of the characteristics of carbon materials is electrical and thermal conductivity powerful.
  • the heating element heats the skin, which can be contact or non-contact.
  • the cold compress 10 does not necessarily have to touch the skin to cool it, as long as it can lower the skin temperature.
  • Electricity, magnetism or electromagnetism have a deeper range of action on the skin than the surface layer, and can achieve different temperatures and stimulation effects at different depths and layers of the skin.
  • the skin tissue below the surface is heated to between 45 degrees and 80 degrees, and then the temperature of the epidermis rises as the temperature of the deep layer rises. Since there can be multiple groups of electrode heads. At the same time, only part of the electrode heads can work. As long as the area of the cooling surface is larger than the area of action of electricity, magnetism or electromagnetics on the skin at the same time.
  • the cooling surface can fully and evenly cool the skin. Prevent discomfort such as tingling due to excessive temperature or uneven temperature.
  • the heating element and the cold compress element 10 work together to make the temperature of the skin tissue below the surface and the epidermis reach a balance, thereby achieving a better cosmetic effect.
  • the working power of the heating element meets the following conditions: heating the skin tissue below the surface to between 45°C and 80°C; At this time, a temperature balance with good cosmetic effect can be achieved.
  • the cooling surface of the cold compress 10 is a contact surface 10a that contacts at least part of the skin or its adjacent tissue
  • the heating element is an electrode head group
  • the electrode head group has an end surface that contacts the skin, and the total area of the end surface is larger than that of the contact surface 10a. The area is small.
  • the working power of the heating element meets the following conditions: heating the skin tissue below the surface to between 50°C and 65°C;
  • the working power of the cold compress 10 satisfies the following conditions: the surface temperature is reduced to between 30°C and 45°C.
  • the beauty instrument and contact beauty instrument mentioned in this application do not need the cooling element 10, but only the cooling element 20, at this time, the cooling side of the cooling element 20 can directly contact the skin.
  • the cooling side of the cooling element 20 may be covered with some dielectric layer, such as an insulating layer.
  • the phototherapy lamp 13 is arranged between the cold compress 10 and the heat sink 30.
  • the cold pack 20 can be located between the cold compress 10 and the heat sink 30, and at the After phototherapy lamp 13.

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Abstract

一种美容仪、接触式美容仪(1)和皮肤保养组件(4),接触式美容仪(1)包括冷敷件(10)、制冷件(20)、散热件(30)和电极头(50)。冷敷件(10)具有接触面(10a)、传导面(10b),接触面(10a)用于接触皮肤部位;制冷件(20)的制冷侧与冷敷件(10)的传导面热耦合,以对冷敷件(10)降温,散热件(30)与制冷件(20)的发热侧热耦合,以对制冷件(20)进行散热;至少两个电极头(50)与冷敷件(10)相对固定。电极头(50)与冷敷件(10)固定,减少了多余的结构,设计更加简洁。同时没有了多余结构的干扰,皮肤部位的触感也更加舒适。由电极头(50)提供射频、微电流等美容功能;通过冷敷件(10)、制冷件(20)和散热件(30)的配合提供适宜的温度环境,进一步提升了美容效果。

Description

[根据细则37.2由ISA制定的发明名称] 美容仪、接触式美容仪和皮肤保养组件 【技术领域】
本申请涉及美容仪器技术领域,特别是涉及一种美容仪、接触式美容仪和皮肤保养组件。
【背景技术】
随着科技进步和时代发展,人们越来越注重对皮肤的保养,并且在注重保养皮肤的效果的同时,对于保养皮肤时的体验也越来越重视。其中有一种是利用射频或微电流的接触式美容仪。
现有接触式美容仪在使用过程中,一般只能持续对皮肤加热,而当表皮温度升高至一定程度时,会产生刺痛的感觉,给使用者带来不适感。同时在对皮肤的刺激过程中,表皮和真皮一直处于高温,皮肤无法得到扩张和收缩循环,导致保养或美容效果一般。
【发明内容】
本发明要解决的技术问题是如何在实现皮肤美容的同时减少不适感。
为解决上述问题,本申请提供一种接触式美容仪,包括冷敷件、制冷件、散热件和电极头。冷敷件具有接触面、传导面,接触面用于接触皮肤部位;制冷件的制冷侧与冷敷件的传导面热耦合,以对冷敷件降温,散热件与制冷件的发热侧热耦合,以对制冷件进行散热;至少两个电极头,电极头与冷敷件相对固定。
为解决上述问题,本申请提供一种皮肤保养组件,皮肤保养组件包括冷敷件,制冷件,导冷件以及至少两个电极头。冷敷件具有接触面,接触面用于接触皮肤部位并进行降温;制冷件具有制冷面,制冷面用于制冷;导冷件位于冷敷件和制冷件之间,接触面设置于冷敷件背离制冷件一侧,制冷面设置于制冷件靠近冷敷件的一侧;电极头与冷敷件相对固定。
为解决上述问题,本申请还提供一种皮肤保养组件,包括冷敷件、电极头和制冷件。冷敷件具有接触面和传导面,接触面用于接触皮肤部位并进行降温;至少两个电极头,电极头用于对皮肤部位进行放电加热,电极头与冷敷件相对固定;制冷件具有制冷面,制冷面用于制冷,并与传导面热耦合;冷敷件与制冷件层叠设置。
为解决上述问题,本申请提供一种美容仪,美容仪包括冷敷晶体、制冷件、导冷层、夹紧机构以及电极头。冷敷晶体用于与皮肤接触以进行冷却;制冷件具有制冷侧和散热侧;导冷层位于所示冷敷晶体和制冷件的制冷侧之间;夹紧机构用于夹紧冷敷晶体、导冷层和制冷件的组合体;至少两个电极头,所述电极头与所述冷敷晶体或所述夹紧机构相对固定。
为解决上述问题,本申请提供一种皮肤保养组件,包括电极头、降温件和固定件。至少两个电极头,用于对皮肤部位进行放电加热;降温件包括接触面和传导面,接触面用于接触皮肤部位并进行降温,传导面用于传导热量,降温件设置有贯穿接触面的贯穿孔;固定件至少部分位于降温件除接触面外的一侧;其中,电极头一端位于降温件的接触面一侧,另一端与固定件的剩余部分通过贯穿孔连接,进而将电极头与降温件相对固定。
为解决上述问题,本申请提供一种接触式美容仪,包括冷敷件,制冷件,散热件和电极头。冷敷件具有接触面、传导面,接触面用于接触皮肤部位;制冷件的制冷侧与冷敷件的传导面热耦合,以对冷敷件降温,散热件与制冷件的发热侧热耦合,以对制冷件进行散热;至少两个电极头,电极头包括安装部与滚动部,滚动部滚动安装于安装部,安装部与冷敷件相对固定。
为解决上述问题,本申请提供一种美容仪,美容仪包括冷敷件,制冷件、第一壳体以及电极头。冷敷件用于与皮肤接触以进行冷却;制冷件具有制冷侧和发热侧,制冷侧与冷敷件热耦合;第一壳体具有第一开口;至少两个电极头,电极头与冷敷件或第一壳体相对固定。其中,所述制冷件位于所述第一壳体内侧,所述冷敷件与所述皮肤接触的一侧暴露于所述壳体的所述第一开口位置,所述冷敷件的另一侧用于封堵所述壳体的所述第一开口。
为解决上述问题,本申请还提供一种美容仪,包括热源、散热件、热管以及电极头。散热件一端与热源热耦合,另一端向美容仪尾部延伸;热管一端与散热件邻近热源的一端或热源热耦合,另一端朝远离热源的方向 延伸,且与散热件热耦合;至少两个电极头,电极头与散热件相对固定。
为解决上述问题,本申请还提供一种美容仪,包括热源、散热件以及电极头。散热件一端与热源热耦合,另一端向美容仪尾部延伸;气流驱动器,相对散热件设置,用于将散热件或热源附近的气流驱动,使气流流动;至少两个电极头,所述电极头与所述散热件相对固定。
为解决上述问题,本申请还提供一种美容仪的设备主体,包括操作头和散热件。操作头,包括至少两个电极头和制冷件,电极头与散热件相对固定,制冷件具有制冷面用于制冷;散热件,具有热耦合面,用以与操作头的发热面热耦合,以将来自操作头的热量散发出去,操作头具有接触面和发热面,接触面用于接触皮肤部位并对皮肤部位进行降温;其中,散热件自设备主体的头部延伸至设备主体的尾部。
为解决上述问题,本申请还提供一种接触式美容仪,接触式美容仪包括操作头、安装支架和电路板。操作头包括至少两个电极头和制冷件,电极头与电路板电性耦接,制冷件具有制冷面用于制冷,操作头的接触面用于接触皮肤部位并对所述皮肤部位进行降温;安装支架具有第一安装位和第二安装位,操作头通过第一安装位固定于安装支架;电路板通过第二安装位固定于安装支架;其中,操作头位于美容仪的头部,安装支架自美容仪的头部延伸至美容仪的尾部。
为解决上述问题,本申请提供一种美容仪。美容仪包括安装支架、操作头、支持元件和壳体。操作头,包括至少两个电极头和制冷件,电极头与安装支架或壳体相对固定,制冷件具有制冷面用于制冷;支持元件与安装支架相对固定,用于支持操作头工作;壳体套设于安装支架,并固定于安装支架。
为解决上述问题,本申请提供一种皮肤保养组件,包括冷敷件、制冷件、散热件、电极头和第一盖体。冷敷件具有接触面、传导面,接触面用于接触皮肤部位;制冷件的制冷侧与冷敷件的传导面热耦合,以对冷敷件降温,散热件与制冷件的发热侧热耦合,以将来自制冷件的热量散发出去;至少两个电极头,用于对皮肤部位进行放电加热,电极头与冷敷件相对固定;第一盖体将冷敷件和制冷件固定于散热件。
为解决上述问题,本申请还提供一种美容仪,包括冷敷件、制冷件、第一电极头组和第二电极头组。冷敷件用于与皮肤接触以进行冷却;制冷件具有制冷侧和发热侧,所述制冷侧与所述冷敷件热耦合;第一电极头组与所述冷敷件相对设置;第二电极头组与所述冷敷件相对设置,且与所述第一电极头组相互绝缘;其中,所述第一电极头组与所述第二电极头组的高度不同。
为解决上述问题,本申请还提供一种美容仪,包括加热件、冷敷件、制冷件和电极头。所述加热件以电、磁或电磁方式对皮肤进行加热;冷敷件具有冷却面、传导面,所述冷却面用于对至少部分所述皮肤或其邻近组织进行冷却;所述制冷件的制冷侧与所述冷敷件的传导面热耦合,以获取所述冷敷件的热量;至少两个电极头,所述电极头与所述冷敷件相对固定;其中,所述冷敷件对所述皮肤或其邻近组织的表层进行冷却,所述电、磁或电磁对所述皮肤的作用深度范围比所述表层大,且同一时刻,所述冷却面的面积比所述电、磁或电磁对所述皮肤的作用面积大;所述加热件的工作功率满足以下条件:将所述表层以下的所述皮肤组织加热到45度至80度之间;所述制冷件的工作功率满足以下条件:将所述表层温度降至15度至45度之间。
本申请所提供的接触式美容仪具有良好的使用舒适度和优秀的美容效果。电极头与冷敷件相对固定,能够减少多余的结构,设计更加简洁。同时没有多余结构的干扰,皮肤部位的触感也更加舒适。由电极头提供射频、微电流等美容功能;通过冷敷件、制冷件和散热件提供适宜的温度环境,进一步提升美容效果。
【附图说明】
为了更清楚地说明本申请实施例中的技术方案,下面将对实施例描述中所需要使用的附图作简单的介绍,显而易见地,下面描述中的附图仅仅是本申请的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下,还可以根据这些附图获得其他的附图。其中:
图1是本申请一实施例的接触式美容仪的立体分解示意图;
图2是图1中操作头的立体分解示意图;
图3是图1中散热件表面设有含碳层的结构示意图;
图4是图1中散热件与制冷件之间设有含碳层的结构示意图;
图5是图1中散热件部分嵌设有含碳层的结构示意图;
图6是本申请一实施例的皮肤保养组件一方向上的结构示意图;
图7是本申请一实施例的美容仪的截面图;
图8是皮肤保养组件的分解示意图;
图9是皮肤保养组件的截面图;
图10是本申请一实施例的皮肤保养组件的分解示意图;
图11是本申请一实施例的接触式美容仪的分解示意图;
图12是美容仪的截面图;
图13是美容仪头部的放大图;
图14是本申请一实施例的美容仪的截面图;
图15是本申请一实施例的美容仪的截面图;
图16是本申请一实施例的美容仪的分解示意图;
图17是散热件的结构示意图;
图18是本申请一实施例的接触式美容仪的截面图;
图19是安装支架的结构示意图;
图20是美容仪安装支架的截面图;
图21是本申请一实施例的美容仪的结构示意图;
图22是本申请一实施例的美容仪中散热件的结构示意图;
图23是本申请一实施例的皮肤保养组件的部分截面图;
图24是皮肤保养组件在一方向上的分解图;
图25是本申请一实施例的皮肤保养组件的分解示意图;
图26是皮肤保养组件的部分截面图;
图27是冷敷件和第一电极头组、第二电极头组的结构示意图;
图28是本申请一实施例的美容仪在一方向上的分解示意图;
图29是本申请一实施例的皮肤保养组件在一方向上的分解示意图;
图30是本申请一实施例的皮肤保养组件在另一方向上的分解示意图。
【具体实施方式】
为使本申请的上述目的、特征和优点能够更为明显易懂,下面结合附图,对本申请的具体实施方式做详细的说明。可以理解的是,此处所描述的具体实施例仅用于解释本申请,而非对本申请的限定。另外还需要说明的是,为了便于描述,附图中仅示出了与本申请相关的部分而非全部结构。基于本申请中的实施例,本领域普通技术人员在没有做出创造性劳动前提下所获得的所有其它实施例,都属于本申请保护的范围。
本申请中的术语“第一”、“第二”等是用于区别不同对象,而不是用于描述特定顺序。此外,术语“包括”和“设置有”以及它们任何变形,意图在于覆盖不排他的包含。例如包含了一系列步骤或单元的过程、方法、系统、产品或设备没有限定于已列出的步骤或单元,而是可选地还包括没有列出的步骤或单元,或可选地还包括对于这些过程、方法、产品或设备固有的其他步骤或单元。
在本文中提及“实施例”意味着,结合实施例描述的特定特征、结构或特性可以包含在本申请的至少一个实施例中。在说明书中的各个位置出现该短语并不一定均是指相同的实施例,也不是与其它实施例互斥的独立的或备选的实施例。本领域技术人员显式地和隐式地理解的是,本文所描述的实施例可以与其它实施例相结合。
在这里,先对本申请以下实施例所要提到的美容仪所涉及到的电路连接简单说明一下。
本申请所公开的美容仪设置有控制电路,比如说,该控制电路可以包括微处理器、电源模块、继电器、开关控制电路、电机驱动电路等等,该控制电路可以控制美容仪发光或者熄灭,但控制电路中具体包含哪些模块以及各个模块之间的电路连接方式,本申请在这里不做限定。
同理,本申请所提及的接触式美容仪也可以设置类似的控制电路,控制电路中具体包含哪些模块以及各个模块之间的电路连接方式,本申请在这里同样不做限定。
本申请公开了一种接触式美容仪,如图1和图2所示,主要包括冷敷件10、制冷件20、散热件30、电极头50。冷敷件10,具有接触面10a、传导面10b,接触面10a用于接触皮肤部位;制冷件20的制冷侧与冷敷件10的传导面10b热耦合,以对冷敷件10降温,散热件30与制冷件20的发热侧热耦合,以为制冷件20散热;至少两个电极头50,电极头50间隔排列安装于冷敷件10上。冷敷件10、制冷件20、散热件30、所有电极头50通过支架60组装在设备主体上。上述接触式美容仪的长度为50mm~500mm之间,重量在100克~2500克之间。
可选地,散热件30表面设有含碳层101,如图3所示,含碳层101贴合、涂覆或镀设于散热件30外周面。碳材料具有低密度、高强度、高导热系数、耐化学腐蚀等特点,在散热件30表面设有含碳层101能够有助于散热件30更快更高效地传导热量,达到散热的目的。
可选地,散热件30与制冷件20之间设有含碳层101,如图4所示。散热件30与制冷件20的发热侧热耦合,可以通过热传递、热对流或热辐射方式来实现传热,在散热件30与制冷件20的耦合间隙加入含碳层101,加强传热连接,能更快更高效地达到散热目的。
可选地,散热件30至少部分嵌设有含碳层101,如图5所示,含碳层101以导热框架的结构形式嵌设于散热件30之内,且导热框架的一端邻近散热件30。导热框架尽可能增大比表面积,在不影响到本申请接触式美容仪的整体重量同时获得更优的散热效果。
可选地,含碳层101包括石墨烯和/或碳素材料。石墨烯材料由单层碳原子以正六边形紧密排列构成的二维平面结构组成,呈蜂窝状,单层悬浮石墨烯的室温热导率可达到3000至5300W/(m□K)。碳素是以碳元素的同素异形体、以碳元素为主的非金属固体材料的统称,包括石墨、金刚石等含碳层101都是碳素,碳素材料的特性之一是导电导热性强。
冷敷件10的材料为晶体和/或金属,冷敷件10设置有通孔,通孔贯穿接触面10a和传导面10b,电极头50穿过通孔以安装于冷敷件10。至少一部分电极头50是正极电极头50,至少另外一部分电极头50是负极电极头50,正极电极头50和负极电极头50相邻。
可选地,该接触式美容仪还包括光疗灯,置于冷敷件和散热件之间或设置于冷敷件侧边;
其中,冷敷件为透光体,光疗灯发出的光线能够通过冷敷件出射,对皮肤进行光疗。
其中,光疗灯发出的光线可以是紫外线、可见光、红外线。紫外线是光谱中位于紫光之外、波长小于紫光的不可见光线,其波长为400~180nm,光量子能量高,有明显的光疗效应。
一般来说,光疗灯发出的光线的波长不同,对皮肤也会产生不同的影响。比如说,光疗灯发出的光线的波长为480-1200nm,则主要对祛痘、痤疮有疗效;光疗灯发出的光线的波长为530-1200nm,则主要起到祛斑和嫩肤的作用;光疗灯发出的光线的波长为640-1200nm,则可能主要起到脱毛的作用。
另外,由于多种波长同时起作用,掌握得好,可以实现多重疗效。示例性地,黑色素的光吸收谱是随着波长增长而吸收系数单调减少,而小于480的短波长可能有晒黑作用,为了避开波长小于480nm的副作用,并考虑到黑色素只分布在表皮内,要求穿透浅。所以用540nm波长的光线在治疗治血管性病变的同时,也可以很有效地同时去黑。如果没有血管性病变,则可以选择波长为590nm的光线,这时既能去皱嫩肤,又能去黑素,达到“嫩肤美白”的效果。
电流经过皮肤会引起肌肉收缩运动,达到美容效果。电极头50在放电过程中,使皮肤的表皮温度和真皮温度升高。皮肤温度升高包括皮肤细胞产生的热量和电能转化之后的热量。通过设置冷敷件10,降低电极头50对表皮刺激产生的热量,对皮肤表皮降温,起到冷敷镇定的作用,避免温度过高灼伤皮肤,减少使用过程中的不适感,提高操作头100的使用舒适度。制冷件20对冷敷件10制冷,使冷敷件10件10能持续对皮肤表皮降温。冷热交替的过程,还可以使皮肤得到扩张和收缩,增强皮肤的呼吸,在保护皮肤不受损的同时能更好的刺激真皮层胶原蛋白收紧和再生,紧致皮肤,提高美容效果。
电极头50在面部皮肤产生的热量,传导到冷敷件10上,从而通过冷敷件10对表皮进行降温。冷敷件10 由制冷件20制冷,吸收通过冷敷件10传导来的热量。制冷件20制冷时,在发热侧会相应产生热量。制冷件20制冷产生的热量则传导到散热件30,通过散热件30排出接触式美容仪1。散热件30或在表面设有含碳层101,或在与制冷件20之间设有含碳层101,或在内部以导热框架的结构形式嵌设含碳层101,加强传热能够更快更高效地散热。整个热传递过程,可以在短时间内减少热量的回流,能够延长接触式美容仪保持温度平衡状态的时间。
本申请公开了一种皮肤保养组件4,请参阅图6,皮肤保养组件4包括冷敷件10,制冷件20,导冷件40以及至少两个电极头50。冷敷件10具有接触面10a,接触面10a用于接触皮肤部位并进行降温;制冷件20具有制冷面20a,制冷面20a用于制冷;导冷件40位于冷敷件10和制冷件20之间,接触面10a设置于冷敷件10背离制冷件20一侧,制冷面20a设置于制冷件20靠近冷敷件10的一侧;至少两个电极头50,电极头50与冷敷件10相对固定。皮肤保养组件4可应用于接触式美容仪。
冷敷件10,制冷件20和导冷件40层叠设置形成三明治结构。这样设置方便三者的安装。皮肤部位的热量通过冷敷件10和导冷件40传导到制冷件20。由制冷件20进行降温。通过层叠设置使得冷敷件10与制冷件20相对位置较近,制冷件20能够快速地对冷敷件10进行降温。例如,皮肤保养组件4正常工作但不接触皮肤,冷敷件10的温度由常温降到10摄氏度以下只需要半分钟。减少用户使用时的等待时间,提高用户体验。
可选地,上述皮肤保养组件4还包括散热件30和含碳层101,散热件30与制冷件20的发热侧热耦合。散热件30用于将制冷件20的热量散发出去。
可选地,该皮肤保养组件还包括光疗灯,置于冷敷件和散热件之间或设置于冷敷件侧边;
其中,冷敷件为透光体,光疗灯发出的光线能够通过冷敷件出射,对皮肤进行光疗。
其中,光疗灯发出的光线可以是紫外线、可见光、红外线。紫外线是光谱中位于紫光之外、波长小于紫光的不可见光线,其波长为400~180nm,光量子能量高,有明显的光疗效应。
可选地,散热件30表面设有含碳层101,如图3所示,含碳层101贴合、涂覆或镀设于散热件30外周面。碳材料具有低密度、高强度、高导热系数、耐化学腐蚀等特点,在散热件30表面设有含碳层101能够有助于散热件30更快更高效地传导热量,达到散热的目的。
可选地,散热件30与制冷件20之间设有含碳层101,如图4所示。散热件30与制冷件20的发热侧热耦合,可以通过热传递、热对流或热辐射方式来实现传热,在散热件30与制冷件20的耦合间隙加入含碳层101,加强传热连接,能更快更高效地达到散热目的。
可选地,散热件30至少部分嵌设有含碳层101,如图5所示,含碳层101以导热框架的结构形式嵌设于散热件30之内,且导热框架的一端邻近散热件30。导热框架尽可能增大比表面积,在不影响到本申请接触式美容仪的整体重量同时获得更优的散热效果。
可选地,含碳层101包括石墨烯和/或碳素材料。石墨烯材料由单层碳原子以正六边形紧密排列构成的二维平面结构组成,呈蜂窝状,单层悬浮石墨烯的室温热导率可达到3000至5300W/(m□K)。碳素是以碳元素的同素异形体、以碳元素为主的非金属固体材料的统称,包括石墨、金刚石等含碳层101都是碳素,碳素材料的特性之一是导电导热性强。
可选地,导冷件40靠近冷敷件10一面的面积大于等于冷敷件10的接触面10a的面积,制冷件20的制冷面20a的面积大于等于冷敷件10的接触面10a的面积。导冷件40包括氮化铝陶瓷和/或冷敷件10包括蓝宝石。导冷件40的厚度与冷敷件10的厚度比例为1~5,导冷件40的厚度与导冷件40靠近冷敷件10或制冷件20一面的面积的第一数值比例为1:150~1:220,其中导冷件40的面积的单位是平方毫米,导冷件40的厚度的单位是毫米。
本申请还公开了一种美容仪,如图7所示,主要包括冷敷晶体、制冷件20、导冷层、夹紧机构以及电极头50。冷敷晶体用于与皮肤接触以进行冷却;制冷件20具有制冷侧和散热侧;导冷层位于所示冷敷晶体和制冷件20的制冷侧之间;夹紧机构用于夹紧冷敷晶体、导冷层和制冷件20的组合体;至少两个电极头50,所述电极头50与所述冷敷晶体或所述夹紧机构相对固定。
美容仪工作时,冷敷晶体对皮肤部位进行降温。夹紧机构将冷敷晶体,制冷件20和导冷层固定在一起。使 得冷敷晶体,制冷件20和导冷层在压力作用下彼此之间的接触更加紧密和充分,从而提高传热效果。夹紧机构所夹紧的导冷层可以有多个,用户可以根据需要自行设置,从而将美容仪调节出更加舒适的温度环境,同时能够起到美容效果。
可选地,上述美容仪还包括散热件30和含碳层101,散热件30与制冷件20的发热侧热耦合,散热件30用于将制冷件20的热量散发出去,含碳层101用于更快地传导热量。
可选地,该美容仪还包括光疗灯,置于冷敷晶体和散热件之间或设置于冷敷件侧边;
其中,冷敷晶体为透光体,光疗灯发出的光线能够通过冷敷晶体出射,对皮肤进行光疗。
其中,光疗灯发出的光线可以是紫外线、可见光、红外线。紫外线是光谱中位于紫光之外、波长小于紫光的不可见光线,其波长为400~180nm,光量子能量高,有明显的光疗效应。
可选地,散热件30表面设有含碳层101,如图3所示,含碳层101贴合、涂覆或镀设于散热件30外周面。碳材料具有低密度、高强度、高导热系数、耐化学腐蚀等特点,在散热件30表面设有含碳层101能够有助于散热件30更快更高效地传导热量,达到散热的目的。
可选地,散热件30与制冷件20之间设有含碳层101,如图4所示。散热件30与制冷件20的发热侧热耦合,可以通过热传递、热对流或热辐射方式来实现传热,在散热件30与制冷件20的耦合间隙加入含碳层101,加强传热连接,能更快更高效地达到散热目的。
可选地,散热件30至少部分嵌设有含碳层101,如图5所示,含碳层101以导热框架的结构形式嵌设于散热件30之内,且导热框架的一端邻近散热件30。导热框架尽可能增大比表面积,在不影响到本申请接触式美容仪的整体重量同时获得更优的散热效果。
可选地,含碳层101包括石墨烯和/或碳素材料。石墨烯材料由单层碳原子以正六边形紧密排列构成的二维平面结构组成,呈蜂窝状,单层悬浮石墨烯的室温热导率可达到3000至5300W/(m□K)。碳素是以碳元素的同素异形体、以碳元素为主的非金属固体材料的统称,包括石墨、金刚石等含碳层101都是碳素,碳素材料的特性之一是导电导热性强。可选地,夹紧机构具有调节件和夹持件,夹持件用于将冷敷晶体、导冷层和制冷件20夹紧,调节件用于调节夹持件的夹持程度,并至少能够松开夹持件,以增加或减少导冷层的数量。
可选地,调节件可以是弹簧,夹持件可以是支撑在导冷件40相对两边上的一对支撑杆。
可选地,美容仪还包括壳体70,壳体70具有开口,冷敷件10位于开口内,且冷敷件10在厚度方向具有不同的第一径向尺寸和第二径向尺寸,开口在深度方向具有不同的第三径向尺寸和第四径向尺寸,具有第一径向尺寸的冷敷件10部分较具有第二径向尺寸的冷敷件10部分靠近导冷件40,具有第三径向尺寸的开口部分较具有第四径向尺寸的开口部分靠近制冷件20,第一径向尺寸大于第二径向尺寸,第三径向尺寸小于第四径向尺寸,二径向尺寸小于第三径向尺寸。壳体70抵接冷敷件10,并将冷敷件10压紧于制冷件20。
如图8和图9所示,本申请还提供一种皮肤保养组件4,包括冷敷件10、电极头50和制冷件20。冷敷件10具有接触面10a和传导面10b,接触面10a用于接触皮肤部位并进行降温;至少两个电极头50,电极头50用于对皮肤部位进行放电加热,电极头50与冷敷件10相对固定;制冷件20具有制冷面20a,制冷面20a用于制冷,并与传导面10b热耦合;冷敷件10与制冷件20层叠设置。
层叠设置的冷敷件10和导冷件40的接触更加紧密和充分,使得导冷件40对冷敷件10的降温更加迅速。迅速地降温在部分美容功能中是必需的,例如保养皮肤的时候先利用电极头50对皮肤部位进行美容,然后需要使得皮肤温度骤降,从而达到紧致皮肤、收缩毛孔的效果。冷敷件10与制冷件20层叠设置,可以是片状的冷敷件10和片状的制冷件20上下平行设置,有利于冷敷件10和制冷件20额紧密接触。
可选地,上述皮肤保养组件4还包括散热件30和含碳层101,散热件30与制冷件20的发热侧热耦合,散热器具有热耦合面302,制冷件20具有发热面,热耦合面302与制冷件20的发热面热耦合,热耦合面302的面积与发热面的面积比例为1~1.5之间。散热件30用于将制冷件20的热量散发出去,含碳层101用于更快地传导热量。
可选地,该皮肤保养组件还包括光疗灯,置于冷敷件和散热件之间或设置于冷敷件侧边;
其中,冷敷件为透光体,光疗灯发出的光线能够通过冷敷件出射,对皮肤进行光疗。
其中,光疗灯发出的光线可以是紫外线、可见光、红外线。紫外线是光谱中位于紫光之外、波长小于紫光的不可见光线,其波长为400~180nm,光量子能量高,有明显的光疗效应。
可选地,散热件30表面设有含碳层101,如图3所示,含碳层101贴合、涂覆或镀设于散热件30外周面。碳材料具有低密度、高强度、高导热系数、耐化学腐蚀等特点,在散热件30表面设有含碳层101能够有助于散热件30更快更高效地传导热量,达到散热的目的。
可选地,散热件30与制冷件20之间设有含碳层101,如图4所示。散热件30与制冷件20的发热侧热耦合,可以通过热传递、热对流或热辐射方式来实现传热,在散热件30与制冷件20的耦合间隙加入含碳层101,加强传热连接,能更快更高效地达到散热目的。
可选地,散热件30至少部分嵌设有含碳层101,如图5所示,含碳层101以导热框架的结构形式嵌设于散热件30之内,且导热框架的一端邻近散热件30。导热框架尽可能增大比表面积,在不影响到本申请接触式美容仪的整体重量同时获得更优的散热效果。
可选地,含碳层101包括石墨烯和/或碳素材料。石墨烯材料由单层碳原子以正六边形紧密排列构成的二维平面结构组成,呈蜂窝状,单层悬浮石墨烯的室温热导率可达到3000至5300W/(m□K)。碳素是以碳元素的同素异形体、以碳元素为主的非金属固体材料的统称,包括石墨、金刚石等含碳层101都是碳素,碳素材料的特性之一是导电导热性强。
可选地,制冷件20的制冷面20a的面积大于等于冷敷件10的接触面10a的面积,制冷件20的制冷面20a的面积与冷敷件10的接触面10a的面积比例为1.5~1之间。
可选地,冷敷件10为蓝宝石。
可选地,冷敷件10的接触面10a和传导面10b相背设置,电极头50的端面位于冷敷件10的接触面10a一侧,且在冷敷件10的接触面10a所在参考面的垂直投影位于冷敷件10的接触面10a外围边界所定义封闭圈之内。
可选地,冷敷件10的厚度与冷敷件10的接触面10a面积的数值比例为1:150~1:250。
可选地,冷敷件10的接触面10a面积与制冷件20的制冷面20a面积比例为0.8~1.2之间。可选地,冷敷件10与制冷件20之间间隔距离0.1毫米~1毫米的空间,空间用导热介质填充。
可选地,冷敷件10的传导面10b与制冷件20的制冷面20a之间直接接触。
本申请还提供一种接触式美容仪,包括如前所述的皮肤保养组件4和设备主体,皮肤保养组件4安装于设备主体。图10是皮肤保养组件4一实施例的分解示意图。上述皮肤保养组件4包括电极头50、降温件14和固定件93。至少两个电极头50,电极头50用于对皮肤部位进行放电加热;降温件14包括接触面10a和传导面10b,接触面10a用于接触皮肤部位并进行降温,传导面10b用于传导热量,降温件14设置有贯穿接触面10a的贯穿孔;固定件93至少部分位于降温件14除接触面10a外的一侧;其中,电极头50一端位于降温件14的接触面10a一侧,另一端与固定件93的剩余部分通过贯穿孔连接,进而将电极头50与降温件14相对固定。
皮肤保养组件4工作时,电极头50接触皮肤并对皮肤进行放电。此时电流刺激皮肤引起肌肉收缩运动,起到美容效果,同时皮肤温度会升高。电极头50降温,起到冷敷镇定的作用避免温度过高灼伤皮肤。冷热交替也可以起到紧致皮肤的作用。电极头50被固定件93固定在降温件14的贯穿孔内,从而使得电极头50与降温件14相对固定。相对固定的电极头50和降温件14互相配合对皮肤部位进行美容。用固定件93的方式将电极头50与降温件14固定在一起,使得电极头50与降温件14形成一个整体。例如,电极头50上具有螺纹孔,固定件93为螺丝。本申请以简单的方式将电极头50固定于降温件14,拆装方便。
可选地,皮肤热处理组件包括制冷件20。制冷件20具有制冷面20a,制冷面20a与降温件14的传导面10b抵接;贯穿孔在降温件14的传导面10b一侧直径扩大形成沉头孔,固定件93的至少部分埋设于沉头孔,且不突出传导面10b所在表面。
可选地,降温件14包括层叠设置的冷敷件10和导冷件40,导冷件40位于冷敷件10和制冷件20之间,接触面10a设置于冷敷件10背离导冷件40一侧,传导面10b设置于导冷件40背离冷敷件10的一侧,贯穿孔贯穿冷敷件10和导冷件40,沉头孔形成于导冷件40。
可选地,该接触式美容仪还可以包括光疗灯,置于冷敷件和散热件之间或设置于冷敷件侧边;
其中,冷敷件为透光体,光疗灯发出的光线能够通过冷敷件出射,对皮肤进行光疗。
可选地,电极头50的至少部分插入冷敷件10内的贯穿孔中,且电极头50的至少部分的侧面具有第一平面,贯穿孔的内壁具有第二平面,第一平面抵接第二平面,以阻碍电极头50绕其轴线旋转。
可选地,本申请还提供一种接触式美容仪的操作头100,包括如前所述的皮肤热处理组件和壳体70,所述皮肤热处理组件安装于壳体70。
如图11所示,上述接触式美容仪包括冷敷件10,制冷件20,散热件30和电极头。冷敷件10具有接触面10a、传导面10b,接触面10a用于接触皮肤部位;制冷件20的制冷侧与冷敷件10的传导面10b热耦合,以对冷敷件10降温,散热件30与制冷件20的发热侧热耦合,以对制冷件20进行散热;至少两个电极头,电极头包括安装部与滚动部,滚动部滚动安装于安装部,安装部与冷敷件10相对固定。
接触式美容仪接触皮肤使用,经常需要在面部进行移动。滚动式的电极头使得接触式美容仪在面部的移动更加顺滑,用户体验更加舒适。电极头中,滚动部滚动安装于安装部,安装部与冷敷件10相对固定,因此滚动部与冷敷件10相对滚动设置。滚动设置的电极头50还可以起到一定的按摩作用,舒缓肌肉疲劳。
可选地,散热件30表面设有含碳层101,如图3所示,含碳层101贴合、涂覆或镀设于散热件30外周面。碳材料具有低密度、高强度、高导热系数、耐化学腐蚀等特点,在散热件30表面设有含碳层101能够有助于散热件30更快更高效地传导热量,达到散热的目的。
可选地,散热件30与制冷件20之间设有含碳层101,如图4所示。散热件30与制冷件20的发热侧热耦合,可以通过热传递、热对流或热辐射方式来实现传热,在散热件30与制冷件20的耦合间隙加入含碳层101,加强传热连接,能更快更高效地达到散热目的。
可选地,散热件30至少部分嵌设有含碳层101,如图5所示,含碳层101以导热框架的结构形式嵌设于散热件30之内,且导热框架的一端邻近散热件30。导热框架尽可能增大比表面积,在不影响到本申请接触式美容仪的整体重量同时获得更优的散热效果。
可选地,含碳层101包括石墨烯和/或碳素材料。石墨烯材料由单层碳原子以正六边形紧密排列构成的二维平面结构组成,呈蜂窝状,单层悬浮石墨烯的室温热导率可达到3000至5300W/(m□K)。碳素是以碳元素的同素异形体、以碳元素为主的非金属固体材料的统称,包括石墨、金刚石等含碳层101都是碳素,碳素材料的特性之一是导电导热性强。
可选地,电极头对皮肤部位进行放电,以起到相应的美容效果。滚动部与接触式美容仪电连接。
本申请还公开了一种美容仪,如图12和图13所示,美容仪包括冷敷件10、制冷件20、第一壳体71以及电极头50。冷敷件10用于与皮肤接触以进行冷却;制冷件20具有制冷侧和发热侧,制冷侧与冷敷件10热耦合;第一壳体71具有第一开口;至少两个电极头50,电极头50与冷敷件10或第一壳体71相对固定。其中,制冷件20位于第一壳体71内侧,冷敷件10与皮肤接触的一侧暴露于壳体70的第一开口位置,冷敷件10的另一侧用于封堵壳体70的第一开口。
美容仪接触皮肤使用,皮肤上的汗渍和油污容易进入美容仪中,弄脏美容仪。因此需要合理的密封结构。本申请的美容仪中冷敷件10接触皮肤。冷敷件10设置于第一开口处,同时冷敷件10封堵第一开口,从而防止接触皮肤部位有汗渍或者油污漏进美容仪。
可选地,上述皮肤保养组件4还包括散热件30和含碳层101,散热件30与制冷件20的发热侧热耦合,散热器具有热耦合面302,制冷件20具有发热面,热耦合面302与制冷件20的发热面热耦合,热耦合面302的面积与发热面的面积比例为1~1.5之间。散热件30用于将制冷件20的热量散发出去,含碳层101用于更快地传导热量。
可选地,该美容仪还可以包括光疗灯,置于冷敷件和散热件之间或设置于冷敷件侧边;
其中,冷敷件为透光体,光疗灯发出的光线能够通过冷敷件出射,对皮肤进行光疗。
可选地,散热件30表面设有含碳层101,如图3所示,含碳层101贴合、涂覆或镀设于散热件30外周面。碳材料具有低密度、高强度、高导热系数、耐化学腐蚀等特点,在散热件30表面设有含碳层101能够有助于散 热件30更快更高效地传导热量,达到散热的目的。
可选地,散热件30与制冷件20之间设有含碳层101,如图4所示。散热件30与制冷件20的发热侧热耦合,可以通过热传递、热对流或热辐射方式来实现传热,在散热件30与制冷件20的耦合间隙加入含碳层101,加强传热连接,能更快更高效地达到散热目的。
可选地,散热件30至少部分嵌设有含碳层101,如图5所示,含碳层101以导热框架的结构形式嵌设于散热件30之内,且导热框架的一端邻近散热件30。导热框架尽可能增大比表面积,在不影响到本申请接触式美容仪的整体重量同时获得更优的散热效果。
可选地,含碳层101包括石墨烯和/或碳素材料。石墨烯材料由单层碳原子以正六边形紧密排列构成的二维平面结构组成,呈蜂窝状,单层悬浮石墨烯的室温热导率可达到3000至5300W/(m□K)。碳素是以碳元素的同素异形体、以碳元素为主的非金属固体材料的统称,包括石墨、金刚石等含碳层101都是碳素,碳素材料的特性之一是导电导热性强。
可选地,美容仪包括第一密封圈01。第一密封圈01夹紧于冷敷件10和第一壳体71的第一开口边缘之间,且围绕第一开口。
由于冷敷件10与壳体70的接触可能是刚性的接触,其形变量可能不足以封堵由于加工误差等原因造成的冷敷件10与壳体70之间的缝隙。利用第一密封圈01能够增强美容仪接触皮肤部位的密封防液体渗入的性能。
可选地,美容仪包括电极头和第二密封圈02。第二密封圈02套设于电极头外周;其中,冷敷件10是蓝宝石,且具有通孔,电极头至少部分位于通孔中,第二密封圈02夹紧于电极头和冷敷件10之间。
电极头需要向皮肤部位提供电流,因此电极头也是需要接触皮肤的。本申请中电极头设置于冷敷件10的通孔当中,因此需要注意电极头与冷敷件10之间的密封。在电极头和冷敷件10之间设置密封圈,能够有效防止汗渍和油污等的渗入。
如图14所示,本申请还提供一种美容仪,包括热源、散热件30、热管03以及电极头50。散热件30一端与热源热耦合,另一端向美容仪尾部延伸;热管03一端与散热件30邻近热源的一端或热源热耦合,另一端朝远离热源的方向延伸,且与散热件30热耦合,至少两个电极头50,电极头50与散热件30相对固定。
散热件30本身具有散热功能,热管03辅助散热件30散热,提高了散热件30的散热效率。热管03一端与散热件30临近热源的一端热耦合,吸收热源的热量,另一端向远离热源的方向延伸,例如向美容仪尾部延伸。使得热量的传递路径足够长,能够防止热量在短时间内回溯到美容仪的头部,延长美容仪的制冷时间。
可选地,散热件30表面设有含碳层101,如图3所示,含碳层101贴合、涂覆或镀设于散热件30外周面。碳材料具有低密度、高强度、高导热系数、耐化学腐蚀等特点,在散热件30表面设有含碳层101能够有助于散热件30更快更高效地传导热量,达到散热的目的。
可选地,上述美容仪还包括制冷件20和含碳层101。散热器具有热耦合面302,制冷件20具有发热面,散热器的热耦合面302与制冷件20的发热面热耦合。如图4所示,含碳层101设置于制冷件20与散热件30之间,加强传热连接,能更快更高效地达到散热目的。
可选地,散热件30至少部分嵌设有含碳层101,如图5所示,含碳层101以导热框架的结构形式嵌设于散热件30之内,且导热框架的一端邻近散热件30。导热框架尽可能增大比表面积,在不影响到本申请接触式美容仪的整体重量同时获得更优的散热效果。
可选地,含碳层101包括石墨烯和/或碳素材料。石墨烯材料由单层碳原子以正六边形紧密排列构成的二维平面结构组成,呈蜂窝状,单层悬浮石墨烯的室温热导率可达到3000至5300W/(m□K)。碳素是以碳元素的同素异形体、以碳元素为主的非金属固体材料的统称,包括石墨、金刚石等含碳层101都是碳素,碳素材料的特性之一是导电导热性强。可选地,散热件30具有槽体,热管03至少部分嵌入槽体。
热管03嵌入散热件30的槽体内,使得热管03与散热件30的接触更加充分。能够提高散热件30的散热性能。
可选地,热管03与散热件30临近热源的一端热耦合的一端弯折,增加了与散热件30临近热源的一端的接触面10a积,使得热管03能够针对性地加强散热件30多热源热量的吸收。
如图15所示,本申请还提供一种美容仪,包括热源、散热件30以及电极头50。散热件30一端与热源热耦合,另一端向美容仪尾部延伸;气流驱动器04,相对散热件30设置,用于将散热件30或热源附近的气流驱动,使气流流动,至少两个电极头50,所述电极头50与所述散热件30相对固定。。
散热件30利用热量从温度高的地方向温度低的地方传递的特性,对热源进行散热。热量从热源传递到散热件30中,然后散发出去。本申请的美容仪通过气流驱动器04,使得散热件30或者热源附近的气流流动起来,能够加快对热源的散热。
可选地,散热件30表面设有含碳层101,如图3所示,含碳层101贴合、涂覆或镀设于散热件30外周面。碳材料具有低密度、高强度、高导热系数、耐化学腐蚀等特点,在散热件30表面设有含碳层101能够有助于散热件30更快更高效地传导热量,达到散热的目的。
可选地,上述美容仪还包括制冷件20和含碳层101。散热器具有热耦合面302,制冷件20具有发热面,散热器的热耦合面302与制冷件20的发热面热耦合。如图4所示,含碳层101设置于制冷件20与散热件30之间,加强传热连接,能更快更高效地达到散热目的。
可选地,散热件30至少部分嵌设有含碳层101,如图5所示,含碳层101以导热框架的结构形式嵌设于散热件30之内,且导热框架的一端邻近散热件30。导热框架尽可能增大比表面积,在不影响到本申请接触式美容仪的整体重量同时获得更优的散热效果。
可选地,含碳层101包括石墨烯和/或碳素材料。石墨烯材料由单层碳原子以正六边形紧密排列构成的二维平面结构组成,呈蜂窝状,单层悬浮石墨烯的室温热导率可达到3000至5300W/(m□K)。碳素是以碳元素的同素异形体、以碳元素为主的非金属固体材料的统称,包括石墨、金刚石等含碳层101都是碳素,碳素材料的特性之一是导电导热性强。
可选地,美容仪中的热源可以是半导体制冷片的发热面,也可以是美容仪中吸收了皮肤部位热量的冷敷件10。
可选地,气流驱动器04设置于美容仪外壳上靠近头部的地方。气流驱动器04驱动气流从美容仪头部向尾部流动,并从尾部排出。例如,气流驱动器04为风扇,风扇位于头部对着散热件30吹风,美容仪尾部设置有出风口排出携带热量的气流。这样能够加快散热。
如图16和图17所示,本申请还提供一种美容仪的设备主体,包括操作头100和散热件30。操作头100,包括至少两个电极头50和制冷件20,电极头50与散热件30相对固定,制冷件20具有制冷面20a用于制冷;散热件30,具有热耦合面302,用以与操作头100的发热面热耦合,以将来自操作头100的热量散发出去,操作头100具有接触面10a和发热面,接触面10a用于接触皮肤部位并对皮肤部位进行降温;其中,散热件30自设备主体的头部延伸至设备主体的尾部。
本申请美容仪的设备主体通过散热件30对操作头100进行散热。散热件30自设备主体的头部延伸至设备主体的尾部,使得散热件30足够长,增长热量传导路径,有效防止热量在短时间内回溯到头部,延长了操作头100的接触面10a的降温时间。
可选地,散热件30表面设有含碳层101,如图3所示,含碳层101贴合、涂覆或镀设于散热件30外周面。碳材料具有低密度、高强度、高导热系数、耐化学腐蚀等特点,在散热件30表面设有含碳层101能够有助于散热件30更快更高效地传导热量,达到散热的目的。
可选地,散热件30与制冷件20之间设有含碳层101,如图4所示。散热件30与制冷件20的发热侧热耦合,可以通过热传递、热对流或热辐射方式来实现传热,在散热件30与制冷件20的耦合间隙加入含碳层101,加强传热连接,能更快更高效地达到散热目的。
可选地,散热件30至少部分嵌设有含碳层101,如图5所示,含碳层101以导热框架的结构形式嵌设于散热件30之内,且导热框架的一端邻近散热件30。导热框架尽可能增大比表面积,在不影响到本申请接触式美容仪的整体重量同时获得更优的散热效果。
可选地,含碳层101包括石墨烯和/或碳素材料。石墨烯材料由单层碳原子以正六边形紧密排列构成的二维平面结构组成,呈蜂窝状,单层悬浮石墨烯的室温热导率可达到3000至5300W/(m□K)。碳素是以碳元素的 同素异形体、以碳元素为主的非金属固体材料的统称,包括石墨、金刚石等含碳层101都是碳素,碳素材料的特性之一是导电导热性强。
可选地,散热件30设置有避让槽,热管03沿避让槽内壁设置,且焊接于避让槽内壁,热管03远离所属弯折部的一端延伸至散热件30的末端。散热件30位于设备主体尾部的末端与设备主体尾部末端之间具有间隙,间隙尺寸小于设备主体长度的三分之一。
申请人在长期的研究和探索中发现,散热件30不超过设备主体长度的三分之一,且重心需要设置的靠近头部时,用户在使用时能够抓握得更加稳定和舒适。
可选地,设备主体尾部设有出风口,散热件30尾部对应出风口设置。可选地,热耦合面302位于散热件30头部的端面;端面设有凹槽201,凹槽201的底面为热耦合面302。
可选地,设备主体还包括安装板和充电口。安装板,安装板安装于凹槽201的开口处并向设备主体的尾部延伸;充电口,设置于安装板的末端,并露出于设备主体。
参阅图18和图19,本申请还提供一种接触式美容仪,包括前述的美容仪的设备主体,包括操作头100、安装支架200和电路板。操作头100包括至少两个电极头50和制冷件20,电极头50与电路板电性耦接,制冷件20具有制冷面20a用于制冷。操作头100具有接触面10a,接触面10a用于接触皮肤部位并对皮肤部位进行降温;安装支架200具有第一安装位和第二安装位,操作头100通过第一安装位固定于安装支架200;电路板通过第二安装位固定于安装支架200;其中,操作头100位于美容仪的头部,安装支架200自美容仪的头部延伸至美容仪的尾部。
美容仪的操作头100和电路板等均安装于安装支架200,使得美容仪的各个组件的安装更加集中。方便装配也使得美容仪整体结构更加紧凑,能够减小美容仪的体积。小巧的美容仪更加方便女生握持使用,提高了用户的使用体验。
可选地,上述接触式美容仪还包括散热件30和含碳层101,散热件30与制冷件20的发热侧热耦合,散热器具有热耦合面302,制冷件20具有发热面,热耦合面302与制冷件20的发热面热耦合,热耦合面302的面积与发热面的面积比例为1~1.5之间。散热件30用于将制冷件20的热量散发出去,含碳层101用于更快地传导热量。
可选地,散热件30表面设有含碳层101,如图3所示,含碳层101贴合、涂覆或镀设于散热件30外周面。碳材料具有低密度、高强度、高导热系数、耐化学腐蚀等特点,在散热件30表面设有含碳层101能够有助于散热件30更快更高效地传导热量,达到散热的目的。
可选地,散热件30与制冷件20之间设有含碳层101,如图4所示。散热件30与制冷件20的发热侧热耦合,可以通过热传递、热对流或热辐射方式来实现传热,在散热件30与制冷件20的耦合间隙加入含碳层101,加强传热连接,能更快更高效地达到散热目的。
可选地,散热件30至少部分嵌设有含碳层101,如图5所示,含碳层101以导热框架的结构形式嵌设于散热件30之内,且导热框架的一端邻近散热件30。导热框架尽可能增大比表面积,在不影响到本申请接触式美容仪的整体重量同时获得更优的散热效果。
可选地,含碳层101包括石墨烯和/或碳素材料。石墨烯材料由单层碳原子以正六边形紧密排列构成的二维平面结构组成,呈蜂窝状,单层悬浮石墨烯的室温热导率可达到3000至5300W/(m□K)。碳素是以碳元素的同素异形体、以碳元素为主的非金属固体材料的统称,包括石墨、金刚石等含碳层101都是碳素,碳素材料的特性之一是导电导热性强。
可选地,安装支架200安装各个组件的同时还能够作为散热件30使用,对美容仪进行散热。安装支架200与美容仪中的操作头100等组件均紧密接触,有利于充分且均匀地散热。当美容仪工作时,安装支架200吸收整个美容仪中的热量,使得散热更加高效。延伸至尾部的安装支架200使得热量也能够驻留更长时间,不会短时间内回溯,延长操作头100的制冷时间。
可选地,接触式美容仪包括隔离支架60。隔离支架60,具有相对设置的两个侧面;安装支架200具有第三安装位,用于安装隔离支架60。
可选地,安装支架200的侧面具有凹槽201,第二安装位和第三安装位均设置于凹槽201。
第一安装位安装操作头100,第二安装位和第三安装位位于安装支架200的侧面凹槽201。第二安装位和第三安装位安装其他组件,均设置于安装支架200上,使得结构更加紧凑。
可选地,第二安装位和第三安装位位于凹槽201不同深度位置,使得电路板与隔离支架60层叠设置,第二安装位相对第三安装位远离凹槽201底部。层叠设置使得安装支架200上的各部分排列得更加有序,各个组件之间不会互相干扰。
可选地,第二安装位到凹槽201底部的距离与第三安装位到凹槽201底部的距离的比例在1.5~3倍之间。
可选地,接触式美容仪包括第一安装板和按键组件。
按键组件设置于第一安装板;其中,凹槽201侧壁设有阶梯,电路板通过阶梯固定于凹槽201内,隔离支架60包围并固定于第一安装板,隔离支架60的两个侧面与第一安装板的两个面平行间隔设置,第一安装板固定于凹槽201侧壁,且位于电路板背对凹槽201底部一侧。
可选地,接触式美容仪包括第二安装板。电路板安装于第二安装板,第二安装板安装于阶梯,第二安装板与凹槽201的底部间隔设置。
可选地,第一安装板延伸至接触式美容仪的尾部,且第一安装板远离操作头100的一端设置有连接电路板的充电模组。
可选地,第一安装板和第二安装板本身也可以是电路板。
可选地,第二安装板的长度与安装支架200的长度的比例在1.2~2之间,充电模组与安装支架200之前间隔一定距离,距离在1厘米到3厘米之间。
可选地,凹槽201设置有安装沟,安装沟用于安装热管03,安装沟沿凹槽201内壁设置,从安装支架200靠近操作头100的一端延伸至远离操作头100的一端。
可选地,安装支架200具有容置槽,容置槽设置于第一安装位的侧面,用以容置接触式美容仪中的部分引线。
可选地,安装支架200具有第一引导部,操作头100具有第二引导部,第一引导部与第二引导部相互配合,且第一引导部与第二引导部相对运动以引导操作头100安装于安装支架200。
可选地,第一引导部为引导沟94,第二引导部为引导条;
引导沟94设置于安装支架200靠近操作头100一端的侧面,引导条设置于操作头100上与引导沟94对应的位置,且引导条沿引导沟94滑动以引导操作头100安装于安装支架200。
可选地,安装支架200可以包括连接件90,引导沟94位于连接件90上。
本申请提供一种美容仪,参阅20和图21,美容仪包括安装支架200、操作头100、支持元件和壳体70。操作头100,包括至少两个电极头50和制冷件20,电极头50与安装支架200或壳体70相对固定,制冷件20具有制冷面20a用于制冷;支持元件与安装支架200相对固定,用于支持操作头100工作;壳体70套设于安装支架200,并固定于安装支架200。
支持元件支持操作头100工作,使得操作头100的工作更加稳定,安装支架200与操作头100相对固定,支持元件与安装支架200相对固定,壳体70套设于安装支架200并固定于安装支架200。这种结构的设备结构紧凑,并且方便安装。可选地,可以先将安装支架200、操作头100和支持元件等先组装好,然后作为整体放入壳体70内。方便安装,且节省空间。
可选地,上述美容仪还包括散热件30和含碳层101,散热件30与制冷件20的发热侧热耦合,散热器具有热耦合面302,制冷件20具有发热面,热耦合面302与制冷件20的发热面热耦合,热耦合面302的面积与发热面的面积比例为1~1.5之间。散热件30用于将制冷件20的热量散发出去,含碳层101用于更快地传导热量。
可选地,散热件30表面设有含碳层101,如图3所示,含碳层101贴合、涂覆或镀设于散热件30外周面。碳材料具有低密度、高强度、高导热系数、耐化学腐蚀等特点,在散热件30表面设有含碳层101能够有助于散热件30更快更高效地传导热量,达到散热的目的。
可选地,散热件30与制冷件20之间设有含碳层101,如图4所示。散热件30与制冷件20的发热侧热耦 合,可以通过热传递、热对流或热辐射方式来实现传热,在散热件30与制冷件20的耦合间隙加入含碳层101,加强传热连接,能更快更高效地达到散热目的。
可选地,散热件30至少部分嵌设有含碳层101,如图5所示,含碳层101以导热框架的结构形式嵌设于散热件30之内,且导热框架的一端邻近散热件30。导热框架尽可能增大比表面积,在不影响到本申请接触式美容仪的整体重量同时获得更优的散热效果。
可选地,含碳层101包括石墨烯和/或碳素材料。石墨烯材料由单层碳原子以正六边形紧密排列构成的二维平面结构组成,呈蜂窝状,单层悬浮石墨烯的室温热导率可达到3000至5300W/(m□K)。碳素是以碳元素的同素异形体、以碳元素为主的非金属固体材料的统称,包括石墨、金刚石等含碳层101都是碳素,碳素材料的特性之一是导电导热性强。
可选地,美容仪还包括固定件93。安装支架200的尾部周向具有至少三个抵接位,分别与壳体70尾部内壁抵接,以在径向限位并固定安装支架200的尾部,固定件93将壳体70头部固定于安装支架200头部。
可选地,固定件93通过壳体70上的安装孔500将壳体70与安装支架200固定。
可选地,壳体70尾部的内部空间的径向尺寸小于壳体70头部的内部空间的径向尺寸,以在壳体70尾部的内壁形成至少一个斜面,安装支架200的至少一个抵接位抵接于斜面,以从轴向限位壳体70与安装支架200的相对移动。
安装支架200在壳体70尾部形成了三角形的支撑结构,使得安装支架200在壳体70内更加稳定。
如图22所示,本申请还提供一种美容仪,包括热源、散热件30以及电极头50。散热件30一端与热源热耦合,另一端向美容仪尾部延伸;其中,散热件30一侧具有散热鳍片303结构,至少两个电极头50,电极头50与散热件30相对固定。
散热鳍片303结构增大了散热件30与空气之间的接触面10a积,有助于提高散热效率。同时散热件30延伸到美容仪尾部,能够有效吸收热源的热量。散热鳍片303结构加快散热件30的散热,使得热量能够在散热件30处快速地散发出去,能够减少一段时间后热量的回溯。当散热件30温度接近或者高于热源温度时可能会发生热量的回溯。散热鳍片303结构能够进一步延长回溯之前的时间,有利于美容仪的工作。
可选地,散热件30表面设有含碳层101,如图3所示,含碳层101贴合、涂覆或镀设于散热件30外周面。碳材料具有低密度、高强度、高导热系数、耐化学腐蚀等特点,在散热件30表面设有含碳层101能够有助于散热件30更快更高效地传导热量,达到散热的目的。
可选地,上述美容仪还包括制冷件20,散热件30与制冷件20的发热侧热耦合,可以通过热传递、热对流或热辐射方式来实现传热,如图4所示,在散热件30与制冷件20的耦合间隙加入含碳层101,加强传热连接,能更快更高效地达到散热目的。
可选地,散热件30至少部分嵌设有含碳层101,如图5所示,含碳层101以导热框架的结构形式嵌设于散热件30之内,且导热框架的一端邻近散热件30。导热框架尽可能增大比表面积,在不影响到本申请接触式美容仪的整体重量同时获得更优的散热效果。
可选地,含碳层101包括石墨烯和/或碳素材料。石墨烯材料由单层碳原子以正六边形紧密排列构成的二维平面结构组成,呈蜂窝状,单层悬浮石墨烯的室温热导率可达到3000至5300W/(m□K)。碳素是以碳元素的同素异形体、以碳元素为主的非金属固体材料的统称,包括石墨、金刚石等含碳层101都是碳素,碳素材料的特性之一是导电导热性强。可选地,热源可以是美容仪中半导体制冷片的发热侧,也可以是接触皮肤的冷敷件10。
可选地,该美容仪还包括光疗灯,置于冷敷件和散热件之间或设置于冷敷件侧边;
冷敷件为透光体,光疗灯发出的光线能够通过冷敷件出射,对皮肤进行光疗。
其中,光疗灯发出的光线可以是紫外线、可见光、红外线。紫外线是光谱中位于紫光之外、波长小于紫光的不可见光线,其波长为400~180nm,光量子能量高,有明显的光疗效应。
一般来说,光疗灯发出的光线的波长不同,对皮肤也会产生不同的影响。比如说,光疗灯发出的光线的波长为480-1200nm,则主要对祛痘、痤疮有疗效;光疗灯发出的光线的波长为530-1200nm,则主要起到祛斑和 嫩肤的作用;光疗灯发出的光线的波长为640-1200nm,则可能主要起到脱毛的作用。
可选地,散热件30外侧具有若干槽体,槽体从邻近热源的一端延伸至远离热源的另一端,以形成散热鳍片303结构。槽体和槽体之间的壁形成鳍片。热量从热源向远离热源的一端传递,槽体顺着热量传递方向延伸,能够促进热量的散发。
可选地,美容仪可以包括气流驱动器04。气流驱动器04向槽体吹风,使得气流沿着槽体从热源吹响散热件30的尾部,中途无任何阻隔。气流不会被阻挡反弹,从而不会携带热量返回热源,能够提高散热效果。
参阅图23和图24,本申请提供一种皮肤保养组件4,包括冷敷件10、制冷件20、散热件30、电极头50和第一盖体306。冷敷件10具有接触面10a、传导面10b,接触面10a用于接触皮肤部位;制冷件20的制冷侧与冷敷件10的传导面10b热耦合,以对冷敷件10降温,散热件30与制冷件20的发热侧热耦合,以将来自制冷件20的热量散发出去;电极头50用于对皮肤部位进行放电加热,电极头50与冷敷件10相对固定;第一盖体306将冷敷件10和制冷件20固定于散热件30。
皮肤保养组件4中,电极头50对皮肤部位进行放电加热,会使得皮肤部位温度升高。此时需要对皮肤部位进行冷却,这样能够起到紧致皮肤的作用。冷敷件10、制冷件20和散热件30均热耦合。冷敷件10和制冷件20均固定于散热件30能够方便散热件30对制冷件20和/或冷敷件10进行散热。冷敷件10和制冷件20通过第一盖体306固定于散热件30,装配和安装都比较方便,同时也方便散热件30对冷敷件10和/或制冷件20进行散热。
可选地,该皮肤保养组件还包括光疗灯,置于冷敷件和散热件之间或设置于冷敷件侧边;
其中,冷敷件为透光体,光疗灯发出的光线能够通过冷敷件出射,对皮肤进行光疗。
其中,光疗灯发出的光线可以是紫外线、可见光、红外线。紫外线是光谱中位于紫光之外、波长小于紫光的不可见光线,其波长为400~180nm,光量子能量高,有明显的光疗效应。
可选地,散热件30表面设有含碳层101,如图3所示,含碳层101贴合、涂覆或镀设于散热件30外周面。碳材料具有低密度、高强度、高导热系数、耐化学腐蚀等特点,在散热件30表面设有含碳层101能够有助于散热件30更快更高效地传导热量,达到散热的目的。
可选地,散热件30与制冷件20之间设有含碳层101,如图4所示。散热件30与制冷件20的发热侧热耦合,可以通过热传递、热对流或热辐射方式来实现传热,在散热件30与制冷件20的耦合间隙加入含碳层101,加强传热连接,能更快更高效地达到散热目的。
可选地,散热件30至少部分嵌设有含碳层101,如图5所示,含碳层101以导热框架的结构形式嵌设于散热件30之内,且导热框架的一端邻近散热件30。导热框架尽可能增大比表面积,在不影响到本申请接触式美容仪的整体重量同时获得更优的散热效果。
可选地,含碳层101包括石墨烯和/或碳素材料。石墨烯材料由单层碳原子以正六边形紧密排列构成的二维平面结构组成,呈蜂窝状,单层悬浮石墨烯的室温热导率可达到3000至5300W/(m□K)。碳素是以碳元素的同素异形体、以碳元素为主的非金属固体材料的统称,包括石墨、金刚石等含碳层101都是碳素,碳素材料的特性之一是导电导热性强。可选地,制冷件20位于散热件30和冷敷件10之间。
制冷件20对冷敷件10进行制冷。相应地,与散热件30接触的一面会发热,散热件30对制冷件20进行散热。
可选地,第一盖体306设有开口,开口至少在一径向方向上的尺寸小于冷敷件10在径向方向上的尺寸,第一盖体306的开口对应冷敷件10设置,且通过开口边缘将冷敷件10边缘压向散热件30,进而将冷敷件10和制冷件20固定于散热件30。
可选地,电极头50设置于开口边缘,至少两个电极头50设置于冷敷件10外周。
可选地,皮肤保养组件4包括第一卡扣件310和第二卡扣件320。第一卡扣件310固定于第一盖体306;第二卡扣件320固定于散热件30,且与第一卡扣件310卡扣连接,以将冷敷件10和制冷件20固定于散热件30。
第一盖体306通过卡扣固定于散热件30。第一盖体306通过卡扣固定于散热件30,第一卡扣件310可以是悬臂钩,第二卡扣可以是固定孔。悬臂钩勾住固定孔,将第一盖体306拉住,提供一个沿美容仪轴向的力,从 而使得第一头盖固定于散热件30。
可选地,散热件30具有与制冷件20热耦合的热耦合面302以及和热耦合面302两侧连接的两侧面;
第二卡扣件320一部分位于散热件30的热耦合面302一侧,与第一卡扣件310卡扣连接,剩余部分向热耦合面302两侧的两侧面延伸,并在外侧设有引导部;
第一盖体306具有与散热件30的两侧面对应的两侧翼,第一盖体306的两侧翼通过引导部进行装配。
可选地,第一盖体306的一个侧翼上具有沿第一盖体306内侧向散热件30延伸的引导沟94和引导棱中的一个;
散热件30的一个侧面具有引导沟94和引导棱中的另一个,引导棱与引导沟94滑动装配;
其中,第一盖体306的另一个侧翼与散热件30的另一个侧面均平滑。
可选地,皮肤保养组件4还包括导冷件40;导冷件40位于冷敷件10和制冷件20之间,接触面10a设置于冷敷件10背离制冷件20一侧,传导面10b设置于导冷件40背离冷敷件10一侧,导冷件40至少在径向方向上的尺寸大于开口在径向方向上的尺寸,第一盖体306的开口边缘将导冷件40边缘压向散热件30。
可选地,冷敷件10位于开口内,且冷敷件10在厚度方向具有不同的第一径向尺寸和第二径向尺寸,开口在深度方向具有不同的第三径向尺寸和第四径向尺寸,具有第一径向尺寸的冷敷件10部分较具有第二径向尺寸的冷敷件10部分靠近导冷件40,具有第三径向尺寸的开口部分较具有第四径向尺寸的开口部分靠近导冷件40,第一径向尺寸小于第三径向尺寸,第二径向尺寸小于第四径向尺寸,二径向尺寸大于第三径向尺寸。
冷敷件10和导冷件40设置于开口处,且冷敷件10和导冷件40夹住第一盖体306,使得冷敷件10、导冷件40和第一盖体306形成一个整体。在需要的时候可以对这个整体进行更换。如此设置也使得冷敷件10、导冷件40和第一盖体306作为一个整体进行装配。可以方便进行模块化装配,先装配这三者,然后将第一盖体306安装于散热件30,方便装配。
可选地,散热件30包括第二盖体307和散热主体304,第二盖体307设置于散热主体304与第一盖体306之间,第二盖体307固定于散热主体304,第一盖体306固定于第二盖体307。
可选地,皮肤保养组件4包括引线。引线连接制冷件20;其中,第二盖体307具有凹槽201,引线容置于凹槽201。
可选地,引导部和第二卡扣件320均设置于第二盖体307上,第二盖体307上还设置有限位孔308,限位孔308位于开口处,且与开口连通,制冷件20的部分设置于限位孔308内,制冷件20的边缘距离限位孔308边缘0.5~1毫米;凹槽201沿限位孔308边缘设置,且限位孔308的面积与开口面积的比例为0.8~1.2之间。
如图25和图26所示,本申请提供一种皮肤保养组件4,包括冷敷件10、制冷件20、散热件30以及电极头50。冷敷件10,具有接触面10a、传导面10b,接触面10a用于接触皮肤部位;制冷件20和散热件30,制冷件20的制冷侧与冷敷件10的传导面10b热耦合,以对冷敷件10降温,散热件30与制冷件20的发热侧热耦合,以将来自制冷件20的热量散发出去;第一盖体306,将冷敷件10相对固定于散热件30;第二盖体307,至少部分位于第一盖体306和散热件30之间,且对制冷件20进行限位;至少两个电极头50,电极头50与冷敷件10、第一盖体306或第二盖体307相对固定。
皮肤保养组件4中,电极头50对皮肤部位进行放电加热,会使得皮肤部位温度升高。此时需要对皮肤部位进行冷却,这样能够起到紧致皮肤的作用。冷敷件10、制冷件20和散热件30均热耦合。制冷件20的发热侧与散热件30热耦合,为了制冷件20的安装更加稳定,本申请利用第二盖体307对散热件30进行限位。冷敷件10通过第一盖体306相对固定于散热件30,方便装配,结构也比较紧凑。
可选地,该接触式美容仪还包括光疗灯,置于冷敷件和散热件之间或设置于冷敷件侧边;
其中,冷敷件为透光体,光疗灯发出的光线能够通过冷敷件出射,对皮肤进行光疗。
其中,光疗灯发出的光线可以是紫外线、可见光、红外线。紫外线是光谱中位于紫光之外、波长小于紫光的不可见光线,其波长为400~180nm,光量子能量高,有明显的光疗效应。
一般来说,光疗灯发出的光线的波长不同,对皮肤也会产生不同的影响。比如说,光疗灯发出的光线的波长为480-1200nm,则主要对祛痘、痤疮有疗效;光疗灯发出的光线的波长为530-1200nm,则主要起到祛斑和 嫩肤的作用;光疗灯发出的光线的波长为640-1200nm,则可能主要起到脱毛的作用。
可选地,散热件30表面设有含碳层101,如图3所示,含碳层101贴合、涂覆或镀设于散热件30外周面。碳材料具有低密度、高强度、高导热系数、耐化学腐蚀等特点,在散热件30表面设有含碳层101能够有助于散热件30更快更高效地传导热量,达到散热的目的。
可选地,散热件30与制冷件20之间设有含碳层101,如图4所示。散热件30与制冷件20的发热侧热耦合,可以通过热传递、热对流或热辐射方式来实现传热,在散热件30与制冷件20的耦合间隙加入含碳层101,加强传热连接,能更快更高效地达到散热目的。
可选地,散热件30至少部分嵌设有含碳层101,如图5所示,含碳层101以导热框架的结构形式嵌设于散热件30之内,且导热框架的一端邻近散热件30。导热框架尽可能增大比表面积,在不影响到本申请接触式美容仪的整体重量同时获得更优的散热效果。
可选地,含碳层101包括石墨烯和/或碳素材料。石墨烯材料由单层碳原子以正六边形紧密排列构成的二维平面结构组成,呈蜂窝状,单层悬浮石墨烯的室温热导率可达到3000至5300W/(m□K)。碳素是以碳元素的同素异形体、以碳元素为主的非金属固体材料的统称,包括石墨、金刚石等含碳层101都是碳素,碳素材料的特性之一是导电导热性强。
可选地,第二盖体307固定于散热主体304,第一盖体306固定于第二盖体307,且通过冷敷件10将制冷件20在第一方向上压紧于散热件30;第二盖体307用于在第二方向对制冷件20进行限位,第一方向和第二方向垂直。
可选地,第一盖体306设有开口,开口至少在一径向方向上的尺寸小于冷敷件10在径向方向上的尺寸,第一盖体306的开口对应冷敷件10设置,且通过开口边缘将冷敷件10边缘压向散热件30,进而将冷敷件10和制冷件20固定于散热件30。
可选地,第二盖体307上还设置有限位孔308,限位孔308位于开口处,且与开口连通,制冷件20的部分设置于限位孔308内,制冷件20的边缘距离限位孔308边缘0.5~1毫米;
散热件30对应制冷件20的区域设有凹槽201,凹槽201与限位孔308对应,制冷件20一部分嵌入凹槽201,另外一部分位于限位孔308内,且限位孔308的面积与开口面积的比例为0.8~1.2之间。
散热件30的凹槽201对制冷件20有一定的限位作用,但是还需要第二盖体307的限位才足够稳定,凹槽201的深度不能超过发热侧的厚度,否则容易造成热量回溯到了制冷侧的情况。
如图27所示,本申请还提供一种美容仪,包括冷敷件10、制冷件20、第一电极头组501和第二电极头组502。冷敷件10用于与皮肤接触以进行冷却;制冷件20具有制冷侧和发热侧,所述制冷侧与所述冷敷件10热耦合;第一电极头组501与所述冷敷件10相对设置;第二电极头组502与所述冷敷件10相对设置,且与所述第一电极头组501相互绝缘;其中,所述第一电极头组501与所述第二电极头组502的高度不同。
电极头50突出冷敷件10设置,不同高度的第一电极头组501和第二电极头组502形成阶梯。在使用时,可以先第一电极头组501接触皮肤,一段时间后第二电极头组502以及冷敷件10接触皮肤,以实现特定的美容效果。
例如,第一电极头组501高于第二电极头组502,第一电极头组501先接触皮肤进行电流刺激和加热。一段时间后,皮肤温度升高,正好冷敷件10的温度较低,这时候冷敷件10接触皮肤有更加舒适的冷感。同时第二电极头组502接触皮肤进行电流刺激和加热,形成后续的温度平衡。
可选地,该美容仪还包括光疗灯,置于冷敷件和散热件之间或设置于冷敷件侧边;
其中,冷敷件为透光体,光疗灯发出的光线能够通过冷敷件出射,对皮肤进行光疗。
其中,光疗灯发出的光线可以是紫外线、可见光、红外线。紫外线是光谱中位于紫光之外、波长小于紫光的不可见光线,其波长为400~180nm,光量子能量高,有明显的光疗效应。
可选地,上述美容仪还包括散热件30和含碳层101,散热件30与制冷件20的发热侧热耦合,散热器具有热耦合面302,制冷件20具有发热面,热耦合面302与制冷件20的发热面热耦合,热耦合面302的面积与发热面的面积比例为1~1.5之间。散热件30用于将制冷件20的热量散发出去,含碳层101用于更快地传导热量。
可选地,散热件30表面设有含碳层101,如图3所示,含碳层101贴合、涂覆或镀设于散热件30外周面。碳材料具有低密度、高强度、高导热系数、耐化学腐蚀等特点,在散热件30表面设有含碳层101能够有助于散热件30更快更高效地传导热量,达到散热的目的。
可选地,散热件30与制冷件20之间设有含碳层101,如图4所示。散热件30与制冷件20的发热侧热耦合,可以通过热传递、热对流或热辐射方式来实现传热,在散热件30与制冷件20的耦合间隙加入含碳层101,加强传热连接,能更快更高效地达到散热目的。
可选地,散热件30至少部分嵌设有含碳层101,如图5所示,含碳层101以导热框架的结构形式嵌设于散热件30之内,且导热框架的一端邻近散热件30。导热框架尽可能增大比表面积,在不影响到本申请接触式美容仪的整体重量同时获得更优的散热效果。
可选地,含碳层101包括石墨烯和/或碳素材料。石墨烯材料由单层碳原子以正六边形紧密排列构成的二维平面结构组成,呈蜂窝状,单层悬浮石墨烯的室温热导率可达到3000至5300W/(m□K)。碳素是以碳元素的同素异形体、以碳元素为主的非金属固体材料的统称,包括石墨、金刚石等含碳层101都是碳素,碳素材料的特性之一是导电导热性强。
如图28到图30所示,本申请提供一种皮肤保养组件4,包括冷敷件10、制冷件20、散热件30、第一盖体306和电极头。冷敷件10具有接触面10a、传导面10b,接触面10a用于接触皮肤部位;制冷件20的制冷侧与冷敷件10的传导面10b热耦合,以对冷敷件10降温,散热件30与制冷件20的发热侧热耦合,以将来自制冷件20的热量散发出去;第一盖体306将冷敷件10相对固定于散热件30;至少两个电极头,电极头与第一盖体306相对固定。
皮肤保养组件4中,冷敷件10接触皮肤部位,并由制冷件20制冷降温。散热件30对制冷件20进行散热。第一盖体306将冷敷件10相对固定于散热件30,使得散热件30能够更好地配合制冷件20对冷敷件10进行降温。电极头对皮肤部位进行电流刺激和加热,且电极头与第一盖体306相对固定使得电极头在结构上靠近皮肤部位。电极头配合冷敷件10能够实现紧致皮肤、收缩毛孔等美容效果。
可选地,该接触式美容仪还包括光疗灯,置于冷敷件和散热件之间或设置于冷敷件侧边;
其中,冷敷件为透光体,光疗灯发出的光线能够通过冷敷件出射,对皮肤进行光疗。
可选地,散热件30表面设有含碳层101,如图3所示,含碳层101贴合、涂覆或镀设于散热件30外周面。碳材料具有低密度、高强度、高导热系数、耐化学腐蚀等特点,在散热件30表面设有含碳层101能够有助于散热件30更快更高效地传导热量,达到散热的目的。
可选地,散热件30与制冷件20之间设有含碳层101,如图4所示。散热件30与制冷件20的发热侧热耦合,可以通过热传递、热对流或热辐射方式来实现传热,在散热件30与制冷件20的耦合间隙加入含碳层101,加强传热连接,能更快更高效地达到散热目的。
可选地,散热件30至少部分嵌设有含碳层101,如图5所示,含碳层101以导热框架的结构形式嵌设于散热件30之内,且导热框架的一端邻近散热件30。导热框架尽可能增大比表面积,在不影响到本申请接触式美容仪的整体重量同时获得更优的散热效果。
可选地,含碳层101包括石墨烯和/或碳素材料。石墨烯材料由单层碳原子以正六边形紧密排列构成的二维平面结构组成,呈蜂窝状,单层悬浮石墨烯的室温热导率可达到3000至5300W/(m□K)。碳素是以碳元素的同素异形体、以碳元素为主的非金属固体材料的统称,包括石墨、金刚石等含碳层101都是碳素,碳素材料的特性之一是导电导热性强。
可选地,第一电极头可以是固定安装在第一盖体306上。皮肤保养组件4可以应用于美容仪中。
可选地,电极头数量至少为二,间隔设置于冷敷件10周侧;其中,第一盖体306通过电极头将冷敷件10相对固定于散热件30。
冷敷件10通过电极头相对固定于散热件30。可以是电极头50在电极头在冷敷件10周围限制住冷敷件10的位置。
可选地,冷敷件10可以是蓝宝石、帕托石、水晶等材料。例如蓝宝石材料的冷敷件10的导热性能好,并 且亲肤。但是不易加工,加工成本高。通过电极头限制冷敷件10的位置,可以使得整片蓝宝石相对固定于散热件30,节省加工成本,并且装配也简单。同时,由于电极头50也接触皮肤,温度也会有一定的升高。但是电极头50又与冷敷件10接触,因此,冷敷件10可以对电极头50也进行降温,使得美容仪接触皮肤部位的温度更加均匀。
可选地,电极头朝向冷敷件10一侧具有第一阶梯面,冷敷件10侧边具有第二阶梯面,第二阶梯面位于第一阶梯面和散热件30之间,第一阶梯面抵顶于第二阶梯面。
通过第一阶梯面与第二阶梯面的抵顶,电极头可以将冷敷件10压向散热件30。使得冷敷件10与制冷件20、散热件30之间在压力的作用下压紧在一起。使得接触更加充分,导热效果更好。
可选地,冷敷件10与制冷件20可以直接接触,也可以通过导热硅脂等导热介质间接接触。
可选地,冷敷件10周围可以设置有灯珠。灯珠可以用来对皮肤进行光疗。例如用光疗进行脱毛等。
可选地,皮肤保养组件4还可以包括第二盖体307、第一安装板、第二安装板、外壳、按钮、充电口、导热壳体70等。
本申请还提供一种美容仪,包括加热件、冷敷件10、制冷件20和散热件30。加热件以电、磁或电磁方式对皮肤进行加热;冷敷件10具有冷却面、传导面10b,冷却面用于对至少部分皮肤或其邻近组织进行冷却;制冷件20的制冷侧与冷敷件10的传导面10b热耦合,以获取冷敷件10的热量,散热件30与制冷件20的发热侧热耦合,以将热量散发出去;其中,冷敷件10对皮肤或其邻近组织的表层进行冷却,电、磁或电磁对皮肤的作用深度范围比表层大,且同一时刻,冷却面的面积比电、磁或电磁对皮肤的作用面积大;加热件的工作功率满足以下条件:将表层以下的皮肤组织加热到45度至80度之间;制冷件20的工作功率满足以下条件:将表层温度降至15度至45度之间。
美容仪中,加热件对皮肤进行加热,冷敷件10对皮肤进行降温,制冷件20对冷敷件10进行降温,散热件30对制冷件20进行散热。冷敷件10对皮肤以及邻近组织的表层进行冷却。
可选地,该接触式美容仪还包括光疗灯,置于冷敷件和散热件之间或设置于冷敷件侧边;
其中,冷敷件为透光体,光疗灯发出的光线能够通过冷敷件出射,对皮肤进行光疗。
可选地,上述美容仪还包括散热件30和含碳层101,散热件30与制冷件20的发热侧热耦合,散热器具有热耦合面302,制冷件20具有发热面,热耦合面302与制冷件20的发热面热耦合,热耦合面302的面积与发热面的面积比例为1~1.5之间。散热件30用于将制冷件20的热量散发出去,含碳层101用于更快地传导热量。
可选地,散热件30表面设有含碳层101,如图3所示,含碳层101贴合、涂覆或镀设于散热件30外周面。碳材料具有低密度、高强度、高导热系数、耐化学腐蚀等特点,在散热件30表面设有含碳层101能够有助于散热件30更快更高效地传导热量,达到散热的目的。
可选地,散热件30与制冷件20之间设有含碳层101,如图4所示。散热件30与制冷件20的发热侧热耦合,可以通过热传递、热对流或热辐射方式来实现传热,在散热件30与制冷件20的耦合间隙加入含碳层101,加强传热连接,能更快更高效地达到散热目的。
可选地,散热件30至少部分嵌设有含碳层101,如图5所示,含碳层101以导热框架的结构形式嵌设于散热件30之内,且导热框架的一端邻近散热件30。导热框架尽可能增大比表面积,在不影响到本申请接触式美容仪的整体重量同时获得更优的散热效果。
可选地,含碳层101包括石墨烯和/或碳素材料。石墨烯材料由单层碳原子以正六边形紧密排列构成的二维平面结构组成,呈蜂窝状,单层悬浮石墨烯的室温热导率可达到3000至5300W/(m□K)。碳素是以碳元素的同素异形体、以碳元素为主的非金属固体材料的统称,包括石墨、金刚石等含碳层101都是碳素,碳素材料的特性之一是导电导热性强。
可选地,加热件对皮肤进行加热,可以是接触的;也可以是非接触的。冷敷件10对皮肤进行冷却也不一定要接触,只要能够降低皮肤温度即可。电、磁或电磁对皮肤的作用深度范围比表层大,可以实现皮肤不同深度和层次的不同温度和刺激效果。例如表层以下的皮肤组织加热到45度至80度之间,然后表皮温度随深层温度上升而上升。由于电极头可以有多组。同一时刻可以只有部分电极头工作。只要满足同一时刻冷却面的面积比 电、磁或电磁对皮肤的作用面积大即可。这样冷却面能够充分且均匀的对皮肤进行降温。防止温度过高,或者温度不均匀而引起刺痛感等不适的感觉。加热件和冷敷件10共同作用,使得表层以下的皮肤组织和表皮的温度达到一个平衡,起到更好的美容效果。例如加热件的工作功率满足以下条件:将表层以下的皮肤组织加热到45度至80度之间;制冷件20的工作功率满足以下条件:将表层温度降至15度至45度之间。此时,就能够达到一个有好的美容效果的温度平衡。
可选地,冷敷件10的冷却面为接触至少部分皮肤或其邻近组织的接触面10a,加热件是电极头组,电极头组具有与皮肤接触的端面,端面的总面积比接触面10a的面积小。
可选地,加热件的工作功率满足以下条件:将表层以下的皮肤组织加热到50度至65度之间;
冷敷件10的工作功率满足以下条件:将表层温度降至30度至45度之间。
可选地,本申请文件中提到的美容仪、接触式美容仪等均可以不需要冷敷件10,仅保留制冷件20,此时制冷件20的制冷侧可以直接和皮肤接触。
可选地,在不需要冷敷件10的基础上,制冷件20的制冷侧可以覆盖一些介质层,比如绝缘层。
上述各个方案、实施例在不矛盾的情况下可以任意组合,另外,关于上述实施例所提到的光疗灯设置于冷敷件和散热件之间的情况,可以参照图37,图37是光疗灯的位置示意图。
如图37所示,光疗灯13设置于冷敷件10和散热件30之间,在上述实施例设置有制冷件的情况下,制冷件20可以位于冷敷件10和散热件30之间,且位于光疗灯13之后。
以上所述仅为本申请的实施方式,并非因此限制本申请的专利范围,凡是利用本申请说明书及附图内容所作的等效结构或等效流程变换,或直接或间接运用在其他相关的技术领域,均同理包括在本申请的专利保护范围内。

Claims (136)

  1. 一种接触式美容仪,其特征在于,包括:
    冷敷件,具有接触面、传导面,所述接触面用于接触皮肤部位;
    制冷件和散热件,所述制冷件的制冷侧与所述冷敷件的传导面热耦合,以对所述冷敷件降温,所述散热件与所述制冷件的发热侧热耦合,以对所述制冷件进行散热;
    至少两个电极头,所述电极头与所述冷敷件相对固定。
  2. 根据权利要求1所述的接触式美容仪,其特征在于,包括:
    含碳层,设置于所述散热件表面。
  3. 根据权利要求2所述的接触式美容仪,其特征在于,所述含碳层贴合、涂覆或镀设于所述散热件外周面。
  4. 根据权利要求1所述的接触式美容仪,其特征在于,包括:
    含碳层,设置于所述制冷件与所述散热件之间。
  5. 根据权利要求1所述的接触式美容仪,其特征在于,包括:
    含碳层,至少部分嵌设于所述散热件之内。
  6. 根据权利要求5所述的接触式美容仪,其特征在于,所述含碳层以导热框架的结构形式嵌设于所述散热件之内,并且所述导热框架的一端邻近所述散热件。
  7. 根据权利要求2至6任一项所述的接触式美容仪,其特征在于,所述含碳层包括石墨烯和/或碳素材料。
  8. 根据权利要求1所述的接触式美容仪,其特征在于,包括:
    光疗灯,设置于所述冷敷件和所述散热件之间或设置于所述冷敷件侧边;
    其中,所述冷敷件为透光体,所述光疗灯发出的光线能够通过所述冷敷件出射。
  9. 一种皮肤保养组件,其特征在于,包括:
    冷敷件,具有接触面,所述接触面用于接触皮肤部位并进行降温;
    制冷件,具有制冷面,所述制冷面用于制冷;
    导冷件,所述导冷件位于所述冷敷件和所述制冷件之间,所述接触面设置于所述冷敷件背离所述制冷件一侧,所述制冷面设置于所述制冷件靠近所述冷敷件的一侧;
    至少两个电极头,所述电极头与所述冷敷件相对固定。
  10. 根据权利要求9所述的皮肤保养组件,其特征在于,包括:
    散热件,所述散热件与所述制冷件的发热侧热耦合;
    含碳层,设置于所述散热件表面。
  11. 根据权利要求10所述的皮肤保养组件,其特征在于,所述含碳层贴合、涂覆或镀设于所述散热件外周面。
  12. 根据权利要求9所述的皮肤保养组件,其特征在于,包括:
    散热件,所述散热件与所述制冷件的发热侧热耦合;
    含碳层,设置于所述制冷件与所述散热件之间。
  13. 根据权利要求9所述的皮肤保养组件,其特征在于,包括:
    散热件,所述散热件与所述制冷件的发热侧热耦合;
    含碳层,至少部分嵌设于所述散热件之内。
  14. 根据权利要求13所述的皮肤保养组件,其特征在于,所述含碳层以导热框架的结构形式嵌设于所述散热件之内,并且所述导热框架的一端邻近所述散热件。
  15. 根据权利要求10至14任一项所述的皮肤保养组件,其特征在于,所述含碳层包括石墨烯和/或碳素材料。
  16. 根据权利要求10所述的皮肤保养组件,其特征在于,包括:
    光疗灯,设置于所述冷敷件和所述散热件之间或设置于所述冷敷件侧边;
    其中,所述冷敷件为透光体,所述光疗灯发出的光线能够通过所述冷敷件出射。
  17. 一种美容仪,其特征在于,包括:
    冷敷晶体,用于与皮肤接触以进行冷却;
    制冷件,具有制冷侧和散热侧;
    导冷层,位于所示冷敷晶体和所述制冷件的所述制冷侧之间;
    夹紧机构,用于夹紧所述冷敷晶体、所述导冷层和所述制冷件的组合体;
    至少两个电极头,所述电极头与所述冷敷件或所述夹紧结构相对固定。
  18. 根据权利要求17所述的美容仪,其特征在于,包括:
    散热件,所述散热件与所述制冷件的发热侧热耦合;
    含碳层,设置于所述散热件表面。
  19. 根据权利要求18所述的美容仪,其特征在于,所述含碳层贴合、涂覆或镀设于所述散热件外周面。
  20. 根据权利要求17所述的美容仪,其特征在于,包括:
    散热件,所述散热件与所述制冷件的发热侧热耦合;
    含碳层,设置于所述制冷件与所述散热件之间。
  21. 根据权利要求17所述的美容仪,其特征在于,包括:
    散热件,所述散热件与所述制冷件的发热侧热耦合;
    含碳层,至少部分嵌设于所述散热件之内。
  22. 根据权利要求21所述的美容仪,其特征在于,所述含碳层以导热框架的结构形式嵌设于所述散热件之内,并且所述导热框架的一端邻近所述散热件。
  23. 根据权利要求18至22任一项所述的美容仪,其特征在于,所述含碳层包括石墨烯和/或碳素材料。
  24. 根据权利要求18所述的美容仪,其特征在于,包括:
    光疗灯,设置于所述冷敷晶体和所述散热件之间或设置于所述冷敷晶体侧边;
    其中,所述冷敷晶体为透光体,所述光疗灯发出的光线能够通过所述冷敷晶体出射。
  25. 一种皮肤保养组件,其特征在于,包括:
    冷敷件,具有接触面和传导面,所述接触面用于接触所述皮肤部位并进行降温;
    至少两个电极头,用于对所述皮肤部位进行放电加热,所述电极头与所述冷敷件相对固定;
    制冷件,具有制冷面,所述制冷面用于制冷,并与所述传导面热耦合;
    所述冷敷件与所述制冷件层叠设置。
  26. 根据权利要求25所述的皮肤保养组件,其特征在于,包括:
    散热件,所述散热件与所述制冷件的发热侧热耦合;
    含碳层,设置于所述散热件表面。
  27. 根据权利要求26所述的皮肤保养组件,其特征在于,所述含碳层贴合、涂覆或镀设于所述散热件外周面。
  28. 根据权利要求25所述的皮肤保养组件,其特征在于,包括:
    散热件,所述散热件与所述制冷件的发热侧热耦合;
    含碳层,设置于所述制冷件与所述散热件之间。
  29. 根据权利要求25所述的皮肤保养组件,其特征在于,包括:
    散热件,所述散热件与所述制冷件的发热侧热耦合;
    含碳层,至少部分嵌设于所述散热件之内。
  30. 根据权利要求29所述的皮肤保养组件,其特征在于,所述含碳层以导热框架的结构形式嵌设于所述散热件之内,并且所述导热框架的一端邻近所述散热件。
  31. 根据权利要求26至30任一项所述的皮肤保养组件,其特征在于,所述含碳层包括石墨烯和/或碳素材料。
  32. 根据权利要求26所述的皮肤保养组件,其特征在于,包括:
    光疗灯,设置于所述冷敷件和所述散热件之间或设置于所述冷敷件侧边;
    其中,所述冷敷件为透光体,所述光疗灯发出的光线能够通过所述冷敷件出射。
  33. 一种皮肤保养组件,其特征在于,包括:
    至少两个电极头,用于对皮肤部位进行放电加热;
    降温件,包括接触面和传导面,所述接触面用于接触所述皮肤部位并进行降温,所述传导面用于传导热量,所述降温件设置有贯穿所述接触面的贯穿孔;
    固定件,至少部分位于所述降温件除所述接触面外的一侧;
    其中,所述电极头一端位于所述降温件的所述接触面一侧,另一端与所述固定件的剩余部分通过所述贯穿孔连接,进而将所述电极头与所述降温件相对固定。
  34. 根据权利要求33所述的皮肤保养组件,其特征在于,包括:
    散热件,所述散热件与所述降温件的传导面热耦合;
    含碳层,设置于所述散热件表面。31.根据权利要求30所述的皮肤保养组件,其特征在于,所述含碳层贴合、涂覆或镀设于所述散热件外周面。
  35. 根据权利要求33所述的皮肤保养组件,其特征在于,包括:
    散热件,所述散热件与所述降温件的传导面热耦合;
    含碳层,设置于所述降温件与所述散热件之间。
  36. 根据权利要求33所述的皮肤保养组件,其特征在于,包括:
    散热件,所述散热件与所述降温件的传导面热耦合;
    含碳层,至少部分嵌设于所述散热件之内。
  37. 根据权利要求36所述的皮肤保养组件,其特征在于,所述含碳层以导热框架的结构形式嵌设于所述散热件之内,并且所述导热框架的一端邻近所述散热件。
  38. 根据权利要求33至37任一项所述的皮肤保养组件,其特征在于,所述含碳层包括石墨烯和/或碳素材料。
  39. 一种接触式美容仪,其特征在于,包括:
    冷敷件,具有接触面、传导面,所述接触面用于接触皮肤部位;
    制冷件和散热件,所述制冷件的制冷侧与所述冷敷件的传导面热耦合,以对所述冷敷件降温,所述散热件与所述制冷件的发热侧热耦合,以对所述制冷件进行散热;
    至少两个电极头,所述电极头包括安装部与滚动部,所述滚动部滚动安装于所述安装部,所述安装部与所述冷敷件相对固定。
  40. 根据权利要求39所述的接触式美容仪,其特征在于,包括:
    含碳层,设置于所述散热件表面。
  41. 根据权利要求40所述的接触式美容仪,其特征在于,所述含碳层贴合、涂覆或镀设于所述散 热件外周面。
  42. 根据权利要求39所述的接触式美容仪,其特征在于,包括:
    含碳层,设置于所述制冷件与所述散热件之间。
  43. 根据权利要求39所述的接触式美容仪,其特征在于,包括:
    含碳层,至少部分嵌设于所述散热件之内。
  44. 根据权利要求43所述的接触式美容仪,其特征在于,所述含碳层以导热框架的结构形式嵌设于所述散热件之内,并且所述导热框架的一端邻近所述散热件。
  45. 根据权利要求40至44任一项所述的接触式美容仪,其特征在于,所述含碳层包括石墨烯和/或碳素材料。
  46. 根据权利要求39所述的接触式美容仪,其特征在于,包括:
    光疗灯,设置于所述冷敷件和所述散热件之间或设置于所述冷敷件侧边;
    其中,所述冷敷件为透光体,所述光疗灯发出的光线能够通过所述冷敷件出射。
  47. 一种美容仪,其特征在于,包括:
    冷敷件,用于与皮肤接触以进行冷却;
    制冷件,具有制冷侧和发热侧,所述制冷侧与所述冷敷件热耦合;
    第一壳体,具有第一开口;
    至少两个电极头,所述电极头与所述冷敷件或所述第一壳体相对固定;其中,所述制冷件位于所述第一壳体内侧,所述冷敷件与所述皮肤接触的一侧暴露于所述壳体的所述第一开口位置,所述冷敷件的另一侧用于封堵所述壳体的所述第一开口。
  48. 根据权利要求47所述的美容仪,其特征在于,包括:
    散热件,所述散热件与所述制冷件的发热侧热耦合;
    含碳层,设置于所述散热件表面。
  49. 根据权利要求48所述的美容仪,其特征在于,所述含碳层贴合、涂覆或镀设于所述散热件外周面。
  50. 根据权利要求47所述的美容仪,其特征在于,包括:
    散热件,所述散热件与所述制冷件的发热侧热耦合;
    含碳层,设置于所述制冷件与所述散热件之间。
  51. 根据权利要求47所述的美容仪,其特征在于,包括:
    散热件,所述散热件与所述制冷件的发热侧热耦合;
    含碳层,至少部分嵌设于所述散热件之内。
  52. 根据权利要求51所述的美容仪,其特征在于,所述含碳层以导热框架的结构形式嵌设于所述散热件之内,并且所述导热框架的一端邻近所述散热件。
  53. 根据权利要求48至52任一项所述的美容仪,其特征在于,所述含碳层包括石墨烯和/或碳素材料。
  54. 根据权利要求48所述的美容仪,其特征在于,包括:
    光疗灯,设置于所述冷敷件和所述散热件之间或设置于所述冷敷件侧边;
    其中,所述冷敷件为透光体,所述光疗灯发出的光线能够通过所述冷敷件出射。
  55. 一种美容仪,其特征在于,包括:
    热源;
    散热件,一端与所述热源热耦合,另一端向所述美容仪尾部延伸;
    热管,一端与所述散热件邻近所述热源的所述一端或所述热源热耦合,另一端朝远离所述热源 的方向延伸,且与所述散热件热耦合;
    至少两个电极头,所述电极头与所述散热件相对固定。
  56. 根据权利要求55所述的美容仪,其特征在于,包括:
    含碳层,设置于所述散热件表面。
  57. 根据权利要求56所述的美容仪,其特征在于,所述含碳层贴合、涂覆或镀设于所述散热件外周面。
  58. 根据权利要求55所述的美容仪,其特征在于,包括:制冷件,具有制冷面,所述制冷面用于制冷;
    含碳层,设置于所述制冷件与所述散热件之间。
  59. 根据权利要求55所述的美容仪,其特征在于,包括:
    含碳层,至少部分嵌设于所述散热件之内。
  60. 根据权利要求59所述的美容仪,其特征在于,所述含碳层以导热框架的结构形式嵌设于所述散热件之内,并且所述导热框架的一端邻近所述散热件。
  61. 根据权利要求56至60任一项所述的美容仪,其特征在于,所述含碳层包括石墨烯和/或碳素材料。
  62. 一种美容仪,其特征在于,包括:
    热源;
    散热件,一端与所述热源热耦合,另一端向所述美容仪尾部延伸;
    气流驱动器,相对所述散热件设置,用于将所述散热件或所述热源附近的气流驱动,使所述气流流动;
    至少两个电极头,所述电极头与所述散热件相对固定。
  63. 根据权利要求62所述的美容仪,其特征在于,包括:
    含碳层,设置于所述散热件表面。
  64. 根据权利要求63所述的美容仪,其特征在于,
    所述含碳层贴合、涂覆或镀设于所述散热件外周面。
  65. 根据权利要求62所述的美容仪,其特征在于,包括:
    制冷件,具有制冷面,所述制冷面用于制冷;
    含碳层,设置于所述制冷件与所述散热件之间。
  66. 根据权利要求62所述的美容仪,其特征在于,包括:
    含碳层,至少部分嵌设于所述散热件之内。
  67. 根据权利要求66所述的美容仪,其特征在于,所述含碳层以导热框架的结构形式嵌设于所述散热件之内,并且所述导热框架的一端邻近所述散热件。
  68. 根据权利要求63至67任一项所述的美容仪,其特征在于,所述含碳层包括石墨烯和/或碳素材料。
  69. 一种美容仪的设备主体,其特征在于,包括:
    操作头,包括至少两个电极头和制冷件,所述电极头与散热件相对固定,所述制冷件具有制冷面用于制冷;
    散热件,具有热耦合面,用以与操作头的发热面热耦合,以将来自操作头的热量散发出去,所述操作头具有接触面和所述发热面,所述接触面用于接触皮肤部位并对所述皮肤部位进行降温;
    其中,所述散热件自所述设备主体的头部延伸至所述设备主体的尾部。
  70. 根据权利要求69所述的美容仪的设备主体,其特征在于,包括:
    含碳层,设置于所述散热件表面。
  71. 根据权利要求70所述的美容仪的设备主体,其特征在于,所述含碳层贴合、涂覆或镀设于所述散热件外周面。
  72. 根据权利要求69所述的美容仪的设备主体,其特征在于,包括:
    含碳层,设置于所述制冷件与所述散热件之间。
  73. 根据权利要求69所述的美容仪的设备主体,其特征在于,包括:
    含碳层,至少部分嵌设于所述散热件之内。
  74. 根据权利要求73所述的美容仪的设备主体,其特征在于,所述含碳层以导热框架的结构形式嵌设于所述散热件之内,并且所述导热框架的一端邻近所述散热件。
  75. 根据权利要求70至74任一项所述的美容仪的设备主体,其特征在于,所述含碳层包括石墨烯和/或碳素材料。
  76. 一种接触式美容仪,其特征在于,包括:
    操作头,包括至少两个电极头和制冷件,所述电极头与所述电路板电性耦接,所述制冷件具有制冷面用于制冷,所述操作头的接触面用于接触皮肤部位并对所述皮肤部位进行降温;
    安装支架,具有第一安装位和第二安装位,所述操作头通过所述第一安装位固定于所述安装支架;
    电路板,所述电路板通过所述第二安装位固定于所述安装支架;
    其中,所述操作头位于所述美容仪的头部,所述安装支架自所述美容仪的头部延伸至所述美容仪的尾部。
  77. 根据权利要求76所述的接触式美容仪,其特征在于,包括:
    散热件,所述散热件与所述制冷件的发热侧热耦合;
    含碳层,设置于所述散热件表面。
  78. 根据权利要求77所述的接触式美容仪,其特征在于,所述含碳层贴合、涂覆或镀设于所述散热件外周面。
  79. 根据权利要求76所述的接触式美容仪,其特征在于,包括:
    散热件,所述散热件与所述制冷件的发热侧热耦合;
    含碳层,设置于所述制冷件与所述散热件之间。
  80. 根据权利要求76所述的接触式美容仪,其特征在于,包括:
    散热件,所述散热件与所述制冷件的发热侧热耦合;
    含碳层,至少部分嵌设于所述散热件之内。
  81. 根据权利要求80所述的接触式美容仪,其特征在于,所述含碳层以导热框架的结构形式嵌设于所述散热件之内,并且所述导热框架的一端邻近所述散热件。
  82. 根据权利要求77至81任一项所述的接触式美容仪,其特征在于,所述含碳层包括石墨烯和/或碳素材料。
  83. 一种美容仪,其特征在于,包括:
    安装支架;
    操作头,包括至少两个电极头和制冷件,所述电极头与所述安装支架或壳体相对固定,所述制冷件具有制冷面用于制冷;
    支持元件,与所述安装支架相对固定,用于支持所述操作头工作;
    壳体,所述壳体套设于所述安装支架,并固定于所述安装支架。
  84. 根据权利要求83所述的美容仪,其特征在于,包括:
    散热件,所述散热件与所述制冷件的发热侧热耦合;
    含碳层,设置于所述散热件表面。
  85. 根据权利要求84所述的美容仪,其特征在于,所述含碳层贴合、涂覆或镀设于所述散热件外周面。
  86. 根据权利要求83所述的美容仪,其特征在于,包括:
    散热件,所述散热件与所述制冷件的发热侧热耦合;
    含碳层,设置于所述制冷件与所述散热件之间。
  87. 根据权利要求83所述的美容仪,其特征在于,包括:
    散热件,所述散热件与所述制冷件的发热侧热耦合;
    含碳层,至少部分嵌设于所述散热件之内。
  88. 根据权利要求87所述的美容仪,其特征在于,
    所述含碳层以导热框架的结构形式嵌设于所述散热件之内,并且所述导热框架的一端邻近所述散热件。
  89. 根据权利要求84至88任一项所述的美容仪,其特征在于,
    所述含碳层包括石墨烯和/或碳素材料。
  90. 一种美容仪,其特征在于,包括:
    热源;
    散热件,一端与所述热源热耦合,另一端向所述美容仪尾部延伸;
    其中,所述散热件一侧具有散热鳍片结构;
    至少两个电极头,所述电极头与所述散热件相对固定。
  91. 根据权利要求90所述的美容仪,其特征在于,包括:
    含碳层,设置于所述散热件表面。
  92. 根据权利要求91所述的美容仪,其特征在于,
    所述含碳层贴合、涂覆或镀设于所述散热件外周面。
  93. 根据权利要求90所述的美容仪,其特征在于,包括:
    制冷件,具有制冷面,所述制冷面用于制冷;
    含碳层,设置于所述制冷件与所述散热件之间。
  94. 根据权利要求90所述的美容仪,其特征在于,包括:
    含碳层,至少部分嵌设于所述散热件之内。
  95. 根据权利要求94所述的美容仪,其特征在于,
    所述含碳层以导热框架的结构形式嵌设于所述散热件之内,并且所述导热框架的一端邻近所述散热件。
  96. 根据权利要求91至92任一项所述的美容仪,其特征在于,所述含碳层包括石墨烯和/或碳素材料。
  97. 一种皮肤保养组件,其特征在于,包括:
    冷敷件,具有接触面、传导面,所述接触面用于接触皮肤部位;
    制冷件和散热件,所述制冷件的所述制冷侧与所述冷敷件的所述传导面热耦合,以对所述冷敷件降温,所述散热件与所述制冷件的发热侧热耦合,以将来自所述制冷件的热量散发出去;
    至少两个电极头,用于对所述皮肤部位进行放电加热,所述电极头与所述冷敷件相对固定;
    第一盖体,将所述冷敷件和所述制冷件固定于所述散热件。
  98. 根据权利要求97所述的皮肤保养组件,其特征在于,包括:含碳层,设置于所述散热件表面。
  99. 根据权利要求98所述的皮肤保养组件,其特征在于,所述含碳层贴合、涂覆或镀设于所述散热件外周面。
  100. 根据权利要求97所述的皮肤保养组件,其特征在于,包括:
    含碳层,设置于所述制冷件与所述散热件之间。
  101. 根据权利要求97所述的皮肤保养组件,其特征在于,包括:
    含碳层,至少部分嵌设于所述散热件之内。
  102. 根据权利要求101所述的皮肤保养组件,其特征在于,所述含碳层以导热框架的结构形式嵌设于所述散热件之内,并且所述导热框架的一端邻近所述散热件。
  103. 根据权利要求98至102任一项所述的皮肤保养组件,其特征在于,所述含碳层包括石墨烯和/或碳素材料。
  104. 根据权利要求97所述的皮肤保养组件,其特征在于,包括:
    光疗灯,设置于所述冷敷件和所述散热件之间或设置于所述冷敷件侧边;
    其中,所述冷敷件为透光体,所述光疗灯发出的光线能够通过所述冷敷件出射。
  105. 一种皮肤保养组件,其特征在于,包括:
    冷敷件,具有接触面、传导面,所述接触面用于接触皮肤部位;
    制冷件和散热件,所述制冷件的所述制冷侧与所述冷敷件的所述传导面热耦合,以对所述冷敷件降温,所述散热件与所述制冷件的发热侧热耦合,以将来自所述制冷件的热量散发出去;
    第一盖体,将所述冷敷件相对固定于所述散热件;
    第二盖体,至少部分位于所述第一盖体和所述散热件之间,且对所述制冷机进行限位;
    至少两个电极头,所述电极头与所述冷敷件、所述第一盖体或所述第二盖体相对固定。
  106. 根据权利要求105所述的皮肤保养组件,其特征在于,包括:
    含碳层,设置于所述散热件表面。
  107. 根据权利要求106所述的皮肤保养组件,其特征在于,所述含碳层贴合、涂覆或镀设于所述散热件外周面。
  108. 根据权利要求105所述的皮肤保养组件,其特征在于,包括:
    含碳层,设置于所述制冷件与所述散热件之间。
  109. 根据权利要求105所述的皮肤保养组件,其特征在于,包括:
    含碳层,至少部分嵌设于所述散热件之内。
  110. 根据权利要求109所述的皮肤保养组件,其特征在于,所述含碳层以导热框架的结构形式嵌设于所述散热件之内,并且所述导热框架的一端邻近所述散热件。
  111. 根据权利要求106至110任一项所述的皮肤保养组件,其特征在于,所述含碳层包括石墨烯和/或碳素材料。
  112. 根据权利要求105所述的皮肤保养组件,其特征在于,包括:
    光疗灯,设置于所述冷敷件和所述散热件之间或设置于所述冷敷件侧边;
    其中,所述冷敷件为透光体,所述光疗灯发出的光线能够通过所述冷敷件出射。
  113. 一种美容仪,其特征在于,包括:
    冷敷件,用于与皮肤接触以进行冷却;
    制冷件,具有制冷侧和发热侧,所述制冷侧与所述冷敷件热耦合;
    第一电极头组,包括至少两个电极头且与所述冷敷件相对设置;
    第二电极头组,包括至少两个电极头且与所述冷敷件相对设置,且与所述第一电极头组相互绝缘;
    其中,所述第一电极头组与所述第二电极头组的高度不同。
  114. 根据权利要求113所述的美容仪,其特征在于,包括:
    散热件,所述散热件与所述制冷件的发热侧热耦合;
    含碳层,设置于所述散热件表面。
  115. 根据权利要求114所述的美容仪,其特征在于,
    所述含碳层贴合、涂覆或镀设于所述散热件外周面。
  116. 根据权利要求113所述的美容仪,其特征在于,包括:
    散热件,所述散热件与所述制冷件的发热侧热耦合;
    含碳层,设置于所述制冷件与所述散热件之间。
  117. 根据权利要求113所述的美容仪,其特征在于,包括:
    散热件,所述散热件与所述制冷件的发热侧热耦合;
    含碳层,至少部分嵌设于所述散热件之内。
  118. 根据权利要求117所述的美容仪,其特征在于,所述含碳层以导热框架的结构形式嵌设于所述散热件之内,并且所述导热框架的一端邻近所述散热件。
  119. 根据权利要求114至118任一项所述的美容仪,其特征在于,所述含碳层包括石墨烯和/或碳素材料。
  120. 根据权利要求114所述的美容仪,其特征在于,包括:
    光疗灯,设置于所述冷敷件和所述散热件之间或设置于所述冷敷件侧边;
    其中,所述冷敷件为透光体,所述光疗灯发出的光线能够通过所述冷敷件出射。
  121. 一种皮肤保养组件,其特征在于,包括:
    冷敷件,具有接触面、传导面,所述接触面用于接触皮肤部位;
    制冷件和散热件,所述制冷件的所述制冷侧与所述冷敷件的所述传导面热耦合,以对所述冷敷件降温,所述散热件与所述制冷件的发热侧热耦合,以将来自所述制冷件的热量散发出去;
    第一盖体,将所述冷敷件相对固定于所述散热件;
    至少两个电极头,与所述第一盖体相对固定。
  122. 根据权利要求121所述的皮肤保养组件,其特征在于,包括:
    含碳层,设置于所述散热件表面。
  123. 根据权利要求122所述的皮肤保养组件,其特征在于,所述含碳层贴合、涂覆或镀设于所述散热件外周面。
  124. 根据权利要求121所述的皮肤保养组件,其特征在于,包括:
    含碳层,设置于所述制冷件与所述散热件之间。
  125. 根据权利要求121所述的皮肤保养组件,其特征在于,包括:
    含碳层,至少部分嵌设于所述散热件之内。
  126. 根据权利要求125所述的皮肤保养组件,其特征在于,所述含碳层以导热框架的结构形式嵌设于所述散热件之内,并且所述导热框架的一端邻近所述散热件。
  127. 根据权利要求122至126任一项所述的皮肤保养组件,其特征在于,所述含碳层包括石墨烯和/或碳素材料。
  128. 根据权利要求121所述的皮肤保养组件,其特征在于,包括:
    光疗灯,设置于所述冷敷件和所述散热件之间或设置于所述冷敷件侧边;
    其中,所述冷敷件为透光体,所述光疗灯发出的光线能够通过所述冷敷件出射。
  129. 一种美容仪,其特征在于,包括:
    加热件,所述加热件以电、磁或电磁方式对皮肤进行加热;
    冷敷件,具有冷却面、传导面,所述冷却面用于对至少部分所述皮肤或其邻近组织进行冷却;
    制冷件,所述制冷件的制冷侧与所述冷敷件的传导面热耦合,以获取所述冷敷件的热量;
    至少两个电极头,所述电极头与所述冷敷件相对固定;
    其中,所述冷敷件对所述皮肤或其邻近组织的表层进行冷却,所述电、磁或电磁对所述皮肤的作用深度范围比所述表层大,且同一时刻,所述冷却面的面积比所述电、磁或电磁对所述皮肤的作用面积大;
    所述加热件的工作功率满足以下条件:将所述表层以下的所述皮肤组织加热到45度至80度之间;
    所述冷敷件的工作功率满足以下条件:将所述表层温度降至15度至45度之间。
  130. 根据权利要求129所述的美容仪,其特征在于,包括:
    散热件,所述散热件与所述制冷件的发热侧热耦合;
    含碳层,设置于所述散热件表面。
  131. 根据权利要求130所述的美容仪,其特征在于,所述含碳层贴合、涂覆或镀设于所述散热件外周面。
  132. 根据权利要求129所述的美容仪,其特征在于,包括:
    散热件,所述散热件与所述制冷件的发热侧热耦合;
    含碳层,设置于所述制冷件与所述散热件之间。
  133. 根据权利要求129所述的美容仪,其特征在于,包括:
    散热件,所述散热件与所述制冷件的发热侧热耦合;
    含碳层,至少部分嵌设于所述散热件之内。
  134. 根据权利要求133所述的美容仪,其特征在于,所述含碳层以导热框架的结构形式嵌设于所述散热件之内,并且所述导热框架的一端邻近所述散热件。
  135. 根据权利要求130至134任一项所述的美容仪,其特征在于,所述含碳层包括石墨烯和/或碳素材料。
  136. 根据权利要求129所述的美容仪,其特征在于,包括:
    光疗灯,设置于所述冷敷件和所述散热件之间或设置于所述冷敷件侧边;
    其中,所述冷敷件为透光体,所述光疗灯发出的光线能够通过所述冷敷件出射。
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TW202312946A (zh) 2023-04-01
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