WO2015043489A1 - 电热直发梳 - Google Patents

电热直发梳 Download PDF

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Publication number
WO2015043489A1
WO2015043489A1 PCT/CN2014/087445 CN2014087445W WO2015043489A1 WO 2015043489 A1 WO2015043489 A1 WO 2015043489A1 CN 2014087445 W CN2014087445 W CN 2014087445W WO 2015043489 A1 WO2015043489 A1 WO 2015043489A1
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WO
WIPO (PCT)
Prior art keywords
comb
carrier
electric heating
heat conducting
electric
Prior art date
Application number
PCT/CN2014/087445
Other languages
English (en)
French (fr)
Inventor
张克勇
杜玉凤
Original Assignee
张克勇
杜玉凤
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Priority claimed from CN201320603327.9U external-priority patent/CN203575846U/zh
Priority claimed from CN201320603214.9U external-priority patent/CN203692794U/zh
Priority claimed from CN201320711164.6U external-priority patent/CN203646699U/zh
Priority claimed from CN201320711459.3U external-priority patent/CN203646700U/zh
Priority claimed from CN201420480003.5U external-priority patent/CN204120448U/zh
Priority claimed from CN201420480002.0U external-priority patent/CN204120447U/zh
Application filed by 张克勇, 杜玉凤 filed Critical 张克勇
Publication of WO2015043489A1 publication Critical patent/WO2015043489A1/zh

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Classifications

    • AHUMAN NECESSITIES
    • A45HAND OR TRAVELLING ARTICLES
    • A45DHAIRDRESSING OR SHAVING EQUIPMENT; EQUIPMENT FOR COSMETICS OR COSMETIC TREATMENTS, e.g. FOR MANICURING OR PEDICURING
    • A45D20/00Hair drying devices; Accessories therefor
    • A45D20/48Hair-drying combs or hair-drying brushes, with internal heating means
    • AHUMAN NECESSITIES
    • A45HAND OR TRAVELLING ARTICLES
    • A45DHAIRDRESSING OR SHAVING EQUIPMENT; EQUIPMENT FOR COSMETICS OR COSMETIC TREATMENTS, e.g. FOR MANICURING OR PEDICURING
    • A45D2/00Hair-curling or hair-waving appliances ; Appliances for hair dressing treatment not otherwise provided for
    • A45D2/001Hair straightening appliances
    • A45D2/002Hair straightening appliances with combs
    • AHUMAN NECESSITIES
    • A46BRUSHWARE
    • A46BBRUSHES
    • A46B15/00Other brushes; Brushes with additional arrangements
    • A46B15/0002Arrangements for enhancing monitoring or controlling the brushing process
    • A46B15/0016Arrangements for enhancing monitoring or controlling the brushing process with enhancing means
    • A46B15/003Enhancing with heat
    • AHUMAN NECESSITIES
    • A46BRUSHWARE
    • A46BBRUSHES
    • A46B9/00Arrangements of the bristles in the brush body
    • A46B9/02Position or arrangement of bristles in relation to surface of the brush body, e.g. inclined, in rows, in groups
    • A46B9/023Position or arrangement of bristles in relation to surface of the brush body, e.g. inclined, in rows, in groups arranged like in hair brushes, e.g. hair treatment, dyeing, streaking

Definitions

  • the invention relates to the technical field of daily necessities, in particular to an electric heating straight hair comb.
  • Comb is a tool for combing hair and is one of the tools commonly used in people's daily life.
  • the comb is generally flat and consists of a number of comb teeth and a handle and combs the hair through the comb teeth.
  • Now there are many kinds of combs such as: peach wood comb, sandalwood comb, horn comb and so on.
  • the combs are divided into more than 300 varieties in five series, including practical comb, craft comb, travel comb, high-grade comb, and health comb.
  • the existing comb not only has a single function, but also has a general effect of combing the hair.
  • an object of the present invention is to provide an electric hair straightening comb which can be used for straight hair, combing and perming, so that the function is more abundant, and the hair forming time can be accelerated, and the structure is simple and the operation is convenient, and The heating rate is fast and the temperature is uniform.
  • the present invention provides an electric heating straight hair comb comprising a carrier body, an electric heating plate and a plurality of heat conducting comb teeth, wherein the heat conducting comb teeth and the electric heating plate are respectively disposed on the carrier body.
  • the electric heating plate In the operating state, the electric heating plate generates heat and is conducted to the heat conducting comb via the carrier.
  • the heat conducting comb is disposed on a front surface of the carrier, the electric heating plate is disposed on a back surface of the carrier, and the electric heating plate is connected to a wire or a battery.
  • the material of the carrier and the heat conducting comb is metal or non-metal.
  • the outer cover of the carrier body is covered with a protective rubber sleeve, and a handle is connected to the carrier plate.
  • the thermally conductive comb has a non-thermal conductive member on the tooth tip;
  • the periphery of the heat conducting comb is provided with at least one non-thermal comb.
  • the heat conducting comb is a plate-shaped comb piece, the comb piece and the electric heating plate are respectively disposed on the carrier, and each of the The comb-shaped piece is placed across the carrier; the electro-thermal straight hair comb is in an operating state, and the electric heating plate generates heat and is conducted to the comb piece via the carrier.
  • the carrier is provided with a plurality of grooves, and the comb pieces are engaged in the grooves.
  • the electric heating plate is a positive temperature coefficient thermistor heating plate, a ceramic electric heating plate or a thick film heating plate; and/or
  • the heat conducting comb is integrally formed with the carrier; or the carrier is integrally formed with the electric heating plate.
  • the electrothermal straight hair comb According to the electrothermal straight hair comb according to the present invention, at least two rows of the heat conducting comb teeth are disposed on the carrier body in parallel with each other, and the heat conducting comb teeth of the same row are evenly arranged, and the heat conduction of the adjacent rows is The comb teeth are staggered.
  • the carrier is a carrier plate, an arc or a circular carrier.
  • the present invention also provides an electric heating straight hair comb comprising a carrier body, a plurality of electric heating sheets and a plurality of heat conducting comb teeth, wherein the heat conducting comb teeth are disposed on the carrier body, and the heat conducting comb teeth are hollow structures, all or The electric heating sheet is disposed in a part of the heat conducting comb teeth; and the electric heating sheet generates heat conduction to the heat conducting comb teeth.
  • the electrothermal straight hair comb according to the present invention, the heat conducting comb is disposed on a front surface of the carrier, the back side of the carrier is provided with a connecting plate, and the connecting plate is connected to the electric heating sheet,
  • the connection plate is connected to a wire or battery.
  • the carrier and the heat conducting comb are made of metal or non-metal.
  • the outer cover of the carrier body is covered with a protective rubber sleeve, and a handle is connected to the carrier body.
  • the heat-conductive comb teeth are provided with non-heat-conducting members on the tooth tips.
  • At least one turn of the non-conductive comb teeth is provided on the periphery of the heat conducting comb.
  • the electric heating sheet is a positive temperature coefficient thermistor heating plate, a ceramic electric heating plate or a thick film heating plate.
  • the heat conducting comb is integrally formed with the carrier.
  • the electrothermal straight hair comb According to the electrothermal straight hair comb according to the present invention, at least two rows of the comb teeth are disposed in parallel with each other on the carrier body, the comb teeth of the same row are evenly arranged, and the comb teeth of the adjacent rows are Interlaced settings.
  • the carrier is a carrier plate, an arc or a circular carrier.
  • the present invention also provides an electric heating straight hair comb comprising a carrier body, an electric heating plate and a plurality of comb teeth, wherein the comb tooth member and the electric heating plate are respectively disposed on the carrier body, and the comb teeth
  • the piece is detachably connected to the carrier, and the electric heating plate generates heat in the working state, and the electric heating plate generates heat and is transmitted to the comb member via the carrier.
  • the carrier is provided with a plurality of grooves, and the comb members are engaged in the grooves.
  • the comb member is a metal comb member
  • the metal comb member includes a rack, a metal comb and a non-thermal member
  • the rack is provided with a row a metal comb having a hollow structure and a first opening at the bottom, the non-thermal conductive member being inserted into the hollow structure through the first opening of the bottom of the metal comb.
  • the non-heat-conducting member is present in a single form, and the single non-heat-conducting member is inserted one by one into the hollow structure of the metal comb; or
  • a plurality of the non-thermally conductive members are fixed to a non-thermally conductive seat to form a row of the non-heat-conducting members, and the non-heat-conducting members are inserted into the hollow structure of the metal comb teeth row by row.
  • the comb member is a metal comb member
  • the metal comb member includes a rack, a metal comb and a non-thermal member
  • the rack is provided with a row a metal comb having a semi-hollow structure and a second opening at the top, the non-heat conducting member being inserted into the semi-hollow structure through the second opening of the top of the metal comb.
  • the comb member is a non-metallic comb member, and the non-metallic comb member is a solid member having no hollow structure.
  • the non-metallic comb members are present in a single form, and the single non-metallic comb members are snap-fitted to the grooves one by one; or
  • a plurality of the non-metallic comb members are fixed to a non-metallic rack to form a row of non-metallic comb members, and each of the non-metallic comb members is respectively engaged with the groove.
  • the electrothermal straight hair comb of the present invention comprises a carrier body, an electric heating plate and a plurality of heat conducting comb teeth.
  • the electric heating plate In the working state, the electric heating plate generates heat and is transmitted to the heat conducting comb teeth via the carrier body, and the hair passes through The heated heat-conducting comb can achieve good straight hair, combing and perm effects.
  • the electrothermal straight hair comb of the present invention comprises a carrier body, an electric heating sheet and a plurality of heat conducting comb teeth, wherein the heat conducting comb teeth are hollow structures, and the electric heating sheet is directly disposed in the heat conducting comb teeth; in the working state, the electricity
  • the heat generating sheet generates heat to the heat conducting comb teeth, so that the hair can achieve good straight hair, combing and perming effects after the heated heat conducting comb teeth.
  • the present invention can be used for straight hair, combing and perming, so that the function is more abundant, and the hair forming time can be accelerated, and the structure is simple and the operation is convenient.
  • the electric heating sheet can be directly disposed in the heat conducting comb teeth, the invention has the advantages of high temperature rising speed and uniform temperature, so that the straight hair, the combing and the perming effect are better.
  • Figure 1 is a perspective view of an electric straight hair comb in a first embodiment of the present invention
  • Figure 2 is a front elevational view of the electric straight hair comb in the first embodiment of the present invention
  • Figure 3 is a side cross-sectional view of the electric straight hair comb in the first embodiment of the present invention.
  • Figure 4 is a perspective view of a carrier plate and a heat conducting comb of an electric straight hair comb according to a first embodiment of the present invention
  • Figure 5 is a rear elevational view of the carrier plate of the electrothermal straight hair comb in the first embodiment of the present invention
  • Figure 6 is a front elevational view of an electric straight hair comb in a second embodiment of the present invention.
  • Figure 7 is a side view of an electric straight hair comb in a second embodiment of the present invention.
  • Figure 8 is a side cross-sectional view showing an electric hair straightening comb in a second embodiment of the present invention.
  • Figure 9 is a perspective view of a carrier plate and a heat conducting comb in a second embodiment of the present invention.
  • Figure 10 is a front elevational view of an electric straight hair comb in a third embodiment of the present invention.
  • Figure 11 is a cross-sectional view showing the electric hair straightening comb in the third embodiment of the present invention.
  • Figure 12 is a perspective view of an electric straight hair comb according to a fourth embodiment of the present invention.
  • Figure 13 is a front elevational view of an electric hair straightening comb in a fourth embodiment of the present invention.
  • Figure 14 is a side cross-sectional view showing an electric hair straightening comb in a fourth embodiment of the present invention.
  • Figure 15A is a perspective view of a carrier plate and a heat conducting comb of an electric straight hair comb according to a fourth embodiment of the present invention.
  • Figure 15B is a rear elevational view of the carrier plate of the electrothermal straight hair comb in the fourth embodiment of the present invention.
  • Figure 16 is a front elevational view of an electric straight hair comb in a fifth embodiment of the present invention.
  • Figure 17 is a side view of an electric straight hair comb in a fifth embodiment of the present invention.
  • Figure 18 is a side cross-sectional view showing an electric hair straightening comb in a fifth embodiment of the present invention.
  • Figure 19A is a perspective view of a carrier plate and a heat conducting comb in a fifth embodiment of the present invention.
  • Figure 19B is a rear elevational view of the carrier plate and the heat conducting comb teeth in the fifth embodiment of the present invention.
  • Figure 20 is a front elevational view of an electric straight hair comb in a sixth embodiment of the present invention.
  • Figure 21 is a cross-sectional view showing the electric hair straightening comb in the sixth embodiment of the present invention.
  • Figure 22 is a perspective view of an electric hair straightening comb in a seventh embodiment of the present invention.
  • Figure 23 is a front elevational view of an electric hair straightening comb in a seventh embodiment of the present invention.
  • Figure 24 is a side cross-sectional view showing an electric hair straightening comb in a seventh embodiment of the present invention.
  • Figure 25 is a perspective view of a carrier and a comb of an electric straight hair comb according to an eighth embodiment of the present invention.
  • Figure 26 is a perspective view of a carrier for an electric straight hair comb according to a ninth embodiment of the present invention.
  • Figure 27 is a perspective view of a comb piece of an electric straight hair comb according to a ninth embodiment of the present invention.
  • Figure 28 is a perspective view of an electric straight hair comb according to a tenth embodiment of the present invention.
  • Figure 29 is a front elevational view of an electric straight hair comb in a tenth embodiment of the present invention.
  • Figure 30 is a side cross-sectional view showing an electric hair straightening comb in a tenth embodiment of the present invention.
  • Figure 31 is a perspective view of a carrier for an electric straight hair comb according to a tenth embodiment of the present invention.
  • Figure 32 is a side view of a carrier for an electric straight hair comb according to a tenth embodiment of the present invention.
  • Figure 33 is a cross-sectional view showing a metal comb member of an electric straight hair comb according to a tenth embodiment of the present invention.
  • Figure 34 is a front elevational view showing the first non-conductive member of the electric hair straightening comb in the tenth embodiment of the present invention.
  • Figure 35 is a front elevational view showing a second non-conductive member of the electric hair straightening comb in the tenth embodiment of the present invention.
  • Figure 36 is a perspective view of an electric straight hair comb in an eleventh embodiment of the present invention.
  • Figure 37 is a front elevational view of an electric straight hair comb in an eleventh embodiment of the present invention.
  • Figure 38 is a side cross-sectional view showing an electric hair straightening comb in an eleventh embodiment of the present invention.
  • Figure 39 is a perspective view of a carrier for an electric straight hair comb according to an eleventh embodiment of the present invention.
  • Figure 40 is a side elevational view of the carrier of the electrothermal straight hair comb in the eleventh embodiment of the present invention.
  • Figure 41 is a perspective view of an electric straight hair comb according to a twelfth embodiment of the present invention.
  • Figure 42 is a longitudinal sectional view of an electric hair straightening comb in a twelfth embodiment of the present invention.
  • Figure 43 is a perspective view of an electric straight hair comb according to a thirteenth embodiment of the present invention.
  • Figure 44 is a front elevational view of an electric straight hair comb in a thirteenth embodiment of the present invention.
  • Figure 45 is a side cross-sectional view showing an electric straight hair comb in a thirteenth embodiment of the present invention.
  • Figure 46 is a perspective view of a carrier for an electric straight hair comb according to a thirteenth embodiment of the present invention.
  • Figure 47 is a side view of a carrier for an electric straight hair comb according to a thirteenth embodiment of the present invention.
  • Figure 48 is a front elevational view showing the non-metallic comb member of the electrothermal straight hair comb in the thirteenth embodiment of the present invention.
  • Figure 49 is a perspective view of an electric straight hair comb in a fourteenth embodiment of the present invention.
  • Figure 50 is a front elevational view of an electric straight hair comb in a fourteenth embodiment of the present invention.
  • Figure 51 is a side cross-sectional view showing an electric hair straightening comb in a fourteenth embodiment of the present invention.
  • Figure 52 is a perspective view of a carrier for an electric straight hair comb according to a fourteenth embodiment of the present invention.
  • Figure 53 is a side view of a carrier for an electric straight hair comb according to a fourteenth embodiment of the present invention.
  • Figure 54 is a front elevational view of the electric straight hair comb in the fifteenth embodiment of the present invention.
  • Figure 55 is a longitudinal cross-sectional view showing an electric hair straightening comb in a fifteenth embodiment of the present invention.
  • the present invention provides an electric heating straight hair comb comprising a carrier body, an electric heating plate and a plurality of heat conducting comb teeth, wherein the heat conducting comb teeth and the electric heating plate are respectively disposed on the carrier body, and the electric hot straight hair comb In the operating state, the electric heating plate generates heat and is conducted to the thermally conductive comb via the carrier.
  • the electrothermal straight hair comb 100 includes a carrier plate 10, an electric heating plate 20 and a plurality of heat conducting comb teeth 30.
  • the teeth 30 and the electric heating plate 20 are respectively disposed on the carrier plate 10.
  • the electric heating plate 20 In the working state, the electric heating plate 20 generates heat and is conducted to the heat conducting comb teeth 30 via the carrier plate 10.
  • the heat-conducting comb 30 After the heat-conducting comb 30 is heated to the corresponding temperature by the electric heating plate 20, it can be used for perming and combing, and can accelerate the hair forming time, and has a simple structure and convenient operation.
  • the carrier plate 10 is provided with at least two rows of thermal conductive comb teeth 30 in parallel, the same row of the thermal conductive comb teeth 30 are evenly arranged, and the adjacent rows of the thermal conductive comb teeth 30 are staggered, and the hair is interlaced.
  • the disposed thermally conductive comb teeth 30 are more easily squeezed straight or formed.
  • the electrothermal straight hair comb 100 preferably has 4 to 6 rows of heat conducting comb teeth 30, and the number of the heat conducting comb teeth 30 of each row is the same or different.
  • the heat conducting comb teeth 30 are preferably disposed on the front surface of the carrier board 10, the electric heating board 20 is disposed on the back side of the carrier board 10, and the electric heating board 20 is connected to the electric wire or the battery, that is, the electric heating straight hair comb 100 can be powered by an external power source or an internal battery.
  • the heat conducting comb teeth 30 are preferably flat, and in fact the heat conducting comb teeth 30 may be other shapes such as a circle, a triangle or the like.
  • the carrier plate 10 and the heat conductive comb teeth 30 are made of metal or non-metal, preferably metal.
  • the outer cover of the non-metal ceramic or thermal plastic support plate 10 is covered with a protective rubber sleeve 11 , and the handle plate 10 is connected with a handle 40 for the user to hold and use the electric straight hair comb through the handle 40 .
  • the heat conducting comb teeth 30 and the carrier plate 10 are preferably integrally formed.
  • the heat conducting comb teeth 30 and the carrier plate 10 can also be independent of each other but fixed to each other.
  • the carrier plate 10 and the electric heating plate 20 may also be integrally formed.
  • the electric heating plate 20 may be a PTC (Positive Temperature Coefficient Thermistor) heating plate, an MCH (ceramic electrothermal substrate) electric heating plate, a thick film heating plate, or the like.
  • PTC Physical Temperature Coefficient Thermistor
  • MCH ceramic electrothermal substrate
  • the tips of the heat conducting comb teeth 30 are provided with non-heat conducting members 31, such as plastic protective balls, to prevent the heat conducting hair combs 30 from scalding or scratching the head when in use.
  • At least one turn of the non-conductive comb teeth 50 is provided on the periphery of the heat conducting comb teeth 30 to prevent the electric straight hair comb 100 from scalding or scratching the head during use.
  • the electrothermal straight hair comb 100 comprising an arcuate carrier 10, an electric heating plate 20 and a plurality of thermally conductive comb teeth 30,
  • the heat conducting comb teeth 30 and the electric heating plate 20 are respectively disposed on the curved carrier 10, and in the working state, the electric heating plate 20 generates heat and is conducted to the heat conducting comb teeth 30 via the curved carrier 10. .
  • the heat-conducting comb 30 is heated to the corresponding temperature by the electric heating plate 20, it can be used for perming and combing, and can accelerate the hair forming time, and has a simple structure and convenient operation.
  • the arcuate carrier 10 is provided with at least two rows of thermally conductive comb teeth 30 in parallel, and the same row of the heat conducting comb teeth 30 are evenly arranged, and the adjacent rows of the heat conducting comb teeth 30 are alternately arranged with each other. It is easier to squeeze straight or form between the staggered thermally conductive comb teeth 30.
  • the electrothermal straight hair comb 100 preferably has 4 to 6 rows of heat conducting comb teeth 30, and the number of the heat conducting comb teeth 30 of each row is the same or different.
  • the heat conducting comb 30 is preferably disposed on the front surface of the curved carrier 10, the electric heating plate 20 is disposed on the back surface of the curved carrier 10, and the electric heating plate 20 is connected to the electric wire or the battery, that is, the electric straight hair comb 100 can be externally powered. Or internal battery powered.
  • the heat conducting comb teeth 30 are preferably flat, and in fact the heat conducting comb teeth 30 may be other shapes such as a circle, a triangle or the like.
  • the curved carrier 10 and the thermally conductive comb 30 are made of metal or non-metal, and the preferred metal is aluminum or copper. Non-metal uses ceramic or thermal plastic.
  • the outer cover of the curved carrier 10 is covered with a protective rubber sleeve 11 , and a handle 40 is connected to the curved carrier 10 for the user to hold and use the electric straight hair comb 100 through the handle 40 .
  • the heat conducting comb teeth 30 and the curved carrier 10 are preferably integrally formed.
  • the heat conducting comb teeth 30 and the curved carrier 10 can also be independent of each other but fixed to each other.
  • the curved carrier 10 and the The electric heating plate 20 can also be integrally formed.
  • the electric heating plate 20 may be a PTC (Positive Temperature Coefficient Thermistor) heating plate, an MCH (Ceramic Electrothermal Substrate) electric heating plate, a thick film heating plate, or the like.
  • PTC Physical Temperature Coefficient Thermistor
  • MCH Microthermal Substrate
  • the tips of the heat conducting comb teeth 30 are provided with non-heat conducting members 31, such as plastic protective balls, to prevent the heat conducting hair combs 30 from scalding or scratching the head when in use. At least one turn of the non-conductive comb teeth is provided on the periphery of the heat conducting comb teeth 30 to prevent the electric straight hair comb 100 from scalding or scratching the head during use.
  • the carrier of the electrothermal straight hair comb 100 of the present invention may be not only curved but also circular, semi-circular or the like.
  • the electrothermal straight hair comb 100 includes a circular carrier 10, an electric heating plate 20, and a plurality of thermal combs 30.
  • the thermal comb 30 and the electric heating plate 20 are respectively disposed on a circle.
  • the electric heating plate 20 On the shaped carrier 10, in the working state, the electric heating plate 20 generates heat and conducts it to the heat conducting comb teeth 30 via the curved carrier 10.
  • the present invention also provides an electric heating straight hair comb comprising a carrier body, a plurality of electric heating sheets and a plurality of heat conducting comb teeth, wherein the heat conducting comb teeth are disposed on the carrier body, and the heat conducting comb teeth are hollow structures, all or The electric heating sheet is disposed in a part of the heat conducting comb teeth; and the electric heating sheet generates heat conduction to the heat conducting comb teeth.
  • the electrothermal straight hair comb 100 includes a carrier plate 10, an electric heating sheet 20 and a plurality of thermally conductive comb teeth 30.
  • the teeth 30 are disposed on the carrier plate 10, and the heat conducting comb teeth 30 are hollow structures, and the electric heating sheets 20 are disposed in all or part of the heat conducting comb teeth 30. In the operating state, the electric heating sheet 20 generates heat to be transmitted to the heat conducting comb teeth 30.
  • the electric heating sheet 20 is directly inserted into the heat conducting comb teeth 30 to be heated to a corresponding temperature for perming and combing, and the heating temperature is fast and the temperature is uniform, which can accelerate the hair forming time and has a simple structure. Easy to operate.
  • each of the heat conducting comb teeth 30 is provided with an electric heating sheet 20, which has a better heating effect.
  • the electric heating sheet 20 may be provided in the partial heat conducting comb teeth 30, but the partial heat conducting comb teeth 30 provided with the electric heating sheet 20 should be evenly distributed on the carrier sheet 10.
  • the carrier plate 10 is provided with at least two rows of thermal conductive comb teeth 30 in parallel, the same row of the thermal conductive comb teeth 30 are evenly arranged, and the adjacent rows of the thermal conductive comb teeth 30 are staggered, and the hair is interlaced.
  • the disposed thermally conductive comb teeth 30 are more easily squeezed straight or formed.
  • the electrothermal straight hair comb 100 preferably has 4 to 6 rows of heat conducting comb teeth 30, and the number of the heat conducting comb teeth 30 of each row is the same or different.
  • the heat conducting comb teeth 30 are preferably flat, and in fact the heat conducting comb teeth 30 may be other shapes such as a circle, a triangle or the like.
  • the heat conducting comb teeth 30 are disposed on the front surface of the carrier board 10, and the back side of the carrier board 10 is provided with a connecting board 60.
  • the connecting board 60 is connected to the electric heating sheet 20, and the connecting board is connected with
  • the wire or battery connection, ie, the electric straight hair comb 100 can be powered by an external power source or an internal battery.
  • the carrier plate 10 and the heat conducting comb teeth 30 are made of metal or non-metal, preferably the metal is made of aluminum or copper; the non-metal is made of ceramic or heat conductive plastic.
  • the outer cover of the carrying board 10 is covered with a protective rubber sleeve 11 , and a handle 40 is connected to the carrying board 10 to facilitate the user to hold and use the electric straight hair comb 100 through the handle 40 .
  • the heat conducting comb teeth 30 and the carrier plate 10 are preferably integrally formed.
  • the heat conducting comb teeth 30 and the carrier plate 10 can also be independent of each other but fixed to each other. As shown in Fig. 15B, each of the heat conducting comb teeth 30 is provided with a through hole 32 into which the electric heating sheet 20 can be inserted.
  • the electric heating sheet 20 may be a PTC (Positive Temperature Coefficient Thermistor) heating plate, an MCH (Ceramic Electrothermal Substrate) electric heating plate, a thick film heating plate, or the like.
  • PTC Physical Temperature Coefficient Thermistor
  • MCH Microthermal Substrate
  • the tips of the heat conducting comb teeth 30 are provided with non-heat conducting members 31, such as plastic protective balls, to prevent the heat conducting hair combs 30 from scalding or scratching the head when in use.
  • At least one turn of the non-conductive comb teeth 50 is provided on the periphery of the heat conducting comb teeth 30 to prevent the electric straight hair comb 100 from scalding or scratching the head during use.
  • the electrothermal straight hair comb 100 including an arcuate carrier 10, an electric heating sheet 20, and a plurality of thermally conductive comb teeth 30,
  • the heat conducting comb teeth 30 are disposed on the curved carrier 10, and the heat conducting comb teeth 30 are hollow structures, and all or part of the heat conducting comb teeth 30 are provided with electric heating sheets 20.
  • the electric heating sheet 20 In the operating state, the electric heating sheet 20 generates heat to be transmitted to the heat conducting comb teeth 30.
  • the electric heating sheet 20 is directly inserted into the heat conducting comb teeth 30 to be heated to a corresponding temperature for perming and combing, and the heating temperature is fast and the temperature is uniform, which can accelerate the hair forming time and has a simple structure. Easy to operate.
  • each of the heat conducting comb teeth 30 is provided with an electric heating sheet 20, which has a better heating effect.
  • the electric heating sheets 20 may be provided in the partial heat conducting comb teeth 30, but the partial heat conducting comb teeth 30 provided with the electric heating sheets 20 should be evenly distributed in the curved carrier 10.
  • the arcuate carrier 10 is provided with at least two rows of thermally conductive comb teeth 30 in parallel, and the same row of the heat conducting comb teeth 30 are evenly arranged, and the adjacent rows of the heat conducting comb teeth 30 are alternately arranged with each other. It is easier to squeeze straight or form between the staggered thermally conductive comb teeth 30.
  • the electrothermal straight hair comb 100 preferably has 4 to 6 rows of heat conducting comb teeth 30, and the number of the heat conducting comb teeth 30 of each row is the same or different.
  • the heat conducting comb teeth 30 are preferably flat, and in fact, the heat conducting comb teeth 30 may be circular, triangular, etc. His shape.
  • the heat conducting comb teeth 30 are disposed on the front surface of the curved carrier 10, and the back surface of the curved carrier 10 is provided with a connecting plate 50, and the connecting plate 50 is connected to the electric heating sheet 20,
  • the connecting plate 50 is connected to a wire or a battery, that is, the electric straight hair comb 100 can be powered by an external power source or an internal battery.
  • the curved carrier 10 and the thermally conductive comb 30 are made of metal or non-metal, preferably the metal is made of aluminum or copper; the non-metal is made of ceramic or thermally conductive plastic.
  • the outer cover of the curved carrier 10 is covered with a protective rubber sleeve 11 , and a handle 40 is connected to the curved carrier 10 for the user to hold and use the electric straight hair comb 100 through the handle 40 .
  • the heat conducting comb teeth 30 and the curved carrier 10 are preferably integrally formed.
  • the heat conducting comb teeth 30 and the curved carrier 10 can also be independent of each other but fixed to each other. As shown in Fig. 19B, each of the heat conducting comb teeth 30 is provided with a through hole 32 into which the electric heating sheet 20 can be inserted.
  • the electric heating sheet 20 may be a PTC (Positive Temperature Coefficient Thermistor) heating plate, an MCH (Ceramic Electrothermal Substrate) electric heating plate, a thick film heating plate, or the like.
  • PTC Physical Temperature Coefficient Thermistor
  • MCH Microthermal Substrate
  • the tips of the heat conducting comb teeth 30 are provided with non-heat conducting members 31, such as plastic protective balls, to prevent the heat conducting hair combs 30 from scalding or scratching the head when in use. At least one turn of the non-conductive comb teeth is provided on the periphery of the heat conducting comb teeth 30 to prevent the electric straight hair comb 100 from scalding or scratching the head during use.
  • the carrier of the electrothermal straight hair comb 100 of the present invention may be not only curved but also circular, semi-circular or the like.
  • the electric hair straightening comb 100 includes a circular carrier 10, an electric heating sheet 20 and a plurality of heat conducting comb teeth 30.
  • the heat conducting comb teeth 30 are disposed on the circular carrier 10.
  • the heat conducting comb teeth 30 are hollow structures, and all or part of the heat conducting comb teeth 30 are provided with electric heating sheets 20. In the operating state, the electric heating sheet 20 generates heat to be transmitted to the heat conducting comb teeth 30.
  • the electrothermal straight hair comb 100 including a carrier 10, an electric heating plate 20, and a plurality of plate-shaped comb pieces 30
  • the comb piece 30 and the electric heating plate 20 are respectively disposed on the carrier 10, and each of the comb pieces 30 is placed across the carrier 10.
  • the electric heating plate 20 generates heat and conducts it to the comb piece 30 via the carrier 10.
  • the comb-shaped piece 30 is heated to the corresponding temperature by the electric heating plate 20, it can be used for perming and combing, and can accelerate the hair forming time, and has a simple structure and convenient operation.
  • the comb pieces 30 are placed in a single row with the carrier 10 and laterally, and the respective comb pieces 30 are parallel to each other, and the width of the comb pieces 30 is the same as or different from the width of the carrier 10.
  • the carrier 10 is a flat carrier plate, a curved carrier plate or a circular carrier plate. More preferably, the carrier 10 is integrally formed with the electric heating plate 20.
  • the comb piece 30 is disposed on the carrier 10
  • an electric heating plate is disposed on the back surface of the carrier 10, and the electric heating plate 20 is connected to the electric wire or the battery.
  • the outer cover of the carrier 10 is covered with a protective rubber sleeve 40, and a handle 50 is connected to the carrying board to facilitate the user to hold and use the electric straight hair comb 100 through the handle 40.
  • the electric heating plate 20 may be a PTC (Positive Temperature Coefficient Thermistor) heating plate, an MCH (ceramic electrothermal substrate) electric heating plate, a thick film heating plate, or the like.
  • PTC Physical Temperature Coefficient Thermistor
  • MCH ceramic electrothermal substrate
  • the comb piece 30 is a metal comb piece 30 or a non-metallic comb piece 30;
  • the carrier 10 is a metal carrier 10 or a non-metal carrier 10.
  • the metal material is preferably aluminum or copper, and the non-metal material is preferably ceramic; the metal and the non-metal may be used in combination with each other.
  • the top of the metal comb piece 30 is provided with a non-heat-conducting member, such as a plastic protective ball, to prevent the metal comb piece 30 from scalding or scratching the head when the electric straight hair comb 100 is in use.
  • the comb piece 30 can be singular or double;
  • the comb tooth surface of the comb tooth piece 30 can be surface-treated, preferably the surface of the metal comb piece 30 is provided with a ceramic oil layer; or the surface of the non-metal comb piece 30 is provided with a ceramic glaze layer, especially the non-metallic comb piece 30 Made of ceramic material.
  • the comb pieces 30 may be the same size or different sizes.
  • the carrier 10 and the comb piece 30 are of unitary construction, as shown in FIG.
  • the comb piece 30 is detachably connected to the carrier 10, and specifically may be screwed, snapped or riveted.
  • the carrier 10 is provided with a plurality of grooves 11, and the comb pieces 30 are engaged in the grooves 11, and the shape of the grooves 11 is not limited.
  • the present invention can also provide an electric heating straight hair comb comprising a carrier body, an electric heating plate and a plurality of comb teeth, wherein the comb tooth member and the electric heating plate are respectively disposed on the carrier body, and the comb
  • the tooth member is detachably connected to the carrier body, and the electric heating straight hair comb generates heat and is conducted to the comb tooth member via the carrier body in an operating state.
  • the comb member is a metal comb member or a non-metallic comb member, the metal is preferably aluminum or copper, and the non-metal is preferably a ceramic member or a heat conductive plastic.
  • the carrier is provided with a plurality of grooves, and the comb members are engaged in the grooves.
  • the carrier is a flat carrier plate, a curved carrier plate or a circular carrier plate.
  • the comb member is disposed on a front surface of the carrier, the electric heating plate is disposed on a back surface of the carrier, and the electric heating plate is connected to a wire or a battery.
  • At least two rows of the comb-shaped members are disposed on the carrier body in parallel with each other, and the comb-tooth members of the same row are evenly arranged, and the comb-tooth members of the adjacent rows are staggered.
  • the electrothermal straight hair comb 100 includes a carrier 10, an electric heating plate 20, and a plurality of metal comb members 30, metal comb teeth.
  • the member 30 and the electric heating plate 20 are respectively disposed on the carrier 10, and the metal comb member 30 and the carrier 10 are detachable
  • the unloading connection may specifically be screwing, snapping or riveting.
  • the electric heating plate 20 generates heat and conducts it to the metal comb member 30 via the carrier 10.
  • the carrier 10 is provided with a plurality of grooves 11 in which the metal comb members 30 are snapped. More preferably, the carrier 10 is integrally formed with the electric heating plate 20. In this embodiment, the carrier 10 is a flat carrier plate.
  • the carrier body 10 is provided with at least two rows of metal comb members 30 in parallel, and the metal comb members 30 of the same row are evenly arranged, and the metal comb members 30 of the adjacent rows are alternately arranged.
  • the hair is more easily squeezed straight or formed between the interdigitated metal comb members 30.
  • the electrothermal straight hair comb 100 preferably has 4 to 6 rows of metal comb members 30, and the number of metal comb members 30 in each row is the same or different.
  • the metal comb member 30 is preferably disposed on the front surface of the carrier 10, the electric heating plate 20 is disposed on the back surface of the carrier 10, and the electric heating plate 20 is connected to the electric wire or the battery, that is, the electric heating straight hair comb 100 can be externally powered or internal. powered by.
  • the metal comb member 30 is preferably flat. In fact, the metal comb member 30 may have other shapes such as a circle, a triangle, or the like.
  • the metal comb members 30 can be singular or double; the metal comb members 30 can be the same length or different lengths.
  • the carrier 10 and the thermally conductive comb teeth 30 are made of metal, preferably aluminum or copper.
  • the outer cover of the carrier 10 is covered with a protective rubber sleeve 40, and a handle 50 is connected to the carrier 10 to facilitate the user to hold and use the electric straight hair comb 100 through the handle 50.
  • the metal comb member 30 and the carrier 10 are preferably independent of each other and detachable.
  • the heat conducting comb teeth 30 and the carrier 10 can also be integrally formed.
  • the carrier 10 and the electric heating plate 20 may also be integrally formed or may be independent of each other but fixed to each other.
  • the electric heating plate 20 may be a PTC (Positive Temperature Coefficient Thermistor) heating plate, an MCH (ceramic electrothermal substrate) electric heating plate, a thick film heating plate, or the like.
  • PTC Physical Temperature Coefficient Thermistor
  • MCH ceramic electrothermal substrate
  • the utility model comprises a rack 31, a metal comb 32 and a non-heat conducting member 33.
  • the rack 31 is provided with a row of metal comb teeth 32.
  • the metal comb 32 has a hollow structure and a bottom is provided with a first opening, and the non-heat conducting member 33 passes through the metal. A first opening of the bottom of the comb 32 is inserted into the hollow structure. As shown in FIG.
  • the non-heat conducting members 33 are present in a single form, and the single non-heat conducting members 33 are inserted one by one into the hollow structure of the metal comb teeth 32.
  • a plurality of non-heat-conducting members 33 are fixed to a non-heat-conducting seat 34 to form a row of non-heat-conducting members 33, and the non-heat-conducting members 33 are inserted into the hollow structure of the metal combs 32 row by row.
  • the non-thermal conductive member 33 is, for example, a plastic protective ball, When the electric heating straight hair comb 100 is in use, the heat conductive comb teeth 30 burn or scratch the head.
  • the metal comb member includes a rack 31, a metal comb 32 and a non-heat conducting member 33.
  • the rack 31 is provided with a row of metal comb teeth 32, and the metal comb teeth 32 are half
  • the hollow structure is provided with a second opening at the top, and the non-heat conducting member 33 is inserted into the semi-hollow structure through a second opening of the top of the metal comb 32.
  • the electric heating straight hair comb 100 comprising a carrier 10, an electric heating plate 20 and a plurality of metal comb members 30,
  • the non-metallic comb member 30 is a solid member having no hollow structure.
  • the metal comb member 30 and the electric heating plate 20 are respectively disposed on the carrier 10, and the metal comb member 30 is detachably connected with the carrier 10, and the electric heating comb 20 is generated under the working state, and the electric heating plate 20 is generated. Heat is conducted to the metal comb member 30 via the carrier 10.
  • the carrier 10 is provided with a plurality of grooves 11 , and the metal comb members 30 are engaged in the grooves 11 , and the shape of the groove 11 is not limited. More preferably, the carrier 10 is integrally formed with the electric heating plate 20. In this embodiment, the carrier 10 is an arc-shaped carrier.
  • the electrothermal straight hair comb 100 comprising a carrier 10, an electric heating plate 20 and a plurality of metal comb members 30, a metal comb
  • the tooth member 30 and the electric heating plate 20 are respectively disposed on the carrier 10, and the metal comb member 30 is detachably connected with the carrier 10, and the electric heating comb 20 generates heat during the working state. Conducted to the metal comb member 30 via the carrier 10.
  • the carrier 10 is provided with a plurality of grooves 11 in which the metal comb members 30 are snapped. More preferably, the carrier 10 is integrally formed with the electric heating plate 20. In this embodiment, the carrier 10 is a circular carrier.
  • the electric heating straight hair comb 100 comprising a carrier 10, an electric heating plate 20 and a plurality of non-metallic comb members 60,
  • the metal comb member 60 and the electric heating plate 20 are respectively disposed on the carrier 10, and the non-metallic comb member 60 is detachably connected to the carrier 10, and specifically may be screwed, snapped or riveted.
  • the electric heating plate 20 In the operating state, the electric heating plate 20 generates heat and conducts it to the non-metallic comb member 60 via the carrier 10.
  • the carrier 10 is provided with a plurality of grooves 11 in which the non-metallic comb members 60 are snapped. More preferably, the carrier 10 is integrally formed with the electric heating plate 20. In this embodiment, the carrier 10 is a flat carrier plate.
  • the electrothermal straight hair comb 100 is preferably provided with 4 to 6 rows of non-metallic comb members 60, and the number of non-metallic comb members 60 of each row is the same or different.
  • the non-metallic comb member 60 is preferably disposed on the front surface of the carrier 10, the electric heating plate 20 is disposed on the back surface of the carrier 10, and the electric heating plate 20 is connected to the electric wire or the battery, that is, the electric heating straight hair comb 100 can be externally powered or internally Battery powered.
  • the non-metallic comb member 60 of the present invention is preferably flat, and the non-metallic comb member 60 may be of other shapes such as a circle or a triangle.
  • the non-metallic comb members 60 may be singular or double; the non-metallic comb members 60 may be the same length or different lengths.
  • the carrier 10 is made of metal or a thermally conductive plastic, preferably aluminum or copper.
  • the material of the heat conducting comb teeth 30 is non-metal, preferably ceramic or heat conductive plastic.
  • the outer cover of the carrier 10 is covered with a protective rubber sleeve 40, and a handle 50 is connected to the carrier 10 to facilitate the user to hold and use the electric straight hair comb 100 through the handle 50.
  • the non-metallic comb member 60 and the carrier 10 are preferably independent of each other but fixed to each other.
  • the thermally conductive comb teeth 30 and the carrier 10 can also be integrally formed.
  • the carrier 10 and the electric heating plate 20 may also be integrally formed or may be independent of each other but fixed to each other.
  • the electric heating plate 20 may be a PTC (Positive Temperature Coefficient Thermistor) heating plate, an MCH (ceramic electrothermal substrate) electric heating plate, a thick film heating plate, or the like.
  • PTC Physical Temperature Coefficient Thermistor
  • MCH ceramic electrothermal substrate
  • the non-metallic comb members 60 are present in a single form, and the single non-metallic comb members 60 are snap-fitted to the grooves 11 one by one.
  • Figure 48 is a view showing the structure of a non-metallic comb member of an electrothermal straight hair comb according to another embodiment of the present invention, wherein a plurality of non-metallic comb members 60 are fixed to a non-metallic rack 61 to form a row of non-metallic combs. The teeth 60, each row of non-metallic comb members 60 are respectively engaged with the grooves 11.
  • the electrothermal straight hair comb 100 comprising a carrier 10, an electric heating plate 20 and a plurality of non-metallic comb members 60,
  • the metal comb member 60 and the electric heating plate 20 are respectively disposed on the carrier 10, and the non-metallic comb member 60 is detachably connected to the carrier 10, and specifically may be screwed, snapped or riveted.
  • the electric heating plate 20 generates heat and conducts it to the non-metallic comb member 60 via the carrier 10.
  • the carrier 10 is provided with a plurality of grooves 11 in which the non-metallic comb members 60 are snapped. More preferably, the carrier 10 is integrally formed with the electric heating plate 20. In this embodiment, the carrier 10 is an arc-shaped carrier.
  • the electrothermal straight hair comb 100 comprising a carrier 10, an electric heating plate 20 and a plurality of non-metallic comb members 60,
  • the metal comb member 60 and the electric heating plate 20 are respectively disposed on the carrier 10, and the non-metallic comb member 60 is detachably connected to the carrier 10, and specifically may be screwed, snapped or riveted.
  • the electric heating plate 20 generates heat and conducts it to the non-metallic comb member 60 via the carrier 10.
  • the carrier 10 is provided with a plurality of grooves 11 in which the non-metallic comb members 60 are snapped. More preferably, the carrier 10 is integrally formed with the electric heating plate 20. In this embodiment, the carrier 10 is a circular carrier.
  • the electrothermal straight hair comb of the present invention comprises a carrier body, an electric heating plate and a plurality of heat conducting comb teeth.
  • the electric heating plate In an operating state, the electric heating plate generates heat and is conducted to the heat conducting comb teeth via the carrier body.
  • the hair can achieve good straight hair, combing and perming effects after the heated thermal comb.
  • the electrothermal straight hair comb of the present invention comprises a carrier body, an electric heating sheet and a plurality of heat conducting comb teeth, wherein the heat conducting comb teeth are hollow structures, and the electric heating sheet is directly disposed in the heat conducting comb teeth; in the working state, the electricity
  • the heat generating sheet generates heat to the heat conducting comb teeth, so that the hair can achieve good straight hair, combing and perming effects after the heated heat conducting comb teeth.
  • the present invention can be used for straight hair, combing and perming, so that the function is more abundant, and the hair forming time can be accelerated, and the structure is simple and the operation is convenient.
  • the electric heating sheet can be directly disposed in the heat conducting comb teeth, the invention has the advantages of high temperature rising speed and uniform temperature, so that the straight hair, the combing and the perming effect are better.

Abstract

提供了一种电热直发梳(100),包括有承载体(10)、电加热板(20)和若干导热梳齿(30),导热梳齿(30)和电加热板(20)分别设置于承载体(10)上,电热直发梳(100)在工作状态下,电加热板(20)生成热量并经由承载体(10)传导给导热梳齿(30)。或者,电热直发梳(100)包括有承载体(10)、若干电加热片(20)和若干导热梳齿(30),导热梳齿(30)设置于承载体(10)上,导热梳齿(30)为中空结构,全部或部分的导热梳齿(30)中设有电加热片(20);电加热片(20)生成热量传导给导热梳齿(30)。电热直发梳(100)能够用于直发、梳发和烫发,因此功能更加丰富,并且能够加快头发成型时间,且结构简单,操作方便,而且升温速度快,温度均匀。

Description

电热直发梳 技术领域
本发明涉及生活用品技术领域,尤其涉及一种电热直发梳。
背景技术
梳子是梳理头发的工具,是人们日常生活中常用的工具之一。梳子的通常呈扁平状,由若干梳齿和手柄组成,并通过梳齿对头发进行梳理。现在梳子的种类繁多如:桃木梳、檀木梳、牛角梳等。梳子在品种上分实用品梳、工艺梳、旅游梳、高档精品梳、保健梳等五大系列300多个品种。但现有梳子不仅功能单一,且梳理头发的效果一般。
综上可知,现有技术在实际使用上显然存在不便与缺陷,所以有必要加以改进。
发明内容
针对上述的缺陷,本发明的目的在于提供一种电热直发梳,其能够用于直发、梳发和烫发,因此功能更加丰富,并且能够加快头发成型时间,且结构简单,操作方便,而且升温速度快,温度均匀。
为了实现上述目的,本发明提供一种电热直发梳,包括有承载体、电加热板和若干导热梳齿,所述导热梳齿和所述电加热板分别设置于所述承载体上,所述电热直发梳在工作状态下,所述电加热板生成热量并经由所述承载体传导给所述导热梳齿。
根据本发明所述的电热直发梳,所述导热梳齿设置于所述承载体的正面,所述电加热板设置于所述承载体的背面,所述电加热板与电线或电池连接。
根据本发明所述的电热直发梳,所述承载体和导热梳齿的材质为金属或非金属。
根据本发明所述的电热直发梳,所述承载体的外部包覆设有保护胶套,且所述承载板上连接有一手柄。
根据本发明所述电热直发梳,所述导热梳齿的齿尖上设有非导热件;和/或
所述导热梳齿的外围设有至少一圈非导热梳齿。
根据本发明所述的电热直发梳,所述导热梳齿为板片状的梳齿片,所述梳齿片和所述电加热板分别设置于所述承载体上,并且每个所述梳齿片横跨置于所述承载体上;所述电热直发梳在工作状态下,所述电加热板生成热量并经由所述承载体传导给所述梳齿片。
根据本发明所述的电热直发梳,所述承载体上设有若干沟槽,所述梳齿片卡接在所述沟槽中。
根据本发明所述的电热直发梳,所述电加热板是正温度系数热敏电阻加热板、陶瓷电热板或者厚膜加热板;和/或
所述导热梳齿与所述承载体一体成型;或者所述承载体与所述电加热板一体成型。
根据本发明所述的电热直发梳,至少两排所述导热梳齿相互平行设置于所述承载体上,相同排的所述导热梳齿之间均匀排列,并且相邻排的所述导热梳齿之间交错设置。
根据本发明所述的电热直发梳,所述承载体为承载板、弧形或圆形承载体。
本发明还提供一种电热直发梳,包括有承载体、若干电加热片和若干导热梳齿,所述导热梳齿设置于所述承载体上,所述导热梳齿为中空结构,全部或部分的所述导热梳齿中设有所述电加热片;所述电加热片生成热量传导给所述导热梳齿。
根据本发明所述的电热直发梳,所述导热梳齿设置于所述承载体的正面,所述承载体的背面设置有连接板,所述连接板与所述电加热片连接,所述连接板与电线或电池连接。
根据本发明所述电热直发梳,该承载体和导热梳齿的材质为金属或非金属。
根据本发明所述的电热直发梳,所述承载体的外部包覆设有保护胶套,且所述承载体上连接有一手柄。
根据本发明所述的电热直发梳,所述导热梳齿的齿尖上设有非导热件。
根据本发明所述电热直发梳,该导热梳齿的外围设有至少一圈非导热梳齿。
根据本发明所述的电热直发梳,所述电加热片是正温度系数热敏电阻加热板、陶瓷电热板或者厚膜加热板。
根据本发明所述的电热直发梳,所述导热梳齿与所述承载体一体成型。
根据本发明所述的电热直发梳,至少两排所述梳齿相互平行设置于所述承载体上,相同排的所述梳齿之间均匀排列,并且相邻排的所述梳齿之间交错设置。
根据本发明所述的电热直发梳,所述承载体为承载板、弧形或圆形承载体。
本发明还提供一种电热直发梳,包括有承载体、电加热板和若干梳齿件,所述梳齿件和所述电加热板分别设置于所述承载体上,且所述梳齿件与所述承载体可拆卸式连接,所述电热直发梳在工作状态下,所述电加热板生成热量并经由所述承载体传导给所述梳齿件。
根据本发明所述的电热直发梳,所述承载体上设有若干沟槽,所述梳齿件卡接在所述沟槽中。
根据本发明所述的电热直发梳,所述梳齿件为金属梳齿件,所述金属梳齿件包括齿条、金属梳齿和非导热件,所述齿条上设有一排所述金属梳齿,所述金属梳齿为中空结构且底部设有第一开口,所述非导热件通过所述金属梳齿的底部的所述第一开口插入所述中空结构中。
根据本发明所述的电热直发梳,所述非导热件为单个形式存在,单个所述非导热件逐个插入所述金属梳齿的所述中空结构中;或者
若干个所述非导热件固接在一非导热座上构成一排所述非导热件,所述非导热件逐排插入所述金属梳齿的所述中空结构中。
根据本发明所述的电热直发梳,所述梳齿件为金属梳齿件,所述金属梳齿件包括齿条、金属梳齿和非导热件,所述齿条上设有一排所述金属梳齿,所述金属梳齿为半中空结构且顶部设有第二开口,所述非导热件通过所述金属梳齿的顶部的所述第二开口插入所述半中空结构中。
根据本发明所述的电热直发梳,所述梳齿件为非金属梳齿件,所述非金属梳齿件为无中空结构的实体件。
根据本发明所述的电热直发梳,所述非金属梳齿件为单个形式存在,单个所述非金属梳齿件逐个与所述沟槽卡接;或者
若干个所述非金属梳齿件固接在一非金属齿条上构成一排非金属梳齿件,每排所述非金属梳齿件分别与所述沟槽卡接。
本发明电热直发梳包括有承载体、电加热板和若干导热梳齿,在工作状态下,所述电加热板生成热量并经由所述承载体传导给所述导热梳齿,头发经过 所述加热后的导热梳齿后能够实现良好的直发、梳发和烫发效果。或者,本发明电热直发梳包括有承载体、电加热片和若干导热梳齿,所述导热梳齿为中空结构,电加热片直接设置在导热梳齿中;在工作状态下,所述电加热片生成热量传导给所述导热梳齿,这样头发经过加热后的导热梳齿后能够实现良好的直发、梳发和烫发效果。借此,本发明能够用于直发、梳发和烫发,因此功能更加丰富,并且能够加快头发成型时间,且结构简单,操作方便。并且,由于本发明在导热梳齿中可以直接设置电加热片,因此具有升温速度快,温度均匀的优势,因此直发、梳发和烫发效果更佳。
附图说明
图1是本发明第一实施例中电热直发梳的立体图;
图2是本发明第一实施例中电热直发梳的正视图;
图3是本发明第一实施例中电热直发梳的侧面剖视图;
图4是本发明第一实施例中电热直发梳的载体板和导热梳齿的立体图;
图5是本发明第一实施例中电热直发梳的载体板的后视图;
图6是本发明第二实施例中电热直发梳的正视图;
图7是本发明第二实施例中电热直发梳的侧视图;
图8是本发明第二实施例中电热直发梳的侧面剖视图;
图9是本发明第二实施例中载体板和导热梳齿的立体图;
图10是本发明第三实施例中电热直发梳的正视图;
图11是本发明第三实施例中电热直发梳的横截面剖视图;
图12是本发明第四实施例中电热直发梳的立体图;
图13是本发明第四实施例中电热直发梳的正视图;
图14是本发明第四实施例中电热直发梳的侧面剖视图;
图15A是本发明第四实施例中电热直发梳的载体板和导热梳齿的立体图;
图15B是本发明第四实施例中电热直发梳的载体板的后视图;
图16是本发明第五实施例中电热直发梳的正视图;
图17是本发明第五实施例中电热直发梳的侧视图;
图18是本发明第五实施例中电热直发梳的侧面剖视图;
图19A是本发明第五实施例中载体板和导热梳齿的立体图;
图19B是本发明第五实施例中载体板和导热梳齿的后视图;
图20是本发明第六实施例中电热直发梳的正视图;
图21是本发明第六实施例中电热直发梳的横截面剖视图。
图22是本发明第七实施例中电热直发梳的立体图;
图23是本发明第七实施例中电热直发梳的正视图;
图24是本发明第七实施例中电热直发梳的侧面剖视图;
图25是本发明第八实施例中电热直发梳的承载体和梳齿片的立体图;
图26是本发明第九实施例中电热直发梳的承载体的立体图;
图27是本发明第九实施例中电热直发梳的梳齿片的立体图。
图28是本发明第十实施例中电热直发梳的立体图;
图29是本发明第十实施例中电热直发梳的正视图;
图30是本发明第十实施例中电热直发梳的侧面剖视图;
图31是本发明第十实施例中电热直发梳的承载体的立体图;
图32是本发明第十实施例中电热直发梳的承载体的侧视图;
图33是本发明第十实施例中电热直发梳的金属梳齿件的剖视图;
图34是本发明第十实施例中电热直发梳的第一种非导热件的正视图;
图35是本发明第十实施例中电热直发梳的第二种非导热件的正视图;
图36是本发明第十一实施例中电热直发梳的立体图;
图37是本发明第十一实施例中电热直发梳的正视图;
图38是本发明第十一实施例中电热直发梳的侧面剖视图;
图39是本发明第十一实施例中电热直发梳的承载体的立体图;
图40是本发明第十一实施例中电热直发梳的承载体的侧视图;
图41是本发明第十二实施例中电热直发梳的立体图;
图42是本发明第十二实施例中电热直发梳的纵截面剖视图;
图43是本发明第十三实施例中电热直发梳的立体图;
图44是本发明第十三实施例中电热直发梳的正视图;
图45是本发明第十三实施例中电热直发梳的侧面剖视图;
图46是本发明第十三实施例中电热直发梳的承载体的立体图;
图47是本发明第十三实施例中电热直发梳的承载体的侧视图;
图48是本发明第十三实施例中电热直发梳的非金属梳齿件组件的正视图;
图49是本发明第十四实施例中电热直发梳的立体图;
图50是本发明第十四实施例中电热直发梳的正视图;
图51是本发明第十四实施例中电热直发梳的侧面剖视图;
图52是本发明第十四实施例中电热直发梳的承载体的立体图;
图53是本发明第十四实施例中电热直发梳的承载体的侧视图;
图54是本发明第十五实施例中电热直发梳的正视图;
图55是本发明第十五实施例中电热直发梳的纵截面剖视图。
具体实施方式
为了使本发明的目的、技术方案及优点更加清楚明白,以下结合附图及实施例,对本发明进行进一步详细说明。应当理解,此处所描述的具体实施例仅仅用以解释本发明,并不用于限定本发明。
本发明提供一种电热直发梳,包括有承载体、电加热板和若干导热梳齿,所述导热梳齿和所述电加热板分别设置于所述承载体上,所述电热直发梳在工作状态下,所述电加热板生成热量并经由所述承载体传导给所述导热梳齿。
图1~图5示出了本发明第一实施例中电热直发梳的结构,所述电热直发梳100包括有承载板10、电加热板20和若干导热梳齿30,所述导热梳齿30和电加热板20分别设置于承载板10上,所述电热直发梳100在工作状态下,电加热板20生成热量并经由承载板10传导给导热梳齿30。导热梳齿30通过电加热板20加热到相应的温度后,可用于烫发和梳发,并能加快头发成型时间,且结构简单、操作方便。
优选的是,所述承载板10上至少平行设置有两排导热梳齿30,相同排的导热梳齿30之间均匀排列,并且相邻排的导热梳齿30之间交错设置,头发在交错设置的导热梳齿30之间更容易挤压拉直或成型。电热直发梳100优选设置4~6排的导热梳齿30比较合理,每排的导热梳齿30的个数相同或不同。所述导热梳齿30优选设置于承载板10的正面,电加热板20设置于承载板10的背面,电加热板20与电线或电池连接,即电热直发梳100可由外部电源或内部电池供电。本发明中导热梳齿30优选为扁形,实际上导热梳齿30可以是圆形、三角形等其他形状。
优选的是,承载板10和导热梳齿30的材质为金属或非金属,优选金属采 用铝或铜;非金属采用陶瓷或导热塑胶承载板10的外部包覆设有保护胶套11,且承载板10上连接有一手柄40,以便于用户通过手柄40握持和使用电热直发梳100。导热梳齿30与承载板10优选一体成型,当然导热梳齿30与承载板10也可以相互独立但彼此固接。所述承载板10与所述电加热板20也可以一体成型。
所述电加热板20可以是PTC(Positive Temperature Coefficient Thermistor,正温度系数热敏电阻)加热板、MCH(陶瓷电热基板)电热板、厚膜加热板等。
更好的是,导热梳齿30的齿尖上设有非导热件31,例如塑胶保护球,以防止电热直发梳100在使用时,导热梳齿30烫伤或划伤头部。导热梳齿30的外围设有至少一圈非导热梳齿50,以防止电热直发梳100在使用时烫伤或划伤头部。
图6~图9示出了本发明第二实施例的电热直发梳的结构,所述电热直发梳100包括有弧形承载体10、电加热板20和若干导热梳齿30,所述导热梳齿30和电加热板20分别设置于弧形承载体10上,所述电热直发梳100在工作状态下,电加热板20生成热量并经由弧形承载体10传导给导热梳齿30。导热梳齿30通过电加热板20加热到相应的温度后,可用于烫发和梳发,并能加快头发成型时间,且结构简单、操作方便。
优选的是,所述弧形承载体10上至少平行设置有两排导热梳齿30,相同排的导热梳齿30之间均匀排列,并且相邻排的导热梳齿30之间交错设置,头发在交错设置的导热梳齿30之间更容易挤压拉直或成型。电热直发梳100优选设置4~6排的导热梳齿30比较合理,每排的导热梳齿30的个数相同或不同。所述导热梳齿30优选设置于弧形承载体10的正面,电加热板20设置于弧形承载体10的背面,电加热板20与电线或电池连接,即电热直发梳100可由外部电源或内部电池供电。本发明中导热梳齿30优选为扁形,实际上导热梳齿30可以是圆形、三角形等其他形状。
优选的是,弧形承载体10和导热梳齿30的材质为金属或非金属,优金属选采用铝或铜。非金属采用陶瓷或导热塑胶。弧形承载体10的外部包覆设有保护胶套11,且弧形承载体10上连接有一手柄40,以便于用户通过手柄40握持和使用电热直发梳100。导热梳齿30与弧形承载体10优选一体成型,当然导热梳齿30与弧形承载体10也可以相互独立但彼此固接。所述弧形承载体10与所 述电加热板20也可以一体成型。
所述电加热板20可以是PTC(正温度系数热敏电阻)加热板、MCH(陶瓷电热基板)电热板、厚膜加热板等。
更好的是,导热梳齿30的齿尖上设有非导热件31,例如塑胶保护球,以防止电热直发梳100在使用时,导热梳齿30烫伤或划伤头部。导热梳齿30的外围设有至少一圈非导热梳齿,以防止电热直发梳100在使用时烫伤或划伤头部。
本发明电热直发梳100的承载体不仅可以是弧形,而且可以是圆形,半圆形等。如图10和图11所示,所述电热直发梳100包括有圆形承载体10、电加热板20和若干导热梳齿30,所述导热梳齿30和电加热板20分别设置于圆形承载体10上,所述电热直发梳100在工作状态下,电加热板20生成热量并经由弧形承载体10传导给导热梳齿30。
本发明还提供一种电热直发梳,包括有承载体、若干电加热片和若干导热梳齿,所述导热梳齿设置于所述承载体上,所述导热梳齿为中空结构,全部或部分的所述导热梳齿中设有所述电加热片;所述电加热片生成热量传导给所述导热梳齿。
图12~图15B示出了本发明第四实施例中电热直发梳的结构,所述电热直发梳100包括有承载板10、电加热片20和若干导热梳齿30,所述导热梳齿30设置于承载板10上,所述导热梳齿30为中空结构,全部或部分的导热梳齿30中设有电加热片20。在工作状态下,所述电加热片20生成热量传导给所述导热梳齿30。由于导热梳齿30为中空结构,电加热片20直接插入导热梳齿30内部加热到相应的温度,用于烫发和梳发,其升温速度快,温度均匀,可以加快头发成型时间且结构简单、操作方便。
优选每个导热梳齿30中设有电加热片20,其加热效果更佳。但从成本角度考虑,可以在部分导热梳齿30中设置电加热片20,但设有电加热片20的所述部分导热梳齿30在承载板10应该呈均匀分布。
优选的是,所述承载板10上至少平行设置有两排导热梳齿30,相同排的导热梳齿30之间均匀排列,并且相邻排的导热梳齿30之间交错设置,头发在交错设置的导热梳齿30之间更容易挤压拉直或成型。电热直发梳100优选设置4~6排的导热梳齿30比较合理,每排的导热梳齿30的个数相同或不同。本发明中导热梳齿30优选为扁形,实际上导热梳齿30可以是圆形、三角形等其他形状。
优选的是,所述导热梳齿30设置于所述承载板10的正面,所述承载板10的背面设置有连接板60,所述连接板60与电加热片20连接,所述连接板与电线或电池连接,即电热直发梳100可由外部电源或内部电池供电。
优选的是,承载板10和导热梳齿30的材质为金属或非金属,优选金属采用铝或铜;非金属采用陶瓷或导热塑胶。承载板10的外部包覆设有保护胶套11,且承载板10上连接有一手柄40,以便于用户通过手柄40握持和使用电热直发梳100。导热梳齿30与承载板10优选一体成型,当然导热梳齿30与承载板10也可以相互独立但彼此固接。如图15B所示,每个导热梳齿30设有通孔32,电加热片20可以插入所述通孔中。
所述电加热片20可以是PTC(正温度系数热敏电阻)加热板、MCH(陶瓷电热基板)电热板、厚膜加热板等。
更好的是,导热梳齿30的齿尖上设有非导热件31,例如塑胶保护球,以防止电热直发梳100在使用时,导热梳齿30烫伤或划伤头部。导热梳齿30的外围设有至少一圈非导热梳齿50,以防止电热直发梳100在使用时烫伤或划伤头部。
图16~图19B示出了本发明第五实施例中电热直发梳的结构,所述电热直发梳100包括有弧形承载体10、电加热片20和若干导热梳齿30,所述导热梳齿30设置于弧形承载体10上,所述导热梳齿30为中空结构,全部或部分的导热梳齿30中设有电加热片20。在工作状态下,所述电加热片20生成热量传导给所述导热梳齿30。由于导热梳齿30为中空结构,电加热片20直接插入导热梳齿30内部加热到相应的温度,用于烫发和梳发,其升温速度快,温度均匀,可以加快头发成型时间且结构简单、操作方便。
优选每个导热梳齿30中设有电加热片20,其加热效果更佳。但从成本角度考虑,可以在部分导热梳齿30中设置电加热片20,但设有电加热片20的所述部分导热梳齿30在弧形承载体10应该呈均匀分布。
优选的是,所述弧形承载体10上至少平行设置有两排导热梳齿30,相同排的导热梳齿30之间均匀排列,并且相邻排的导热梳齿30之间交错设置,头发在交错设置的导热梳齿30之间更容易挤压拉直或成型。电热直发梳100优选设置4~6排的导热梳齿30比较合理,每排的导热梳齿30的个数相同或不同。本发明中导热梳齿30优选为扁形,实际上导热梳齿30可以是圆形、三角形等其 他形状。
优选的是,所述导热梳齿30设置于所述弧形承载体10的正面,所述弧形承载体10的背面设置有连接板50,所述连接板50与电加热片20连接,所述连接板50与电线或电池连接,即电热直发梳100可由外部电源或内部电池供电。
优选的是,弧形承载体10和导热梳齿30的材质为金属或非金属,优选金属采用铝或铜;非金属采用陶瓷或导热塑胶。弧形承载体10的外部包覆设有保护胶套11,且弧形承载体10上连接有一手柄40,以便于用户通过手柄40握持和使用电热直发梳100。导热梳齿30与弧形承载体10优选一体成型,当然导热梳齿30与弧形承载体10也可以相互独立但彼此固接。如图19B所示,每个导热梳齿30设有通孔32,电加热片20可以插入所述通孔中。
所述电加热片20可以是PTC(正温度系数热敏电阻)加热板、MCH(陶瓷电热基板)电热板、厚膜加热板等。
更好的是,导热梳齿30的齿尖上设有非导热件31,例如塑胶保护球,以防止电热直发梳100在使用时,导热梳齿30烫伤或划伤头部。导热梳齿30的外围设有至少一圈非导热梳齿,以防止电热直发梳100在使用时烫伤或划伤头部。
本发明电热直发梳100的承载体不仅可以是弧形,而且可以是圆形,半圆形等。如图20和图21所示,所述电热直发梳100包括有圆形承载体10、电加热片20和若干导热梳齿30,所述导热梳齿30设置于圆形承载体10上,所述导热梳齿30为中空结构,全部或部分的导热梳齿30中设有电加热片20。在工作状态下,所述电加热片20生成热量传导给所述导热梳齿30。
图22~图24示出了本发明第七实施例中电热直发梳的结构,所述电热直发梳100包括有承载体10、电加热板20和若干个板片状的梳齿片30,所述梳齿片30和电加热板20分别设置于承载体10上,并且每个梳齿片30横跨置于承载体10上。电热直发梳100在工作状态下,电加热板20生成热量并经由承载体10传导给梳齿片30。梳齿片30通过电加热板20加热到相应的温度后,可用于烫发和梳发,并能加快头发成型时间,且结构简单、操作方便。更好的是,梳齿片30单个一排与承载体10与横向放置,各个梳齿片30之间相互平行,且梳齿片30的宽度与承载体10的宽度相同或不相同。
优选的是,所述承载体10为平形承载板、弧形承载板或者圆形承载板。更好的是,承载体10与电加热板20一体成型。所述梳齿片30设置于承载体10 的正面,电加热板设置于承载体10的背面,电加热板20与电线或电池连接。所述承载体10的外部包覆设有保护胶套40,且承载板上连接有一手柄50,以便于用户通过手柄40握持和使用电热直发梳100。
所述电加热板20可以是PTC(Positive Temperature Coefficient Thermistor,正温度系数热敏电阻)加热板、MCH(陶瓷电热基板)电热板、厚膜加热板等。
优选的是,所述梳齿片30为金属梳齿片30或者非金属梳齿片30;承载体10为金属承载体10或非金属承载体10。金属材料优选铝或铜,非金属材料优选陶瓷;金属与非金属之间可以相互配合使用。金属梳齿片30的顶部设有非导热件,例如塑胶保护球,以防止电热直发梳100在使用时,金属梳齿片30烫伤或划伤头部。梳齿片30可为单数或双数;
所述梳齿片30梳齿表面可以进行表面处理,优选金属梳齿片30的表面设有陶瓷油层;或者非金属梳齿片30的表面设有陶瓷釉层,尤其是非金属梳齿片30由陶瓷材料制成。所述梳齿片30可以尺寸相同,也可以尺寸不相同。
优选的是,承载体10和梳齿片30为一体结构,如图25所示。
优选的是,梳齿片30与承载体10之间可拆卸式连接,具体可以是螺接、卡接或者铆接等。如图26和图27所示,承载体10上设有若干沟槽11,梳齿片30卡接在沟槽11中,所述沟槽11的形状不限制。
本发明还可以提供一种电热直发梳,包括有承载体、电加热板和若干梳齿件,所述梳齿件和所述电加热板分别设置于所述承载体上,且所述梳齿件与所述承载体可拆卸式连接,所述电热直发梳在工作状态下,所述电加热板生成热量并经由所述承载体传导给所述梳齿件。所述梳齿件为金属梳齿件或非金属梳齿件,金属优选铝或铜等,非金属优选陶瓷件或导热塑胶等。
优选的是,所述承载体上设有若干沟槽,所述梳齿件卡接在所述沟槽中。所述承载体为平形承载板、弧形承载板或者圆形承载板。所述梳齿件设置于所述承载体的正面,所述电加热板设置于所述承载体的背面,所述电加热板与电线或电池连接。至少两排所述梳齿件相互平行设置于所述承载体上,同排的所述梳齿件之间均匀排列,并且相邻排的所述梳齿件之间交错设置。
图28~图35示出了本发明第十实施例的电热直发梳的结构,所述电热直发梳100包括有承载体10、电加热板20和若干金属梳齿件30,金属梳齿件30和电加热板20分别设置于承载体10上,且金属梳齿件30与承载体10之间可拆 卸式连接,具体可以是螺接、卡接或者铆接等。电热直发梳100在工作状态下,电加热板20生成热量并经由承载体10传导给金属梳齿件30。金属梳齿件30通过电加热板20加热到相应的温度后,可用于烫发和梳发,并能加快头发成型时间,功能更加丰富,并且结构简单合理,便于安装和拆卸方便。优选的是,承载体10上设有若干沟槽11,金属梳齿件30卡接在沟槽11中。更好的是,承载体10与电加热板20一体成型。本实施例中,所述承载体10为平形承载板。
优选的是,所述承载体10上至少平行设置有两排金属梳齿件30,相同排的金属梳齿件30之间均匀排列,并且相邻排的金属梳齿件30之间交错设置,头发在交错设置的金属梳齿件30之间更容易挤压拉直或成型。电热直发梳100优选设置4~6排的金属梳齿件30比较合理,每排的金属梳齿件30的个数相同或不同。所述金属梳齿件30优选设置于承载体10的正面,电加热板20设置于承载体10的背面,电加热板20与电线或电池连接,即电热直发梳100可由外部电源或内部电池供电。本发明中金属梳齿件30优选为扁形,实际上金属梳齿件30可以是圆形、三角形等其他形状。金属梳齿件30可为单数或双数;金属梳齿件30可以长度相同,也可以长度不相同。
优选的是,承载体10和导热梳齿30的材质为金属,优选采用铝或铜。承载体10的外部包覆设有保护胶套40,且承载体10上连接有一手柄50,以便于用户通过手柄50握持和使用电热直发梳100。金属梳齿件30与承载体10优选相互独立且可拆卸,当然导热梳齿30与承载体10也可以一体成型。所述承载体10与所述电加热板20也可以一体成型也可以相互独立但彼此固接。
所述电加热板20可以是PTC(Positive Temperature Coefficient Thermistor,正温度系数热敏电阻)加热板、MCH(陶瓷电热基板)电热板、厚膜加热板等。
图33~图35示出了本发明第十实施例(同样适用于第十一实施例和第十二实施例)中电热直发梳100的金属梳齿件结构,所述金属梳齿件30包括齿条31、金属梳齿32和非导热件33,齿条31上设有一排金属梳齿32,金属梳齿32为中空结构且底部设有第一开口,所述非导热件33通过金属梳齿32的底部的第一开口插入所述中空结构中。如图34所示,所述非导热件33为单个形式存在,单个非导热件33逐个插入金属梳齿32的中空结构中。在图35所示的另一种形式中,若干个非导热件33固接在一非导热座34上构成一排非导热件33,非导热件33逐排插入金属梳齿32的中空结构中。非导热件33例如塑胶保护球,以 防止电热直发梳100在使用时,导热梳齿30烫伤或划伤头部。
在另一实施例中,所述金属梳齿件包括齿条31、金属梳齿32和非导热件33,所述齿条31上设有一排金属梳齿32,所述金属梳齿32为半中空结构且顶部设有第二开口,所述非导热件33通过金属梳齿32的顶部的第二开口插入所述半中空结构中。
图36~图40示出了本发明第十一实施例的电热直发梳的结构,所述电热直发梳100包括有承载体10、电加热板20和若干金属梳齿件30,所述非金属梳齿件30为无中空结构的实体件。金属梳齿件30和电加热板20分别设置于承载体10上,且金属梳齿件30与承载体10之间可拆卸式连接,电热直发梳100在工作状态下,电加热板20生成热量并经由承载体10传导给金属梳齿件30。金属梳齿件30通过电加热板20加热到相应的温度后,可用于烫发和梳发,并能加快头发成型时间,功能更加丰富,并且结构简单合理,便于安装和拆卸方便。优选的是,承载体10上设有若干沟槽11,金属梳齿件30卡接在沟槽11中,构槽形11的状不限制。更好的是,承载体10与电加热板20一体成型。本实施例中,所述承载体10为弧形承载板。
图41~图42示出了本发明第十二实施例的电热直发梳的结构,所述电热直发梳100包括有承载体10、电加热板20和若干金属梳齿件30,金属梳齿件30和电加热板20分别设置于承载体10上,且金属梳齿件30与承载体10之间可拆卸式连接,电热直发梳100在工作状态下,电加热板20生成热量并经由承载体10传导给金属梳齿件30。金属梳齿件30通过电加热板20加热到相应的温度后,可用于烫发和梳发,并能加快头发成型时间,功能更加丰富,并且结构简单合理,便于安装和拆卸方便。优选的是,承载体10上设有若干沟槽11,金属梳齿件30卡接在沟槽11中。更好的是,承载体10与电加热板20一体成型。本实施例中,所述承载体10为圆形承载板。
图43~图48示出了本发明第十三实施例的电热直发梳的结构,所述电热直发梳100包括有承载体10、电加热板20和若干非金属梳齿件60,非金属梳齿件60和电加热板20分别设置于承载体10上,且非金属梳齿件60与承载体10可拆卸式连接,具体可以是螺接、卡接或者铆接等。电热直发梳100在工作状态下,电加热板20生成热量并经由承载体10传导给非金属梳齿件60。非金属梳齿件60通过电加热板20加热到相应的温度后,可用于烫发和梳发,并能加 快头发成型时间,功能更加丰富,并且结构简单合理,便于安装和拆卸方便。优选的是,承载体10上设有若干沟槽11,非金属梳齿件60卡接在沟槽11中。更好的是,承载体10与电加热板20一体成型。本实施例中,所述承载体10为平形承载板。
优选的是,所述承载体10上至少平行设置有两排非金属梳齿件60,相同排的非金属梳齿件60之间均匀排列,并且相邻排的非金属梳齿件60之间交错设置,头发在交错设置的非金属梳齿件60之间更容易挤压拉直或成型。电热直发梳100优选设置4~6排的非金属梳齿件60比较合理,每排的非金属梳齿件60的个数相同或不同。所述非金属梳齿件60优选设置于承载体10的正面,电加热板20设置于承载体10的背面,电加热板20与电线或电池连接,即电热直发梳100可由外部电源或内部电池供电。本发明中非金属梳齿件60优选为扁形,实际上非金属梳齿件60可以是圆形、三角形等其他形状。非金属梳齿件60可为单数或双数;非金属梳齿件60可以长度相同,也可以长度不相同。
优选的是,承载体10的材质为金属或导热塑胶,优选采用铝或铜。导热梳齿30的材质为非金属,优选采用陶瓷或导热塑胶。承载体10的外部包覆设有保护胶套40,且承载体10上连接有一手柄50,以便于用户通过手柄50握持和使用电热直发梳100。非金属梳齿件60与承载体10优选相互独立但彼此固接,当然导热梳齿30与承载体10也可以一体成型。所述承载体10与所述电加热板20也可以一体成型也可以相互独立但彼此固接。
所述电加热板20可以是PTC(Positive Temperature Coefficient Thermistor,正温度系数热敏电阻)加热板、MCH(陶瓷电热基板)电热板、厚膜加热板等。
优选的是,非金属梳齿件60为单个形式存在,单个非金属梳齿件60逐个与沟槽11卡接。图48示出了本发明另一实施例中电热直发梳的非金属梳齿件组件的结构,若干个非金属梳齿件60固接在一非金属齿条61上构成一排非金属梳齿件60,每排非金属梳齿件60分别与沟槽11卡接。
图49~图53示出了本发明第十四实施例的电热直发梳的结构,所述电热直发梳100包括有承载体10、电加热板20和若干非金属梳齿件60,非金属梳齿件60和电加热板20分别设置于承载体10上,且非金属梳齿件60与承载体10可拆卸式连接,具体可以是螺接、卡接或者铆接等。电热直发梳100在工作状态下,电加热板20生成热量并经由承载体10传导给非金属梳齿件60。非金属 梳齿件60通过电加热板20加热到相应的温度后,可用于烫发和梳发,并能加快头发成型时间,功能更加丰富,并且结构简单合理,便于安装和拆卸方便。优选的是,承载体10上设有若干沟槽11,非金属梳齿件60卡接在沟槽11中。更好的是,承载体10与电加热板20一体成型。本实施例中,所述承载体10为弧形承载板。
图54~图55示出了本发明第十五实施例的电热直发梳的结构,所述电热直发梳100包括有承载体10、电加热板20和若干非金属梳齿件60,非金属梳齿件60和电加热板20分别设置于承载体10上,且非金属梳齿件60与承载体10可拆卸式连接,具体可以是螺接、卡接或者铆接等。电热直发梳100在工作状态下,电加热板20生成热量并经由承载体10传导给非金属梳齿件60。非金属梳齿件60通过电加热板20加热到相应的温度后,可用于烫发和梳发,并能加快头发成型时间,功能更加丰富,并且结构简单合理,便于安装和拆卸方便。优选的是,承载体10上设有若干沟槽11,非金属梳齿件60卡接在沟槽11中。更好的是,承载体10与电加热板20一体成型。本实施例中,所述承载体10为圆形承载板。
综上所述,本发明电热直发梳包括有承载体、电加热板和若干导热梳齿,在工作状态下,所述电加热板生成热量并经由所述承载体传导给所述导热梳齿,头发经过所述加热后的导热梳齿后能够实现良好的直发、梳发和烫发效果。或者,本发明电热直发梳包括有承载体、电加热片和若干导热梳齿,所述导热梳齿为中空结构,电加热片直接设置在导热梳齿中;在工作状态下,所述电加热片生成热量传导给所述导热梳齿,这样头发经过加热后的导热梳齿后能够实现良好的直发、梳发和烫发效果。借此,本发明能够用于直发、梳发和烫发,因此功能更加丰富,并且能够加快头发成型时间,且结构简单,操作方便。并且,由于本发明在导热梳齿中可以直接设置电加热片,因此具有升温速度快,温度均匀的优势,因此直发、梳发和烫发效果更佳。
当然,本发明还可有其它多种实施例,在不背离本发明精神及其实质的情况下,熟悉本领域的技术人员当可根据本发明作出各种相应的改变和变形,但这些相应的改变和变形都应属于本发明所附的权利要求的保护范围。

Claims (27)

  1. 一种电热直发梳,其特征在于,包括有承载体、电加热板和若干导热梳齿,所述导热梳齿和所述电加热板分别设置于所述承载体上,所述电热直发梳在工作状态下,所述电加热板生成热量并经由所述承载体传导给所述导热梳齿。
  2. 根据权利要求1所述的电热直发梳,其特征在于,所述导热梳齿设置于所述承载体的正面,所述电加热板设置于所述承载体的背面,所述电加热板与电线或电池连接。
  3. 根据权利要求1所述的电热直发梳,其特征在于,所述承载体和导热梳齿的材质为金属或非金属。
  4. 根据权利要求3所述的电热直发梳,其特征在于,所述承载体的外部包覆设有保护胶套,且所述承载板上连接有一手柄。
  5. 根据权利要求1所述的电热直发梳,其特征在于,所述导热梳齿的齿尖上设有非导热件;和/或
    所述导热梳齿的外围设有至少一圈非导热梳齿。
  6. 根据权利要求1所述的电热直发梳,其特征在于,所述导热梳齿为板片状的梳齿片,所述梳齿片和所述电加热板分别设置于所述承载体上,并且每个所述梳齿片横跨置于所述承载体上;所述电热直发梳在工作状态下,所述电加热板生成热量并经由所述承载体传导给所述梳齿片。
  7. 根据权利要求6所述的电热直发梳,其特征在于,所述承载体上设有若干沟槽,所述梳齿片卡接在所述沟槽中。
  8. 根据权利要求1所述的电热直发梳,其特征在于,所述电加热板是正温度系数热敏电阻加热板、陶瓷电热板或者厚膜加热板;和/或
    所述导热梳齿与所述承载体一体成型;或者所述承载体与所述电加热板一体成型。
  9. 根据权利要求1所述的电热直发梳,其特征在于,至少两排所述导热梳齿相互平行设置于所述承载体上,相同排的所述导热梳齿之间均匀排列,并且相邻排的所述导热梳齿之间交错设置。
  10. 根据权利要求1~9任一项所述的电热直发梳,其特征在于,所述承载体为承载板、弧形或圆形承载体。
  11. 一种电热直发梳,其特征在于,包括有承载体、若干电加热片和若干导热梳齿,所述导热梳齿设置于所述承载体上,所述导热梳齿为中空结构,全部或部分的所述导热梳齿中设有所述电加热片;所述电加热片生成热量传导给所述导热梳齿。
  12. 根据权利要求11所述的电热直发梳,其特征在于,所述导热梳齿设置于所述承载体的正面,所述承载体的背面设置有连接板,所述连接板与所述电加热片连接,所述连接板与电线或电池连接。
  13. 根据权利要求11所述的电热直发梳,其特征在于,所述承载体和导热梳齿的材质为金属或非金属。
  14. 根据权利要求13所述的电热直发梳,其特征在于,所述承载体的外部包覆设有保护胶套,且所述承载体上连接有一手柄。
  15. 根据权利要求11所述的电热直发梳,其特征在于,所述导热梳齿的齿尖上设有非导热件。
  16. 根据权利要求11所述的电热直发梳,其特征在于,所述导热梳齿的外围设有至少一圈非导热梳齿。
  17. 根据权利要求11所述的电热直发梳,其特征在于,所述电加热片是正温度系数热敏电阻加热板、陶瓷电热板或者厚膜加热板。
  18. 根据权利要求11所述的电热直发梳,其特征在于,所述导热梳齿与所述承载体一体成型。
  19. 根据权利要求11所述的电热直发梳,其特征在于,至少两排所述梳齿相互平行设置于所述承载体上,相同排的所述梳齿之间均匀排列,并且相邻排的所述梳齿之间交错设置。
  20. 根据权利要求11~19任一项所述的电热直发梳,其特征在于,所述承载体为承载板、弧形或圆形承载体。
  21. 一种电热直发梳,其特征在于,包括有承载体、电加热板和若干梳齿件,所述梳齿件和所述电加热板分别设置于所述承载体上,且所述梳齿件与所述承载体可拆卸式连接,所述电热直发梳在工作状态下,所述电加热板生成热量并经由所述承载体传导给所述梳齿件。
  22. 根据权利要求1所述的电热直发梳,其特征在于,所述承载体上设有若干沟槽,所述梳齿件卡接在所述沟槽中。
  23. 根据权利要求21或22所述的电热直发梳,其特征在于,所述梳齿件为金属梳齿件,所述金属梳齿件包括齿条、金属梳齿和非导热件,所述齿条上设有一排所述金属梳齿,所述金属梳齿为中空结构且底部设有第一开口,所述非导热件通过所述金属梳齿的底部的所述第一开口插入所述中空结构中。
  24. 根据权利要求23所述的电热直发梳,其特征在于,所述非导热件为单个形式存在,单个所述非导热件逐个插入所述金属梳齿的所述中空结构中;或者
    若干个所述非导热件固接在一非导热座上构成一排所述非导热件,所述非导热件逐排插入所述金属梳齿的所述中空结构中。
  25. 根据权利要求21或22所述的电热直发梳,其特征在于,所述梳齿件为金属梳齿件,所述金属梳齿件包括齿条、金属梳齿和非导热件,所述齿条上设有一排所述金属梳齿,所述金属梳齿为半中空结构且顶部设有第二开口,所述非导热件通过所述金属梳齿的顶部的所述第二开口插入所述半中空结构中。
  26. 根据权利21或22所述的电热直发梳,其特征在于,所述梳齿件为非金属梳齿件,所述非金属梳齿件为无中空结构的实体件。
  27. 根据权利要求26所述的电热直发梳,其特征在于,所述非金属梳齿件为单个形式存在,单个所述非金属梳齿件逐个与所述沟槽卡接;或者
    若干个所述非金属梳齿件固接在一非金属齿条上构成一排非金属梳齿件,每排所述非金属梳齿件分别与所述沟槽卡接。
PCT/CN2014/087445 2013-09-27 2014-09-25 电热直发梳 WO2015043489A1 (zh)

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CN201320603214.9U CN203692794U (zh) 2013-09-27 2013-09-27 电热直发梳
CN201320603214.9 2013-09-27
CN201320711164.6U CN203646699U (zh) 2013-11-12 2013-11-12 电热直发梳
CN201320711459.3 2013-11-12
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CN201320711459.3U CN203646700U (zh) 2013-11-12 2013-11-12 电热直发梳
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