CN109662429B - Double-channel twisting self-rotating hair curling device - Google Patents

Double-channel twisting self-rotating hair curling device Download PDF

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Publication number
CN109662429B
CN109662429B CN201910031091.8A CN201910031091A CN109662429B CN 109662429 B CN109662429 B CN 109662429B CN 201910031091 A CN201910031091 A CN 201910031091A CN 109662429 B CN109662429 B CN 109662429B
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handle
shaped
pipe
shaping
outer winding
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CN109662429A (en
Inventor
陈东海
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Ningbo Sanyue Electrical Appliance Co ltd
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Anhui Guandong Electronic Technology Co ltd
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    • 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
    • A45D2/02Hair winders or hair curlers for use substantially perpendicular to the scalp, i.e. steep-curlers
    • A45D2/10Hair winders or hair curlers for use substantially perpendicular to the scalp, i.e. steep-curlers in the form of spools or bobbins
    • 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
    • A45D2/36Hair curlers or hair winders with incorporated heating or drying means, e.g. electric, using chemical reaction

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  • Hair Curling (AREA)
  • Cleaning And Drying Hair (AREA)

Abstract

The invention relates to the technical field of handheld hair styling, in particular to a double-channel twisting autorotation hair curling device, which comprises: a heating winding mechanism and a cold air shaping mechanism; the outer winding pipe is a U-shaped body which is internally provided with a hollow metal material, the upper end of the U-shaped opening of the outer winding pipe is gradually folded towards the central axis of the U-shaped opening to the lower end of the U-shaped opening, and the U-shaped bottom of the outer winding pipe is communicated to the inside by the handle; the hair curler adopts the mode of separating the hair curling airflow and the shaping airflow, has large temperature difference of the airflow for head seizure, good shaping effect, simple structure and convenient operation, and utilizes the reaction force to rotate to curl the hair.

Description

Double-channel twisting self-rotating hair curling device
Technical Field
The invention relates to the technical field of handheld hair styling, in particular to a double-channel twisting autorotation hair curling device.
Background
With the development of society and the improvement of living standard, people's aesthetic standard also improves gradually thereupon, curly hair molding with the help of curly hair equipment is the most commonly used means at present, current curly hair ware, coil the hair to the metal rod of built-in heating element, iron the hair by the high temperature of metal rod's production, make the hair reach curling effect, because adopt the mode that the heat-generating body directly conducts heat, the hair of rolling up at the inlayer earlier with later the hair that rolls up at the skin temperature uneven, thereby lead to the hair of inlayer to receive high temperature to iron and damage easily, and outer roll degree is not enough, and the curling effect is not good.
And after the hair is heated and shaped, because the hair is still in a high-temperature state, the hair can deform under the action of gravity after being loosened, and the hair has poor effect after hair curling and shaping after being cooled.
Disclosure of Invention
Accordingly, the present invention has been made in view of the above problems, and it is an object of the present invention to provide a dual path twisted self-curling iron, which is achieved by the following means:
a dual channel torsional self-rotating hair curling device, comprising: a heating winding mechanism and a cold air shaping mechanism;
the heating winding mechanism includes: the device comprises a handle, a motor, a hot air inlet slot hole, a hot air blade, a heating body, an outer winding pipe and an inner torsion pipe;
the handle is a tubular body with a closed lower part, a forward and reverse rotating double-end shaft motor is fixedly arranged in the middle of the handle, a hot air blade for blowing air upwards is arranged on a shaft at the upper part of the motor, a heating body is arranged above the hot air blade, a plurality of hot air inlet slotted holes are formed in the position between the hot air blade and the motor and around the side wall of the handle, and external air is led into the handle through the hot air inlet slotted holes by the hot air blade and is discharged to the upper part of the heating winding mechanism through the heating body;
the outer winding pipe is a U-shaped pipe which is internally provided with a hollow metal material, the upper end of a U-shaped opening of the outer winding pipe is gradually folded towards the central axis of the U-shaped opening, the bottom of the U-shaped opening is communicated with the handle, the right side surface of the U-shaped opening is provided with a plurality of side holes which penetrate through the wall of the U-shaped opening, the axis of the U-shaped outer winding pipe is taken as an axis, and the left opposite side surface of the U-shaped outer winding pipe is symmetrically provided with a plurality of side holes in a rotating manner;
the lower end of the inner torsion tube is fixedly connected with the center of the bottom of the U-shaped opening of the outer winding tube, the inner torsion tube is hollow and communicated with the outer winding tube, and a plurality of torsion holes which are communicated with the inside and the outside are vertically arranged on the twisted prism side;
cold wind design mechanism includes: a cold air inlet slot hole, a shaping outer ring, a cold air blade and a connecting pipe;
the cold air blade is arranged on a lower shaft of the double-end shaft motor in the handle, and a plurality of cold air inlet slotted holes are formed in the side wall of the handle between the cold air blade and the motor;
the structure of the shaping outer ring is the same as that of the outer winding pipe and is slightly larger than the U-shaped body of the outer winding pipe, the middle points of the shaping outer ring, the outer winding pipe and the inner torsion pipe are arranged on the same line, the U-shaped bottom of the shaping outer ring is penetrated by the handle and is fixedly connected with the outer wall of the upper part of the handle and is not communicated with the handle, and a plurality of penetrating shaping holes penetrating through the wall of the U-shaped opening of the shaping outer ring towards the direction of the outer winding pipe are arranged on the wall surface of the U-shaped;
the connecting pipe is an L-shaped pipe body, the L-shaped horizontal end of the connecting pipe is arranged at the lower part of the cold air blade, the connecting pipe penetrates through the lower end of the handle and is connected with the inner hollow part of the cold air blade, and the upper end of the connecting pipe penetrates through the inner part of the shaping outer ring and is communicated with the inner hollow part of the shaping outer ring.
In one embodiment, the hot air inlet slots and the cold air inlet slots are additionally provided with filter screens.
In one embodiment, the width of both sides of the U-shape of the outer winding tube is between 15-45 mm.
In one embodiment, the shaped outer ring is connected with the handle by a bearing.
In one embodiment, the edges between all sides of the outer winding tube are provided with a rounded transition.
In one embodiment, the edges between all sides of the shaped outer ring are provided with radiused transitions.
In one embodiment, the connecting pipes are arranged in two and are symmetrically connected to the lower part of the shaped outer ring by 180 degrees.
In one embodiment, the minimum gap between the lower end of the inner torsion tube and the U-shaped bottom of the outer winding tube is set to be less than 3 mm.
The invention has the following beneficial effects:
1. the present invention has separate airflow for curling hair and airflow for setting hair, great airflow temperature difference and high hair setting effect.
2. The hair curler rotates by utilizing the counterforce to curl up hair, and has simple structure and convenient operation.
Drawings
FIG. 1 is an overall schematic view of the present invention.
FIG. 2 is a comparative illustration of the present invention.
Detailed Description
Preferred embodiments of the present invention will be described in detail with reference to the accompanying drawings, so that those embodiments can be easily implemented by those having ordinary skill in the art to which the present invention pertains. However, the present invention may be embodied in many different forms and is not limited to the embodiments described below. In addition, in order to more clearly describe the present invention, components not connected to the present invention will be omitted from the drawings.
As shown in fig. 1, a dual path twisting self-rotating hair curling device includes: the heating winding mechanism 1 and the cold air shaping mechanism 2;
as shown in fig. 2, the heat winding mechanism 1 includes: the device comprises a handle 11, a motor 12, a hot air inlet slotted hole 13, a hot air blade 14, a heating body 15, an outer winding pipe 16 and an inner torsion pipe 17;
the handle 11 is a tubular body with a closed lower part, a double-end shaft motor 12 which rotates forward and backward is fixedly arranged in the middle of the tubular body, a hot air blade 14 which blows air upwards is axially arranged on the upper part of the motor 12, a heating body 15 is arranged above the hot air blade 14, a plurality of hot air inlet slotted holes 13 are formed in the position, between the hot air blade 14 and the motor 12, surrounding the side wall of the handle 11, of the hot air blade 14, external air is led into the handle 11 through the hot air inlet slotted holes 13 by the hot air blade 14, and is discharged to the upper part of the;
the outer winding pipe 16 is a U-shaped pipe with a hollow metal inside, the upper end of the U-shaped opening of the outer winding pipe to the lower end of the U-shaped opening of the outer winding pipe gradually draws in towards the central axis of the U-shaped pipe, the bottom of the U-shaped pipe is communicated with the handle 11, the right front side of the U-shaped pipe is provided with a plurality of side holes 161 penetrating through the wall of the U-shaped pipe, the axis of the U-shaped outer winding pipe 16 is taken as an axis, the side holes 161 are symmetrically arranged on the left opposite side of the U-shaped outer winding pipe 16 in a 180-degree rotating mode, and due to the arrangement of the left side hole 161 and the right side hole 161, when airflow is ejected from the side holes 161, the U;
the inner torsion tube 17 is a prism-shaped torsion tube with a closed upper part, a plurality of side faces of the prism are twisted in parallel along the same direction, the lower end of the inner torsion tube 17 is fixedly connected with the center of the bottom of the U-shaped opening of the outer winding tube 16, the inner torsion tube is hollow and communicated, a plurality of torsion holes 171 which are through from inside to outside are vertically arranged on the side faces of the twisted prism, and due to the continuous inclination of the side faces of the inner torsion tube 17, the ejection direction of airflow ejected by the torsion holes 171 which are vertically arranged on the side faces of the prism is continuously changed towards one direction, so that reaction force is generated to drive the inner torsion tube 17 to rotate, and the airflow is;
cold wind design mechanism 2 includes: a cold air inlet slot hole 21, a shaping outer ring 22, a cold air blade 23 and a connecting pipe 24;
the cold air blade 23 is arranged on a lower shaft of the double-shaft motor 12 in the handle 11, and a plurality of cold air inlet slot holes 21 are formed in the side wall of the handle 11 between the cold air blade 23 and the motor 12;
the shaping outer ring 22 and the outer winding pipe 16 have the same structure and are slightly larger than the U-shaped body of the outer winding pipe 16, the middle points of the shaping outer ring 22, the outer winding pipe 16 and the inner torsion pipe 17 are arranged on a same line, the U-shaped bottom of the shaping outer ring 22 is penetrated through by the handle 11 and is fixedly connected with the outer wall of the upper part of the handle 11 and is not communicated with the handle, and a plurality of penetrating shaping holes 221 penetrating through the wall of the U-shaped opening of the shaping outer ring 22 towards the direction of the outer winding pipe 16 are arranged on the wall surface of the U-shaped opening of the shaping;
the connecting pipe 24 is an L-shaped pipe, the L-shaped horizontal end of the connecting pipe is arranged below the cold air blade 23, the connecting pipe penetrates through the lower end of the handle 11 and is connected with the inside of the cold air blade 23 in a hollow mode, and the upper end of the connecting pipe 24 penetrates through the inside of the shaping outer ring 22 and is communicated with the inside of the shaping outer ring 22 in a hollow mode.
Preferably, as an implementation mode, the hot air inlet slot 13 and the cold air inlet slot 21 are additionally provided with a filter screen to prevent the particles from being sucked.
Preferably, as an embodiment, the width of both sides of the U-shape of the outer winding tube 16 is between 15 to 45mm, and the size of the width determines the bending diameter of the curls.
Preferably, as an implementation mode, the shaped outer ring 22 is connected with the handle 11 by a bearing, so that friction is reduced, and the rotation of the outer winding tube 16 and the inner torsion tube 17 by reacting force is facilitated.
Preferably, as an embodiment, the edges between all sides of the outer winding tube 16 are provided with excessive arcs, so that after the hair is curled, the hair is easily broken because the hair is brittle, and the excessive arcs are not easy to cut the hair. .
Preferably, as an embodiment, the edges between all sides of the outer shaping ring 22 are provided with excessive arcs to prevent bruising when touching the face during curling.
Preferably, as an embodiment, the connecting tubes 24 are arranged in two and symmetrically connected to the lower portion of the outer shaping ring 22 by 180 degrees, so that the air flow pressure in the outer shaping ring 22 is uniform.
Preferably, as an embodiment, the minimum gap between the lower end of the inner torsion tube 17 and the U-shaped bottom of the outer winding tube 16 is set to be less than 3mm, so that the hair can be squeezed into the gap.
The working principle of the invention is as follows:
firstly, as shown in fig. 2, when a user needs to curl hair, the user takes a strand of hair, the tip of the hair is pressed into the gap between the inner torsion tube 17 and the outer winding tube 16, the motor is started, the external air flow is rotated by the hot air blades 14 and sucked into the handle 11, the external air flow is heated by the heating element 15, the heat flow is divided into two paths, one air flow enters the inner torsion tube 17 and is sprayed out through the torsion holes 171 of the inner torsion tube 17, the direction of the sprayed air flow of the torsion holes 171 is gradually deviated due to the fact that the torsion holes 171 are arranged perpendicular to the inner torsion tube 17, and the side surface of the inner torsion tube 17 is a gradually rotating surface, and the inner torsion tube 17 generates rotating force under the reaction force.
Secondly, the other path of air flow enters the U-shaped edge of the outer winding pipe 16 and flows out of the edge hole 161, the outer surface of the outer winding pipe 16 is heated, and the outer winding pipe 16 generates rotating force under the action of reaction force.
The two revolving force directions are the same, so the outer winding pipe 16 and the inner torsion pipe 17 clamp the hair to rotate, the hair is wound on the outer winding pipe 16, when the hair is wound on the upper end of the outer winding pipe 16, a cavity is formed between the hair and the outer winding pipe 16, the reacting force is weakened by the hair under the blocking, the hair of a user can not be torn, the injury occurs, and the hair is heated by the hot air flow of the surface of the outer winding pipe 16 and the inner torsion pipe 17 to form the hair curling.
After the hair curling is finished, the motor is controlled to rotate reversely, external air flow is sucked into the lower end of the handle 11 by the cold air blades 23, enters the hollow inner part of the shaping outer ring 22 through the connecting pipe 24, is sprayed out to the hair on the outer winding pipe 16 through the shaping hole 221, and as the independent shaping channel is used, the shaping air does not pass through the heating body 15, the temperature difference is relatively large, the shaping effect is good, and finally the hair is cut off, is the hair after shaping and is pulled up from the outer winding pipe 16, so that the hair curling is finished.

Claims (8)

1. A dual channel torsional self-rotating hair curling device, comprising: a heating winding mechanism (1) and a cold air shaping mechanism (2);
the heating winding mechanism (1) includes: a handle (11), a motor (12), a hot air inlet slotted hole (13), a hot air blade (14), a heating body (15), an outer winding pipe (16) and an inner torsion pipe (17);
the method is characterized in that: the handle (11) is a tubular body with a closed lower part, a forward and reverse rotating double-end shaft motor (12) is fixedly arranged in the middle of the handle, a hot air blade (14) blowing air upwards is axially arranged on the upper part of the motor (12), a heating body (15) is arranged above the hot air blade (14), a plurality of hot air inlet slotted holes (13) are formed in the position between the hot air blade (14) and the motor (12) and around the side wall of the handle (11), external air flows through the hot air inlet slotted holes (13) by the hot air blade (14) and is led into the handle (11), and the external air is discharged to the upper part of the heating winding mechanism (1) through the heating body;
the outer winding pipe (16) is a built-in hollow U-shaped pipe made of metal materials, the upper end of a U-shaped opening of the outer winding pipe to the lower end of the U-shaped opening gradually draws towards the central axis of the U-shaped pipe, the bottom of the U-shaped opening is communicated with the handle (11), a plurality of side holes (161) penetrating through the wall of the U-shaped opening are formed in the right front side face of the U-shaped opening, the axis of the U-shaped outer winding pipe (16) is used as an axis, and a plurality of side holes (161) are also formed in the left opposite side face of the U-shaped outer winding pipe (16) in a rotation 180;
the inner torsion tube (17) is a prism-shaped torsion tube with the upper part closed, a plurality of side surfaces of the prism are twisted in parallel along the same direction, the lower end of the inner torsion tube (17) is fixedly connected with the center of the bottom of the U-shaped opening of the outer winding tube (16), the inner torsion tube is hollow and communicated, and a plurality of torsion holes (171) which are communicated with the inside and the outside are vertically arranged on the twisted prism side surfaces;
the cold air shaping mechanism (2) comprises: a cold air inlet slot hole (21), a shaping outer ring (22), a cold air blade (23) and a connecting pipe (24);
the cold air blade (23) is arranged on a lower shaft of the double-end shaft motor (12) in the handle (11), and a plurality of cold air inlet slotted holes (21) are formed in the side wall of the handle (11) between the cold air blade (23) and the motor (12);
the shaping outer ring (22) and the outer winding pipe (16) have the same structure and are slightly larger than the U-shaped body of the outer winding pipe (16), the middle points of the shaping outer ring (22), the outer winding pipe (16) and the inner torsion pipe (17) are arranged on the same line, the U-shaped bottom of the shaping outer ring (22) is penetrated through by the handle (11) and is fixedly connected with the outer wall of the upper part of the handle (11) and is not communicated with the outer wall, and a plurality of through shaping holes (221) penetrating through the wall of the U-shaped opening of the shaping outer ring (22) towards the wall surface of the outer winding pipe (16) are arranged on the wall surface;
the connecting pipe (24) is an L-shaped pipe body, the L-shaped horizontal end of the connecting pipe penetrates through the lower end of the handle (11) and is connected with the inner hollow part of the handle at the lower part of the cold air blade (23), and the upper end of the connecting pipe (24) penetrates through the inner part of the shaping outer ring (22) and is communicated with the inner hollow part of the shaping outer ring (22).
2. The dual channel torsional spinning hair curling device of claim 1, wherein: the minimum clearance between the lower end of the inner torsion tube (17) and the U-shaped bottom of the outer winding tube (16) is set to be less than 3 mm.
3. The dual channel torsional spinning hair curling device of claim 1, wherein: and filter screens are added to the hot air inlet slotted hole (13) and the cold air inlet slotted hole (21).
4. The dual channel torsional spinning hair curling device of claim 1, wherein: the width of the two sides of the U-shape of the outer winding pipe (16) is between 15 and 45 mm.
5. The dual channel torsional spinning hair curling device of claim 1, wherein: the shaping outer ring (22) is connected with the handle (11) by a bearing.
6. The dual channel torsional spinning hair curling device of claim 1, wherein: the edges between all sides of the outer winding tube (16) are provided with a circular arc transition.
7. The dual channel torsional spinning hair curling device of claim 1, wherein: the edges between all sides of the shaping outer ring (22) are provided with arc transition.
8. The dual channel torsional spinning hair curling device of claim 1, wherein: the two connecting pipes (24) are arranged and symmetrically connected to the lower part of the shaping outer ring (22) by 180 degrees.
CN201910031091.8A 2019-01-14 2019-01-14 Double-channel twisting self-rotating hair curling device Active CN109662429B (en)

Priority Applications (1)

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CN201910031091.8A CN109662429B (en) 2019-01-14 2019-01-14 Double-channel twisting self-rotating hair curling device

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Application Number Priority Date Filing Date Title
CN201910031091.8A CN109662429B (en) 2019-01-14 2019-01-14 Double-channel twisting self-rotating hair curling device

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CN109662429B true CN109662429B (en) 2021-07-13

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Families Citing this family (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110236279A (en) * 2019-06-06 2019-09-17 奥佳华智能健康科技集团股份有限公司 Automatic curler
CN110959975B (en) * 2019-12-10 2021-06-08 深圳素士科技股份有限公司 Air duct structure and hair curling device

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN2655710Y (en) * 2003-08-21 2004-11-17 王瑞昌 Multifunctional heat air electric comb
CN107822293A (en) * 2017-11-13 2018-03-23 深圳市环泰电器有限公司 Novel hair styling apparatus
KR20180002350U (en) * 2017-01-25 2018-08-02 조성찬 A hair rod
CN108366657A (en) * 2015-08-07 2018-08-03 Seb公司 The hairdressing apparatus for hair crimping with the introducing gap for being equipped with guide device
CN108634527A (en) * 2018-05-18 2018-10-12 东莞市比迪电器有限公司 Curly hair cooling and shaping integral type curler

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN2655710Y (en) * 2003-08-21 2004-11-17 王瑞昌 Multifunctional heat air electric comb
CN108366657A (en) * 2015-08-07 2018-08-03 Seb公司 The hairdressing apparatus for hair crimping with the introducing gap for being equipped with guide device
KR20180002350U (en) * 2017-01-25 2018-08-02 조성찬 A hair rod
CN107822293A (en) * 2017-11-13 2018-03-23 深圳市环泰电器有限公司 Novel hair styling apparatus
CN108634527A (en) * 2018-05-18 2018-10-12 东莞市比迪电器有限公司 Curly hair cooling and shaping integral type curler

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Effective date of registration: 20230109

Address after: No. 75, Nanda Road, Changhe Town, Cixi City, Ningbo City, Zhejiang Province, 315326

Patentee after: NINGBO SANYUE ELECTRICAL APPLIANCE Co.,Ltd.

Address before: 232063 5th floor, Jianghuai cloud industrial platform, Taikang street, Shannan high tech Zone, Huainan City, Anhui Province

Patentee before: Anhui Guandong Electronic Technology Co.,Ltd.

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