Hair Styler Used for Conditioning, Drying and Curling Hair
Abstract
A hair styler is used for conditioning, drying, and curling hair, comprising a cylindrical hair styler body with a hair curling lever on the hair styler. A handle is coaxially provided on one end of the hair styler body. A micro motor is provided in the handle. The said micro motor drives the hair styler body to relatively rotate about the handle alongside its axis. The handle is disposed of control switch controlling rotation of control motor; the heat generated by energization of the hair styler body or that is set up in the hair styler body directly heats up the electric heater adjacent to the hair styler body. The invention features advantages such as easy operation as well as functions of hair curling, drying, conditioning, and scalp care.
Claims
exact text as granted — not AI-modified1 . A hair styler used for conditioning, drying, and curling hair, consists of a cylindrical hair styler body that is mounted a hair curling lever, a handle that is coaxially installed on one end of said hair styler body, a micro motor that is installed inside of said handle, and an electric heater that is installed inside of said hair styler body or adjacent to said hair styler body; said hair styler body being able to relatively rotate around said handle alongside its axis which is operated by said micro motor; a switch being mounted on said handle to control the rotation of said hair styler body.
2 . The hair styler according to claim 1 , said hair styler body is made with a substance being able to emit far infrared ray, and said hair styler body is able to emit far infrared ray when the temperature of said hair styler body is heated up as preset.
3 . The hair styler according to claim 1 , said hair styler body is fully made with metallic material mounted with several far infrared ray generators which are made with a substance being able to emit far infrared ray when a heat is provided; or the surface of said hair styler body is installed with a far infrared ray generating cladding that is made with said substance being able to emit far infrared ray when a heat is provided; said hair styler body is able to emit far infrared ray when the temperature of said hair styler body is heated up as preset.
4 . The hair styler according to claim 1 , said hair styler body is made with a vitrified pipe that is installed an electric membrane that is able to generate heat when electric power is provided; then, said hair styler body is able to generate heat when said hair styler body is supplied with electric power.
5 . The hair styler according to claim 1 , said handle is mounted an overloading protection device that prevents hair being excessively pulled.
6 . The hair styler according to claim 1 , fan blades, connected with output shaft of said micro motor, are installed inside said hair styler body or said handle at the joint between said hair styler body and said handle; said hair styler body having an air outlet; said fan blades blows the air out from said hair styler body via said air outlet when said micro motor is rotating.
7 . The hair styler according to claim 1 , said curling level is installed an insulated ball end.
8 . The hair styler according to claim 1 , said hair curling lever is able to be replaced by hair curling wool.
9 . The hair styler according to claim 1 , said curling lever is able to be replaced by hair curling wool that is artificial wool that is made by mixing nylon with 1%-15% (Wt %) tourmaline powder.
10 . The hair styler according to claim 1 , said hair curling lever mounted on said hair styler body is changeable with various hair curling levers or cylinders with different lengths and/or different diameters, said cylinder that is sleeved on said hair styler body is able to be replaced.
11 . The hair styler according to claim 2 , said substance, being able to emit far infrared ray when the heat is provided, is made of a far infrared vitrified pipe.
12 . The hair styler according to claim 2 , said substance, being able to emit far infrared ray when the heat is provided, is made of quartz.
13 . The hair styler according to claim 2 , said substance, being able to emit far infrared ray when the heat is provided, is made of alumina (Al 2 O 3 ).
14 . The hair styler according to claim 2 , said substance, being able to emit far infrared ray when the heat is provided, is made of tourmaline powder.
15 . The hair styler according to claim 2 , said substance, being able to emit far infrared ray when the heat is provided, is a tourmaline powder.
16 . The hair styler according to claim 9 , the percentage of compounds by weight of said tourmaline powder is as following: 10%-15% of boron trioxide (B 2 O 3 ); 30%-35% of silica (SiO 2 ); Fe 2 O 3 1%-3% of iron oxide (Fe 2 O 3 ); 32%-36% of alumina (AL 2 O 3 ); 1%-3% of calcium oxide (CaO); 9%-14% of magnesium oxide (MgO); 0.5%4% of dipotassium oxide (K 2 O); 2%-5% of disodium oxide (Na 2 O) and 1%-3% of titanium oxide (TiO 2 ).
17 . The hair styler according to claim 9 , said curling lever is able to be replaced by a hair curling wool that is an artificial wool that is made by mixing nylon with 1%-15% (Wt %) tourmaline powder.
18 . The hair styler according to claim 9 , said hair curling wool is an artificial wool that is made by mixing nylon with 1%-15% (Wt %) tourmaline powder.
19 . The hair styler according to claim 15 , the percentage of compounds by weight of said tourmaline powder is as following: 10%-15% of boron trioxide (B 2 O 3 ); 30%-35% of silica (SiO 2 ); Fe 2 O 3 1%-3% of iron oxide (Fe 2 O 3 ); 32%-36% of alumina (AL 2 O 3 ); 1%-3% of calcium oxide (CaO); 9%-14% of magnesium oxide (MgO); 0.5%4% of dipotassium oxide (K 2 O); 2%-5% of disodium oxide (Na 2 O) and 1%-3% of titanium oxide (TiO 2 ).
20 . The hair styler according to claim 18 , the percentage of compounds by weight of said tourmaline powder is as following: 10%-15% of boron trioxide (B 2 O 3 ); 30%-35% of silica (SiO 2 ); Fe 2 O 3 1%-3% of iron oxide (Fe 2 O 3 ); 32%-36% of alumina (AL 2 O 3 ); 1%-3% of calcium oxide (CaO); 9%-14% of magnesium oxide (MgO); 0.5%4% of dipotassium oxide (K 2 O); 2%-5% of disodium oxide (Na 2 O) and 1%-3% of titanium oxide (TiO 2 ).Join the waitlist — get patent alerts
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