US2026076466A1PendingUtilityA1

High-performance smart hair curler

Assignee: MILLPLAN ELECTRIC APPLIANCE SHEN ZHEN CO LTDPriority: Sep 13, 2024Filed: Jan 18, 2025Published: Mar 19, 2026
Est. expirySep 13, 2044(~18.1 yrs left)· nominal 20-yr term from priority
Inventors:CHAN NGAN CHI
A45D 1/28A45D 2/367A45D 1/04
25
PatentIndex Score
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Claims

Abstract

A high-performance smart hair curler includes a curling assembly, a heating passage, a handle, a hollow connecting base, a hollow cylindrical heating member, a blowing component, and a drive motor. The curling assembly is sleeve around the heating passage. The hollow connecting base is connected between the handle and the heating passage. The hollow cylindrical heating member and the blowing component are arranged from front to back in the handle, and an air guide gap is arranged on the hollow cylindrical heating member. The blowing component has an air outlet direction that is arranged forward. The drive motor is fixedly arranged in the hollow cylindrical heating member, and has a front-end rotating shaft that is connected to the curling assembly, so as to drive the curling assembly to rotate around the heating passage in a circumferential direction.

Claims

exact text as granted — not AI-modified
What is claimed is: 
     
         1 . A high-performance smart hair curler, comprising a curling assembly, a heating passage, a handle, a hollow connecting base, a hollow cylindrical heating member, a blowing component, and a drive motor; wherein
 the curling assembly is rotatably sleeved around the heating passage, and a curling gap A for rolling hair is present between the curling assembly and the heating passage; the hollow connecting base is connected between a front end of the handle and a rear end of the heating passage; the hollow cylindrical heating member and the blowing component are arranged successively from front to back inside the handle, and an air guide gap is arranged in an anterior-posterior direction on the hollow cylindrical heating member; and   the blowing component has an air outlet direction that is arranged forward, so as to directly face the air guide gap; the drive motor is fixedly arranged in the hollow cylindrical heating member, and has a front-end rotating shaft that extends forward and is connected to a rear end of the curling assembly, so as to drive the curling assembly to rotate around the heating passage in a circumferential direction.   
     
     
         2 . The high-performance smart hair curler according to  claim 1 , wherein a heat storage core for storing thermal energy is embedded inside the heating passage in the anterior-posterior direction;
 a hot air introducing channel that runs through the heat storage core to an outer wall thereof is opened inside the heat storage core in the anterior-posterior direction, and has a rear end that is in communication with a front end of the air guide gap; multiple air outlet holes that run through the heating passage to an inner wall thereof to be in communication with the hot air introducing channel are opened on an outer wall of the heating passage evenly from a front end thereof to a middle portion thereof.   
     
     
         3 . The high-performance smart hair curler according to  claim 1 , further comprising a curling housing;
 wherein the curling housing has an outer wall, on which at least one hair inlet is opened in a lengthwise direction thereof, and a rear end that is in insertion connection outside a front end of the hollow connecting base, so as to encapsulate the curling assembly and the heating passage, and a curling gap B is present between the curling housing and the curling assembly.   
     
     
         4 . The high-performance smart hair curler according to  claim 3 , wherein the curling assembly comprises a hair selector sleeve that is arranged in the anterior-posterior direction and a sleeve ring that is connected to a rear end of the hair selector sleeve;
 the hair selector sleeve takes the shape of a hollow cylindrical structure, with a front end, on which a curling entrance extending to a rear portion and a middle portion thereof is opened backward; a connecting sleeve is arranged forward at a middle portion inside the hollow connecting base; the heating passage has a rear end that is fixedly sleeved around a front end of the connecting sleeve; the sleeve ring is movably clamped between an inner wall at the front end of the hollow connecting base and an outer wall at a rear end of the connecting sleeve, and connected to the drive motor, so that the drive motor can drive the hair selector sleeve to rotate around the heating passage in the circumferential direction.   
     
     
         5 . The high-performance smart hair curler according to  claim 4 , further comprising a drive gear set;
 wherein internal rotating teeth are arranged to surround an inner wall of the sleeve ring; a through-hole that runs through an inner wall and an outer wall of the connecting sleeve is opened at a rear portion of the connecting sleeve; the drive gear set is fixedly arranged on the front-end rotating shaft of the drive motor, and passes through the through-hole to engage with the internal rotating teeth.   
     
     
         6 . The high-performance smart hair curler according to  claim 4 , wherein the drive gear set comprises a driving gear and a driven gear;
 a shaft rod located on a lateral side of the front-end rotating shaft of the drive motor is arranged forward at a front end of the hollow cylindrical heating member; the driving gear is fixedly sleeved around the front-end rotating shaft of the drive motor, and the driven gear is fixedly sleeved around the shaft rod, engages with the driving gear, and partially passes through the through-hole to engage with the internal rotating teeth.   
     
     
         7 . The high-performance smart hair curler according to  claim 4 , further comprising a stop sleeve that is used for stopping hair from entering the hollow connecting base and fixedly sleeved at the rear end of the heating passage;
 wherein the stop sleeve is fixed sleeved around the connecting sleeve, and one coil of stop outer edge is arranged to protrude outward an outer wall at a front end of the stop sleeve.   
     
     
         8 . The high-performance smart hair curler according to  claim 7 , wherein multiple air guide ports A that run through an inner wall and an outer wall of the connecting sleeve are evenly opened at a front portion and a middle portion of the connecting sleeve; multiple air guide ports B that run through an inner wall and an outer wall of the stop sleeve are evenly opened at a front portion and a middle portion of the stop sleeve; the multiple air guide ports B correspond one by one to the multiple air guide ports A. 
     
     
         9 . The high-performance smart hair curler according to  claim 1 , wherein the hollow cylindrical heating member comprises an outer sleeve, an inner sleeve, multiple coils of heating wires that are evenly and fixedly arranged from front to back between the outer sleeve and the inner sleeve, and a heat-insulating sleeve that is sleeved around the outer sleeve; and
 the air guide gap is present between the outer sleeve and the inner sleeve; the blowing component is fixedly arranged outside a rear end of the heat-insulating sleeve; the drive motor is clamped into the inner sleeve.   
     
     
         10 . The high-performance smart hair curler according to  claim 9 , wherein multiple fixing plates are evenly and fixedly arranged at an outer wall of the inner sleeve in the anterior-posterior direction, and multiple clamping slots are opened evenly from front to back on each of the fixing plates; and
 the multiple coils of heating wires are partially corresponding to and fixedly clamped into the multiple clamping slots located at the same front and rear positions; multiple air guide holes that run through two end faces of the multiple fixing plates are evenly opened on the multiple fixing plates, respectively; multiple air guide sheets are evenly and obliquely opened at a rear end of the outer wall of the inner sleeve, and correspondingly located between rear ends of the multiple fixing plates.

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