一种拔毛机

By designing the working and locking components of the plucking machine and using a motor to drive the plucking parts to rotate, the problem of existing plucking machines being unable to completely remove fine downy hairs has been solved, achieving clean plucking of poultry skin surfaces.

CN224504560UActive Publication Date: 2026-07-17SUZHOU MACKE MACHINERY TECHNOLOGY CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SUZHOU MACKE MACHINERY TECHNOLOGY CO LTD
Filing Date
2025-08-30
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

Existing defecation machines cannot completely remove stray feathers and fine down from the surface of poultry skin.

Method used

A feather-plucking machine has been designed, including a housing, a motor, a working component, and a locking component. The output shaft of the motor drives the feather-plucking component to rotate, thereby removing feathers from the surface of poultry skin. The working component can be inserted into the housing and fixed by the locking component.

Benefits of technology

It effectively removes fine down and residual feathers from the surface of poultry skin, improving the completeness of the hair removal process.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN224504560U_ABST
    Figure CN224504560U_ABST
Patent Text Reader

Abstract

本申请涉及一种拔毛机,技术方案包括:壳体,形成有握持部以及插接口;电机,至少部分收容于所述壳体中并具有输出轴;电源部件,收容于所述壳体中并给所述电机提供电能;工作组件,插设于所述插接口并具有拔毛件,所述拔毛件接收所述输出轴的动力并驱动所述拔毛件转动;锁止组件,设置于所述壳体并具有第一状态和第二状态,当所述锁止组件处于所述第一状态时,所述工作组件能够从所述壳体上移除,当所述锁止组件处于第二状态时,所述锁止组件被阻止从所述壳体上移除,从而具有更便于彻底将羽毛拔除的效果。
Need to check novelty before this filing date? Find Prior Art

Claims

1. An epilator, characterized in that include: The housing has a grip and an insertion interface; An electric motor, at least partially housed in the housing, and having an output shaft; A power supply component, housed within the housing, provides electrical power to the motor; A working component is inserted into the insertion interface and has a hair-pulling component, which receives power from the output shaft and drives the hair-pulling component to rotate. A locking component is disposed on the housing and has a first state and a second state. When the locking component is in the first state, the working component can be removed from the housing. When the locking component is in the second state, the locking component is prevented from being removed from the housing.

2. The epilator according to claim 1, characterized in that The working assembly includes a transmission sleeve, a transmission shaft, a driven shaft, a first transmission gear, and a second transmission gear. The transmission shaft is connected to the transmission sleeve, and the transmission sleeve is connected to the output shaft. The first transmission gear is connected to the transmission shaft, and the second transmission gear is connected to the driven shaft. The first transmission gear and the second transmission gear mesh with each other.

3. The epilator of claim 2, characterized in that The hair removal component includes a first hair removal section, which is provided with a first roller and a second roller. The first roller is connected to the drive shaft, and the second roller is connected to the driven shaft.

4. The epilator of claim 2, characterized in that The hair-removing component includes a second hair-removing section, which comprises a first part and a second part. The first part is located on the drive shaft, and the second part is located on the driven shaft. The axis of the drive shaft intersects the axis of the driven shaft.

5. The epilator of claim 2, characterized in that The output shaft is provided with a driving member at its end, and the transmission sleeve is provided with a driving part on the side near the output shaft. The driving part cooperates with the driving member. The bottom of the driving part is provided with a positioning hole, and the end of the driving member is provided with a positioning protrusion. The positioning protrusion can be inserted into the positioning hole.

6. The epilator of claim 1, characterized in that The locking assembly includes a locking member and an elastic member. The moving direction of the locking member is perpendicular to the insertion direction of the working assembly. The working assembly is provided with an insertion slot for the locking member to be inserted along the insertion direction of the working assembly. When the locking assembly is in the first state, the locking member is located in the insertion slot, and the elastic member deforms and has a tendency to reset. When the locking assembly is in the second state, the locking member is blocked, and the elastic member resets.

7. The epilator of claim 6, characterized in that The working component has a locking groove along the moving direction of the locking member. The locking groove communicates with the insertion groove. When the locking component is in the second state, the locking member is inserted into the insertion groove.

8. The epilator of claim 6, characterized in that Two locking members are symmetrically arranged radially along the output shaft, and a clearance groove is provided between the two locking members for the output shaft to pass through. The clearance groove is clearance-fitted with the output shaft.

9. The epilator of claim 6, characterized in that The locking assembly further includes a force-applying member, and the housing is provided with a through hole for the force-applying member to pass through. The force-applying member is inserted into the through hole along the sliding direction of the locking member.

10. The epilator of claim 1, characterized in that The connector is provided with a positioning element, and the surface of the working component is provided with a positioning part that cooperates with the positioning element.