IP Library Granted Patent US 12,484,747
Granted Patent B2
US 12,484,747 · App. 17/777,461 · Granted Dec 2, 2025

Vacuum cleaner

Inventors: Phil Jae Hwang (Seoul, KR); Chung Jae Ryu (Seoul, KR); Chi Wan Kim (Seoul, KR); Gyoung Min Lee (Seoul, KR); Yun Bo Park (Seoul, KR)
Assignee: LG Electronics Inc.
A47L9/0477A46B13/006A46B13/02A47L9/0411A47L11/19A46B2200/3033
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Quick Facts
Patent No.
US 12,484,747
App. No.
17/777,461
Granted
Dec 2, 2025
Kind
B2
Abstract

A vacuum cleaner includes a main body and a suction nozzle. The suction nozzle includes a housing, a driver, a rotating brush, and a detachable cover. A pressing button is mounted in the housing. The detachable cover is rotated about the rotational axis of the rotating brush to be mounted in the housing. The pressing button selectively blocks rotation of the detachable cover.

Claims (57)

1 . A vacuum cleaner comprising:

a suction nozzle configured to suction dust from a floor; and

a main body configured to receive the dust,

wherein the suction nozzle comprises:

a housing that defines an inlet configured to provide the dust to the main body,

a rotating brush disposed at the housing and configured to rotate about a rotational axis,

a driver disposed at the housing and configured to rotate the rotating brush, the driver comprising a first shaft member configured to transfer rotational force to the rotating brush,

a detachable cover configured to rotatably support the rotating brush, the detachable cover being configured to be detachably coupled to the housing based on being rotated relative to the housing about the rotational axis of the rotating brush,

a button disposed at the housing and configured to selectively restrict rotation of the detachable cover relative to the housing,

a plurality of first protrusions disposed at the detachable cover,

a second protrusion disposed at the housing, and

a third protrusion disposed at the detachable cover,

wherein the housing comprises a guide rail arranged along a circumferential direction about the rotational axis and configured to guide rotation of the plurality of first protrusions about the rotational axis,

wherein the detachable cover includes a guide groove that is defined at an inner surface the detachable cover along the circumferential direction, the guide groove being configured to guide the second protrusion based on the detachable cover being rotated relative to the housing about the rotational axis,

wherein the button comprises:

a button portion configured to be pressed by a user, and

a first blocking portion that extends from the button portion and is configured to restrict rotation of the detachable cover by blocking a rotational route of the third protrusion based on the detachable cover being rotated relative to the housing about the rotational axis, and

wherein the first blocking portion is configured to, based on the user pressing the button portion, deviate from the rotational route of the third protrusion.

2 . The vacuum cleaner of claim 1 , wherein the suction nozzle further comprises a fourth protrusion disposed at the detachable cover, and

wherein the button further comprises a second blocking portion that extends from the button portion and is configured to restrict movement of the fourth protrusion in a direction parallel to the rotational axis.

3 . The vacuum cleaner of claim 1 , wherein the guide rail comprises a plurality of first walls configured to restrict movement of the plurality of first protrusions in a direction parallel to the rotational axis.

4 . The vacuum cleaner of claim 3 , wherein the guide rail further comprises a plurality of second walls configured to restrict rotation of the plurality of first protrusions about the rotational axis.

5 . The vacuum cleaner of claim 1 , wherein the button further comprises an elastic member disposed between the button portion and the housing and configured to apply force to the button portion to thereby replace the first blocking portion to the rotational route of the third protrusion based on the user releasing the button portion.

6 . The vacuum cleaner of claim 1 , wherein the rotating brush comprises:

a brush body having a cylindrical shape, the brush body defining an opening at a side thereof;

a brush member attached to an outer circumferential surface of the brush body and configured to contact the floor; and

a second shaft member disposed in the opening of the brush body and configured to engage with the first shaft member.

7 . The vacuum cleaner of claim 1 , wherein the driver further comprises a motor coupled to the housing and configured to generate the rotational force.

8 . The vacuum cleaner of claim 7 , wherein the motor and the first shaft member are disposed at a first side of the housing, and

wherein the detachable cover is configured to be coupled to a second side of the housing opposite the first side of the housing.

9 . A vacuum cleaner comprising:

a suction nozzle configured to suction dust from a floor, the suction nozzle comprising:

a housing configured to move along the floor,

a rotating brush disposed at the housing and configured to rotate about a rotational axis,

a driver disposed at the housing and configured to rotate the rotating brush,

a detachable cover configured to rotatably support the rotating brush, the detachable cover being configured to be detachably coupled to the housing based on being rotated relative to the housing about the rotational axis of the rotating brush,

a button disposed at the housing and configured to selectively restrict rotation of the detachable cover relative to the housing,

a plurality of first protrusions disposed at the detachable cover, and

a second protrusion disposed at the housing,

wherein the housing comprises a guide rail arranged along a circumferential direction about the rotational axis and configured to guide rotation of the plurality of first protrusions about the rotational axis,

wherein the detachable cover includes a guide groove that is defined at an inner surface the detachable cover along the circumferential direction, the guide groove being configured to guide the second protrusion based on the detachable cover being rotated relative to the housing about the rotational axis,

wherein the detachable cover comprises a third protrusion that protrudes from the inner surface of the detachable cover and configured to interfere with at least a portion of the button,

wherein the button comprises:

a button portion configured to be pressed by a user, and

a first blocking portion that extends from the button portion and is configured to restrict rotation of the detachable cover by blocking a rotational route of the third protrusion of the detachable cover based on the detachable cover being rotated relative to the housing about the rotational axis,

wherein the first blocking portion is configured to, based on the user pressing the button portion, deviate from the rotational route of the third protrusion of the detachable cover.

10 . The vacuum cleaner of claim 9 , wherein the button further comprises an elastic member disposed between the button portion and the housing and configured to apply force to the button portion to thereby replace the blocking portion to the rotational route of the third protrusion based on the user releasing the button portion.

11 . The vacuum cleaner of claim 9 ,

wherein the housing comprises a plurality of first walls that radially protrude from a circumferential surface of an end portion of the housing and are arranged along the circumferential surface of the housing, the plurality of first walls being configured to guide rotation of the first protrusions about the rotational axis and to restrict movement of the plurality of first protrusions in a direction parallel to the rotational axis.

12 . The vacuum cleaner of claim 11 , wherein the housing further comprises a second wall that extends from at least one of the plurality of first walls in the direction parallel to the rotational axis and is configured to restrict rotation of the plurality of first protrusions about the rotational axis.

13 . The vacuum cleaner of claim 9 , wherein the driver comprises:

a motor coupled to the housing and configured to generate rotational force; and

a first shaft member configured to transfer the rotational force of the motor to the rotating brush, and

wherein the rotating brush comprises a second shaft member coupled at a side of the rotating brush and configured to engage with the first shaft member.

14 . The vacuum cleaner of claim 13 , wherein the motor, the first shaft member, and the second shaft member are disposed at a first side of the housing, and

wherein the detachable cover is configured to be coupled to a second side of the housing opposite the first side of the housing.

15 . The vacuum cleaner of claim 13 , wherein the first shaft member and the second shaft member are disposed along the rotational axis of the rotating brush.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 13, 2022
From: HWANG, PHIL JAE; RYU, CHUNG JAE; KIM, CHI WAN; LEE, GYOUNG MIN; PARK, YUN BO
To: LG ELECTRONICS INC.
Reel/Frame 060500/0899 →
Priority Claims (1)
KR 10-2019-0159191 · Dec 3, 2019 · national
Continuity (1)
Related Publication 20220400916A1 · Dec 22, 2022
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