IP Library › Granted Patent US 10,835,093
Granted Patent B2
US 10,835,093 · App. 15/981,178 · Granted Nov 17, 2020

Dust collecting apparatus

Inventors: Youngho Kim (Seoul, KR); Hoikil Jeong (Seoul, KR); Heonpyeong Ji (Seoul, KR); Kangjin Park (Seoul, KR)
Assignee: LG ELECTRONICS INC.
A47L9/108A47L9/1633B01D45/12B01D45/16B01D46/2411B01D50/002A47L9/12A47L9/1625A47L9/1641A47L9/1683
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Quick Facts
Patent No.
US 10,835,093
App. No.
15/981,178
Granted
Nov 17, 2020
Kind
B2
Abstract

A dust collecting apparatus includes a dust separation unit to separate dust from suctioned air; a dust storage unit to store the dust separated in the dust separation unit; a pressing member to compress the dust stored in the dust storage unit, and having a pressing plate support part, and a pressing plate supported by the pressing plate support part; a fixing member disposed between an inner circumferential surface of the dust storage unit and the pressing plate support part; and a path formed by a part of the fixing member, located between the pressing plate support part and the inner circumferential surface of the dust storage unit, and through which the air between the pressing plate and the fixing member passes, wherein one or more holes through which the air between the pressing plate and the fixing member passes are formed at the pressing plate.

Claims (37)

1. A vacuum cleaner comprising:

a dust separation unit including a cyclone part configured to separate dust from suctioned air by a cyclone flow;

a filter unit configured to filter the air separated from the dust in the dust separation unit;

a dust storage unit configured to store the dust separated from the air in the dust separation unit, an upper portion of the dust storage unit having a diameter that is larger than a diameter of a lower portion of the dust separation unit;

a connection part configured to connect the dust storage unit with the dust separation unit;

a pressing member configured to compress the dust stored in the dust storage unit, and having a pressing plate support part, and a pressing plate supported by the pressing plate support part;

a fixing member disposed between an inner circumferential surface of the dust storage unit and the pressing plate support part; and

a dust movement guide protruded from the inner circumferential surface of the dust storage unit and extended in a circumferential direction of the dust storage unit, the dust movement guide defining an opening to move at least one of air or dust from the dust separation unit to the dust storage unit,

wherein at least a part of the dust movement guide is located lower than the connection part,

wherein an axis of the cyclone flow passes through the opening defined by the dust movement guide,

wherein the dust movement guide includes a first guide end which initially guides the dust moved to the dust storage unit,

wherein the first guide end extends from the inner circumferential surface of the first dust storage unit to be vertically inclined,

wherein the dust movement guide further includes a falling end which enables the dust flowing along the dust movement guide to fall down, and

wherein the falling end is spaced apart from the first guide end.

2. The vacuum cleaner of claim 1 , wherein the dust movement guide is located higher than the fixing member and the pressing plate.

3. The vacuum cleaner of claim 1 , wherein at least a part of the dust movement guide is located lower than the filter unit.

4. The vacuum cleaner of claim 1 , wherein at least a part of the dust movement guide is disposed to be vertically overlapped with the fixing member.

5. A dust collecting apparatus comprising:

a first dust separation unit configured to primarily separate dust from suctioned air;

a first dust storage unit configured to store the dust separated in the first dust separation unit;

a pressing member configured to compress the dust stored in the first dust storage unit, and having

a pressing plate support part, and

a pressing plate supported by the pressing plate support part;

a second dust separation unit configured to separate again the dust from the air passed through a dust separation process in the first dust separation unit;

a second dust storage unit positioned within the first dust storage unit to store the dust separated in the second dust separation unit; and

a dust movement guide protruded from the inner circumferential surface of the first dust storage unit and positioned to surround the second dust storage unit and defining an opening to move at least one of air or dust from the dust separation unit to the dust storage unit,

wherein the second dust storage unit passes through the opening defined by the dust movement guide,

wherein the dust movement guide includes a first guide end which initially guides the dust moved to the dust storage unit,

wherein the first guide end extends from the inner circumferential surface of the first dust storage unit to be vertically inclined,

wherein the dust movement guide further includes a falling end at which dust flowing along the dust movement guide falls down, and

wherein the falling end is spaced apart from the first guide end.

6. The vacuum cleaner of claim 5 , wherein the first dust separation unit includes an upper portion and a lower portion, and

the upper portion has a diameter larger than a diameter of the lower portion of the dust separation unit.

7. The vacuum cleaner of claim 6 , further comprising a connection part configured to connect the first dust storage unit with the first dust separation unit, and

wherein at least a part of the dust movement guide is located lower than the connection part.

8. The vacuum cleaner of claim 7 , further comprising a filter unit configured to filter the air separated from the dust in the first dust separation unit;

wherein a lower end of the filter unit is located lower than the connection part.

Priority Claims (1)
KR 10-2015-0007745 · Jan 16, 2015 · national
Continuity (2)
Division 15000980 · Jan 19, 2016
Related Publication 20180255994A1 · Sep 13, 2018
Cited By (2)
US 12,543,905 US 12,740,680