Dirt separator for a vacuum cleaner
A dirt separator for a vacuum cleaner includes a chamber having an inlet through which dirt-laden fluid enters and an outlet through which cleansed fluid exits the chamber. A disc located at the outlet rotates about a rotational axis and comprises holes through which the cleansed fluid passes. The dirt-laden fluid enters the chamber along a flow axis that intersects the disc.
1. A dirt separator for a vacuum cleaner, the dirt separator comprising:
a chamber having an inlet through which dirt-laden fluid enters the chamber, and an outlet through which cleansed fluid exits the chamber; and
a disc located at the outlet, the disc being arranged to rotate about a rotational axis and comprising holes through which the cleansed fluid passes,
wherein the dirt-laden fluid enters the chamber along a longitudinal flow axis that intersects the disc,
wherein the disc comprises a central region having a first uniform structure and an outer region having a second uniform structure, the central region having a diameter equal to or less than a diameter of the inlet, and
wherein the disc has a total open area greater than that of the inlet.
2. The dirt separator of claim 1 , wherein the flow axis intersects a centre of the disc.
3. The dirt separator of claim 1 , wherein the flow axis is parallel to the rotational axis.
4. The dirt separator of claim 1 , wherein dirt separated from the dirt-laden fluid collects at a bottom of the chamber and fills progressively in a direction towards a top of the chamber, the outlet is located at or adjacent the top of the chamber, and the bottom of the chamber is spaced axially from the top of the chamber.
5. The dirt separator of claim 4 , wherein the inlet is defined by an end of an inlet duct that extends upwardly from the bottom of the chamber.
6. The dirt separator of claim 1 , wherein the inlet is defined by an end of an inlet duct, and the chamber surrounds the inlet duct.
7. The dirt separator of claim 1 , wherein the inlet is defined by an end of an inlet duct, the inlet duct extends through a wall of the chamber, and an opposite end of the inlet duct is attachable to different attachments of the vacuum cleaner.
8. The dirt separator of claim 1 , wherein the inlet is defined by an end of an end of an inlet duct that extends linearly within the chamber.
9. The dirt separator of claim 1 , wherein a separation distance between a centre of the inlet and a centre of the disc is no greater than the diameter of the inlet.
10. The dirt separator of claim 1 , wherein the diameter of the disc is greater than the diameter of the inlet.
11. The dirt separator of claim 1 , wherein the disc comprises a perforated region and a non-perforated region, the holes are formed in the perforated region and the flow axis intersects the non-perforated region.
12. The dirt separator of claim 11 , wherein the non-perforated region has a width no less than the diameter of the inlet.
13. The dirt separator of claim 1 , wherein the disc is formed of a metal.
14. The dirt separator of claim 1 , wherein the dirt separator comprises an electric motor for driving the disc about the rotational axis.
15. A handheld vacuum cleaner comprising the dirt separator of claim 1 .
16. A stick vacuum cleaner comprising:
a handheld unit attached to a cleaner head by an elongate tube, wherein the handheld unit comprises:
the dirt separator of claim 1 ,
wherein the elongate tube extends along an axis parallel to the rotational axis.
17. The dirt separator of claim 1 , wherein an axis of the inlet intersects the rotational axis of the disc.
18. A dirt separator for a vacuum cleaner, the dirt separator comprising:
a chamber having an inlet through which dirt-laden fluid enters the chamber, and an outlet through which cleansed fluid exits the chamber; and
a disc located at the outlet, the disc being arranged to rotate about a rotational axis and comprising holes through which the cleansed fluid passes,
wherein the dirt-laden fluid enters the chamber along a longitudinal flow axis that intersects the disc, and
wherein the disc comprises a perforated region and a non-perforated region, the holes are formed in the perforated region and the flow axis intersects the non-perforated region.