VACUUM CLEANER
A vacuum including a suction inlet and a suction source. The vacuum also includes a dirt cup in fluid communication with the suction inlet and the suction source. The dirt cup includes a first stage cyclonic separator and a dirt collection chamber. A housing of the dirt cup includes a first end, a second end, and a neck region between the first end and the second end. The housing has an outer dimension that decreases in a direction from the first end toward the neck region and an outer dimension that decreases in a direction from the second end toward the neck region. The dirt cup includes a shroud within the housing, and the shroud includes a flange that divides the housing at the neck region. The dirt collection chamber and at least a portion of the shroud are between the second end of the housing and the flange.
This application claims priority to U.S. Provisional Patent Application No. 62/528,815, filed Jul. 5, 2017, the entire contents of which are hereby incorporated by reference herein.
BACKGROUNDThe present invention relates to vacuum cleaners, particularly cyclonic vacuum cleaners.
SUMMARYIn one embodiment, a vacuum includes a suction inlet and a suction source in fluid communication with the suction inlet. The suction source includes a motor and a fan. The vacuum also includes a dirt cup in fluid communication with the suction inlet and the suction source. The dirt cup includes a first stage cyclonic separator and a dirt collection chamber. A housing of the dirt cup includes a first end, a second end, and a neck region between the first end and the second end. The housing has an outer dimension that decreases in a direction from the first end toward the neck region and an outer dimension that decreases in a direction from the second end toward the neck region. The dirt cup includes a shroud within the housing, and the shroud includes a flange that divides the housing at the neck region. The dirt collection chamber and at least a portion of the shroud are between the second end of the housing and the flange.
Other aspects of the invention will become apparent by consideration of the detailed description and accompanying drawings.
Before any embodiments of the invention are explained in detail, it is to be understood that the invention is not limited in its application to the details of construction and the arrangement of components set forth in the following description or illustrated in the following drawings. The invention is capable of other embodiments and of being practiced or of being carried out in various ways.
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In the illustrated embodiment, a second stage separator assembly 160 is provided within the shroud 100, wherein at least a portion of the second stage separator assembly 160 is between the first end 34 of the housing and the flange 108. The second stage separator assembly 160 includes an inner housing 168 having a first or upper end 172 and a second or lower end 176. One or more second stage cyclones 184 are positioned within the inner housing 168, and each cyclone 184 defines a perimeter and a longitudinal axis B (
A tube 192 forming a dust collection chamber is coupled to the inner housing 168 and extends between the lower end 176 of the inner housing 168 and the lower end 38 of the housing 30. The cyclone outlets 186 are in communication with a dirt cup outlet 196 providing fluid communication between the shroud 100 and the suction source 16 through an outlet duct (not shown) in or adjacent to the support structure 20.
In the illustrated embodiment, there are five cyclones 184 (
The intermediate housing 190 may be connected to the shroud 100 and/or the flange 108. In the illustrated embodiment, the intermediate housing 190 is integral with the shroud 100 and flange the 108. At least a portion of the intermediate housing 190 may be integrally formed with the shroud 100. In the illustrative embodiment, the intermediate housing 190 forms a decorative panel 200 in at least a portion of the upper portion 112, visible through the housing 30 between the first end 34 and the flange 108 when the housing 30 includes a transparent or translucent material. The seal 140 sealing against the housing 30 at the neck region 42 inhibits dust from the first stage cyclone 144 flowing along the wall of the housing 30 and contacting the decorative panel 200.
Optionally, the air passageway between the shroud 100 and the suction source 16 includes a filter (not shown). In the illustrated embodiment the filter is positioned adjacent the suction source 16. Alternatively, the filter may be provided within the inner housing 168 adjacent the upper end 172 between the cyclone outlets 186 and the dirt cup outlet 196.
In an alternative embodiment, the second stage separator assembly 160 is omitted and the dirt cup includes a single stage separator. In this embodiment, a filter may be provided within the intermediate housing between the shroud 100 and the dirt cup outlet 196. Alternatively, the filter may be provided adjacent the suction source 16.
In operation, referring to
The embodiment shown and described herein the vacuum is a multi-stage cyclonic separator. In alternative embodiments, the vacuum could be a single-stage cyclonic separator. Various features and advantages of the invention are set forth in the following claims.
Claims
1. A vacuum comprising:
- a suction inlet;
- a suction source in fluid communication with the suction inlet, the suction source including a motor and a fan;
- a dirt cup in fluid communication with the suction inlet and the suction source, the dirt cup including a first stage cyclonic separator, a dirt collection chamber, a housing having a first end, a second end, and a neck region between the first end and the second end, the housing having an outer dimension that decreases in a direction from the first end toward the neck region and an outer dimension that decreases in a direction from the second end toward the neck region, a shroud within the housing, the shroud including a flange dividing the housing at the neck region, wherein the dirt collection chamber and at least a portion of the shroud are between the second end of the housing and the flange, wherein the flange inhibits air flow along the housing at the neck region between the first end and the second end.
2. The vacuum of claim 1, wherein the housing forms an hourglass shape.
3. The vacuum of claim 1, wherein the housing is transparent or translucent, and the dirt cup further comprising a decorative panel visible through the housing between the first end and the flange.
4. The vacuum of claim 1, further comprising a second stage cyclonic separator, wherein at least a portion of the second stage cyclonic separator is between the first end of the housing and the flange.
5. The vacuum of claim 4, the second stage cyclonic separator further comprising one or more cyclones, each cyclone defining a perimeter and having an inlet being substantially tangential to the perimeter of the corresponding cyclone.
6. The vacuum of claim 1, wherein the shroud is positioned in the first stage cyclonic separator and includes a plurality of apertures.
7. The vacuum of claim 9, wherein the flange includes a seal that seals against the housing at the neck region.
8. The vacuum of claim 7, wherein the flange includes a first flange member and a second flange member, the seal positioned between the first flange member and the second flange member.
9. The vacuum of claim 1, wherein the flange seals against the housing at the neck region.
10. The vacuum of claim 1, wherein the housing includes an upper portion disposed between the first end and the flange and a lower portion disposed between the second end and the flange, wherein the flange inhibits air flow along the housing at the neck region between the upper portion and the lower portion.
Type: Application
Filed: Jun 25, 2018
Publication Date: Mar 26, 2020
Inventors: Bradley Hooley (Charlotte, NC), Shawn M. Whetstone (New Albany, OH), Katherine M. Morgan (Columbus, OH), Michael D. Young (Westerville, OH), Steven P. Martise (Gahanna, OH)
Application Number: 16/619,623