The present invention relates to floor cleaners.
In another embodiment the invention provides a floor cleaner including a vacuum source, a supply tank configured to store a cleaning fluid, a distribution nozzle in fluid communication with the supply tank, the distribution nozzle configured to dispense the cleaning fluid onto a surface to be cleaned, a suction inlet in fluid communication with the vacuum source, and a recovery tank in fluid communication with the vacuum source and the suction inlet. The recovery tank is configured to store the cleaning fluid drawn through the suction inlet from the surface by the vacuum source. The recovery tank includes a tank body having a lower end wall, an open upper end, and a sidewall that extends upwardly from the lower end wall to the open upper end. The recovery tank also includes a cover assembly removably coupled to the open upper end, configured to close the open upper end in a coupled position, and uncover the open upper end in an uncoupled position. A strainer with a perforated body is positionable in the tank body in a seated position with the cover assembly in the uncoupled position. The cover assembly is coupleable to the open upper end when the strainer is removed from the tank body, and the cover assembly is not coupleable to the open upper end when the strainer is positioned inside the tank body. The perforated body of the strainer is disposed adjacent the sidewall when the strainer is in the seated position.
In another embodiment the invention provides a floor cleaner including a vacuum source, a supply tank configured to store a cleaning fluid, a distribution nozzle in fluid communication with the supply tank, the distribution nozzle configured to dispense the cleaning fluid onto a surface to be cleaned, a suction inlet in fluid communication with the vacuum source, and a recovery tank in fluid communication with the vacuum source and the suction inlet. The recovery tank is configured to store the cleaning fluid drawn through the suction inlet from the surface by the vacuum source. The recovery tank includes a tank body having a lower end wall, an open upper end, a sidewall that extends upwardly from the lower end wall to the open upper end, and an inlet duct that extends upwardly from the lower end wall. The recovery tank also includes a cover assembly removably coupled to the open upper end, configured to close the open upper end in a coupled position. A strainer with a perforated body is removably coupled to the inlet duct. The cover assembly can be coupled to the open upper end when the strainer is removed from the tank body, and the cover assembly cannot be coupled to the open upper end when the strainer is coupled to the tank body. The strainer is coupleable inside the tank body with the perforated body disposed adjacent the sidewall when the cover assembly is removed from the tank body.
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.
The base 12 is movable over the surface 22 to be cleaned. In the illustrated embodiment, the base 12 includes wheels 70 to facilitate moving the base 12 over the surface 22 to be cleaned. The base 12 includes a suction inlet 26 in fluid communication with the vacuum source 20 and the recovery tank 18. The cleaning fluid is drawn from the surface 22 to be cleaned through the suction inlet 26 and into the recovery tank 18.
The recovery tank 18 includes a tank body 74, a cover assembly 76 coupled to the tank body 74, and a strainer 40 positionable in the tank body 74 when the cover assembly 76 is removed. The tank body 74 has a lower end wall 78 and a sidewall 80 that extends upwardly from the lower end wall 78 to an open upper end 82 of the tank body 74. The cover assembly 76 is removably coupled to the open upper end 82 of the tank body to close the open upper end 82 of the tank body in a coupled position, and removable from the upper end 82 to uncover the open upper end 82 in an uncoupled position. The cover assembly 76 is removable for emptying the tank body 74 when fluid or debris are deposited in the recovery tank 18. The strainer 40 is positionable in the tank body 74 in a seated position after the cover 76 is removed, such that the cover 76 is in the uncoupled position. The strainer 40 is disposed adjacent the sidewall 80 when the strainer 40 is in the seated position. With the strainer 40 placed in its seated position, fluid in the tank can be poured out through the strainer and the strainer configured to retain debris in the tank.
In the embodiments shown in
The strainer 40 includes a perforated body 42 that is configured to catch debris, such as lint, hair and other debris, while allowing fluid and small debris to exit during emptying of the recovery tank 18. The size of the perforations are selected to control the size of debris that passes through the strainer 40 as desired for the application. When the recovery tank 18 is ready to be emptied, a user removes the recovery tank 18 from the body 14 and removes the cover assembly 76. The user then inserts the strainer 40 into the tank body 74. In the illustrated embodiment, the strainer 40 is coupled to the inlet duct 86. The user then inverts the recovery tank 18 and pours the dirty liquid through the strainer 40, wherein the strainer 40 catches and retains debris on a bottom side 44, while allowing liquid egress through the perforated body 42. Once the liquid is removed from the recovery tank 18, the user can then remove the strainer 40, and dispose of the collected debris. Thus, the strainer 40 is not filtering the cleaning fluid upon ingress, but rather upon removal and emptying by the user.
The tank body 74 includes an inlet aperture 84 and an inlet duct 86. The inlet duct 86 includes an outlet aperture 88 at an end of the duct 86 opposite the inlet aperture 84. In one embodiment, the lower end wall 78 supports the inlet duct 86. The inlet duct 86 extends vertically upwards from the lower end wall 78 and includes the inlet aperture 84 and the outlet aperture 88. As shown in
In the embodiment shown in
The inlet aperture 84 is in fluid communication with the suction inlet 26 (
In the embodiments illustrated in
Various features and advantages of the invention are set forth in the following claims.
This application claims priority to U.S. Provisional Patent Application No. 62/950,649, filed Dec. 19, 2019, the entire contents of which are hereby incorporated by reference herein.
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