Extractor cleaning machine
09615713 ยท 2017-04-11
Assignee
Inventors
Cpc classification
A47L5/14
HUMAN NECESSITIES
A47L11/34
HUMAN NECESSITIES
A47L11/4083
HUMAN NECESSITIES
A47L11/4097
HUMAN NECESSITIES
A47L11/4088
HUMAN NECESSITIES
International classification
A47L5/28
HUMAN NECESSITIES
A47L11/34
HUMAN NECESSITIES
A47L11/40
HUMAN NECESSITIES
Abstract
An extractor cleaning machine that includes a base having a base exhaust duct having an exhaust outlet directed toward a surface being cleaned. The extractor further includes a suction source that is operable to generate an airflow that is discharged through the exhaust outlet of the base and onto the surface, which is configured to at least partially dry the surface. The extractor further includes a body pivotally coupled to the base such that the body is pivotable between an upright position and an inclined position, and the body includes a body exhaust duct that is movable relative to the base exhaust duct as the handle pivots between the upright position and the inclined position. The base exhaust duct and the body exhaust duct cooperate to form an exhaust passageway between the suction source and the exhaust outlet.
Claims
1. An extractor cleaning machine comprising: a base movable along a surface to be cleaned, the base including a suction nozzle; a body pivotally coupled to the base such that the body is pivotable between an upright position and an inclined position, the body including a supply tank configured to store a cleaning fluid, a recovery tank in fluid communication with the suction nozzle, a cylindrical motor housing having a first side surface, a second side surface, and an arcuate surface extending between the first and second side surfaces, the arcuate surface including an air duct outlet, and a suction source coupled to the cylindrical motor housing, the suction source is operable to generate an airflow that is in fluid communication with the suction nozzle to draw the cleaning fluid into the recovery tank, the suction source is configured to discharge the airflow through the air duct outlet downstream of the suction nozzle and the recovery tank.
2. The extractor cleaning machine of claim 1, wherein the air duct outlet is positioned closer to the first side surface than the second side surface of the cylindrical motor housing.
3. The extractor cleaning machine of claim 1, further comprising a body exhaust duct coupled to the body for movement with the body, wherein the body exhaust duct is in fluid communication with the air duct outlet, and wherein the body exhaust duct is configured to direct the airflow from the air duct outlet to the surface.
4. The extractor cleaning machine of claim 1, wherein the airflow is a working airflow and the suction source is operable to generate a cooling airflow that is fluidly isolated from the working airflow.
5. The extractor cleaning machine of claim 4, wherein the body includes an air duct inlet, and wherein the suction source is in fluid communication with the air duct inlet, and wherein the suction source is configured to draw the cooling airflow into the body through the air duct inlet.
6. The extractor cleaning machine of claim 5, wherein the cylindrical motor housing includes a cooling duct outlet, and wherein the suction source is configured to discharge the cooling airflow through the cooling duct outlet after the cooling airflow enters the body through the air duct inlet.
7. The extractor cleaning machine of claim 5, wherein the air duct inlet is located between the air duct outlet and the supply tank.
8. A floor cleaning machine comprising: a base movable along a surface to be cleaned, the base including a suction nozzle; a body pivotally coupled to the base, the body including a cylindrical motor housing having a first side surface, a second side surface, and an arcuate surface extending between the first and second side surfaces, the arcuate surface including an air duct outlet; and a suction source coupled to the cylindrical motor housing, the suction source is in fluid communication with the suction nozzle and the air duct outlet, the suction source is operable to generate an airflow that is discharged through the air duct outlet downstream of the suction nozzle.
9. The floor cleaning machine of claim 8, wherein the air duct outlet is positioned closer to the first side surface than the second side surface of the cylindrical motor housing.
10. The floor cleaning machine of claim 8, further comprising a body exhaust duct coupled to the body for movement with the body, wherein the body exhaust duct is in fluid communication with the air duct outlet, and wherein the body exhaust duct is configured to direct the airflow from the air duct outlet to the surface.
11. The floor cleaning machine of claim 8, wherein the airflow is a working airflow and the suction source is operable to generate a cooling airflow that is fluidly isolated from the working airflow.
12. The floor cleaning machine of claim 11, wherein the body includes an air duct inlet, and wherein the suction source is in fluid communication with the air duct inlet, and wherein the suction source is configured to draw the cooling airflow into the body through the air duct inlet.
13. The floor cleaning machine of claim 12, wherein the cylindrical motor housing includes a cooling duct outlet, and wherein the suction source is configured to discharge the cooling airflow through the cooling duct outlet.
14. The floor cleaning machine of claim 13, wherein the body exhaust duct is configured to direct the cooling airflow from the cooling duct outlet to the surface.
15. A floor cleaning machine comprising: a base movable along a surface to be cleaned, the base including a suction nozzle; a body pivotally coupled to the base, the body including a cylindrical motor housing having a first side surface, a second side surface, and an arcuate surface extending between the first and second side surfaces, the arcuate surface including an air duct outlet, the cylindrical motor housing also including an air duct inlet; and a suction source coupled to the cylindrical motor housing, the suction source is operable to generate a cooling airflow and a working airflow with the cooling airflow fluidly isolated from the working airflow, the suction source is in fluid communication with the air duct inlet to draw the cooling airflow into the body through the air duct inlet, the suction source is also configured to discharge the working airflow through the air duct outlet downstream of the suction nozzle.
16. The floor cleaning machine of claim 15, wherein the air duct outlet is positioned closer to the first side surface than the second side surface of the cylindrical motor housing.
17. The floor cleaning machine of claim 15, further comprising a body exhaust duct coupled to the body for movement with the body, wherein the body exhaust duct is in fluid communication with the air duct outlet, and wherein the body exhaust duct is configured to direct the working airflow from the air duct outlet to the surface.
18. The floor cleaning machine of claim 17, wherein the cylindrical motor housing includes a cooling duct outlet in fluid communication with the body exhaust duct, and wherein the suction source is configured to discharge the cooling airflow through the cooling duct outlet.
19. The floor cleaning machine of claim 18, wherein the body exhaust duct is configured to direct the cooling airflow from the cooling duct outlet to the surface.
20. The floor cleaning machine of claim 19, wherein the body exhaust duct includes a wall that fluidly isolates the working airflow discharged from the air duct outlet and the cooling airflow discharged from the cooling duct outlet.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION
(9) 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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(11) The illustrated extractor 10 includes a base 18, a body 22 coupled to the base 18, a recovery tank 26 coupled to the body 22, a fluid distribution system (not shown), and a supply tank assembly 34 coupled to the body 22. Other extractors within the scope of the invention may include a different type of base, such as including the recovery tank and or supply tank coupled to the base. The supply tank assembly 34 is configured to store cleaning fluid to be distributed by the extractor 10 onto the surface 14. The recovery tank 26 is configured to store cleaning fluid and any dirt extracted from the surface 14.
(12) The base 18 is movable along the surface to be cleaned. In reference to
(13) Referring to
(14) The fluid distribution system is in fluid communication with the supply tank assembly 34 to draw cleaning fluid from the supply tank assembly 34 and distribute the fluid to the surface 14. In some embodiments, the fluid distribution system may include a pump that propels the cleaning fluid to the surface 14.
(15) In reference to
(16) As shown in
(17) In addition, the illustrated body 22 is pivotally coupled to and extends from the base 18. The body 22 is pivotable or tiltable relative to the base 18 from a generally vertical, or upright, storage position 82 shown in
(18) In reference to
(19) In one embodiment, the suction source 94 includes an electric motor 98 operable to drive a primary fan 102 and a cooling fan 106 located at distal ends of the motor 98 (
(20) In continued reference to
(21) In reference to
(22) Furthermore, in reference to
(23) In operation, in reference to
(24) The cooling fan 106 creates the cooling airflow 114 that draws ambient air through the cooling duct inlet 134 and into the cooling air duct 118. The cooling airflow 114 then passes adjacent the motor 98 which absorbs heat from the motor 98. The cooling airflow 114 exits the body 22 through the cooling duct outlet 138 (
(25) With reference to
(26) Various features and advantages of the invention are set forth in the following claims.