Abstract:
A cleaner includes: at least one cyclone configured to separate dust from suctioned air; a dust container configured to store the dust separated by the at least one cyclone; a dust compressor provided inside the dust container; and a lifter configured to move the dust compressor within the dust container.
Abstract:
The present application relates to a cleaner including a hollow cylindrical housing, a housing wall dividing an internal space of the housing into a first space and a second space, a wall through-hole defined to pass through the housing wall, a mounting portion including a mounting body having a top face and a mounting space defined therein in communication with the second space, wherein the mounting body is fixed into the wall through-hole, first communicating means penetrating a bottom face of the mounting body and in communication with the mounting space, wherein the first communicating means is defined in a first region of the bottom face, and second communicating means penetrating the bottom face and in communication with the mounting space, wherein the second communicating means is defined in a second region separated from the first region, an intake port communicating the first space with an exterior of the housing, an exhaust hole communicating the second space with the exterior of the housing, a separator disposed in the first space to form a flow path for guiding air flowed into the intake port to the plurality of communicating means, wherein the separator separates foreign matters from the air using a centrifugal force, a fan disposed in the second space to flow the air flowed into the plurality of communicating means to the exhaust hole, a cup-shaped filter body located in the mounting space, a first filter face disposed on a face facing the bottom face in a space provided by the filter body to filter the air flowed into the first communicating means, and a second filter face disposed on the filter body to divide the mounting space into a space including the first region located therein and a space including the second region located therein, wherein the second filter face filters the air flowed into the second communicating means.
Abstract:
The present application relates to a cleaning appliance including: a hollow cylindrical housing; a housing wall dividing an internal space of the housing into a first space and a second space; a wall through-hole defined to pass through the housing wall; an intake port communicating the first space with an exterior of the housing; an exhaust including a cover through-hole and an exhaust hole defined to pass through a top face of the housing; a fan fixed to the wall or the second space and positioned in the wall through-hole, wherein the fan flows air in the first space to the exhaust hole; a separator disposed in the first space to form a flow path for guiding air flowed into the intake port to the fan, wherein the separator separates a foreign matter from the air using a centrifugal force; and a display including: a display panel exposed to the exterior of the housing through the cover through-hole; a display housing fixing the display panel thereto; and a housing fastening portion for fixing the display housing to the wall or an inner circumferential face of the housing.
Abstract:
A pump (8) is disclosed. The pump (8) includes a partition wall (84) configured to divide the interior of a body into two spaces, a first chamber (C1 ) located under the partition wall (84), the first chamber (C1 ) having an introduction portion (841 ), through which water is introduced, a second chamber (C2) located above the partition wall (84), the second chamber (C2) having a discharge portion (849), through which water is discharged, a communication hole (86) formed through the partition wall (84) to allow the first chamber (C1 ) and the second chamber (C2) to communicate with each other therethrough, an impeller (85) provided in the second chamber (C2) to move water to the discharge portion (849), a housing configured to define the bottom surface of the first chamber (C1 ), the housing being made of a conductor, a heater (H) configured to heat the housing (81 ), and a steam discharge (843) port formed through the first chamber (C1 ) to allow steam to be discharged therethrough.
Abstract:
The present disclosure relates to a cleaner which includes: a dustbin having a slit formed on one side thereof; a compression lever housing disposed on an outside of the slit and mounted to the dustbin; a compression plate disposed on an inside of the dustbin and configured to ascend in a direction in which the slit extends; and a sealer disposed in the compression lever housing, coming in close contact with the slit, and extending along the slit. Therefore, the cleaner according to the present disclosure may prevent a problem that is likely to occur during an operation of the compression lever assembly because of trapped dust, and can be maintained in a cleaner state as the user may easily separate the cleaner by assemblies to sterilize the parts.
Abstract:
A cleaner of the present invention comprises: a suction part; a main body including a body, and a body cover for opening and closing the lower side of the body, the body having a cyclone part for separating dust from dust masses suctioned through the suction part and a dust container for storing the dust separated by the cyclone part; a handle part coupled to the main body and including a handle body having a handle shaft (A6); a filter part disposed inside the body, and filtering air, separated from the dust in the cyclone part, in a process in which the air passes therethrough; a movable part capable of moving inside the body along a space between the outside of the filter part and the inner circumferential surface of the body; an operation part disposed at the outside of the main body, and operating so as to move the movable part; and a delivery part penetrating through the main body, and connecting the movable part to the operation part.
Abstract:
A cleaner according to the present invention comprises: a suction unit; a main body including a cyclone unit for separating dust from dust suctioned through the suction unit, and a dust container that stores dust separated in the cyclone unit below the cyclone unit; a filter unit which is disposed inside the cyclone unit and is for filtering the air in a process in which air, from which the dust has been separated, passes through; a movable unit movably disposed inside the cyclone unit and provided with a cleaning part for cleaning the outer circumference of the filter unit while moving; an operation unit disposed outside the main body and operated to move the movable unit; and a transmission unit passing through the main body and connecting the movable unit and the operation unit. The movable unit waits inside the cyclone unit at a standby position, which is a position at which the movable unit does not surround the circumference of the filter unit during the dust separation process. When the operation unit is operated, the movable unit moves, and the cleaning part removes dust from the outer surface of the filter unit. The movable unit includes a recess portion which is recessed in a direction away from the suction unit and at least a portion of which faces the suction unit.
Abstract:
The present invention provides a dust collecting apparatus for a vacuum cleaner, comprising: a first cyclone installed in a first case and configured to separate dust from air introduced thereinto together with foreign substances and to discharge the separated dust to a first dust storage unit; a second cyclone mounted above the first cyclone and configured to separate fine dust from the air from which the dust is separated by the first cyclone and to discharge the separated fine dust to a second dust storage unit; a compression device configured such that at least a part thereof performs normal rotation in one direction and reverse rotation in the direction opposite to that of the normal rotation along the outer peripheral surface of a second case having the second dust storage unit therein to compress the dust stored in the first dust storage unit; a screw rotatably installed above the compression device and having a guide vane spirally extending along the outer periphery thereof to guide the collection of dust into the first dust storage unit; a driving unit that transmits a driving force to the compression device to selectively enable the normal rotation and the reverse rotation of the compression device; and a gear unit installed between the compression device and the screw to enable the screw to perform normal rotation while the compression device performs the normal rotation and the reverse rotation.