Abstract:
The present disclosure relates to a cleaner station and a cleaner system including the same. The cleaner system may include: a cleaner; and a cleaner station which collects and removes dust discharged from a dust bin of the cleaner. The cleaner may include a first cleaner which performs manually a cleaning operation by a user, and a second cleaner which performs the cleaning operation while autonomously driving. The cleaner station may include: a housing which has one side coupled to the cleaner and has an inner space where the dust is collected; and a display unit which is disposed on the housing and outputs position information including a moving path of each of the first cleaner and the second cleaner transmitted from the first cleaner and the second cleaner by wireless communication during a cleaning operation.
Abstract:
This cleaner comprises: an intake opening; a cyclone part for separating air and dust; a housing which is provided with a dust container for storing the dust separated from the air in the cyclone part; and a frame which is disposed to surround the axis of the cyclone flow inside the housing and can move between a first position and a second position inside the housing, wherein the frame includes a first body which is disposed at the first position to face the intake opening and is inclined relative to the axis of the cyclone flow, and the upper end of the first body is positioned at the same level or higher than the upper end of the intake opening.
Abstract:
Provided is a dryer for clothes. The dryer for the clothes includes a lint filter assembly, and a lint filter cleaning device for removing lint attached to the lint filter assembly. The lint filter assembly includes a filter frame defining an edge thereof, a mesh member attached to the filter frame to cover an inner region of the filter frame, and a partition rib including a plurality of horizontal ribs and vertical ribs which are disposed inside the filter frame. The mesh member is partitioned into a plurality of filtering blocks by the plurality of horizontal ribs and vertical ribs.
Abstract:
Provided is a dust collecting apparatus 100 according to one aspect of the present invention including a first dust separator 112 configured to primarily separate dust from suctioned air; a first dust storage 113 configured to store the dust separated in the first dust separator 112; a pressing member 200 configured to compress the dust stored in the first dust storage 113, and having a pressing plate support part 210 and a pressing plate 220 supported by the pressing plate support part 210; a second dust separator 130 configured to separate once more dust from the air passed through a dust separation process in the first dust separator 112; and a second dust storage 150 configured to store the dust separated in the second dust separator 130, and located at an inside of the pressing plate support part 210.
Abstract:
The present disclosure relates to a cleaner and a cleaner system, the cleaner including a dust bin, a suction part configured to guide air into the dust bin, a suction motor configured to generate a suction force so that air is sucked through the suction part, a cyclone part configured to separate dust from air by generating a cyclone flow in the air sucked through the suction part, and a filter part configured to filter air discharged from the cyclone part, in which the filter part includes a filter body disposed in the dust bin and having an outer periphery along which the cyclone flow is generated, and filter holes configured to guide air into the filter body, and in which the air is introduced into the filter body through the filter holes in a state in which the air is inclined in a reverse direction to a flow direction of the cyclone flow generated at an inlet side of the filter hole, thereby preventing hairs from being caught by the filter holes.
Abstract:
A nozzle for a cleaner comprising: a nozzle housing including a nozzle base and a nozzle cover coupled to an upper side of the nozzle base; a flow path forming portion forming a suction flow path extending in a front-rear direction of the nozzle housing between the nozzle cover and the nozzle base; a water tank detachably mounted on the nozzle cover; and a plurality of rotation plates rotatably disposed below the nozzle base and spaced apart from each other in a lateral direction of the nozzle housing, the plurality of rotation plates being configured to be attached to a mop. The nozzle cover further includes: a bottom wall; and a flow path cover protruding upward from the bottom wall to cover the flow path forming portion. In a state in which the water tank is seated on the bottom wall, the water tank covers an upper surface of the flow path cover.
Abstract:
A drain pump is provided that may include a pump motor; an impeller connected to a rotational shaft of the pump motor. The impeller may include a circular hub, an impeller shaft that extends from a center of a lower surface of the hub, and a plurality of blades that extends from an outer circumferential surface of the impeller shaft and the lower surface of the hub in a radial direction of the hub. The hub may have a longitudinal cross section in which a thickness of the hub gradually increases from the center of the lower surface toward an edge thereof.
Abstract:
Provided is a drain pump assembly. The drain pump assembly comprises : a pump motor; an impeller including: a hub; an impeller shaft extending from a center of the hub and connected to a rotation shaft of the pump motor; and a blade extending from an outer circumferential surface of the impeller shaft; a housing including: an impeller hole through which the impeller passes; and a space in which the pump motor is accommodated; and a pump case coupled to a bottom surface of the housing, the pump case having a suction hole for suctioning cleaning water, wherein the suction hole is defined in a position corresponding to the impeller, and wherein the pump case comprises a shaft shield part that extends from an edge of the suction hole in a central direction of the suction hole to cover a lower end of the impeller shaft.
Abstract:
The present disclosure relates to a cleaner station in which a detachable structure of a dust bag for storing suctioned dust is simple and stable, and according to one embodiment of the present disclosure, there is provided a cleaner station, which includes a dust storage part configured to store dust suctioned from the cleaner, a dust storage housing part in which an accommodation space having the dust storage part accommodated therein is formed and in which the dust storage part is detachably provided, and a housing cover part configured to open and close a partial area of the dust storage housing part, wherein the dust storage housing part may include a fixed holder fixedly disposed to an upper surface of the accommodation space and including an installation groove formed so that the dust storage part is formed to slide, and a stopper connected to the fixed holder to linearly reciprocate a predetermined distance, and the stopper may linearly move in a direction that interferes with the housing cover part when the dust storage part is separated from the installation groove.