The present invention relates to a window-cleaning robot provided with a closed wiper and belongs to the technical field of small household appliances manufacture.
With widely using of window-cleaning robots in household, whether the window-cleaning robot walks normally on the window will directly affect its window-cleaning result. The robot can walks normally only on the premise of skid resistance.
In view of the above technical problems in the prior art, the present invention intends to provide a window-cleaning robot provided with a closed wiper, which is configured to be entirely closed, such that when the robot is adsorbed onto the window, the closed wiper is pressed tightly and separates the inner side thereof from the outer side. Thus, regardless of how the robot travels, the closed wiper can carry out 360° wiping, and the water from any direction can be kept outside by the wiper and cannot enter into the inner side of the wiper, effectively preventing the drive wheel and the suction cup from getting wet, resulting in more effective wiping and effectively preventing the robot from slipping.
The technical problems of the present invention are solved through technical solutions as follows.
A window-cleaning robot provided with a closed wiper, comprising a rotating base and an outer frame; the rotating base being rotatably disposed on the outer frame; the bottom of the outer frame being provided with a cleaning unit; the rotating base being provided with a travel unit and a suction cup; the bottom surface of the rotating base being provided with a wiper; the wiper being disposed in a closed shape on the bottom surface of the rotating base; the travel unit and/or the suction cup being enclosed within the closed shape.
In order to ensure that the wiper isolates the inner side thereof from the outer side, the height of the wiper is larger than the height of the travel unit.
In order to facilitate arranging, the wiper either may be of one entirely closed shape, or may be divided into a plurality of entirely closed shapes. For example, the wiper may have a first wiper and a second wiper. The first wiper encloses the outer circumference of the travel unit and the second wiper encloses the outer circumference of the suction cup.
As needed, the travel unit is a roller wheel or a crawler travel mechanism.
The first wiper and the second wiper each are plural, the numbers of which correspond to the numbers of the travel unit and the suction cup.
In order to ensure the effect of skid resistance, the wiper is higher than the travel unit by 0.01 mm to 1 mm.
In order to facilitate connecting and fixing, the rotating base is provided with a groove, protruding plates are provided on the sidewalls of the groove, both sides of a fixed end of the wiper are formed with concave slots, and the protruding plates snap into and engage with the concave slots.
The suction cup communicates with a vacuum pump through a hose, and the vacuum pump operates to establish a negative pressure within the suction cup so that the window-cleaning robot is adsorbed onto a work surface.
In order to facilitate turning, the outer frame is square.
From the above, the wiper of the present invention is entirely closed such that when the robot is adsorbed onto the window, the closed wiper is pressed tightly and isolates the inner side thereof from the outer side. Thus, regardless of how the robot travels, the closed wiper can carry out 360° wiping, and the water from any direction can be kept outside by the wiper and cannot enter into the inner side of the wiper, effectively preventing the drive wheel and the suction cup from getting wet, resulting in more effective wiping and effectively preventing the robot from slipping or the suction cup from being contaminated by water stain.
Hereinafter the technical solutions of the present invention will be described in detail in combination with attached drawings and specific embodiments.
In combination with
The travel unit and the suction cup are enclosed in both of the above-mentioned embodiments of the present invention. However, in actual use, the effect of preventing the robot from slipping can be achieved by only enclosing the travel unit, and the effect of preventing the suction cup from being contaminated by water stains can be achieved by only enclosing the suction cup. From the above, the wiper of the present invention is configured to be entirely closed such that when the robot is adsorbed onto the window, due to the entirely closed structure and the height of the wiper, which is larger than the height of the travel unit, the wiper is pressed tightly and isolates the closed inner side from the outer side when the window-cleaning robot is adsorbed onto the window surface. Thus, regardless of how the window-cleaning robot travels, the closed wiper can carry out 360° wiping, and thus the water from any direction can be kept outside by the wiper and cannot enter into the inner side of the wiper to wet the travel unit 11 and the suction cup 12, resulting in more effective wiping and effectively preventing the robot from slipping or preventing the suction cup from contaminated by water stain.
Number | Date | Country | Kind |
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2014 1 0098719 | Mar 2014 | CN | national |
Filing Document | Filing Date | Country | Kind |
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PCT/CN2015/074385 | 3/17/2015 | WO | 00 |
Publishing Document | Publishing Date | Country | Kind |
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WO2015/139613 | 9/24/2015 | WO | A |
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Machine-generated English translation of DE 102012110387 A1, Apr. 2014, Strang et al. |
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Number | Date | Country | |
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20170079487 A1 | Mar 2017 | US |