Automate glass surface cleaning machine
Abstract
An automate glass surface cleaning machine includes a supporting frame which has a fluid receiving chamber provided therein and includes a supporting arm frontwardly extended therefrom, a wiper blade transversely mounted on a front edge of the supporting arm of the supporting frame for wiping on a glass surface, and a vacuum device supported by the supporting frame. The vacuum device includes at least a fluid suction nozzle supported underneath the wiper blade and in communication with the fluid receiving chamber and a motor powers an impeller to create a low pressure on one side of the impeller and a high pressure on the other side thereof so as to create a sucking effect for removing fluid from the glass surface through the fluid suction nozzle and directing the fluid to deposit in the fluid receiving chamber.
Claims
exact text as granted — not AI-modifiedWhat is claimed is:
1 . An automate glass surface cleaning machine, comprising:
a supporting frame having a fluid receiving chamber provided therein and comprising a supporting arm frontwardly extended therefrom; a wiper blade transversely mounted on a front edge of said supporting arm of said supporting frame; and a vacuum device, supported by said supporting frame, comprising:
at least a fluid suction nozzle communicating with said fluid receiving chamber and having a suction opening extended to position underneath said wiper blade; and
a suction means for providing a sucking force at said suction opening of said fluid suction nozzle.
2 . An automate glass surface cleaning machine, as recited in claim 1 , wherein said suction means comprises a power source arranged to drive an impeller to create a low pressure on one side of said impeller and a high pressure on another side thereof so as to create said suction force at said suction opening adapted for removing any fluid existed around said suction opening through said fluid suction nozzle and directing said fluid to deposit in said fluid receiving chamber.
3 . An automate glass surface cleaning machine, as recited in claim 2 , wherein said supporting arm is integrally extended from a front portion of said supporting frame and constructed to form a hollow body to define said fluid suction nozzle therein, wherein said fluid suction nozzle has a front end extended frontwardly to form said suction opening positioned adjacent to a rear side of said wiper blade and a rear end extended rearwardly to communicate with said fluid receiving chamber.
4 . An automate glass surface cleaning machine, as recited in claim 2 , wherein said vacuum device further comprises a second fluid suction nozzle, wherein said two fluid suction nozzles are two tubular nozzles extended from said fluid receiving chamber to two sides of said front edge of said supporting arm respectively, wherein a front end of each of said two fluid suction nozzles forms said suction opening.
5 . An automate glass surface cleaning machine, as recited in claim 3 , wherein said wiper blade which is made of rubber is firmly attached to said front edge of said supporting arm of said supporting frame wherein said wiper blade has a front tip edge.
6 . An automate glass surface cleaning machine, as recited in claim 4 , wherein said wiper blade which is made of rubber is firmly attached to said front edge of said supporting arm of said supporting frame wherein said wiper blade has a front tip edge.
7 . An automate glass surface cleaning machine, as recited in claim 1 , further comprises a fluid spray device which comprises at least a fluid detergent supply bin supported by said supporting frame, at least a spray head mounted on said supporting arm and operatively communicating with said fluid detergent supply bin via a conduit, and an operation trigger arranged to be operated to eject fluid detergent in said fluid detergent supply bin through said spray head.
8 . An automate glass surface cleaning machine, as recited in claim 2 , further comprises a fluid spray device which comprises at least a fluid detergent supply bin supported by said supporting frame, at least a spray head mounted on said supporting arm and operatively communicating with said fluid detergent supply bin via a conduit, and an operation trigger arranged to be operated to eject fluid detergent in said fluid detergent supply bin through said spray head.
9 . An automate glass surface cleaning machine, as recited in claim 3 , further comprises a fluid spray device which comprises at least a fluid detergent supply bin supported by said supporting frame, at least a spray head mounted on said supporting arm and operatively communicating with said fluid detergent supply bin via a conduit, and an operation trigger arranged to be operated to eject fluid detergent in said fluid detergent supply bin through said spray head.
10 . An automate glass surface cleaning machine, as recited in claim 4 , further comprises a fluid spray device which comprises at least a fluid detergent supply bin supported by said supporting frame, at least a spray head mounted on said supporting arm and operatively communicating with said fluid detergent supply bin via a conduit, and an operation trigger arranged to be operated to eject fluid detergent in said fluid detergent supply bin through said spray head.
11 . An automate glass surface cleaning machine, as recited claim 1 , further comprising an operation device which includes an extension frame and a control means for controlling said vacuum device, wherein said extension frame is detachably attached to a rear portion of said supporting frame for prolonging a length of said automate glass cleaning machine and said operation device comprises a rechargeable power supply disposed in said extension frame and electrically connected to said power source of said vacuum device via connecting wires, and a control switch for selectively controlling said power source to power on and off.
12 . An automate glass surface cleaning machine, as recited claim 3 , further comprising an operation device which includes an extension frame and a control means for controlling said vacuum device, wherein said extension frame is detachably attached to a rear portion of said supporting frame for prolonging a length of said automate glass cleaning machine and said operation device comprises a rechargeable power supply disposed in said extension frame and electrically connected to said power source of said vacuum device via connecting wires, and a control switch for selectively controlling said power source to power on and off.
13 . An automate glass surface cleaning machine, as recited claim 4 , further comprising an operation device which includes an extension frame and a control means for controlling said vacuum device, wherein said extension frame is detachably attached to a rear portion of said supporting frame for prolonging a length of said automate glass cleaning machine and said operation device comprises a rechargeable power supply disposed in said extension frame and electrically connected to said power source of said vacuum device via connecting wires, and a control switch for selectively controlling said power source to power on and off.
14 . An automate glass surface cleaning machine, as recited claim 9 , further comprising an operation device which includes an extension frame and a control means for controlling said vacuum device, wherein said extension frame is detachably attached to a rear portion of said supporting frame for prolonging a length of said automate glass cleaning machine and said operation device comprises a rechargeable power supply disposed in said extension frame and electrically connected to said power source of said vacuum device via connecting wires, and a control switch for selectively controlling said power source to power on and off.
15 . An automate glass surface cleaning machine, as recited claim 10 , further comprising an operation device which includes an extension frame and a control means for controlling said vacuum device, wherein said extension frame is detachably attached to a rear portion of said supporting frame for prolonging a length of said automate glass cleaning machine and said operation device comprises a rechargeable power supply disposed in said extension frame and electrically connected to said power source of said vacuum device via connecting wires, and a control switch for selectively controlling said power source to power on and off.
16 . An automate glass surface cleaning machine, as recited in claim 1 , further comprising a mop device which comprises a mop roller arranged in a rotatably movable manner and a pair of coupling joints for rotatably coupling two ends of said mop roller with said supporting arm.
17 . An automate glass surface cleaning machine, as recited in claim 16 , wherein said mop roller comprises an elongated central axle rotatably supported underneath said supporting arm and a mopping element encircling said central axle.
18 . An automate glass surface cleaning machine, as recited in claim 17 , wherein each of said coupling joints comprises a first joint member affixed to a sidewall of said supporting arm, a second joint member rotatably, which is affixed to one end of said central axle and movably connected to said first joint member by extending an elongated joint shaft of said second joint member to pass through said first joint member, and a resilient element disposed between said first joint member and said second joint member for applying an urging force against said first joint member so as to urge and retain said mop roller to move away from said supporting arm.
19 . An automate glass surface cleaning machine, as recited in claim 17 , wherein said mop device is also powered by said power source of said vacuum device, wherein one end of said central shaft is rotatably connected to an output axle of said motor via a rotary gear unit so as to drive said mop roller to rotate automatically.
20 . An automate glass surface cleaning machine, as recited in claim 18 , wherein said mop device is also powered by said power source of said vacuum device, wherein one end of said central shaft is rotatably connected to an output axle of said motor via a rotary gear unit so as to drive said mop roller to rotate automatically.
21 . An automate glass surface cleaning machine, as recited in claim 3 , further comprising a mop device which comprises a mop roller arranged in a rotatably movable manner and a pair of coupling joints for rotatably coupling two ends of said mop roller with said supporting arm, wherein said mop roller comprises an elongated central axle rotatably supported underneath said supporting arm and a mopping element encircling said central axle.
22 . An automate glass surface cleaning machine, as recited in claim 21 , wherein each of said coupling joints comprises a first joint member affixed to a sidewall of said supporting arm, a second joint member rotatably, which is affixed to one end of said central axle and movably connected to said first joint member by extending an elongated joint shaft of said second joint member to pass through said first joint member, and a resilient element disposed between said first joint member and said second joint member for applying an urging force against said first joint member so as to urge and retain said mop roller to move away from said supporting arm.
23 . An automate glass surface cleaning machine, as recited in claim 21 , wherein said mop device is also powered by said power source of said vacuum device, wherein one end of said central shaft is rotatably connected to an output axle of said motor via a rotary gear unit so as to drive said mop roller to rotate automatically.
24 . An automate glass surface cleaning machine, as recited in claim 22 , wherein said mop device is also powered by said power source of said vacuum device, wherein one end of said central shaft is rotatably connected to an output axle of said motor via a rotary gear unit so as to drive said mop roller to rotate automatically.
25 . An automate glass surface cleaning machine, as recited in claim 4 , further comprising a mop device which comprises a mop roller arranged in a rotatably movable manner and a pair of coupling joints for rotatably coupling two ends of said mop roller with said supporting arm, wherein said mop roller comprises an elongated central axle rotatably supported underneath said supporting arm and a mopping element encircling said central axle.
26 . An automate glass surface cleaning machine, as recited in claim 25 , wherein each of said coupling joints comprises a first joint member affixed to a sidewall of said supporting arm, a second joint member rotatably, which is affixed to one end of said central axle and movably connected to said first joint member by extending an elongated joint shaft of said second joint member to pass through said first joint member, and a resilient element disposed between said first joint member and said second joint member for applying an urging force against said first joint member so as to urge and retain said mop roller to move away from said supporting arm.
27 . An automate glass surface cleaning machine, as recited in claim 25 , wherein said mop device is also powered by said power source of said vacuum device, wherein one end of said central shaft is rotatably connected to an output axle of said motor via a rotary gear unit so as to drive said mop roller to rotate automatically.
28 . An automate glass surface cleaning machine, as recited in claim 26 , wherein said mop device is also powered by said power source of said vacuum device, wherein one end of said central shaft is rotatably connected to an output axle of said motor via a rotary gear unit so as to drive said mop roller to rotate automatically.
28 . An automate glass surface cleaning machine, as recited in claim 9 , further comprising a mop device which comprises a mop roller arranged in a rotatably movable manner and a pair of coupling joints for rotatably coupling two ends of said mop roller with said supporting arm, wherein said mop roller comprises an elongated central axle rotatably supported underneath said supporting arm and a mopping element encircling said central axle.
29 . An automate glass surface cleaning machine, as recited in claim 28 , wherein each of said coupling joints comprises a first joint member affixed to a sidewall of said supporting arm, a second joint member rotatably, which is affixed to one end of said central axle and movably connected to said first joint member by extending an elongated joint shaft of said second joint member to pass through said first joint member, and a resilient element disposed between said first joint member and said second joint member for applying an urging force against said first joint member so as to urge and retain said mop roller to move away from said supporting arm.
30 . An automate glass surface cleaning machine, as recited in claim 28 , wherein said mop device is also powered by said power source of said vacuum device, wherein one end of said central shaft is rotatably connected to an output axle of said motor via a rotary gear unit so as to drive said mop roller to rotate automatically.
31 . An automate glass surface cleaning machine, as recited in claim 29 , wherein said mop device is also powered by said power source of said vacuum device, wherein one end of said central shaft is rotatably connected to an output axle of said motor via a rotary gear unit so as to drive said mop roller to rotate automatically.
32 . An automate glass surface cleaning machine, as recited in claim 10 , further comprising a mop device which comprises a mop roller arranged in a rotatably movable manner and a pair of coupling joints for rotatably coupling two ends of said mop roller with said supporting arm, wherein said mop roller comprises an elongated central axle rotatably supported underneath said supporting arm and a mopping element encircling said central axle.
33 . An automate glass surface cleaning machine, as recited in claim 32 , wherein each of said coupling joints comprises a first joint member affixed to a sidewall of said supporting arm, a second joint member rotatably, which is affixed to one end of said central axle and movably connected to said first joint member by extending an elongated joint shaft of said second joint member to pass through said first joint member, and a resilient element disposed between said first joint member and said second joint member for applying an urging force against said first joint member so as to urge and retain said mop roller to move away from said supporting arm.
34 . An automate glass surface cleaning machine, as recited in claim 32 , wherein said mop device is also powered by said power source of said vacuum device, wherein one end of said central shaft is rotatably connected to an output axle of said motor via a rotary gear unit so as to drive said mop roller to rotate automatically.
35 . An automate glass surface cleaning machine, as recited in claim 33 , wherein said mop device is also powered by said power source of said vacuum device, wherein one end of said central shaft is rotatably connected to an output axle of said motor via a rotary gear unit so as to drive said mop roller to rotate automatically.
36 . An automate glass surface cleaning machine, comprising:
a supporting frame having a fluid receiving chamber provided therein and comprising a supporting arm frontwardly extended therefrom; a wiper blade transversely mounted on a front edge of said supporting arm of said supporting frame; and a mop device which comprises a mop roller arranged in a rotatably movable manner and a pair of coupling joints for rotatably coupling two ends of said mop roller with said supporting arm.
37 . An automate glass surface cleaning machine, as recited in claim 36 , wherein said mop roller comprises an elongated central axle rotatably supported underneath said supporting arm and a mopping element encircling said central axle.
38 . An automate glass surface cleaning machine, as recited in claim 37 , wherein each of said coupling joints comprises a first joint member affixed to a sidewall of said supporting arm, a second joint member rotatably, which is affixed to one end of said central axle and movably connected to said first joint member by extending an elongated joint shaft of said second joint member to pass through said first joint member, and a resilient element disposed between said first joint member and said second joint member for applying an urging force against said first joint member so as to urge and retain said mop roller to move away from said supporting arm.
39 . An automate glass surface cleaning machine, as recited in claim 37 , wherein said mop device is also powered by said power source of said vacuum device, wherein one end of said central shaft is rotatably connected to an output axle of said motor via a rotary gear unit so as to drive said mop roller to rotate automatically.
40 . An automate glass surface cleaning machine, as recited in claim 48 , wherein said mop device is also powered by said power source of said vacuum device, wherein one end of said central shaft is rotatably connected to an output axle of said motor via a rotary gear unit so as to drive said mop roller to rotate automatically.Join the waitlist — get patent alerts
Track US2003009843A1 — get alerts on status changes and closely related new filings.
We store only your email — no account needed. See our privacy policy.