This application claims priority of Taiwanese Application No. 093220287, filed on Dec. 16, 2004.
1. Field of the Invention
This invention relates to a washer, and more particularly to a pressure washer for delivering liquid under high pressure.
2. Description of the Related Art
Referring to
When the spray nozzle 7 is closed, pressure builds up in the T fitting 4. As a result, the control unit 6 receives a signal from the pressure sensor 5, and therefore stops the operation of the motor 2. When the spray nozzle 7 is reopened, the pressure sensor 5 detects a decrease in the liquid pressure of the T fitting 4, and transmits a corresponding signal to the control unit 6. Hence, the control unit 6 starts the motor 2 once again. Such frequent starting results in burnout of the motor 2.
The object of this invention is to provide a pressure washer that operates such that frequent stopping and starting of a motor unit are prevented.
According to this invention, a pressure washer for delivering liquid under high pressure is connected to a liquid supply, and includes a motor unit, a storage tank unit, a hydraulic pump unit, a check valve unit, and a spray nozzle. When the motor unit is started and the spray nozzle is opened, liquid is sprayed from the spray nozzle. Subsequently, when the spray nozzle is closed, the motor unit continues to operate, and a return flow passage in the check valve unit is opened so as to allow for circulation of liquid between the storage tank unit and the hydraulic pump unit.
These and other features and advantages of this invention will become apparent in the following detailed description of a preferred embodiment of this invention, with reference to the accompanying drawings, in which:
Referring to
The washer frame 10 includes a base 11, two wheels 12 disposed respectively on two opposite sides of the base 11, and an inverted U-shaped handle member 13 having two ends connected fixedly to the base 11.
The motor unit 20 is disposed on the base 11 of the washer frame 10, and includes a housing 21, an output shaft 22 journalled on the housing 21, and a heat dissipation fan 23 mounted fixedly to a rear end of the output shaft 22.
The storage tank unit 30 is disposed on a rear end of the housing 21, and is connected to the liquid supply 100. The storage tank unit 30 has a tank body 31, a plurality of heat dissipation fins 32, a net cover 33, a temperature sensor 34, an inlet 35, an outlet 36 and a return flow port 37. The tank body 31 is made of a thermally conductive material, and is disposed around the heat dissipation fan 23. The heat dissipation fins 32 extend integrally, radially, and outwardly from the tank body 31. The tank body 31 is disposed between the motor unit 20 and the net cover 33. The net cover 33 is disposed fixedly on the tank body 31, and includes a central net 331 and an annular shield 332. The shield 332 is disposed around and connected fixedly to the central net 331. The temperature sensor 34 is disposed on the tank body 31 for measuring the temperature of the tank body 31. The inlet 35, the outlet 36 and the return flow port 37 are all formed in the tank body 31. The inlet 35 is in fluid communication with the liquid supply 100. During operation of the pressure washer, the heat dissipation fins 32 cooperate with the heat dissipation fan 23 so as to dissipate heat from the motor unit 20. The control unit 90 is in electrical connection with both the temperature sensor 34 and the motor unit 20. When the temperature sensor 34 detects that the temperature of the tank body 31 reaches a predetermined temperature, the temperature 34 outputs a signal to the control unit 90. As a result, the control unit 90 stops the operation of the motor unit 20.
The hydraulic pump unit 40 is disposed on a front end of the housing 21 such that that housing 21 is located between the heat dissipation fan 23 and the hydraulic pump unit 40. The hydraulic pump unit 40 is connected operatively to a front end of the output shaft 22 of the motor unit 20. Referring to
Referring to
The first conduit 60 interconnects the storage tank unit 30 and the hydraulic pump unit 40, and is in fluid communication with the outlet 36 in the storage tank unit 30 and the suction port 42 in the hydraulic pump unit 40.
The second conduit 70 interconnects the check valve unit 50 and the storage tank unit 30, and is in fluid communication with the second end 512 of the return flow passage 51 of the check valve unit 50 and the return flow port 37 in the storage tank unit 30.
The spray nozzle 80 is connected to the pump body 41 by a hose 81 that is in fluid communication with the discharge port 43. The spray nozzle 80 is selectively openable for spraying liquid.
Referring to
Subsequently, referring to
The pressure washer of this invention has the following advantages:
(1) In an operating state of the pressure washer, closing of the spray nozzle 80 results in circulation of liquid among the storage tank unit 30, the first conduit 60, the hydraulic pump unit 40, the check valve unit 50 and the second conduit 70, rather than in stopping of the motor unit 20. Therefore, burnout of the motor unit 20 resulting from frequent starting can be prevented.
(2) Because of the omission of the pressure sensor 5 (see
(3) In addition to the liquid storage function of the storage tank unit 30, the tank body 31 and the heat dissipation fins 32 of the storage tank unit 30 cooperate to serve as a heat exchanger. This facilitates heat dissipation of the motor unit 20.
With this invention thus explained, it is apparent that numerous modifications and variations can be made without departing from the scope and spirit of this invention. It is therefore intended that this invention be limited only as indicated by the appended claims.
Number | Date | Country | Kind |
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93220287 | Dec 2004 | TW | national |