1. Field of the Invention1 Technical Field
The invention relates to a wireless remote-control hydraulic pump mechanism, and more particularly, to a wireless remote-control hydraulic pump mechanism for dump trucks.
2. Description of Related Art
As shown in
The hydraulic pump assembly 30 at least comprises an oil reservoir 31, a hydraulic pump 32, and a solenoid valve 33, wherein the hydraulic pump 32 applies pressure on oil in the oil reservoir 31 and forces the oil to flow to the first pipeline 34 or the second pipeline 35; the solenoid valve 33 is a direction-controlling valve that controls the flow direction of the oil, and a 4/2-way valve as in
The electric power to activate the hydraulic pump 22 or the electric power to switch between ports of the solenoid valve 23 are both controlled by the manual controller 16 to be provided from the automotive battery 80. Therefore, conventional dump trucks 10 use manual controllers 15 to control the elevating of the elevating body 11 to the dumping position or the returning of the elevating body 11 to the transporting position.
However, since the manual controller 16 does not have a radio frequency (RF) receiver, only wired manual remote-control functions are provided and not wireless remote-control functions.
In view of the above, the main purpose of the present invention is to provide a wireless remote-control hydraulic pump mechanism for dump trucks comprising: a hydraulic pump assembly, comprising an oil reservoir, a hydraulic pump, and a solenoid valve, wherein the hydraulic pump applies pressure on oil in the oil reservoir and forces the oil to flow out a port of the solenoid valve after being activated; a remote-control device, configured with a power input cable as a power supply and a power output cable to provide electric power to the hydraulic pump and the solenoid valve, wherein the remote-control device controls transmission of electric power to the power output cable; and a wireless transmitter, wherein the remote-control device has wireless remote-control functions and further comprises: a microcontroller unit, which is an integrated circuit (IC) independently executing specific control functions, outputting a control signal according to an input signal; a radio frequency (RF) receiver, receiving a RF signal from the wireless transmitter and transmitting the received RF signal to the microcontroller unit; a relay actuated circuit, controlling electric power of the power output cable to activate the hydraulic pump, wherein the microcontroller unit controls the relay actuated circuit to provide electric power according to the input signal; and a solenoid valve actuated circuit, controlling electric power of the power output cable to switch between ports of the solenoid valve, wherein the microcontroller unit controls the solenoid valve actuated circuit to provide electric power according to the input signal.
The remote-control device further comprises a manual-control circuit and has both wireless remote-control functions and wired manual remote-control functions in a preferred embodiment.
The remote-control device further comprises a voltage detection circuit to detect a voltage of the power input cable in a preferred embodiment.
The remote-control device further comprises a display to display the detected voltage of the power input cable.
The invented wireless remote-control hydraulic pump mechanism may have the following advantages:
As shown in
The remote-control device 40 may have the function of providing power by wireless remote control and is configured with a power input cable 61 and a power output cable 62. During usage, the power input cable 61 is electrically connected to a 12V direct current (DC) power supply, and the power output cable 62 provides electric power to the hydraulic pump assembly 30. As shown in
When the solenoid valve 33 of the hydraulic pump assembly 30 is selected to be a 4/2-way valve, the power output cable 62 at least comprises two power lines, wherein the first power line 63 is electrically connected to the hydraulic pump 32 of the hydraulic pump assembly 30 and the second power line 64 is electrically connected to the solenoid valve 33 of the hydraulic pump assembly 30. When the solenoid valve 33 of the hydraulic pump assembly 30 is selected to be a 4/3-way valve, the power output cable 62 at least comprises three power lines, wherein the first power line 63 is electrically connected to the hydraulic pump 32 of the hydraulic pump assembly 30 and the second power line 64 and the third power line 65 are electrically connected to the solenoid valve 33 of the hydraulic pump assembly 30, respectively.
The remote-control device 40 further comprises a transformer 48, and when the power input cable 61 is connected to the automotive battery 80, the transformer 48 may provide 5˜8.5V power to the RF receiver 41, the MCU 42 and the manual-control circuit 43.
The MCU 42 of the remote-control device 40 is an integrated circuit (IC) independently executing specific control functions which integrates the related circuits of central processing unit (CPU), read-only memory (ROM) or electrically-erasable programmable read-only memory (EEPROM), random access memory (RAM), input/output (I/O) control circuit, clock time counter (CTC), etc. into a single chip, wherein the ROM or EEPROM of the MCU 42 is already saved with the control information inputted by the corresponding the RF receiver 41 and the manual-control circuit 43.
The RF receiver 41 receives an identification code and a RF signal transmitted from the wireless transmitter 50, and transmits the received identification code and RF signal to an input port of the MCU 42; after confirmation by the MCU 42, the inputted RF signal is then decoded into a corresponding control signal that is transmitted.
The manual-control circuit 43 receives switch control signals of the pump activation switch SW1, the extension switch SW2, and/or the retraction switch SW3 which are manually switched, and transmits the received switch control signals to the input port of the MCU 42; after confirmation by the MCU 42, the corresponding control signal is transmitted.
Therefore, the MCU 42 immediately transmits corresponding control signals to control the conduction status of the relay actuated circuit 44 and/or the solenoid valve actuated circuit 45 according to the information inputted by the RF receiver 41 and the manual-control circuit 43.
The relay actuated circuit 44 controls the access of the first power line 63 of the power output cable 62 to the 12V DC power. When the RF receiver 41 receives the signal of the pump activation switch SW1 transmitted by the remote wireless transmitter 50 or the manual-control circuit 43 receives the signal of the pump activation switch SW1 being manually switched, the MCU 42 controls the relay actuated circuit 44 corresponding to the inputted signal to conduct so that the first power line 63 is provided with the 12V DC power inputted from the power input cable 61 and activates the hydraulic pump 32 of the hydraulic pump assembly 30; the oil in the oil reservoir 31 is pressurized by the hydraulic pump 32 and directed into the first pipeline 34 or the second pipeline 35 via ports of the solenoid valve 33 to reach the hydraulic cylinder 14 in
The solenoid valve actuated circuit 45 controls the access of the second power line 64 or the third power line 65 of the power output cable 62 to the 12V DC power. When the RF receiver 41 receives the signals of the extension switch SW2 or the retraction switch SW3 transmitted by the remote wireless transmitter 50 or the manual-control circuit 43 receives the signals of the extension switch SW2 or the retraction switch SW3 being manually switched, the MCU 42 controls the solenoid valve actuated circuit 45 corresponding to the inputted signal to conduct so that the second power line 64 or the third power line 65 is provided with the 12V DC power inputted from the power input cable 61 and switches between ports of the solenoid valve 33 of the hydraulic pump assembly 30; the pressurized oil originally flowing in the first pipeline 34 may be directed into the second pipeline 35 to reach the hydraulic cylinder 14 in
The voltage detection circuit 46 of the remote-control device 40 detects a voltage of the power input cable 61 and the MCU 42 of the remote-control device 40 suspends or prohibits the activation of the hydraulic pump assembly 30 if the detected voltage is not within a normal operation range (e.g., when the detected voltage is lower than 12V).
As shown in