Shovel-type intelligent defrosting and dirt removing device and mechanical control system
A decontamination device and intelligent technology, applied in the field of machinery, to achieve the effect of reducing labor intensity, saving energy and reducing environmental pollution, and reducing environmental pollution
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Embodiment 1
[0026] see figure 1 , this embodiment provides a shovel-type intelligent decontamination device 100, specifically, the shovel-type intelligent decontamination device 100 uses a shovel 101 connected with a push-pull electromagnet 102 in cooperation. The shovel type intelligent decontamination device 100 includes a shovel 101; a push-pull magnet 102; a forward and reverse motor 110; an electric vehicle 111; 112 electric vehicle tracks; The push-pull magnet 102 includes a magnet 120 and a time controller 121 . The magnet 120 cooperates with the time controller 121 for use.
[0027] The shovel 101 is subjected to the action of the push-pull magnet 102 to generate a thrust to remove dirt, and the push-pull magnet 120 is acted on by its time controller 121 to generate the thrust for about 2 to 3 seconds.
[0028] The forward and reverse motor 110 is equipped with a forward and reverse motor time controller 130. After a certain period of time, the forward and reverse motor 110 move...
Embodiment 2
[0034] see figure 2 , this embodiment provides a shovel-type intelligent defroster 200 . The main difference between the shovel-type intelligent defroster 200 and the shovel-type intelligent decontamination device 100 provided in Embodiment 1 is that the shovel-type intelligent defroster 200 also includes a temperature control device (marked in the figure). The temperature control device includes 131 forward and reverse motor temperature probes; 132 forward and reverse motor temperature controllers; 131 forward and reverse motor temperature probes are connected with 132 forward and reverse motor temperature controllers to control the up and down movement of the forward and reverse motors . In this embodiment, the 131 forward and reverse motor temperature probes are equipped with thermal resistance temperature sensors. In other embodiments of the present invention, the temperature sensor may also be a thermocouple temperature sensor.
[0035] The forward and reverse motor 1...
Embodiment 3
[0038] see figure 2 , image 3 , the PLC temperature controller 132 is electrically connected to the temperature probe of the first temperature sensor 131, and the PLC controller 132 is also connected to the forward and reverse motor. The first sensor 131 transmits the detected water temperature signal to the PLC controller 132, and the PLC controller 132 adjusts the rotation direction of the forward and reverse motor according to the above signal, and then adjusts the electromagnetic push-pull dry defrosting capability. The PLC controller 132 adjusts the power switch of the forward and reverse motor according to the above signal, and then adjusts and controls the electromagnetic push-pull dry defrosting capability.
[0039] In this embodiment, a display screen cooperating with the PLC controller 220 is also provided to control the movement of the electric vehicle 111 in the track through the operation on the display screen, control the positive and negative motors to move u...
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