A multifunctional and energy-saving road and bridge windshield
An energy-saving and windshield technology, applied to bridges, bridge parts, bridge construction, etc., can solve the problems of wasting water resources, reducing service life, and windshields are covered with dust, so as to achieve the effect of saving natural resources
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Embodiment 1
[0033] Embodiment one, with reference to image 3 As shown, when the staff needs to clean the windshield 2, the staff drives the sprinkler and puts the water into the water collection tank 3. We set the first liquid level sensor 39 at the lowest position of the liquid level in the water collection tank 3 and the second A liquid level sensor 39 is waterproof, we are provided with the second liquid level sensor 40 and the second liquid level sensor 40 is also waterproof at the highest position of the water collecting tank 3 liquid level, the first liquid level sensor 39 and the second liquid level sensor 40 is electrically connected to the first controller, and the telescopic rod 11 is also electrically connected to the first controller, and the first controller is electrically connected to an external power supply, such as Figure 5 As shown, we have a water inlet hole at the top of the water collection box 3, we have a first water outlet hole 41 at the bottom of the water coll...
Embodiment 2
[0038] Embodiment two, on the basis of embodiment one, as Figure 4 As shown, in order to make the technical effect of the present invention better, we rotate and install the impeller 15 on the windshield 1, the natural wind blows the impeller 15 to rotate, and the impeller 15 rotates so that the power is transmitted to the first positioning through the first transmission device. On the wheel 16, we are provided with two surfaces with different heights on the first separation strip 17. During the initial position, the first positioning wheel 16 and the low-level surface on the first separation strip 17 are in contact. At this time, the power can pass through the first separation strip 17 A transmission device is transmitted to the first positioning wheel 16, and the first positioning wheel 16 can drive the water pumping device. We fixedly install the first hard pipe 47 on the water pumping device and the other end of the first hard pipe 47 is fixedly connected with the second ...
Embodiment 3
[0042] Embodiment three, on the basis of embodiment two, we are provided with the first positioning pin 49 on the first positioning wheel 16, on the fourth pulley 24 are provided with a number of rings and first positioning pins arranged around the center of the shaft at intervals. The first positioning hole 50 matched with the positioning pin 49, the wind in nature blows the impeller 15 to rotate, and the impeller 15 rotates to drive the first belt pulley 21 fixedly installed on the coaxial center to rotate, and the first belt pulley 21 rotates and is driven and installed through the belt The second pulley 22 on the windshield 1 rotates and the second pulley 22 rotates to drive the third pulley 23 fixedly installed on the coaxial center to rotate, and the third pulley 23 rotates to drive the fourth pulley 24 to rotate through the belt drive , when the lower surface of the first separation strip 17 contacts the first positioning wheel 16, the first positioning pin 49 contacts t...
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