Gear and rack reciprocating driving rope type solar wing assisted turnover mechanism
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The invention provides a gear and rack reciprocating driving rope type solar wing assisted turnover mechanism and relates to a solar wing assisted turnover mechanism. The gear and rack reciprocating driving rope type solar wing assisted turnover mechanism aims at solving the problems that an existing solar wing driving mechanism has no capacity of stretching and closing on the ground and can not complete repeated clockwise and anticlockwise rotation of a solar wing. A first cylindrical gear is fixedly arranged at the other end of a first transmission shaft. A steel rope wheel is fixedly arranged on the first cylindrical gear in a sleeved mode. A steel wire rope is arranged on the steel rope wheel, and one end of the steel wire rope is fixed to the steel rope wheel. The other end of the steel wire rope is connected with the solar wing through a connecting part. The front sidewall and the rear sidewall of a horizontal support are provided with slideways in the length direction of the horizontal support. Linear guide rails are arranged on the slideways. A rack is arranged on the linear guide rails in the length direction. Three driving assemblies are sequentially arranged in a driving assembly shell from left to right. The first cylindrical gear is meshed with a second cylindrical gear. The second cylindrical gear is meshed with a third cylindrical gear. The gear and rack reciprocating driving rope type solar wing assisted turnover mechanism is used for assisting the solar wing in turning over.