Side slope deviation monitoring device based on forest land side slope fixing and stabilizing technology
A monitoring device and slope technology, which is applied in the field of slope deviation monitoring devices, can solve the problems of stability limitation, easy side shift, low application effect of monitoring devices, etc., and achieve the effect of increasing or decreasing stability and ensuring stability
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Embodiment 1
[0024] see Figure 1~3 , a slope deviation monitoring device based on woodland slope fixing and stabilization technology, comprising a seat frame 1, a base frame 2 and a monitoring device 3, the top of the seat frame 1 is provided with a base frame 2, and the seat frame 1 is U-shaped structure, the base frame 2 is a U-shaped structure, the top of the base frame 2 is provided with a monitoring device 3, and the center of the top surface of the base frame 1 is provided with a control box 17 matched with the base frame 2. The present invention uses the base frame 1 is fixed at the side slope monitoring position, and the side slope is monitored by the monitoring device 3 .
[0025] The top wall of the inner cavity of the seat frame 1 is symmetrically provided with a partition 4, and the partition plate 4 divides the inner cavity of the seat frame 1 into a stable chamber 5 and two moving chambers 6, and the stable chamber 5 is located on the seat frame 1. In the middle of the inne...
Embodiment 2
[0027] This embodiment is a further elaboration on the basis of Embodiment 1. A first sliding rail 16 is provided on the side wall of the inner chamber of the moving chamber 6 close to the stable chamber 5, and the first sliding rail 16 is provided with The first lifting plate 8 is slidingly connected between the first slide rail 16 and the first lifting plate 8, the top of the first lifting plate 8 is connected to the control box 17 through the first telescopic rod 7, and the bottom of the first lifting plate 8 Evenly provided with a number of damping plates 9, the bottom end of the damping plate 9 is provided with universal wheels 10, when the whole device needs to be transferred, the second telescopic rod 13 is retracted through the control box 17, and then the second lifting rod is lifted. Plate 12, so as to pull out the fixed anchor rod 15 from the soil, and stretch the first telescopic rod 7 through the control box 17, and push the first lifting plate 8 to descend along t...
Embodiment 3
[0029] This embodiment is a further elaboration on the basis of Embodiment 2. The left and right sides of the inner cavity bottom wall of the control box 17 are symmetrically provided with a first through hole 21 matched with the first telescopic rod 7, and the control box 17 The left and right sides of the bottom wall of the inner cavity are symmetrically provided with the first hydraulic cylinder 22 matched with the first through hole 21, and the top end of the first telescopic rod 7 passes through the seat frame 1 and passes through the first through hole 21 and the first through hole 21. The hydraulic rod connection of the hydraulic rod 22 is a sliding connection between the first telescopic rod 7 and the seat frame 1, and the stretching or retracting of the first telescopic rod 7 is controlled by the first hydraulic cylinder 22 extending or retracting the telescopic rod.
[0030] The center of the inner chamber bottom wall of the control box 17 is symmetrically provided wi...
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