Slope protection anchor rod and protection method
A technology for slope protection and bolting, applied in gardening methods, botanical equipment and methods, excavation, etc., can solve problems such as inability to provide support for hanging objects, easy corrosion of anchors, and difficult survival of microorganisms, etc., so as to improve the survival rate and Holding effect, effect of preventing falling off
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Embodiment 1
[0052] A specific embodiment of the present invention discloses a bio-anchor for slope protection plants, which includes a branch section 1, such as figure 1 shown. The branch section 1 is provided with a demarcation point 3 , below the demarcation point 3 is an embedded segment 4 , and above the demarcation point 3 is an exposed segment 5 . The suspended object 8 is installed on the exposed section 5, and the branch section 1 plays a role of physical support for the suspended object 8.
[0053] After being buried in the soil layer of the side slope, the embedded section 4 takes root in the soil layer to hold the side slope soil layer. The exposed section 5 above the soil layer grows branches and leaves, which can prevent hanging objects 8 from coming off from the exposed section 5 .
[0054] Considering that the branch section 1 needs to be driven into the soil layer of the slope in the later stage, the configuration of the morphological lower end 2 of the branch section 1 ...
Embodiment 2
[0068] A specific embodiment of the present invention discloses a side slope protection method. The following describes the various steps of the side slope protection method in detail in combination with actual application embodiments, such as Image 6 shown.
[0069] This example is carried out on the slope on the north side of the B+940 block of Guangyang Island, Nan'an District, Chongqing. The height of the slope varies from 5 to 25m, and it extends along the road for about 1500m without grading.
[0070] First level the slope. Specifically, the engineering slope 6 is artificially leveled to ensure that the slope of the slope is generally consistent, and there is no obvious depression or protrusion.
[0071] Next, select a plant of the genus Oleaceae, cut its branches with a diameter of 3cm to 15cm into small sections with a diameter of 30cm to 100cm per node, and cut the morphological lower end 2 into a cone or wedge shape.
[0072] In order to prevent the incision of ea...
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Abstract
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