Slope protection device capable of being used for silt dam protection
A technology for check dams and protection mechanisms, applied in water supply devices, grease/oily substance/floating matter removal devices, sewer pipeline systems, etc., can solve problems such as reduced service life, check dam erosion, and check dam load. Achieve the effects of reducing flow velocity, preventing clogging and stabilizing the structure
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Embodiment 1
[0060] see Figure 1-5 , a slope protection device that can be used for the protection of a check dam, including an installation groove opened on the slope surface of the slope body 5, and a protection mechanism arranged in the installation groove; the application can effectively avoid the slope by setting the protection mechanism. to avoid soil erosion and ensure the stability of the slope.
[0061] Please refer to figure 1 as well as figure 2 , Figure 4 , the installation groove includes a plurality of horizontal grooves 311 and vertical grooves 312 arranged vertically and horizontally, and a diamond-shaped center groove 32 is provided at the intersection of the horizontal groove 311 and the vertical groove 312. Each corner communicates with the surrounding lateral grooves 311 and the vertical grooves 312 respectively. By setting longitudinal grooves and vertical grooves, a good hydrophobic effect can be achieved, and the longitudinal grooves and vertical grooves are u...
Embodiment 2
[0070] see Image 6 , In this embodiment, in order to prevent each hydrophobic hole 211 from being blocked by soil after long-term use, an anti-blocking mechanism is set on the top side of the horizontal plate, and the anti-blocking mechanism can avoid following rainwater to wash the soil blocked by the horizontal bar , accumulated on the front side of the horizontal plate, effectively preventing the clogging of the hydrophobic holes.
[0071] As a further improvement of the above solution, an anti-blocking mechanism is also provided below the upper port of the hydrophobic hole 211 . It is rotatably connected with one side of the cross bar 21, one side of the rotating plate 64 is rotatably connected with the other end of the push plate 65, one end of the sliding connecting plate 63 is rotatably connected with the other side of the rotating plate 64, and the stop plate 62 is fixed on the upper port the bottom side, which is used to limit the sliding of the sliding connecting p...
Embodiment 3
[0080] On the basis of any one of Embodiments 1-2,
[0081] see Figure 7-9 In this embodiment, the connection frame 1 includes two connection blocks 1 102 and two connection blocks 103 , the two connection blocks 1 102 and the two connection blocks 103 are arranged in parallel, and the connection block 1 102 It is connected to the second connecting block 103, the two connecting blocks 102 are arranged in the front-rear direction, and the two connecting blocks 103 are arranged in the left-right direction. Components include:
[0082] Installation groove 104, the installation groove 104 is arranged inside the connection frame 1, the upper part of the installation groove 104 is symmetrically provided with grooves 104 on the front and rear sides, and the grooves 104 are arranged near the connection block 1 102 One end of the installation groove 104, and the left and right sides of the groove 104 are connected with a chute 1033, the chute 1033 communicates with the power chamber...
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