Anti-blocking bridge blow-off channel
A sewage channel and anti-clogging technology, applied in bridges, bridge parts, bridge construction, etc., can solve the problems of difficult to remove sundries and affect the drainage function, and achieve the effect of facilitating rainwater scouring and avoiding the accumulation of dirt.
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Embodiment 1
[0022] Such as Figure 1-2 As shown, an anti-clogging bridge sewage channel includes a drainage channel 1, and the side walls on both sides of the drainage channel 1 are slidably connected with a water-permeable floating strip 2, and the water-permeable floating strip 2 is made of a material that is loose and porous and has a density lower than water.
[0023] A flexible layer 3 is fixedly connected between the two water-permeable floating strips 2, and the flexible layer 3 has the property of being impermeable. Each water-permeable floating strip 2 is fixedly embedded with a vertically arranged threaded sleeve 4, and the drain of the drainage channel 1 The mouth is fixedly connected with a grille 5, which can prevent larger debris from falling into the drain 1 and causing blockage during the drainage process.
[0024] Between the lower side walls on both sides of the grille 5 and the inner bottom surface of the drain 1, there is a vertical threaded rod 6 that is rotatably con...
Embodiment 2
[0035] Such as image 3 As shown, the difference between this embodiment and Embodiment 1 is that: the bottom of the drain 1 is provided with a horizontal bar 16, and the bar 16 is provided with a plurality of vertically arranged pressing bars 17, and each pressing bar 17 are all rotatably connected with the cross bar 16 by coil springs. It should be noted that the two water-permeable floating bars 2 are fixedly embedded with opposite magnetic blocks respectively, and each pressing bar 17 has magnetism.
[0036] In this embodiment, when the amount of rainwater continues to decrease until it disappears, the water-permeable floating strip 2 will continue to drop as the water surface decreases, and the flexible layer 3 will first be laid on the upper ends of a plurality of pressing rods 17, each pressing The rods 17 will form a protrusion on the upper surface of the flexible layer 3. When the two water-permeable floating strips 2 are completely moved down to the bottom of the thr...
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