Lake water level monitoring and alarming system for scenic spot and operation method
A water level monitoring and alarm system technology, applied in the direction of buoy liquid level indicator, etc., can solve the problems of poor safety, failure to work, and affect the accuracy of the tester, etc., to achieve the effect of accurate alarm
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Embodiment 1
[0024] Embodiment 1: as figure 1 As shown, a lake water level monitoring and alarm system in a scenic spot includes a transparent conduit 11 arranged in the lake water through a bracket 12, a push rod 10 with a float 23 at the bottom is arranged in the conduit 11, and a scale is provided on the push rod 10, The lower end of the conduit 11 is provided with a filter hole self-cleaning mechanism, and the filter hole self-cleaning mechanism includes a brush body 22 that is rotatably connected under the conduit 11 and a drive mechanism that is connected to the conduit 11 through a fixed rod 15, and the drive mechanism includes The sliding sleeve 4 fixed on the conduit 11 and the sliding rod 3 located in the sliding sleeve 4, the sliding rod 3 is provided with a rotatingly connected impeller 1, the lower part of the sliding rod 3 is a hollow structure, and the fixed rod 15 is There is a drive shaft 14 rotatably connected to the fixed rod 15. The drive gear 18 on the drive shaft 14 m...
Embodiment 3
[0037] The difference between Example 3 and Example 1 is that the rubber rope is made up of the following raw materials in parts by weight, 68 parts of chloroprene rubber, 28 parts of methyl phenyl vinyl silicone rubber, 8 parts of aluminum oxide, and 7 parts of high-density polyethylene. 6 parts, 6 parts of carbon black, 5 parts of paraffin, 9 parts of stearic acid, 9 parts of glass fiber, 5 parts of ethylene bis stearamide, 7 parts of ramie fiber.
Embodiment 4
[0038]The difference between Example 4 and Example 1 is that the rubber rope is made up of the following raw materials in parts by weight, 60 parts of neoprene rubber, 24 parts of methyl phenyl vinyl silicone rubber, 7 parts of aluminum oxide, 5 parts of high-density polyethylene 5 parts, 5 parts of carbon black, 3 parts of paraffin, 8 parts of stearic acid, 7 parts of glass fiber, 4 parts of ethylene bis stearamide, 5 parts of ramie fiber.
[0039] As can be seen from Examples 2, 3, and 4, the rubber ropes made in Examples 2, 3, and 4 can meet the transmission requirements of the present invention, and more importantly, they can not affect the rise and fall of the impeller; the main reason is that, The formula of the present invention adds appropriate amount of zeolite powder, and the hollow structure of zeolite powder makes the density of rubber close to the density of water (the rubber density of rubber rope formula 1,2,3 system is respectively 0.987g / cm ³, 0.996g / cm ³, 1.05...
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