High-efficiency property management platform based on Internet of Things
A property management and high-efficiency technology, applied in the field of management platform, can solve the problems of adverse effects of the surrounding environment of the operation platform, and the heat dissipation effect of the operation platform depends on the external environment, so as to slow down the replenishment frequency, reduce the dependence and increase the work efficiency Effect
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Embodiment 1
[0047] Example 1: as Figure 1-4 As shown, during the use of the operating platform 12, the heat of the platform body 2 is conducted by the heat conduction plate 5, and the heat is introduced into the water in the casing 1, and then the heat in the water in the casing 1 is absorbed by the radiator plate 8, and along with the external airflow When passing through the air guide hole 9, the heat is dissipated into the outside air, and part of the water in the casing 1 evaporates due to heat absorption, so that the water surface in the casing 1 drops, which in turn causes the thrust force of the floating block 46 to the guide rod 43 to disappear, and the spring 44 pushes The guide rod 43 drives the plug 45 to move down, and the sealing state of the plug 45 to the conduit 41 is released. When the water level in the casing 1 rises, the floating block 46 is driven to rise and the plug 45 is re-inserted into the conduit 41 to seal the conduit 41 .
Embodiment 2
[0048] Embodiment 2: as figure 1 , figure 2 , Figure 5 and Image 6 As shown, in the process of conducting heat on the heat-conducting plate 5, the heat is conducted to the heat-conducting thin plate 61 through the heat-conducting rod 63, and a small amount of water in the storage tank 64 is heated, so that the small amount of water in the storage tank 64 is quickly evaporated. The steam is injected into the water in the storage tank 3 through the first thermal insulation pipe 65, and the water in the storage tank 3 is introduced into the storage tank 64 through the second thermal insulation pipe 66 to replenish the water in the storage tank 64 to form a circulation, and Reduce the heat of the water in the storage tank 64, and when the water vapor in the storage tank 64 enters the first heat insulation pipe 65 from the injection pipe 67, it will push the impeller 68 to rotate at the same time, increasing the gas per unit time in the first heat insulation board. The amount...
Embodiment 3
[0049] Example three: as figure 1 , figure 2 , Figure 5 and Image 6 As shown, the temperature of the heat-conducting cylinder 71 changes with the temperature of the water in the storage tank 64, so that the solution in the heat-conducting pipe expands and contracts due to heat absorption or heat dissipation, and drives the sleeve 79 through the piston rod 73. Move up and down, when the sleeve 79 moves downward, the pull rod 77 will be inserted into the sleeve 79 and at the same time, the position of the pull rod 77 in the sleeve 79 will be fixed by the friction between the soft sleeve 74 and the clamping block 78. When the sleeve 79 moves upward, the middle part of the elastic strip 75 can be driven to move online by the pull rod 77, so that the elastic strip 75 is deformed, and the elastic strip 75 recovers when the elastic force of the elastic strip 75 is greater than the friction force between the clamping block 78 and the soft sleeve 74. At the same time, the soft bl...
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