Biological sterilizing device based on siphon principle
A technology based on the principle of biological sterilization and siphon, applied in water supply equipment, sanitary equipment for toilets, heating, etc., can solve the problems of uneven heating, poor sterilization effect, and inability to fully sterilize, and achieve better sterilization effect Good, expanding the range of high temperature sterilization, the effect of expanding the range of sterilization
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Embodiment 1
[0022] see Figure 1~3 , in the embodiment of the present invention, a biological sterilization device based on the siphon principle, including a water tank 1, an adsorption cylinder 3, a catheter 11, a bottom plate 19 and a flat plate 20; the top of the water tank 1 is fixed and together with the The water injection bucket, the bottom of the water tank 1 is equipped with a heating panel 2, specifically, an electric heating wire is installed under the heating panel 2, and the electric heating wire wire is connected to the controller 12 and the power supply, and the controller 12 is fixed on the outer wall of the water tank 1. The working state of the heating panel 2 is controlled by the controller 12 so that the water liquid in the water tank 1 is heated by the heating panel 2; the adsorption cylinder 3 is fixed under the water tank 1, and the inner side of the adsorption cylinder 3 is fixedly connected to the electromagnetic The iron core 4 and the electromagnet core 4 are wo...
Embodiment 2
[0026] In order to further explain the above-mentioned biological sterilization device based on the siphon principle, the application provides another embodiment. The biological sterilization device based on the siphon principle in this embodiment has the following technical features: the lower part of the driving shaft 16 is fixed with Two semi-conical gears 21, bevel gears 22 are arranged between the two semi-conical gears 21, half of the semi-conical gears 21 have teeth and half have no teeth, and the toothed parts of the upper and lower two semi-conical gears 21 are staggered from each other, and the semi-conical gears 21 The toothed part meshes with the bevel gear 23, and the rotating drive shaft 16 drives the upper and lower semi-conical gears 21 to rotate, thereby driving the bevel gear 22 to reciprocate forward and reverse rotation. It should be noted that the gear modulus of the semi-conical gear 21 is much larger than that of the bevel gear 22. The gear modulus, that ...
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