Low-voltage electrode boiler and method thereof
A low-voltage electrode and boiler technology, applied in lighting and heating equipment, fluid heaters, water heaters, etc., can solve the problems of low thermal efficiency, expensive frequency conversion power supply, electromagnetic leakage, etc., and achieve high thermal efficiency
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Embodiment 1
[0028] Refer to attached figure 1 As shown, the present invention provides a technical solution: a low-voltage electrode boiler, which includes a support frame 1, at least three containers 2, a circulating water inlet pipe 3, a circulating water pump 4, and a circulating water outlet pipe 5, and the three containers 2 are sequentially arranged on the support On the rack 1 , the circulating water inlet pipe 3 connects the water inlet ends of the three containers 2 sequentially through the circulating water pump 4 , and the circulating water outlet pipe 5 connects the water outlet ends of the three containers 2 sequentially.
[0029] Further, each of the three containers 2 includes an outer shell 21 and an inner cylinder 22 disposed inside the outer shell 21 , and pure water and a conductive water solvent are respectively added between the outer shell 21 and the inner cylinder 22 to form an aqueous solution.
[0030] In this embodiment, the negative pole of the power supply and ...
Embodiment 2
[0042] Refer to attached figure 2 As shown, the working method of the low-voltage electrode boiler provided by the embodiment of the present invention includes the following steps:
[0043] S1, pass the low-voltage three-phase power line through the first wire to make the outer shell 21 form the negative pole of the power supply, and introduce the mandrel 24 through the second wire and the positive pole to make the inner cylinder 22 form the positive pole of the power supply, and at the same time make the aqueous solution have a water resistance with a certain conductivity;
[0044] S2, energize the circulating water pump 4 and continuously deliver circulating water to the three inner cylinders 22 respectively through the circulating water inlet pipe 3. The current flows from the inner cylinder 22 to the outer shell 21 through the water resistance to heat the circulating water, and finally the circulating water flows out from the circulating water outlet pipe 5 .
[0045]It ...
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