Scale-inhibition instant-heating water dispenser
A water dispenser and instant heating technology, which is applied in the field of water dispensers and scale-inhibiting instant water dispensers, can solve the problems of heavy metal precipitation in metal welding inner tanks, and achieve the effects of saving energy, avoiding accumulation, and convenient operation
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Embodiment 1
[0015] This embodiment provides a scale-inhibiting instant water dispenser, the structure of which is as follows: figure 1 As shown, it includes multimedia filter 1, RO membrane filter 2, ultraviolet disinfection box 3, nano electric heating film quick heater 4 and water mixing valve 5, and the filter elements in the multimedia filter are quartz sand filter layers from bottom to top , activated carbon support layer, PP cotton layer, porous ceramic filter and layer ion exchange layer, wherein the PP cotton layer has a pore size of 5-20 microns, and the activated carbon support layer is silver-loaded activated carbon; the water inlet of the multi-media filter is connected to the raw water pipeline, RO The water inlet of the membrane filter is connected to the multi-media filter, the RO membrane filter is connected to the ultraviolet disinfection box, and the ultraviolet disinfection box is equipped with two water outlets, the first water outlet is connected to the nanometer elect...
Embodiment 2
[0018] The structure of this example is basically the same as that of Example 1, except that the scale-resistant coating includes a base layer, a ceramic layer and a fluorine-containing compound layer. The base layer is made of fluorocarbon resin and heat-resistant adhesive resin in equal volume It is made by mixing, and the heat-resistant adhesive resin is composed of the following raw materials in parts by weight: 65 parts of epoxy resin, 30 parts of bismaleimide, 5 parts of dicyandiamide, 7 parts of styrene, 2- 10 parts of ethyl-4-methylimidazole, 9 parts of terephthalmic alcohol, 10 parts of active silica powder, 10 parts of DEHP; the ceramic layer consists of 11 parts of alumina, 8 parts of zirconia, 18 parts of silicon carbide, and 7 parts of aluminum boride And 25 parts of cristobalite are prepared by mixing acrylic resin; the fluorine-containing compound layer is composed of the following raw materials in parts by weight: 15 parts of polyamideimide, 8 parts of fluorocar...
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