Heat conversion water dispenser
A water dispenser and heat conversion technology, applied in beverage preparation devices, home appliances, applications, etc., can solve problems such as the influence of the initial water temperature of the water outlet, failure to meet the requirements, or further heating.
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Embodiment 1
[0033] see figure 1 As shown, a heat conversion water dispenser includes a water tank 101 , a water pump 102 , a heat exchanger 103 , a first heating body 104 , a water outlet 105 and a first three-way valve 106 . in,
[0034] The water tank 101 is used to provide raw water. The raw water may be pure water loaded after purification.
[0035] A water pump 102, which communicates with the water tank 101, is used to draw raw water. The water pump provides pumping power for better water flow power.
[0036] A heat exchanger 103, which includes an inner pipe 107 and an outer pipe 108 sleeved outside the inner pipe 107, the outer pipe 108 communicates with the water pump 102, and is used to flow the extracted raw water to the outer pipe 108;
[0037] The first heating body 104, which communicates with the outer pipe 108, is used to heat the water flowing out from the outer pipe 108 to form hot water;
[0038] A water outlet 105, which communicates with the first heating body 10...
Embodiment 2
[0054] With reference to embodiment 1, the waterway design of its warm water and boiled water is consistent, differs from embodiment 1, see figure 2 As shown, the thermal conversion water dispenser also includes a small water tank 115, the water outlet of the small water tank 115 communicates with the water pump 102 through the seventh waterway 17, and a second three-way valve is provided on the second return pipe (i.e. the fifth waterway 15) 116 , a valve port of the second three-way valve 116 communicates with the water inlet of the small water tank 115 , and the second three-way valve 116 is used to control the residual water in the inner pipe to flow back to the small water tank through the sixth waterway 16 . This solves the technical problem that there is residual water in the inner tube of the heat exchanger, and the temperature is not the required temperature for water intake, which will have an impact on the initial water temperature of the water outlet.
[0055] The...
Embodiment 3
[0061] With reference to embodiment 1, on the basis of embodiment 1, see image 3 As shown, the inner tube 107 of the heat exchanger is a straight cylindrical spiral structure. That is, the inner pipe wall of the straight cylinder is provided with a spiral structure. Compared with the heat conversion inner tube structure normally used in the prior art, it is a straight-tube light-wall structure; the newly designed inner tube structure of this embodiment is a straight-tube spiral structure; the straight-tube spiral structure can increase the surface area of the object, The boiling water cooling area of the inner pipe is enlarged, and the cooling efficiency is accelerated.
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