Rotation regulation fast-cooling thermal insulating cup and use method thereof
A technology of rotary adjustment and thermos cups, which is applied in the field of thermos cups, can solve the problems of cumbersome cooling and heat preservation processes, and achieve the effect of simple actions
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Embodiment 1
[0017] Embodiment 1, (see Figure 1-Figure 2 ) The brine 3 for cooling is arranged between the inner cup 1 and the outer cup 2 of the present invention, the more the amount of brine, the better the cooling effect.
[0018] The inner cup 1 is made of heat-conducting material, so that the high-temperature water in the inner cup can be cooled rapidly in the brine 3, and the inner cup is preferably made of stainless steel. For the water in the thermal insulation inner cup 1, the top of the inner cup is provided with an insulating layer 14 surrounded by the outer wall 11 and the inner wall 12. The insulating layer 14 can be a static air insulating layer, or can be evacuated to become a vacuum insulating layer, or can be Filled with foam. The middle part of the inner cup 1 is provided with a threaded sleeve 15 made of heat-conducting metal material (when cooling, the threaded sleeve 15 is immersed in salt water, which is also a heat dissipation component); a heat insulating ring ca...
Embodiment 2
[0021] Embodiment 2, (see Figure 4-Figure 6 ) In Embodiment 1, when the inner cup 1 is rotated downward, the air trapped between the inner cup and the outer cup will be squeezed out from the engaged thread space 31 as the inner cup moves down. The gap between the threads is difficult to control, that is, if the gap is too large, the salt water 3 may shake out, and if the gap is too small, the air is difficult to squeeze out. Therefore, the present embodiment can be implemented. The feature of this embodiment is that the threaded sleeve 23 of the outer cup is provided with an air outlet hole 24 , and correspondingly, the threaded sleeve 15 of the inner cup is provided with an air outlet groove 17 . When inner cup 1 rotates downward, by Figure 4 to Figure 5 During state, along with the rising of salt water, air is extruded, and flows out in the gap of unengaged thread segment 18 from air outlet hole 24, through air outlet groove 17. Inner cup 1 continues to rotate downwards...
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