Fast-cooling insulation cup based on heat absorption solution
A thermos cup and solution technology, applied to drinking utensils and other directions, can solve the problems of low cooling rate, inability to meet people's needs, and long time consumption, and achieve the effects of high thermal conductivity, enhanced convective heat transfer capacity, and enhanced thermal conductivity.
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Embodiment 1
[0036] Embodiment 1 demonstrates a typical application of a rapid cooling heat preservation container in the present invention. figure 1 It is a structural schematic diagram of a rapidly cooling thermos cup based on an endothermic solution in the embodiment. Wherein: 1 is the inner cup wall, 2 is the heat-absorbing solution, 3 is the middle cup wall, 4 is the outer cup wall, and 5 is high-temperature hot water.
[0037] The heat-absorbing solution-based rapid cooling thermos cup of the present invention includes an inner cup wall 1 , an endothermic solution layer 2 , a middle cup wall 3 and an outer cup wall 4 from the inside to the outside. Described endothermic solution layer 2 is made of water, sodium chloride, TiO 2 Composition of particles and phase change materials. The TiO 2 The particles have high thermal conductivity, which can enhance the heat conduction ability of the liquid; and through their own movement, they can enhance the convective heat transfer ability of...
Embodiment 2
[0041] figure 1 It is a structural schematic diagram of a rapidly cooling thermos cup based on an endothermic solution in the embodiment. Wherein: 1 is the inner cup wall, 2 is the heat-absorbing solution, 3 is the middle cup wall, 4 is the outer cup wall, and 5 is high-temperature hot water.
[0042] The inner cup wall 1 and the middle cup wall 3 of the rapid cooling thermos cup of this embodiment are made of stainless steel. The outer cup wall material is polyethylene. The colorant in the heat-absorbing solution layer 2 is chocolate pigment, the phase change material is paraffin, and the melting point of paraffin is 35°C. The mass fraction of each component in the endothermic solution is sodium chloride 0.01%, TiO 2 Granules 0.01‰, paraffin wax 30%, colorant 0.01‰, and the rest is water.
[0043] When in use, pour high-temperature hot water 5 into the thermos cup, and the heat-absorbing solution in the heat-absorbing solution layer 2 of the thermos cup quickly absorbs th...
Embodiment 3
[0045] figure 1 It is a structural schematic diagram of a rapidly cooling thermos cup based on an endothermic solution in the embodiment. Wherein: 1 is the inner cup wall, 2 is the heat-absorbing solution, 3 is the middle cup wall, 4 is the outer cup wall, and 5 is high-temperature hot water.
[0046] The inner cup wall 1 and the middle cup wall 3 of the rapid cooling thermos cup of this embodiment are made of stainless steel. The outer cup wall material is polyethylene. The colorant in the heat-absorbing solution layer 2 is chocolate pigment, the phase change material is paraffin, and the melting point of paraffin is 35°C. The mass fraction of each component in the endothermic solution is sodium chloride 15%, TiO 2 Granules 400‰, paraffin 0%, colorant 20‰, and the rest is water.
[0047] When in use, pour high-temperature hot water 5 into the thermos cup, and the heat-absorbing solution in the heat-absorbing solution layer 2 of the thermos cup quickly absorbs the heat of th...
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Abstract
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