Intelligent control vibration constant-temperature cold therapy rehabilitation wearable device
A wearable device and constant temperature technology, applied in the field of sports medicine, can solve the problems of non-constant temperature of the refrigeration medium, failure to fully reflect the effect of cold therapy, uncontrollable cooling capacity, etc., and achieve the effect of reducing frostbite
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Embodiment 1
[0053] Example 1, such as Figure 1-Figure 3 As shown, an intelligent control vibration constant temperature cold therapy rehabilitation wearable device includes a control box 1, and a cooling assembly is arranged in the control box 1. The cooling assembly includes a refrigerated compressor 5 and a heat sink, and a barrel 81 for accommodating cooling liquid. A cooling bag 2 is provided outside the tank 1 , and the cooling assembly is connected back to the cooling bag 2 through a hose 3 , and the cooling liquid in the barrel body 81 is delivered to the cooling bag 2 through a pump body.
[0054] The cooling bag 2 is provided with a temperature detecting element 67 and a heating element 68, and the control box 1 is provided with an intelligent temperature control host to control the stable temperature of the cooling bag 2, and the cooling assembly, the temperature detecting element 67 and the heating element 68 are all electrically connected to the Intelligent temperature contro...
Embodiment 2
[0066] Embodiment 2, its difference with embodiment 1, such as Figure 4 As shown, the cooling assembly includes a barrel body 81 for placing cooling liquid, the barrel body 81 includes a heat conduction container 82, and an inorganic salt refrigerant is placed in the heat conduction container 82, and a water holding tank 83 is provided at the upper end of the heat conduction container 82, and the heat conduction container 82 and the water holding tank An electronically controlled cut-off valve 84 is arranged between 83, and the medical staff can switch the cut-off valve 84 outside the control box 1, thereby controlling the fusion of the refrigerant and water for rapid cooling.
[0067] The heat conduction container 82 is spherical, and several heat absorption pipes 85 are arranged on the surface of the heat conduction container 82 , and the inorganic salt refrigerant is placed in the heat absorption pipes 85 .
Embodiment 3
[0068] Embodiment 3, its difference with embodiment 2, such as Figure 5 As shown, the barrel body 81 has a double-layer structure, the heat conduction container 82 is the interlayer of the barrel body 81, the water holding tank 83 is placed in the upper interlayer, the organic salt refrigerant is placed in the lower interlayer, and the cut-off between the upper interlayer and the lower interlayer is controlled by an electric control. The valve 84 is connected, and the user can open and close the shut-off valve 84 by pressing the button outside the control box 1 .
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