A large-diameter phase-change thermal storage particle and its preparation method
A phase-change heat storage and large-diameter technology, which is applied in chemical instruments and methods, heat exchange materials, sustainable manufacturing/processing, etc., can solve the problems of difficult to meet the dispersion requirements of industrial applications, small particle size, etc., and achieve the use The effect of long life, high temperature and high strength
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Embodiment 1
[0032] A large-diameter phase-change thermal storage particle and a preparation method thereof. The steps of the preparation method described in this embodiment are:
[0033] Step 1. Alternately washing the aluminum-silicon alloy powder with acid and deionized water for 1-5 times, then placing it in a protective atmosphere, and drying at 60-120° C. for 3-7 hours to obtain surface-modified aluminum-silicon alloy powder.
[0034] Step 2. First place the surface-modified aluminum-silicon alloy powder in a high-temperature atmosphere furnace, then roast according to the following six-stage heating system and the corresponding furnace atmosphere, and then naturally cool to room temperature to obtain a large-diameter phase Become heat storage particles.
[0035] The heating system of the first stage is to raise the temperature from room temperature to the first temperature at a rate of 5-7°C / min; the atmosphere in the furnace is a water vapor atmosphere, and the inlet gauge pressur...
Embodiment 2
[0045] A large-diameter phase-change thermal storage particle and a preparation method thereof. The steps of the preparation method described in this embodiment are:
[0046] Step 1. Alternately washing the aluminum-silicon alloy powder with alkali and deionized water for 3-8 times, then placing it in a protective atmosphere, and drying at 100-160° C. for 6-10 hours to obtain surface-modified aluminum-silicon alloy powder.
[0047] Step 2. First place the surface-modified aluminum-silicon alloy powder in a high-temperature atmosphere furnace, then roast according to the following six-stage heating system and the corresponding furnace atmosphere, and then naturally cool to room temperature to obtain a large-diameter phase Become heat storage particles.
[0048] The heating system of the first stage is to heat up from room temperature to the first temperature at a rate of 6.5-8.5°C / min; the atmosphere in the furnace is a water vapor atmosphere, and the inlet gauge pressure of t...
Embodiment 3
[0058] A large-diameter phase-change thermal storage particle and a preparation method thereof. The steps of the preparation method described in this embodiment are:
[0059] Step 1. Alternately washing the aluminum-silicon alloy powder with alkali and deionized water for 6-10 times, then placing it in a protective atmosphere, and drying at 140-200° C. for 9-12 hours to obtain surface-modified aluminum-silicon alloy powder.
[0060] Step 2. First place the surface-modified aluminum-silicon alloy powder in a high-temperature atmosphere furnace, then roast according to the following six-stage heating system and the corresponding furnace atmosphere, and then naturally cool to room temperature to obtain a large-diameter phase Become heat storage particles.
[0061] The heating system of the first stage is to heat up from room temperature to the first temperature at a rate of 8-10°C / min; the atmosphere in the furnace is a water vapor atmosphere, and the inlet gauge pressure of the...
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