Phase-change energy-storage fibre and method for making same
A phase change energy storage and fiber technology, which is applied in the fields of fiber chemical characteristics, cellulose/protein conjugated artificial filament, melt spinning, etc., can solve the problems of low filling amount of phase change materials, low addition of phase change The performance of silk is restricted and other problems, and the effect of improving functions such as ensuring spinnability, high phase change enthalpy, energy storage and temperature control is achieved.
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Embodiment 1
[0018] 1) The paraffin wax with a melting point of 30° C. is completely melted and mixed with 2.0% dispersant calcium stearate relative to the weight of the paraffin wax to obtain a paraffin wax melt;
[0019] 2) Using vitamin pulp as raw material, through the steps of dipping, pressing, crushing, aging, yellowing, dissolving, ripening and filtering, and defoaming, the cellulose viscose solution is obtained, and the content of α-cellulose in the cellulose viscose solution 8.5-9.5%;
[0020] 3) adjusting the cellulose viscose solution to the melting temperature of the paraffin wax, adding 15% of the paraffin wax melt relative to the weight of the cellulose into the cellulose viscose solution and uniformly mixing to obtain a spinning stock solution;
[0021] 4) Press the prepared spinning stock solution through the spinneret into a coagulation acid bath with a sulfuric acid content of 110g / l, sodium sulfate 330g / l, zinc sulfate 25g / l, and a temperature of 30°C for spinning, and ...
Embodiment 2
[0024] 1) The paraffin wax with a melting point of 57° C. is completely melted and mixed with 2.5% dispersant calcium stearate relative to the weight of the paraffin wax to obtain a paraffin wax melt;
[0025] 2) Using vitamin pulp as raw material, through the steps of dipping, pressing, crushing, aging, yellowing, dissolving, ripening and filtering, and defoaming, the cellulose viscose solution is obtained, and the content of α-cellulose in the cellulose viscose solution 7.0-8.0%;
[0026] 3) Adjust the cellulose viscose solution to the melting temperature of the paraffin wax, and add 31% of the paraffin wax melt relative to the weight of the cellulose into the cellulose viscose solution and mix evenly to obtain a spinning stock solution;
[0027] 4) Press the obtained spinning stock solution through the spinneret into a coagulation acid bath with a sulfuric acid content of 105g / l, sodium sulfate 335g / l, zinc sulfate 45g / l, and a temperature of 55°C for spinning, and produce ...
Embodiment 3
[0030] 1) Completely melting paraffin wax with a melting point of 12°C and adding 1.5% dispersant stearic acid relative to the weight of the paraffin wax and mixing uniformly to obtain a paraffin wax melt;
[0031]2) Using cellulose pulp as raw material, through the steps of dipping, pressing, crushing, aging, yellowing, dissolving, ripening and filtering, and defoaming, the cellulose viscose solution is obtained, and the content of α-cellulose in the cellulose viscose solution 6.0~7.0%;
[0032] 3) Adjust the cellulose viscose solution to the melting temperature of the paraffin wax, and add 38% of the paraffin wax melt relative to the weight of the cellulose into the cellulose viscose solution and mix evenly to obtain the spinning stock solution;
[0033] 4) Press the prepared spinning stock solution through the spinneret into a coagulation acid bath with 110 g / l of sulfuric acid, 25 g / L of aluminum sulfate, 275 g / L of sodium sulfate, transparency ≥ 1000 mm, and a coagulation...
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