Method for efficiently regenerating spandex filament by dry spinning waste spandex filament
A high-efficiency regeneration technology of spandex waste silk, which is applied in the field of spinning, can solve the problems of unsatisfactory stability of finished products, high energy and material consumption, discarding and no longer using, etc., so as to alleviate the impact of additives on the environment and improve a The effect of equal product rate and process cost saving
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Embodiment 1
[0029] A method for dry-spinning spandex waste silk to efficiently regenerate spandex yarn, comprising the following steps:
[0030] Step 1), aging the spandex waste silk, in N 2 It was heated to 120°C in an atmosphere of air and kept for 12 hours, and the humidity was controlled at 10%.
[0031] Step 2), at about 10°C, pulverize the spandex waste silk into ultra-short spandex waste silk fibers with a fiber length of ≤30 mm.
[0032] Before crushing, additives and foreign matter are attached to spandex waste; after crushing, spandex waste ultra-short fibers are separated from additives and foreign matter. Auxiliaries and foreign matter are smaller than ultra-short fibers in volume and weight, so the ultra-short fibers can be further purified through a negative pressure filter, and of course, the two can also be separated by other means. For example, when crushing, additives and foreign matter float, and the two can be separated by controlling the wind speed and setting a fil...
Embodiment 2
[0043] A method for dry-spinning spandex waste silk to efficiently regenerate spandex yarn, comprising the following steps:
[0044] Step 1), aging the spandex waste silk, in N 2 Heated to 70°C in an atmosphere of air and maintained for 17 hours, and the humidity was controlled at 35%.
[0045] Step 2) At about 0°C, the spandex waste is crushed into ultra-short spandex waste with a fiber length of ≤30mm.
[0046] Step 3), drying the ultra-short spandex waste silk fibers, and controlling moisture, so that the moisture content of the ultra-short spandex waste silk fibers is 1.0%.
[0047] Step 4), add DMAC and spandex waste ultra-short fibers into the reactor, and react at 100°C for 10 hours to obtain a spinning stock solution with stable characteristics; the mass ratio of DMAC and spandex waste ultra-short fibers is 1:1 .
[0048] Step 5) After filtering, defoaming, aging, spinning, twisting, oiling and winding, the finished spandex yarn is obtained.
[0049] The rest are the...
Embodiment 3
[0051] A method for dry-spinning spandex waste silk to efficiently regenerate spandex yarn, comprising the following steps:
[0052] Step 1), aging the spandex waste silk, spraying the aqueous solution of end-blocking polyether modified polysiloxane with a mass fraction of 1% and spraying it on the spandex waste silk, in N 2 Heated to 110°C in an atmosphere of air and maintained for 12 hours, and the humidity was controlled at 10%. The end-blocking polyether-modified polysiloxane accounts for 2% of the mass of spandex waste silk.
[0053] Under the action of aging, the end-capped polyether-modified polysiloxane adsorbed on the surface of spandex waste and gradually diffused into the interior of spandex waste. The capped polyether-modified polysiloxane on the surface of spandex waste silk is used to absorb oil and remove it in the crushing stage. The end-blocking polyether modified polysiloxane inside the spandex waste participates in changing the properties of the spandex fi...
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