Preparation method for spontaneously-heating elastic nanofiber
A nanofiber, elastic fiber technology, applied in fiber processing, fiber chemical characteristics, stretch spinning, etc., can solve the problems of poor heating performance of nanofibers, low bonding force between heating substances and matrix fibers, etc., and achieve good flexibility. , Excellent heating performance and elastic performance, the effect of good heating performance
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Embodiment 1
[0028] The preparation method of self-heating elastic nanofiber specifically comprises the following steps:
[0029] 1) Preparation of elastomeric nanofibers
[0030] 20g of polyolefin thermoplastic elastomer (POE) and 180g of cellulose acetate butyrate (CAB) were blended, extruded and drawn into fibers to obtain elastic fibers. CAB in the fiber, resulting in elastic nanofibers; the diameter of the obtained elastomeric nanofibers is 500 nm.
[0031] Table 1 The temperature of each section of the twin-screw extruder
[0032]
[0033] 2) Preparation of self-heating elastic nanofibers:
[0034] In terms of mass percentage, take 23.75g of elastic nanofibers and 0.5g of zirconium carbide powder, first dissolve the elastic nanofibers with 500ml of cyclohexane, then add the inorganic heating powder, and use an emulsifier to mix the elastic nanofibers with the inorganic heating powder Obtain the blend evenly, add acetone to the blend to precipitate the polymer, dry the polymer a...
Embodiment 2
[0037] The preparation method of self-heating elastic nanofiber specifically comprises the following steps:
[0038] 1) Preparation of elastomeric nanofibers
[0039] 40g of styrene-based thermoplastic elastomer (SBS) and 160g of cellulose acetate butyrate (CAB) were blended, extruded and stretched into fibers to obtain elastic fibers. CAB in the fiber, resulting in elastic nanofibers; the diameter of the obtained elastomeric nanofibers is 520 nm.
[0040] Table 2 The temperature of each section of the twin-screw extruder
[0041]
[0042] 2) Preparation of self-heating elastic nanofibers:
[0043] In terms of mass percentage, take 24.5g of elastic nanofibers, 1.25g of cobalt carbide powder and tantalum carbide powder mixture, first dissolve the elastic nanofibers with 1L cyclohexane and then add inorganic heating powder, and use an emulsifier to dissolve the elastic nanofibers Mix evenly with inorganic heat-generating powder to obtain a blend liquid, and finally add ace...
Embodiment 3
[0045] The preparation method of self-heating elastic nanofiber specifically comprises the following steps:
[0046] 1) Preparation of elastomeric nanofibers
[0047] 40g polyurethane thermoplastic elastomer (TPU) and 180g cellulose acetate butyrate (CAB) were blended, extruded and drawn into fibers to obtain elastic fibers. The temperature of each section of the extruder was shown in Table 3, and the elastic fibers were extracted with acetone The CAB in the obtained elastic nanofibers; the diameter of the obtained elastic nanofibers is 630nm.
[0048] Table 3 The temperature of each section of the twin-screw extruder
[0049]
[0050] 2) Preparation of self-heating elastic nanofibers:
[0051] In terms of mass percentage, take 24.5g of elastic nanofibers and 0.5g of magnesium carbide powder, first dissolve the elastic nanofibers with 500ml of petroleum ether, then add the inorganic heating powder, and use an emulsifier to mix the elastic nanofibers and inorganic heating po...
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