A spider silk-like polymer fiber based on silica porous microspheres and its preparation method
A technology of porous microspheres and silica, applied in the field of chemical bionics, can solve the problems of low cost, weak interaction between additives and fiber matrix, etc., and achieve the effects of low cost, weakened influence and good stability
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Embodiment 1
[0051] Disperse 7 grams of polyvinyl alcohol (PVA 1799, Aladdin, polymerization degree of 1700, alcoholysis degree of 99%), 1.05 grams of porous silica microspheres in 43 grams of 1,4-dioxane (DMSO) In the medium, heating and stirring at 80 degrees Celsius for 2 hours to obtain a uniform spinning dope. At room temperature, the above-mentioned spinning stock solution is extruded into methanol through a peristaltic pump for spinning: the actual extrusion rate is 0.02 ml per minute, the spinneret model is 25G (diameter is 260 microns), and the take-up rate is 0.1 meter per minute. Minutes, the fiber is in the coagulation bath for at least 5 minutes; after sufficient drying and collection, the nascent fiber is obtained; it is thermally stretched at 180 degrees Celsius to 8 times the original length to obtain the spider silk fiber, and the test is performed. figure 1 . The diameter of the main body of the obtained fiber is 27 microns, the radial height of the spindle nodes is 40-70...
Embodiment 2
[0061] 7 grams of polyvinyl alcohol (PVA 1799, Aladdin, degree of polymerization is 1700, degree of alcoholysis is 99%), 2.1 grams of porous silica microspheres (same as Example 1), dispersed in 43 grams of 1,4-bis In oxane (DMSO), heat and stir at 80 degrees Celsius for 2 hours to obtain a uniform spinning dope. At room temperature, the above-mentioned spinning stock solution is extruded into methanol through a peristaltic pump for spinning: the actual extrusion rate is 0.02 ml per minute, the spinneret model is 25G (diameter is 260 microns), and the take-up rate is 0.1 meter per minute. Minutes, the fiber stays in the coagulation bath for at least 5 minutes; after fully drying and collecting, the nascent fiber is obtained; and it is thermally stretched at 180 degrees Celsius to 8 times the original length to obtain the spider silk fiber. The main body diameter of the obtained fiber is 27 microns, the radial height of the spindle nodes is 40-75 microns, the axial length is 50-...
Embodiment 3
[0064] 6 grams of polyvinyl alcohol (PVA 2499, Aladdin, degree of polymerization is 2400, degree of alcoholysis is 99%), 0.9 grams of porous silica microspheres (same as Example 1), dispersed in 44 grams of 1,4-bis In oxyhexane (DMSO), heat and stir at 80 degrees Celsius for 3 hours to obtain a uniform spinning dope. At room temperature, the above-mentioned spinning stock solution is extruded into methanol through a peristaltic pump for spinning: the actual extrusion rate is 0.02 ml per minute, the spinneret model is 25G (diameter is 260 microns), and the take-up rate is 0.1 meter per minute. Minutes, the fiber is in the coagulation bath for at least 5 minutes; after fully drying and collecting, the nascent fiber is obtained; and it is thermally stretched at 180 degrees Celsius to 6 times the original length to obtain the spider silk fiber. The main body diameter of the obtained fiber is 25 microns, the radial height of the spindle nodes is 35-80 microns, the axial length is 50...
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