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Characterization of poly(L-lactic acid) fibers produced by melt spinning

机译:熔融纺丝生产的聚(L-乳酸)纤维的表征

摘要

Biodegradable poly(L-lactic acid) (PLLA) fibers were processed by a two-step melt-spinning method (melt extrusion and hot draw) from PLLA with three different viscosity-average molecular weights (494,600, 304,700, and 262,800). Before spinning, the polymer flakes were first milled into powders and dried under vacuum. Viscosity-average molecular weight of PLLA following the fabrication process was monitored. Tensile properties of as-spun and hot-drawn fibers were investigated. Morphology of the PLLA fibers was viewed under a scanning electron microscope. Crystallinity of these fibers was assessed by thermogram analysis of differential scanning calorimetry. Results showed that the extent of decrease in the viscosity-average molecular weight of PLLA dropped sharply by 13.1-19.5% during pulverization and by 39.0-69.0% during melt-extrusion. The hot-draw process in this study had a little effect on the viscosity-average molecular weight of PLLA. Smoother fibers could be obtained for the die temperature at least 230°C for raw materials with higher crystallinity (more than 75%) and at least 220°C for raw materials with lower crystallinity (about 60%). The as-spun fibers showed crystallinity of 16.5-22.8% and the value increased to 50.3-63.7% after hot draw. Tensile moduli of the as-spun fibers were in the range of 1.2-2.4 GPa, which were raised to 3.6-5.4 GPa after hot draw. The final PLLA fibers with 110-160 μm diameters showed tensile strengths of 300-600 MPa.
机译:采用两步熔融纺丝法(熔体挤出和热拉伸),从PLLA中以三种不同的粘均分子量(494,600、304,700和262,800)对可生物降解的聚(L-乳酸)(PLLA)纤维进行处理。在纺丝之前,首先将聚合物薄片研磨成粉末,然后在真空下干燥。监测制造过程后PLLA的粘均分子量。研究了初纺和热拉伸纤维的拉伸性能。在扫描电子显微镜下观察PLLA纤维的形态。这些纤维的结晶度通过差示扫描量热法的热分析图评估。结果表明,PLLA的粘均分子量的降低程度在粉碎过程中急剧下降了13.1-19.5%,在熔融挤出过程中急剧下降了39.0-69.0%。本研究中的热拉伸工艺对PLLA的粘均分子量影响很小。对于具有较高结晶度(大于75%)的原料,对于模具温度至少为230°C,对于具有较低结晶度(约60%)的原料,至少为220°C,可以获得较光滑的纤维。初纺纤维显示出16.5-22.8%的结晶度,热拉伸后该值增加到50.3-63.7%。初纺纤维的拉伸模量在1.2-2.4GPa的范围内,在热拉伸后提高到3.6-5.4GPa。最终具有110-160μm直径的PLLA纤维显示出300-600 MPa的拉伸强度。

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