首页> 外文期刊>International Journal of Biological Macromolecules: Structure, Function and Interactions >Wet spinning of Bombyx mori silk fibroin dissolved in N-methyl morpholine N-oxide and properties of regenerated fibres
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Wet spinning of Bombyx mori silk fibroin dissolved in N-methyl morpholine N-oxide and properties of regenerated fibres

机译:溶解在N-甲基吗啉N-氧化物中的家蚕丝素蛋白的湿纺及再生纤维的性能

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Silk fibroin (SF) was dissolved in N-methyl morpholine N-oxide (NMMO) at a polymer concentration of 13% (w/w); thermal and rheological solution properties were characterized. The melting/crystallization behaviour of NMMO was influenced by SF presence. Melting of NMMO hydrate decreased to 71 degrees C and a cold crystallization peak appeared at 35 degrees C on heating. None crystallization occurred on cooling. Quenching at a temperature of 50 degrees C or higher did not induce any crystallization on heating. Viscosity of SF-NMMO solutions decreased as a function of temperature. At 75 degrees C, viscosity remained constant for 360 min. SF-NMMO dope was spun by using a lab-scale wet spinning line. The extruded filament was coagulated in an ethanol bath. Regenerated SF fibres were collected at different draw ratios and their morphological, physical, and mechanical properties were characterized. Fibre diameters ranged from 133 to 19 mu m, cross-section was regularly circular, and surface was generally smooth. with a very fine granular aspect. Birefringence increased with increasing the draw ratio, especially when take up and post-spinning draw were coupled. FT-IR spectra and DSC thermograins confirmed that SF fibres crystallized into Silk II structure. The IR crystallinity index did not chance as a function of drawing. Regenerated SF fibres undrawn or drawn only during the coagulation step showed the mechanical behaviour typical of a brittle material. However, when both take up and post-spinning draw were applied, fibres displayed a ductile-stable behaviour. Typical values of the mechanical parameters of regenerated SF fibres were: E = 8.7 GPa, sigma(b) = 120 MPa and epsilon(b) = 35%. (c) 2005 Elsevier B.V. All rights reserved.
机译:将丝素蛋白(SF)溶解在N-甲基吗啉N-氧化物(NMMO)中,聚合物浓度为13%(w / w);表征了热和流变溶液性质。 SF的存在会影响NMMO的熔融/结晶行为。 NMMO水合物的熔融降低至71℃,并且在加热时在35℃出现冷结晶峰。冷却时没有结晶发生。在50℃或更高的温度下淬火在加热时不会引起任何结晶。 SF-NMMO溶液的粘度随温度降低。在75℃下,粘度保持恒定360分钟。通过使用实验室规模的湿纺生产线纺出SF-NMMO涂料。挤出的长丝在乙醇浴中凝结。以不同的拉伸比收集再生的SF纤维,并对其形态,物理和机械性能进行了表征。纤维直径为133至19微米,横截面规则为圆形,表面通常光滑。具有非常精细的颗粒度。双折射随着拉伸比的增加而增加,特别是在卷取和纺丝后拉伸结合时。 FT-IR光谱和DSC热晶粒证实SF纤维结晶为Silk II结构。 IR结晶度指数没有机会作为拉伸的函数。仅在凝结步骤期间未拉伸或拉伸的再生SF纤维显示出脆性材料的典型机械性能。然而,当同时进行卷取和纺丝后拉伸时,纤维表现出韧性稳定的行为。再生SF纤维的机械参数的典型值为:E = 8.7 GPa,sigma(b)= 120 MPa,ε(b)= 35%。 (c)2005 Elsevier B.V.保留所有权利。

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