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Tensile Behavior and Structural Evolution of Poly(lactic acid) Monofilaments in Glass Transition Region

机译:玻璃化转变区聚乳酸单丝的拉伸行为和结构演变

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摘要

A series of amorphous poly(lactic acid) (PLA) monofilaments with various D-isomer contents of 1-9 mol% have been prepared and then elongated uniaxially at 25-65 °C in the glass transition region. Both initial modulus and maximum strength of PLA monofilaments are appreciably decreased with increasing the temperature, especially at -50 °C, and they were somewhat lower for the monofilament with higher D-isomer content. Structural evolution, chain orientation, and thermal properties of PLA monofilaments drawn uniaxially with various draw ratios at 65 °C were then investigated by using wide-angle X-ray diffraction, polarized Raman spectroscopy, and differential scanning calorimetry, respectively. X-ray diffraction patterns clearly exhibited the development of chain orientation and stain-induced crystallization of the monofilaments as a function of draw ratio (DR). The dichroic ratio, a measure of the chain orientation, was quantitatively evaluated from the polarized Raman spectra. It was revealed that the dichroic ratios increased up to DR=4 and decreased slightly at DR>4 owing to the strain-induced crystallization for PLA monofilaments with D-isomer contents of 1 and 4 mol%. The glass transition and cold-crystallization temperatures of PLA monofilaments increased and decreased, respectively, with the increment of DR. The strain-induced enthalpy relaxation endothermic peak appearing in glass transition region became intense with increasing the DR.
机译:制备了一系列具有各种D-异构体含量为1-9 mol%的无定形聚乳酸(PLA)单丝,然后在玻璃化转变区域中于25-65°C单轴拉伸。 PLA单丝的初始模量和最大强度都随温度的升高而明显降低,尤其是在-50°C时,而对于D-异构体含量较高的单丝而言,它们的初始模量和最大强度都会降低。然后分别使用广角X射线衍射,偏振拉曼光谱和差示扫描量热法研究了在65°C下以不同拉伸比单轴拉伸的PLA单丝的结构演变,链取向和热性能。 X射线衍射图清楚地显示出单丝的链取向和污点诱导的结晶的发展,它是拉伸比(DR)的函数。从偏振拉曼光谱定量评估二向色比,作为链取向的量度。结果表明,由于D-异构体含量为1和4 mol%的PLA单丝的应变诱导结晶,二向色比在DR = 4时增加,在DR> 4时略有下降。随着DR的增加,PLA单丝的玻璃化转变温度和冷结晶温度分别升高和降低。随着DR的增加,出现在玻璃转变区的应变诱导的焓松弛吸热峰变得更强烈。

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