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首页> 外文期刊>Scientific reports. >Shear-induced enhancements of crystallization kinetics and morphological transformation for long chain branched polylactides with different branching degrees
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Shear-induced enhancements of crystallization kinetics and morphological transformation for long chain branched polylactides with different branching degrees

机译:剪切诱导不同支化度的长链支化聚丙交酯的结晶动力学和形态转化的增强

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The effects of long chain branching (LCB) degree on the shear-induced isothermal crystallization kinetics of a series of LCB polylactides (LCB PLAs) have been investigated by using rotational rheometer, polarized optical microscopy (POM) and scanning electron microscopy (SEM). Dynamic viscoelastic properties obtained by small-amplitude oscillatory shear (SAOS) tests indicate that LCB PLAs show more broadened relaxation time spectra with increasing LCB degree. Upon a pre-shear at the shear rate of 1?s(-1) LCB PLAs show much faster crystallization kinetics than linear PLA and the crystallization kinetics is enhanced with increasing LCB degree. By modeling the system as a suspension the quantitative evaluation of nucleation density can be derived from rheological experiments. The nucleation density is greatly enhanced with increasing LCB degree and a saturation in shear time is observed. Crystalline morphologies for LCB PLAs observed by POM and SEM demonstrate the enhancement of nucleation density with increasing LCB degree and a transformation from spherulitic to orientated crystalline morphologies. The observation can be ascribed to longer relaxation time of the longest macromolecular chains and broadened, complex relaxation behaviors due to the introduction of LCB into PLA, which is essential in stabilizing the orientated crystal nuclei after pre-shear.
机译:通过使用旋转流变仪,偏振光学显微镜(POM)和扫描电子显微镜(SEM)研究了长链支化(LCB)程度对一系列LCB聚丙交酯(LCB PLAs)的剪切诱导等温结晶动力学的影响。通过小振幅振荡剪切(SAOS)测试获得的动态粘弹性能表明,随着LCB程度的增加,LCB PLAs表现出更宽的弛豫时间谱。在剪切速率为1?s(-1)的情况下进行预剪切时,LCB PLAs的结晶动力学要比线性PLA快得多,并且结晶动力学随LCB程度的增加而增强。通过将系统建模为悬浮液,可以从流变实验中得出对成核密度的定量评估。随着LCB度的增加,成核密度大大提高,并且观察到剪切时间达到饱和。通过POM和SEM观察到的LCB PLA的结晶形态表明,成核密度随LCB程度的增加以及从球晶向取向结晶形态的转变而增强。该观察结果可归因于最长的高分子链的更长的弛豫时间,以及由于将LCB引入PLA而导致的宽阔,复杂的弛豫行为,这对于稳定预剪切后的定向晶核至关重要。

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