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THE SEMICRYSTALLINE MORPHOLOGY OF POLYAMIDE 66 FORMING AT DIFFERENT SUPERCOOLING OF THE MELT

机译:聚酰胺66在熔体不同过冷中形成聚酰胺66的半结晶形态

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Fast scanning chip calorimetry (FSC) was used to prepare isothermally crystallized samples of polyamide 66 (PA 66) in a wide range of temperatures between 70 and 230 °C for subsequent analysis of the semicrystalline morphology by X-ray diffraction, polarized-light optical microscopy and atomic force microscopy. At high crystallization temperatures stable triclinic α-crystals of lamellar shape, organized within a spherulitic superstructure are forming. At low crystallization temperatures, in contrast, the less stable pseudohexagonal γ- crystal structure/mesophase develops. The mesophase of PA 66, which forms at temperatures close to the glass transition, is of grainy, non-lamellar habit, and not organized within spherulites. The formation of such qualitatively different semicrystalline morphologies of PA 66 is suggested being caused by different densities of crystal nucleation, supported by observation of a bimodal temperature-dependence of the crystallization rate. The experimental findings reported in this work are important to allow tailoring of the microstructure of PA 66 by variation of the conditions of processing as well as contribute to the ongoing research about crystal nucleation in polymers.
机译:快速扫描芯片量热法(FSC)用于在70至230℃的宽范围温度范围内制备聚酰胺66(PA 66)的等温结晶样品,以便通过X射线衍射进行半结晶形态,偏振光光学分析半结晶形态显微镜和原子力显微镜。在高结晶温度下,在球晶上层建筑内部的层状稳定的层状α晶体形成。相反,在低结晶温度下,稳定稳定的伪胶质γ晶体结构/中间相发育。 PA 66的中间相,在靠近玻璃化转变的温度下形成,具有粒状,非层状习惯,而不是在球晶中组织。 PA 66的这样的性质不同的半结晶形态的形成建议由晶体成核的密度不同,通过结晶化速度的双峰温度依赖性的观察结果的支持而引起的。在这项工作中报告的实验结果非常重要,可以通过改变加工条件的变化来衡量PA 66的微观结构,以及有助于对聚合物中晶体成核的持续研究。

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