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Crystallization and phase transformation kinetics of poly(1-butene)/MWCNT nanocomposites

机译:聚(1-丁烯)/ MWCNT纳米复合材料的结晶和相变动力学

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摘要

Poly(1-butene)/MWCNT nanocomposites were prepared by simple melt processing technique.Crystallization,crystal-to-crystal phase transformation and spherulitic morphology were studied using differential scanning calorimetry(DSC),wide angle X-ray diffraction(WAXD)and optical microscopy(OM).The non-isothermal crystallization exhibited higher values of Z_t derived from Avrami theory and lower values of F(T)obtained from Avrami-Ozawa analysis,while the isothermal crystallization revealed a significant increase in crystallization temperatures and lower crystallization half times compared to pristine PB.The observed changes in the crystallization kinetics were ascribed to the enhanced nucleation of PB in the presence of MWCNT.The nucleating activity calculated from the non-isothermal crystallization data revealed that the MWCNTs provide an active surface for the nucleation of PB.The optical micrographs exhibited significantly smaller crystallites with disordered morphology for the nanocomposites compared to the well defined spherulitic morphology for pristine PB.The rate of phase transformation from kinetically favored tetragonal to thermodynamically stable hexagonal form was noticeably enhanced as evidenced by the reduction in the half time for phase transformation from 58 h to 25 h for PB reinforced with 7% MWCNT.
机译:采用简单的熔融加工技术制备了聚(1-丁烯)/ MWCNT纳米复合材料。采用差示扫描量热法(DSC),广角X射线衍射(WAXD)和光学方法研究了晶体的结晶,晶相转变和球晶形态。非等温结晶显示较高的Z_t值(根据Avrami理论得出)和较低的F(T)值(根据Avrami-Ozawa分析获得),而等温结晶显示出结晶温度显着升高,结晶时间降低了一半与原始PB相比,观察到的结晶动力学变化归因于MWCNT存在下PB的成核增强。根据非等温结晶数据计算的成核活性表明MWCNT为PB的成核提供了活性表面光学显微照片显示纳米复合材料的微晶明显变小,并且具有无序的形态与原始PB的定义明确的球状形态相比,从动力学优先的四方形到热力学稳定的六边形形式的相变速率显着提高,这可以通过PB增强的相变半衰期从58 h减少到25 h来证明含7%的MWCNT。

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