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Preparation of polypropylene/Mg–Al layered double hydroxides nanocomposites through wet pan-milling: non-isothermal crystallization behaviour

机译:通过湿锅磨制备聚丙烯/镁铝层状双氢氧化物纳米复合材料:非等温结晶行为

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Differential scanning calorimeter was used to extensively investigate the non-isothermal crystallization of polypropylene (PP)/layered double hydroxides (LDHs) nanocomposites prepared through wet solid-state shear milling. The corresponding crystallization kinetics was further investigated by using Ozawa, modified Avrami and combined Avrami–Ozawa method, respectively. The results showed that the Ozawa method could not well describe the crystallization kinetics of pure PP and its nanocomposites. Comparatively, the modified Avrami method as well as the combined Avrami–Ozawa method gives the satisfactory results. Under the effect of pan-milling, the produced LDH nano intercalated/exfoliated particles exhibit the inhibitive effect on the PP nucleation but more remarkable promotion effect on the spherulite growth, leading to enhancement in the overall crystallization rate. This is reflected in increase of the calculated fold surface free energy σ e and also the supercooling degree Δ T required for crystallization nucleation. In addition, the polarized optical microscopy observation also verifies the higher spherulite growth rate of PP/LDHs nanocomposites than that of pure PP.
机译:差示扫描量热仪用于广泛研究通过湿法固态剪切研磨制备的聚丙烯(PP)/层状双氢氧化物(LDHs)纳米复合材料的非等温结晶。分别使用Ozawa,改进的Avrami和组合的Avrami–Ozawa方法进一步研究了相应的结晶动力学。结果表明,小泽法不能很好地描述纯聚丙烯及其纳米复合材料的结晶动力学。相比之下,改进的Avrami方法以及组合的Avrami-Ozawa方法给出了令人满意的结果。在平磨的作用下,产生的LDH纳米级插层/脱落颗粒对PP成核具有抑制作用,但对球晶的生长具有更显着的促进作用,导致整体结晶速率提高。这反映在计算出的折叠表面自由能σ e 的增加以及结晶成核所需的过冷度ΔT上。此外,偏振光学显微镜观察还证实了PP / LDHs纳米复合材料的球晶生长速率高于纯PP。

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