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首页> 外文期刊>Polymer Degradation and Stability >The effects of reprocessing cycles on the structure and properties of polystyrene/Cloisite15A nanocomposites
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The effects of reprocessing cycles on the structure and properties of polystyrene/Cloisite15A nanocomposites

机译:后处理循环对聚苯乙烯/氯钺15A纳米复合材料结构性能的影响

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This work focuses on the effect of repeated processing cycles on the structure and properties of PS/Cloisite 15A (5 w/w) nanocomposite through a series of eight extrusion cycles using a co-rotating intermeshing twin screw extruder. For comparison, neat PS was also reprocessed as a reference material. Changes in the nanostructure were studied by wide angle X-ray scattering (WAXS) and rheological measurements. Molecular weight change was determined by size exclusion chromatography (SEC). Chemical changes were studied by Fourier transform infrared spectroscopy (FT-IR). Furthermore, the mechanical properties were investigated by a nanoindentation test method, whereas colorimeter techniques were used to analyze yellowness during reprocessing. The results of the WAXS analysis show that the d_(001) peak of the PS nanocomposite shifts to lower angles with increasing the number of reprocessing cycles indicating intercalated-delaminated structure. The rheological data reveal an enhancement of G′ in the melted state with reduction of the terminal slope of the nanocomposite samples over the PS matrix, thus confirming the occurrence of strong interaction between the silicate sheets and the polymer and their tendency to form a three dimensional superstructure. Further, in contrast to neat PS which undergoes a large reduction of molecular weight with increasing the number of cycles due to chain scission; in PS nanocomposites, the SEC data shows however that the degradation involves two mechanisms: chain scission as the most prevalent one, with the probability of occurrence of some crosslinking after 8 reprocessing cycles as demonstrated by the increase in both M _w and M_n. Repeated reprocessing globally yield colour changes in both the neat PS and PS nanocomposites whereas, the chemical structure and nanomechanical properties remain stable during reprocessing for PS nanocomposite.
机译:本研究的重点是使用同向旋转的啮合双螺杆挤出机,通过一系列的八个挤出循环,重复加工循环对PS/Cloisite 15A (5% w/w) 纳米复合材料的结构和性能的影响。为了进行比较,纯PS也被重新处理为参考材料。通过广角X射线散射(WAXS)和流变学测量研究了纳米结构的变化。分子量变化通过尺寸排阻色谱(SEC)测定。采用傅里叶变换红外光谱(FT-IR)研究了化学变化。此外,通过纳米压痕测试方法研究了机械性能,而色度计技术则用于分析再加工过程中的黄度。WAXS分析结果表明,随着再加工循环次数的增加,PS纳米复合材料的d_(001)峰向低角度移动,表明了插层-分层结构。流变学数据表明,随着纳米复合材料样品在PS基体上的末端斜率减小,G′在熔融状态下增强,从而证实了硅酸盐片与聚合物之间发生强相互作用及其形成三维超结构的趋势。此外,与纯 PS 相反,由于链断,随着循环次数的增加,分子量大幅降低;然而,在PS纳米复合材料中,SEC数据显示降解涉及两种机制:链式断裂是最普遍的一种,在8个后处理循环后发生一些交联的可能性,如M_w和M_n的增加所证明的那样。在全球范围内反复再加工会产生纯 PS 和 PS 纳米复合材料的颜色变化,而 PS 纳米复合材料的化学结构和纳米力学性能在再加工过程中保持稳定。

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