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Online ultrasonic film casting of LLDPE and LLDPE/clay nanocomposites

机译:LLDPE和LLDPE /粘土纳米复合材料的在线超声铸膜

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摘要

Transparent cast films of linear low density polyethylene (LLDPE) with nanoclay up to 10 wt % were prepared in one step process using an ultrasonically assisted compounding extruder operating at various ultrasonic amplitudes combined with film casting machine operating at various take up speeds. Thermal, rheological, morphological, and mechanical properties and gas permeability of these films were studied. Ultrasonic treatment introduced an increase in the complex viscosity and storage modulus and a reduction in the tangent loss of LLDPE/clay nanocomposite melts. Cast films prepared by ultrasonic treatment at an amplitude of 7.5 μm showed the highest mechanical properties in both the machine and transverse directions and the lowest oxygen permeability. X-ray diffraction patterns along with the SEM and TEM images revealed the presence of the exfoliated structure due to the ultrasonic treatment for cast films containing up to 7.5 wt % of clay loading. NMR studies of LLDPE cast films showed an increase of branching due to the ultrasound treatment.
机译:一步法制备的线性低密度聚乙烯(LLDPE)纳米粘土透明流延膜,是通过使用超声辅助复合挤出机(以各种超声振幅运行)和流延机(以不同的卷取速度运行)一步一步制备的。研究了这些薄膜的热,流变,形态,机械性能和透气性。超声处理导致了复数粘度和储能模量的增加,并且降低了LLDPE /粘土纳米复合材料熔体的切线损耗。通过超声处理以7.5μm的幅度制备的流延膜在纵向和横向上均表现出最高的机械性能,并且具有最低的透氧性。 X射线衍射图以及SEM和TEM图像揭示了剥离结构的存在,这是由于对包含不超过7.5 wt%粘土负载的流延膜进行了超声波处理。 LLDPE流延膜的NMR研究表明,由于超声处理,支化增加。

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