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首页> 外文期刊>Journal of Applied Polymer Science >Preparation of PTT/clay nanocomposites with solid-state polymerized polytrimethylene terephthalate
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Preparation of PTT/clay nanocomposites with solid-state polymerized polytrimethylene terephthalate

机译:固态聚合聚对苯二甲酸丙二醇酯制备PTT /粘土纳米复合材料

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摘要

To enhance the effectiveness of polytrimethylene terephthalate (PTT) for the preparation of clay-based nanocomposites by melt intercalation and to upgrade the mechanical performance of these materials, solid-state- polymerization (SSP) experiments with neat PTT were carried out at 190, 200, and 210°C prior compounding to increase the average molecular weight and, based on this, the melt viscosity of this polymer. The progress of SSP was registered by time dependent sampling of intrinsic viscosity data. From this, activation energy of 180.6 kJ mol ~(-1) was calculated. A characteristic sublimate formed during these SSP-reactions was identified by mass-spectroscopy to be a mixture of cyclic oligomers containing 2, 3, 4, and 5 monomeric units. The melt viscosity of neat PTT(SSP) could be increased from ~ 460 to 15,000 Pa s ~(-1). Therefore, tensile strength and Young's modulus were improved by 3.5 and 9%, respectively. Manufacturing of PTT(SSP) and the modified nanoclay was carried out with a corotating twin-screw-extruder at 230°C. A concentration of 3% of the inorganic filler component in the composites was aimed at. Compared with the data of virgin PTT, tensile strength, and modulus of the PTT(SSP)-based nanocomposites could be enhanced by ~ 9 and 40%, respectively. Additionally, a SSP-reaction of the nanocomposite prepared with non-pretreated PTT and nanoclay was performed at 210°C to test the robustness of the matrix polymer PTT against the influences of the nanofiller.
机译:为了增强聚对苯二甲酸丙二醇酯(PTT)通过熔融插层制备粘土基纳米复合材料的效率并提高这些材料的机械性能,在190、200进行了纯净PTT的固态聚合(SSP)实验,然后在210°C下混合,以提高平均分子量,并以此为基础增加该聚合物的熔融粘度。通过特性粘度数据的时间依赖性采样来记录SSP的进度。由此计算出的活化能为180.6 kJ mol〜(-1)。在这些SSP反应过程中形成的特征升华物通过质谱鉴定为包含2、3、4和5个单体单元的环状低聚物的混合物。纯PTT(SSP)的熔体粘度可以从〜460增加到15,000 Pa s〜(-1)。因此,抗张强度和杨氏模量分别提高了3.5%和9%。用同向双螺杆挤出机在230°C下进行PTT(SSP)和改性纳米粘土的制造。目标是复合物中无机填料成分的浓度为3%。与原始PTT数据相比,PTT(SSP)基纳米复合材料的拉伸强度和模量分别提高了约9%和40%。此外,在210°C下对未经预处理的PTT和纳米粘土制备的纳米复合材料进行SSP反应,以测试基质聚合物PTT抵抗纳米填料影响的坚固性。

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