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Thermal and mechanical analysis of injection moulded poly(lactic acid) filled with poly(ethylene glycol) and talc

机译:填充有聚乙二醇和滑石粉的注塑聚乳酸的热力学分析

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摘要

In our research, the effect of talc particle size was analysed on the thermal and mechanical properties of renewable resource based, biodegradable polymer Poly(Lactic Acid) (PLA). Various talc particles with an average particle size of 24 μm, 1.9 μm, and 0.7 μm were blend mixed with PLA in 10 and 20 mass% containing no or an additional 10 mass% of Poly(Ethylene Glycol) (PEG) to increase molecular chain mobility. It was demonstrated that with decreasing talc particle size, its nucleation ability increased as well as all of the investigated mechanical properties of the compounds, however, in case of compounds containing PEG, this tendency was the opposite according to Charpy impact strength results. The talc with the best nucleating ability was selected and a full factorial design of experiment was made to optimise the talc and PEG content and to investigate their cross-effect in the 1-3-5-10-15 mass% additive content range. Finally, the effect of mould temperature and cooling time was analysed on the crystallinity and heat deflection temperature of the final injection moulded parts.
机译:在我们的研究中,分析了滑石粒径对可再生资源基可生物降解聚合物聚乳酸(PLA)的热和机械性能的影响。将各种平均粒径分别为24μm,1.9μm和0.7μm的滑石粉与PLA混合,以10和20质量%的比例混合,不包含或另外包含10质量%的聚乙二醇(PEG)以增加分子链流动性。已经证明,随着滑石粒度的减小,其成核能力以及所研究化合物的所有机械性能均得到提高,但是,在含有PEG的化合物的情况下,根据夏比冲击强度结果,这种趋势是相反的。选择具有最佳成核能力的滑石,并进行全因子设计的实验,以优化滑石和PEG的含量并研究其在1-3-5-10-15质量%添加剂含量范围内的交叉效应。最后,分析了模具温度和冷却时间对最终注塑件结晶度和热变形温度的影响。

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