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Optimization Fabrication of Plasma Treated Nano-Titanium Dioxide Particles/PP/PLA Composites Filaments Using Melt Spinning

机译:熔融纺丝等离子处理纳米二氧化钛颗粒/ PP / PLA复合材料丝的优化制备

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摘要

The Melt spinning technique of Nano-titanium dioxide particles/PP/PLA composites filaments fabricated by plasma treated Nano-titanium dioxide particles studied in the present investigation. The experimental results showed that the physical and mechanical properties of Nano-titanium dioxide particles /PP/PLA composites filaments depended on the following factors of the percentage of Nano-titanium dioxide particles, the percentage of maleic anhydride (MAH), plasma treatment parameters: flow rate of helium gas, output power, sample treatment or stationary time and flow rate of oxygen gas. Among it the flow rate of oxygen gas had the significant influence on the filament properties of tensile modulus, the yield strength and the melting temperature. Stepwise multiple regressions orthogonal design method of system optimization used to determine the percent of contribution of each factor. It found that the three indicators were different by these analyses. The experimental results indicated that the optimized conditions by stepwise multiple regressions were better than that by traditional analysis.
机译:在本研究中研究了通过等离子体处理的纳米二氧化钛颗粒制造的纳米二氧化钛颗粒/ PP / PLA复合长丝的熔体纺丝技术。实验结果表明,纳米二氧化钛颗粒/ PP / PLA复合长丝的物理力学性能取决于以下因素:纳米二氧化钛颗粒的百分比,马来酸酐的百分比,等离子体处理参数:氦气流量,输出功率,样品处理或固定时间和氧气流量。其中氧气的流量对拉伸模量,屈服强度和熔融温度的长丝性能有显着影响。系统优化的逐步多元回归正交设计方法用于确定每个因素的贡献百分比。通过这些分析发现,这三个指标是不同的。实验结果表明,逐步多元回归的优化条件优于传统分析。

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