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Process optimization of functionalized MWCNT/polyetherimide nanocomposites for aerospace application

机译:航空航天应用功能化MWCNT /聚醚酰亚胺纳米复合材料的工艺优化

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摘要

Polyetherimide (PEI) is a high performance thermoplastic polymer that retains its properties at elevated and cryogenic temperatures. Nanofiller reinforced PEI used in aerospace structures will substantially reduce the payload. This study attempts to optimize nanofiller content and process parameter for melt compounding of PEI/acid (COOH) functionalized MWCNTs (Multi-walled Carbon Nanotube) nanocomposite using Response surface methodology (RSM). Face Centered Central Composite Design (FCCD) with two factors viz. MWCNT content and extrusion screw speed at three levels each is used to model and optimize nanocomposite properties relevant to aerospace applications. FTIR. spectrum confirmed the functionalization of MWCNTs while morphological analysis confirmed the dispersion of MWCNTs. COOH-MWCNTs reinforced composite showed enhanced thermal and mechanical properties along with better retention of properties upon exposure to gamma irradiation and atomic oxygen. These properties were modeled with non-linear quadratic equations using regression analysis and verified by validation experiments. Optimization for performance of nanocomposites for aerospace application has been revealed by overlapping the contour plots within the practical constraints to recognize the combination of factor ranges.
机译:聚醚酰亚胺(PEI)是一种高性能的热塑性聚合物,可在高温和低温下保持其特性。用于航空航天结构的纳米填料增强型PEI将大大减少有效载荷。这项研究尝试使用响应表面方法(RSM)优化纳米填料的含量和工艺参数,以实现PEI /酸(COOH)功能化的MWCNTs(多壁碳纳米管)纳米复合材料的熔融复合。具有两个因素的面部中心中央复合设计(FCCD),即。 MWCNT含量和挤出螺杆速度分别在三个级别上用于建模和优化与航空航天应用相关的纳米复合材料的性能。 FTIR。光谱证实了MWCNT的功能化,而形态分析证实了MWCNT的分散。 COOH-MWCNTs增强复合材料在暴露于伽玛射线和原子氧的情况下表现出增强的热性能和机械性能,以及更好的性能保留。使用回归分析,使用非线性二次方程对这些属性进行建模,并通过验证实验进行验证。通过在实际约束条件下重叠等高线图以识别因子范围的组合,揭示了用于航空航天应用的纳米复合材料性能的优化。

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