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Cleaner and Scalable Processing of Cellulose Nanocrystal Reinforced Thermoplastic Polyurethane Nanocomposites

机译:纤维素纳米晶体增强热塑性聚氨酯纳米复合材料的清洁和可扩展处理

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1. Thermally stable CNCs (suitable for common thermoplastics) were isolated 2. A cleaner and scalable method for producing thermally stable CNCs is demonstrated via a bead-milting under wet conditions 3. CNCs from mild acid hydrolysis and milling methods could be melt-compounded using classical extruders, enhance the tensile properties without discoloration 4. A cleaner method for incorporating CNCs in to polyurethane precursor as 'drop-in solution' for supply chain is demonstrated and TPU/CNCs nanocomposites were successfully processed via reactive extrusion (REX) 5. At low volume fractions of CNC (0.5 and 0.8 wt.%), an excellent improvement in mechanical properties is demonstrated, without compromising the essential rubbery properties 6. Spinifex nanocellulose was superior at reinforcement + resilience retention.
机译:1.分离出热稳定的CNCs(适用于普通热塑性塑料)2.通过在湿润条件下进行珠粒研磨,展示了一种更清洁,可扩展的生产热稳定的CNCs的方法。3.轻度酸水解和研磨方法制成的CNCs可以熔融复合使用经典的挤出机,可增强拉伸性能而不会变色4.展示了一种更清洁的方法,将CNC数控系统作为聚氨酯的前体溶液加入到供应链中,并通过反应挤出(REX)成功加工了TPU / CNC纳米复合材料5。在少量的CNC体积分数(0.5和0.8 wt。%)下,在不损害基本橡胶性能的情况下,机械性能得到了极大的改善。6. Spinifex纳米纤维素在增强+保持弹性方面表现优异。

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