首页> 外文期刊>Journal of Polymer Research >Effect of nano-montmorillonite as cell opener on cell morphology and resilient performance of slow-resilience flexible polyurethane foams
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Effect of nano-montmorillonite as cell opener on cell morphology and resilient performance of slow-resilience flexible polyurethane foams

机译:纳米蒙脱石作为开孔剂对慢回弹性软质聚氨酯泡沫的泡孔形态和回弹性能的影响

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In this paper, polypropylene glycol Y-1900, unmodified nano-montmorillonite (MMT) and organically modified nano-montmorillonite (OMMT) serving as cell openers are introduced into slow-resilience flexible polyurethane foams (FPUFs), aiming at investigating the effects of them on cell morphology and the relationships between cell structure, nano-montmorillonite types and resilient performance of slow-resilience FPUFs. Experimental results indicate that OMMT can sever as an excellent alternative for conventional cell openers. The ability of nano-montmorillonite to open cells mainly depends on their surface property. Both MMT and OMMT are exfoliated in foaming process and play a significant role in cell diameter for nucleating function. The resilient performance of foams is closely related to open cell content and polyurethane matrix nature, due to that the friction effect of nano-montmorillonite and the deformation of open cells will lead to large energy dissipation. The mechanical properties (tensile strength, elongation at break and compression set) are related to cell structure and nano-montmorillonite. The addition of nano-montmorillonite especially organically modified nano-montmorillonite is an effective method to improve resilient performance and mechanical strength. However, this improvement is at the expense of impairing toughness of foams.
机译:本文将用作开孔剂的聚丙二醇Y-1900,未改性的纳米蒙脱土(MMT)和有机改性的纳米蒙脱土(OMMT)引入慢回弹性柔性聚氨酯泡沫(FPUF)中,以研究它们的作用。形态,慢回弹FPUF的细胞结构,纳米蒙脱石类型与回弹性能之间的关系实验结果表明,OMMT可作为传统开孔器的绝佳替代品。纳米蒙脱石打开细胞的能力主要取决于其表面性质。 MMT和OMMT在发泡过程中均会脱落,并在泡孔直径中发挥重要作用。泡沫的回弹性能与开孔含量和聚氨酯基体性质密切相关,这是因为纳米蒙脱石的摩擦作用和开孔变形会导致大量的能量耗散。机械性能(拉伸强度,断裂伸长率和压缩永久变形)与孔结构和纳米蒙脱石有关。纳米蒙脱土特别是有机改性的纳米蒙脱土的添加是提高回弹性和机械强度的有效方法。但是,这种改进是以损害泡沫的韧性为代价的。

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