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Hydration-induced reinforcement of rigid polyurethane-cement foams: The effect of the co-continuous morphology on the thermal-oxidative stability

机译:水化诱导的硬质聚氨酯水泥泡沫增强:共连续形态对热氧化稳定性的影响

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摘要

The flame retardancy of a new composite polyurethane-cement foams based on the innovative concept of "Hydration-induced Reinforcement of Polyurethane Rigid Foams", HIRP-C, through the formation of an organic-inorganic co-continuous morphology have been investigated. The hybrid foams were prepared by allowing polyether polyol mixed with catalysts, surfactants and cement (up to final weight of 60 wt%) to react with Metylen-Diphenyl-Diisocyanate without flame retardant. The composite foams were then cured at 60℃ in water for 72 h in order to hydrate the anhydrous cement particles. The hydrated cement phases engender a co-continuous structure within the polyurethane matrix. For comparison both neat polyurethane foams and flame retardant filled foams were also prepared. The composite and the hybrid foams were characterized by X-ray diffraction, mechanical compressive testing and the scanning electron microscopy, while the thermal-oxidative properties were characterized by thermogravimetric analysis. Cone calorimeter analysis which allowed to determine the key properties of thermal degradation, namely the heat release rate, the smoke and CO production from foam combustion. The hybrid foams exhibit a significant improvement of mechanical properties due to the hydration of the cement particles as compared to the un-hydrated composite foam. The results of the thermal characterization showed that the presence of the amounts of inorganic cement particles, alongside with the formation of a co-continuous morphology, produces enhancements of fire behavior and improvements in the thermal-oxidative stability of polyurethane. The flame retardancy who essentially due to the physical action of the inorganic phase which constitutes a barrier at the surface and opposes to the diffusion of volatiles and oxygen.
机译:基于“水合诱导的聚氨酯硬质泡沫的增强” HIRP-C的创新概念,研究了一种新型复合聚氨酯水泥泡沫的阻燃性,它通过形成有机-无机共连续形态而形成。通过使聚醚多元醇与催化剂,表面活性剂和水泥(至多60 wt%的最终重量)混合,与Metylen-Diphenyl-Diisocyanate在没有阻燃剂的情况下反应,即可制备杂化泡沫。然后将复合泡沫在60℃的水中固化72小时,以使无水水泥颗粒水化。水合水泥相在聚氨酯基质内产生共连续结构。为了比较,还制备了纯聚氨酯泡沫和填充阻燃剂的泡沫。通过X射线衍射,机械压缩测试和扫描电子显微镜对复合材料和杂化泡沫材料进行表征,而通过热重分析法对热氧化性能进行表征。锥形量热仪分析可以确定热降解的关键特性,即放热率,泡沫燃烧产生的烟气和一氧化碳。与未水合的复合泡沫相比,由于水泥颗粒的水合,杂化泡沫显示出机械性能的显着改善。热表征的结果表明,大量无机水泥颗粒的存在,以及共连续形态的形成,都增强了燃烧性能并改善了聚氨酯的热氧化稳定性。基本上由于无机相的物理作用而形成的阻燃性,该无机相在表面上构成屏障并与挥发物和氧气的扩散相反。

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  • 来源
    《Polymer Degradation and Stability》 |2013年第1期|64-72|共9页
  • 作者单位

    Institute for Composite and Biomedical Materials, National Research Council (IMCB-CNR), P.le Tecchio 80, 80125 Naples, Italy,Hypucem s.r.l, P.le E.Fermi, 1, Loc Granatello Portici, Naples, Italy;

    Institute for Composite and Biomedical Materials, National Research Council (IMCB-CNR), P.le Tecchio 80, 80125 Naples, Italy,Hypucem s.r.l, P.le E.Fermi, 1, Loc Granatello Portici, Naples, Italy;

    Department of Materials and Production Engineering, University of Naples Federico II, P.le Tecchio 80, 80125 Naples, Italy,Hypucem s.r.l, P.le E.Fermi, 1, Loc Granatello Portici, Naples, Italy;

    Institute for Composite and Biomedical Materials, National Research Council (IMCB-CNR), P.le Tecchio 80, 80125 Naples, Italy,Hypucem s.r.l, P.le E.Fermi, 1, Loc Granatello Portici, Naples, Italy;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    HIRP-C; hydrated cement; polyurethane foam; co-continuity; thermal properties; fire resistance;

    机译:HIRP-C;水合水泥聚氨酯泡沫;连续性热性能;防火性能;

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